Working With Creo, The New 3D CAD Software
Creo is a 3D CAD solution made by Parametric Technology Corporation. The software program, which runs on Windows operating systems, combines advanced modeling and drafting techniques plus other tools needed for mechanical engineering in 3D. It was previously known as Pro Engineer and was created by Doctor Samuel Geisberg.
Creo is a good time saver tool for designers. It combines multiple applications like parametric, 3D CAD, CAID and CAM. It produces excellent designs that are up to standards and creative. It also allows data sharing among other applications which improves the speed of data translations, error checking and error corrections.
Creo contains several stand alone applications. These include the 'parametric', which is a standard design application which helps to address challenges in the design. There is 'direct', which helps to simplify and increase the speed of designing or defeaturing and editing.
Thirdly, there is the 'schematic'. It transfers the 2D schematics to the 3D cabling and piping, automatically reducing possible errors. There is a simulation that understands and converts the 3D designs. It translates them into digital images and assists in their testing.
In addition, there is a view Mcad. This application helps to view and visualize the design insights unlike the manual system which involves many people who have to think it through and discuss it. The Ecad on the other hand, makes you visualize PCB types of designs separately or together with the whole product design.
The illustration provides a good environment which is needed for rich 3D technical illustrations whose purpose is communicating major products and actions plainly and graphically. The sketch is a 2D application that assists users to sketch their ideas. They can add other effects to communicate their ideas, like color for example.
Finally there is a layout which is a 2D application that helps to leverage the excellent 2D and 3D worlds in the design process. All these applications are combined in the Creo software. They help improve the speed and accuracy of product designs.
Training on how to use this software can be offered in at certain universities. The training is offered for both, end users and administrators. There are classes held by instructors where people are taught in the lecture halls and there is also a virtual learning library with unlimited access on the web.
There are also questions and answers web pages where users have the possibility to discuss technical issues and get solutions. In addition, there is a community that connects people to professionals. They can write articles on their experiences and get responses from other members of the community group.
Creo is a perfect solution for all designers who need exact 3D models of their drafts. With its up-to-date technology and precision tools you can be sure that the 3D model you create matches all standards that the real world product has to fulfill. The times of prototypes which fail product requirements and security checks are over, with Creo you can get the features you really need, as it can be customized to your requirements.
When you are a product designer, you rely on a good 3D software program that matches your requirements. With Creo you can get all the features you need.
Article Source: http://EzineArticles.com/?expert=Vicki_Ware
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CAD Invention Designer
Invention Drafting Services
Invention CAD Designers & Invention Drafting Services specialize in creating prototypes for Inventors in need of a CAD Drafting Service. Once an Inventor has created a conceptual design, and is ready to move on to the prototype, a CAD designer is needed to produce CAD files which can be read by special manufacturing machines for such things as: plastic molds, CNC, injection molding, mechanical parts, and other types of mass production. These invention designers can be found online, but trying to find one locally can be sort of frustrating. Drafting services in general usually just specialize in architecture, mechanical, civil, electrical, structural, or some other type of technical drawing. Invention design CAD Services are definitely unique, but they can be the Inventor's best friend when it comes to designing an invention or prototype.
Invention Designer
Invention and Prototype designers stand out from the average CAD designer due to the fact they specialize in several different fields of engineering and design. When working with inventions the CAD designer has to be particularly diversified, and be able to overcome any obstacles that might come in their way. Inventors in most situations don't know where to turn when they need an invention designed, but the internet is probably the best resource to find a professional CAD drafting service who can assist the inventor throughout the design process. The Invention and prototype design companies or 3D modeling companies aren't easy to find locally so your best bet is to Google CAD drafting services, invention designers, or prototype designers.
Injection Mold Designers
Injection molded parts are used for just about anything today. From the keyboard your using right now to the computer screen or even the mouse was manufactured through injection molds. 3D Modeling services generate 3D models with special CAD software which enables the files to be read by injection molding machines, and in turn the machines create the injection molds to the exact specifications mentioned within the files. CAD files are very diversified and flexible to work with. First of all they can be sent online as an email attachment. How hard is that to accomplish? Secondly the files can be copied, updated, and edited at any point within the design process. These files have one more advantage over the old style of blueprint. These file can be read by several different types of CAD drafting software. This allows CAD Designers who use different software to still work on the same drawing with the same specifications. Not all CAD files are universal, but the majorities are.
Clay Bowling-Owner of eLine Design LLC an Online Invention & Prototype Design Company-If You would like to learn more about the Invention & Prototype Design Process Click Here- CAD Invention & Prototype Designers
Article Source: http://EzineArticles.com/?expert=Clay_Bowling
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Invention Designer and 3D CAD Designers
Invention & Prototype CAD Designers are a type of CAD drafter that specializes in custom 3D CAD Modeling. They design plastic mold designs, injection molds, CNC, metal parts, gears, concept designs, and more. Invention design services aren't easily found locally, so that is why the best resource to find them is online. That's just about the truth for any type of Specialty Company now, and if you look in the right places online you can find Invention & prototype designers who can provide you with exactly what you want. There are tons of resources online for Inventors provided through the US patent agency, and if they can't point you in the right direction than online forums that have specialty groups should do the trick. One of the best online resources for Inventors I've found so far is LinkedIn. Once you register all you need to do is join one of their groups related to Inventors, and post a question. More than likely someone there has some information that you can find useful.
Prototypes and CAD
CAD is the acronym for computer aided drafting or computer aided design. Almost anything you see now is designed with CAD software. With this technically advanced software CAD Invention designers can produce the most sophisticated designs imaginable. The software can scale designs so accurately that they can be brought down to over ten-thousandth of an inch. This technology allows Prototype designers to create anything an Inventor can imagine. Once the CAD drafting service has designed the prototype, the files can be sent directly to the manufacturer where the CAD files are read by machines which produce anything from mechanical parts, sheet metal, CNC, plastic molds, injection molds, and anything that is manufactured on a large scale today. There are so many types of CAD software available that they can design anything from a shoe, to a B2 Bomber. CAD is the industries standard for creating inventions and prototypes, and I don't see this trend slowing down anytime in the near future.
Invention Design Help
If you're an Inventor and you're looking for design help like I stated previously your best bet is to Google an online cad designer who specializes in invention and prototype designing. There are tons of resources available to inventors if you research long and hard enough. The internet is an endless resource for any information you seek. You can save tons of money by doing research yourself instead of paying ridiculous engineering, patent attorney fees, and more. Don't forget that most patent attorneys aren't looking out for you and your invention, but for themselves. Procrastination is one of their favorite tools of the trade, and once you sign over power of attorney to one of them you're basically at their mercy. Most people won't even talk with you about your invention or prototype because of this fact, so be careful. Be smart, do research yourself online, and in most situations everything will work out for you and you newly thought of invention.
Clay Bowling-Owner of eLine Design LLC an Online Invention & Prototype Design Company-If You would like to learn more about the Invention & Prototype Design Process Click Here- CAD Invention & Prototype Designers
Article Source: http://EzineArticles.com/?expert=Clay_Bowling
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How Has Computer Aided Drafting (CAD) Revolutionized Engineering Industry?
CAD, Computer Aided Design has brought about a technical revolution in the Engineering Industry. CAD Services can be classified into broad categories like Architectural Services, Structural Services, MEP and Mechanical Services. CAD for Engineers and Architects today is like Oxygen for the living. CAD Services is a boon for all companies' worldwide who would like to execute CAD projects with minimum cost and quick deliverable capacity. With the consistently growing demands in construction industry and CAD services have achieved eminence across the globe. This technology has contributed immensely in development of Construction Industry, Building and Infrastructure development, Green Building concept along with other Engineering Domains like Machine Designing, Aeronautical sheets, Transformer designing, GIS, Pressure vessel designing etc..
Engineering industry today uses CAD Services to ensure Less cost, best quality, quick turnaround time along with excellent project efficiency. CAD is no longer limited to AutoCAD. There has been a great evolution in the CAD Software too. CAD professionals globally use software which is helpful in are using latest software like AutoCAD, Revit, 3D Studio Max, Pro-E, Solid Works, Inventor, MicroStation etc to execute Designing, Drafting and Modeling projects. With the help of such software, the entire project execution cycle has come to a new arena due to CAD Services. It is now possible to visualize an entire building and it's detail even before it is completed. This is possible with the help of "Virtual Construction Modeling" also referred to as Building Information Modeling in Engineering Industry. 3D Rendering makes it possible to give any building or product a photorealistic feel before the actual construction or manufacturing of a product. This development has also caused increase in companies providing Engineering and CAD Services. With transformation of blue prints created manually to digitization of CAD Drawings, many opportunities have opened up for Architects, Engineers and Drafters.
CAD services assure absolute digitization of manual drawings to computerized drawings via scanned pdfs, hand-drawn sketches or old manual drawings. Companies are using different approaches and techniques to take utmost advantage in terms of project execution. As mentioned earlier, CAD Services are no longer limited to one particular domain or segment. Arrays of services are covered under one umbrella. Besides project execution, computerized CAD Drawings or Images are easier to maintain, save or send across to clients. There is no risk of images or drawings being damaged in course of time. Errors can be rectified easily without taking much of time and can aid to quick turnaround. In software such as Revit, a change made in one part of the model reflects in the entire model by reducing manual intervention. This also facilitates definition and extraction of individual sheets or different part of drawings and every minute detail.
These are one of the main reasons that across the globe, major construction houses or Infrastructure companies are eminently outsourcing CAD Services. This process over a period helps companies gain advantage over their competitors who do not outsource their requirements. CAD Technology has evolved into a different era in a short span of time and is constantly evolving into giving better shape to the Engineering industry. CAD Services now helps CAD companies and professionals manage their Designing Drafting or Modeling projects more efficiently. Companies offering CAD Services and companies who are constantly upgrading their technical skills will always be in an advantageous position compared to companies who still rely on traditional methods of executing projects.
Tesla Outsourcing Services is an Engineering Outsourcing Company offering CAD and BIM Services to overseas clients.
TESLA Outsourcing Services, a leading Engineering CAD services company. CAD Drafting Company offers Detailing, Drafting, Design Services and BIM Services across all the industries.
Article Source: http://EzineArticles.com/?expert=Mrinste_Adams
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FREE Download: Solid Edge Trial Version
Solid Edge Free Trial
Helping Engineers Design Better
With this free download, try award-winning Solid Edge with synchronous technology and see how you can design better. See first-hand how companies like yours can get accelerated design, faster revisions, and better reuse of imported 2D and 3D data. In this free offering you get access to the full version of Solid Edge, complete with part modeling, assembly design, drafting, simulation, and add-on applications. There are no restrictions on the number of saves, part sizes, or other factors that would limit your ability to create complete product designs.Solid Edge, a core component of the Velocity Series™ portfolio, is the most complete hybrid 2D/3D CAD system that uses synchronous technology for accelerated design, faster change, and improved imported reuse. With superior part and assembly modeling, drafting, transparent data management, and built-in finite element analysis, Solid Edge eases the growing complexity of product design.
Solid Edge with synchronous technology delivers dramatic new ways to produce better designs faster. This latest release breaks new ground, leveraging synchronous technology to accelerate design, speed ECOs and improve imported 2D and 3D reuse. With improved simulation, collaboration, and thousands of customer-driven enhancements, Solid Edge continues to remove traditional barriers to design.
Free 2D
Whether you are using 2D across your company or for a specific 2D design process, Solid Edge 2D Drafting will give you an immediate advantage with production-proven capabilities including drawing layout, Goal Seeking, diagramming, and dimensioning. It is fully compliant with ISO, ANSI, BSI, DIN, JIS and UNI, and it's absolutely FREE to download and use.
Solid Edge 2D Drafting eases the transition from 2D AutoCAD with import wizards, matched fonts and color schemes, XREF support, paper/model space support and much more. Get up to speed faster with a built-in Command Finder - never look for AutoCAD equivalent command again.
Solid Edge 2D Drafting requires Windows XP, Vista or Windows 7 and now includes the Free Solid Edge Viewer. Make sure you have Internet Explorer version 6.0 or later for the download.
Current downloads are for Solid Edge ST4.
Get your FREE copy of Solid Edge Free 2D Drafting Now.
Best 3D CAD For Construction Design
3D CAD is the new frontier for construction design. It has revolutionized architectural and engineering design, and is developing rapidly into a primary tool for major construction as well as design innovation. CAD drafting software is also very much a matter of informed choice among professionals.
Choosing a 3D CAD package
The most basic preliminary design involves very high standards of work. Drafting in 3D is an exacting process, and the professional demand for good software is based on a real need for efficiency, accuracy, and good drafting options.
Architectural drafters must be able to design, create and modify any part of a design accurately, and to efficiently and reliably create the right specifications for each part of a design. These very high performance standards are a very good set of benchmarks for choosing a 3D drafting software package.
Cost effectiveness and 3D CAD
One of the reasons for the popularity of 3D among professionals is that 3D allows full integration of all design elements. It can do in seconds work that used to take days. This involves using advanced design software, like industry leader Tekla, but it pays for itself many times over as a time saver and quality control.
For example, a basic 3D design template, one of the common features of 3D design, removes the need for preliminary drafting, and allows full customization of advanced design elements. The modified templates can then be used as a standard for sometimes hundreds of other elements. This is "cost efficiency" in the most literal sense, saving hundreds of hours of work.
Tailoring your 3D CAD to your needs
CAD is extremely versatile, and adaptable to any design scenario. Every specification and component element in a construction plan, and there are thousands of these in many plans, must be accessible while drafting.
Some types of 3D drafting involve large numbers of different functions and designs, and a lot of potentially time consuming, picky, detailed work. 3D drastically reduces time usage in production of plans, compared to other design formats. 3D allows efficient cross checks, integration and component design to proceed smoothly as integrated parts of the natural working dynamic.
3D is the best, most reliable, and most comprehensive design and drafting tool in construction planning.
The operating criteria for 3D are like an inventory of design requirements:
- Complete sets of integrated plans and design information
- Reinforcements, stress loading and other features incorporated into planning from basic design to completed plans
- Full access to all aspects of design down to single specifications
- Full visualization of all designs and plans
- Modeling functions for accuracy
- Specifications to industry and statutory standards at the click of a mouse
- Comprehensive quality checks and integration functions
- A lot of saved time due to basic software features
- Other types of design software simply cannot do what CAD does effortlessly.
Pacific Computing is the exclusive distributor in Aust and NZ of Tekla Structures 3D modelling construction software for structural detailing and drafting. For more information and to view our range of products, visit Construction Software.
Article Source: http://EzineArticles.com/?expert=Paul_P_McLeod
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3D CAD Designer Secrets
Becoming an efficient 3D CAD designer takes time, and an understanding of how to manipulate the commands at your disposal within CAD software. With a few of my very own trade secrets I can help you design 3D models in less than half the time it takes most CAD designers. With these tips, and a good understanding of the commands in CAD software, your designs can be professional, precise, and developed within a matter of minutes. Don't forget though, accuracy, and precision are more important in designing than speed.
When starting a 3D model the most important trick is to start designing at the right point. In most CAD programs today there is a space within the 3D realm called the origin. The origin is the point where the drawing planes within model space intersect. The three planes are known as the XY, XZ, and YZ planes. Right in the center where they all meet is the origin of the 3D environment, and where any professional designer should start first. The advantage of doing this is it allows you to draw a sketch in any direction you please, thus making the process of using the commands much easier. Not only are planes used to sketch on, but they can be used in conjunction with the commands to perform the necessary task to create 3D models.
Before any CAD designer starts working on a 3D drawing they need to ask themselves what is the most efficient way of designing this model. What makes a good CAD drafter is the way he, or she goes about designing the project. The least amount of commands executed the better. Always try to think how you can use commands like mirror, and copy to lessen the amount of work in the design. For instance, if a drawing is exactly the same from some center point, you only have to draw half of it, then use mirror to create the other half. Ideally the CAD draftsmen would design the half from the origin extending out, so the mirrors edge would lie on a plane. This would allow the command to be performed correctly, as well as centering the design on the origin, which is exactly where you want it to be.
With several years of experience designing 3D models with CAD, I've come to realize that keeping your design centered within the origin is the most important decision you can make. While your in the environment for creating 3D features the origin allows you to have a rotation axis for commands like revolve, and circular pattern. If you're extruding an object that lies on the XY plane for instance, there's an option within extrude that allows the object to extrude in both directions, placing your 3D object directly in the center of the origin. If you take advantage of all the commands embedded in CAD programs you can save minutes, hours, and even days worth of work.
The secret to becoming a great 3D CAD designer is to utilize all the tools available, and to design your features with the least amount of steps. Just make sure you spend a few minutes before every design studying the characteristics and dimensions that make up the 3D model. After practicing these techniques over time, you should be able to identify the most direct path to achieving your 3D drawing. Also make sure you familiarize yourself with all the commands in the CAD software, because if you don't know the power at your fingertips, how can you ever take advantage of it?
Clay Bowling-Owner of eLine Design LLC an Online Invention & Prototype Design Company-If You would like to learn more about the Invention & Prototype Design Process Click Here- CAD Invention & Prototype Designers
Article Source: http://EzineArticles.com/?expert=Clay_Bowling
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3D CAD Modeling
Invention Designer and 3D CAD Designers
Invention Designers
Invention & Prototype CAD Designers are a type of CAD drafter that specializes in custom 3D CAD Modeling. They design plastic mold designs, injection molds, CNC, metal parts, gears, concept designs, and more. Invention design services aren't easily found locally, so that is why the best resource to find them is online. That's just about the truth for any type of Specialty Company now, and if you look in the right places online you can find Invention & prototype designers who can provide you with exactly what you want. There are tons of resources online for Inventors provided through the US patent agency, and if they can't point you in the right direction than online forums that have specialty groups should do the trick. One of the best online resources for Inventors I've found so far is LinkedIn. Once you register all you need to do is join one of their groups related to Inventors, and post a question. More than likely someone there has some information that you can find useful.
Prototypes and CAD
CAD is the acronym for computer aided drafting or computer aided design. Almost anything you see now is designed with CAD software. With this technically advanced software CAD Invention designers can produce the most sophisticated designs imaginable. The software can scale designs so accurately that they can be brought down to over ten-thousandth of an inch. This technology allows Prototype designers to create anything an Inventor can imagine. Once the CAD drafting service has designed the prototype, the files can be sent directly to the manufacturer where the CAD files are read by machines which produce anything from mechanical parts, sheet metal, CNC, plastic molds, injection molds, and anything that is manufactured on a large scale today. There are so many types of CAD software available that they can design anything from a shoe, to a B2 Bomber. CAD is the industries standard for creating inventions and prototypes, and I don't see this trend slowing down anytime in the near future.
Invention Design Help
If you're an Inventor and you're looking for design help like I stated previously your best bet is to Google an online cad designer who specializes in invention and prototype designing. There are tons of resources available to inventors if you research long and hard enough. The internet is an endless resource for any information you seek. You can save tons of money by doing research yourself instead of paying ridiculous engineering, patent attorney fees, and more. Don't forget that most patent attorneys aren't looking out for you and your invention, but for themselves. Procrastination is one of their favorite tools of the trade, and once you sign over power of attorney to one of them you're basically at their mercy. Most people won't even talk with you about your invention or prototype because of this fact, so be careful. Be smart, do research yourself online, and in most situations everything will work out for you and you newly thought of invention.
Clay Bowling-Owner of eLine Design LLC an Online Invention & Prototype Design Company-If You would like to learn more about the Invention & Prototype Design Process Click Here- CAD Invention & Prototype Designers
Article Source: http://EzineArticles.com/?expert=Clay_Bowling
Labels:
3D CAD Modeling,
innovation
Parametric Modeling
The modeling of solids is only the minimum requirement of a CAD system’s capabilities. Solid modelers have become commonplace in engineering departments in the last ten years due to faster computers and competitive software pricing. Solid modeling software creates a virtual 3D representation of components for machine design and analysis. A typical graphical user interface includes programmable macros, keyboard shortcuts and dynamic model manipulation. The ability to dynamically re-orient the model, in real-time shaded 3-D, is emphasized and helps the designer maintain a mental 3-D image.
Creation of a solid model
A solid part model generally consists of a group of features, added one at a time, until the model is complete. Engineering solid models are built mostly with sketcher-based features; 2-D sketches that are swept along a path to become 3-D. These may be cuts, or extrusions for example. Design work on components is usually done within the context of the whole product using assembly modeling methods. An assembly model incorporates references to individual part models that comprise the product.
Another type of modeling technique is 'surfacing' (Freeform surface modeling). Here, surfaces are defined, trimmed and merged, and filled to make solid. The surfaces are usually defined with datum curves in space and a variety of complex commands. Surfacing is more difficult, but better applicable to some manufacturing techniques, like injection molding. Solid models for injection molded parts usually have both surfacing and sketcher based features.
Parametric modeling uses parameters to define a model (dimensions, for example). Examples of parameters are: dimensions used to create model features, material density, formulas to describe swept features, imported data (that describe a reference surface, for example). The parameter may be modified later, and the model will update to reflect the modification. Typically, there is a relationship between parts, assemblies, and drawings. A part consists of multiple features, and an assembly consists of multiple parts. Drawings can be made from either parts or assemblies.
Example: A shaft is created by extruding a circle 100 mm. A hub is assembled to the end of the shaft. Later, the shaft is modified to be 200 mm long (click on the shaft, select the length dimension, modify to 200). When the model is updated the shaft will be 200 mm long, the hub will relocate to the end of the shaft to which it was assembled, and the engineering drawings and mass properties will reflect all changes automatically.
Related to parameters, but slightly different are Constraints. Constraints are relationships between entities that make up a particular shape. For a window, the sides might be defined as being parallel, and of the same length. Parametric modeling is obvious and intuitive. But for the first three decades of CAD this was not the case. Modification meant re-draw, or add a new cut or protrusion on top of old ones. Dimensions on engineering drawings were created, instead of shown. Parametric modeling is very powerful, but requires more skill in model creation. A complicated model for an injection molded part may have a thousand features, and modifying an early feature may cause later features to fail. Skillfully created parametric models are easier to maintain and modify. Parametric modeling also lends itself to data re-use. A whole family of capscrews can be contained in one model, for example.
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Parametric Modeling
How Has Computer Aided Drafting (CAD) Revolutionized Engineering Industry?
CAD, Computer Aided Design has brought about a technical revolution in the Engineering Industry. CAD Services can be classified into broad categories like Architectural Services, Structural Services, MEP and Mechanical Services. CAD for Engineers and Architects today is like Oxygen for the living. CAD Services is a boon for all companies' worldwide who would like to execute CAD projects with minimum cost and quick deliverable capacity. With the consistently growing demands in construction industry and CAD services have achieved eminence across the globe. This technology has contributed immensely in development of Construction Industry, Building and Infrastructure development, Green Building concept along with other Engineering Domains like Machine Designing, Aeronautical sheets, Transformer designing, GIS, Pressure vessel designing etc..
Engineering industry today uses CAD Services to ensure Less cost, best quality, quick turnaround time along with excellent project efficiency. CAD is no longer limited to AutoCAD. There has been a great evolution in the CAD Software too. CAD professionals globally use software which is helpful in are using latest software like AutoCAD, Revit, 3D Studio Max, Pro-E, Solid Works, Inventor, MicroStation etc to execute Designing, Drafting and Modeling projects. With the help of such software, the entire project execution cycle has come to a new arena due to CAD Services. It is now possible to visualize an entire building and it's detail even before it is completed. This is possible with the help of "Virtual Construction Modeling" also referred to as Building Information Modeling in Engineering Industry. 3D Rendering makes it possible to give any building or product a photorealistic feel before the actual construction or manufacturing of a product. This development has also caused increase in companies providing Engineering and CAD Services. With transformation of blue prints created manually to digitization of CAD Drawings, many opportunities have opened up for Architects, Engineers and Drafters.
CAD services assure absolute digitization of manual drawings to computerized drawings via scanned pdfs, hand-drawn sketches or old manual drawings. Companies are using different approaches and techniques to take utmost advantage in terms of project execution. As mentioned earlier, CAD Services are no longer limited to one particular domain or segment. Arrays of services are covered under one umbrella. Besides project execution, computerized CAD Drawings or Images are easier to maintain, save or send across to clients. There is no risk of images or drawings being damaged in course of time. Errors can be rectified easily without taking much of time and can aid to quick turnaround. In software such as Revit, a change made in one part of the model reflects in the entire model by reducing manual intervention. This also facilitates definition and extraction of individual sheets or different part of drawings and every minute detail.
These are one of the main reasons that across the globe, major construction houses or Infrastructure companies are eminently outsourcing CAD Services. This process over a period helps companies gain advantage over their competitors who do not outsource their requirements. CAD Technology has evolved into a different era in a short span of time and is constantly evolving into giving better shape to the Engineering industry. CAD Services now helps CAD companies and professionals manage their Designing Drafting or Modeling projects more efficiently. Companies offering CAD Services and companies who are constantly upgrading their technical skills will always be in an advantageous position compared to companies who still rely on traditional methods of executing projects.
Tesla Outsourcing Services is an Engineering Outsourcing Company offering CAD and BIM Services to overseas clients.
TESLA Outsourcing Services, a leading Engineering CAD services company. CAD Drafting Company offers Detailing, Drafting, Design Services and BIM Services across all the industries.
Article Source: http://EzineArticles.com/?expert=Mrinste_Adams
Solid Edge and Femap Apps
Leading companies use Femap to analyze complex engineering problems and accelerate design. Other simulation tools either don’t offer enough capabilities to simulate real-life engineering problems, or haven’t kept up with the latest technology.
CAD-embedded simulation tools don’t provide analysis capabilities that are broad enough to simulate the real-life, complex engineering problems that you are faced with. Standalone, legacy Unix-based solutions that have been available in the market for a long time are showing signs of neglect, and are long overdue for replacement. Femap provides powerful and deep analysis capabilities in a modern, highly customizable and intuitive framework that is continually updated to keep up with the latest simulation technology. Implementing Femap can help improve overall productivity and simulation accuracy, as well as reduce turnaround times.
Case Study
Fatigue analysis for the rest of us
"Femap’s API enabled efficient integration of stress analysis and fatigue life prediction"Durability by design
FatigueWizard Ltd. was launched in 1996 to provide the engineering community with a better option for evaluating fatigue life. Traditionally, fatigue analysis software has been very expensive and difficult to use, restricting it to the province of “fatigue gurus,” even though fatigue failures are a serious design concern.
“With the widespread use of FEA
Holt, along with FatigueWizard cofounder Mark Swindell, have performed finite element analysis (FEA) and durability analysis for more than 30 years. Being “fatigue gurus” themselves, Holt and Swindell decided to expand the accessibility of fatigue analysis by creating software that the average engineer could use to perform sophisticated and accurate fatigue life predictions. “Our aim is to remove the misunderstanding that fatigue life calculation is the privilege of the few,” Holt adds. “We believe that it should be and can be carried out by any CAE engineer.”
Integrated with Femap
The program they created (also called FatigueWizard) is much more sophisticated than hand calculations but easier to perform. It was designed to be used as a routine step after running a stress analysis. For this reason, FatigueWizard is tightly integrated with existing FEA software such as the Femap® solution from Siemens PLM Software, which is the founders’ preferred FEA pre and post-processor. “We use Femap for all of our consulting work,” Holts adds. “It’s superior for the type of work we do, which is currently a lot of modeling where we’re working with surface models of thin-walled structures. Femap is particularly good at handling that type of data.”
The FatigueWizard program launches from within Femap
Not for specialists only
In this respect, the integration with Femap is a nice fit, since ease of use and affordability are also characteristics of the Femap program. In fact, these are two of the main reasons why Holt and Swindell use Femap on the consulting side of their business. “After switching to Femap we realized we were able to work faster,” Holt says. “One of our main clients also switched to Femap and has noticed the same thing. They tell us Femap paid for itself in just six months by letting them get more work done in a given period of time.”
As a software developer, one of the things Holt appreciates about Femap is the development team behind the program. “It’s like with us and FatigueWizard,” he explains. “Femap is obviously written by people who know and use FEA.With some other systems, you get the feeling the developers are software people who’ve done a little FEA. Femap’s developers really know the field.
“I’ve been doing FEA for 20 years and have used all the high-end programs,” Holt concludes,“Femap is brilliant. It’s a very high-end system and very cost-competitive considering what it can do.”
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femap,
finite element analysis,
stress analysis
Faster modeling accelerates Powerwing redesign with Solid Edge 3D CAD Software
"Two to three times faster than traditional solid modeling, Solid Edge with synchronous technology speeds the conversion of a steel assembly to a molded plastic part."
Razor USA LLC
In only eight years, Razor USA LLC has grown from an upstart company with a single product to an established earner with lineup of more than 30 human and electric-powered toys. The company’s successful diversification can be seen in its revenues. Sales in 2001 were $20 million; sales in 2007 were $200 million. “The struggle for our company in the early years was to capitalize on the popularity of the original scooter while expanding the product line so there was less reliance on a single item,” explains Bob Hadley, the company’s product development manager. “We accomplished that, but our challenge now is to continually upgrade the product line with more items to maintain growth.”
Bringing a new product to market at Razor is a process of considering as many as 100 ideas each year, then narrowing that list down to 15 to 20 to develop more fully. Of those, one, two or possibly three might actually make it to market. “In our industry it’s important to be able to vet out design ideas as quickly as possible,” Hadley says. Today the company has even more advanced technology for doing that – Solid Edge software with synchronous technology.
Better for complex parts
Razor is not new to Solid Edge, having migrated from 2D AutoCAD
“By allowing us to do upfront development about 50 percent faster compared to 2D, Solid Edge got us to where we could make faster decisions about which concepts to bring to market,” Hadley says. “With Solid Edge, we were able to introduce at least two or three times as many as new products each year as we could previously.”
When Solid Edge
One of the first things Hadley modeled was a complicated structural plastic part for the Razor Powerwing™, a caster-driven scooter that people propel by shifting their weight from side to side. The original part was a welded steel assembly; Hadley was converting it to an injection molded plastic part to lower the cost and improve manufacturability. “A part like this with deep rib sections and multiple drafted faces typically takes at least a week using conventional solid modeling methods. With a traditional 2D CAD package, it would take a month if you could even do it. But I was able to model it in just two days using Solid Edge with synchronous technology.”
Faster design changes
Another advantage of Solid Edge with synchronous technology came later, when Hadley was working with a mold maker to fine-tune the part’s rib structure. He estimates that they went back and forth at least 10 times. Because he had originally modeled the part using synchronous technology, what previously would have been very time-consuming changes were done almost effortlessly. “With structural molded designs, you frequently need to reposition and reestablish your web intersections,” he explains. “With traditional solid modeling, you erase everything and start over, and it can take two to three hours to reposition a rib structure. With synchronous technology you just grab the faces you want and drag them into position and they go there. You can reposition any number of faces or features in about five seconds.
“With synchronous technology, each feature is not dependent on when it was created or where in the model it was created,” Hadley continues. “This will come into play for us on just about every model since changes are the natural order of things.” Overall, Hadley estimates that synchronous technology speeds the design process by a factor of two or three compared to traditional solid modeling.
In addition, he has noticed another, unanticipated benefit of Solid Edge with synchronous technology. It has converted the remaining 2D AutoCAD user at Razor to 3D. “Since there are no complex history rules or modeling strategies to learn, he picked it up very easily,” Hadley notes. “In just a few weeks he’s already cranking out designs left and right. He’s just incredibly excited about finally joining the 3D club!
Source: http://www.plm.automation.siemens.com/en_us/about_us/success/case_study.cfm?Component=30503&ComponentTemplate=1481
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Use of 3D CAD Modeling in Mechanical Engineering Design
3D CAD techniques have gained significant popularity because design data can often be reused across various stages of the manufacturing life-cycle. Each CAD system comes with proprietary file formats which need to be made compatible with other project software. By and large designers use STEP and IGES files to make 3D solid models compatible with other systems. The disadvantage of this practice is the extensive rework, significant delay, inefficient use of critical human resources and increased costs.
Every CAD platform has a unique way of representing 3D geometry for a given manufacturing design. If you try to open a 3D model in other application then you see some discrepancies in terms of white spaces, gaps, miss-alignment, etc - diluting the actual design intent. AutoCAD 2010 quickly and easily makes adjustments to optimize the models and removes all these differences well before the file get translated.
Source : http://goarticles.com/article/Use-of-3D-CAD-Modeling-in-Mechanical-Engineering-Design/3946802/
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CNC And CAD - Computer Aided Design
CAD stands for Computer Aided Design or Computer Aided Drafting. CAD was developed in the early 60s. Today it is the premier way to design, develop and optimized products. People use CAD every day to design virtually every product you see. Generally, designers use CAD to design a product, and then produce prints to manufacture that product. A print is a picture of a part or assembly that is very exact. It includes the dimensions and a parts list used to manufacture a product.
CAD is the use of computer based software packages that assist engineers, architects and other design professionals in their designs. CAD is the part of the main designing process and involves both software and sometimes hardware. Current software packages range from 2D vector based drafting systems to 3D solid and surface modelers.
Computer Aided Drafting software packages can generally be broken into two groups. The groups are 2-D drafting packages or 3-D drafting packages. Most all software packages are moving to 3-D design. 3-D design is really the next generation of CAD. Utilizing 3-D design, engineers can make a model of their product. They can then look over this model for any apparent defects before it is ever made.
CAD is used to design, develop and optimize products. CAD is mainly used for the engineering of models and/or drawings of components. It is also used throughout the engineering process from concept to design of products. These products can be used by end consumers or used in other products. For example, you can design a bolt in CAD, and then use it in a Sub-Assembly in a planetary, which is a part of an earth-moving machine. CAD is also used in the design of tools and machinery. Finally, it is used in the design of all types of buildings from sheds to shopping malls.
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CNC And CAD Software - How Do I Choose The Right CAD Program For Me?
There are multiple CAD programs
The one you select will probably have to do with you liking the interface or finding it intuitive. Keep in mind it may work for you now. A simple to use and understand interface probably has some limitations for your designs. The very best programs are complex with many tools that give you the most control. I have found that I start with a simple program and outgrow it. At some point I move up to the next level of software. This usually means a higher price as well.
Types of CAD
There are different types of CAD out there. These are the ones I deal with from time to time. 2D CAD, 2.5D CAD, and 3D CAD. Here are some quick explanations of each type.
2D CAD
2D CAD is generally on the low end of CAD software packages. 2D CAD is most often vector based. The design consists on the X and Y-axis only. The designs are made up of lines, circles, ovals, slots, curves, etc. There is no “depth” to the design. Only the outline of the part is visible, to put it in a different way.
2.5D CAD
All of the same descriptions above apply, but the design is prismatic. By that I mean it has the depth of the material. There are Z levels, but they are on singular planes.
3D CAD
3D CAD is on the high end of CAD software packages. 3D CAD can be solid based, wire frame based or nurbs based. The design consists on the X, Y and Z-axis. The designs are made up of lines, circles, ovals, slots, curves, etc, but can also include Spheres, Pyramids, Torrids, Cubes, etc. There is depth to the design. The design can be rotated around 360 degrees. The design is an accurate description of what the part would look like if produced in the real world.
CAD Services in a better way
First of all, let’s have a brief introduction of CAD Services. Computer Aided Design (CAD) service is a type of computer-based tool, which can be used for drafting and designing related services. CAD is used in a wide range of designing fields such as architecture, mechanics and electronics. These CAD services enable a user to prepare faster and accurate drawings with flexibility in the drawing process. It also allows a user to modify dimensions with least efforts.
CAD has many built-in features and helps in giving simple and easy accessibility to the user. CAD can be identified as a user friendly computer based services used for all 2D and 3D modeling purposes. Some of the services from CAD are: AutoCad drafting
Now when talking about CAD drafting software, CAD drafting software is used mostly for developing architectural and complex machine designs or drawings. CAD drafting software has all the primary features available in commonly used engineering CAD software. The most eminent characteristic of this type of software is that it allows users to differentiate components that is, to mark different components of a design with different color combination provided with the software.
This helps in reducing product design time and improves the effectiveness of the designed products. Nowadays, the most advanced CAD drafting software available in the industry can support up to sixteen million color variations. Moreover the graphic user interface (GUI) provided with the software continuously prompts the user to color each and every new component that is added to the design products.
CAD Design Process - CNC Process
When designing something complex in CAD you will find there is a bit of a process. First you design parts. Then you build the parts into Sub-Assemblies. Next you build sub-assemblies into Groups. Then you build the groups into the machine. It is a logical pyramid process. You can also think of it like a file structure inside of a computer.
Designing Parts
Parts are your building blocks. Without this level, nothing could be produced. The part level breaks the entire “thing” down to its simplest form. You also manufacture at the part level. You make parts, and then assemble them into other things. Parts are generally made out of raw materials.
Think of a differential on the rear axle of a car. The differential is made up of gears and a housing. Each of these are parts of the differential and the differential is the assembly of these parts.
Designing Sub Assemblies
Sub Assemblies are the next level up and I am guessing you are getting the idea. You first design parts, then put them together into sub assemblies. In the car example above the differential is a sub assembly in the axle “Group” of the car. Sub Assemblies are put together to form groups.
Designing Groups
Moving up the design chain, groups are usually things you can identify with. It could be a door, engine, transmission, or cooling package on a car. Above we used the example of an Axle as a Group. Groups are put together into machines. Our example is a car, which is at the machine level.
Designing the Machine
Finally, the top level of all your designing, the machine. The machine could be built for the end user or be sold to another manufacturer. That manufacturer could use your “machine” as a sub assembly or group. You can see all this is just a matter of viewpoint. You can consider just about anything a sub assembly, group or final machine. It is all just semantics and what you are using the item for.
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6 Things to Look For While Shopping CAD-CAM Software
You should also see that you do not need to change your existing set up for the software. The best software is that which fits into your existing set up without disturbing your production and business. This is especially true for the CAM software. The software must have the ability to match with your existing software and all the software that you may procure in the future. This means that your new CAD/CAM software should be able to handle all the incoming data and match the outgoing data with your existing software.
You should also be able to upgrade the software without any glitches and with minimum cost if not free. If you are not sure, then ask your vendor to get the terms regarding upgrade. Make sure that you get software where there are no hidden costs in the post purchase stage. The support should be very efficient and any bugs must be fixed at once.
Most of the times, the software is bought from the resellers. So the responsibility starts from here but often the resellers pass the buck to the developers and this causes delay and confusion. So you should get your software from a well known reseller who has the reputation of acting as a bridge between the developer and the customer. Since the software is costly, you can shop for financing or a lease. They may sound new to you but it is getting popular.
10 Tips For Choosing Software and Software Leasing Solutions
So when choosing software, see if the following tips help you.
1. First determine the purpose for getting the software and the volume and nature of work that you want to do with it.
2. The next thing that should determine the acceptability of the software is the ease of use. Get information about its user friendliness before deciding upon any software.
3. But user friendly software may not always be pocket friendly. Actually the software is priced on the number of users who are supposed to use it. So get one according to your volume of work.
4. Sometimes some software is costly because they carry many facilities. In such cases you will have to decide whether you want so many features or the basics will do.
5. Ask whether the software can be customized to greater demands in case your business needs them as it grows and the cost of such improvements.
6. If you have to pay a good amount for software then you should also get after sales services including on-site and off-site services. When you choose software, read the fine print and see what you are getting in the package. Sometimes the companies charge extra for customization. If your package includes that then make sure to compare the prices and facilities of similar software in the market.
7. After installation you will find bugs in the software and you will have to make sure that you do not waste time on them. Get the assurance of the turnaround time for fixing such bugs.
8. You should also get assurance from the developer about the updates and regular notifications on them.
9. Regarding support, you should get to know the hours of business and the promptness of service. Since most of the times software is used for business or important work, going without it can cause loss of valuable time.
10. Finally, you will have to decide whether you want to go for outright purchase of the software or software leasing.
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3D Modeling A to Z – What is It? How it is Done? Different Techniques Involved
In this article we will look into what the 3D modeling is all about. We will see the subject in general, and then dig into the details and inspect the various techniques employed in the modeling process.
Concepts:
Lets dig a bit deeper:
Every 3D Model in computer representation is composed of polygons. The polygons may have three or more vertices and such hundreds or thousands or even millions of polygons may comprise a 3D Model. So is it like, a 3D artist draws each and every polygon as such? Fortunately, no! Here comes the softwares like 3DS Max and Maya to our rescue. These 3d modeling packages provide a wide variety of modeling tools that an artist can use for creating a polygonal model. The artist will usually draw the outlines that define the models shape in three dimensions, and the software will tesselate that into a polygonal mesh. All that an artist has to do is define the 3 dimensional profile of the character he has in his imagination. There are a number of modeling techniques that are widely used. Lets go through them one by one:
. Primitive Modeling: This is a very basic modeling technique and hence has several draw backs too. The software tool like 3DS Max, Maya etc provides a set of 3D primitives like spheres, boxes etc. The artist alters these shapes to suit his/her character modeling needs, using lattices, deformers etc. For example, a human head can be modeled using an altered sphere, a neck using an altered cylinder etc. This modeling technique is more suitable for building objects like houses, furniture etc rather than, for live organic modeling, since the shapes appear distinct and the blend of various body parts will not be seamless.
· NURBS Modeling: NURBS
Suppose you want to model a human head using NURBS modeling, you will start with an outline shape and then draw a number of curves extending from one side of the profile shape to the other end, separated by spaces. These curves define the shape of the figure. These NURBS curves can be joined to form a 3D NURBS surface. The NURBS modeling has its advantages and disadvantages. It is an easy to model approach, since the NURBS curves are easy to manipulate. But this modeling technique has very limited extensibility. Suppose you want to add an extra limb to your alien creature after the modeling is complete, it will become extremely difficult, if you choose NURBS modeling.
· Surface Modeling: This is a widely adopted modeling technique used primarily for organic modeling. In this modeling technique, the 3D artist creates a spline cage profile for the 3D character. The splines intersect between each other, creating a completely closed profile of the character, unlike the NURBS technique. Once the spline cage is complete, the 3D artist can apply a surface modifier on this spline cage, which creates a 3D filling surface out of the 2D splines. This method has the advantage that it can be extended to adapt to varied requirements, during any stage of the modeling process. This offers a lot of flexibility to the artist. This technique is used widely in 3D animation softwares like 3DS Max.
· Polygonal Modeling: This is one of the very few modeling techniques that can be used for various modeling scenarios. This modeling technique is used both in organic and inorganic modeling. The basic principle behind this modeling technique is as follows. The 3D artist draws the shape of the model he wants to create using the polygon tool. Then the polygon will get subdivided and extruded, so that the model gets the 3D form. This process of subdividing and extruding continues until the whole model is completed. In this modeling technique the artist in fact creates a polygonal mesh himself. But this polygonal model will have the minimal number of polygons only, and it will be far from a smooth and perfect figure. After this stage, the artist would apply a smoothing modifier on this polygon model, which converts the model into a realistic and smooth looking character.
· Sub-division Modeling: This is a hybrid modeling technique, which inherits the merits of both NURBS modeling and Polygonal Modeling. It also offers a host of other enhancements. In sub-divisional modeling, the artist usually starts with a polygonal model itself. The polygonal model that has been already created is converted into a sub-divisional model. The sub-divisional model has control points and lattices that can be pulled and moved, to alter the original polygonal model that lies beneath. This modeling technique also permits the artist to select the level of refinement to be done in a particular area. Hence those areas requiring higher detail can be assigned with more control points and higher no: of vertices, whereas the other areas will remain with a base vertex density. This gives significant performance boost.
Conclusion:
The above discussed modeling techniques are used by the 3d artist to create a model that he has in his imagination. The model obtained through these modeling techniques will be dependent on that specific modeling technique. Such a model is converted into a pure polygonal mesh and is rigged and animated based on the requirements. During the stage called rendering, the scene which contains many such polygonal models, gets converted to a two dimensional image or a movie by the 3D animation
Published At: Isnare.com Free Articles Directory - http://www.isnare.com/
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Simple, Easy CAD Software Home Design - A Look at Some of the Best in the Biz
There is definitely a lot of CAD software
However, there are more CAD software available out there. In fact, some of them might even provide better functions than AutoCAD. It all depends on a user's needs, as well as his specific situation. Nevertheless, here are three of the more popular CAD software home design programs that are both simple and easy to use.
SolidWorks 3D CAD
TurboCAD Pro 14 Platinum Edition
Solid Edge
Find out more info at Home Design Software Guide to buy software visit Home Design Software.
Article Source: http://EzineArticles.com/?expert=Robert_Diarioti
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