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Software lets designers produce composite material products.
Software lets designers produce composite material products.

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Software lets designers produce composite material products.


September 28, 2004 - FiberSIM® v5.0 allows engineers working with CAD systems to design products made of strong, lightweight, composite materials. It features Advanced Composite Engineering Environment that automates repetitive design, simulation, and manufacturing tasks. Software includes 4 main categories of functionality: zone based design; dynamically generating zone transitions and ply boundaries; generating variable offset surfaces; and smart darting and splicing.

(Archive News Story - Products mentioned in this Archive News Story may or may not be available from the manufacturer.)

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VISTAGY Announces FiberSIM® 5.0 Software for Composites Design

The new Advanced Composite Engineering Environment supports multiple design methodologies to enable engineers to more efficiently design and manufacture reliable composite products.

WALTHAM, Mass. (USA), September 20, 2004—VISTAGY, Inc., creators of specialized engineering software for product design and manufacture, today announced its plans for releasing version 5.0 of its FiberSIM® software. General availability is scheduled for the middle of the fourth quarter of this year. The software allows engineers working with computer-aided-design (CAD) systems to design products made of strong, lightweight, composite materials. FiberSIM 5.0 features an all new Advanced Composite Engineering Environment that automates many of the repetitive design, simulation, and manufacturing tasks peculiar to working with composites, thus reducing design and manufacturing times and costs while improving part quality.

"Every year we have added new capabilities and functionalities to FiberSIM based on our customers’ needs,” says Steven C. Luby, president and CEO of VISTAGY. “But FiberSIM 5.0 is an extremely significant advance over previous versions. The features of 5.0 represent a landmark shift in the ways that engineers can apply software to design and manufacture composite parts.”

Engineers who work with composite materials often create parts with hundreds of plies. Defining each ply requires complex materials data and lay-up specifications. Traditionally, this information is all entered manually, which is a time-consuming and error-prone task. The new automation tools in FiberSIM 5.0 reduce the potential for error and, by speeding the design process, leave engineers free to focus their expertise on design innovation, process selection, and part quality.

There are four main categories of new functionality in FiberSIM 5.0:

Zone based design for defining laminate specifications and requirements. In practice, engineers often design composite parts by analyzing the part and breaking it down into regions with the same structural properties. These regions are referred to as zones. FiberSIM 5.0 now supports this preliminary part design phase by providing users with flexible ways to quickly create zones and material specifications that define the requirements of the part within the 3D CAD model. FiberSIM supports the notions of tiled and overlay zones, and allows specification of hybrid materials to accommodate composite part design. Once the requirements for the zones have been defined, plies can be automatically generated. The plies take on the characteristics of their zones, such as boundary, material, and orientation, resulting in significant time-savings over the manual method of defining laminates.

Dynamically generating zone transitions and ply boundaries. FiberSIM 5.0’s tools for preliminary design include the ability to specify how ply boundaries are to be dropped-off or staggered from one zone into another. Users can control the ply offset profile to create complex transitions between zones. FiberSIM dynamically generates virtual ply boundaries that are associated with the zone transition information and the ply sequence. FiberSIM no longer requires the creation of ply boundary geometry in the CAD model. This approach allows users to quickly and accurately define zone-based laminates and greatly increases the ability to modify ply sequences within the laminate by automatically recomputing ply boundaries based on the transition specification. Manual redefinition of all the ply boundary geometry is no longer required, resulting in significant time-savings over previous methods.

Generating variable offset surfaces. One of the advantages of designing with composites is that plies of material can be placed precisely where they are needed. To minimize overall part weight, only the portion of a part that must withstand the most stress can be designed to be thicker, thus stronger, than other portions. The resulting surface created by the built-up plies varies in thickness. Tasks that require accurate representation of these surfaces, such as creating mockup solids and inner mold lines, were previously done manually. VISTAGY’s unique new Variable Surface Offset Technology generates variable offset surfaces for plies in the CAD model. Engineers using this technology can automatically account for manufacturing tolerances and ply thicknesses when generating mockup surfaces for interference checking, mating surfaces that model where two parts join together, and tooling surfaces for manufacturing.

Smart darting and splicing. In previous versions of FiberSIM, the engineer needed to define each dart and splice in a ply manually, though there was some automation involved. Inserting a new ply meant redefining all the staggered darts and splices in the sequence after it by hand. In FiberSIM 5.0, the engineer defines the darts and splices in the first ply, then defines the rules by which darts and splices are staggered. The software then populates subsequent plies with the appropriate darts and splices, staggered to specification. The smart darting and splicing tools automatically update the staggering if an additional ply is inserted into the laminate, greatly simplifying redesign and saving engineering time.

About FiberSIM®

FiberSIM is a suite of software that turns major CAD systems into advanced tools for designing and manufacturing composite parts. The software enables engineers to create a complete digital product definition of a composite part within their 3D modeling environment. FiberSIM automates design and analysis and generates manufacturing information including documentation, flat patterns, and data to drive laser projectors, automated cutters and fiber placement machines. FiberSIM uses XML technology to share composites data with people and applications throughout the enterprise, such as software for procurement, quality assurance, cost modeling and manufacturing.

About VISTAGY, Inc.

VISTAGY, Inc. is a leading developer of engineering software that enhances commercial 3D CAD systems. VISTAGY’s specialized engineering environments enable engineers to capture and communicate complete digital product definitions within CAD, thereby increasing productivity, improving the communication of product information throughout the product’s lifecycle, and allowing better-informed decision making early in design. VISTAGY software is used throughout the world in the aerospace, automotive, marine, medical, sporting goods, and transportation interiors industries. The company also offers training and consulting services. For more information, contact VISTAGY in Waltham, Massachusetts, USA, at +1.781.290.0506 x 300 or visit www.vistagy.com.

“VISTAGY Empowering engineers.”

FiberSIM, VISTAGY, and the VISTAGY logo are registered trademarks of VISTAGY, Inc. Advanced Composite Engineering Environment, Variable Surface Offset Technology, and Empowering Engineers are trademarks of VISTAGY, Inc. All other companies and products referenced herein have trademarks or registered trademarks of their respective holders.
Company Information:
Name: VISTAGY Inc.
Address: 486 Totten Pond Road
City: Waltham
State: MA
ZIP: 02451
Country: USA
Phone: 781 290 0506
FAX: 781 290 0507
http://www.vistagy.com


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Other News from this company:
VISTAGY'S FiberSIM® Software Reduces Time "From Art to Part" by Over 70% on the SpaceX Dragon Spacecraft
Turkish Aerospace Industries Selects VISTAGY's FiberSIM® Software to Accelerate UAV Development Program
VISTAGY'S FiberSIM® Software Helps Cut Time in Half to Design and Produce Diffuser for ING Renault F1 Team's R29 Race Car
VISTAGY's Revenues Climb 30 Percent in 2008 in Spite of Challenging Economic Environment
VISTAGY Partners with CSM Vigyan to Extend Its Leadership in the Indian Aerospace and Automotive
DEMA Selects VISTAGY's FiberSIMR Software for Composites Design on Major Commercial Airliner Program
VISTAGY Poised to Capitalize on Unprecedented Growth of Composites in Aerospace Engineering
VISTAGY Partners with AMD to Offer 64-Bit Support for Its Specialized Design Software
VISTAGY Launches New Corporate Website to Help Users Imagine, Create and Deliver Industry-leading Products More Efficiently
VISTAGY Partners with TAC to Provide Software Support and Service in Japan
VISTAGY Expands Sales Force to Capitalize on Unprecedented Growth Opportunities in Aerospace and Automotive Design Markets
Terma Selects VISTAGY's FiberSIM® Software for F-35 Joint Strike Fighter Composite Part Design
National Aerospace Laboratory NLR Purchases VISTAGY's FiberSIM® Software for Composite Design
VISTAGY Expands Executive Management Team to Capitalize on Strong Global Revenue Growth
VISTAGY to Host Renault F1 Team Racecar and CAD Engineer at JEC Composites Show 2006 in Paris
VISTAGY Announces Partnership with the National Science Foundation Center for e-Design
Carbo Tech Composites Selects VISTAGY's FiberSIM® as its Composites Design Software for Formula One Programs
VISTAGY Renews Status as Official Supplier to World Champion Renault F1 Team
VISTAGY Hires General Manager of Asia Pacific to Manage Revenue Growth of over 300 Percent
Steve Luby of VISTAGY Speaks at Global Motorsports Congress



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