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FiberSIM 15.2.0 for Catia V5.Creo.NX Win64

cadcamaec@protonmail.com2023-10-14CAD.CAID136
CompleteCompositesDesignandManufacturingSoftwareSolutionsAboutFibersimDefiningcompositepart

Complete Composites Design and Manufacturing Software Solutions

About Fibersim

Defining composite parts requires engineers to apply their ingenuity to the design of surfaces, ply boundaries, and insertion boundary geometries. Composite design requires the use of large amounts of data, often referred to as indivisible ply assemblies. Each of these plies can contain up to 150 attributes that must be associated with the geometry. Fibersim uses higher levels of composite object association, a configurable composite database, and industry-proven productivity simulation capabilities to ensure that attributes consistently turn engineers' inspirations into real designs.


The Fibersim software portfolio supports the highly complex and detail-oriented end-to-end design and manufacturing processes required to engineer composites. Leaders in the aerospace, automotive, marine and wind energy industries recognise that composites will play an important role in the development of innovative, lightweight and durable products of the future, and that it is important to understand the data required for individual composite parts. Integrated into leading commercial 3D CAD systems including NX™ software, CATIA® V5 software and PTC Creo® software, Fibersim works seamlessly together and is the only comprehensive software that meets the requirements of the entire composites engineering process, from conception, ply definition and ply generation, to simulation, documentation and manufacturing.


Key Features and Benefits

Fibersim supports every aspect of the composite part development process, including:


Helping engineers specify the composite material and select the optimal ply creation method for the job (whether it is a ply-based, zone-based or structure-based design)

Automatically creating ply geometry by defining transitions using sequential, descending, and staggered profiles (which automatically populate the CAD model), eliminating the tedious process of manually creating CAD curves for each ply

Generate variable offset surfaces and solids, including prototype surfaces for interference checking, mating surfaces for joining parts together, and tooling surfaces for fabrication

Verifying and communicating design requirements by automatically generating engineering documents and/or Microsoft Excel sheets.

Simulate the productivity of parts based on materials and manufacturing processes to provide early feedback and improve the efficiency of the development process.

Define manufacturing boundaries and details such as joints, triangles, and strips to reduce costs and speed part delivery.

Automatically create manufacturing documentation to guide shop floor processing in the factory to ensure consistent layup and product quality.

Automatically generate and share manufacturing data, such as spreads and data used to drive automated cutting machines, laser projection systems, fibre spreaders and tape spreaders, with downstream processes and across the enterprise.

Fibersim 15 maximises the use of specification design to improve accuracy

Efficient definition of capacity-loaded part types

Fibersim 15 can now be used to efficiently define capacity-loaded part types, enabling more accurate simulation of manufacturing throughput and the generation of spreads based on wrinkled surfaces. Volumetric loading now accepts multiple loading of surfaces that are parallel or at an angle to the original laminated surface. User feedback and curve manipulation workflows have also been improved, dramatically reducing the time it takes to determine the intersection of control capacity surfaces for the calculation of laminate boundaries.


Automated design of spine-based transitions and lamella boundaries with finite geometry creation capabilities

In an update to Fibersim 15, spine-based transitions have been updated to improve the process that design engineers must complete in order to create or modify layer sheet boundaries. Fibersim can now automatically generate transition curves by intersecting a plane perpendicular to the curve or by intersecting a custom plane at an angle to the curve. This improvement reduces the time it takes to create or modify geometry to obtain the desired layer boundaries.


Improve overall part efficiency with self-stacking laminations.

New enhancements in Fibersim 15 make it easier for engineers to define wrapped laminations with stacking, which can be used to create cross-sections, test manufacturing throughput, or generate spreads. This enhancement replaces the previously labour-intensive task of creating, documenting, verifying and generating spreads for composite parts from self-stacking laminates. Since this enhancement is related to the generation of data from self-stacking laminates, it will increase the efficiency of the entire development and manufacturing process.


Bridging the gap between designing and manufacturing parts where fibres go

Fibersim 15 enables users to understand the expected effect of manufacturing production capabilities based on the simulation flow relative to the ply orientation (ply flow) or fibre orientation. Without this functionality, differences between design and manufacturing fibrepaths often result in parts being overbuilt and manufacturing scrap rates well above the acceptable range. With this enhancement, engineers can generate spreadsheets based on the production process and more consistently align the fibre paths as designed with those actually manufactured.


Eliminate Potential Errors During Initial Design and Iteration

The Fibersim 15 update focuses on improving the iterative analysis and design workflow. Material specifications and plies can now be tracked against the finite element model throughout the design process. This enhancement will provide a cost-effective way to iterate on bi-directional analyses while preventing the overbuilding of composite parts due to lack of traceability.


Reduce Data Time, Spend More Time Designing

Data management features such as Sort, Group, and Find have been upgraded in Fibersim 15. Now you can spend more time designing composite parts instead of searching for the "right" object for your design. "Active Layer Filtering" allows filtering of all or some of the composite design objects in an assembly based on the currently processed layer. "Continuously Show Selected Items" keeps filtered data filtered even after the user moves to another object.


Deep Integration Simplifies Composite Design Data Generation Management and Sharing

Fibersim 15 continues to improve integration with NX and Teamcenter to provide an enterprise-class solution that makes it easy to create, manage, share and review composite design data at every stage of the part development process. With a variety of new and improved features, designers can share the characteristics of their composite designs, such as mass, centre of gravity and point of inertia, by assigning values to NX weight management, which can then be further transferred and populated into Teamcenter. Fibersim 15 also enables single sign-on to Teamcenter.



FiberSIM The nature of fiber-reinforced plastic products require rapid changes in the way analysis, design and manufacturing is traditionally performed. Unravel the complexities of these materials with the Fibersim portfolio of software. Experience a concurrent engineering process where analysis and design are performed in the context of the manufacturing process, which is key to developing optimal designs. The open architecture of Fibersim provides a specialized engineering environment to create a composite digital twin in NX, CATIA, or CREO.


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CATIA V5R24 64-bit
CATIA V5R25 64-bit
CATIA V5R26 64-bit (to use CATIA V5R26 on Win10 the minimum requirement is SP2)
CATIA V5R27 64-bit
NX 9.0.1+
NX 10.0.2+ (to use NX 10 on Win10, the mimimum required version is NX 10.0.3)
NX 11
Creo Parametrics 2.0 M090+
Creo Parametrics 3.0 F000+
Creo Parametrics 4.0/5.0 (officially not supported but can be installed)



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