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Insights

Latest Features in Oct 2023 Update for Intact.Simulation for Rhino Grasshopper

We’re pleased to announce that a new version (V2023.10.26_1.0.0) of the Intact.Simulation for Rhino Grasshopper is now available to download. This update includes bug fixes and feature enhancements based on your input

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Automated Design Space Exploration: Meta-materials Parameter Sweep

Overview Automate design space exploration of lattices with Intact.Simulation This blog demonstrates the use of Intact.Simulation to automatically find the mechanical properties of gyroid lattices for a wide range of

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Simulation-based Computational Design Workflow: Footwear demonstration

Overview Motivation A client is working on the design of a new shoe sole based on acquired plantar pressure data. The data comes in the form of an Excel spreadsheet

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Meet the New Standard in Native Model Simulation

Madison, Wisconsin, September 6, 2023 – Intact Solutions, a pioneer in the transition to mesh-free finite element simulation, announces the General Availability (GA) of Intact.Simulation for Rhino Grasshopper. This trailblazing software

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Automated Simulation of 300 Design Submissions to the GE Bracket Challenge

Overview Simulation Bottlenecks are Stifling Design Tools and Designers Modern computational design tools, including Generative AI, can help explore vast design spaces, but only if the generated designs can be

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Simulation for informing ship design

Overview Simulation Challenges Limits Ship Design Exploration Traditional mechanical simulation relies on meshing – the act of generating a boundary-conforming mesh from a given geometry. While meshing may be a

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Design of implicit lattices using simulation as feedback

Overview Why use simulation fields to drive design? Simulation fields provide a simple yet elegant design methodology used by engineers for light-weighting. The idea is straightforward: simulation fields (e.g., stress,

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Use Intact.Simulation to Effortlessly Tailor Continuous Fiber Reinforcements for High Performance

Overview Continuous Fiber Reinforcement Design and Validation using Intact.Simulation Continuous fiber (CF) reinforcement in composites comes in many forms such as plies, tapes, and tows. Often 3D representation is not

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Analyze VDB-implicit Lattice Geometries using Intact.Simulation

Summary What is VDB-implicit? VDB (Volumetric Dynamic B+ tree) is a sparse data structure that is both fast and has a low memory footprint. The VDB data structure can be used

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Complex geometry of a pedal immersed in a non-fitted analysis grid.

Immersed Method of Moments™ (IMM)

Summary What is Immersed Method of Moments™ (IMM)? Immersed Method of Moments (IMM) is a technology that uses the Finite Element Analysis (FEA) for performing simulation tasks, without the need

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NASA selects Intact to develop tools for the design, simulation, and optimization of tow-steered composites

Intact.Generative is a plug-and-play optimization toolkit built on Intact.Simulation component simulation platform, with funding from DARPA. In this STTR project, Intact Solutions will develop Intact.Fiber, a commercial-grade API that provides

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NASA JPL selects Intact to develop topology optimization of thermal control systems

Intact.Generative is a plug-and-play optimization toolkit built on Intact.Simulation component simulation platform, with funding from DARPA. This project will extend Intact.Generative into a robust commercial strength toolkit for topology optimization

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Ready to explore how meshfree simulation can de-risk your product development?

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We are redefining mechanical simulation by focusing on interoperability, heterogeneity, and complexity. Our simulation technology is easy to use, highly intuitive, and accessible, empowering under-served markets and industries facing complex engineering challenges.

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