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CAE for strength analysis of industrial machinery ASU/ISTR

A FrontISTR-compatible environment that can analyze the rigidity, thermal deformation, and vibration characteristics of large-scale equipment with high precision.

ASU/ISTR is a Windows-based pre-post integrated package that allows for strength evaluation, thermal deformation analysis, and vibration analysis required for industrial machinery and production equipment to be conducted in a single environment. It standardly employs FrontISTR, which can stably compute even for large models and multi-part models. 【Features】 - Optimal for strength analysis of large equipment, frames, and structural frameworks - Automatic solid mesh generation function that can stably produce even for multi-part models - No increase in licensing costs for large-scale analyses due to the free solver - Flexibly addresses device-specific issues such as thermal loads and deformation of mechanical parts - Customizable pre-post functions to align with the operations of equipment manufacturers - Utilizes the well-established ASU/GROOVE as its platform - Supports the addition of advanced calculation logic by solver development team members

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CAE for Aerospace Structural Analysis ASU/ISTR

Responding to analysis requirements unique to the aerospace field, such as lightweight design, high-strength materials, and vibration characteristics.

ASU/ISTR is a dedicated pre-post integrated software for FrontISTR that can handle the stringent analysis conditions required for high-rigidity structures, thermal variation environments, and vibration impacts in aircraft and spacecraft. It enables stable modeling and calculations even for complex composite structures and multi-part assemblies. 【Features】 - Supports high-precision strength analysis for airframe, wing structures, support frames, etc. - Capable of complex analyses unique to aerospace, such as thermal loads and vibration environments. - Generates high-quality automatic meshes even for complex curved surfaces and thin-walled structures. - Large-scale models can be computed at no additional cost using a free solver. - Suitable for composite material analysis as it can handle orthotropic materials. - Customizable user interface tailored to aerospace workflows. - FrontISTR developers can respond to technical requests and implement unique analysis logic.

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