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Points to consider in the evaluation of CAE results (2)

It is necessary to virtually create a reference surface and define it as the reference surface!

Typically, when conducting CAE, the model is mostly in STEP/IGES format. In this format, the dimensions of the model are included, and the surfaces are not distorted. Therefore, the coordinate system can be easily created. However, in solid analysis, it is necessary to reproduce the deformation of the model, so it is automatically converted from STEP format to point cloud STL format. This means that the dimensions and surfaces that the model had will be distorted. In this case, there is not even a reference surface, let alone a coordinate system. Thus, it is necessary to virtually create a reference surface and define it as the reference surface. Measurements are conducted not only in the analysis but also on actual molded products on surfaces that have been virtually created in the same way. *For more details, please refer to the related links or feel free to contact us.*

  • Other analyses

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Simulink Model Conversion Tool "mtrip"

Mutual conversion between architecture design models of general-purpose modeling languages such as SysML, UML, DFD, and MATLAB/Simulink.

"mtrip" is a tool that converts architecture design models described in general modeling languages such as SysML, UML, and DFD (Data Flow Diagrams) into detailed design models in MATLAB/Simulink, and vice versa. If changes to the detailed design model are not synchronized with the architecture design model, it will gradually become difficult to consider the model structurally. 'mtrip' synchronizes the architecture design model and the detailed design model, allowing for viewing the model from different perspectives while maintaining high maintainability. It enables the use of appropriate models for each scenario and seamless connections: - "Pre-development model" that requires rapid implementation of algorithms and feedback. - "Architecture model" for organizing domain issues and designing a robust structure strong in maintenance and reuse. - "Mass production development model" that utilizes a comprehensive toolchain for code generation, simulation, and verification. *For more details, please download the PDF or feel free to contact us.

  • Software (middle, driver, security, etc.)
  • Development support tools (ICE, emulators, debuggers, etc.)
  • Other embedded systems (software and hardware)

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