We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Structural analysis software.
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Structural analysis software Product List and Ranking from 24 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

Structural analysis software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

  1. SCSK デジタルエンジニアリング事業本部 Tokyo//software
  2. アルテアエンジニアリング Tokyo//software
  3. null/null
  4. エヌ・エス・ティ Tokyo//software
  5. 5 null/null

Structural analysis software Product ranking

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

  1. Large-scale structural analysis software ADVENTURECluster SCSK デジタルエンジニアリング事業本部
  2. Structural analysis software for designers, Altair Inspire. アルテアエンジニアリング
  3. [FEM Analysis Case] Deformation Analysis of Construction Machinery ROPS
  4. 4 Introduction to Desktop Structural Analysis Program エヌ・エス・ティ
  5. 5 Nonlinear structural analysis software 'Ansys LS-DYNA' テラバイト

Structural analysis software Product List

61~75 item / All 103 items

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Solid Edge Simulation (Analysis Package)

Embedded in Solid Edge, utilizing simulation technology Simcenter Femap and Nastran for designers.

Solid Edge Simulation is equipped with the industry-standard solver NASTRAN and utilizes Femap technology for pre- and post-processing, allowing for the creation of thin plate meshes and the ability to change mesh sizes on a per-part basis. 【Key Points for Selection】 - The technology of Femap with NX NASTRAN is integrated into the Solid Edge interface, making the analysis features user-friendly even for beginners. - Automatic mesh generation - Flexible mesh size adjustments in manual mode - User-friendly UI and analysis features focused on design - Types of analysis: ○ Linear static analysis ○ Linear buckling analysis ○ Eigenvalue analysis ○ Heat conduction analysis (steady/transient) ○ Optimization ○ MOTION analysis ○ Vibration response analysis Additionally, coupled analyses such as: ○ Linear static analysis + steady heat conduction ○ Linear buckling analysis + steady heat conduction are possible. - Scalable integration with the higher-level Femap is available. The Solid Edge Premium package primarily supports linear static analysis and MOTION analysis. For more details, please download the catalog or contact us.

  • Company:TAC
  • Price:Other
  • 3D CAD

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3DEXPERIENCE SIMULIA <buckling, special elements, etc.>

We also ensure consistency with the user interface used by design engineers!

"3DEXPERIENCE SIMULIA" is an enhanced version of "Generative Part Structural Analysis" equipped with multiple analyses for static, frequency, and buckling analysis. It is a product tailored to the needs of analysis specialists, while also ensuring consistency with the user interface used by design engineers. With "SIMULIA," designers can perform advanced analyses themselves, allowing for repeated cycles of design, analysis, and redesign to improve quality. 【Features】 ■ Equipped with multiple analyses for static, frequency, and buckling analysis ■ Ensures consistency with the user interface used by design engineers ■ Improves product performance and reduces physical prototypes ■ Allows designers to perform advanced analyses themselves ■ Enables repeated cycles of design, analysis, and redesign to enhance quality *For more details, please refer to the PDF document or feel free to contact us.

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  • Other analyses
  • Structural Analysis
  • Other operation management software

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3DEXPERIENCE SIMULIA <Nonlinear Analysis>

Provides advanced contact features! Models the nonlinear elasticity of material plasticity and superelastic materials.

"3DEXPERIENCE SIMULIA" extends the capabilities of "CATIA V5 Analysis," enabling more advanced simulations that include nonlinear effects. It primarily models the plasticity of materials such as metals and the nonlinear elasticity of hyperelastic materials like rubber. In "Nonlinear Structural Analysis," it also offers more advanced contact features, such as the automatic creation of contact surfaces based on the proximity of geometries. 【Features】 ■ Enables more advanced simulations that include nonlinear effects (such as large displacements and material nonlinearities) ■ Primarily models the plasticity of materials such as metals and the nonlinear elasticity of hyperelastic materials like rubber ■ Provides more advanced contact features, including the automatic creation of contact surfaces based on the proximity of geometries *For more details, please refer to the PDF document or feel free to contact us.

  • image_31.png
  • Other analyses
  • Structural Analysis
  • Other operation management software

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General-purpose structural analysis software "ASU/ISTR" for structure, heat transfer, and vibration.

A dedicated pre/post-processor that supports the practical use of the free solver FrontISTR, capable of large-scale analysis of various engineering problems such as structural, heat transfer, and vibration analysis.

ASU/ISTR has packaged the free general-purpose structural analysis software FrontISTR, developed by FrontISTR Commons (Representative Director: Professor Hiroshi Okuda, The University of Tokyo), into a Windows version with pre- and post-processing capabilities for easy use by anyone. - Covers the main features of FrontISTR - Equipped with a robust automatic solid mesh generation function that supports multi-part models, allowing for immediate analysis setup and execution once CAD data is provided. - The open-source solver can be used commercially at no cost, and license fees do not increase even for large-scale problems. - A basic material database is provided, supporting isotropic and orthotropic materials. - We also offer customization development of pre- and post-processing to fit your unique workflow. - Utilizes our GUI platform ASU/GROOVE, which has over 140 successful implementations. - Our company has members who are part of the FrontISTR solver development team, capable of addressing advanced technical requests, such as adding unique calculation routines to the solver.

  • Structural Analysis
  • Stress Analysis
  • simulator

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"SimGlycan" Glycan & Glycopeptide Structure Analysis Software

Tools for glycomics using mass spectrometry data of glycan chains and glycopeptides.

It automatically reads MS/MS and MSn data obtained from major manufacturers' mass spectrometers to predict glycan structures. Furthermore, it comprehensively supports glycopeptide analysis using LC-MS/MS data. SimGlycan matches the experimentally obtained MS/MS data with its proprietary database and ultimately generates a ranked list of candidate structures.

  • Separation device
  • Analytical Equipment and Devices
  • Other environmental analysis equipment

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"SimLipid" lipid structure analysis software

Software tool for lipidomics using mass spectrometry data of lipids.

High-throughput identification and quantification of lipid species can be performed from MS data such as LC-, MALDI-, ESI-, precursor ion scans, and neutral loss scans. We support all data types from major mass spectrometry manufacturers, including Triple Quad, qTOF, TOF, QqTOF, ion mobility, and ITMS systems, aiming to provide a complete solution for discovery lipidomics and targeted lipidomics research.

  • Separation device
  • Analytical Equipment and Devices
  • Other environmental analysis equipment

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CAE: Material property settings in the plastic domain

Approximate the plasticity domain with a single straight line! We will use a method called "two-line approximation" to reduce computation time.

Many resins have properties in both the elastic region and the plastic region. In the elastic region, the strain returns to zero when the stress is removed, resulting in linear behavior. However, in the plastic region, the strain does not return to zero when the stress is removed, leading to nonlinear behavior. To perform calculations in the nonlinear region during structural analysis, it is necessary to input material properties. However, inputting properties for the nonlinear region requires entering strain values for each stress point, which is quite cumbersome. Additionally, the computation time becomes longer. To simplify the input of material properties, we use a method called "two-line approximation" to shorten the computation time. This approach replaces the properties of the resin from the yield point to the fracture point with a single straight line (tangent modulus). This method is particularly suitable for quickly checking design values in models with a large number of elements and significant computational scale. *For more details, please refer to the related links or feel free to contact us.*

  • Structural Analysis

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