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Analysis Software(cae) - List of Manufacturers, Suppliers, Companies and Products | IPROS GMS

Last Updated: Aggregation Period:Jun 10, 2026~Jul 07, 2026
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Analysis Software Product List

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Removing the barriers between designers and analysts: "Simcenter 3D"

It is a CAE tool that directly imports design data and handles coupled analysis (multiphysics) within a single framework.

"Simcenter 3D," a powerful tool that integrates CAE solutions from various specialized fields, can perform coupled analysis (multiphysics) simulations such as structural-fluid, structural-thermal, structural-thermal-fluid, and structural-mechanical analyses. It allows for the direct import of design data, mesh generation, and analysis all within a single framework. This is the digital tool of the future that removes the barriers between designers and analysts.

  • Plastic processing machines (cutting and rolling)
  • Analysis Services
  • Analysis Software

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CAE-specialized PLM solution 'CATIA V5'

Innovation from "simple design" to "performance design" utilizing CAE technology.

CATIA V5 is a high-end 3D CAD program developed by Dassault Systèmes and released in 1981, which can be considered a representative of this category. It has been widely used in the automotive and aerospace industries for many years, and is also extensively utilized in industries such as industrial machinery, electronics, shipbuilding, plant design, and consumer goods. The development of CAE technology based on the CATIA platform allows for performance design that takes product performance into consideration, moving beyond simple design tasks. Particularly in handling assemblies, the performance of the solid kernel, which enables advanced geometric data handling (including libraries for surface data necessary for modeling, topological data, and editing history management), is extremely high. This capability not only facilitates the handling of complex curved shapes and assemblies with numerous parts but also significantly reduces the effort required for simpler operations, such as generating interpolation surfaces between surfaces and creating fillet surfaces for surfaces that touch at points. *For more details, please refer to the PDF materials or feel free to contact us.*

  • Company:IDAJ
  • Price:Other
  • 3D CAD
  • Thermo-fluid analysis
  • Structural Analysis
  • Analysis Software

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CAE: The concept of inverse bending analysis

A CAD model that ignores mold design! We are considering applying it to various automotive parts in the future.

Our company has increasingly been utilizing resin flow analysis for product launches. However, if the analysis indicates that the deformation does not remain within the target amount, we will need to reconsider the product shape. That said, there are often cases where the product shape cannot be significantly altered due to specifications. Furthermore, even if we were to make substantial changes to the product shape, we cannot guarantee that it would remain within the target deformation amount. As a solution, our company is implementing "inverse warpage analysis" as one approach to effectively utilize analysis results and reconstruct models. Currently, there are requests to apply this to certain automotive parts, and we are considering its application to various automotive components in the future. *For more details, please refer to the related links or feel free to contact us.*

  • Other analyses
  • Analysis Services
  • Analysis Software

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Technical Support / Training

We provide constant support with a system that meets all needs.

Our company provides not only CAE tool offerings but also comprehensive solutions to address the challenges and concerns faced by our customers through technical support/education, technical consulting, and system development. In "Technical Support/Education," we accurately support our customers in various situations, from resolving basic issues such as tool usage to handling analysis troubles, launching new technologies, and providing educational programs for CAE skill enhancement. We have support engineers available at all times within the company, and we accept inquiries via phone and email. 【Features】 ■ A support system that comprehensively meets customer needs ■ Technical support from engineers with abundant experience, know-how, and skills ■ A unique process that follows up on the smooth launch of customers' analysis technologies ■ "IDAJ Numerical Analysis Academy" that supports the improvement of CAE skills *For more details, please download the PDF or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Technical Seminar
  • Thermo-fluid analysis
  • Structural Analysis
  • Analysis Software

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CAE Automation Process Construction System "EASA"

Simplifying the usage environment of software and databases! A system that streamlines usage.

In IDAJ's "EASA," you can easily build web-based applications that simplify the usage environment for software and databases, allowing for efficient utilization. The built applications can be deployed and accessed anywhere on the internet. Users can skip tasks such as reinstalling by re-confirming how to use the application. 【Features】 ■ Achieves a seamless web usage environment for software and databases ■ Easy GUI construction with the application builder ■ Centralized management of data, users, and applications ■ Standard library that supports multiple languages *For more details, please refer to the PDF materials or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Analysis Services
  • Integrated operation management
  • Other operation management software
  • Analysis Software

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TRANSMISSION3D

It is a finite element method program that can analyze all components of the gearbox.

"TRANSMISSION3D" is analysis software developed specifically for gear analysis using the finite element method. It is also possible to model other components such as shafts, bearings, rims, carriers, and housings as finite elements, treating all of them as elastic bodies. Please feel free to contact us if you have any requests. 【Features】 ■ Prediction of object deformation and stress ■ Automatic mesh generation ■ Solution methods for boundary nonlinear (contact) conditions ■ Modeling of multiple contact objects ■ Types of gears, etc. *For more details, please download the PDF or feel free to contact us.

  • Software (middle, driver, security, etc.)
  • Analysis Software

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[Technical Document] Current Status of CAE Prediction Technology for Processing Limits in Bulk Molding

Technical support through numerical simulation is essential! We will introduce examples of its application to actual forging.

This document provides an overview of the numerical simulation techniques used in forging process design and examples of their applications. In advancing the design and development of processes utilizing multi-motion to achieve a variety of processing variations, technical support through numerical simulation is essential. It includes application examples related to actual forging, such as deep hole machining of shaft components and closed forging of hollow components with flanges. We encourage you to read it. [Contents] ■ Introduction ■ Prediction methods for cracking using numerical simulation ■ Application examples in actual forging ■ Conclusion ■ References *For more details, please refer to the PDF document or feel free to contact us.

  • Technical and Reference Books
  • Analysis Software

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Reduction of molding defects and improvement of mold life through the introduction of CAE technology.

Improving molding efficiency by maintaining and managing the mold at the appropriate temperature and reducing solidification time!

We propose "reducing molding defects and improving mold lifespan through the introduction of CAE technology." It is possible to transfer technology after you have implemented the software, and if you provide input data, we can offer consulting services that output data on thermal deformation due to differences in linear expansion rates of individual components that make up the mold, external forces (clamping force), contact and friction between components, and creep predictions on the product side. We have included a case study where mold warpage was reduced by 29%. [Proposal Overview] ■ To further improve the accuracy of mold temperature predictions and product molding predictions, we propose fluid analysis (CFD) and optimization technologies. <Proposal 1> - Utilizing the open-source-based general-purpose CFD software "iconCFD" to achieve large-scale calculations at low cost. <Proposal 2> - Utilizing the world-class leading tool for general fluid analysis "ANSYS Fluent." *For more details, please refer to the PDF document or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Development support tools (ICE, emulators, debuggers, etc.)
  • simulator
  • Other analyses
  • Analysis Software

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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
  • Analysis Software

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A.C.T. Corporation Product Catalog

A specialized company for 'structural, thermal, and fluid analysis, and CAE development support'! We will introduce our products.

This catalog introduces the products handled by ACT Co., Ltd., a specialized company in "structural, thermal, and fluid analysis, and CAE development support." It features design support analysis tools such as "MPACT/Mpave," which is equipped with solid modeling and mesh division functions, as well as "TrueGrid," which allows for rapid and easy mesh generation through projection methods. We invite you to read it. [Contents] ■ Structural, thermal, and fluid coupled analysis tool: MPACT/Mpave ■ Development and commercialization of analysis software using mesh-free methods and particle (SPH) methods ■ Optimization software for structural components using AI technology ■ High-quality mesh generation engine for FEA & CFD analysis: TrueGrid ■ Support for industrial endoscope inspections and non-destructive testing using ultrasound ■ Provision of advanced structural, thermal, and fluid analysis solutions and consulting services *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis
  • Analysis Services
  • ISO-related consultant
  • Analysis Software

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Plastic Molding Flow Analysis Software【Moldex3D】

We provide technology that reduces trial and error through complete 3D simulation visualization technology!!

Moldex3D, a complete 3D resin flow analysis software, simulates the behavior inside molds during the plastic molding process on a computer, aiming to foresee and prevent any troubles that may arise during various processes. 【Features】 ■ Large-scale, high-speed analysis using the finite volume method for high-precision 3D analysis In traditional finite element method (FEM), computation time increases geometrically with the number of elements, whereas in the finite volume method (FVM), it increases linearly, making it overwhelmingly advantageous as the number of elements increases. ■ High-precision 3D analysis It faithfully solves the Navier-Stokes equations based on non-Newtonian fluids and can consider the effects of inertia and gravity, allowing it to handle complex phenomena such as runner balance and jetting. Unsteady cooling analysis and vent analysis are also supported as standard features. ■ High-performance computing capabilities By efficiently utilizing multi-core, multi-CPU, and multi-PC clusters, it achieves cutting-edge computation speeds. It supports: - Flow analysis - Pressure holding analysis - Cooling analysis - Stress analysis - Warpage analysis - Structural analysis integration For detailed features, please refer to the catalog.

  • Automotive_Design_Automotive industry01.jpg
  • Automotive_Design_Car01.jpg
  • Consumer Products_Design_Drill01.png
  • Eletronics_Design_Bearing Bush.jpg
  • Eletronics_Design_TV.JPG
  • Medical_Design_Hip replacement.jpg
  • Optics_Design_Progressive Addition Lenses.jpg
  • Thermo-fluid analysis
  • Resin mold
  • Analysis Software

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Prospects of Welding CAE and User Cases - ASU/WELD Latest Technology Seminar

Keynote Speech by Professor Emeritus Eiichi Murakawa, Osaka University, Introduction of User Cases, Presentation of the Latest Features of Welding Distortion Analysis ASU/WELD-Express.

【~Prospects of Welding CAE and User Cases~ ASU/WELD Latest Technology Seminar】 Date: November 21, 2025 (Friday) Doors open at 12:45, Starts at 13:00 Location: TKP Shinagawa Conference Center 9th Floor, Hall 9A + 9B Overview: Keynote speech by Professor Emeritus Eiichi Murakawa from Osaka University, User case of ASU/WELD by Mr. Takafumi Kato from Yutaka Giken Co., Ltd., Introduction of the latest features of welding strain analysis from our company 13:00–13:10 Opening remarks 13:10–14:00 Keynote speech by Professor Emeritus Eiichi Murakawa, Osaka University 14:00–14:35 ASU/WELD User Case by Mr. Takafumi Kato, Yutaka Giken Co., Ltd. 14:35–15:10 Introduction of the latest features of ASU/WELD-Express for welding strain analysis 15:10–15:25 Break 15:25–16:15 Special lecture by Mr. Yasunori Shibata, Subaru Corporation Register here: https://docs.google.com/forms/d/e/1FAIpQLSdQ3CUAXO7ktUD0RMRMTWXUsXGYFO3aSzYJJTiTzf25ZoQ-dA/viewform

  • others
  • Analysis Software

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Abaqus + α Solution "Shape Optimization"

Achieve design efficiency on CAE! Significantly reduce man-hours by effectively utilizing existing models.

At IDAJ, we propose to enhance design efficiency on CAE by effectively utilizing Abaqus models. By making effective use of existing models, we can significantly reduce the man-hours required for preparing parametric model creation. When integrated with modeFRONTIER, we provide designers with "hints" for optimization to address the multi-objective optimization problems faced in design development. 【Features】 ■ Import Abaqus inp files and quickly modify shapes ■ No need to regenerate the mesh or reset boundary conditions after shape modification ■ Parameterization of shapes such as hex-mesh models that are difficult to generate automatically ■ No need for complex script preparation to build optimization systems ■ Support for optimal design considerations using cutting-edge optimization methods and experimental design techniques *For more details, please refer to the PDF materials or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Structural Analysis
  • Thermo-fluid analysis
  • Analysis Services
  • Analysis Software

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[Free Data Download & Acoustic Analysis] Calculation of the Impact of Sound Bridge

For efficient design with minimal rework.

When looking at textbooks on acoustical engineering and architectural acoustics, you will find descriptions stating that doubling the walls is effective for enhancing sound insulation. Of course, this method is very effective, but there is one often-overlooked point: it is very difficult to make the two walls independent, so in reality, the two walls are installed through a common pillar, causing vibrations from one wall to be transmitted to the other. This phenomenon is called a sound bridge and is one of the major factors that prevent sound insulation performance from improving as expected. Here, we will introduce the basic principles of sound insulation with double walls and the effectiveness of an acoustic CAE (Computer Aided Engineering) approach to examining sound bridges. - Theory of double walls - Sound bridge If you are interested in acoustic design, please take a moment to read this. Free download of the materials ⇒ https://www.idaj.co.jp/whitepaper/0018/form.html

  • Company:IDAJ
  • Price:Other
  • Acoustic Analysis
  • Contract Analysis
  • Structural Analysis
  • Analysis Software

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[ASU/V-Struct Implementation Case] Kawanishi Industrial Co., Ltd.

Technical data presentation in progress! Practical application of simulation technology for improving the automotive headlining molding process.

We would like to introduce a case study of the implementation of the structural analysis software 'ASU/V-Struct' at Kawanishi Industrial Co., Ltd., a global comprehensive manufacturer. At the company, due to the viscoelastic nature of the headlining (ceiling material) molding, it was difficult to make predictions through simulations, resulting in significant time and costs for evaluations using actual parts, which posed challenges to development speed. After the implementation, factors related to moldability were identified, and pre-simulation evaluations became possible, leading to a significant improvement in production stability, with almost no need for rework after molding. Details of the expected effects of CAE and the development overview can be found in the PDF document, so please take a look. [Challenges] ■ Significant time and costs incurred for evaluations using actual parts ■ Increased demand for further improvement in development speed *For more details, please download the PDF or feel free to contact us.

  • Structural Analysis
  • simulator
  • Analysis Software

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[ASU/V-Struct Implementation Case] Kasai Industrial Co., Ltd.

Technical data presentation in progress! Practical application of simulation technology for improving the automotive headlining molding process.

We would like to introduce a case study of the implementation of the structural analysis software 'ASU/V-Struct' at Kawanishi Industrial Co., Ltd., a global comprehensive manufacturer. At the company, due to the viscoelastic nature of the headlining (ceiling material) molding, it was difficult to make predictions through simulations, resulting in significant time and costs for evaluations using actual parts, which posed challenges to development speed. After the implementation, factors related to moldability were identified, and pre-simulation evaluations became possible, leading to a significant improvement in production stability, with almost no need for rework after molding. Details of the expected effects of CAE and the development overview are available in the PDF document, so please take a look. [Challenges] ■ Significant time and costs incurred for evaluations using actual parts ■ Increased demand for further improvement in development speed *For more details, please download the PDF or feel free to contact us.

  • others
  • Analysis Software

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Nonlinear structural analysis software 'Ansys LS-DYNA'

Finite element analysis software equipped with both explicit and implicit solvers, capable of accurately analyzing nonlinear phenomena such as collisions, drops, and plastic processing.

LS-DYNA is a structural analysis software that accurately analyzes nonlinear phenomena such as collision, drop problems, and plastic processing. It is equipped with numerous practical functions for product design and strength evaluation, and is widely used across various industrial sectors as a core structural analysis software in CAE. It helps reduce lead times, cut costs, and ensure quality in all phases of manufacturing, including design, development, prototyping, and mass production.

  • Other analyses
  • Analysis Software

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Heat Transfer and Structural Coupled Analysis Software ASU/V-Struct

It is possible to stably compute large deformation analysis and coupled problems of nonlinearity (material, geometry, contact) and heat, which are difficult with general-purpose CAE software.

ASU/V-Struct is a high-performance thermal elastoplastic structural analysis program based on V-Struct, developed by the VCAD system research program at the RIKEN Institute. It features a thermal stress-thermal conduction coupled analysis solver that takes into account contact between deformed bodies, contact heat transfer, and pressure application to the processed material. This allows for the simulation of deformation and residual stress in molded products due to heat in processes such as hot pressing, casting solidification, and resin injection molding cooling, where temperature changes need to be considered. It is also applicable to other analyses such as mold deflection, clamping, vacuum forming, and adhesion analysis.

  • others
  • Analysis Software

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Heat Transfer and Structural Coupled Analysis Software ASU/V-Struct

It is possible to stably compute large deformation analysis and coupled problems of nonlinearity (material, geometry, contact) and heat, which are difficult with general-purpose CAE software.

ASU/V-Struct is a high-performance thermal elastoplastic structural analysis program based on V-Struct, developed by the VCAD system research program at the RIKEN Institute. It features a thermal stress-thermal conduction coupled analysis solver that takes into account contact between deformed bodies, contact heat transfer, and pressure application to the processed materials. This allows for the simulation of deformation and residual stress in molded products due to heat in processes such as hot pressing, casting solidification, and resin injection molding cooling, where temperature changes need to be considered. It can also be applied to other areas such as mold deflection, tightening, vacuum forming, and adhesion analysis.

  • Structural Analysis
  • Analysis Software

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Multiphysics Coupling Analysis Interface 'MpCCI'

Multiphysics coupled analysis as you wish!

"MpCCI (Mesh-based parallel Code Coupling Interface)" is a coupling analysis interface developed by the German company scapos AG. This product enables the coupling of different CAE analysis software, such as fluid analysis software and structural analysis software, allowing for data exchange and facilitating weakly coupled analyses. It can simulate multiphysics phenomena such as fluid-structure coupling and fluid-electromagnetic field coupling. 【Features】 ■ Adaptable to various coupling analyses – multiphysics ■ Interface with various CAE software ■ Excellent data mapping capabilities ■ Strong support for mesh movement problems ■ User-friendly GUI ■ High extensibility that can be customized according to analysis content *For more details, please refer to the PDF materials or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Structural Analysis
  • Thermo-fluid analysis
  • Analysis Services
  • Analysis Software

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Engineering Consulting Services

Trusted optimization/analysis/development contract services for customers worldwide.

Our company offers top-class engineering consulting services utilizing advanced CAE methods. We specialize in product development centered around optimization and simulation. Please feel free to contact us if you have any inquiries. 【Provided Technologies】 ■ Optimization ■ Design Development ■ Composite Materials ■ Software ■ CFD ■ Advanced Simulation *For more details, please download the PDF or feel free to contact us.

  • Analysis Services
  • Analysis Software

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Full car model 50 km/h frontal collision analysis

Evaluating collision safety performance! Here is an example of a full car model collision analysis conducted.

We would like to introduce our CAE analysis services. We have included an example of a full car model collision analysis. From the analysis results, we created a vehicle deceleration displacement diagram (G-S diagram) to evaluate collision safety performance. Leveraging our design experience in automotive and railway vehicle development, we provide services from initial evaluation to improvement proposals. 【Overview】 ■RADIOSS: Collision Analysis - Number of elements: 1,919,302 - Number of nodes: 1,969,831 *For more details, please refer to the PDF document or feel free to contact us.

  • Company:HIVEC
  • Price:Other
  • Analysis Services
  • Contract Analysis
  • Contract Analysis
  • Analysis Software

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CAE Contract Analysis, Commissioned Analysis, and Outsourcing - Eigenvalue Analysis

Eigenvalue analysis is important for addressing and examining resonance issues. Experienced engineers will check the natural frequencies and mode shapes, and assist with countermeasures and considerations.

Eigenvalue analysis is used to confirm fundamental issues in products. It helps to determine what kind of natural frequencies exist and what the natural modes are, aiding in the resolution of resonance problems. It is utilized in various fields such as automotive, aerospace, railways, shipping, plants, industrial machinery, construction machinery, civil engineering, and the medical field. 【Features】 - Proposal-based contract analysis by experienced engineers. - Suggestions for condition setting considerations and improvement measures based on analysis results. - Thorough pursuit of "high quality," "short delivery times," and "cost performance." - Utilizes globally trusted and high-precision software such as 'ABAQUS' and 'NASTRAN.' - High repeat rate. 【Examples of Target Products】 - Automobiles - Aircraft - Railways - Ships - Plant equipment (pressure vessels, piping, etc.) - Construction machinery - Machine tools and presses - Molds and jigs - Semiconductor devices - Robot arms - Industrial equipment - Bridges and dams - Medical devices and nursing equipment It is applied in various areas. For more details, please request materials or view the PDF data available for download.

  • Contract Analysis
  • Analysis Services
  • Other analyses
  • Analysis Software

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CAE Contract Analysis, Commissioned Analysis, and Outsourcing - Collision Analysis

Experienced engineers will propose appropriate analysis methods tailored to your analysis objectives. We assist in analyzing phenomena related to the collision of objects.

In collision analysis, it is used to identify collision issues in products. It helps to confirm what kind of forces occur during a collision, what behaviors are exhibited, and can be utilized for safety verification and quality improvement. It is utilized in various fields such as automotive, aerospace, railways, shipping, plants, industrial machinery, construction machinery, civil engineering, and the medical field. 【Features】 - Proposal-based contracted analysis by experienced engineers. - Suggestions for condition setting considerations and improvement measures based on analysis results. - Thorough pursuit of "high quality," "short delivery times," and "cost performance." - The software used includes globally trusted and high-precision tools like "Radioss." - High repeat rate. 【Examples of Target Products】 - Automobiles - Aircraft - Railways - Ships - Plant equipment (pressure vessels, piping, etc.) - Construction machinery - Machine tools and presses - Molds and jigs - Semiconductor devices - Robot arms - Industrial equipment - Bridges and dams - Medical devices and nursing equipment It is utilized in various areas. For more details, please request materials or view the PDF data from the download section.

  • Contract Analysis
  • Analysis Services
  • Other analyses
  • Analysis Software

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[Technical Column] Musculoskeletal Analysis - Unraveling the Mechanisms of Human Movement

There are broadly two types of approaches! They can be applied to various research fields related to humans.

In this column, we will explain "musculoskeletal analysis," which is a type of CAE in the field of bioengineering. Musculoskeletal analysis involves creating a human model (musculoskeletal model) composed of muscles and bones to replicate human movements, and it calculates the muscle activity during these movements and the forces acting on various parts of the model. The analysis uses motion capture data measured from the subject's movements. We invite you to read on. 【Contents】 ■ What is musculoskeletal analysis? ■ Analysis methods ■ Application fields ■ Conclusion *For more detailed information about the column, please refer to the related links. Feel free to contact us for further inquiries.

  • Other analyses
  • Analysis Software

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