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Analysis Software Product List and Ranking from 292 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Apr 22, 2026~May 19, 2026
This ranking is based on the number of page views on our site.

Analysis Software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Apr 22, 2026~May 19, 2026
This ranking is based on the number of page views on our site.

  1. システムプラス 本社 Kanagawa//Industrial Electrical Equipment
  2. SAS Institute Japan JMP Japan Division Tokyo//software
  3. ミューテック Tokyo//software
  4. 4 ウェーブフロント 本社 Kanagawa//software
  5. 5 フォトン Kyoto//software

Analysis Software Product ranking

Last Updated: Aggregation Period:Apr 22, 2026~May 19, 2026
This ranking is based on the number of page views on our site.

  1. FEMtools Model Update システムプラス 本社
  2. JMP SAS Institute Japan JMP Japan Division
  3. [FEM Analysis Case] Stress Analysis of a Crusher
  4. 4 Impact and Collision Analysis Software PAM-CRASH 日本イーエスアイ
  5. 5 High-precision casting analysis software ProCAST 日本イーエスアイ

Analysis Software Product List

691~720 item / All 1311 items

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High-performance press forming simulation "Stampack"

Transforming the design process to achieve early launch of new products!

High-Performance Press Forming Simulation 'Stampack' ~ Achieving Early Market Introduction of New Products through Transformation of the Design Process! ~ By introducing computer simulation into the sheet forming process, it becomes possible to predict issues such as sheet breakage, wrinkles, and springback even before the design is finalized, before mold manufacturing, and before prototype forming. This allows for the anticipation of the final component shape, the effects of molds and tools, the effects of beads and guides, and the effects of sheet coatings. As a result, component designers, mold manufacturers, and final press processors can produce high-quality products, reduce trial-and-error methods, and significantly decrease the risks associated with market arrival time predictions and estimates. 【Features】 ● User-friendly Windows environment pre-post ● Full support for specialized analysis functions dedicated to the entire sheet forming process ● Dedicated automatic meshing function ● Latest automatic time-stepping explicit nonlinear dynamic finite element method analysis ● Technology and reliability recognized by worldwide users

  • Stress Analysis
  • Analysis Software

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Injection Molding Analysis Software "MAPS-3D"

- Complete solid, high-speed, injection molding simulation -

Consistent and Easy Complete Solid Analysis: Directly analyze 3D solid models. Usable easily by beginners regardless of specialized knowledge or experience in analysis. Large-scale Analysis Model Support: Capable of handling large-scale models thanks to proprietary high-speed analysis technology. The 64-bit solver version has no restrictions on model size. High-Speed Analysis: Equipped with powerful high-speed automatic meshing. Achieves high-precision high-speed analysis through proprietary cutting-edge algorithms. Further accelerated with support for 64-bit Windows OS and parallel CPU processing. High-Precision Analysis Technology: Adopts cutting-edge high-precision injection molding theory to deliver high-quality analysis results. Achieves high-precision analysis with high-quality layer solid meshes. Diverse High-Functionality Modules: Filling, holding pressure, warping, fiber orientation, cooling, solid runners, gate optimization, hot runner balance optimization, inserts, stress, project data management, rubber, RIM…etc.

  • Stress Analysis
  • Analysis Software

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Electromagnetic field analysis software "JMAG"

Electromagnetic field analysis software JMAG

A general-purpose electromagnetic field analysis software with a complete material database and the top market share in the industry. Customized pre- and post-processing specifically for electromagnetic field analysis enables easy data creation and processing of analysis results.

  • Other analyses
  • Analysis Software

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Press molding simulation tool "JSTAMP/NV"

This is a molding simulation tool that has achieved a significant reduction in the design and manufacturing costs of press molds through virtual tryouts.

JSTAMP/NV is a press forming simulation tool for designers. It allows designers to easily perform advanced press forming analysis, enabling the realization of highly accurate designs without the need for prototypes. 【Main Features】 ■ Settings for multi-stage pressing are displayed in an easy-to-understand Japanese interface - Work menu - Display of result evaluation using multi-window - Easy setup for multi-stage processes - Various settings can also be easily configured

  • Other analyses
  • Analysis Software

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FloEFD: A Thermal Fluid Analysis Tool for Designers

Thermal Fluid Analysis Tool for Designers - FloEFD Series

A new sensation in thermal fluid analysis software that is easy to use even for those without experience in fluid analysis. An integrated software package that combines all functions from setting conditions to executing analysis, displaying results, and creating reports. It allows for smooth execution of thermal fluid simulations.

  • Other analyses
  • Analysis Software

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Aerospace Design Analysis and Aerodynamic Analysis Software 'AMI'

Aerodynamic analysis software series for aircraft design

AMI, specializing in aerodynamic analysis, provides excellent aerodynamic/hydraulic design analysis software that is used worldwide for aerodynamic/hydraulic design in aerospace, defense, marine, automotive, and turbine industries.

  • Thermo-fluid analysis
  • Analysis Software

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Meshless High-Speed Analysis Tool 'Altair SimSolid'

Analysis completed in a few seconds or minutes! Large-scale CAD assemblies can also be analyzed at ultra-high speed without meshing.

"Altair Simsolid" is a structural analysis software developed to accommodate the evolving design process. Since shape simplification and mesh generation are not required, model preparation is completed in just a few minutes. Complex parts and large assemblies can be analyzed as they are. Additionally, it is robust against inaccurate shapes and boasts industry-leading performance in handling assembly contacts and irregular contact surfaces. 【Features】 ■ Early analysis of complex shape data and evaluation of multiple scenarios ■ Analysis of complex assemblies with 5200 parts in just a few minutes ■ Accurate reproduction of contact between bolts and plates in nonlinear analysis ■ Low memory usage allows for quick calculations on desktop PCs ■ Accuracy can be specified at the part level, enabling rapid exploration of detail levels as needed *For more details, please refer to the related links or feel free to contact us.

  • Other analyses
  • Analysis Software

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[Musculoskeletal Analysis Case] Example of Closed Chain Problem (Analysis of Ladder Climbing)

Smoothly adjustable distribution degree! An analysis case of a subject's movements skillfully using both hands and feet to climb a ladder.

In AnyBody, the "soft constraint" option resolves motion analysis, and the concept of "virtual muscles" through the extension of the muscle distribution algorithm addresses the dynamics problems of redundant systems. In this article, we introduce a case study of analyzing "ladder climbing," where a closed state is continuously maintained. This analysis focuses on the subject's movements as they skillfully use both hands and feet to climb the ladder. In AnyBody, the ON-OFF switching of the "virtual muscles" that connect the person and the ladder occurs at the timing when both hands and feet engage with or detach from the ladder. Furthermore, for example, the distribution can be smoothly adjusted based on the degree of contact (horizontal axis). [Contents] ■ What is a closed chain? ■ Solutions to closed chain problems *Detailed information about the case study can be viewed through the related links. For more information, please feel free to contact us.

  • Mechanism Analysis
  • Analysis Software

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[Case Study of Thermal Fluid Analysis] Forced Air Cooling Analysis of a Notebook PC

Forced air cooling analysis conducted with a fan modeled using P-Q characteristics! Introducing a case study of a notebook PC analysis.

This article presents a case study of a laptop analysis using AcuSolve. Heat generation values are set for each component, such as the CPU and memory. A pin-type heat sink is placed on the CPU, and forced air cooling analysis is performed using a fan modeled with P-Q characteristics. 【Contents】 ■ Model Description (Laptop Analysis) ■ Analysis Results *Detailed information about the case study can be viewed via the related links. For more details, please feel free to contact us.

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

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Electromagnetic Field Analysis Software 'INTEGRATED'

Creation of shape data, physical conditions/mesh creation, examination of results! We have extensive analysis experience.

The "INTEGRATED Electromagnetic Field Analysis Software" combines usability and accuracy, contributing to prototype reduction in a wide range of design scenarios. It can read data created in CAD or create model shapes using the built-in modeler. The user-friendly GUI allows for easy setting of physical conditions, and with a high-precision mesh generator built-in, users can focus on their designs. Powerful post-processing, graph creation tools, and parametric calculation tools enable users to output the desired results without stress. 【Features】 ■ Reads data created in CAD or creates model shapes using the built-in modeler ■ Allows for easy setting of physical conditions with a user-friendly GUI ■ Built-in high-precision mesh generator ■ Users can focus on their designs ■ Users can output desired results without stress *For more details, please refer to the related links or feel free to contact us.

  • Magnetic field analysis/electromagnetic wave analysis
  • Analysis Software

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Press forming simulation tool 'JSTAMP/NV'

Achieve high-precision design! Display the settings for multi-process pressing with an easy-to-understand Japanese interface.

"JSTAMP/NV" is a press-specific simulation tool for designers. It allows designers to easily perform advanced press forming analysis, enabling high-precision design without the need for prototypes. The settings for multi-step presses are displayed in an easy-to-understand Japanese interface. Additionally, our company also offers "JSTAMP/LT," which can predict blank shapes and trim lines from product shapes. 【Features】 ■ Results can be checked with dedicated evaluation function icons. ■ Results are displayed based on evaluation criteria such as cracks, wrinkles, and springback. ■ Equipped with a material database for metal and resin materials (approximately 80 types). ■ Individual material data can be easily created as needed. ■ Mesh generation is easily possible within JSTAMP. ■ CAD healing function included. *For more details, please refer to the related links or feel free to contact us.

  • simulator
  • Analysis Software

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Terabyte Material Testing Services

Static tensile tests and more! Conducting suitable material tests for the creation and verification of simulation material data!

At "Terabyte Material Testing Services," we provide a comprehensive service from material testing to the creation and validation of material data for simulations. Based on the material data creation and validation technology we have developed since our establishment in 1997, we select appropriate material testing methods. We continuously investigate testing data acquisition methods and testing standards, reflecting useful techniques in our services for material data. [Implemented Tests (Partial)] ■ Static Tensile Test ■ Static Compression Test ■ Static Shear Test ■ Static Hysteresis Test ■ Surface Impact Test *For more details, please refer to the related links or feel free to contact us.

  • Other contract services
  • Analysis Software

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Blow molding simulation "BlowView" technical service

Excellent analysis accuracy! Introducing CAE simulation software for the blow molding process.

"BlowView" is a blow molding simulation software developed under the SIGBLOW research and development program, which started in 1992 at the Industrial Materials Research Institute of the National Research Council of Canada. It analyzes the blow molding process, verifies evaluation items such as the thickness distribution of molded products, cooling, and shrinkage, and is used to determine favorable mold shapes and molding conditions. Our company provides this service as a member of the SIGBLOW consortium. 【Features】 ■ Extrusion blow process simulation ■ Optimization of parison extrusion conditions (optional) ■ Stretch blow process simulation (two-stage) ■ Detailed extrusion condition settings ■ Good analysis accuracy *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis
  • Analysis Software

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Radio Wave Propagation Integrated Simulator "Altair WinProp"

Applicable to a wide variety of scenarios! Covers usage environments from artificial satellites in outer space to indoors.

"Altair WinProp" is an integrated simulator that derives accurate results in a short time using radio wave propagation models (empirical/deterministic models and ray optics models). It supports a variety of scenarios and map data, and hybrid analysis combining multiple types of scenarios is also possible. With the flexible WinProp API, radio wave propagation models and network planning modules can be integrated with other software. 【Features】 ■ Derives accurate results in a short time ■ Hybrid analysis combining multiple types of scenarios is possible ■ Radio wave propagation models and network planning modules can be integrated with other software *For more details, please refer to the related links or feel free to contact us.

  • simulator
  • Analysis Software

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[Case Study of the Molding Process] Analysis of Hole Expansion Processing Using JSTAMP

Check the FLD (Forming Limit Diagram)! It is predicted that cracks are likely to occur near the edges of the holes indicated in red!

We would like to introduce a case study where a blank with a hole was processed using cylindrical drawing, and an analysis was conducted to widen the hole. The die stroke speed was set to 6000 mm/s, the load on Holder 1 was 1200 N, and the load on Holder 2 was 600 N, with the FLD (Forming Limit Diagram) being checked. As a result, it was found that the deformation state of the blank was close to uniaxial tension according to the FLD. Additionally, it is anticipated that cracks are likely to occur near the edge of the hole indicated in red. 【Model Overview】 ■ Die stroke speed: 6000 mm/s ■ Load on Holder 1: 1200 N ■ Load on Holder 2: 600 N *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis
  • Analysis Software

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[Structural Analysis Example] Forging Analysis

The "MPP version of LS-DYNA" offers a remeshing feature that takes into account the density of the mesh!

In calculations involving large deformations, such as forging analysis, remeshing during the computation process is effective. In the standard remeshing function of LS-DYNA, the parts subject to remeshing are uniformly remeshed regardless of areas with large or small deformations, which can lead to a significant increase in the number of elements and potentially longer computation times. On the other hand, the "MPP version of LS-DYNA" offers a remeshing function that takes into account the density of the mesh. This allows for efficient progress in calculations involving large deformations. 【Features of MPP version LS-DYNA】 ■ Remeshing function that considers the density of the mesh is available ■ Efficiently advance calculations involving large deformations *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis
  • Analysis Software

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[Heat-Fluid-Structure Coupling Example] Cooling of a Metal Pipe

Cooling water absorbs heat from the metal pipe while flowing! The solver uses the high-precision version R10.1.0 of MPPDYNA.

We will introduce a case where cold water is flowed through a high-temperature metal pipe for cooling, analyzed as a thermal-fluid-structure coupled problem. The solver used is the R10.1.0 high-precision version of MPPDYNA, with parallel computation on 16 CPUs. As a result, the metal pipe is cooled and the temperature decreases, while the cooling water absorbs heat from the metal pipe as it flows, resulting in higher temperatures downstream. Additionally, the temperature at the surface in contact with the solid becomes higher than that on the inside, and in the final state, the temperature of the metal pipe approaches the temperature of the fluid (283.15[K]). 【Key Keywords】 ■*ICFD_BOUNDARY_FSI: Specify the fluid-structure coupling boundary ■*ICFD_CONTROL_FSI: Set default values for fluid-structure coupled analysis ■*ICFD_BOUNDARY_CONJ_HEAT: Perform heat exchange with the solid at the fluid-structure coupling boundary ■Other: Input *CONTROL_SOLUTION, soln=2 to set up thermal-structure coupled analysis *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis
  • Analysis Software

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[Fluid-Structure Interaction Case] Drop Analysis of a Water-Filled Bottle Using the ALE Method

Check the effects of settings that allow fluid mesh movement to follow the structure!

This presentation introduces a case study of fluid-structure interaction analysis using the ALE method in "LS-DYNA," focusing on the drop analysis of a water-filled bottle. In addition to the conventional ALE method, analyses were conducted using the Structured-ALE (S-ALE) available from Ver.R9 and the automatic conversion function from the ALE model to the S-ALE model available from Ver.R10. Results comparing behavior and computation time are presented. When comparing Case 1 and Case 2, as well as Case 3 and Case 4, it is confirmed that the S-ALE exhibits behavior nearly identical to that of the conventional ALE while also reducing computation time. 【Model Overview】 - A water-filled bottle is placed at a 5-degree tilt on a horizontal rigid floor. - Initial velocity of 4,000 mm/s and gravitational acceleration are applied to the entire model for the drop analysis. *For more details, please refer to the related links or feel free to contact us.*

  • Structural Analysis
  • Analysis Software

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[Magnetic Field - Heat - Structural Coupling Case] Analysis of Ultra-High Magnetic Field Generation

Reproducing the "constricted" compression shape of a coil! Here is an example applied to a high magnetic field generation method.

Here is an example of ultra-high magnetic field generation analysis. By utilizing the magnetic field analysis function available from LS-DYNA Ver.R7, it is possible to conduct a magnetic field-thermal-structural coupled analysis considering large deformations of the coil using only "LS-DYNA." In the comparison of analysis results and experimental results for high magnetic field generation and coil shapes, the analysis captures the trends of the experimental results well, and the compression shape of the coil, which appears to "converge," is reproduced. 【Roles of Each Component in Electromagnetic Concentration Method】 ■ Liner Coil: Generates ultra-high magnetic fields ■ Primary Coil: Generates a magnetic field to compress the liner coil ■ Support Coil: Provides inertial mass and stiffness to the primary coil ■ Helmholtz Coil: Generates a seed magnetic field (external field) inside the liner coil, which is "concentrated" and becomes part of the ultra-high magnetic field *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis
  • Analysis Software

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[Magnetic Field - Thermal - Structural Coupling Case] Volume 1: Analysis of High Magnetic Field Generation by Coil Method

Calculated up to 3 μsec! The analysis results and experimental results for the magnetic field generated at the center of the coil match well!

By utilizing the magnetic field analysis function available from LS-DYNA Ver.R7, it is possible to conduct a magnetic field-thermal-structural coupled analysis considering large deformations of coils using only "LS-DYNA." The coil in this case study is made of copper, and calculations were performed up to 3 microseconds. In the analysis, the electrical conductivity of copper is approximated using the Burgess model, which takes into account the electrical conductivity of copper in both solid and liquid states as implemented in this product. 【Case Overview】 ■ Magnetic field generated at the center of the coil - The analysis results align well with the experimental results. - It is evident that LS-DYNA's magnetic field-thermal-structural coupled analysis is highly accurate. ■ Deformation process of the coil and temperature distribution - There are areas that significantly exceed the melting point of copper (1358K), but in the analysis, these are considered in a liquid state, and the electrical conductivity in that state is taken into account. *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis
  • Analysis Software

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VillageVIEW TS Protocol Analysis Software

Intuitive TS packet analysis, video, audio, subtitle, and data broadcasting analysis functions.

This is a groundbreaking TS offline analysis software for the broadcasting industry. It is user-friendly for TS beginners and helps in mastering TS technology. Furthermore, it also demonstrates its power as a professional tool for TS engineers. It is suitable for investigating the status of TS protocols, error investigation, testing purposes, and research purposes. Unlike traditional expensive TS analysis devices, it offers a different perspective, allowing you to use it easily as software anytime and anywhere. You can utilize it as software that combines advanced TS technology accumulated by VillageIsland with an excellent GUI.

  • others
  • Analysis Software

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White Paper Available!! "Streamlining Design with Vibration Analysis in the Real World"

White Paper Available!! "Streamlining Design with Vibration Analysis in the Real World"

White Paper Available Now!! Vibration simulation is an approach that serves as a cost-effective alternative to traditional methods frequently used by mechanical designers to reduce the time spent on manufacturing, testing, and modifications. By identifying the factors that affect dynamic load response in the model, designers can obtain the necessary data for appropriate improvements before actually cutting any materials. Vibration analysis not only significantly reduces the number of prototypes that need to be physically produced but also greatly decreases the associated costs. *For more details, please refer to the materials. Feel free to contact us as well. ▼ The white paper can be downloaded from the link below ▼

  • 3D CAD
  • Other CAD
  • Other CAD related software
  • Analysis Software

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Structural Stress Analysis Software 'PAM-MEDYSA'

Modeling the operating mechanism of the machine as is! A new proposal for dynamic mechanism stress analysis!

"PAM-MEDYSA" is a finite element method structural analysis program that uses dynamic explicit methods. By modeling the operating mechanism of machines as they are, it is possible to verify the feasibility, strength, and durability of mechanical components. With the concept of "solving things that are in motion as they are," it allows for real-time analysis of the deformation and stress of components in operation. 【Features】 ■ Real-time calculation of contact problems between components, analyzing deformation and stress states of each part ■ Enables clarification of various phenomena associated with machine operation ■ Smooth contact is provided to achieve smooth contact between curved surfaces ■ Friction models consider factors such as velocity dependence and contact pressure dependence in calculations ■ The adoption of total Lagrangian allows for precise reproduction of rigid body motion in space *For more details, please refer to the PDF materials or feel free to contact us.

  • Other analyses
  • simulator
  • Stress Analysis
  • Analysis Software

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Sheet-specific analysis software 'PAM-COMFORT'

Strongly supports the entire process of sheet development from concept design to product performance verification!

"PAM-COMFORT" is a specialized software for developing seat designs that simulates a series of processes from optimizing the production process to evaluating comfort. By considering the upholstery installation process (upholstery patterns, foam blocks, and the compression effects of foam), it quantitatively evaluates the final performance in terms of "ride comfort." Additionally, by evaluating requirements related to seat design (comfort, manufacturability, weight, compactness, etc.) from the early stages, it significantly reduces the man-hours required in development. 【Features】 ■ Reproduction of the manufacturing process of seats, including the trimming process ■ Prediction of occupant posture and comfort ■ Prediction of seat vibration transmission characteristics in a seated position ■ Collision safety performance evaluation using PAM-SAFE *For more details, please refer to the PDF materials or feel free to contact us.

  • Other analyses
  • simulator
  • Analysis Software

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High-frequency electromagnetic wave analysis software 'CEM One'

Strong support for developers and designers of electromagnetic wave-related equipment and components! Providing an efficient analysis environment.

"CEM One" is a dedicated solution for high-frequency electromagnetic wave analysis that supports the design and analysis of electromagnetic wave-related devices and components. In simulations, efficient analysis can be performed by appropriately selecting analysis methods corresponding to the model. Various analysis methods such as FDTD (Finite-Difference Time-Domain), MoM (Method of Moments), and PTD (Physical Optics Diffraction Theory) can be chosen, and furthermore, an efficient analysis environment is provided by utilizing coupling, hybrid methods, and MDMM (Multi Domain Multi Method) techniques. 【Features】 ■ Provides optimal solutions according to application ■ User-friendly and excellent GUI, powerful input/output interface ■ Compatible with ESI's integrated GUI platform, Visual Environment *For more details, please refer to the PDF materials or feel free to contact us.

  • simulator
  • Other analyses
  • Analysis Software

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Welding analysis software SYSWELD/VisualAssembly

Provides means for preliminary examination through analysis and process evaluation for various challenges.

SYSWELD/VisualAssembly is a welding analysis solution that makes the quality of welding, such as product strength and durability, predictable. It reproduces the physical phenomena caused by welding and heat treatment, such as heat input conditions and material properties, and analyzes and predicts the stresses, strains, and overall deformations that occur in the weld area while considering phase transformations. Additionally, a specialized analysis method focused on predicting welding deformation is available, allowing for the examination of optimal welding processes in the early stages of development with "Visual Assembly." By appropriately selecting analysis methods corresponding to the model, efficient analysis can be performed. 【Features】 ■ Optimal solutions tailored to specific applications ■ User-friendly, excellent GUI, and powerful input/output interface ■ Compatible with ESI's integrated GUI platform, Visual Environment *For more details, please refer to the PDF materials or feel free to contact us.

  • simulator
  • Other analyses
  • Analysis Software

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Case Study of the Electromagnetic Wave Analysis Software 'PAM-CEM'

Introducing a case study implemented by the Mazda Electronic Research Group! A free booklet is available!

We would like to introduce a case study from Mazda Corporation, which utilizes "PAM-CEM" for electromagnetic wave simulations in the research and development of automotive radar and keyless entry systems. This document provides detailed information on the characteristics of electromagnetic wave simulations in vehicles and the evaluation of "PAM-CEM." [Contents] - Overview of electromagnetic wave control in vehicles - Challenges in electromagnetic wave simulations for keyless entry - Specific examples to visualize electromagnetic compatibility - Conducting thorough simulations to promote prototype-less development - Background leading to the introduction of "PAM-CEM" - Evaluation of "PAM-CEM" - Tips for effectively using "PAM-CEM" - Future expectations *For more details, please refer to the PDF document or feel free to contact us.

  • simulator
  • Other analyses
  • Analysis Software

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Mitsubishi Heavy Industries Press Forming Analysis Software 'PAM-STAMP' Case Study

Introducing a case study implemented at Mitsubishi Heavy Industries, Ltd.! A free booklet is currently available!

Mitsubishi Heavy Industries, Ltd. Parts Manufacturing Department is a division that develops and manufactures completed aircraft for commercial use and ordered parts for companies such as Boeing within the company. "PAM-STAMP" supports Mitsubishi Heavy Industries' world-class quality and high productivity, achieving a 50% cost reduction within six months of use. This document provides detailed information on the introduction of "PAM-STAMP" and its effects. [Contents] ■ Mitsubishi Heavy Industries' initiatives in the aerospace industry ■ Recent challenges – High precision based on robotic automated assembly ■ Production of meter-sized large exterior panels ■ Reasons for switching to PAM-STAMP ■ Evaluation of PAM-STAMP ■ Simulation accuracy of PAM-STAMP ■ 50% cost reduction effect ■ Future expectations *For more details, please refer to the PDF document or feel free to contact us.

  • simulator
  • Other analyses
  • Analysis Software

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New materials and lightweight challenges! Analysis solutions supporting welding distortion and quality.

We provide both solutions for "deformation analysis," which can be easily analyzed even with large-scale models, and "welding quality analysis," which details the behavior of metal materials under heat.

ESI provides a total solution to support both deformation and quality issues in the welding process. By dividing the challenges in welding into deformation and quality, we achieve efficiency and high quality in the welding process through solutions tailored to each issue. Additionally, we can perform welding deformation analysis considering the history of press forming analysis and fatigue strength evaluation taking into account the manufacturing process. ◆SYSWELD: Solving "welding quality" issues by analyzing the behavior of metal materials in detail through heat This software uses finite element method for thermal elastic-plastic analysis and conducts coupled analysis of heat, phase, and structure. It faithfully reproduces phenomena occurring during the welding process, such as the movement of the welding heat source, expansion and contraction due to heating-cooling temperature history, and phase transformation, outputting important information for welding quality evaluation, including phase distribution and residual stress. ◆Visual Assembly: Easily analyze large-scale models to solve "welding deformation" issues It enables fast and low-load analysis. Large-scale models can be analyzed in a short time, effectively supporting trial and error in considerations such as welding sequence. Changes in the order of spot welding and clamp positions can be analyzed, allowing for the examination of welding plans with minimal deformation before the prototype stage. *For details, please refer to the catalog available for download below "PDF Download."

  • Structural Analysis
  • simulator
  • Other analyses
  • Analysis Software

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"Level Survey" Optional Feature [Explained in Video]

Introducing the leveling survey function in Wingneo INFINITY Ver.5! Including leveling field book data processing, etc.

"Leveling survey" is an optional feature of WingneoINFINITY Ver.5. This video introduces the entire process from data processing of leveling field books for first and second class, third and fourth class, and variable calculations to the creation of results through calculations using WingneoINFINITY Ver.5. The main components include editing leveling field books, leveling route work, and creating leveling network data, including assembling inspection routes, creating inspection calculation sheets, average calculation sheets, result tables, precision management tables, and radiation calculations. [Video Introduction (Excerpt)] - Input and editing of leveling field books (third and fourth class) - Creating route work and network work from leveling field books (first and second class) - Assembling inspection routes and creating calculation sheets in leveling network work (first and second class) - Registering network diagrams for leveling networks (first and second class) (registration of coordinates and connections) - Creating height difference type and instrument height type for leveling field books (third and fourth class), route work, and network work *For more details, please refer to the PDF materials or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Software (middle, driver, security, etc.)
  • Analysis Software

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