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Analysis software(fem) - List of Manufacturers, Suppliers, Companies and Products

Last Updated: Aggregation Period:Dec 03, 2025~Dec 30, 2025
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Analysis software Product List

46~60 item / All 133 items

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High-frequency electromagnetic wave analysis software 'Altair Feko'

Analysis across a very wide frequency range without loss of accuracy! Equipped with windscreen antenna functionality.

"Altair Feko" is an electromagnetic wave software that features "a comprehensive set of multiple analysis methods" and "the ability to utilize two types of analysis methods for a single problem." It includes functions such as automation and simplification of electromagnetic wave analysis, modeling of arrays and infinite periodic structures, and a cable modeling interface. By recording repetitive tasks such as model creation, meshing, and settings, and automating post-processing, it enhances operational efficiency, facilitates knowledge sharing, and ensures the transmission of analysis procedures. 【Function Examples】 ■ Automation and simplification of electromagnetic wave analysis ■ Cable modeling interface ■ Modeling of arrays and infinite periodic structures ■ Optimization ■ Windscreen antenna functionality *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis

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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

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Recommended Model for the General-Purpose Acoustic Analysis Software "Actran"

Recommended model for the operation of applications that achieve large-scale acoustic spaces and high-frequency domain analysis.

"Actran" is a finite element method-based acoustic analysis software. It supports element types that are common with structural FEM models associated with modeling, enabling large-scale acoustic spaces and high-frequency domain analysis. Our company offers the recommended operating model for "Actran," the 'Be-Clia Type-S11IS57,' so please make use of it. 【Features】 ■ HEXAGON Collaborative Model <Actran> ■ Based on finite element and infinite element (or PML) models ■ Capable of acoustic analysis for structural coupling, fluid coupling, mechanical coupling, and magnetic field coupling ■ Extensive element library *For more details, please refer to the related links or feel free to contact us.

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  • Industrial PCs
  • Other PCs and OA equipment

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Announcement of the "Introduction to Structural Analysis Seminar"

Learn mechanism analysis and experience operating RecurDyn! This seminar covers the fundamentals of mechanism analysis.

FunctionBay Inc. will hold an "Introduction to Mechanism Analysis Seminar" at two locations in Tokyo and Nagoya for those who are about to start mechanism analysis. The seminar will explain the components of mechanism analysis, structural analysis (FEM), and coupling with particle methods, using case studies. Participants will also have the opportunity to operate RecurDyn themselves, practicing basic examples of mechanism analysis as well as examples of coupling analysis with control and structure. We warmly welcome anyone interested in mechanism analysis or RecurDyn, or those considering its introduction, to attend. 【Overview of the Tokyo Venue (Excerpt)】 ■ Dates: August 5 (Tuesday), September 9 (Tuesday), October 7 (Tuesday) ■ Time: 13:00 - 17:00 ■ Venue: FunctionBay Inc. Training Room ■ Address: 2F Ohno-ya Kyobashi Building, 1-4-10 Kyobashi, Chuo-ku, Tokyo 104-0031 ■ Participation Fee: Free (Pre-registration required) *For more details, please download the PDF or feel free to contact us.

  • Mechanism Analysis
  • Technical Seminar

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NewtonSuite MyROT

Easy-to-use rotor dynamics software for design upstream.

A user-friendly GUI has been implemented in MyROT, developed by Professor Matsushita from the National Defense Medical College, to make it easy for designers to use. When creating models, the data input in the 3D view is displayed simultaneously, allowing for easy visual settings of inertia, high-speed conditions, and positions. Although calculating rotor dynamics using FEM takes a considerable amount of time, it has been optimized to allow sufficient calculations even on a laptop in a short time.

  • Structural Analysis

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Fatigue Life Prediction Analysis Software 'FEMFAT'

Quickly identify fatigue locations to optimize the development process and reduce evaluation testing costs.

"FEMFAT" is a leading software for fatigue life prediction that performs fatigue analysis in combination with general finite element programs. With interfaces for multi-body simulation, optimization, and measurement systems, it allows for complete and convenient integration into the CAE process, providing optimal solutions for all customers through flexible licensing options. With over 30 years of continuous development, FEMFAT has refined fatigue analysis methods and gained a reputation for excellent fatigue evaluation, earning the trust of engineers worldwide. It contributes to improving the reliability of various industrial products, not only in the automotive industry but also in industrial machinery and plant equipment. Developed by engineers for engineers, FEMFAT offers advanced features and analysis options for predicting the fatigue life of metallic and non-metallic products, including seam welds and spot welds. It enables various analyses, such as those involving base materials with welds, spot welds, multi-axial analysis using road load data, and probabilistic loads based on PSD. *For more details, please download the PDF or contact us.*

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Large-scale structural analysis software ADVENTURECluster

Achieving ultra-fast structural analysis of large-scale models exceeding tens of millions to one hundred million degrees of freedom.

ADVENTURECluster performs calculations that would typically take an enormous amount of time with general-purpose FEM codes, such as those involving entire automotive engines or large assembly models with many contact conditions, at unprecedented speeds. With a comprehensive menu structure and detailed supplementary explanations unique to domestic products, along with a user-friendly Japanese GUI and attentive technical support, engineers can use it comfortably and with confidence. Additionally, it supports a wide range of coupled analyses with other software.

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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

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High-precision casting analysis software ProCAST

It is possible to predict defects during press molding and casting, as well as deformation and residual stress state during welding and heat treatment.

ESI's metal processing solutions enable the prediction of defects during pressing and casting, as well as the prediction of deformation and residual stress states during welding and heat treatment. In the welding of pressed parts, even higher precision analysis is possible through the coupling of pressing simulation and welding simulation. ■ Webinar Title: Innovations in Simulation Technology for the Future of Manufacturing Virtual simulation technology supporting the automotive, aerospace, and heavy machinery industries Overview: We will introduce the latest information on virtual simulation technology and virtual prototyping in a series format. With ESI Group's technology, it is possible to shorten development time, reduce prototypes, optimize designs, improve manufacturing processes, and enhance safety and performance. Release Date: September 23, 2024 *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis

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General-purpose acoustic analysis system "Actran" *Free case study collection available!

Sound simulation in 3D detailed models is now possible! Analyze radiated sound and noise generated from various structures! Large-scale acoustic analysis is also possible.

"Actran" is a general-purpose tool for acoustic analysis. By selecting the optimal solver (finite element method, finite volume method, statistical energy analysis) according to the target, it enables analysis tailored to objectives (accuracy, cost) and development phases. It also allows for understanding the sound propagation mechanism through animation and auditory prediction using sound playback functionality. 【Features】 ■ Supports both structural vibration sound and fluid sound ■ Coupled calculations between flow-structural vibration-sound ■ Compatible with not only FEM (finite element method) but also SEA (statistical energy analysis) ■ Includes thermal and simplified CFD functions, considering the effects of background differences on sound propagation. ■ Large-scale acoustic analysis with hundreds of millions of degrees of freedom, essential for high-frequency analysis beyond the audible range ■ Supports three fluid sound sources (Lighthill, Mohring, pressure fluctuations on structural surfaces) ■ Supports random sound fields. Acoustic transmission loss analysis using diffuse boundary conditions is also possible. ■ Capable of both frequency response and time history response analysis ■ Analysis using experimental data is also possible ■ Optimization through automatic continuous execution of parameter studies *For more details, please refer to the PDF materials or feel free to contact us.

  • Acoustic Analysis
  • Other analyses
  • Contract Analysis

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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.

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  • Thermo-fluid analysis
  • Resin mold

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Analyze Stampack Xpress

Press analysis that can be used with surprisingly simple operations, requiring no FEM knowledge. Reduces the need for trial runs with actual machines, lowering the time and cost for creating press molds.

【Easy Operation】 Preparation for executing analysis involves only the operation of setting up a blank and assembling the process. 【High-Speed Calculation】 The calculation speed is extremely fast due to unique methods in addition to general computational acceleration. 【From Rough to Detailed】 In shell element analysis, a rough understanding of phenomena occurring in the forming process is obtained. This is followed by solid element analysis, which accurately predicts the details of the molding process. 【Springback and Springforward】 Calculations are performed not only for springback due to forming but also for springback caused by trimming and cutting processes. Springforward calculations are also performed to determine mold shapes that take springback deformation into account. 【Trimming Optimization】 A function to properly adjust the material extraction of the blank. By inputting the initial shape of the blank and the target shape after forming, an appropriate blank shape is calculated. 【CAD Interface】 The mold shape required for forming utilizes CAD data. In addition to industry-standard formats like Para Solid and Step, it can also read Siemens NX and Dassault CatiaV5.

  • Other analyses

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FEMFAT visualizer dedicated post-processing tool

It is a lightweight 3D post-processor with an independent interface that can display the analysis results of FEMFAT and stress values from FE analysis.

The FEMFAT visualizer is a lightweight 3D post-processor with an independent interface from other modules, capable of displaying the analysis results of FEMFAT and stress values from FE analysis. Furthermore, by using the FEMFAT visualizer, it is easy to define seam welds necessary for FEMFAT weld calculations in shell element models. The FEMFAT visualizer allows for the display of FEMFAT calculation results such as damage, fatigue life, and fatigue limit safety factors, as well as the creation of report materials. Additionally, by adding output options, it provides information that helps in gaining a deeper understanding of the analysis results. This information includes all parameters related to FEMFAT analysis (currently over 50 types). For example, it is possible to check the effects of equivalent stress amplitude, equivalent mean stress, or the influence factors related to fatigue used in the analysis on the local S-N curve. *For more details, please download the PDF or contact us.*

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FEMFAT Plast Extension Module: Considering Local Plasticity

Calculating elasto-plastic stress from linear elastic analysis results.

EMFAT plast calculates the elastic-plastic stress around the notch area based on the results of linear elastic analysis using the Neuber correction. The Neuber rule is a method that demonstrates the relationship between linear and nonlinear stress and strain, allowing the representation of the Neuber hyperbola using Young's modulus E and nonlinear strain εplast. To represent the hysteresis loop of the cyclic stress-strain diagram (using the cyclic hardening coefficient K' and cyclic hardening exponent n'), the Ramberg-Osgood rule is used to calculate the nonlinear stress as the intersection point with the Neuber hyperbola. This eliminates the need for FE analysis considering material nonlinearity for local plasticity, allowing the elastic-plastic stress to be corrected with FEMFAT plast. Additionally, FEMFAT plast enables a reduction in computational effort for FE analysis. FEMFAT plast is compatible with FEMFAT basic, FEMFAT max, and FEMFAT spectral. *For more details, please download the PDF or contact us.*

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FEMFAT Heat Extension Module: Low Cycle Thermal Fatigue Evaluation Theory

Low Cycle Thermal Fatigue (TMF) Analysis Due to Temperature Cycle Load

Thermal-mechanical fatigue (TMF) analysis refers to the fatigue life prediction analysis targeting the combination of thermal and mechanical loads. TMF analysis is one of the most challenging tasks in the field of fatigue analysis. By introducing FEMFAT heat, this challenge can be addressed. The purpose of TMF analysis is to calculate the damage to components subjected to mechanical loads. It applies to parts exposed to high-temperature thermal fluctuations, such as turbochargers, cylinder heads, and exhaust manifolds. FEMFAT heat is based on an evaluation method demonstrated by Dr. Sehitoglu (University of Illinois, USA) and utilizes not only time-series temperature distribution data from finite element analysis (FEA) but also employs elastic-plastic stress and strain in fatigue life predictions. The characteristics of this evaluation method consider three mechanisms related to TMF damage: - Thermomechanical damage - Damage due to oxidation - Damage due to creep The FEMFAT material database used in FEMFAT heat is expanded compared to the commonly used material database for evaluating (high-cycle) fatigue life.

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