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

Last Updated: Aggregation Period:Jun 03, 2026~Jun 30, 2026
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Analysis Product List

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FEM (Finite Element Method) Contract Analysis Service

At Benkan Kiko, we offer services such as strength analysis using FEM (Finite Element Method).

The various special fittings for processes handled by Benkan Kiko require more diverse specifications than commonly used and sold pipe fittings. In particular, pressure resistance performance is a crucial characteristic for ensuring the behavior and safety of pipe fittings under high pressure. Pressure resistance is secured by optimizing the shape and dimensions of the pipe fittings, and one of the design methods used is FEM analysis. This service includes the following main contents: - Design support for piping materials such as pipe fittings using FEM analysis ▻ Design of special-shaped pipe fittings (replacement from cast piping materials in high-pressure environments, etc.) ▻ Evaluation of pressure resistance performance of existing pipe fittings ▻ Manufacturing of special fittings (support from material procurement to manufacturing, testing, inspection, and shipping) - Various responses are possible by combining with our proprietary technology. For inquiries, please first contact our sales representative or use the web inquiry form on our website. From the initial meeting, a dedicated representative from our technical headquarters will respond, allowing you to directly reflect your requests in the analysis results. We can accommodate various meeting formats, including on-site visits, visits to our company, and web conferences (Zoom, MS Teams, etc.). Please feel free to consult with us.

  • Pipe Fittings
  • Beverage Production Equipment
  • Wastewater/wastewater treatment equipment
  • Analysis

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FEM model creation and analysis service

We provide support to our customers in time reduction and cost savings with technical assistance from Kansai Design Co., Ltd.

We conduct "FEM analysis" based on customer specifications, creating models for finite element analysis (FEM) from CAD data or drawings, evaluating integrity based on displacements and stresses obtained from the analysis, and proposing structural improvements or reinforcement methods as needed. Additionally, we also develop original tools in Femap to meet customer requests through "CAE tool development." By using finite element analysis (FEA), we can shorten the time from product development to market launch and reduce development costs. 【Features】 ■ Creation of FEM models - Extensive experience with various applications including automobiles, ships, various equipment, and nuclear-related facilities - Three types of software used for model creation (Femap, ANSA, HYPER MESH) ■ FEM analysis - Conducting strength analysis, vibration analysis, and thermal analysis - Inputting appropriate load conditions and boundary conditions into the model to simulate phenomena that may actually occur *For more details, please download the PDF or feel free to contact us.

  • Contract Analysis
  • Other contract services
  • Embedded system design service
  • Analysis

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Low-cost analysis software CADTOOL FEM8

User-friendly and low-cost finite element method analysis

Finite Element Method analysis software targeting 2D! "Trial version available with full functionality for 15 days" For other features and details, please feel free to download the catalog or contact us with any questions. ■ Contact Marble Inc. Embedded Products Division, Product Business Department Phone: (03) 3419-6011

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FEM stress structural analysis

We are utilizing cutting-edge systems such as 3D robot simulation and FEM stress structural analysis to improve productivity and quality.

We use HYPER MESH for FEM analysis modeling. A wide range of engineers, from skilled professionals to young talent, provide stable quality and the latest technology. You can rely on us for everything from design to simulation, analysis, and robot teaching.

  • Other industrial robots
  • Assembly Machine
  • simulator
  • Analysis

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Vibration analysis

To understand the vibration effects after the construction of structures! We conduct ground vibration analysis according to the purpose, target objects, and vibration sources.

Our company conducts predictive analysis of ground vibrations caused by moving vibration sources such as road traffic and railways, as well as fixed vibration sources like factory machinery and concrete placing machines, using computer simulation. In the simulation analysis, we create a ground model that reflects local ground information and input excitation forces that reflect local vibration data to output response values. Before constructing structures that are vibration sources (such as roads, railways, and factories) or buildings that are vibration receivers (such as residences, offices, and public facilities), we can predict the vibration impact on the buildings after construction. [Information Required for Vibration Analysis Using Computer Simulation] ■ Ground information (geological data from boring penetration tests) ■ Vibration information (vibration data from vibration measurements) *For more details, please refer to the PDF materials or feel free to contact us.

  • Other services
  • Other analyses
  • Analysis Services
  • Analysis

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Anisotropic design and analysis of CFRP

Would you like to develop high-performance CFRP parts with excellent cost performance?

At Tech Lab Co., Ltd., we offer "Anisotropic Design and Analysis of CFRP." We possess a variety of anisotropic material data necessary for anisotropic analysis of many PAN-based and pitch-based CFRPs. Through numerical analysis using FEM (Finite Element Method), we conduct optimal orientation and lamination design tailored to the specifications of parts and products. Furthermore, we propose feasible and cost-effective lamination configurations that take moldability into account, rather than just simple numerical analysis. [What can be achieved with anisotropic design (excerpt)] ■ Ultra-lightweight materials with a specific gravity of 1.5 to 1.7 that have high thermal conductivity ■ Parts with high thermal dimensional stability that have an ultra-low thermal expansion coefficient ■ Heat transfer/insulation that can be controlled based on direction ■ Ability to balance strength, rigidity, and thermal properties, among others *For more details, please refer to the PDF materials or feel free to contact us.

  • Contract Analysis
  • Analysis

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Mechanical Design Development and Analysis

We provide engineering services that contribute to better product design and development!

Our company offers engineering services that cater to outsourcing needs from conceptual design to detailed design and parts drawing development. We aim to establish long-term collaborative relationships, not only to understand the characteristics of our customers' products but also to comprehend the underlying development environment and individual rules, enabling us to provide the best possible support. Additionally, in the fields of design and development, we leverage the know-how gained from years of experience in analysis to set optimal conditions and evaluations that align with analysis objectives. We contribute to better product design and development through application advice based on analysis results. [Mechanical Design] ■ Machine tools / Sheet metal forming machinery ■ Semiconductor manufacturing ■ Industrial machinery / Construction machinery ■ Production equipment / Household electrical appliances *For more details, please refer to our catalog or feel free to contact us.

  • Analysis Services
  • Mechanical Design
  • Analysis

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Technical Calculation Set Package CADTOOL STANDARD Dynamic Analysis

Recommended set with the added functionality of [motion analysis] to CADTOOL STANDARD!

CADTOOL STANDARD/Dynamic Analysis is an integrated package that includes all functions of frame structure analysis, including [dynamic analysis], along with CADTOOL FEM and CADTOOL Mechanical. For other features and details, please feel free to download the catalog or contact us if you have any questions. ■ Inquiries Marble Inc. Embedded Products Division, Product Business Department Phone: (03) 3419-6011

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Contracted analysis service

We conduct surveys, structural analysis, and design of various plants!

We offer various "contract analysis" services for a wide range of equipment in plants such as nuclear and thermal power plants. We can conduct application analyses for areas that cannot be calculated by hand, and phenomena that are difficult to test can be understood at a low cost through FEM analysis. Please feel free to consult us if you have any requests. 【Analysis Examples】 ■ Nonlinear static analysis considering the plasticity of frameworks ■ Nonlinear static analysis considering the contact between U-bolts and piping ■ Eigenvalue analysis of container cranes ■ Time history response analysis of a 10-story building ■ Linear static analysis due to thermal deformation of piping, etc. *For more details, please download the PDF or feel free to contact us.

  • Contract Analysis
  • Contract Analysis
  • Analysis Services
  • Analysis

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Earthquake response analysis

Predicting displacement, acceleration, and stress response during an earthquake through time history analysis.

Earthquake response analysis is a analytical method that inputs actual seismic waves into structures to evaluate their behavior during an earthquake. Our company conducts earthquake response analysis using the finite element method (FEM) for equipment supports, tanks, piping support structures, and machinery. We evaluate the time variations of displacement, acceleration, and stress that occur during an earthquake, which can be utilized for confirming structural integrity and considering seismic measures.

  • Contract Analysis
  • Analysis

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CAE analysis

Our expertise and network will shorten the time spent on performance verification!

Our company conducts simulations of phenomena such as collisions, strength, and vibrations, providing 'CAE analysis' to verify safety based on analysis data across various industries including automotive, aerospace, and construction. We also support business challenges such as establishing analysis operations and building systems through tool selection and process formulation. With a team of CAE experts from various fields, we can accommodate not only FEM but also particle methods and big data analysis. Furthermore, we undertake product development in collaboration with design departments, extending beyond just CAE. 【Features】 ■ Product development contracting through design collaboration ■ Creation of material databases ■ Diverse areas of expertise ■ Support for building analysis operations *For more details, please download the PDF or feel free to contact us.

  • Contract Analysis
  • Analysis Services
  • Analysis

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Thermal conduction and thermal stress analysis

Visualize the temperature distribution and verify issues caused by heat in advance.

Temperature distribution analysis is a numerical evaluation method for temperature changes and heat transfer within components and structures. Our company uses the finite element method (FEM) to analyze heat conduction from heat sources, heat dissipation effects, temperature distribution, and more, to conduct thermal design and structural integrity assessments. It can be utilized for understanding temperature rise, evaluating heat dissipation performance, and examining thermal deformation.

  • Contract Analysis
  • Analysis

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[Case Study] Dental Instruments - Vibration Characteristics Simulation of Ultrasonic Scalers

I investigated the vibration characteristics of ultrasonic scalers based on various chip shapes.

We will introduce a case study of analysis using Simcenter Femap with Nastran, focusing on the vibration characteristics simulation of dental instruments - ultrasonic scalers.

  • Other analyses
  • Analysis

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Resonance and vibration force response analysis

Evaluate the vibration response to the excitation force and understand the resonance risk in advance.

Resonance and vibration force response analysis evaluates the response of structures to external vibration loads, predicting the possibility of resonance occurrence and vibration levels. Our company uses the finite element method (FEM) to assess natural frequencies and response evaluations against vibration forces for equipment frames, machinery, supporting structures, and frame structures. This analysis can be utilized for investigating the causes of vibration issues, considering anti-vibration measures, and evaluating the impact during design changes.

  • Contract Analysis
  • Analysis

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Creep deformation analysis

Evaluation of long-term deformation and stress relaxation occurring in high-temperature environments.

Creep deformation analysis is an evaluation of the deformation and stress changes over time for materials and structures subjected to continuous loads in high-temperature environments. Even if there are no issues with static strength calculations at high temperatures, deformation or damage may progress with prolonged use. Our company utilizes the finite element method (FEM) to assess the creep behavior of high-temperature equipment and various structures, which is used for confirming integrity and predicting lifespan during long-term use.

  • Contract Analysis
  • Analysis

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FEMFAT Basic Module: Fatigue Strength Analysis of Variable Loads

Calculate the fatigue life and fatigue limit safety factor for repeated loads and alternating loads.

When evaluating the fatigue strength of a set of stress amplitudes, mean stress, and constant stress, FEMFAT basic is an ideal tool. With FEMFAT basic, you can calculate the fatigue life or fatigue limit safety factor of components subjected to repeated or alternating loads. It simultaneously considers various influencing factors on fatigue and analyzes joining structures such as seam welding and spot welding along with the base material, allowing for appropriate fatigue life predictions to be obtained concurrently. It comes standard with a database of over 400 materials. Additionally, when creating new material data, you can use the "Material Generator" to create the necessary material data set for FEMFAT even from limited material strength data. *For more details, please download the PDF or contact us.*

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Design and Analysis

Three-dimensional analysis and design technology that is becoming increasingly important.

Three-dimensional analysis and design technology reduces rework during development, improves quality, and lowers development costs. Furthermore, by utilizing the three-dimensional data provided by the design department, it has also made it possible to share information used across various departments. Our company aims to provide engineering solutions for manufacturing with the keyword "three-dimensional," offering solutions to meet all customer needs from 3D CAD/CAE/CAM/CAT/DMU, and supporting concurrent engineering.

  • 3D CAD
  • Analysis Services
  • Data conversion software
  • Analysis

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Strength calculation and structural analysis

Visualizing the strength of complex structures to support evidence-based design.

Strength calculation (structural analysis) is a method for numerically evaluating the deformation and stress distribution of components or structures subjected to loads. Our company uses the finite element method (FEM) to conduct strength evaluations of mechanical parts, frames, supports, and fastening structures. We can handle everything from structural considerations in the early design phase to investigating the causes of insufficient strength and evaluating reinforcement proposals. We visualize stress concentrations and deformation behaviors that are difficult to grasp through prototypes or experiments, providing information that serves as the basis for design decisions.

  • Contract Analysis
  • Analysis

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Contracted analysis

We will utilize our long-standing accumulated know-how to conduct contract analysis tailored to our customers' needs.

Our experienced engineers will respond appropriately. - There is no manpower or time to carry out analysis tasks. - We want to introduce CAE into our operations, so we would like support including training. - We are struggling with technical challenges such as modeling and analysis methods. Please feel free to consult with us.

  • Contract Analysis
  • Analysis

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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
  • Analysis

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Modal analysis and static analysis of turbine rotors【AIFEM】

Created a mesh model using the mesh creation tool within AIFEM! Results demonstrating the effectiveness of the software.

In this case, we will introduce the modal analysis and static analysis of the turbine rotor using the structural analysis software AIFEM. The analysis results obtained with AIFEM demonstrated the effectiveness of the software through comparison with reference data (a certain commercial software). The model subject to analysis consists of a hub, shroud, and seven blades, forming the turbine rotor. The shape data used is in .stp format, and a mesh model was created using the mesh creation tool within AIFEM. *For detailed content of the article, you can view it through the related links. For more information, please download the PDF or feel free to contact us.*

  • 【AIFEM】タービンロータのモーダル解析と静解析2.png
  • 【AIFEM】タービンロータのモーダル解析と静解析3.png
  • 【AIFEM】タービンロータのモーダル解析と静解析4.png
  • 【AIFEM】タービンロータのモーダル解析と静解析5.png
  • 【AIFEM】タービンロータのモーダル解析と静解析6.png
  • 【AIFEM】タービンロータのモーダル解析と静解析7.png
  • 【AIFEM】タービンロータのモーダル解析と静解析8.png
  • 【AIFEM】タービンロータのモーダル解析と静解析9.png
  • 【AIFEM】タービンロータのモーダル解析と静解析10.png
  • Turbine
  • Structural Analysis
  • Analysis

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Structural analysis of prismatic Li-ion batteries.

Observation using optical microscopy and ultra-low acceleration FE-SEM! Detailed structural analysis and elemental analysis are possible.

By mechanically polishing commercially available rectangular Li-ion batteries and observing them with optical microscopy and ultra-low acceleration FE-SEM, detailed structural analysis and elemental analysis can be performed. The materials introduce the overall structure of the Li-ion battery and detailed structural observations of the Li-ion battery using SEM and ultra-low acceleration FE-SEM through photographs. [Analysis Overview] ■ Overall structure of the Li-ion battery and SEM observation ■ Detailed structural observation of the Li-ion battery using ultra-low acceleration FE-SEM *For more details, please refer to the PDF materials or feel free to contact us.

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  • Analysis Services
  • Other contract services
  • Analysis

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FEMFAT Max Extension Module: Fatigue Strength Analysis of Multiaxial Operating Loads

Accurate fatigue strength evaluation under actual load conditions.

Predicting fatigue life under multi-axial loading is one of the significant challenges. The approach applied in FEMFAT max is based on research results conducted in collaboration with international research institutions, as well as the latest development achievements and academic papers within the company. All methods, theories, and hypotheses have been utilized in various projects and have been successfully validated. FEMFAT max includes ChannelMAX and TransMAX based on loading conditions, evaluating damage or fatigue life, fatigue limit safety factors, static fracture safety factors, and multi-axiality at each FE node. 【Module Introduction】 - Accurate fatigue strength assessment under actual loading conditions - Interface for time history data compatible with general-purpose mechanism analysis software and measurement software (e.g., ADAMS, RPC, DIAdem) - Input of loads corresponding to superposition (Channel) and transient response (Transient) - Filtering function for quick calculations only at necessary locations - Safety factors and damage calculations for fatigue limits under multi-axial stress states *For more details, please download the PDF or contact us.

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FEMFAT Spot Extension Module: Fatigue Strength Analysis of Spot Welds

It correctly expresses the rigidity of spot welds and SP rivets.

To ensure the structural strength of passenger car and truck cabins, numerous spot welds and punch rivets are required. Each of these joints implies the potential for initial cracks, necessitating particularly reliable methods for fatigue strength analysis. FEMFAT spot provides an evaluation method for accurately simulating the stiffness and durability strength of thin sheet metal components composed of spot welds. FEMFAT spot offers two different approaches: ◆ A method using element stresses from shell elements ◆ A method using element forces from connection elements (JSAE method) *For more details, please download the PDF or contact us.

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