We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Structural Analysis.
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Structural Analysis Product List and Ranking from 12 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

Structural Analysis Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

  1. テラバイト Tokyo//software
  2. ダイコーテクノ Hiroshima//others
  3. null/null
  4. GRM Consulting Aichi//IT/Telecommunications
  5. 5 宇部情報システム Yamaguchi//software

Structural Analysis Product ranking

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

  1. Structural (FEM) Analysis
  2. Structural analysis 恒徳アイデック
  3. [Case Studies] CAE Analysis 九州日昌
  4. "Contract analysis, commissioned analysis, and subcontracting for CAE" Structural analysis ダイコーテクノ
  5. 4 Sample analysis case video (animation) ダイコーテクノ

Structural Analysis Product List

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Structural Analysis Service

We will support your business promotion with analytical technology.

Our company has been a member of the UBE Group and Osaka Gas Group for approximately 40 years since its establishment, providing support for the design and troubleshooting of various equipment such as chemical plants and industrial machinery through our analytical technology. We will support your design operations with our proven structural analysis technology. For example... - Stress evaluation of newly designed equipment - Prompt investigation of the causes of equipment failure and verification of countermeasure effectiveness - Standard evaluations to obtain approvals from public institutions and customers - Consideration of business partners to address the shortage of CAE personnel Please feel free to consult with us.

  • Contract Analysis

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[Structural Analysis Example] Impact Analysis of a Rigid Sphere on a Protective Net

Modeling the net and support pillars to simulate the impact of a rigid sphere of falling rocks!

We will introduce a case study on the analysis of the strength and behavior of a protective net when it is impacted by falling rocks. It is possible to confirm not only the deformation of the net and the generated stress due to the impact of a rigid sphere but also the stress and deformation of the support posts caused by the net pulling on them. This analysis allows for the verification of the load-bearing capacity and failure behavior of the protective net, which can contribute to more optimal protective designs. [Analysis Results] - Confirmation of the deformation of the net and generated stress due to the impact of a rigid sphere, as well as the stress and deformation of the support posts caused by the net pulling on them. - Ability to verify the load-bearing capacity and failure behavior of the protective net. - Possible contribution to more optimal protective designs. *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis

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[Structural Analysis Example] Coupled Problem 1 Using Particle Method (SPH)

Modeled by the particle method (SPH)! The SPH water and Lagrange rotor blades apply contact conditions.

We will introduce a case study regarding "Bird Strike on Turbine Rotors." The properties of the bird are modeled as water using the Smoothed Particle Hydrodynamics (SPH) method. Contact conditions were applied between the SPH water and the Lagrangian rotor blades. In the related links below, we present the analysis results in images, so please take a look. 【Case Overview】 ■ SPH (Smoothed Particle Hydrodynamics) is suitable for analyzing fluid dispersion and large deformations. ■ The bird is modeled using the particle method (SPH). ■ The properties of the bird are modeled as water. ■ Contact conditions were applied between the SPH water and the Lagrangian rotor blades. *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis

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[Structural Analysis Example] Plastic Poisson's Ratio Curve Using Bézier Curves

Reproduce the exam results! Conduct optimization calculations using the coordinates of control points as design variables.

The plastic Poisson's ratio - equivalent plastic strain relationship is represented by two Bézier curves. Optimization calculations were conducted using the coordinates of the control points as design variables. We are attempting to reproduce the test results. In the related links below, we introduce graphs before and after the optimization calculations, so please take a look. *For more details, please refer to the related links or feel free to contact us.*

  • Structural Analysis

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Information on structural and thermal fluid analysis services for industrial machinery.

We contribute to the shortening, cost reduction, and high quality of production processes!

At Struct Lab Co., Ltd., we provide analysis services ranging from 3D modeling to structural analysis, vibration analysis, and thermal fluid analysis. By utilizing analysis, various characteristics can be examined during the design phase, allowing for the selection of the best structure at that stage. Additionally, by having your clients review the analysis results, issues can be clearly identified and shared. 【Features】 ■ Creation of 3D models ■ Quick analysis ■ Reasonable pricing *For more details, please refer to our catalog or feel free to contact us.

  • Analysis Services
  • Contract Analysis

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Structural Analysis and CAE Flat Rate Service

We offer high-quality structural analysis at a reasonable price!

Our company offers structural analysis and CAE services based on evaluations conducted for structural analysis. Typically, we accept projects on a case-by-case basis, but we also offer a flat-rate service (subscription for analysis). We provide high-quality structural analysis at a reasonable price. Please feel free to contact us if you have any requests. 【Courses】 ■ Six-month course ■ One-year course A ■ One-year course B ■ One-year course C *For more details, please download the PDF or contact us.

  • Structural Analysis

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CAD/CAE Simulation Structural Analysis

We provide reliable, prompt, and courteous support, training, and services for SOLIDWORKS products.

It is a structural analysis tool that boasts overwhelming ease of use. By virtually validating CAD models using Finite Element Analysis (FEA), it can predict the actual physical behavior of products. It offers linear, nonlinear static, and dynamic capabilities.

  • others

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Structural analysis

Ensuring the safety and confidentiality of customer data! We are also skilled in nonlinear analysis and capable of conducting collision and impact analysis.

We have been engaged in various types of "structural analysis" across a wide range of industries, including automotive, racing, railways, medical devices, aerospace, marine, heavy industry, and construction. By utilizing a diverse array of software without being tied to a single analysis tool, we evaluate various problems. Even for customers who are new to CAE analysis, we support product development by formulating conditions based on relevant JIS and ISO standards and simulating special usage conditions in the analysis. If you are a customer who wants to try CAE analysis but doesn't know how to proceed, please feel free to contact us. 【Features】 ■ Utilization of a wide variety of analysis methods ■ Highly reliable analysis ■ Valuable evaluation reports *For more details, please refer to the PDF materials or feel free to contact us.

  • Analysis Services

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GRM Consulting Inc. Company Profile

We propose designs that make the most of optimization and CAE! We can handle everything from planning to design, prototyping, and evaluation.

GRM Consulting Co., Ltd. primarily focuses on contract services such as optimization and structural analysis. We create the software we want for our contract division and sell it to customers who are interested. Not only dedicated CAE specialists but also designers are involved in contract development, allowing for realistic feedback. We are entrusted with collision assessment evaluations from complete vehicle manufacturers and have received certification for FIA homologation, earning recognition for our technical capabilities. 【Business Overview】 <Contract Division> ■ Optimization ■ Structural Analysis ■ Development of Composite Material Products ■ Standards, Styling, and Design ■ Prototyping *For more details, please refer to the PDF document or feel free to contact us.

  • Mechanical Design

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[Data] RDM Optimization

A method that can be utilized in actual design sites! An explanation of RDM optimization with examples.

This document introduces RDM optimization. It includes examples of improved strength, rigidity, vibration, and collision performance of BIW, interpretation of RDM results, and rib pattern design for aluminum die-cast housings. By using RDM optimization, it is easy to determine reinforcement shapes and locations. [Contents] ■ Introduction to RDM optimization ■ RDM case study: BIW (sheet metal) ■ Interpretation of RDM results ■ RDM case studies ■ RDM case study: ATV frame ■ Interpretation of RDM optimization results *For more details, please refer to the PDF document or feel free to contact us.

  • Strength Testing Equipment

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[Structural Analysis Example] Collision Analysis Side Crash of a Car

For drop and impact analysis, we introduce the concept of "impact force considering the propagation of stress waves" for analytical calculations!

In considering shock analysis, there are (1) shock forces derived from absorbed energy, (2) shock forces derived from the equations of motion of rigid bodies, and (3) shock forces derived from the propagation of stress waves. (1) refers to the stress at the maximum deformation displacement when the deformable body is impacted. (2) is determined from the equilibrium of the inertial force of the colliding object (rigid body) and the reaction force from the deformable body, while (3) introduces the concept of stress waves. In 'LS-DYNA', the approach of (3) is incorporated for analysis calculations in drop and impact analysis. [Overview] ■ (1) Shock forces derived from absorbed energy - The stress is considered at the maximum deformation displacement when the deformable body is impacted. - It is assumed to occur not at the moment of impact, but when the deformation of the deformable body reaches its maximum after the impact. *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis

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[Structural Analysis Example] Simulation of Seismic Isolation Building Wall Collision Due to Earthquake

It has been demonstrated that it is possible to examine the acceleration occurring in buildings and the damage to the buildings!

We will introduce a case study of seismic response analysis of a seismic isolation nuclear power plant building and retaining wall ground model, taking into account the nonlinearity of the seismic isolation devices and concrete cracking when exceeding the design seismic motion. The ground is modeled using solid elements, the building with shell elements, the internal concrete (I/C) and foundation slab with solid elements, and the seismic isolation devices with beam elements. As a result, it was observed that in a wide area around the reactor containment vessel (PCCV), the surrounding building (REB), and the retaining wall, in-plane cracking occurred in both the in-plane 1 direction and in-plane 2 direction due to the collision between the building and the retaining wall. 【Analysis Settings】 ■ After self-weight loading, seismic waves were simultaneously input in two horizontal directions and vertically (2/3 of the horizontal) at the bottom surface of the lower foundation slab. ■ The input seismic waves used were three times the Japan Architectural Center simulated seismic wave BCJ-L2. *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis

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[Structural Analysis Example] Penetration Analysis of Reinforced Concrete Walls Using SPG

It is possible to analyze the fracture behavior without causing mass and energy loss due to element removal!

We present a case study of a rigid body engine colliding with a rebar-free concrete wall modeled using SPG. By using SPG, it is possible to analyze the failure behavior without causing mass and energy loss due to element deletion. With the SPG control parameters added in Ver.R10, the stability of particle behavior in brittle fracture analysis, such as collisions and penetrations of concrete materials, has improved. 【Concrete Material】 ■MAT_DAMAGE_CONCRETE_REL3 ■Density: 2.3×10-9 ton/mm3 ■Poisson's Ratio: 0.2 ■Young's Modulus: 25920 MPa ■Compressive Strength: 30 MPa ■Tensile Strength: 2.9 MPa *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis

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[Structural Analysis Example] Coupled Problem 2 Using Particle Method (SPH)

The aircraft is composed of shell elements with actual collision intensity equivalent! Introducing examples in aviation.

We will introduce the analysis of aircraft water landing behavior. The airplane is composed of shell elements that have equivalent impact strength. The number of nodes is 143,242, and the number of elements is 144,223 (Shells 8,691, SPH 135,542). In the related links below, we present the analysis results in images, so please take a look. 【Case Overview】 ■ Water is represented by SPH elements ■ The airplane is composed of shell elements that have equivalent impact strength ■ Number of nodes: 143,242 Number of elements: 144,223 (Shells 8,691, SPH 135,542) ■ Analysis time: 4.0 seconds Computation time: 34 hours 22 minutes ■ PC CPU: Core 2 Duo 64 bits×2 3.33GHz used *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis

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