We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Structural Analysis Software.
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Structural Analysis Software Product List and Ranking from 23 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

Structural Analysis Software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

  1. SCSK デジタルエンジニアリング事業本部 Tokyo//software
  2. アルテアエンジニアリング Tokyo//software
  3. null/null
  4. エヌ・エス・ティ Tokyo//software
  5. 5 null/null

Structural Analysis Software Product ranking

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

  1. Large-scale structural analysis software ADVENTURECluster SCSK デジタルエンジニアリング事業本部
  2. Structural analysis software for designers, Altair Inspire. アルテアエンジニアリング
  3. [FEM Analysis Case] Deformation Analysis of Construction Machinery ROPS
  4. 4 Introduction to Desktop Structural Analysis Program エヌ・エス・ティ
  5. 5 For the analysis of civil structures, general-purpose structural analysis software 'ISCEF' センチュリテクノ

Structural Analysis Software Product List

91~101 item / All 101 items

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Match!

M powder analysis database search / Software that can perform Reitvelt analysis!

Match! is a phase analysis software that uses powder diffraction data. It compares the sample's diffraction pattern with a database that includes reference patterns to identify existing phases. Known multipliers about the sample (such as known phases, elements, densities, etc.) can also be added. In addition to qualitative analysis, quantitative analysis can be performed using direct derivation methods (by Professor Toritani), RIR, Rietveld, DOC, and internal standard methods. As reference databases, the ICDD PDF database (available for a fee), the free COD database (standard equipment), user diffraction patterns, and crystal structure data can be used. Calculations executed in the background using FullProf (by J. Rodriguez-Carvajal) allow for easy setup and execution of Rietveld refinement and pattern decomposition from Match!. Match! provides an easy introduction to Rietveld refinement, ranging from fully automated operation to "expert" mode (depending on user settings).

  • Data Search Software

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[Data] ASU/V-STRUCT Rivet Analysis

Presentation of technical data! Introducing examples of software suitable for structural analysis considering deformation contact.

In this document, we introduce a case study of the contact analysis of three deformable bodies, specifically focusing on "crimping of hoses." In molding that combines multiple parts, it becomes necessary to calculate the contact between the deformable bodies in order to observe the deformations of the various parts. Our "ASU/V-Struct" is proficient in analyzing such deformable body contacts and can stably solve problems that do not converge with conventional static implicit methods. We have included an overview and analysis examples related to crimping, along with diagrams, making it easy to reference during the consideration of implementation. We encourage you to take a look. [Contents] ■ Introduction ■ Overview ■ Analysis Results ■ Conclusion *For more details, please download the PDF or feel free to contact us.

  • Structural Analysis

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[CAE Solution Case] Visualization of Vacuum/Pressure Forming

Technical data presentation in progress! Achieving reduction of rework through ASU/V-Struct analysis.

We would like to introduce a CAE solution case using the structural analysis software 'ASU/V-Struct' for visualizing vacuum/pressure forming. In vacuum/pressure forming, heated resin sheets are pressed against molds for shaping. As a result, variations in the thickness of the molded products are likely to occur, and if the thickness becomes extremely thin, issues such as insufficient strength arise, leading to defective products. Additionally, defects such as wrinkles on the molded products can occur. If such problems can be identified and addressed in advance through analysis, it can reduce rework related to defects and help control labor costs. We provide detailed information about our products and services in a PDF document, so please take a look. 【Case Overview (Partial)】 ■Challenges - Unable to predict the thickness of the molded products - Want to understand how the material adheres to the mold - Defective products have emerged, and we want to investigate/improve *For more details, please download the PDF or feel free to contact us.

  • Structural Analysis
  • simulator

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『Cervenka』

Realized with Cervenka! High-precision concrete structural analysis

Cervenka has accumulated research and achievements in material models for concrete, reinforced concrete, and masonry, providing excellent analysis software. It features high-level functions specialized in areas such as complex nonlinear analysis, seismic design, and service life evaluation. 【Functions】 ■ Conduct detailed analysis using nonlinear material models. ■ Simulate cracking behavior under load conditions. ■ Perform comprehensive evaluations of load-bearing capacity. ■ Accelerate large-scale analysis with high-performance solvers. ■ Improve operability with a user-friendly interface. ■ Enable data input and output in standard formats such as DXF. *For more details, please refer to the related links or feel free to contact us.

  • Company:B7
  • Price:Other
  • Software (middle, driver, security, etc.)

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[Case Study] Modal Analysis of a Dust Pump's Centrifugal Impeller 'AIFEM'

Examples of the first five non-rigid motion modes, excluding the sixth rigid motion mode!

We would like to introduce an application case of modal analysis for the centrifugal impeller of a dust pump using our intelligent structural analysis software "AIFEM." This software is equipped with a finite element solver developed in-house. It analyzes the free modes of the centrifugal impeller of the dust pump. The software can accurately capture the first six rigid body free modes, which are close to zero frequency. 【Case Overview】 ■ Analyzes the free modes of the centrifugal impeller of the dust pump ■ Capable of accurately capturing the first six rigid body free modes close to zero frequency *For more details, please download the PDF or feel free to contact us.

  • ダストポンプの遠心羽根車のモーダル解析2.PNG
  • Other analysis software

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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

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[RecurDyn Case Study] Hitachi Construction Machinery Co., Ltd.

A case where it was found that high load and high stress occurred in drilling operations that were not anticipated by using actual data.

We would like to introduce a case where our "RecurDyn" was implemented at Hitachi Construction Machinery Co., Ltd., which is engaged in the manufacturing and sales of construction machinery. The introduction of our product was prompted by the idea that if we could effectively use data obtained from sensors at the site of ultra-large excavators, we could evaluate the structures even without being present. After the implementation, we are utilizing our product to conduct coupled analysis of mechanisms and structural analysis for strength evaluation of the boom and arm of front structures known as loader type and backhoe type. 【Case Overview】 ■ Reason for Implementation: We believed that if we could completely reproduce the loads, postures, and movements obtained from sensors at the site in a simulation model, we could understand the stresses on the structures. ■ Results - The analysis accuracy has reached nearly 90%. - Due to the fast computation time, we are able to grasp loads in various postures. *For more details, please download the PDF or feel free to contact us.

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

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[RecurDyn Implementation Case] Seiko Instruments Inc.

Introducing an example of the development of a chronograph utilizing the trident return-to-zero structure!

We would like to introduce a case where our "RecurDyn" was implemented at Seiko Instruments Inc. The company's watch division had confidence that the product could be used for production equipment development following structural analysis, but there was a period of stagnation due to the difficulty in setting parameters to reproduce minute behaviors. Subsequently, it was utilized in the development of chronograph mechanisms. By using this product, various trajectories and shape patterns could be verified in advance. [Case Overview] ■ Reason for Implementation: There was confidence that it could be used for production equipment development following structural analysis. ■ Results: In the development of chronograph mechanisms, various trajectories and shape patterns could be verified in advance. *For more details, please download the PDF or feel free to contact us.

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

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

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

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

  • Structural Analysis
  • simulator

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[Case Study] Static Analysis of Movable Blades for Water Wheels 'AIFEM'

Examples of products that create a wealth of solutions for diverse applications!

We would like to introduce an application case of static analysis for movable blades of water turbines using our intelligent structural analysis software "AIFEM." This software supports engineers in solving engineering problems related to statics, dynamics, and thermodynamics associated with structures. We defined displacement constraints on the fixed ring of the guide vanes and applied water flow pressure loads in front of and behind the guide vanes, conducting simulations under three operating conditions: rated, maximum lift, and boost. [Case Overview] - We defined displacement constraints on the fixed ring of the guide vanes and applied water flow pressure loads in front of and behind the guide vanes, conducting simulations under three operating conditions: rated, maximum lift, and boost. *For more details, please download the PDF or feel free to contact us.

  • 水車用可動翼の静解析2.PNG
  • Other analysis software

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[Case Study] Strength Analysis of Turbine Top Cover 'AIFEM'

Examples of products that use a friendly and user-friendly wizard-style interactive interface!

We would like to introduce a case study on the strength analysis of the turbine top cover using our intelligent structural analysis software "AIFEM." This software provides fast and accurate finite element analysis and design optimization functions, supporting companies in establishing efficient optimal design processes. By defining a pressure load on the bottom surface of the top cover and using a 1/4 model with rotational symmetry boundary conditions, we simulated the deformation of the top cover. This analysis takes into account geometric nonlinearity. [Case Overview] ■ Defined a pressure load on the bottom surface of the top cover and simulated the deformation using a 1/4 model with rotational symmetry boundary conditions. ■ Geometric nonlinearity is considered. *For more details, please download the PDF or feel free to contact us.

  • タービントップカバーの強度解析2.PNG
  • Other analysis software

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