Structural Analysis Software Product List and Ranking from 15 Manufacturers, Suppliers and Companies | IPROS

Last Updated: Aggregation Period:Jan 28, 2026~Feb 24, 2026
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:Jan 28, 2026~Feb 24, 2026
This ranking is based on the number of page views on our site.

  1. くいんと Tokyo//others
  2. マーブル  エンベデッドプロダクト事業本部 プロダクト事業部 Tokyo//Information and Communications
  3. JIPテクノサイエンス Tokyo//Information and Communications
  4. 4 兼松エレクトロニクス デジタル・サービス本部 Tokyo//Trading company/Wholesale
  5. 5 センチュリテクノ Tokyo//others

Structural Analysis Software Product ranking

Last Updated: Aggregation Period:Jan 28, 2026~Feb 24, 2026
This ranking is based on the number of page views on our site.

  1. ~Video Introduction~ Automatic Model Creation of Concrete Composite Structures with Python JIPテクノサイエンス
  2. Affordable and easy-to-use CADTOOL Frame Structure Analysis 12 3D マーブル  エンベデッドプロダクト事業本部 プロダクト事業部
  3. Technical Calculation Software CADTOOL Frame Structure Analysis 12 2D マーブル  エンベデッドプロダクト事業本部 プロダクト事業部
  4. 3DEXPERIENCE SIMULIA <buckling, special elements, etc.> 兼松エレクトロニクス デジタル・サービス本部
  5. [Technical Column] The Theory of OPTISHAPE-TS: "What is Gradient Method?" くいんと

Structural Analysis Software Product List

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[Example] Model creation and structural analysis in bioengineering.

"VOXELCON" is a structural analysis software that directly models STL data from CT and CAD for analysis and measurement purposes.

In the field of bioengineering, since there is no design data available, it is necessary to measure the actual object and create an analysis model. By using image-based analysis supported by VOXELCON, modeling can be performed from CT scan images of the actual object, allowing for faithful modeling that eliminates human error and significantly reduces the effort required for modeling. *For more details, please refer to the related links or feel free to contact us.*

  • Analysis and prediction system
  • Structural Analysis Software

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[Case Study] Stress Analysis of a Crankshaft through Reverse Engineering

"VOXELCON" is a structural analysis software that directly models STL data from CT and CAD for analysis and measurement purposes.

Model Creation and Structural Analysis from CT Images We will introduce an example of reverse engineering that measures the shape of a product (actual item) and uses it for direct analysis. Generally, creating a model for analysis from X-ray CT scan images requires a very labor-intensive process of generating a CAD model from the extracted surface. However, at VOXELCON, we can directly create a surface model from the image data of the X-ray CT scanner and apply boundary conditions directly on the surface model, allowing for voxel analysis without additional steps. This significantly reduces the man-hours required for reverse engineering. Here, we will present an example of creating a model from artificially generated tomographic images, simulating the tomographic images from an X-ray CT scanner, and performing static stress analysis. *For more details, please refer to the related links or feel free to contact us.*

  • Analysis and prediction system
  • Structural Analysis Software

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[Example] Evaluation of macro physical properties using actual data

"VOXELCON" is a structural analysis software that directly models STL data from CT and CAD for analysis and measurement purposes.

In material design, investigating the macroscopic mechanical properties of porous materials such as ceramics and foamed metals, as well as composite materials represented by FRP, is extremely important. When actual samples are available, it is generally possible to measure them through experiments; however, depending on the properties of the materials and the condition of the samples, experiments may not always be easy. Here, we will introduce an example of calculating the macroscopic physical properties of a sample by analyzing the tomographic images obtained from scanning the actual sample with a micro X-ray CT scanner, using VOXELCON's image-based modeling and homogenization analysis functions. Note: The physical properties of the original materials constituting the porous materials and composite materials are assumed to be obtained in advance. *For more details, please refer to the related links or feel free to contact us.

  • Analysis and prediction system
  • Structural Analysis Software

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[Example] Analysis of Warping in Electronic Circuit Boards

"VOXELCON" is a structural analysis software that directly models STL data from CT and CAD for analysis and measurement purposes.

At VOXELCON, we perform thermal stress analysis using the temperature distribution from steady-state heat conduction analysis as a thermal load, allowing for easy weakly coupled analysis of steady-state heat conduction and thermal stress. Here, we will introduce an example of warpage analysis of an electronic substrate using a simple model. *For more details, please refer to the related links or feel free to contact us.*

  • Analysis and prediction system
  • Structural Analysis Software

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[Example] Calculation of Equivalent Stiffness of Sandwich Structural Panels

"VOXELCON" is a structural analysis software that directly models STL data from CT and CAD for analysis and measurement purposes.

The sandwich structure, which consists of a core material sandwiched between surface panels to form a unified structure, is widely used in various fields as it offers a lightweight design with high bending stiffness. However, in cases where the core is composed of multiple materials rather than a single material, the equivalent properties of the sandwich structure cannot be derived from simple laminate theory. In this example, we will use VOXELCON's homogenization analysis function to calculate the equivalent property values of a core made of composite materials, and we will introduce an example of bending analysis of the sandwich structure using a simplified model based on the obtained material property values. *For more details, please refer to the related links or feel free to contact us.*

  • Analysis and prediction system
  • Structural Analysis Software

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[Example] Equivalent permeability coefficient and micro flow velocity distribution of porous media.

"VOXELCON" is a structural analysis software that directly models STL data from CT and CAD for analysis and measurement purposes.

With the increasing use of composite materials and porous materials, the importance of evaluating the properties of their microstructures is growing. In this example, we will introduce the calculation of the equivalent permeability coefficient and micro velocity distribution of a porous body as an example of evaluating the flow characteristics of microstructures using the homogenization method of VOXELCON. *For more details, please refer to the related links or feel free to contact us.*

  • Analysis and prediction system
  • Structural Analysis Software

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[Example] Topology optimization of large-scale models

"VOXELCON" is a structural analysis software that directly models STL data from CT and CAD for analysis and measurement purposes.

VOXELCON is equipped with topology optimization using the level set method. In this topology optimization, a target volume is set, and a shape is sought that maximizes stiffness (minimizes displacement at load points) under that volume constraint. Since structural optimization involves repeated structural analysis, the computation time can be very long. Additionally, the structural analysis specialized for voxels is characterized by good parallelization efficiency and low memory consumption, allowing for analysis of large-scale problems in a realistic time frame. The topology optimization feature also supports parallel execution on GPUs, so we will also introduce the computation time. *For more details, please refer to the related links or feel free to contact us.*

  • Analysis and prediction system
  • Structural Analysis Software

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[Example] Model correlation of plates containing honeycomb core material.

We want an analytical model that matches the measured values of the natural frequency!

"Model correlation" refers to the process of reviewing various possible errors and correctly reflecting them in the analytical model. If there are measured values and an error-free analytical model, it becomes possible to apply this to further simulations, thereby demonstrating the true value of the simulation. Therefore, by combining Quint products, we propose an experimental vibration characteristic and an error-free analytical model = an optimal model correlation. In this case study, we derived an analytical model that reproduces the vibration characteristics of a complex structure plate (hereinafter referred to as "honeycomb panel") that includes honeycomb core material, using Quint products "VOXELCON," "AMDESS," and "OPTISHAPE-TS." [Workflow] ■1. Experimental mode analysis of the honeycomb panel ■2. Calculation of material parameters for the simplified model ■3A. Identification of material parameters ■3B. Identification through model shape modification *For more details, please refer to the PDF document or feel free to contact us.

  • Scientific Calculation and Simulation Software
  • Other Software
  • Structural Analysis Software

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[Technical Column] The Theory of OPTISHAPE-TS: "Space"

An explanation of the concept of "space" in modern mathematics! Introduction to a technical column.

In the previous article, I provided an overview of the function space known as H1. As I mentioned briefly, there is a significant difference between the "space" that engineers think of and the "space" in modern mathematics. This time, I will explain the concept of "space" in modern mathematics. Please feel free to download and take a look. [Contents] ■ Episode 9: What is the H1 Gradient Method? Part 2 "Space" *For more details, please refer to the PDF document or feel free to contact us.

  • Other Software
  • Structural Analysis Software

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[Technical Column] The Theory of OPTISHAPE-TS: "What is Gradient Method?"

Based on the formulation of optimization problems, let's briefly explain what the gradient method is!

In the previous articles, we explained the "H1" in the H1 gradient method. I hope you have deepened your understanding of the concept of function spaces. From this time onward, I would like to explain the remaining "gradient methods" over several articles. To begin with, this article will discuss an overview of gradient methods. Please feel free to download and take a look. [Contents] ■ Episode 14 What is H1 Gradient Method Part 7 "What is Gradient Method" *For more details, please refer to the PDF document or feel free to contact us.

  • Other Software
  • Structural Analysis Software

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[Column] The Theory of OPTISHAPE-TS: Lagrange Multiplier Method

An explanation of the general concept of the Lagrange multiplier method through a simple problem! Introduction to a technical column.

The discussion about deriving the sensitivity of compliance began from the previous article. This time, I would like to take a break from the derivation of sensitivity and explain the Lagrange multiplier method itself. Please feel free to download and take a look. [Contents] ■ Episode 24: Lagrange Multiplier Method *For more details, please refer to the PDF document or feel free to contact us.

  • Other Software
  • Structural Analysis Software

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AUTODESK(R)SIMULATION MECHANICAL

Achieve high-precision analysis with Autodesk Simulation Mechanical's advanced analysis capabilities and automatic hexahedral mesher!

Autodesk Simulation Mechanical is a structural analysis package with a wide range of analysis capabilities. It can perform static stress analysis with linear and nonlinear material models, mechanical event simulation (MES: nonlinear dynamic analysis), linear dynamic analysis, steady-state and transient heat conduction, electrostatic analysis, and multiphysics (coupled analysis). As part of the family of CAE software, it includes resin flow analysis Moldflow and thermal-fluid analysis CFD, allowing for coupling between resin flow-structure and fluid-structure. Additionally, the cloud CAE service Sim360 enables cost-effective use of Autodesk Simulation family products whenever needed.

  • Other Software
  • Structural Analysis Software

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Video site "Analysis Know-How.com"

The usage and analysis know-how of the thermal, structural, and electromagnetic field analysis software "μ-EXCEL" are published. Easily search and browse from your smartphone!

"Analysis Know-How.com" is a dedicated site that introduces know-how to support the introduction, utilization, and application of the thermal, structural, and electromagnetic field analysis software "μ-EXCEL." Each video is compact, lasting about 1 to 2 minutes, allowing you to easily check the topics you want to know during your spare time using your smartphone or other devices. 【What is "μ-EXCEL"?】 It is software that operates on Excel and allows for full-scale simulations with simple operations. We offer versions for electromagnetic force, motor characteristics, heat conduction, and more. A subscription service is also available starting from one month. *For more details, please check the link below. Feel free to contact us as well.

  • Other Software
  • Structural Analysis Software

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Introduction to Desktop Structural Analysis Program

Creating geometry and analysis models, executing analysis, and post-processing, all realized in one software on one PC!!

【Features】 ○ A structural analysis solution that combines the pre- and post-processor "Femap" with the analysis solver "NX Nastran" ○ A series of tasks for finite element analysis, including the creation of analysis models from 3D-CAD generated shape data, analysis, and result display, can be accomplished with a single software on one PC ○ Operates on PCs equipped with Windows, allowing work in a familiar environment ○ High operability ○ Easy-to-implement pricing ○ Supports 64-bit environments ○ Capable of handling large-scale analyses ◎ For more detailed information, please refer to the catalog or contact us directly.

  • Scientific Calculation and Simulation Software
  • Structural Analysis Software

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Safety Standards Verification & Reporting Tool 'SDC Verifier'

You can perform everything from specification verification to report creation!!!

【Features】 ◆ Load Creation and Management Easily create combinations of FEM loads, combinations of FEM analysis results, load groups, and load cycles, as well as cycle loads and proportional loads used for fatigue evaluation. ◆ Detection Tools Equipped with the ability to automatically detect complex structural elements such as frames, panels, plates, beam members, and joints, and calculate their dimensions. ◆ Standard Verification Capable of evaluating buckling of plates and beam structures, strength evaluation of tube structures, strength and buckling evaluation of frame structures such as cranes, and welding fatigue evaluation according to BS7608. ◆ Report Generation FEM analysis results, standard verification results, and contour diagrams can be directly incorporated into reports. There is a template function that allows for the reuse of a series of calculation processes. 【Application Examples】 ○ Evaluation of welding fatigue safety factors ○ Integrity evaluation of crane structural components against wind loads ○ Buckling evaluation of hull panels

  • Crane and others
  • Structural Analysis Software

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[Technical Brochure Giveaway] Full of Structural Analysis Case Studies from Skidmore, Owings & Merrill in the U.S.

Introducing the technologies that supported the design of the world's tallest tower in Dubai and the Sears Tower in Chicago!

Skidmore, Owings & Merrill, the architectural firm behind the world's tallest building, the Burj Khalifa in Dubai, and the Sears Tower in Chicago. Alteia Engineering is currently offering a free booklet featuring Skidmore's analytical methods! We thoroughly introduce the structural analysis techniques that are essential for designing beautiful and strong high-rise buildings. [Contents] - To build innovative buildings - Analytical techniques to solve technical challenges - Visualizing building strength design with simulation technology, etc. *For more details, please download the catalog or contact us.

  • others
  • Structural Analysis Software

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Engineer'sStudio/UC-win/Section

Program for calculating in-plane loads of arbitrary-shaped planar frameworks and program for calculating arbitrary-shaped RC/SRC cross-sections considering biaxial bending.

EngineersStudioTM is a 2D elastic analysis product developed based on numerous requests. UC-win/Section Ver.3 is a program that calculates stress, resistance moment, ultimate moment, and initial yield moment for reinforced concrete and steel-reinforced concrete sections with various cross-sectional shapes.

  • Scientific Calculation and Simulation Software
  • Structural Analysis Software

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[Information] Simcenter FEMAP Functions for the Construction Field

Used in various fields around the world! Introducing analysis functions in the construction sector!

This document introduces the analysis capabilities of 'Simcenter FEMAP' in the construction field, which consists of the pre- and post-processor (FEMAP) and the structural finite element method solver (Simcenter Nastran). Simcenter Nastran is used in various fields worldwide and is widely utilized in the construction sector as well. For example, it is used to evaluate stress distribution in composite structures made of steel and concrete, and to assess the stability of concrete dam embankments. 【Contents】 ■ About Simcenter FEMAP ■ Available analysis functions ■ Batch placement of shell elements representing steel ■ Batch placement of GAP elements (spring elements) ■ Sweep along element edges *For more details, please refer to the PDF document or feel free to contact us.

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3DEXPERIENCE SIMULIA <Static Analysis and Eigenvalue Analysis>

Vibration characteristics of components can also be evaluated! Analysis of volumetric components, surface components, and more can be performed.

"3DEXPERIENCE SIMULIA" assists designers in understanding the behavior of designs and accurately calculating displacements and stresses within components under various load conditions. By calculating natural frequencies and associated mode shapes, it evaluates the vibrational characteristics of components. It is also capable of analyzing volumetric parts, surface parts, and wireframe geometries. "SIMULIA" improves product performance through virtual testing before creating physical prototypes, reduces the need for material prototypes, and drives technological innovation. 【Features】 - Assists designers in understanding design behavior and accurately calculating displacements and stresses within components under various load conditions. - Evaluates the vibrational characteristics of components by calculating natural frequencies and associated mode shapes. - Capable of analyzing volumetric parts, surface parts, and wireframe geometries. *For more details, please refer to the PDF document or feel free to contact us.

  • Scientific Calculation and Simulation Software
  • Other Software
  • Construction and process management software
  • Structural Analysis Software

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3DEXPERIENCE SIMULIA <Contact Condition Definition>

Accurately represent the interactions and connections of components! Designers can perform advanced analysis themselves.

"3DEXPERIENCE SIMULIA" improves product performance through virtual testing before creating physical prototypes, reduces the need for material prototypes, and drives technological innovation. It expands the capabilities of "Generative Part Structural Analysis," enabling analysis of assemblies and individual parts. In assembly analysis, it accurately represents the interactions and connections between parts, allowing for more realistic and precise simulations. 【Features】 - Enables analysis of assemblies and individual parts - In assembly analysis, accurately represents the interactions and connections between parts for more realistic and precise simulations - Allows designers to perform advanced analyses themselves - Enables repeated design, analysis, and redesign to improve quality *For more details, please refer to the PDF materials or feel free to contact us.

  • Scientific Calculation and Simulation Software
  • Other Software
  • Construction and process management software
  • Structural Analysis Software

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For the analysis of civil structures, general-purpose structural analysis software 'ISCEF'

It is a structural analysis software (CAE) specialized for civil engineering structures such as dams and related structures. It is capable of coupled analysis of structures and fluids, as well as slip stability analysis.

"ISCEF" is a general-purpose structural analysis code developed independently by our company using the finite element method. It excels in the analysis of ground, rock, and related structures due to its dynamic analysis coupling capabilities for structures and fluids, as well as its crack tracking functionality for concrete structures. However, it also demonstrates sufficient functionality in general structural analysis due to its high versatility (including two-dimensional and three-dimensional problems, static and dynamic problems, linear and nonlinear problems, etc.). We have a proven track record not only for the dam body but also for various ancillary structures such as steel gates, dam intake towers, and gate pillars. Leveraging the strengths of our in-house development, we can accommodate detailed customizations based on your requests. Additionally, we offer contracted analysis services using the same software. *For more details, please refer to the PDF document or feel free to contact us.

  • Other measuring instruments
  • Other analytical equipment
  • Structural Analysis Software

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ISCEF Utilization Case / Dam [Crack Tracking Function for Concrete Structures]

Nonlinear dynamic analysis can reproduce the occurrence and progression of cracks at their origin! ISCEF, a structural analysis software suitable for large-scale structures.

We would like to introduce the application examples of the structural analysis software 'ISCEF', suitable for civil engineering structures. In concrete structures such as gravity dams, it is necessary to simulate crack propagation, reproduce the movement of joint connections, and conduct analyses considering propagation speed by modeling the reservoir as a compressible fluid. To understand the vibration characteristics of the entire dam, we propose optimal analysis procedures and methods, taking into account the characteristics of the analysis targets, including "actual eigenvalue analysis," "static analysis," and "time history response analysis." [Gravity Dam Analysis] ■ Actual Eigenvalue Analysis ■ Static Analysis ■ Time History Response Analysis *For more details, please refer to the PDF materials or feel free to contact us.

  • Other measuring instruments
  • Other analytical equipment
  • Other Software
  • Structural Analysis Software

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[ISCEF Use Case] Tunnels and Excavation

Introducing case studies of the structural analysis software 'ISCEF', optimized for large-scale structures.

We would like to introduce the case studies of the structural analysis software 'ISCEF', which is optimal for civil engineering structures. In tunnel design, which has been based on empirical engineering, there is a growing demand for deeper investigations through numerical analysis. Our company proposes the most suitable analysis methods according to construction conditions such as excavation and support work. Furthermore, by reproducing the nonlinear characteristics of structural elements (beams, rods, springs, etc.) necessary for modeling not only the ground but also the structures, we can achieve analyses with enhanced reproducibility. [Tunnel Analysis] ■ Initial Earth Pressure Analysis - Pre-excavation earth pressure stress - Post-excavation stress distribution ■ Construction - Construction model - Post-construction stress distribution *For more details, please refer to the PDF materials or feel free to contact us.

  • Other measuring instruments
  • Other analytical equipment
  • Other Software
  • Structural Analysis Software

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[ISCEF Use Case] Temperature Analysis

Introducing case studies of the structural analysis software 'ISCEF' optimized for large-scale structures.

We will introduce the use case of the structural analysis software 'ISCEF', which is optimal for civil engineering structures. In large-scale mass concrete construction, such as dams, temperature stress due to the hydration heat of cement and temperature cracking become significant issues. To achieve higher quality construction, factors like lift schedules and curing conditions have a major impact, and these construction conditions also reflect on the project timeline and costs, necessitating more optimal construction plans. Our company considers the characteristics of the analysis target and proposes appropriate analysis approaches and methods. 【Temperature Analysis】 ■ Analysis Settings ■ Temperature Conditions ■ Constraint Matrix Method *For more details, please refer to the PDF materials or feel free to contact us.

  • Other measuring instruments
  • Other analytical equipment
  • Other Software
  • Structural Analysis Software

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ISCEF Application Example / Temperature Analysis [For Large-Scale Mass Concrete Construction]

From thermal conduction analysis due to mass concrete placement to temperature stress analysis. We will introduce examples of the use of the structural analysis software 'ISCEF', which is suitable for large-scale structures.

We will introduce a case study on the use of the structural analysis software 'ISCEF', which is suitable for civil engineering structures. In large-scale mass concrete construction, such as dams, temperature stress due to the hydration heat of cement and temperature cracking become significant issues. To achieve higher quality construction, factors such as lift schedules and curing conditions have a major impact, and these construction conditions also reflect on the project duration and costs, necessitating more optimal construction plans. Our company proposes appropriate analysis approaches and methods, taking into account the characteristics of the analysis target. [Temperature Analysis] ■ Analysis Settings ■ Temperature Conditions ■ Constraint Matrix Method *For more details, please refer to the PDF document or feel free to contact us.

  • Other measuring instruments
  • Other analytical equipment
  • Other Software
  • Structural Analysis Software

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ISCEF (AICEF) "Coupled Analysis of Structures and Fluids"

Equipped with coupled analysis functions for structures and fluids! Compressible fluids considering propagation speed are also available.

For structures that come into direct contact with fluids, such as dam embankments, coupled analysis between the structure and the fluid is necessary. The structural analysis software 'ISCEF' that we handle is suitable for civil engineering structures and includes not only incompressible fluids but also compressible fluids that take propagation speed into account. [Features] - It is possible to model using compressible fluid elements. - Both compressible and incompressible fluid elements can be used for two-dimensional as well as three-dimensional analysis. *For more details, please refer to the PDF materials or feel free to contact us.

  • Site and ground investigation
  • Other civil engineering services
  • Scientific Calculation and Simulation Software
  • Structural Analysis Software

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ISCEF (AICEF) "Nonlinear Model of Ground"

Equipped with a method to model the nonlinearity of the ground! Introducing AICEF's sequential nonlinear model.

Two methods for modeling the nonlinearity of the ground are the equivalent linear model and the sequential nonlinear model. The structural analysis software 'ISCEF' that we handle, suitable for civil engineering structures, includes not only the equivalent linear method but also sequential nonlinear methods such as the Hardin-Drnevich model (H-D model), Ramberg-Osgood model (R-O model), and General Hyperbolic Equation model (GHE model). 【Sequential Nonlinear Methods in ISCEF】 ■ Hardin-Drnevich model (H-D model) ■ Ramberg-Osgood model (R-O model) ■ General Hyperbolic Equation model (GHE model) *For more details, please refer to the PDF materials or feel free to contact us.

  • Site and ground investigation
  • Other civil engineering services
  • Scientific Calculation and Simulation Software
  • Structural Analysis Software

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[Technical Data] ISCEF Fiber Element

I will explain in detail about fiber elements, which are elements that represent cross-sectional shapes, using diagrams.

This technical document introduces the ISCEF fiber element. The fiber element is a type of element that represents the cross-sectional shape using a collection of fibers, each defined by material properties Ei, νi, yi, area Ai, and coordinates (yi, zi). Additionally, since it is possible to define material properties and nonlinear conditions for each fiber, it is effective for the analysis of RC structures and similar applications. [Contents] ■1. Fiber Element Model ■2. Nonlinear Model *For more details, please refer to the PDF document or feel free to contact us.

  • others
  • Structural Analysis Software

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Technical Data: Multi-Spring Element

Explanation of damping constants and hysteresis curves in multi-spring elements.

This technical document introduces multi-spring elements. It covers topics such as "skeleton curves," "changes in strength and stiffness," and "damping constants," presented over a total of 16 pages. Detailed explanations are provided using diagrams. [Contents] ■1. Skeleton Curves ■2. Changes in Strength and Stiffness ■3. Damping Constants ■4. Hysteresis Curves ■5. Stress-Strain Relationships ■6. Supplement *For more details, please refer to the PDF document or feel free to contact us.

  • others
  • Structural Analysis Software

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Technical Data: About Fluid Elements

I will explain in detail the differences between compressible and incompressible fluids in fluid elements.

This technical document introduces fluid elements. It covers the differences between "compressible and incompressible fluids" and "viscous and inviscid fluids" in a total of 8 pages. Detailed explanations are provided using diagrams and formulas. [Contents] ■ Differences between compressible and incompressible fluids ■ Differences between viscous and inviscid fluids *For more details, please refer to the PDF document or feel free to contact us.

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