CAE software Product List and Ranking from 6 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

CAE software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. アルテアエンジニアリング Tokyo//others
  2. くいんと Tokyo//others
  3. ウェーブフロント 本社 Kanagawa//others
  4. CAEソリューションズ Tokyo//Information and Communications
  5. 5 エヌ・エス・ティ Tokyo//Service Industry

CAE software Product ranking

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. [Data] Conceptual Design of the Althea Vehicle Body Frame Structure アルテアエンジニアリング
  2. Strong CAE software for gear pumps, 'Simerics MP+' ウェーブフロント 本社
  3. [Technical Column] Optimization Algorithm Using the H1 Gradient Method くいんと
  4. Example: CAD Integration - Dimension Optimization Linked with SOLIDWORKS くいんと
  5. 4 [Technical Column] The Theory of OPTISHAPE-TS くいんと

CAE software Product List

31~45 item / All 59 items

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[Technical Column] Optimization Algorithm Using the H1 Gradient Method

An overview of the structural optimization algorithm used in OPTISHAPE-TS! Introduction to the technical column.

In the previous articles, we explained the theoretical background of the H1 gradient method. Since the discussion became mathematically complex, in this article, we will introduce a more approachable topic: an overview of the structural optimization algorithm used in OPTISHAPE-TS. Please feel free to download and take a look. 【Contents】 <Chapter 17: Optimization Algorithm Using the H1 Gradient Method> ■ Solve the state equations and calculate the value of the evaluation function ■ Solve the adjoint equations and calculate the sensitivity of the evaluation function ■ Calculate the variation of design variables using the H1 gradient method ■ Calculate the weighting coefficients for the variations ■ Update the design variables ■ Satisfy the unsatisfied constraint functions *For more details, please refer to the PDF document or feel free to contact us.

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[Technical Column] The Theory of OPTISHAPE-TS: Sigmoid Function

A thorough explanation of linear spaces, also serving as a review! Introduction to our company's technical column.

This time, I will discuss the idea related to the optimization problem of a function that takes values within a certain specified range, specifically focusing on the sigmoid function. When solving non-parametric optimization problems using the H1 gradient method, we consider that an initial value of the function, which serves as the design variable, is given, and we update the design variable by adding an incrementing term to it. Therefore, this function must be an element of a linear space. I will carefully explain the concept of linear space as a review. Please feel free to download and take a look. [Contents] ■ Episode 29: Sigmoid Function *For more details, please refer to the PDF document or feel free to contact us.

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■□Optimization, Weight Reduction, Cutting-Edge Seminar□■

We will introduce the usage, precautions, and examples regarding the structural analysis and optimization of advanced material utilization products.☆

The use of composite materials is being actively considered as one solution for product lightweighting. Challenges such as cost and recycling are also being overcome, and it seems we are finally entering the practical stage. However, without establishing techniques to simulate the strength, safety, and productivity of products using new materials, we cannot move forward. In this seminar, we will introduce the optimization of composites using Abaqus and composite optimization pre-software, topology optimization with Tosca, adjoint optimization solvers, and plastic injection molding simulation with Simpoe-Mold. ============================= ● Date and Time: June 30, 2016 (Thursday) 13:30~17:00 ● Capacity: 30 participants (first come, first served) ● Venue: Dassault Systèmes Tokyo Headquarters Seminar Room 2-1-1 Osaki, Shinagawa-ku, Tokyo, ThinkPark Tower (Reception on 20th floor) (3 minutes walk from JR Osaki Station) ● Application URL: http://www.cae-sc.com/events/keiryo-saitekika-seminar-201606.html

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[Case Study] Cluster Machine Analysis of Large-Scale Models

You can analyze large-scale models quickly and at low cost!!!

◆◆Publication Content◆◆ ○Analysis of large-scale models using cluster machines   (NX Nastran SOL101 SOL103) ○Keywords: Cluster machines, parallel computing, large-scale models         Train vehicles, distributed memory parallel processing ○Case Summary ●For other features and details, please download the catalog.

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[Example] Free Surface Motion Simulation

Analysis of the sloshing phenomenon when the bottom of the tank is excited horizontally using the virtual fluid boundary and phantom elements of NX Nastran.

【Case Overview】 Containers for storing liquids, such as water tanks and oil tanks, experience a sloshing phenomenon where the free surface of the liquid inside the container oscillates at relatively low frequencies when subjected to vibrations. In this analysis, we utilized the virtual fluid boundary and phantom elements of NX Nastran to analyze the characteristics when the bottom of the tank is excited in the horizontal direction. *Note: Fluid can be modeled without creating elements.* □ For other functions and details, please refer to the catalog.

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[Case Study] Buckling Analysis of Thin-Walled Frame Structures

We performed advanced nonlinear analysis using NX Nastran for the elastic-plastic buckling problem of frame structures.

【Case Summary】 ■Product Name: NX Nastran ■Analysis: Nonlinear Static Analysis ■Industry: Mechanical Components Buckling is a deformation that exhibits very strong nonlinear characteristics. When buckling occurs, the strength and stiffness of the structure decrease sharply, leading to instability. Thin-walled frame structures, like the one shown on the right, have many failure modes, and buckling can cause extremely large deflections in the frame. Since part of the model may return from an elastic state to a plastic state and vice versa, the analysis becomes quite complex. This analysis example presents the results of advanced nonlinear analysis using NX Nastran for the elasto-plastic buckling problem of frame structures. □ For other features and details, please refer to the catalog.

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[Example] Optimization of Golf Club Heads

Analysis of golf club heads using optimization!!!

It is ideal for the characteristics of the golf club head to match the characteristics of the golfer, allowing for maximum performance of its capabilities. In this case, the key indicator is the initial ball speed at impact. In this example, we determined the optimal face thickness and shaft stiffness that maximize the initial speed under defined loading conditions (average golfer's power) using optimization methods. We created a process using ModelCenter, an optimization support tool, to analyze the impact of face structure and shaft stiffness on initial speed. This enabled us to examine the influence of each parameter and seek the optimal golf club characteristics. For more detailed information, please refer to the catalog or contact us directly.

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[Data] Conceptual Design of the Althea Vehicle Body Frame Structure

Introducing conceptual design utilizing simulation and AI technology!

This document presents the conceptual design of our vehicle body frame structure utilizing simulation and AI technology. We introduce the generative design of the body frame "C123 Process" and the high-speed calculation of vehicle characteristics using AI, "physicsAI." Additionally, we cover the designer CAE "SimSolid," which utilizes meshless analysis. [Contents] ■ Generative design of the body frame "C123 Process" ■ Semi-automated creation of C2 models from detailed FEM models in HyperAutomation ■ High-speed calculation of vehicle characteristics using AI - physicsAI ■ Designer CAE utilizing meshless analysis - SimSolid ■ Various simulation technologies supporting the practical use of mega casting ■ Altair's AI technology adopted by automotive companies worldwide *For more details, please download the PDF or feel free to contact us.

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CAE software "Simerics MP+" strong in electric pumps.

Simulate the flow characteristics of volumetric pumps such as gear pumps and vane pumps! A CAE software specialized for pumps that other CAE software struggles with!

Simerics MP+ is a fluid simulation tool for calculating the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variations of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes for clearances on the order of micrometers, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automotive and construction machinery, such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, the actual mesh creation and movement should be demonstrated in a demo presentation!!

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Strong CAE software for oil pumps, 'Simerics MP+'

Simulate the flow characteristics of positive displacement pumps such as gear pumps and vane pumps! A CAE software specialized for pumps that other CAE software struggles with!

Simerics MP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variations of flow fields (velocity vectors, pressure), flow rate, fluid forces, and torque Its greatest strength is the ability to automatically create meshes for clearances in the micrometer range, which is difficult for other general-purpose fluid analysis software!! Recently, there has been an increase in applications for automotive and construction machinery oil pumps, with examples such as vane pumps for power steering and CVTs, as well as trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. In particular, please see a demo for the actual mesh creation and movement!

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Technical Document "Flowers and Uncle: Static and Dynamic"

This is a technical document (educational material) on CAE created by a former CAE manager, linking practical applications with theory.

Featuring a veteran and a young employee as characters, we will advance the discussion on design and CAE through a dialogue format of questions and debates. The content is made easy to read and understand by using illustrations of the characters, diagrams, and photographs. Please feel free to utilize this for new employee training and practical reference. [Published Content] 10th Edition: "Static and Unstable Structures" ############################################################################ For technical materials, please contact us via the document download page linked above.

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Introducing new features quickly! Femap V11.3

Introducing the new features of Femap V11.3, a top-class general-purpose finite element method pre- and post-processor, along with a live demonstration.

【Event Overview】 ■Date: July 29, 2016 (Friday) 13:30 - 16:00 ■Participation Fee: Free (Pre-registration required) ■Capacity: 20 people ■Venue: CAE Solutions Training Center 2-1-10 Iidabashi, Chiyoda-ku, TUG Building 5F 【New Feature Enhancement Areas】 □Post-processing ・Tensor display ・Load display ・Abaqus result file (ODB) support □Geometry ・Chart window □Mesh ・Geometry surface ・Max Quads option □Pre-processing ・Renumber ・Draw/Erase toolbar ・Roll-through mode □Tool extensions □Enhanced measurement functions

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CAE software "Simerics MP+" strong in gear pumps.

Simulate the flow characteristics of positive displacement pumps such as gear pumps and vane pumps! A CAE software specialized for pumps that other CAE software struggles with!

Simerics MP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements in oil pumps for automobiles and construction machinery, with examples such as vane pumps for power steering and CVTs, and trochoid pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, the actual mesh creation and movement should definitely be demonstrated in a demo!

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Strong CAE software for vane pumps 'Simerics MP+'

Simulate the flow characteristics of volumetric pumps such as vane pumps! A CAE software specialized for pumps that other CAE software struggles with!

Simerics MP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variations of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automotive and construction machinery, such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. In particular, please see a demo presentation for the actual mesh creation and movement!

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CAE software "SimericsMP+" strong in automotive oil lubrication.

Fluid analysis software for gear pumps, vane pumps, and other positive displacement pumps! A CAE software specialized for pumps that other CAE software struggles with!

SimericsMP+ is a fluid analysis software designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid analysis software Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes with clearances in the µm range, which is difficult for other general-purpose fluid analysis software!! Recently, there has been an increase in achievements for oil pumps used in automobiles and construction machinery, with examples such as vane pumps for power steering and CVTs, and trochoid pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, the actual mesh creation and movement should definitely be demonstrated in a demo!

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