We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Simulation software.
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Simulation software Product List and Ranking from 163 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

Simulation software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

  1. シュレーディンガー Tokyo//software
  2. CGTech Tokyo//software
  3. FsTech Kanagawa//software
  4. 4 アスペンテックジャパン/AspenTech Tokyo//software
  5. 5 テクノ Saitama//Industrial Electrical Equipment

Simulation software Product ranking

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

  1. Accelerating Next-Generation Polymer Design: Digital Chemistry Platform シュレーディンガー
  2. Robot simulation software "FRSim" テクノ
  3. Aspen Plus process simulation software アスペンテックジャパン/AspenTech
  4. 4 CNC simulation software『Vericut 9.6』 CGTech
  5. 5 Satara Phoenix WinNonlin

Simulation software Product List

451~465 item / All 679 items

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Press forming simulation software 'AutoForm' *Case study collection available

What is the solution that covers the entire process chain from the design of press-formed parts to mass production?

"AutoForm" is a press forming simulation software that minimizes rework in the manufacturing process. It has a fast calculation speed, and operation is as simple as following the guidance and using the default settings. This allows for better parts to be brought to market in a shorter time and at a lower cost. - There is an increasing number of difficult-to-form materials such as high-strength steel and complex-shaped parts. - There is a desire to shorten production preparation time. - There is a lot of variability in overseas production. Are you facing challenges in the increasingly difficult development of automotive press-formed parts? [Recommended for those who] - Want to operate easily - Want to increase calculation speed - Want to quickly identify the causes of variability and solve them efficiently On this page, you can download a collection of case studies that include examples such as the "utilization by Peugeot-Citroën," which has aimed to shorten lead times and development periods within a limited timeframe, and reduce costs for trials and production. *If you would like technical materials or domestic case studies, please contact us using the button below.

  • Other operation management software
  • Image analysis software

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Analytical engineering improvement, robustness analysis, mass production support (process planning and cost verification)

It helps to improve and verify the molding process, reducing or eliminating the percentage of defective parts.

It helps to improve and verify the molding process, reducing or eliminating the percentage of defective parts. This solution supports the standardization, optimization, and visualization of press molding production operations using simulations. It can primarily be utilized in three scenarios: SPI (Statistical Process Improvement), robustness analysis, and trial/production support. ○ SPI (Statistical Process Improvement) Automatically calculates continuous combinations of all conditions based on experimental design. It allows for the evaluation of verification results in a visually comprehensible manner using statistical methods. ○ Robustness Analysis Defines and calculates the range of variations that can realistically occur, simulating actual production at a higher level. ○ Trial/Production Support Enables prior knowledge of which parameters to change and in what direction to achieve better results in response to issues that arise on-site.

  • simulator

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Press Molding Simulation Technology Information [AF Newsletter No. 1]

Supporting Japan's "monozukuri" through digitalization!

○ Launch of the email newsletter ○ Responding to the needs of the manufacturing site! ○ Supporting the "manufacturing" of Ford Germany through digitalization!

  • Other analyses

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Strengthening competitiveness through maintaining profitability and productivity Case study video <Customer case>

A case study video showcasing how Walker Tool & Die, a manufacturer of steel and aluminum products, utilizes AutoForm has been released.

Walker Tool & Die, which manufactures steel and aluminum products, has released a case study video showcasing their use of AutoForm. They have utilized AutoForm for many years to verify the press forming process and material usage, achieving high-precision estimates. They place great importance on overwhelming calculation speed and the accuracy of the results. Currently, the case study video from Walker Tool & Die is available for viewing.

  • Press Dies

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Simplifying the modeling of cooling water channels in hot press forming.

AutoForm has further enhanced its capabilities in hot press forming simulation by utilizing cutting-edge technology.

By using AutoForm, automotive manufacturers and suppliers can reliably design the processes for hot press-formed parts required for new car models. Additionally, it allows for the consideration of cooling water channels, enabling more accurate and easier prediction/detection of the location and size of hotspots that occur on the mold surface.

  • Other analyses
  • Other CAD related software

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AutoForm NEWS No.30

Introducing examples of how AutoForm has contributed to the education of young engineers.

Dear users, this is the quarterly publication "AutoForm NEWS" delivering information about AutoForm. It features an interview with Mr. Alper Güner, a Technical Product Manager specializing in hot press forming technology. 【Table of Contents】 ● [Case Study] Witec Co., Ltd. Significant reduction in analysis time and effective training for young engineers ● Engineer Interview Insights from an expert in hot press forming ● Efficient press forming simulation along the press forming process chain *For more details, please contact us.

  • Analysis Services
  • Other analyses

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[Case] Improved simulation accuracy in aluminum press forming.

Significant improvement in simulation accuracy! Introducing use cases of TriboForm.

We would like to introduce a case where the simulation accuracy in aluminum press forming has significantly improved through the use of "TriboForm," which we handle. Regarding the aluminum hood outer that was confirmed during the trial, no defects were detected in the initial stage of the forming simulation. However, by using "TriboForm" to examine the actual tribological behavior, we were able to address this issue. 【Features of TriboForm】 ■ User-friendly software that accurately reproduces complex tribological phenomena ■ Efficient simulation, visualization, and evaluation of friction and lubrication conditions ■ Easy integration with representative simulation software ■ Improved accuracy of press forming simulations ■ Reduction in the number of costly mold modifications during trials and production *For more details, please refer to the PDF materials or feel free to contact us.

  • Structural Analysis
  • Other analyses

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Friction and Lubrication Simulation Software 'TriboForm'

Achieving a new level of simulation accuracy! Simulating friction and lubrication conditions.

TriboForm is software that can quickly simulate the coating of molds, lubrication, surface characteristics of materials, friction of new sheet materials, and ultimately the quality of products in the press forming process. By considering the effects of tribology more realistically, it enables a new level of simulation accuracy. TriboForm products enhance the AutoForm product line. 【Features】 ■ Accurate representation of complex tribological phenomena ■ Simulation, display, and evaluation of friction and lubrication conditions ■ Easy integration with representative simulation software ■ Avoid costly mold modifications during trials and production *For more details, please refer to the PDF materials or feel free to contact us.

  • Press Dies
  • Mold Design
  • Stress Analysis

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Presentation of Case Studies: Introduction of Successful Examples of Cost and Process Reduction Using AutoForm!

A simulation software that contributes to quality improvement and lead time reduction by optimizing the press molding die process! We present case studies that summarize solutions to challenges!

We will present a collection of successful domestic and international case studies on the implementation of AutoForm, including examples of addressing mass production defects using AutoForm press forming simulation, shortening delivery times and improving quality through the introduction of CAE, and successfully promoting digital twin processes using AutoForm to reduce time and costs. 【Featured Cases】 ■ Response to mass production defects using AutoForm-Sigma at a major Tier 1 parts supplier (domestic case) ■ Gaining trust from clients through shortened delivery times and improved quality with the introduction of AutoForm (domestic case) ■ Reduction of time and costs utilizing digital die spotting (international case) ■ Mindset for successful simulation: A team leader from Renault Group advocates for a 70% reduction in man-hours (international case) ■ Hyundai's NC group successfully reduced man-hours by 50% in trim line deployment through CAE digital engineering (international case) *If you would like a collection of case studies, please refer to the PDF document or feel free to contact us.

  • simulator

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[Case Study] Identifying factors that affect mass production defects through molding simulation!

Nissan Motor Co., Ltd. identifies factors affecting the mass production cracking of panels through molding simulation!!

Nissan Motor Co., Ltd. utilized the robust analysis simulation software "AutoForm-Sigma" to examine the factors affecting mass production cracks in order to reduce the occurrence of panel mass production cracks at its manufacturing plants. By incorporating mass production variations into the simulation, we present a verification case that reproduced the mass production crack location with a probability of 52.9%. *For more details, please refer to the PDF document or feel free to contact us.*

  • simulator

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The Reality of Die Spotting: A Case Study of an Italian Mold Manufacturer

In exploring the possibility of time reduction, we focused on the entire spotting process.

The Fourth Industrial Revolution, commonly known as Industry 4.0, aims to accelerate design and production. Digitalization, smart factories, digital twins, and AI are methods to efficiently and effectively advance the entire process chain from product design to mass production. Although the use of press forming simulation software is progressing, the trial-out phase of molds still relies heavily on manual work and is significantly dependent on the experience of the operators. *For more details, please refer to the related links. Feel free to contact us for more information.

  • Mold Design

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[Customer Case] Significant Reduction in Tryout Frequency

A case where the assembly process of the white body was accurately predicted, significantly reducing the number of trial runs.

We would like to introduce a case where Starq Y-Tec Co., Ltd. significantly reduced the man-hours leading to the final product by utilizing "AutoForm Assembly." We verified whether the software could accurately reproduce defects and challenges that may arise in the assembly process. Additionally, actual parts were measured before running the simulation. We compared the simulation results with the actual measured values of the parts to validate the accuracy of the simulation. Measurements were taken at a total of 104 locations, with 80 locations showing a difference of less than 0.5mm, and among those, 56 locations had a difference of less than 0.3mm, demonstrating the ability to create models of very complex processes and make predictions. [Verification Details] - Can defects and challenges that may arise in the assembly process be accurately reproduced? - Actual parts were measured before running the simulation. - The simulation results were compared with the actual measured values of the parts to verify accuracy. *For more detailed information about the case, please refer to the related link. For further inquiries, feel free to contact us.*

  • Stress Analysis

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3DEXPERIENCE DELMIA <Equipment Planning>

Ideal for use in overall layout and flow verification! Inverse kinematics for robotic arms and similar applications is also possible.

"3DEXPERIENCE DELMIA" creates and verifies virtual models of manufacturing equipment. It creates kinematic models of equipment and manages motion controller definitions and groups. Additionally, it supports inverse kinematics for robotic arms and allows for the definition of conveyors used in simulations, with various types available for selection. 【Features】 ■ Creation and verification of virtual models of manufacturing equipment ■ Utilization in overall layout and flow verification ■ Creation of kinematic models of equipment ■ Definition of motion controllers and group management ■ Support for inverse kinematics for robotic arms ■ Definition of conveyors for use in simulations, with various types available for selection *For more details, please refer to the PDF document or feel free to contact us.

  • image_08.png
  • Process Control System
  • Other production management systems
  • Other operation management software

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3DEXPERIENCE DELMIA <Layout/Flow Verification>

Calculate the operating rate of the project! We will optimize line layout and resources by improving examination accuracy.

"3DEXPERIENCE DELMIA" conducts layout considerations for lines, assembly stations, etc. It is possible to start the definition from a 2D layout plan. It defines branching conditions, buffer capacity, transport time, input intervals, processing time, and the distribution of transport times. Additionally, it can calculate discrete simulations between processes and the operating rates of the processes. 【Features】 ■ Define the layout of the entire line to each station ■ It is also possible to start the definition from a 2D layout plan ■ Definition of branching conditions, buffer capacity, and transport time ■ Definition of input intervals, processing time, and the distribution of transport times ■ Calculate discrete simulations between processes and the operating rates of the processes ■ Optimization of line configuration and resources through improved consideration accuracy *For more details, please refer to the PDF materials or feel free to contact us.

  • Process Control System
  • Other production management systems
  • Other operation management software

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