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Molding Simulation Product List and Ranking from 6 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
This ranking is based on the number of page views on our site.

Molding Simulation Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
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//software
  2. アイ・ティー・エス・ジャパン Chiba//Testing, Analysis and Measurement
  3. アプライドデザイン Tokyo//software
  4. 第一システムエンジニアリング Aichi//software
  5. CAEソリューションズ Tokyo//others

Molding Simulation Product ranking

Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
This ranking is based on the number of page views on our site.

  1. Press forming simulation Altair Inspire Form アルテアエンジニアリング
  2. Injection Molding Simulation "Moldex3D" 第一システムエンジニアリング
  3. T-SIM Vacuum Forming Simulation for Home Appliance Design アイ・ティー・エス・ジャパン
  4. High-performance press forming simulation "Stampack" アプライドデザイン
  5. Injection Molding Simulation Autodesk Moldflow CAEソリューションズ

Molding Simulation Product List

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Injection Molding Simulation Autodesk Moldflow

Deep examination and optimization of plastic products.

Conduct injection molding simulation to perform digital prototyping and evaluate product performance and manufacturing feasibility.

  • Other analyses
  • Molding Simulation

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Injection Molding Simulation "Moldex3D"

Plastic injection molding 3D analysis software! Simulating various aspects.

The 'Moldex3D' that we handle is a three-dimensional analysis software for plastic injection molding developed and sold by CoreTech System. It is capable of simulating various aspects of the injection molding process, including flow, packing, cooling, and warpage analysis. One example of a module is "MCM (Multi-Component Molding)," which allows for molding evaluation combined with materials other than resin. 【Standard Modules】 ■ Flow Analysis ■ Packing Analysis ■ Cooling Analysis ■ Warpage Analysis ■ Multi-Component Molding (MCM) *For more details, please refer to the related links or feel free to contact us.

  • Other CAD related software
  • Molding Simulation

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High-performance press forming simulation "Stampack"

Transforming the design process to achieve early launch of new products!

High-Performance Press Forming Simulation 'Stampack' ~ Achieving Early Market Introduction of New Products through Transformation of the Design Process! ~ By introducing computer simulation into the sheet forming process, it becomes possible to predict issues such as sheet breakage, wrinkles, and springback even before the design is finalized, before mold manufacturing, and before prototype forming. This allows for the anticipation of the final component shape, the effects of molds and tools, the effects of beads and guides, and the effects of sheet coatings. As a result, component designers, mold manufacturers, and final press processors can produce high-quality products, reduce trial-and-error methods, and significantly decrease the risks associated with market arrival time predictions and estimates. 【Features】 ● User-friendly Windows environment pre-post ● Full support for specialized analysis functions dedicated to the entire sheet forming process ● Dedicated automatic meshing function ● Latest automatic time-stepping explicit nonlinear dynamic finite element method analysis ● Technology and reliability recognized by worldwide users

  • Stress Analysis
  • Molding Simulation

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Press forming simulation Altair Inspire Form

It is a tool that allows for the consideration of press formability, process parameters, and material yield in the early stages of design. It enables proper design while shortening development time.

■Main Features of the Product - Press forming simulation software equipped with product design, moldability analysis, and cost estimation functions - Revolutionary operability achieved through an intuitive workflow and easy-to-understand user interface - Identification of potential defects in press forming (such as cracks and wrinkles) - Fast and accurate execution of blank nesting for coil materials in progressive and transfer press forming, maximizing material yield ■Strengths of Altair Inspire Form Altair Inspire Form provides an efficient press forming simulation environment for product designers and production process engineers to optimize designs and simulate excellent production techniques and material cost reductions. With a fast and easy one-step analysis module, it can predict press formability in the initial product development stage in just a few seconds. Automatic blank nesting generates optimal layouts to maximize yield for coil-shaped unfolded blanks. The incremental analysis features a highly scalable solver, allowing for repeated simulations of multi-stage forming processes, trimming processes, and springback processes using the latest intuitive user interface.

  • Other analyses
  • Structural Analysis
  • Stress Analysis
  • Molding Simulation

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3D molding simulation

We realize reliable products with an excellent system!

This is an introduction to "3D Forming Simulation" by Meisei Metal Industry Co., a comprehensive manufacturer of press molds. We support various types of 3D forming simulations, including SE activities, 3D design, and CAD CAM.

  • Mold Design
  • Molding Simulation

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Vacuum Forming Simulation T-SIM for Food Packaging

Accurately analyze drawdown and cooling to improve the sealing performance of food packaging.

In the food packaging industry, the airtightness of packaging materials is crucial for maintaining product quality. In particular, accurate analysis that does not overlook even slight abnormalities during the molding process is required to prevent the deterioration of contents and ensure consumer safety. The vacuum forming simulation program T-SIM supports the design of highly airtight packaging materials by accurately analyzing sheet sagging and the cooling process. 【Application Scenarios】 - Design of food packaging containers - Evaluation of packaging material airtightness - Reduction of foreign matter contamination risks 【Benefits of Implementation】 - Reduction of product waste due to sealing failures - Extension of shelf life - Increased reliability from customers

  • Other molds
  • Molding Simulation

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Aerospace Vacuum Forming Simulation T-SIM

From drawdown to cooling, accurate strength analysis of aerospace components.

In the aerospace industry, lightweight and high-strength components are required. Vacuum forming is an effective method for manufacturing complex-shaped parts, but the strength is greatly influenced by the forming conditions, making pre-validation through simulation essential. In particular, accurately predicting temperature and stress application, and finding the optimal forming conditions, are crucial for enhancing the reliability of components. T-SIM supports the strength design of aerospace parts by employing an integral viscoelastic model and accurately analyzing sheet sag during drawdown and cooling after forming. 【Application Scenarios】 - Forming of aircraft interior components - Manufacturing of rocket parts - Design of drone exterior components 【Benefits of Implementation】 - Improved component strength by identifying optimal forming conditions - Cost reduction through a decrease in the number of prototypes - Shortened development time through quality prediction at the design stage

  • Other molds
  • Molding Simulation

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T-SIM Vacuum Forming Simulation for Home Appliance Design

Accurate simulation of vacuum forming from drawdown to cooling.

In the home appliance design industry, vacuum forming technology is essential for balancing product appearance and functionality. Particularly for products with complex shapes and high design quality, it is necessary to prevent molding defects and consistently produce high-quality products. Improper molding can damage the product's appearance and lead to a decrease in functionality. T-SIM automatically calculates the optimal initial sheet temperature settings to flexibly reproduce various vacuum forming processes and achieve a uniform thickness distribution. 【Usage Scenarios】 - Design consideration for home appliances - Prototyping through vacuum forming - Optimization of molding conditions - Mold design 【Benefits of Implementation】 - Realization of high-design products - Reduction of molding defects - Shortening of prototyping periods - Cost reduction

  • Other molds
  • Molding Simulation

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Toy-oriented Vacuum Forming Simulation T-SIM

Accurate analysis of sheet droop during drawdown and cooling after molding.

In the toy industry, ensuring product safety is the top priority. Especially for toys that children may put in their mouths, it is crucial to prevent breakage due to molding defects and exposure to harmful substances. The vacuum forming simulation program T-SIM flexibly reproduces various molding conditions and automatically calculates the optimal initial sheet temperature settings to achieve a uniform thickness distribution. 【Usage Scenarios】 - Safety evaluation of vacuum-formed toys - Improvement of product durability - Reduction of molding defect risks 【Benefits of Implementation】 - Enhanced product safety - Reduction in the number of prototypes - Cost savings

  • Other molds
  • Molding Simulation

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Vacuum Forming Simulation T-SIM for Electronic Devices

Accurate analysis of sheet droop and cooling during drawdown.

In the electronics industry, as products become smaller and more high-performance, heat dissipation measures have become an important issue. In the design of components for efficiently dissipating heat, vacuum forming technology is essential. However, difficulties in predicting sheet sag during molding and the cooling process can pose barriers to design. T-SIM adopts an integral viscoelastic model to address these challenges. 【Usage Scenarios】 - Electronic device enclosures - Heat dissipation components - Thermoplastic resin molding 【Benefits of Implementation】 - Automatic calculation of optimal initial sheet temperature settings - Uniform distribution of wall thickness - Reduction of the risk of molding defects

  • Other molds
  • Molding Simulation

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Vacuum Forming Simulation for Displays T-SIM

Accurate analysis from sheet droop during drawdown to cooling after molding.

In the display industry, thinness is a crucial factor that influences product competitiveness. Vacuum forming technology is essential for the manufacturing of display components, but molding defects and uneven wall thickness can negatively impact product quality and performance. T-SIM provides an optimal solution for achieving both thinness and high-quality product manufacturing by employing an integrated viscoelastic model to accurately simulate sheet sag during drawdown and cooling after molding. 【Application Scenarios】 - Examination of optimal molding conditions in vacuum forming of display components - Improvement of product quality through uniform wall thickness distribution - Reduction of the risk of molding defects 【Benefits of Implementation】 - Cost reduction through a decrease in the number of prototypes - Shortening of product development timelines - Stable supply of high-quality display components

  • Other molds
  • Molding Simulation

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