Simulation softwareのメーカーや取扱い企業、製品情報、参考価格、ランキングをまとめています。
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Simulation software - メーカー・企業177社の業務用製品ランキング | イプロスものづくり

更新日: 集計期間:Jun 03, 2026~Jun 30, 2026
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Simulation softwareのメーカー・企業ランキング

更新日: 集計期間:Jun 03, 2026~Jun 30, 2026
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  1. FsTech Kanagawa//software
  2. CGTech Tokyo//software
  3. アスペンテックジャパン/AspenTech Tokyo//software
  4. 4 シーメンス株式会社 gPROMS ポートフォリオ Kanagawa//software
  5. 5 null/null

Simulation softwareの製品ランキング

更新日: 集計期間:Jun 03, 2026~Jun 30, 2026
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  1. CNC simulation software『Vericut 9.6』 CGTech
  2. Aspen Plus process simulation software アスペンテックジャパン/AspenTech
  3. Thermal Fluid Simulation Software 'AICFD' FsTech
  4. 4 Design and Optimization of VOITH Linear Jet FsTech
  5. 5 Engine simulation software "GT-POWER" IDAJ

Simulation softwareの製品一覧

511~540 件を表示 / 全 776 件

表示件数

Traffic simulation software "PTV Vissim"

Realistic simulation and comprehensive 3D visualization!

"PTV Vissim" is a multimodal traffic simulation software. This product digitally reproduces the traffic patterns of all road users. It is trusted by traffic planners and engineers around the world, evaluating and improving the performance of traffic facilities. The results serve as the foundation for decision-making in traffic planning, addressing issues such as congestion and emissions in road traffic. [Features] - Years of research and continuous development with customers - Multimodal traffic - Flexible and seamless integration - Sophisticated motion models - Improvement of traffic flow - Enhanced data visualization *For more details, please refer to the PDF materials or feel free to contact us.

  • Software (middle, driver, security, etc.)
  • Simulation software

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Transit Optimal Platform

Cutting-edge real-time 3D DX/simulation/digital twin platform!

The Transit Optimal Platform is a real-time 3D simulation software developed by our company for factories and warehouses. It can also be used as a digital twin environment for simulating and reproducing scenarios such as evaluating and verifying material handling equipment, personnel allocation, and layouts in factory and warehouse operations. Logistics challenges vary among our customers. - Some may only want to consider the number of AGVs in existing factories. - Others may want to think about logistics planning in factories where layouts change daily. - Some may be considering complete automation of their factories. - Others may want to optimize logistics with a focus on collaboration with humans, and so on. To address these diverse requests, our tool offers a licensed product of a function library for logistics simulation and develops the operation screens, appearing objects, and integration with other systems according to specific requests. Additionally, it can represent not only the interior of factories and warehouses but also inter-building deliveries and various environments and objects such as airports, hospitals, and ports. *For more details, please download the PDF or feel free to contact us.

  • 企業:iPX
  • 価格:Other
  • simulator
  • Simulation software

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[Problem Solving] We introduced AGVs for the first time, but traffic congestion is occurring.

All you need to do is provide the data necessary for the simulation!

Our service "LogiUp" addresses challenges such as introducing AGVs for the first time but experiencing congestion, and wanting to know efficient operational methods. We recreate the layout and operational status of your factory or warehouse in a virtual environment, providing a service that visualizes and delivers simulation results for effect verification during the introduction of material handling equipment and analysis of the current situation. Through simulations, it becomes possible to optimize the factory and warehouse layout, the number of AGVs, and the individual routes of AGVs before actual equipment installation or construction, enabling more efficient operation of factories and warehouses. [Recommended for companies like these] ■ High AGV operating costs; want to reduce the number of AGVs as much as possible ■ Considering multiple AGVs but unsure which AGV specifications are optimal ■ Want to evaluate the impact of changes to the layout within the factory, such as storage areas, material handling equipment, and traffic flow ■ Want to verify the effects of introducing Transit Optimal Platform/xOpt in advance *For more details, please refer to the related links or feel free to contact us.

  • 企業:iPX
  • 価格:Other
  • Virtual Reality Related
  • Simulation software

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Simulation software "Enepro21 multi"

Accurate, simple, and fast! A tool for considering multi-air conditioning systems for buildings!

"Enepro21 multi" is a groundbreaking simulation tool that can accurately calculate the energy consumption, operating costs, and CO2 emissions of individual packaged air conditioning systems, such as multi air conditioners for buildings. It can accommodate a wide range of simulations, from entire building simulations to system-level simulations, depending on the level of detail required for system consideration. 【Features】 ■ Accurately calculates energy consumption, operating costs, and CO2 emissions ■ Offers a wide range of flexible responses according to the level of detail in system consideration ■ Easily simulates various systems *For more details, please refer to the PDF materials or feel free to contact us.

  • Software (middle, driver, security, etc.)
  • Simulation software

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Simulation software "Enepro21 Regular"

Simulation software capable of evaluating energy facilities, including power generation equipment, solar power generation, and solar thermal utilization!

"Enepro21 Regular" is an energy simulation software that allows for the free evaluation of a wide range of energy facilities, including power generation systems, and can meet various energy utilization needs. It can execute simulations accurately and quickly by utilizing performance data from over 7,000 devices. It has received high praise from users. 【Features】 ■ Freely evaluate a wide range of energy facilities, including power generation systems ■ Reproduce actual equipment's annual operating performance with an error of 1-2% ■ A technical software that can be used by anyone involved in energy *For more details, please request materials or view the PDF data from the download section.

  • Software (middle, driver, security, etc.)
  • Simulation software

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E.I. Engineering Co., Ltd. Company Profile

We are always tackling new challenges! We contribute to the creation of an eco-friendly society.

E.I. Engineering utilizes the Enepro21 energy simulation software to comprehensively propose energy savings, cost and CO2 reductions, and power reductions for decentralized power generation and energy facilities. Additionally, we provide tools that combine high accuracy and ease of use, leveraging the know-how gained from our consulting services to enable business expansion. As a professional company with the corporate philosophy of "Creating an Eco-Friendly Society," we will continue to challenge ourselves with new developments. 【Business Activities】 ■ Energy status analysis and diagnostic services ■ Equipment design support services ■ Energy software development services ■ Licensing of ENEPRO21 Regular / Lite ■ Licensing of ETOMAS21 *For more details, please refer to the PDF materials or feel free to contact us.

  • Software (middle, driver, security, etc.)
  • Development support tools (ICE, emulators, debuggers, etc.)
  • Embedded system design service
  • Simulation software

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Simulation model "Liquid Cooling Library"

You can freely connect components! Easily experience non-standard circuits.

The "Liquid Cooling Library" is a library that enables the design of liquid cooling systems for internal compressed or uncompressed flow. It is adaptable to a wide range of applications, including automotive, industrial equipment, and process processing. It is also suitable for controlling pump dimensions and thermal transient responses, and can be used together with the geometry-based heat exchanger models from the heat exchanger library. With the ability to freely connect components, it allows for easy realization of non-standard circuits. 【Features】 ■ High-performance model for simulating the behavior of incompressible liquid circulation circuit models in the early stages of design ■ Consideration of compressible or incompressible flow to accurately depict liquid cooling scenarios ■ Plug-and-play compatibility with other libraries that enable comprehensive system-level thermal management ■ Flexible bonding with components based on special needs, allowing for the creation of non-standard circuits *For more details, please refer to the PDF materials or feel free to contact us.

  • Software (middle, driver, security, etc.)
  • simulator
  • Cooling system
  • Simulation software

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Simulation model "Vehicle Dynamics Library"

Providing an open and user-customizable environment for vehicle-wide and subsystem analysis!

The "Vehicle Dynamics Library" provides an open and user-customizable environment for the analysis of entire vehicles and subsystems. Designed using a hierarchical structure and a rich library of predefined vehicle components, it offers a convenient and straightforward configuration that accommodates various vehicle models. Additionally, it features extensive multi-body and multi-domain simulations with real-time capabilities, along with model export functions, allowing for broad sharing across the organization. 【Features】 ■ Allows for straightforward construction of any vehicle ■ Access to numerous predefined components and subsystems ■ Capable of quickly handling real-time multi-body models ■ Ability to build systems composed of multiple domains ■ Hierarchical structure handling *For more details, please request materials or view the PDF data available for download.

  • Software (middle, driver, security, etc.)
  • simulator
  • Other analyses
  • Simulation software

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Simulation Model "Steam Cycle Library"

Applied to the analysis of steam compression cycles and organic Rankine cycles.

Modelron's "Steam Cycle Library" is a commercial library based on the Modelica language. It is suitable for the configuration of steam cycle systems applicable to heating and cooling steam compression cycles for vehicles, residences, and commercial facilities, as well as organic Rankine cycles capable of recovering waste heat. It allows for the simulation of both transient and steady-state conditions, enabling the verification of component interactions and the dynamic behavior of the system in the early stages of design. This library can be used as an integrated part of energy management design for mobile applications and residential spaces.

  • others
  • Other CAD related software
  • Simulation software

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Making ideal cutting processing a reality! Cutting Catcher

Simulation software that dramatically improves processing efficiency.

The "Cutting Catcher" is a simulation software that theoretically derives optimal end mill cutting conditions, reduces tool wear, and dramatically improves processing efficiency. By using the Cutting Catcher as a tool, it enables both offensive and defensive applications, and can be utilized for optimizing end mill tool specifications and tool holder specifications. 【Features】 ■ Optimization simulation of processing conditions using a unique analysis method ■ Excellent cost-effectiveness ■ Easy to implement and operate *For more details, please refer to the catalog or feel free to contact us.

  • 企業:MIST
  • 価格:Other
  • Other CAD related software
  • Other CAM related software
  • Simulation software

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Maritime and Offshore design

Processing in multiple fields within a single environment! Easy handling of large-scale and complex models.

BETA CAE Systems' software package provides simulation solutions that cover the advanced needs of the maritime industry. The advanced pre-processing and post-processing capabilities of our products significantly contribute to cost reduction in research and design processes. The rich tools and methods elevate simulation analysis in maritime testing to a new level, helping to understand the behavior of models. 【Features】 ■ Process automation ■ Geometry cleanup ■ Shell and volume meshing ■ Boundary layer mesh ■ Interoperable deck *For more details, please refer to the PDF materials or feel free to contact us.

  • Other analyses
  • Simulation software

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3D resin flow simulation software "Moldex3D"

In addition to analyzing flow, pressure holding, cooling, and warping, we will analyze various aspects of the injection molding process.

"Moldex3D" provides various simulations in full 3D to verify the productivity of resin molding. It supports improvements in product quality and productivity by solving molding problems, reducing costs, and establishing new molding methods. By adding necessary features as options to each package, efficient software operation tailored to customer needs is possible. 【Modules (Standard Features)】 ■ Flow Analysis ■ Packing Analysis ■ Cooling Analysis ■ Warpage Analysis ■ Multi-Component Molding (MCM) *For more details, please refer to the PDF materials or feel free to contact us.

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NC machining simulation "VERICUT"

Verify NC data before processing with machine tools! It is also possible to reduce processing load.

"VERICUT" is a simulation software that can reproduce machining processes in the same way as machine tools, based on NC data created by CAM software. Before machining with a machine tool, NC data can be verified to ensure there are no issues, allowing for processing to be done with confidence. Additionally, by using optimization software in conjunction, it is possible to shorten cycle times and reduce machining loads. 【Product Composition】 ■ Verification ■ Machine Simulation Function ■ Multi-Axis (Multi-Axis Module Function) ■ Auto Diff (Comparison Inspection Function) ■ OptiPath (NC Program Optimization) *For more details, please refer to the related links or feel free to contact us.

  • Other CAM related software
  • Simulation software

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Press molding simulation software "ASU/P-form"

Strongly supports press die designers from engineering design to knowledge accumulation.

The "ASU/P-form" is software that incorporates analysis methods specialized in press processing, researched at the RIKEN National Research and Development Institute, along with a wealth of processing know-how from the field. By visualizing various defect phenomena that occur in each process, it is possible to identify the main causes, thereby achieving a reduction in development time, cost savings, and improved quality. 【Features】 ■ A purely domestic software used by over 100 customers ■ Visualization of various defect phenomena occurring in each process ■ Achieves reduction in development time, cost savings, and quality improvement ■ Strongly supports press mold designers *For more details, please refer to the PDF materials or feel free to contact us.

  • Mold Design
  • Software (middle, driver, security, etc.)
  • Simulation software

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Case study of reducing press processes using press forming simulation.

I want to mold a shape that has traditionally been formed in multiple processes in a single process!

By utilizing press forming simulation, shapes that traditionally require multiple processes can be formed in a single process! 【Used Systems and Functions】 ■VISI Bending development, drawing development, flange bending development, shape deformation ■ASU P-form Press forming analysis simulation 【Forming Method】 ■Mold design through the collaboration of VISI and P-form ■Verification of analysis using P-form *For more details, please refer to the PDF materials or feel free to contact us.

  • Other CAD related software
  • Processing Contract
  • Simulation software

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Effective Utilization of Cutting Simulation [AdvantEdge]

You will acquire the skills to create simulation models, evaluate and analyze results, and lead to solutions for challenges. *Simulation examples are currently available in video format!

By visualizing processing phenomena, we prevent machining troubles. 1. About AdvantEdge 2. Exercise 1 – Confirming operation methods in 2D cutting 3. Exercise 2 – Importing 3D CAD data 4. Exercise 3 – Throwaway milling 5. Exercise 4 – Solid drilling 6. Exercise 5 – Turning 7. Exercise 6 – Solid end milling 8. Case studies of cutting simulation analysis using AdvantEdge Other (user success stories, seminars related to cutting processing, etc.) We encourage users who are newly tackling challenges in cutting simulation to participate. We also provide advice on model creation tailored to specific challenges.

  • drill
  • Structural Analysis
  • Other processing machines
  • Simulation software

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Introduction of new features in cutting process simulation

Enhanced cutting simulation supports a wide range of machining! Assisting in solving various challenges related to cutting!

We will explain the features and operations of the new versions of AdvantEdge FEM and the Production Module. In AdvantEdge FEM, it is now possible to define the movements of both the tool and the workpiece separately. This allows for the modeling of a wide range of phenomena, not only machining processes such as skiving and spinning tools but also processes like roll forming and impact analysis on metal sheets. In the Production Module, the shape of the workpiece during machining can now be output as a voxel mesh, which can be used for deformation analysis along with cutting force mapping files. 【Announcement of the Cutting CAE Conference】 The annual Cutting CAE Conference, where users utilizing cutting CAE present case studies, is scheduled to be held online on January 20, 2021. Along with the Cutting CAE Conference, we encourage you to consider participating in the webinar at this time. We sincerely look forward to your participation.

  • Other processing machines
  • Other cutting tools
  • Technical Seminar
  • Simulation software

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Analysis case: Construction of an NC data optimization system using cutting simulation.

We will introduce the interface with CAM and support for machine tool controllers!

This is an example of building an NC data optimization system using the 'Production Module' that performs physical simulations on CAD/CAM. When the product dimensions do not match the CAD/CAM model, machining errors occur due to tool deflection based on cutting forces. With this product, it becomes possible to evaluate the amount of tool deflection and assess the relationship with machining errors, allowing for the consideration of various machining plans. 【Consideration Items】 ■ Tool diameter ■ Axial depth of cut ■ Number of flutes ■ Radial depth of cut *For more details, please refer to the PDF materials or feel free to contact us.

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Analysis case: Machining simulation targeting vehicle impellers.

Introduction of the deformation analysis results of the workpiece using cutting forces calculated by cutting simulation.

This is a case where the tool deflection was evaluated from the cutting force assessed in the cutting simulation of the "Production Module." By applying the analysis results from AdvantEdge to the geometric simulation on the CAD/CAM model, the cutting force during machining was calculated. The cutting force, which is the analysis result, can also be utilized for strain deformation analysis during machining. Additionally, in a case where mesh generation was performed on the shape of the workpiece during machining, and strain deformation analysis due to cutting force was conducted, it was found that the strain deformation on the workpiece side is not determined solely by the cutting force, but that the contribution of the rigidity on the workpiece side is also significant. 【Tool Path Analysis】 ■ Operation equivalent to CAM using GUI ■ Supports importing chatter stability limit curve diagrams ■ Navigator function ・Tool position ・Target NC line *For more details, please refer to the PDF document or feel free to contact us.

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Steelmaking Process Simulation: Metallurgical Process Module

Streamlining the exploration of conditions in the steelmaking process! Calculations considering slag quantity, gas partial pressure, temperature, and time for dephosphorization, deoxidation, desulfurization, and inclusion removal are possible!

The Metallurgical Process Module, an add-on module of the alloy design tool Thermo-Calc, allows for the calculation of steelmaking processes such as BOF and arc furnace melting, dephosphorization, deoxidation, and desulfurization in LF, as well as inclusion removal, taking into account factors like slag quantity, gas partial pressure, temperature, and time. Applicable processes include EAF (Electric Arc Furnace), LD-BOF (Converter), Tapping, LF (Ladle Refining Furnace), and VOD (Vacuum Oxygen Decarburization). For example, in the LF process, you can specify the amount and composition of the molten steel and slag, as well as the timing for introducing process conditions (temperature, time, gas) and additives (deoxidizers and specific alloying elements), and evaluate the slag quantity, slag composition, and impurity levels in the molten steel during the process. The use of this module requires the TCOX8 or later version of the oxide database. Calculation workflows and example problems are provided for each process.

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Application examples of the alloy design tool Thermo-Calc for Ni-based superalloys.

Introducing analysis examples for Ni-based superalloys! The alloy design tool Thermo-Calc can be used for material development and various manufacturing processes!

This is a collection of calculation examples for Ni-based superalloys using the alloy design tool Thermo-Calc. Thermo-Calc can optimize alloy processes, predict the effects of processes on microstructure, and forecast properties. 【Thermo-Calc】 - Temperature-phase diagram for Ni-24Al-15Cr-19Co - Temperature-phase diagram for 718Plus - Evaluation of the solvus temperature of the γ’ phase - Evaluation of equilibrium distribution coefficients - Evaluation of liquid phase density for Ni-Cr-Al-XMo - Evaluation of lattice constants for γ/γ’ phases - Evaluation of oxidation and sulfidation treatments - Evaluation of viscosity and surface tension for CMSX-10 - Electrical properties (electrical resistivity, electrical conductivity) - Thermal properties (thermal conductivity, thermal resistivity, thermal diffusivity) 【Diffusion Module DICTRA】 - Diffusion between GTD-111 alloy and coating - Diffusion in welds of steel materials and nickel alloys 【Precipitation Module TC-PRISMA】 - Precipitation of γ‘ and γ’‘ phases in 718 alloy 【Property Models for Ni Alloys】 - Anti-phase boundary energy - Temperature dependence of properties in frozen microstructures - Coarsening rate constant of precipitates

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Application examples of the alloy design tool Thermo-Calc for copper alloys.

Introducing analysis examples for copper alloys! The alloy design tool Thermo-Calc can be used for material development and various manufacturing processes!

This is a collection of calculation examples for copper alloys using the alloy design tool Thermo-Calc. Thermo-Calc allows for the optimization of alloy processes, the impact of processes on microstructure, and the prediction of properties. 【Thermo-Calc】 - Phase diagrams for Cu-Zn and Cu-Sn - Isothermal sections for Cu-Mn-Sn and Cu-Ni-Sn - Vertical sections (with fixed element ratios) - Liquid phase projection diagram for Cu-Ag-Sn - Evaluation of liquid phase density for Cu-Co-Fe - Evaluation of surface tension and viscosity - Evaluation of liquidus/solidus temperatures - Solidification calculations for Cu-8.32Ni-1.68Si 【Diffusion Module DICTRA】 - Interface movement and microsegregation during the solidification process 【Precipitation Module TC-PRISMA】 - Precipitation calculations for Ni2Si precipitate phase during aging process - Precipitation calculations for Co-Fe precipitate phase during aging process

  • alloy
  • Non-ferrous metals
  • Other metal materials
  • Simulation software

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Application examples of the alloy design tool Thermo-Calc for titanium alloys.

Introducing analysis examples for titanium alloys! The alloy design tool Thermo-Calc can be used for material development and various manufacturing processes!

This is a collection of calculation examples for titanium alloys using the alloy design tool Thermo-Calc. Thermo-Calc can optimize alloy processes, predict the effects of processes on microstructures, and forecast properties. 【Thermo-Calc】 - Temperature - phase fraction diagram for Ti-43.3Al-4.3Nb-1.2Mo-0.1B (at%) - Phase diagram of the Ti3Al-Nb pseudo-binary system - Evaluation of transformation temperature (β transus) - Evaluation of volume fractions of α and β phases - Surface tension of the liquid phase - Electrical resistivity of Ti6242Si - Thermal conductivity of Ti64 【Diffusion Module DICTRA】 - Evaluation of α phase fraction according to cooling rate

  • alloy
  • Non-ferrous metals
  • Other metal materials
  • Simulation software

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Layered manufacturing simulation AM module *Test calculations now accepted

Support for predicting temperature history and molten morphology in metal additive manufacturing! Ideal for condition examination for AM!

The AM module is a simulation module specialized in predicting complex temperature histories and melt pool shapes in the metal additive manufacturing process. It enables analysis that takes into account temperature changes and phase transformations in relation to shaping conditions such as laser and electron beams. By collaborating with Thermo-Calc and utilizing thermodynamic and kinetic databases, it strongly supports material design and optimization of process conditions under rapid cooling conditions. It is particularly effective for analyses such as: 【Calculation Examples】 - Setting and reproducing thermal history profiles - Simulation of phase generation and disappearance - Changes in temperature distribution during multilayer additive manufacturing - Correlation analysis between cooling rate and microstructural changes - Comparison of microstructural evolution before and after aging treatment - Estimation of fine microstructures near the melt pool ★ For more details, please download the PDF or feel free to contact us ★ ★ For test calculations, please consult us through "Contact" ★

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Innovating molding simulation with AE-Deform for molds.

Optimize mold design and molding simulation with analysis reflecting real shapes.

In the mold industry, the accuracy of molding simulation greatly influences product quality and manufacturing efficiency. It is important to accurately predict the actual molding process and identify potential issues during the mold design phase. AE-Deform achieves high-precision simulations by reflecting realistic mold shapes obtained from non-contact measurement data into the analysis mesh. This contributes to a reduction in the number of prototypes, an improvement in product quality, and a shortening of development time. 【Application Scenarios】 - Molding simulation based on mold shape - Press panel molding analysis - Application to digital twin technology 【Effects of Implementation】 - Optimization of modification plans and reduction of man-hours - Realistic collision and safety performance analysis - Reduction of trial-and-error man-hours in testing and increased development efficiency

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  • Other CAD related software
  • Simulation software

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NC machine simulation software "VERICUT"

Identify mistakes and inefficient areas! Collisions in the "virtual machine" serve to protect the actual machines.

"VERICUT" is simulation software for G-code NC programs executed on machine tools. Before processing on machine tools, it verifies NC data created by CAM software on a PC. It reproduces the machine tool and its movements on the PC, preventing errors and troubles such as collisions caused by the program. By utilizing CAD data, it is also possible to conduct detailed inspections of leftover material and overcutting. 【Features】 ■ Supports simulation of "G-code NC programs" for various NC machine tools ■ Faithfully reproduces in-machine operations in detail ■ Reproduces all elements in 3D, detecting collisions and interferences ■ Significantly reduces verification work on actual machines, enabling quick start of processing ■ Reduces costs associated with machine damage and troubles *For more details, please refer to the PDF document or feel free to contact us.

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