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Cutting simulation software - メーカー・企業4社の製品一覧とランキング

Cutting simulation softwareの製品一覧

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[Case Study] Improvement of Cycle Time through NC Cutting Simulation

Easy, convenient, and highly scalable Velicut! It also helps reduce the burden on workers.

This is a case study introduction for Sakamoto Factory, Production Technology Department of Mino Industrial Co., Ltd. The company consistently carries out everything from casting to processing of aluminum die-cast products and has introduced "Vericut." As a result of the introduction, it has contributed to improvements in cycle time and reduced the burden on workers. "We have high expectations for the future evolution and support of Vericut, which we see as a 'magical machine software that can do anything,'" is the feedback we have received. *For more details, please refer to the PDF document or feel free to contact us.

  • simulator

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Utilization of subsidies such as support for small and medium-sized enterprises for the introduction of cutting simulation.

It is possible to introduce cutting simulation software along with the introduction of machine tools necessary for business operations in development and manufacturing! *There are many successful adoption cases!

Online Seminar on Utilizing Subsidies for Small and Medium Enterprises, including Support for Strategic Foundation Technology Advancement (Sapo-in) The Ministry of Economy, Trade and Industry has a program called the Strategic Foundation Technology Advancement Support Project (Sapo-in Project) that supports research and development and prototype development for small and medium enterprises. In this seminar, we will invite a lecturer from the Osaka Science and Technology Center, which has a wealth of experience in application support services with many successful adoptions, to discuss the overview of the system and key points for applications. The introduction of the cutting simulation software AdvantEdge is also applicable, so we encourage you to participate and consider utilizing this opportunity. We sincerely look forward to your participation. Program 14:00 Introduction to Cutting Simulation Itochu Techno-Solutions Corporation CAE Solutions Sales Department Mikio Hirota 14:10 Overview of the Strategic Foundation Technology Advancement Support Project (Sapo-in Project) and Key Points for Applications ~ Based on the Achievements of the Osaka Science and Technology Center ~ Osaka Science and Technology Center Technology Promotion Department, Research Officer Mr. Yoshihiro Matsumoto 14:40 Q&A Session

  • Other cutting tools
  • Technical Seminar
  • 3D CAD

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Support for Small and Medium Enterprises! Key Points for Utilizing Subsidies such as Support for Innovation.

It is possible to introduce cutting simulation software along with the introduction of machine tools necessary for business operations in development and manufacturing! *There are many successful adoption cases!

Online Seminar on Utilizing Subsidies for Small and Medium Enterprises, such as Support for Strategic Foundation Technology Advancement (Sapo-in) The Ministry of Economy, Trade and Industry has a program to support research and development and prototype development for small and medium enterprises called the Strategic Foundation Technology Advancement Support Program (Sapo-in). In this seminar, we will invite a lecturer from the Osaka Science and Technology Center, which has a wealth of experience in application support for this program, to discuss the overview of the system and key points for application. It is also applicable for the introduction of the cutting simulation software AdvantEdge, so we encourage you to participate and consider utilizing it. We sincerely look forward to your participation. Program 14:00 Introduction to Cutting Simulation Itochu Techno-Solutions Corporation CAE Solutions Sales Department Mikio Hirota 14:10 Overview of the Strategic Foundation Technology Advancement Support Program (Sapo-in) and Key Points for Application ~ Based on the Achievements of the Osaka Science and Technology Center ~ Osaka Science and Technology Center Technology Promotion Department, Research Officer Mr. Yoshihiro Matsumoto 14:40 Q&A Session

  • Other cutting tools
  • Technical Seminar
  • 3D CAD

ブックマークに追加いたしました

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ブックマークを削除いたしました

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これ以上ブックマークできません

会員登録すると、ブックマークできる件数が増えて、ラベルをつけて整理することもできます

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[Production Module Analysis Case] Evaluation Parameters

Breaking away from conventional simple methods! Moving towards "analysis" of NC data with the AdvantEdge brand.

This is an example of analysis regarding the issues of "Although the cutting volume was kept constant, the tool was damaged due to machining titanium alloy with a shallow cutting depth" and "Although the cutting volume was kept constant, the surface finish of the aluminum alloy machining deteriorated." The analysis using 'ProductionModule' evaluates tool damage and trial surface finish characteristics. By evaluating the cutting load during machining in detail rather than using a simplified method based on cutting geometry, it becomes possible to optimize the cutting simulation process considering machining time and tool life, including the spindle power of the machine tool and tool torque. 【Issues】 ■ Although the cutting volume was kept constant, the tool was damaged due to machining titanium alloy with a shallow cutting depth. ■ Although the cutting volume was kept constant, the surface finish of the aluminum alloy machining deteriorated. *For more details, please refer to the PDF document or feel free to contact us.

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  • simulator

ブックマークに追加いたしました

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ブックマークを削除いたしました

ブックマーク一覧

これ以上ブックマークできません

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[Case Study] Optimization of NC Data for Automotive Aluminum Alloy Parts

A "leap" from geometric simulation in CAD/CAM to physical simulation!

In the 'Production Module' that evaluates cutting loads on CAD/CAM models, it is possible to conduct necessary considerations for creating optimal machining processes through cutting simulations. We will introduce examples of considering tool changes through cutting simulations. While improvements aimed at increasing productivity are demanded daily, it is difficult to stop the manufacturing process for testing. However, this product contributes to reducing machining time through tool changes. [Issues] - In addition to diverse geometries of tool paths, it is common for machining processes to include multiple operations such as face milling and drilling. - While improvements aimed at increasing productivity are demanded daily, it is difficult to stop the manufacturing process for testing. *For more details, please refer to the PDF materials or feel free to contact us.

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  • simulator

ブックマークに追加いたしました

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ブックマークを削除いたしました

ブックマーク一覧

これ以上ブックマークできません

会員登録すると、ブックマークできる件数が増えて、ラベルをつけて整理することもできます

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[AdvantEdge FEM Analysis Case] Tool Deflection Evaluation

We can quantitatively grasp the factors that influence tool deflection! Introduction of analysis cases.

In "AdvantEdge FEM," it is possible to evaluate parameters that are difficult to measure, such as tool deflection, through cutting simulation. We will introduce a case study of a cutting simulation experiment where tool deflection varies due to machining factors. There were challenges associated with tool deflection, such as "degradation of shape accuracy," "the occurrence of chatter," and "difficulty in measuring deflection." With our product, you can quantitatively understand the factors that influence tool deflection. Please feel free to contact us when needed. [Challenges due to tool deflection] ■ Degradation of shape accuracy ■ Occurrence of chatter ■ Difficulty in measuring deflection *For more details, please refer to the PDF document or feel free to contact us.

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  • simulator

ブックマークに追加いたしました

ブックマーク一覧

ブックマークを削除いたしました

ブックマーク一覧

これ以上ブックマークできません

会員登録すると、ブックマークできる件数が増えて、ラベルをつけて整理することもできます

無料会員登録

[Case Study of Machine Tool Introduction] Cutting Simulation Software

It is possible to shorten debugging time! This software reliably accomplishes tasks that are impossible for humans.

At Yasuda Industrial Co., Ltd., the Manufacturing Department faced issues with variability depending on the operators and the time of creation. Returning to the actual machine for debugging verification extended the working hours and occupied the machines, significantly disrupting the workflow. To achieve the goal of "how to shorten debugging time," we introduced our 'VeriCut.' After the introduction, we were able to reduce the time by over 40%, and for in-house manufactured components like columns and tables, the actual production time changed nearly threefold. [Overview] ■ There is variability depending on the operators and the time of creation. ■ Returning to the actual machine for debugging verification increases working hours. ■ It occupies the machines, significantly disrupting the workflow. ■ After the introduction, we were able to reduce time by over 40%. ■ For machine tool components, the actual production time changed nearly threefold. *For more details, please refer to the PDF document or feel free to contact us.

  • simulator

ブックマークに追加いたしました

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ブックマークを削除いたしました

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It is possible to check the cutting results in advance on the PC screen 【VERICUT】.

Simulation software "VERICUT" cutting result verification module!

The option module 'AutoDiff' of the simulation software 'VERICUT' is a module that allows comparison of machining verification results with CAD data in VERICUT. With AutoDiff, it is possible to compare the simulation model (machining verification results) with the design model (CAD data), enabling the verification of overcutting or leftover material before the machining process. Additionally, it is possible to compare the cutting model with another VERICUT simulation model. This feature is useful for comparing various operations such as rough cutting and finishing cutting. <Required Module> - Verification (Standard Module) <Optional Modules> - Multi-Axis (Support for multi-axis complex machining) - Machine Simulation (Machine motion verification) - OptiPath (Feed rate optimization - based on cutting load) - Force (Feed rate optimization - based on physics)

  • Other CAM related software

ブックマークに追加いたしました

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Virtual Machine (VM CAM-POST Integration)

Graphic machine tool simulator seamlessly integrated with CAM-POST / cutting simulation / cutting optimization tool

We would like to introduce our graphic machine tool simulation, 'Virtual Machine.' It allows for the simulation of programs while performing post-processing, enabling easy and automatic detection of interference and over-travel. As a result, it helps avoid program errors that could cause damage to parts or machine tools during the NC program generation stage, allowing for optimization and correction. 【Features】 ■ POST processing ■ Machine simulation (compatible with ROBOT processing) ■ Simultaneous execution of cutting simulation in the same environment ■ Automatic detection of interference and over-travel ■ Avoidance of program errors *For more details, please refer to the PDF document or feel free to contact us.

  • Development support tools (ICE, emulators, debuggers, etc.)

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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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  • simulator

ブックマークに追加いたしました

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ブックマークを削除いたしました

ブックマーク一覧

これ以上ブックマークできません

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無料会員登録