2016Seisan Kakou, Kousaku Kikai Bumon Kouenkai kouen rombunshuu/Seisan Kako, Kosaku Kikai Bumon KoenkaiOpen access

Study on the optimum design of machine tool structure

N. Okada, Yangjin Kim, Naohiko Sugita, Mamoru Mitsuishi

Open full text 0 citations

Abstract

Machine tools is also called mother machine, and it is the essential equipment in all kinds of manufacturing industry up to automobiles, aircraft and the information terminal. As requirements for machining tools, high rigidity and low thermal expansion is important to perform high-precision machining, and having high damping is necessary to realize high-speed machining. In addition, recently weight saving is also required to allow energy saving. However, since high rigidity and light weight is difficult to achieve both, so this study aims to achieve these requirements by optimize machine tool structure through topology optimization. To verify the result of the optimization, create multiple models to compare new models and previous model in the static rigidity and dynamic rigidity. As a result of analysis, it was found that the new model has 5 times stronger static rigidity than previous model and has high dynamic rigidity.

About this research paper

What this paper is about

Machine tools is also called mother machine, and it is the essential equipment in all kinds of manufacturing industry up to automobiles, aircraft and the information terminal. As requirements for machining tools, high rigidity and low thermal expansion is important to perform high-precision machining, and having high damping is necessary to realize high-speed machining. In addition, recently weight saving is also required to allow energy saving. However, since high rigidity and light weight is difficult to achieve both, so this study aims to achieve these requirements by optimize machine tool structure through topology optimization. To verify the result of the optimization, create multiple models to compare new models and previous model in the static rigidity and dynamic rigidity. As a result of analysis, it was found that the new model has 5 times stronger static rigidity than previous model and has high dynamic rigidity.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Machine tools is also called mother machine, and it is the essential equipment in all kinds of manufacturing industry up to automobiles, aircraft and the information terminal. As requirements for machining tools, high rigidity and low thermal expansion is important to perform high-precision machining, and having high damping is necessary to realize high-speed machining. In addition, recently weight saving is also required to allow energy saving. However, since high rigidity and light weight is difficult to achieve both, so this study aims to achieve these requirements by optimize machine tool structure through topology optimization. To verify the result of the optimization, create multiple models to compare new models and previous model in the static rigidity and dynamic rigidity. As a result of analysis, it was found that the new model has 5 times stronger static rigidity than previous model and has high dynamic rigidity.

Key concepts: Rigidity (electromagnetism), Machining, Machine tool, Structural rigidity, Computer science, Mechanical engineering, Engineering, Structural engineering

Related papers

Back to paper searchBrowse research topicsOriginal source
Study on the optimum design of machine tool structure — Research Paper | ScholarLens