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- W3023535519 abstract "Determination of friction in manufacturing processes forms an important part of the manufacturing process modeling. Friction is dependent on the material properties, roughness of contacting surfaces, sliding length, sliding speed, temperature, lubricant characteristics, and wear during the manufacturing. In this chapter, the commonly used friction models in manufacturing processes are reviewed. An asperity-based friction model available in the literature is chosen and modified to include the effect of temperature. A MATLAB code is developed and a parametric study is carried out to assess the influence of material properties and surface parameters on the coefficient of friction. It is observed that the friction factor is the most influencing parameter on the coefficient of friction compared to other material properties and surface parameters. An inverse method is employed to determine the friction factor as a function of the material and process parameters based on the experimental results. Application of various friction models in different manufacturing processes is reviewed, highlighting that there is gap available between friction models and applications. Some directions for further research are provided." @default.
- W3023535519 created "2020-05-13" @default.
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- W3023535519 date "2020-01-01" @default.
- W3023535519 modified "2023-10-16" @default.
- W3023535519 title "Modeling of friction in manufacturing processes" @default.
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- W3023535519 doi "https://doi.org/10.1016/b978-0-12-818232-1.00014-x" @default.
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