Predictive surface roughness model for end milling of machinable glass ceramic

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Abstract

Advanced ceramics of Machinable glass ceramic is attractive material to produce high accuracy miniaturized components for many applications in various industries such as aerospace, electronics, biomedical, automotive and environmental communications due to their wear resistance, high hardness, high compressive strength, good corrosion resistance and excellent high temperature properties. Many research works have been conducted in the last few years to investigate the performance of different machining operations when processing various advanced ceramics. Micro end-milling is one of the machining methods to meet the demand of micro parts. Selecting proper machining parameters are important to obtain good surface finish during machining of Machinable glass ceramic. Therefore, this paper describes the development of predictive model for the surface roughness of Machinable glass ceramic in terms of speed, feed rate by using micro end-milling operation.

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Mohan Reddy, M., Gorin, A., & Abou-El-Hossein, K. A. (2011). Predictive surface roughness model for end milling of machinable glass ceramic. In IOP Conference Series: Materials Science and Engineering (Vol. 17). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/17/1/012002

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