Nanotechnology and Precision Engineering (Jun 2020)

Study of the material removal mechanism of glass-ceramics based on consecutive incremental loading in ductile-regime grinding

  • Xue Li

Journal volume & issue
Vol. 3, no. 2
pp. 88 – 95

Abstract

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Glass-ceramics have many excellent properties and are widely used in various fields. During the grinding process, the workpiece surface is typically subject to material removal by grit of incremental heights, which has rarely been the focus of research. As such, it is necessary to study the material removal mechanism of glass-ceramics under consecutive incremental loading, which more closely reflects the actual grinding process. In this paper, to analyze the plastic deformation and residual stress of lithium aluminosilicate (LAS) glass-ceramics, a finite element model is established based on the Drucker–Prager yield criterion for ductile regimes. A nano-scratch test was also conducted and the test results show that both the residual depth and residual stress increase with an increase in the number of increments, and that consecutive incremental loading promotes the plastic deformation of glass-ceramics and increases the residual stress of the material in the ductile-regime process. These findings provide guidance for achieving higher dimensional accuracy in the actual grinding of glass-ceramics parts.

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