4.7 Article

Thermo-mechanical coupled flow behavior evolution of Zr-based bulk metallic glass

Journal

INTERMETALLICS
Volume 152, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.intermet.2022.107770

Keywords

Zr-based bulk metallic glass; Flow behavior; Thermo -mechanical coupling; Tool wear progress; Orthogonal cutting

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In this study, the flow behavior of Zr-based bulk metallic glass during machining was investigated. The results show that the increase of temperature during cutting leads to a transition of the amorphous chips from a laminated structure to a viscous flow state. The chips in the stable sticking area of the tool-chip interface exhibit phase separation and consist of various crystalline phases and quasi-crystals, while the chips far away from the interface remain in the amorphous state with uniform composition. The viscous-fluid chips act as a protective layer for the tool, reducing tool wear.
Machining is an essential process for manufacturing high-precision bulk metallic glass (BMG) components, but the flow behavior of thermodynamically metastable BMGs during machining with high temperature and high strain rate conditions is still unclear. In this study, the flow behavior of Zr-based BMG is investigated in an orthogonal cutting operation. The results show that the increase of the temperature at the initial stage of cutting enables the amorphous chips gradually change from a laminated structure to a viscous flow state, and attach to the cutting edge of the tool. The chip in the stable sticking area of the tool-chip interface is a composite material rich in various crystalline phases and quasi-crystals with obvious phase separation, while the chips far away from the interface still maintain the amorphous state with uniform composition. After the formation of stable adhe-sion, the cutting force and cutting temperature are relatively stable, and the viscous-fluid chips act as a protective layer for the tool, avoiding severe tool wear.

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