Renke Kang
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Effect of Mechanical Anisotropy on Grinding of CdZnTe Wafers
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Indexed by:期刊论文

Date of Publication:2010-06-01

Journal:MATERIALS AND MANUFACTURING PROCESSES

Included Journals:SCIE、EI

Volume:25

Issue:6

Page Number:412-417

ISSN No.:1042-6914

Key Words:Anisotropy; CdZnTe; Embedded abrasives; Frictional coefficient; Grinding; Lapping process; Nanoindentation; Nanoscratch; Slip system

Abstract:In this study, nanoindentation and nanoscratching were employed to research on the mechanical anisotropy of CdZnTe (110) and (111) planes, and their effects on the grinding of CdZnTe wafers were studied. The results suggest that the primary slip system is responsible for the anisotropy of hardness and frictional coefficient. It is easy to slip along [image omitted] directions on (110) plane and [image omitted] directions on (111) plane during scratching, hence the frictional coefficient is the lowest compared to that of other directions, and high surface quality could be obtained during grinding along these directions. The problem of embedded abrasives, which is due to the soft nature of CdZnTe crystal, could be solved when using the grinding process instead of the lapping process.

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Supervisor of Doctorate Candidates
Supervisor of Master's Candidates

Title : 国际磨粒技术学会(International Committee of Abrasive Technology, ICAT)委员,中国机械工程学会极端制造分会副主任、生产工程分会常务委员、微纳米制造技术分会常务委员,中国机械工程学会生产工程分会磨粒加工技术专业委员会副主任、切削加工专业委员会常委委员、精密工程与微纳技术专业委员会常委委员,中国机械工程学会特种加工分会超声加工技术委员会副主任,中国机械工程学会摩擦学分会微纳制造摩擦学专业委员会常务委员,中国机械工业金属切削刀具协会切削先进制造技术研究会常务理事、对外学术交流工作委员会副主任、切削先进制造技术研究会自动化加工技术与系统委员会副主任。

Gender:Male

Alma Mater:西北工业大学

Degree:Doctoral Degree

School/Department:机械工程学院

Discipline:Mechanical Manufacture and Automation. Mechatronic Engineering. Manufacturing Engineering of Aerospace Vehicle

Business Address:机械工程学院7191

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