Investigations on indentation size effects using a pile-up corrected hardness

  • Lee, Yun-Hee
  • Hahn, JunHee
  • Nahm, Seung Hoon
  • Jang, Jae il
  • Kwon, Dongil
Citations

WEB OF SCIENCE

40
Citations

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41

초록

Indentation size effects ( ISEs) become severe in the nanoindentation regime because various influencing factors become active in a very shallow indentation regime. Additionally, the general analysis on the nanoindentation curve yields hardness overestimation because it cannot take into account material pile- up around contacts. Thus we tried to investigate intrinsic ISEs in monolithic materials by proposing a new hardness measurement method; the load- supporting contact boundary was approximated as the peak trajectory around an impression and analysed by a radial differentiation of the remnant indent morphology. Dependence of the new load- off hardness on the indentation depth was investigated for ( 1 0 0) tungsten single crystal and fused quartz. The contribution of the material pile- up to the new hardness was clearly modified but more significant hardness increase appeared at a very shallow indentation regime due to severe elastic recovery. These phenomena are discussed with the strain- gradient plasticity model.

키워드

MECHANICAL-PROPERTIESNANOINDENTATIONFILMSLOAD
제목
Investigations on indentation size effects using a pile-up corrected hardness
저자
Lee, Yun-HeeHahn, JunHeeNahm, Seung HoonJang, Jae ilKwon, Dongil
DOI
10.1088/0022-3727/41/7/074027
발행일
2008-04
유형
Article; Proceedings Paper
저널명
Journal of Physics D: Applied Physics
41
7
페이지
1 ~ 5