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SIZE EFFECT AND GEOMETRICAL EFFECT OF SOLIDS IN MICRO—INDENTATION TEST
引用本文:魏悦广,王学峥,赵满洪,郑哲敏,白以龙.SIZE EFFECT AND GEOMETRICAL EFFECT OF SOLIDS IN MICRO—INDENTATION TEST[J].Acta Mechanica Sinica,2003,19(1):59-70.
作者姓名:魏悦广  王学峥  赵满洪  郑哲敏  白以龙
摘    要:Micro-indentation tests at scales of the order of sub-micron show that the measured hardness increases strongly with decreasing indent depth or indent size,which is frequently referred to as the size effect.At the same time,at micron or sub-micron scale,another effect,which is referred to as the geometrical size effects such as crystal grain size effect,thin flim thickness effect,etc.,also influences the measured material hardness.However,the trends are at odds with the size-independence implied by the conventional elastic-plastic theory.In the present research,the strain gradient plasticity theory(Fleck and Hutchinson)is used to model the composition effects(size effect and geometrical effect) for polycrystal material and metal thin film/ceramic substrate systems when materials undergo micro-indenting.The phenomena of the “pile-up“ and “sink-in“ apeared in the indentation test for the polycrystal materials are also discussed.Meanwhile,the micro-indentation experiments for the polycrystal Al and for the Ti/Si3N4 thin film/substrate system are carried out.By comparing the theoretical predictions with experimental measuremtns.the values and the variation trends of the micro-scale parameter included in the strain gradient plasticity theory are predicted.

关 键 词:尺寸效应  断口形貌  显微分析  几何分析  疲劳损伤  应力  塑性  固体力学
收稿时间:30 April 2001

Size effect and geometrical effect of solids in micro-indentation test
Wei?Yueguang,Wang?Xuezheng,Zhao?Manhong,Cheng?Che-Min,Bai?Yilong.Size effect and geometrical effect of solids in micro-indentation test[J].Acta Mechanica Sinica,2003,19(1):59-70.
Authors:Wei Yueguang  Wang Xuezheng  Zhao Manhong  Cheng Che-Min  Bai Yilong
Institution:(1) LNM, Institute of Mechanics, Chinese Academy of Sciences, 100080 Beijing, China
Abstract:Micro-indentation tests at scales of the order of sub-micron show that the measured hardness increases strongly with decreasing indent depth or indent size, which is frequently referred to as the size effect. At the same time, at micron or sub-micron scale, another effect, which is referred to as the geometrical size effects such as crystal grain size effect, thin film thickness effect, etc., also influences the measured material hardness. However, the trends are at odds with the size-independence implied by the conventional elastic-plastic theory. In the present research, the strain gradient plasticity theory (Fleck and Hutchinson) is used to model the composition effects (size effect and geometrical effect) for polycrystal material and metal thin film/ceramic substrate systems when materials undergo micro-indenting. The phenomena of the “pile-up” and “sink-in” appeared in the indentation test for the polycrystal materials are also discussed. Meanwhile, the micro-indentation experiments for the polycrystal Al and for the Ti/Si3N4 thin film/substrate system are carried out. By comparing the theoretical predictions with experimental measurements, the values and the variation trends of the micro-scale parameter included in the strain gradient plasticity theory are predicted. The project supported by the National Natural Science Foundation of China (19891180 and 19925211) and Bai Ren Plan of CAS
Keywords:micro-indentation tests  size effect  geometrical effect  strain gradient plasticity
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