Stress distribution model for the entire plastic zone of conical indentation with power-law hardening materials

Author:

CHEN Hui,CAI LiXun,PENG Hui,MAO WeiGuo,LI Wei,FU ZuoHua,MENG Zheng

Publisher

Science China Press., Co. Ltd.

Reference18 articles.

1. Zhang T H. Micro/nano Mechanical Testing Techniques: Measurement, Analysis, Application and Standardization of Instrumented Indentation (in Chinese). Beijing: Science Press, 2013 [张泰华. 微/纳米力学测试技术: 仪器化压入的测量、分析、应用及其标准化. 北京: 科学出版社, 2013].

2. Fauvel V, Gaillard Y, Guillemet R. Simultaneous extraction of the elastic-plastic properties of a thin film and its substrate from an identifiability-based design of depth-sensing nanoindentation testing. J Mech Phys Solids, 2022, 163:

3. Liu M, Hou D Y, Gao C H. Study on fracture toughness of semiconductor material using Vickers and Berkovich indenters (in Chinese). Chin J Theor App Mech, 2021, 53: 413–423 [刘明, 侯冬杨, 高诚辉. 利用维氏和玻氏压头表征半导体材料断裂韧性. 力学学报, 2021, 53: 413–423].

4. Won J, Kim S, Kwon O M. Evaluation of tensile yield strength of high-density polyethylene in flat-ended cylindrical indentation: An analytic approach based on the expanding cavity model. J Mater Res, 2020, 35: 206-214.

5. Yu Z J, Wei Y G. A study of indentation scaling relationships of elastic-perfectly plastic solids with an inclusion near the conical indenter tip. Sci China Tech Sci, 2019, 62: 721-728.

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