[1] BOCH P, NIEPCE J C. Ceramic Materials-Processes, Properties and Applications[M]. London: ISTE Ltd, 2007: 3–19.
[2] American Society for Testing and Materials. ASTM E111-04 Standard Test Method for Young’s Modulus, Tangent Modulus, and Chord Modulus[S]. West Conshohocken: ASTM International, 2004.
[3] 中国钢铁工业协会. GB/T 22315—2008 金属材料弹性模量和泊松比试验方法[S]. 北京:中国标准出版社, 2008.
[4] 马德军. 材料力学性能仪器化压入测试原理[M]. 北京: 国防工业出版社, 2010: 21–22.
[5] 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[M]. 北京: 科学出版社, 2013: 21–24.
[6] SAKHAROVA N A, OLIVEIRA M C, ANTUNES J M, et al. On the determination of the film hardness in hard film/substrate composites using depth-sensing indentation [J]. Ceram Int, 2013, 39: 6251–6263.
[7] LIAO Y G, ZHOU Y C, HUANG Y L, et al. Measuring elastic–plastic properties of thin films on elastic–plastic substrates by sharp indentation[J]. Mech Mater, 2009, 41(3): 308–318.
[8] TOPARLI M, KOKSAL N S. Hardness and yield strength of dentin from simulated nano-indentation tests[J]. Comput Methods Programs Biomed, 2005, 77(3): 253–257.
[9] RANDALL N X, VANDAMME M, ULM F J. Nanoindentation analysis as a two-dimensional tool for mapping the mechanical properties of complex surfaces[J]. J Mater Res, 2009, 24(3): 679–690.
[10] LI Y P, ZHU X F, TAN J, et al. Comparative investigation of strength and plastic instability in Cu/Au and Cu/Cr multilayers by indentation[J]. J Mater Res, 2009, 24(3): 728–735.
[11] WEI Z, ZHANG G, CHEN H, et al. A simple method for evaluating elastic modulus of thin films by nanoindentation[J]. J Mater Res, 2009, 24(3): 801–815.
[12] ROCIO S, ADRIAN P. CISILINO, et al. Determination of the Drucker–Prager parameters of polymers exhibiting pressure-sensitive plastic behaviour by depth-sensing indentation[J]. Int J Mech Sci, 2011, 53(6): 471–478.
[13] ALEMDAR H, ZAHIR M. Fast inversion algorithm for identification of elastoplastic properties of power hardening materials from limited spherical indentation tests[J]. Int J Non-Linear Mech, 2012, 47(5): 526–536.
[14] PHARR G M, OLIVER W C, Brotzen F R. On the generality of the relationship among contact stiffness, contact area, and elastic modulus during indentation[J]. J Mater Res, 1992, 7(3), 613–617.
[15] OLIVER W C, PHARR G M. An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments[J]. J Mater Res, 1992, 7(6): 1564–1583.
[16] OLIVER W C, PHARR G M. Measurement of hardness and elastic modulus by instrumented indentation: Advances in understanding and refinements to methodology[J]. J Mater Res, 2004, 19(1): 3–20.
[17] CHENG Y T, CHENG C M. Relationships between hardness, elastic modulus, and the work of indentation[J]. Appl Phys Lett, 1998, 73: 614–616.
[18] CHENG Y T, CHENG C M. Scaling, dimensional analysis, and indentation measurements[J]. Mater Sci Eng, 2004, 44(4/5): 91–149.
[19] MA D J, ONG C W, ZHANG T H. An improved energy method for determining Young’s modulus by instrumented indentation using a Berkovich[J]. J Mater Res, 2008, 23(8): 2106–2115.
[20] MA D J, ONG C W, ZHANG T H. An instrumented indentation method for Young’s modulus measurement with accuracy estimation[J]. Experiment Mech, 2009, 49(5): 719–729.
[21] MA D J, ONG C W. Further analysis of energy-based indentation relationship among Young’s modulus, nominal hardness, and indentation work[J]. J Mater Res, 2010, 25(6): 1131–1136.
[22] 马德军. 材料弹性模量的仪器化压入测试方法[J]. 中国有色金属学报, 2010, 20(12): 2336–2343.
MA Dejun. Chin J Nonferrous Met(in Chinese), 2010, 20(12): 2336–2343.
[23] PALMQVIST S. A method to determine the fracture toughness brittle materials, especially hard metals[J]. Jenkontorets Ann, 1957, 141: 303–307.
[24] TANG Y, YONEZU A, OGASAWARA N, et al. On radial crack and half-penny crack induced by Vickers indentation[J]. Proc R Soc A, 2008, 464: 2967–2984.
[25] WANG J L, MA D J, CHEN W, et al. Analysis of pop-in phenomenon in the process of ceramic materials instrumented indentation[J]. Adv Mater Res, 2014, 941-944: 564–568.
[26] OLIVER D J, BRADBY J E, WILLIAMS J S, et al. Giant pop-ins and amorphization in germanium during indentation[J]. J Appl Phys, 2007, 101(4): 1–9.
[27] 张泰华. 微/纳米力学测试技术及其应用[M]. 北京: 机械工业出版社, 2005: 76–80.
[28] Abaqus 6.10/CAE User’s Manual, Dassault Systems Simulia Corp. Providence, RI, USA, 2010.
[29] European committee for standardization. ISO14577-2002 Metallic Materials Instrumented Indentation Test for Hardness and Materials Parameter [S]. Switzerland: International Organization for Standardization, 2002.
[30] ANTUNES J M, MENEZES L F, FERNANDES J V. Three-dimensional numerical simulation of Vickers indentation tests[J]. Int J Solids Struct, 2006, 43(2006): 784–806.
[31] 马德军. 仪器化纳米压入测试材料杨氏模量的方法[P]. CN Patent, 101788420A. 2010-7-28.
MA Dejun. Method for determining elastic modulus by instrumented nano-indentation test (in Chinese). CN Patent, 101788420A. 2010-7-28.
[32] 马德军. 仪器化微米压入测试材料杨氏模量的方法[P]. CN Patent, 101710046A. 2010-5-19.
MA Dejun. Method for determining elastic modulus by instrumented micro-indentation test (in Chinese). CN Patent, 101710046A. 2010-5-19.
[33] 马德军, 宋仲康, 郭俊宏, 等. 一种高精度压入仪及金刚石压头压入试样深度的计算方法[P]. CN Patent, 102288500A. 2011-12-21.
MA Dejun, SONG Zongkang, GUO Junhong, et al. A high precision instrumented indentation tester and the calculation method of diamond indenter press against the sample depth (in Chinese). CN Patent, 102288500A. 2011-12-21.
|