[1]Johnson G R, Cook W H. A constitutive model and data for metals subjected to large strains, high strain rates and high temperatures[C]//Proceedings of the 7th Int-Symposium on Ballistics-The Hague. 1983: 541-547. [2]Oxley P L B, Welsh M J M. An explanation of apparent bridgman effect in merchant's orthogonal cutting results[J]. Journal of Engineering for Industry, 1967, 89(3): 549. [3]Liu K. Processes modeling of micro-cutting including strain gradient effects[D]. Atlanta: Georgia Institute of Technology, 2005. [4]Arsecularatne J A, Hoffman K M. FIB tomographic analysis of subsurface indentation crack interactions with pores in alumina[J]. Journal of the American Ceramic Society, 2011, 94(11): 137-142. [5]Arsecularatne J A, Mathew P. The Oxley modeling approach, its applications and future directions[J]. Machining Science and Technology, 2000, 4(3): 363-397. [6]Lubarada V A, Benson D J, Meyers M A. Strain-rate effects in rheological models ofinelastic response[J]. International Journal of Plasticity, 2003, 19(8): 1097-1118. [7]张益川. 介观尺度钛合金TC4材料切削响应行为建模与仿真研究[D]. 北京: 北京理工大学, 2015: 23-27. [8]Jing X B, Zhang D W. Modeling and analysis of factors of size effect in micro-cutting: The tool geometry and the depth of cutting[J]. Manipulation, Manufacturing and Measurement on the Nanoscale, 2013: 314-318. [9]Hirth J P. The influence of grain boundaries on mechanical properties[J]. Metallurgical Transactions, 1972, 3(12): 3047-3067. [10]吴希俊. 晶界结构及其对力学性质的影响(Ⅱ)[J]. 力学进展, 1990, 19(2): 433-441. Wu Xijun. Grain boundary structure and its influence on mechanical properties (II)[J]. Advances in Mechanics, 1990, 19(2): 433-441. [11]Hansen N. Boundary strengthening in undeformed and deformed polycrystals[J]. Materials Science and Engineering A, 2005, 409(1/2): 39-45. [12]Zerilli F J, Armstrong R W. Dislocation-mechanics-based constitutive relations for material dynamics calculations[J]. Journal of Applied Physics, 1987, 61(5): 1816. [13]Samantaray D, Mandal S, Bhaduri A K. A comparative study on Johnson Cook, modified Zerilli-Armstrong and Arrhenius-type constitutive models to predict elevated temperature flow behaviour in modified 9Cr-1Mo steel[J]. Computational Materials Science, 2009, 47(2): 568-576. [14]王开远. GB/T 6394—2002《金属平均晶粒度测定方法》介绍[J]. 机械工业标准化与质量, 2004(5): 5-8. [15]Zhao M C, Yin F, Hanamura T, et al. Relationship between yield strength and grain size for a bimodal structural ultrafine-grained ferrite/cementite steel[J]. Scripta Materialia, 2007, 57(9): 857-860. |