TY - JOUR
T1 - Analytic relations for two-dimensional indentations with surface tension
AU - Long, Jianmin
AU - Yuan, Weike
AU - Chen, Wen
AU - Wang, Gangfeng
N1 - Publisher Copyright:
© 2018 Elsevier Ltd
PY - 2018/4
Y1 - 2018/4
N2 - Surface tension plays a significant role in micro- and nanoindentation tests. Based on the solution of a concentrated force acting on an elastic half-plane with surface tension, the two-dimensional indentations of an elastic half-plane by a cylindrical indenter, a wedge indenter and a flat-ended indenter are formulated, and by employing the Gauss–Chebyshev quadrature formula, the corresponding singular integral equations are numerically solved. For each indentation, the analytic solutions of two limit cases considering only bulk elasticity or surface tension are derived. Then through simple combinations of the results of two limit cases, the analytic relations between load and contact half-width or indent depth are formulated for the general case, and compared with the numerical results. The analytic relations established in this paper facilitate better characterization of mechanical properties of materials by micro/nanoindentation tests.
AB - Surface tension plays a significant role in micro- and nanoindentation tests. Based on the solution of a concentrated force acting on an elastic half-plane with surface tension, the two-dimensional indentations of an elastic half-plane by a cylindrical indenter, a wedge indenter and a flat-ended indenter are formulated, and by employing the Gauss–Chebyshev quadrature formula, the corresponding singular integral equations are numerically solved. For each indentation, the analytic solutions of two limit cases considering only bulk elasticity or surface tension are derived. Then through simple combinations of the results of two limit cases, the analytic relations between load and contact half-width or indent depth are formulated for the general case, and compared with the numerical results. The analytic relations established in this paper facilitate better characterization of mechanical properties of materials by micro/nanoindentation tests.
KW - Contact
KW - Micro/nanoindentation
KW - Surface tension
UR - https://www.scopus.com/pages/publications/85041392056
U2 - 10.1016/j.mechmat.2018.01.003
DO - 10.1016/j.mechmat.2018.01.003
M3 - 文章
AN - SCOPUS:85041392056
SN - 0167-6636
VL - 119
SP - 34
EP - 41
JO - Mechanics of Materials
JF - Mechanics of Materials
ER -