Effects of Sample and Indenter Configurations of Nanoindentation Experiment on the Mechanical Behavior and Properties of Ductile Materials

被引:22
|
作者
Koloor, Seyed Saeid Rahimian [1 ]
Karimzadeh, Atefeh [1 ]
Tamin, Mohd Nasir [1 ]
Abd Shukor, Mohd Hamdi [2 ]
机构
[1] Univ Teknol Malaysia, Fac Mech Engn, Dept Appl Mech & Design, Computat Solid Mech Lab, Johor Baharu 81310, Malaysia
[2] Univ Malaya, Ctr Adv Mfg & Mat Proc, Kuala Lumpur 50603, Malaysia
关键词
aluminum; 1100; nanoindentation test; indentation plane orientation; indenter edge-tip radius; indentation depth; finite element simulation; FINITE-ELEMENT; GRAIN-BOUNDARY; INSTRUMENTED INDENTATION; NANO-INDENTATION; SPHERICAL INDENTATION; FRACTURE-TOUGHNESS; LENGTH SCALES; SIZE; PLASTICITY; TILT;
D O I
10.3390/met8060421
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The nanoindentation test is frequently used as an alternate method to obtain the mechanical properties of ductile materials. However, due to the lack of information about the effects of the sample and indenter physical configurations, the accuracy of the extracted material properties in nanoindentation tests requires further evaluation that has been considered in this study. In this respect, a demonstrator ductile material, aluminum 1100, was tested using the Triboscope nanoindenter system with the Berkovich indenter. A 3D finite element simulation of the nanoindentation test was developed and validated through exact prediction of the structural response with measured data. The validated model was then employed to examine the effects of various test configurations on the load-displacement response of the sample material. These parameters were the different indenter edge-tip radii, different indentation depths, different sample tilts, and different friction conditions between the indenter and the material surface. Within the range of the indenter edge-tip radii examined, the average elastic modulus and hardness were 78.34 +/- 14.58 and 1.6 +/- 0.24 GPa, respectively. The different indentation depths resulted in average values for the elastic modulus and hardness of 77.03 +/- 6.54 and 1.58 +/- 0.17 GPa, respectively. The uneven surface morphology, as described by the inclination of the local indentation plane, indicated an exponential increase in the extracted values of elastic modulus and hardness, ranging from 71.83 and 1.47 GPa (for the reference case, theta = 0 degrees) to 243.39 and 5.05 GPa at theta = 12 degrees. The mechanical properties that were obtained through nanoindentation on the surface with 6 degrees tilt or higher were outside the range for aluminum properties. The effect of friction on the resulting mechanical response and the properties of the material was negligible.
引用
收藏
页数:18
相关论文
共 50 条
  • [1] Indenter geometry effects on the measurement of mechanical properties by nanoindentation with sharp indenters
    Tsui, TY
    Oliver, WC
    Pharr, GM
    THIN FILMS: STRESSES AND MECHANICAL PROPERTIES VI, 1997, 436 : 147 - 152
  • [2] Ceramic materials nanoindentation: load and indenter geometry effects
    Rico, A.
    Garrido, M. A.
    Otero, E.
    Rodriguez, J.
    BOLETIN DE LA SOCIEDAD ESPANOLA DE CERAMICA Y VIDRIO, 2007, 46 (05): : 253 - 258
  • [3] Nanoindentation behavior and mechanical properties measurement of polymeric materials
    Cook, Robert F.
    Oyen, Michelle L.
    INTERNATIONAL JOURNAL OF MATERIALS RESEARCH, 2007, 98 (05) : 370 - 378
  • [4] Effects of indenter angle and friction on the mechanical properties of film materials
    Wang, Yan
    RESULTS IN PHYSICS, 2016, 6 : 509 - 514
  • [5] Temperature and indenter radius effects on mechanical properties of copper during nanoindentation: a molecular dynamic simulation study
    Iwan Halim Sahputra
    The European Physical Journal B, 2021, 94
  • [6] Temperature and indenter radius effects on mechanical properties of copper during nanoindentation: a molecular dynamic simulation study
    Sahputra, Iwan Halim
    EUROPEAN PHYSICAL JOURNAL B, 2021, 94 (12):
  • [7] Effects of mechanical properties on the contact profile in Berkovich nanoindentation of elastoplastic materials
    Wang, Jiangting
    Hodgson, Peter D.
    Yang, Chunhui
    JOURNAL OF MATERIALS RESEARCH, 2012, 27 (01) : 313 - 319
  • [8] Effects of mechanical properties on the contact profile in Berkovich nanoindentation of elastoplastic materials
    Jiangting Wang
    Peter D. Hodgson
    Chunhui Yang
    Journal of Materials Research, 2012, 27 : 313 - 319
  • [9] Studies on mechanical properties of thermoelectric materials by nanoindentation
    He, Ran
    Gahlawat, Sonika
    Guo, Chuanfei
    Chen, Shuo
    Dahal, Tulashi
    Zhang, Hao
    Liu, Weishu
    Zhang, Qian
    Chere, Eyob
    White, Kenneth
    Ren, Zhifeng
    PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE, 2015, 212 (10): : 2191 - 2195
  • [10] Nanoindentation in Studying Mechanical Properties of Heterogeneous Materials
    Borodich, F. M.
    Bull, S. J.
    Epshtein, S. A.
    JOURNAL OF MINING SCIENCE, 2015, 51 (03) : 470 - 476