The physical and mechanical properties and local deformation micromechanisms in materials with different dependence of hardness on the depth of print

被引:12
作者
Golovin, Yu. I. [1 ]
Tyurin, A. I. [1 ]
Aslanyan, E. G. [2 ]
Pirozhkova, T. S. [1 ]
Vasyukov, V. M. [1 ]
机构
[1] Tambov State Univ, Res Inst Nanotechnol & Nanomat, Tambov, Russia
[2] All Russia Res Inst Physicotech & Radiotech Measu, Mendeleyevsk, Russia
基金
俄罗斯科学基金会;
关键词
PULSE INDENTATION TECHNIQUE; STRAIN-RATE SENSITIVITY; PLASTIC-DEFORMATION; NANOCRYSTALLINE MATERIALS; NANOINDENTATION HARDNESS; DYNAMIC NANOINDENTATION; MAGNESIUM ALLOYS; SUBMICRON SCALE; ELASTIC-MODULUS; MAGNETIC-FIELD;
D O I
10.1134/S1063783417090104
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
The size hardness effects are studied via the micro- and nanoindentation methods over the wide range of the depth of print h (from dozens of nanometers to several dozen micrometers) for several classes of materials, such as ionic and covalent single crystals (sapphire, silicon, lithium fluoride); metals (single-crystal Al, polycrystalline Cu, Ni, and Nb); ceramics (high-strength nanostructured TZP-ceramic based on the natural zirconium dioxide-baddeleyite mineral); amorphous materials (fused quartz); and polymers (polycarbonate and polytetrafluoroethylene). As is shown, some of them possess severe size hardness effects, whereas the others reveal the weak ones or even a lack of these effects. The thermoactivation analysis is implemented, as well, and the activating and energy characteristics of local deformation processes induced by an indenter are compared with the dominant plasticity micromechanisms of the studied materials at different stages of the print formation and with the size peculiarities. The materials with low hardness coefficients and meeting the requirements of ISD 14577 and GOST R 8.748-2011 standards in the nanohardness measurements are highlighted, as well. In the established load ranges, these materials are the promising candidates for their use as reference samples, which are designed to ensure the uniformity of the hardness measurements at the nano- and microscales, as well as for calibrating and testing the nanoindentometers.
引用
收藏
页码:1803 / 1811
页数:9
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