Nanohardness of Sintered and Shock Deformed Alumina

被引:0
|
作者
Riya Chakraborty
Arjun Dey
Anoop K. Mukhopadhyay
Keshaw D. Joshi
Amit Rav
Ashok K. Mandal
Sandip Bysakh
Sampad K. Biswas
Satish C. Gupta
机构
[1] Council of Scientific and Industrial Research,Central Glass and Ceramic Research Institute
[2] Thermal System Group,Applied Physics Division
[3] ISRO Satellite Centre (ISAC),undefined
[4] Indian Space Research Organisation,undefined
[5] Department of Space,undefined
[6] Government of India,undefined
[7] Bhabha Atomic Research Centre,undefined
来源
Metallurgical and Materials Transactions A | 2012年 / 43卷
关键词
Wing Crack; Indentation Size Effect; Alumina Ceramic; Microstructural Defect; Nanoindentation Technique;
D O I
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中图分类号
学科分类号
摘要
To understand how high–strain rate, flyer-plate impact affects the nanohardness of a coarse (~10 μm) grain, high-density (~3.978 gm cc–1) alumina, load controlled nanoindentation experiments were conducted with a Berkovich indenter on as-sintered disks and shock-recovered alumina fragments obtained from an earlier flyer-plate shock impact study. The nanohardness of the shock-recovered alumina was much lower than that of the as-sintered alumina. The indentation size effect was severe in the shock-recovered alumina but only mild in the as-sintered alumina. Extensive additional characterization by field emission scanning electron microscopy, transmission electron microscopy, and analysis of the experimental load depth data were used to provide a new explanation for the presence of strong indentation size effect in the shock-recovered alumina. Finally, a qualitative model was proposed to provide a rationale for the whole scenario of nanoindentation responses in the as-sintered and shock-recovered alumina ceramics.
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页码:459 / 470
页数:11
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