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Materials and Measurement Issues

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The article was published on 2014-06-25. It has received 1 citations till now.

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Atomistic nanoindentation study of al-mg intermetallic compounds, based on molecular dynamics simulation

TL;DR: In this paper , a 3D molecular dynamics simulation is performed to investigate the nanoindentation process, the most frequently used technique to measure mechanical properties such as hardness, of three Al/Mg intermetallic compounds, where Mg is the main element added to pure Al.
References
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An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments

TL;DR: In this paper, the authors used a Berkovich indenter to determine hardness and elastic modulus from indentation load-displacement data, and showed that the curve of the curve is not linear, even in the initial stages of the unloading process.
Journal ArticleDOI

Nanoindentation study of microplasma sprayed hydroxyapatite coating

TL;DR: In this paper, the nano-hardness and Young's modulus were evaluated by nanoindentation technique carried out with a Berkovich indenter at various depths in the range of about 170-3000nm on a polished top surface.
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Nanoindentation response of novel hydroxyapatite–mullite composites

TL;DR: In this article, the experimental results of the nanoindentation response of the newly developed hydroxyapatite-mullite composites are presented and analyzed, and three different composite compositions i.e. HAp-10 ¼wt% mullite, HAp20 ¼ ¼¼¾ mullite and HAp 30 ¼ ¼  ¾ ¼ ¾¼ mullite are selected for the present study and for comparison, the measurements on pure HAp and pure mullite were also carried out.
Journal ArticleDOI

Effect of BaO addition on magnesium lanthanum alumino borosilicate-based glass-ceramic sealant for anode-supported solid oxide fuel cell

TL;DR: In this article, the effect of BaO addition on thermal, crystallization, electrical and mechanical behavior of the magnesium lanthanum alumino borosilicate glass-ceramics was reported.
Journal ArticleDOI

Loading Rate Effect on Nanohardness of Soda-Lime-Silica Glass

TL;DR: In this paper, nanoindentation with a Berkovich tip was used to measure the nanohardness of a 330μm-thick soda-lime-silica glass as a function of loading rate (1 to 1000mN·s−1).