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期刊论文

Comparison of nano-indentation hardness to microhardness

钱林茂Linmao Qian a Ming Li b Zhongrong Zhou a* Hui Yang a Xinyu Shi a

Surface & Coatings Technology xx(2004)xxx-xxx,-0001,():

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摘要/描述

With a nano-indenter and a microhardness testing machine, nano-indentation hardness and microhardness are measured in a wide load range (0.1-19600mN) for five materials. Even fused silica and silicon almost have constant hardness during the load range, the nanoindentation hardness of copper, stainless steel and nickel titanium alloy shows obvious indentation size effect, namely that the hardness decreases with the increase of depth. For the measured materials, the nano-indentation hardness is about 10-30% in magnitude larger than the microhardness. The main reasons can be explained as the analysis of the nano-indentation hardness using the projected contact area at peak load Ac instead of the residual projected area Ar, as well as the purely elastic contact assumption describing the elastic/plastic indentation process. The analysis based on a simple model indicates that Ac is always smaller than Ar, and the more heavily the indent piles up (or sinksin), the larger the difference between the nano-indentation hardness and microhardness.

【免责声明】以下全部内容由[钱林茂]上传于[2005年07月22日 18时26分13秒],版权归原创者所有。本文仅代表作者本人观点,与本网站无关。本网站对文中陈述、观点判断保持中立,不对所包含内容的准确性、可靠性或完整性提供任何明示或暗示的保证。请读者仅作参考,并请自行承担全部责任。

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