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Elastic Modulus And Hardness Of Muscovite And Rectorite Determined By Nanoindentation

机译:纳米压痕法测定白云母和锂蒙脱石的弹性模量和硬度

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This paper presents the first effort to determine the elastic modulus (E) and hardness (H) of muscovite and rectorite by nanoindentation. Samples were examined under varying maximum load, loading rate, and hold time at the maximum load conditions. The measured E and H values were affected by. (1) numerous giant steps observed in the load-displacement curves, particularly under large loads; (2) maximum load; (3) loading rate; and (4) the hold time at maximum load. The two minerals behaved differently under indentation, owing to the difference in their crystal structure. Rectorite exhibited more highly time-dependent response and had much lower E and H values than muscovite. After correction by removing the giant steps to obtain more accurate E and H values, the dependence of E and H on the maximum load tended to disappear. The corrected values for E, 79.3 ± 6.9 and 18.3 ±4.6 GPa, and H, 5.14±0.82 and 0.73 ±0.17 GPa, for muscovite and rectorite, respectively, were in good agreement with the data published in the literature. This study also demonstrated the importance of choosing appropriate test control parameters in obtaining more reliable E and H values of layered aluminosilicates using nanoindentation.
机译:本文提出了通过纳米压痕法测定白云母和累托石的弹性模量(E)和硬度(H)的首次尝试。在最大负载条件下,在变化的最大负载,负载率和保持时间下检查样品。测得的E和H值受到影响。 (1)在载荷-位移曲线中观察到许多巨大的台阶,特别是在大载荷下; (2)最大负荷; (3)装载率; (4)最大负载下的保持时间。由于它们的晶体结构不同,两种矿物在压痕下的行为也不同。锂蒙脱石表现出更高的时间依赖性响应,并且比白云母具有更低的E和H值。在通过消除巨阶台阶进行校正以获得更准确的E和H值之后,E和H对最大负载的依赖性趋于消失。白云母和累托石的E,79.3±6.9和18.3±4.6 GPa的校正值与H,5.14±0.82和0.73±0.17 GPa的校正值与文献中公布的数据高度吻合。这项研究还证明了选择适当的测试控制参数对于使用纳米压痕获得更可靠的层状硅铝酸盐的E和H值的重要性。

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