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首页> 外文期刊>Journal of Applied Physics >Some concerns about the current interpretation and analyses of indentation unloading P-h curves highlighted with Young's modulus studies of single crystals of MgO (100)
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Some concerns about the current interpretation and analyses of indentation unloading P-h curves highlighted with Young's modulus studies of single crystals of MgO (100)

机译:MgO(100)单晶的杨氏模量研究突出显示了有关压痕卸载P-h曲线的当前解释和分析的一些问题

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摘要

Indentation tests using indenter load, P, and indentation penetration, h, curves obtained from instrumented indentation machines have been in use for over 30 years. The unloading part of a P-h curve is frequently used for determining the indentation size at the maximum applied indenter load and for determining the elastic modulus of the test solid. To do this, four fundamental assumptions have been made. We show here experimentally that, unfortunately, none of the assumptions is correct. Therefore, these assumptions lead to incorrect determinations. Examples highlighting the concerns are given from our own work on single crystals of Cu and MgO and from the work of others. It is shown here that for both isotropic and anisotropic solids, the elastic moduli determined using the current methods of data analysis vary very considerably with the applied maximum indenter load. Furthermore, the obtained values do not correlate well with the literature values of the elastic moduli, despite the claim [see abstract of W. C. Oliver and G. M. Pharr (J. Mater. Res. 7, 1564 (1992)] that the agreement is within 5%. To remedy this problem, an alternative approach employing only elastic loading with an elastic sphere is used and the resulting load versus displacement data are analyzed using the Hertzian equation for the normal loading of a sphere on an elastic half-space. This experimental technique yields satisfactory values of the elastic moduli of test surfaces of single crystals of Cu (111), Cu (100), and MgO (100); the elastic moduli thus determined do not vary with the applied indenter load. Published by AIP Publishing.
机译:使用压痕载荷P和压痕穿透力h的压痕测试已通过仪器压痕机获得,其使用已超过30年。 P-h曲线的卸载部分通常用于确定在最大施加的压头载荷下的压痕尺寸以及用于确定测试固体的弹性模量。为此,做出了四个基本假设。我们在这里通过实验证明,不幸的是,所有假设都不正确。因此,这些假设导致错误的确定。我们自己对Cu和MgO单晶的研究以及对其他晶体的研究给出了突出关注点的例子。在此表明,对于各向同性和各向异性的固体,使用当前数据分析方法确定的弹性模量会随着施加的最大压头载荷而发生很大变化。此外,尽管声称[参见WC Oliver和GM Pharr的摘要(J. Mater。Res。7,1564(1992))声称该协议在5之内,但所得的值与弹性模量的文献值并没有很好的相关性。为了解决此问题,使用了一种仅使用弹性球体的弹性载荷的替代方法,并且使用赫兹方程对球体在弹性半空间上的法向载荷进行了载荷与位移数据的分析。产生令人满意的Cu(111),Cu(100)和MgO(100)单晶测试表面的弹性模量值;因此确定的弹性模量不会随施加的压头载荷而变化。

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  • 来源
    《Journal of Applied Physics 》 |2018年第9期| 095107.1-095107.13| 共13页
  • 作者

    Chaudhri M. Munawar;

  • 作者单位

    Univ Cambridge, Cavendish Lab, JJ Thomson Ave, Cambridge CB3 0HE, England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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