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Interferometric and hardness studies of the surfaces of crystals.

机译:晶体表面的干涉和硬度研究。

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摘要

Part I of the thesis commences with a general picture of the various concepts of hardness and the relationship of indentation hardness to other physical properties. Types of measurement of hardness are reviewed with special reference to static indentation tests. The optical techniques and the apparatus made and used are described, including the interferometric techniques employed. The following aspects of hardness of silicon carbide are studied: (1) The variation of hardness with load, the relation between 'recovered' and 'unrecovered' hardness and the surface distortions around the indentations. (2) The variation of hardness with direction: it is found that the [1120] and [0110] are respectively the directions of maximum and minimum hardness. An attempt is made to explain the results in terms of the shear stress on the slip plane. (3) Ring cracks formed by steady pressure made by a diamond ball: the distortions round the cracks and the profiles of sections are studied by multiple-beam interferometry and phase-contrast microscopy. Hertz's classical equation is applied to compare the results. The micro-slip lines observed on a rare trigonal pyramid face of a silicon carbide crystal due to diamond ball impacts are described. A description is given of the analysis of silicon carbide crystals by X-rays. Part II of the thesis gives a description of various types of micro-features observed on transparent crystals of silicon carbide. The features are studied by applying the techniques of multiple-beam interferometry and phase-contrast microscopy. The special point about these features is that they are depressions. An attempt is made to explain their existence on the basis of a theory postulated by Tolansky and the dislocation theory of evaporation of crystals by Cabrera and Levine. A description is given of spiral-like features observed at the edge of some silicon carbide crystals. An appendix to the thesis gives a brief account of interferometric studies made on sawn surfaces of diamond.
机译:论文的第一部分从各种硬度的概观以及压痕硬度与其他物理性能的关系开始。对硬度的测量类型进行了审查,并特别参考了静态压痕测试。描述了制造和使用的光学技术和设备,包括所采用的干涉技术。研究了碳化硅硬度的以下几个方面:(1)硬度随载荷的变化,“恢复”和“未恢复”硬度之间的关系以及压痕周围的表面变形。 (2)硬度随方向的变化:发现[1120]和[0110]分别是最大和最小硬度的方向。试图用滑移面上的剪切应力来解释结果。 (3)金刚石球在恒压作用下形成的环形裂纹:通过多光束干涉法和相差显微镜研究了裂纹周围的变形和截面轮廓。应用赫兹经典方程式比较结果。描述了由于金刚石球撞击而在碳化硅晶体的稀有三角锥面上观察到的微滑线。给出了通过X射线分析碳化硅晶体的描述。论文的第二部分描述了在碳化硅的透明晶体上观察到的各种类型的微观特征。通过应用多光束干涉测量和相衬显微镜技术研究了这些特征。这些特征的特殊之处在于它们是凹陷。试图根据Tolansky提出的理论以及Cabrera和Levine的晶体蒸发的位错理论来解释它们的存在。给出了在某些碳化硅晶体边缘观察到的螺旋状特征的描述。本文的附录简要介绍了在金刚石锯切表面上进行的干涉测量研究。

著录项

  • 作者

    Shrirammurty, Taranikanti.;

  • 作者单位

    University of London, Royal Holloway College (United Kingdom).;

  • 授予单位 University of London, Royal Holloway College (United Kingdom).;
  • 学科 Physical chemistry.
  • 学位 Ph.D.
  • 年度 1962
  • 页码 340 p.
  • 总页数 340
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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