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Deformation about sliding indentation in ceramics and its application to lapping.

机译:陶瓷中滑动压痕的变形及其在研磨中的应用。

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摘要

The deformation and fracture of model brittle materials such as soda-lime glass and Ni-Zn ferrite produced by sliding indentations under lightly loaded (1-600gm) conditions has been investigated. Experiments were conducted with a pyramidal diamond indenter (Vickers) sliding against soda-lime glass and polycrystalline Ni-Zn ferrite at low velocities (1-50mm/min). In glass, when the indentation load is less than 5gm, microscopic observations of the scratch track show that it is completely plastic with no cracking. Median cracking is seen to occur when the indentation load exceeds 5gm and lateral cracking, leading to significant material removal, is observed in the load range of 80-300gm. The lateral cracks are typically formed at a shallow depth below the surface and the crack faces are parallel to the surface. At a load of ;An analytical model of sliding indentation is developed using Yoffe's characterization of the inelastic deformation around quasi-static indentations. The formation of median and lateral cracks in glass, which were observed in the experiments, are seen to be well predicted by the model.;Lastly, the analysis of lapping and polishing proposed by Chauhan recently using indentation fracture as the basis for material removal is refined and made more rigorous in order to predict the surface finish of lapped surfaces and the contact loads which exist between abrasive particles and the work surface during lapping. The predictions of the model are found to be in broad agreement with a variety of experimental observations pertaining to lapping and lapped surfaces of ceramics.
机译:研究了在轻载(1-600克)条件下通过滑动压痕产生的钠钙玻璃和镍锌铁氧体等模型脆性材料的变形和断裂。实验是在低速(1-50mm / min)的条件下,对着钠钙玻璃和多晶镍锌铁氧体滑动的金字塔形金刚石压头(Vickers)进行的。在玻璃中,当压痕载荷小于5 gm时,对划痕的微观观察表明,它完全是塑料,没有裂纹。当压痕载荷超过5 gm时,会出现中位裂纹,在80-300 gm的载荷范围内,会观察到横向裂纹,从而导致显着的材料去除。横向裂纹通常形成在表面下方的浅深度处,并且裂纹面与表面平行。在负重下,利用Yoffe对准静态压痕周围非弹性变形的表征,建立了滑动压痕分析模型。该模型可以很好地预测在实验中观察到的玻璃中部和侧向裂纹的形成。最后,Chauhan最近提出的以压痕断裂作为材料去除基础的研磨和抛光分析是:为了预测精研表面的表面光洁度以及精研过程中磨料颗粒与工作表面之间的接触载荷,对精加工进行了更严格的规定。发现该模型的预测与与陶瓷研磨和研磨表面有关的各种实验观察结果大体一致。

著录项

  • 作者

    Ahn, Yoomin.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Industrial.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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