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The effect of the grain boundary phase on the fracture toughness of beta-silicon nitride ceramics.

机译:晶界相对β-氮化硅陶瓷断裂韧性的影响。

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摘要

The mechanical properties of silicon nitride are controlled by the shape and size of the silicon nitride grains and the properties of the grain boundary phase. Although the effects of the grain size and shape on the mechanical properties have been extensively studied, the influence of the grain boundary phase on the mechanical properties has received little attention.;In this thesis, the effect of the grain boundary phase on the fracture toughness of silicon nitride was determined. To produce a wide range of grain boundary phases, a variety of sintering aids were added to the silicon nitride, including combinations of cordierite (Mg;The sintering aids reacted with the silicon nitride to form a sintering liquid, which produced grain boundary phases when cooled. The fracture toughness of silicon nitride ceramics with different grain boundary phases was measured using Vicker's indentation, and was strongly affected by the properties of the grain boundary phase.;The mechanical properties of the grain boundary phases were studied using model glasses with compositions similar to those of the grain boundary phases. The mechanical properties of the oxynitride glasses, including the Young's moduli, fracture toughness and thermal expansion coefficients were measured.;The thermal expansion coefficient of the grain boundary phase determined the crack propagation path in the silicon nitride ceramic. When the thermal expansion coefficient of the grain boundary phase was large, the fracture path was intergranular and the material was relatively tough. Conversely, when the thermal expansion coefficient of the grain boundary phase was small, the fracture path was intragranular and the material was brittle.;Thermal expansion mismatch between the silicon nitride grains and the grain boundary phases produces residual stresses when the ceramic is cooled. The residual stresses which developed in the silicon nitride grains were measured using x-ray and neutron diffraction.;This thesis demonstrates that the grain boundary phase strongly influences the fracture toughness of silicon nitride ceramics by providing a weak path for crack deflection when the grain boundary is under tensile residual stress.
机译:氮化硅的机械性能由氮化硅晶粒的形状和尺寸以及晶界相的性能控制。尽管已经广泛研究了晶粒尺寸和形状对力学性能的影响,但晶界相对力学性能的影响却很少受到关注。测定氮化硅的含量。为了产生广泛的晶界相,向氮化硅中添加了多种烧结助剂,包括堇青石(Mg)的组合。烧结助剂与氮化硅反应形成烧结液,冷却后产生晶界相用维氏压痕法测量了具有不同晶界相的氮化硅陶瓷的断裂韧度,并受晶界相性质的强烈影响;使用具有相似成分的模型玻璃研究了晶界相的力学性能。测量了氮氧化物玻璃的力学性能,包括杨氏模量,断裂韧度和热膨胀系数;晶界相的热膨胀系数决定了氮化硅陶瓷中的裂纹扩展路径。当晶界相的热膨胀系数大时,断裂路径是晶间的,材料相对坚硬。反之,当晶界相的热膨胀系数较小时,断裂路径为晶内且材料较脆。氮化硅晶粒与晶界相之间的热膨胀失配会在冷却陶瓷时产生残余应力。用X射线和中子衍射法测量了氮化硅晶粒中产生的残余应力。本论文表明,晶界相通过为晶界提供弱的裂纹偏转路径而强烈影响氮化硅陶瓷的断裂韧性。在拉伸残余应力下。

著录项

  • 作者

    Peterson, Irene Mona.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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