首页> 外文会议>Symposium Proceedings vol.839; Symposium on Electron Microscopy of Molecular and Atom-Scale Mechanical Behavior, Chemistry and Structure; 20041129-1201; Boston,MA(US) >On the Effect of Local Grain-Boundary Chemistry on the Macroscopic Mechanical Properties of a High Purity Y_2O_3-Al_2O_3-Containing Silicon Nitride Ceramic
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On the Effect of Local Grain-Boundary Chemistry on the Macroscopic Mechanical Properties of a High Purity Y_2O_3-Al_2O_3-Containing Silicon Nitride Ceramic

机译:局部晶界化学对高纯Y_2O_3-Al_2O_3-氮化硅陶瓷宏观力学性能的影响

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摘要

The effects of grain-boundary chemistry on the mechanical properties of a high-purity silicon nitride ceramics were investigated, with specific emphasis on the role of oxygen. Variations in the grain-boundary oxygen content, through control of oxidizing heat treatments and sintering additives, was found to result in a transition in fracture mechanism from transgranular to intergranular fracture, with an associated increase in fracture toughness. This phenomenon is correlated to an oxygen-induced change in grain-boundary chemistry that appears to affect fracture by "weakening" the interface, facilitating debonding and crack advance along the boundaries, thereby enhancing the toughness by grain bridging. It is concluded that if the oxygen content in the thin grain-boundary films exceeds a lower limit, which is ~0.87 equiv% oxygen content, then the interfacial structure and bonding characteristics favor intergranular debonding during crack propagation; otherwise, transgranular fracture ensues, with consequent low toughness.
机译:研究了晶界化学对高纯度氮化硅陶瓷机械性能的影响,特别强调了氧的作用。通过控制氧化热处理和烧结添加剂,发现晶界含氧量的变化导致断裂机理从晶间断裂过渡到晶间断裂,并伴随断裂韧性的增加。这种现象与氧引起的晶界化学变化有关,该变化似乎通过“弱化”界面来影响断裂,促进脱胶和沿边界的裂纹扩展,从而通过晶粒桥接增强韧性。得出的结论是,如果薄边界层中的氧含量超过一个下限,即氧含量约为0.87当量%,则在裂纹扩展过程中,界面结构和键合特性有利于晶间脱胶;否则,随后会发生晶状体骨折,因此韧性较低。

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