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首页> 外文期刊>Journal of the European Ceramic Society >Contact-mechanical properties at intermediate temperatures of ZrB2 ultra-high-temperature ceramics pressureless sintered with Mo, Ta, or Zr disilicides
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Contact-mechanical properties at intermediate temperatures of ZrB2 ultra-high-temperature ceramics pressureless sintered with Mo, Ta, or Zr disilicides

机译:Mo,Ta或Zr二硅化物无压烧结的ZrB2超高温陶瓷在中温下的接触机械性能

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摘要

The elasto-plastic properties and contact damage evolution of ZrB2 ultra-high-temperature ceramics (UHTCs) pressureless sintered at 1900 degrees C with MoSi2, TaSi2, or ZrSi2 additive were evaluated by Hertzian indentation tests in air up to 800 degrees C. It was found that liquid-phase sintering occurred in the three cases, but with severe decomposition of the TaSi2 and ZrSi2 additives and extensive formation of (Zr1-mSim)B-2 solid-solutions in the case of the ZrSi2 additive. Furthermore, ZrB2 sintered with ZrSi2 underwent severe peptization at 800 degrees C, raising questions as to its utility as a UHTC. It was also found that ZrB2 sintered with MoSi2 exhibits the best combination of contact-mechanical properties, being harder, stiffer, and more resistant to quasiplastic damage and radial cracking than ZrB2 sintered with TaSi2 or ZrSi2, as well as equally resistant to ring/cone cracking from similar to 600 degrees C onwards. Implications of interest for the UHTC community are discussed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过在高达800摄氏度的空气中通过赫兹压痕试验评估了在1900摄氏度下用MoSi2,TaSi2或ZrSi2添加剂无压力烧结的ZrB2超高温陶瓷(UHTC)的弹塑性和接触损伤演变。发现在这三种情况下都发生了液相烧结,但是在ZrSi2添加剂的情况下,TaSi2和ZrSi2添加剂发生了严重的分解,并且形成了(Zr1-mSim)B-2固溶体。此外,用ZrSi2烧结的ZrB2在800℃下进行了严格的胶溶,从而提出了关于其用作UHTC的疑问。还发现与MoSi2烧结的ZrB2表现出最佳的接触机械性能组合,与用TaSi2或ZrSi2烧结的ZrB2相比,具有更高的硬度,刚度,并且对准塑性破坏和径向开裂具有更强的抵抗力,并且同样具有耐环/锥度的性能。从大约600摄氏度开始破裂。讨论了对UHTC社区的兴趣。 (C)2015 Elsevier Ltd.保留所有权利。

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