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首页> 外文期刊>Journal of the European Ceramic Society >A micromechanics study of competing mechanisms for creep fracture of zirconium diboride polycrystals
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A micromechanics study of competing mechanisms for creep fracture of zirconium diboride polycrystals

机译:二硼化锆多晶体蠕变断裂竞争机理的微力学研究

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摘要

A micromechanics model was developed to simulate creep fracture of ceramics at high temperatures and material properties pertinent to zirconium diboride (ZrB_2) were adopted in the simulation. Creep fracture is a process of nucleation, growth, and coalescence of cavities along the grain boundaries in a localized and inhomogeneous manner. Based on the grain boundary cavitation process, creep fracture can be categorized into cavity nucleation-controlled and cavity growth-controlled processes. On the other hand, based on the deformation mechanism, the separation between two adjacent grain boundaries can be categorized into diffusion-controlled and creep-controlled mechanisms. In this study, a parametric study was performed to examine the effects of applied stress, cavity nucleation parameter, grain boundary diffusivity, and applied strain rate on cavity nucleation-controlled versus growth-controlled process as well as diffusion-controlled vs. creep-controlled mechanism during creep fracture of ZrB_2.
机译:建立了微力学模型来模拟陶瓷在高温下的蠕变断裂,并采用了与二硼化锆(ZrB_2)有关的材料特性。蠕变断裂是以局部且不均匀的方式沿晶界成核,生长和聚集成腔的过程。基于晶界空化过程,蠕变断裂可分为腔形核控制和腔生长控制两个过程。另一方面,基于变形机制,可以将两个相邻晶界之间的分离分为扩散控制和蠕变控制机制。在这项研究中,进行了一项参数研究,以检查施加的应力,腔形核参数,晶界扩散率和应变速率对形核控制与生长控制过程以及扩散控制与蠕变控制过程的影响ZrB_2蠕变断裂的机理

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