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Improvement of Superplasticity in Fine-grained Oxide Ceramics Based on the Concept of Grain Boundary Plasticity

机译:基于晶界塑性概念的细粒氧化物陶瓷超塑性改进

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Superplasticity in fine-grained oxide ceramics has been generally elucidated on the basis of their experimental strain rate-flow stress relationship and phenomenological analysis of cavity nucleation and growth. It has been widely accepted that the high temperature superplastic flow and failure in ceramics is significantly influenced by the atomic structure and chemistry of grain boundaries. Such phenomenon cannot be explained based on the classical phenomenological analysis. Our research group has therefore proposed to establish a new research field, grain boundary plasticity, to describe the superplastic deformation related to the grain boundary atomic structure. This paper aims to point out the importance of the atomistic analysis of grain boundary to develop new superplastic ceramics.
机译:含细粒氧化物陶瓷的超塑性通常在其实验应变率 - 流量应力关系和腔核核切割和生长的现象学分析的基础上阐明。已被普遍认为,陶瓷的高温超塑性流量和陶瓷的失效受到晶界原子结构和化学的影响。这种现象不能基于经典现象学分析来解释。因此,我们的研究小组提出建立了一种新的研究领域,谷物边界可塑性,描述与晶界原子结构相关的超塑性变形。本文旨在指出晶界原子分析开发新的超塑性陶瓷的重要性。

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