首页> 外文会议>International Conference on Superplasticity in Advanced Materials(ICSAM 2003); 20030728-30; Oxford(GB) >Cavitation Behaviors in a Tetragonal Zirconia Polycrystai Subjected to Superplastic Deformations Measured by SANS Method
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Cavitation Behaviors in a Tetragonal Zirconia Polycrystai Subjected to Superplastic Deformations Measured by SANS Method

机译:用SANS法测量的四角形氧化锆多晶在超塑性变形作用下的空化行为

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摘要

3Y-TZP specimens were pulled at temperatures ranging from 1623 to 1723 K with strain rates ranging from 3.3 x 10~(-5) to 6.7 x 10~(-3)s~(-1) to various nominal strains. Characterization of cavities was conducted for gauge section of deformed specimens by SANS method and conventional ones including density measurement method and scanning electron microscopy analysis. The volume fraction of cavities and the evolution of cavity shapes were evaluated from the SANS results as a function of nominal strain for deformations carried out under the same superplastic condition. These behaviors were also discussed with the change in deformation condition. It is found that the SANS method is the most excellent technique for cavity characterization: the SANS method can measure the characteristics of cavities with better statistics and can measure flat cavities or fine defects which are quite difficult to identify by the conventional methods.
机译:将3Y-TZP试样在1623至1723 K的温度范围内拉伸,应变速率从3.3 x 10〜(-5)到6.7 x 10〜(-3)s〜(-1)到各种标称应变。用SANS法和常规方法,包括密度测量法和扫描电子显微镜分析法,对变形试样的标定截面进行空洞表征。根据SANS结果,在相同的超塑性条件下进行变形时,空洞的体积分数和空洞形状的演变作为名义应变的函数进行了评估。这些行为也随着变形条件的变化进行了讨论。已经发现,SANS方法是用于腔表征的最优秀技术:SANS方法可以以更好的统计数据来测量腔的特性,并且可以测量传统方法很难识别的平坦腔或细小缺陷。

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