镁基复合材料超塑性变形断裂的微观机制

Q4 Materials Science
B. Ballóková, K. Sülleiová, M. Besterci,, O. Velgosova, Song-Jeng Huang
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引用次数: 1

摘要

摘要:本文对AZ61 + 1 wt. % Al2O3复合材料在超塑性变形区断裂的微观机制进行了分析和量化。试样在200℃温度下以不同应变速率进行测试。当应变速率从1x10-2 s-1增加到1x10-4 s-1时,塑性显著提高。当超塑性达到最大值时,断口呈跨晶延性,有两种大小的韧窝。基于对高温断裂微观机制的统计分析,根据Gurland - Plateau理论描述了10-0- 1x10-4 s-1应变速率下的双曲关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Micromechanisms of Fracture of Magnesium Based Composite After Superplastic Deformation
Abstract The micromechanisms of fracture of AZ61 + 1 wt. % Al2O3 composite in the zone of superplastic deformation was analysed and quantified in this work. The specimens were tested at temperature of 200°C at different strain rates. Changing the strain rate, from 1x10-2 s-1 to 1x10-4 s-1, a significant growth of ductility was observed. At maximum value of superplasticity the fracture was transcrystalline ductile with dimples of two size categories. Based on the statistical analysis of fracture micromechanisms at the elevated temperature and strain rates of 10-0- 1x10-4 s-1 hyperbolic dependency was depicted according to Gurland - Plateau theory.
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来源期刊
Powder Metallurgy Progress
Powder Metallurgy Progress Materials Science-Metals and Alloys
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