材料科学
韧性
脆性
劈理(地质)
大气温度范围
碳化物
复合材料
增韧
冶金
铁氧体(磁铁)
粒度
断裂(地质)
物理
气象学
作者
Yuuji Kimura,T. Inoue,Fuxing Yin,Kaneaki Tsuzaki
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2008-05-22
卷期号:320 (5879): 1057-1060
被引量:424
标识
DOI:10.1126/science.1156084
摘要
Materials are typically ductile at higher temperatures and become brittle at lower temperatures. In contrast to the typical ductile-to-brittle transition behavior of body-centered cubic (bcc) steels, we observed an inverse temperature dependence of toughness in an ultrahigh-strength bcc steel with an ultrafine elongated ferrite grain structure that was processed by a thermomechanical treatment without the addition of a large amount of an alloying element. The enhanced toughness is attributed to a delamination that was a result of crack branching on the aligned {100} cleavage planes in the bundles of the ultrafine elongated ferrite grains strengthened by nanometer-sized carbides. In the temperature range from 60 degrees to -60 degrees C, the yield strength was greater, leading to the enhancement of the toughness.
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