本文主要研究内容
作者胡洋阳,苏钰(2019)在《Microstructure and Texture Evolution of Fe-33Mn-3Si-3Al TWIP Steel on Strain》一文中研究指出:The microstructure and texture evolution of Fe-33Mn-3Si-3Al twinning induced plasticity(TWIP) steel were studied by the scanning electron microscope(SEM) and X-ray diffraction(XRD) at room temperature. After quasi-static tensile, the texture evolution of different strain was observed. It was shown that the Goss and Brass components increased within the strain range of less than 0.6. Whereas, the main components were decreased when the strain levels were greater than 0.6. This behavior was attributed to the low stacking fault energy(SFE) and was related to the strain energy of this high manganese steel. At high strain levels, the high strain energy may contribute to the Brass components transition to the A(rot-Brass) components.
Abstract
The microstructure and texture evolution of Fe-33Mn-3Si-3Al twinning induced plasticity(TWIP) steel were studied by the scanning electron microscope(SEM) and X-ray diffraction(XRD) at room temperature. After quasi-static tensile, the texture evolution of different strain was observed. It was shown that the Goss and Brass components increased within the strain range of less than 0.6. Whereas, the main components were decreased when the strain levels were greater than 0.6. This behavior was attributed to the low stacking fault energy(SFE) and was related to the strain energy of this high manganese steel. At high strain levels, the high strain energy may contribute to the Brass components transition to the A(rot-Brass) components.
论文参考文献
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论文详细介绍
论文作者分别是来自Journal of Wuhan University of Technology(Materials Science)的胡洋阳,苏钰,发表于刊物Journal of Wuhan University of Technology(Materials Science)2019年01期论文,是一篇关于,Journal of Wuhan University of Technology(Materials Science)2019年01期论文的文章。本文可供学术参考使用,各位学者可以免费参考阅读下载,文章观点不代表本站观点,资料来自Journal of Wuhan University of Technology(Materials Science)2019年01期论文网站,若本站收录的文献无意侵犯了您的著作版权,请联系我们删除。
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胡洋阳:Microstructure and Texture Evolution of Fe-33Mn-3Si-3Al TWIP Steel on Strain论文
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