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Superior Strength and Multiple Strengthening Mechanisms in Nanocrystalline TWIP Steel

机译:纳米晶体Twip钢的优异强度和多重强化机制

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The strengthening mechanism of the metallic material is related to the hindrance of the dislocation motion, and it is possible to achieve superior strength by maximizing these obstacles. In this study, the multiple strengthening mechanism-based nanostructured steel with high density of defects was fabricated using high-pressure torsion at room and elevated temperatures. By combining multiple strengthening mechanisms, we enhanced the strength of Fe-15?Mn-0.6C-1.5?Al steel to 2.6?GPa. We have found that solute segregation at grain boundaries achieves nanograined and nanotwinned structures with higher strength than the segregation-free counterparts. The importance of the use of multiple deformation mechanism suggests the development of a wide range of strong nanotwinned and nanostructured materials via severe plastic deformation process.
机译:金属材料的强化机理与位错运动的阻碍有关,并且可以通过最大化这些障碍来实现优异的强度。在该研究中,使用室内高压扭转和高温的高压扭转制造具有高密度缺陷密度的多强度基于机构的纳米结构钢。通过组合多种强化机制,我们增强了Fe-15?Mn-0.6C-1.5α的强度至2.6?GPA。我们发现在晶界的溶质隔离达到纳米和纳米型结构,其具有比无偏析的对应物更高的强度。使用多种变形机制的重要性表明,通过严重的塑性变形方法开发了各种强纳米型和纳米结构材料。

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