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Grain Boundary Engineering of Medium Mn TWIP Steels: A Novel Method to Enhance the Mechanical Properties

机译:中锰TWIP钢的晶界工程:提高机械性能的新方法

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The grain boundary engineering (GBE) approach was employed on a medium manganese (Mn) based twinning induced plasticity (TWIP) steel to improve its mechanical properties. Two specially designed thermo-mechanical processing (TMP) routes, one involving unidirectional rolling (UDR) and the other one employing multi-step cross rolling (MSCR), with intermediate short term annealing treatment have been used. The annealing temperatures are chosen considering recrystallization and grain growth. Of the two routes, the one involving MSCR, has shown a higher fraction of special or coincident lattice site (CSL) grain boundaries. A detailed grain boundary microstructural analysis has been carried out by electron backscatter diffraction (EBSD) for differently processed samples. A significant improvement in ductility is observed in MSCR processed samples due to increase of CSL boundary fraction.
机译:晶界工程(GBE)方法用于基于中锰(Mn)的孪生诱导塑性(TWIP)钢,以改善其机械性能。使用了两条经过特殊设计的热机械加工(TMP)路线,一条涉及单向轧制(UDR),另一条采用多步交叉轧制(MSCR),并进行了中间短期退火处理。选择退火温度时要考虑再结晶和晶粒长大。在这两种路线中,涉及MSCR的路线显示出更高比例的特殊或重合晶格位点(CSL)晶界。已通过电子背散射衍射(EBSD)对不同处理的样品进行了详细的晶界微结构分析。由于CSL边界分数的增加,在MSCR处理的样品中观察到延展性的显着改善。

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