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Growth behavior and orientation relationships in AISI 304 stainless steel during directional solidification

机译:定向凝固期间AISI 304不锈钢的生长行为和定向关系

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The formation mechanism of lathy ferrite in AISI 304 stainless steel during directional solidification was discussed in terms of the orientation relationship between ferrite and austenite. Experimental results show that most of the ferrite laths are arranged parallel and a few ferrite laths with perpendicular morphology can also be observed in the solidified microstructure. Selected-area diffraction patterns by transmission electron microscopy (TEM) and pole figures by electron backscatter diffraction (EBSD) show that Nishiyama Wassermann orientation relationship between the lathy ferrite and austenite exists in the solidified microstructure. Based on the pole figures of the ferrite, it was found that (103) and [001] of the lathy ferrite are parallel to the sample surface and heat flow direction, respectively, during directional solidification, The elongated directions of the lathy ferrite are found to be [001], [011], and [123], which means that the lathy ferrite grows without preferential direction during directional solidification.
机译:在定向凝固期间AISI 304不锈钢中损伤铁氧体的形成机制在铁氧体和奥氏体之间的取向关系方面讨论。实验结果表明,大多数铁氧体板位于平行排列,并且在固化的微观结构中也可以观察到具有垂直形态的少量铁氧体板条。通过透射电子显微镜(TEM)和磁极图的选定区域衍射图案通过电子反向散射衍射(EBSD)表明,在固化的微观结构中存在损伤铁氧体和奥氏体之间的Nishiyama Wassermann取向关系。基于铁素体的杆形图,发现损伤铁氧体的(103)和[001]分别在定向凝固期间分别平行于样品表面和热流向,在定向凝固期间,找到损伤铁素体的细长方向[011]和[123],这意味着在定向凝固期间没有优于方向而在没有优先方面的情况下在没有优于方向的情况下生长。

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