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Effect of Crystallographic Texture on Anisotropy of Mechanical Properties in High Strength Martensitic Steel

机译:晶体织构对高强度马氏体钢力学性能各向异性的影响

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The thermomechanical control process (TMCP) is widely applied as one of the effective processes for improving the strength and toughness of steel plates. In actual application, the anisotropies of mechanical properties arising from the crystallographic texture developed during the controlled rolling process are important issues. In this study, the effect of texture on the anisotropies of mechanical properties in an experimentally manufactured YP960 MPa class steel plate was investigated. Strength varied through the plate thickness from the surface to mid-thickness. At the surface, the strength in the longitudinal direction was higher than that in the transverse direction, and in contrast, at mid-thickness, the strength in the transverse direction was higher than that in the longitudinal direction. The major components of the texture at the plate surface were {110} and {112} , whereas those at mid-thickness were {332} and {211}~{311} . It is considered that the texture of the plate surface was formed by shear strain in the austenite region, whereas that at mid-thickness was formed by plane strain compressive. A crystal plasticity analysis based on the initial texture information obtained experimentally revealed that the anisotropies of mechanical properties were strongly affected by the crystallographic orientation.
机译:热机械控制过程(TMCP)被广泛用作提高钢板强度和韧性的有效过程之一。在实际应用中,由受控轧制过程中形成的晶体织构引起的机械性能各向异性是重要的问题。在这项研究中,研究了织构对实验制造的YP960 MPa级钢板力学性能各向异性的影响。从表面到中厚,强度随板厚的不同而变化。在表面处,纵向方向的强度高于横向方向的强度,相反,在中间厚度处,横向方向的强度高于纵向方向的强度。板表面的织构的主要成分是{110}和{112},而中等厚度的那些是{332}和{211}〜{311}。可以认为,板表面的织构是由奥氏体区域的剪切应变形成的,而中厚的是由平面应变压缩形成的。根据实验获得的初始织构信息进行的晶体可塑性分析表明,力学性能的各向异性受到晶体取向的强烈影响。

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