首页> 外文期刊>International Journal of Pressure Vessels and Piping >Effect of hot deformation and crystallographic texture on toughness anisotropy and fracture behavior of Nb plus V microalloyed API X70 steel
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Effect of hot deformation and crystallographic texture on toughness anisotropy and fracture behavior of Nb plus V microalloyed API X70 steel

机译:热变形和晶体纹理对Nb Plus V微合金化API X70钢韧性各向异性和断裂行为的影响

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摘要

The Charpy impact toughness (CVN) properties of a Nb + V microalloyed X70 steel of YS similar to 540 MPa was studied at various angles with respect to the rolling direction. The microstructure of the steel was characterised using light optical microscope, scanning electron microscope (SEM) and the transformation textures were evaluated from the orientation distribution function (ODF) measured from the electron back-scattered diffraction (EBSD) experiments. The skeleton lines, showing intensity distribution, f(g), of the fcc-to-bcc transformation texture, namely the alpha-fiber (< 110 > parallel to RD), the gamma-fiber (< 111 > parallel to ND) and epsilon-fiber (< 110 > parallel to TD) are considered to explain the observed behavior in mechanical properties. The major components like, {112} < 110 >, {113} < 110 >, {332} < 113 > {111} < 112 > and {111} < 110 >, their relative intensity distribution, are found to act in a complex manner towards controlling the mechanical behavior during impact and tensile testing. It has been observed that, the type and extent of delamination normally observed in broken Charpy specimens, which is commonly believed to be more dependent on the banding of 2nd phases in the microstructure, is found to be controlled by crystallographic texture, mostly clustering of {100} grains in the primary and secondary cleavage planes.
机译:在相对于轧制方向上以各个角度研究了类似于540MPa的Nb + V微合金X70钢的夏比冲击韧性(CVN)性质。使用光学显微镜,扫描电子显微镜(SEM)和转化纹理从电子背散射衍射(EBSD)实验中测量的取向分布函数(ODF)评价钢的微观结构。骨架线,显示FCC - BCC变换纹理的强度分布,F(g),即α-纤维(平行于Rd),伽马纤维(<111>平行于Nd)和ε-纤维(平行于Td)被认为是在机械性能下解释观察到的行为。如{112} <110>,{113} <110>,{313} <110>,{312} <113> {111} <112>和{111} <110>,它们的相对强度分布如此相对强度分布。复杂的方式来控制冲击过程中的机械行为和拉伸试验。已经观察到,在破碎的夏比样本中通常观察到的分层的类型和程度通常被认为更依赖于微结构中的第二阶段的第二阶段的条带,被发现由晶体纹理控制,大多数聚类为{初级和二次切割平面中的100}颗粒。

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