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首页> 外文期刊>Materials Science and Engineering >Effect of β-Mg_(17)Al_(12) phase on microstructure, texture and mechanical properties of AZ91 alloy processed by asymmetric hot rolling
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Effect of β-Mg_(17)Al_(12) phase on microstructure, texture and mechanical properties of AZ91 alloy processed by asymmetric hot rolling

机译:β-Mg_(17)Al_(12)相对非对称热轧AZ91合金组织,织构和力学性能的影响

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摘要

In this research, the microstructure, texture, and mechanical properties of AZ91 magnesium alloy during asymmetric hot rolling were investigated. Optical microscopy (OM), scanning electron microscopy (SEM) equipped with energy dispersive spectroscopy (EDS), X-ray diffraction (XRD), hardness, and tensile tests were used. The results showed that the coarse and continuous beta-Mg17Al12 phase strongly affected on twinning and basal texture. The beta phase suppressed the nucleation of extension twins. There was a strong [0001]parallel to RD texture with the intensity of 5.1 (sic) R in the as-cast AZ91 sample. With increasing the rolling reduction, the overall texture intensity decreased. This was due to the presence of both continuous beta phase along the grain boundaries and initial [0001]parallel to RD texture in the as-cast AZ91 alloy. In addition, there was a texture transition from [0001]parallel to RD to [10 (1) over bar0]parallel to RD and [11 (2) over bar0]parallel to RD during 15% thickness reduction. With increasing the strain, the average grain size increased owing to the dissolution of the beta phase in the matrix during the pre-heat treatment before rolling and also the occurrence of no recrystallization during hot rolling. It was found that the as-cast and 15% hot-rolled samples have the highest homogeneity and the 8% hot-rolled sample has the maximum inhomogeneity factor (20.87). The hardness and tensile tests indicated that with increasing the deformation, owing to the strengthening of {0002} basal texture and increasing the fraction of twins, the strength increased and the ductility decreased. Due to the weak bond between the beta phase and matrix, the micro-crack started from the alpha/beta interfaces and extended. The fracture mode of all samples was the mixture of brittle and ductile. However, with increasing the rolling reduction, the fraction of brittle fracture increased due to the accumulation of twins during deformation.
机译:在这项研究中,研究了AZ91镁合金不对称热轧过程中的组织,织构和力学性能。使用配备有能量色散光谱法(EDS)的光学显微镜(OM),扫描电子显微镜(SEM),X射线衍射(XRD),硬度和拉伸试验。结果表明,粗大且连续的β-Mg17Al12相对孪晶和基底织构影响很大。 β相抑制了孪生双胞胎的成核。在铸态AZ91样品中,平行于RD织构的强度为[0001] R,强度为[0001]强。随着轧制压下量的增加,总体织构强度降低。这是由于在铸态的AZ91合金中同时存在沿晶界的连续β相和平行于RD织构的初始[0001]。另外,在减少15%的厚度期间,从平行于RD的[0001]到平行于RD的bar0上的[10(1)和平行于RD的bar0]上的[11(2))发生了纹理过渡。随着应变的增加,由于β相在轧制前的预热处理过程中在基体中的溶解以及在热轧过程中没有再结晶的发生,平均晶粒尺寸也增加了。发现铸态和15%的热轧样品具有最高的均匀性,而8%的热轧样品具有最大的不均匀性因子(20.87)。硬度和拉伸试验表明,随着变形的增加,由于{0002}的基础织构的增强和孪晶含量的增加,强度增加,塑性降低。由于β相和基质之间的键很弱,微裂纹从α/β界面开始并扩展。所有样品的断裂模式是脆性和延性的混合物。然而,随着轧制压下率的增加,由于变形过程中孪晶的积累,脆性断裂的分数增加。

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