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(109951)Effect of two-step annealing on recrystallized structure and mechanical properties in AA7075/AA1100 laminated metal composites processed by accumulative roll bonding

机译:(109951)通过累积辊粘合处理的AA7075 / AA1100层叠金属复合材料中的两步退火对重结晶结构和机械性能的影响

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摘要

AA7075/AA1100 laminated metal composites (LMCs) were successfully produced by accumulative roll bonding (ARB). Also, to investigate the effect of annealing on mechanical properties and microstructure evolution, the composites were subject to annealing treatment at three different temperature (200, 300 and 400 °C) for 1 h. The microstructure evolution was evaluated by scanning electron microscopy (SEM) equipped with an energy dispersive spectroscopy (EDS) and electron back scatter diffraction (EBSD). Tensile tests were performed to measure the mechanical properties of composites. It was observed that elemental diffusion occurred in the constituent layer interfaces, indicating that superior bonding was achieved between the layers with annealing temperature increased. By increasing the annealing temperature, the presentation of a relatively strong {100} < 001 > Cube recrystallization textures has been attributed to strain-induced boundary migration (SIBM) caused by a preference for the Cube-oriented grains to grow into adjacent S-oriented grains with higher stored energy. In addition, the effect of pre-recovery on anisotropy was discussed in detail. Tensile tests revealed that the plane anisotropy after the two-step annealing (TSA) process was evidently diminished in compare with the single annealing (SSA) process due to the reduced Cube texture strength and the formation of equiaxed crystal structures.
机译:AA7075 / AA1100层叠金属复合材料(LMC)通过累积辊粘合(arb)成功生产。另外,为了研究退火对机械性能和微观结构演化的影响,复合材料在三种不同温度(200,300和400℃)下进行退火处理1小时。通过扫描配备有能量分散光谱(EDS)和电子背散射衍射(EBSD)的电子显微镜(SEM)来评估微观结构演化。进行拉伸试验以测量复合材料的机械性能。观察到,在构成层界面中发生元素扩散,表明在层之间的退火温度之间实现了优异的粘合。通过增加退火温度,相对强的{100} <001个立方体重结晶纹理的呈现归因于应变诱导的边界迁移(SIBM),由偏好导向的晶粒生长成相邻的S导向引起的储存能量较高的谷物。此外,详细讨论了预恢复对各向异性的影响。拉伸试验表明,在两步退火(TSA)过程之后的平面各向异性在与单个退火(SSA)过程相比,由于降低的立方体纹理强度和等式的晶体结构的形成而比较。

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