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首页> 外文期刊>Journal of Materials Research and Technology >Microstructural evolution and mechanical properties of refill friction stir spot welded alclad 2A12-T4 aluminum alloy
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Microstructural evolution and mechanical properties of refill friction stir spot welded alclad 2A12-T4 aluminum alloy

机译:填充摩擦搅拌点焊Alclad 2A12-T4铝合金的组织演变和力学性能

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Refill friction stir spot welding (RFSSW) was applied to join the 2A12-T4 aluminum alloy successfully, and effects of the tool rotational speed on weld formation, microstructure evolution and mechanical properties of the RFSSW joint were investigated in detail. There existed macrostructure characteristics of bonding ligament and hook associated to the plasticized metal flow in the joint. The microstructure of the joint exhibited variations in the grain size, precipitates distribution and substructure in the width direction. A softened region existed in all the RFSSW joints and its formation could be attributed to the coarsening and dissolution of the S precipitates. Liquation cracks associated to the localized melting of S were observed in the stir zone of the joint produced at the highest rotational speed. The tensile-shear properties of the RFSSW joints were dependent on the hook geometry, distribution of the bonding ligament and hardness of the stir zone. With increasing the rotational speed from 900 to 1300mm, the hook height increased, the bonding ligament at the weld periphery got more dispersed and the hardness of the stir zone decreased. The optimized RFSSW joint was obtained when the rotational speed was 1300rpm, and the corresponding tensile-shear failure load was 10,030N. Two different fracture modes, i.e. the shear fracture mode and shear-plug fracture mode, were identified in the tensile-shear tests.
机译:成功地将可再填充摩擦搅拌点焊(RFSSW)应用于2A12-T4铝合金,并详细研究了刀具转速对RFSSW接头的焊缝形成,组织演变和力学性能的影响。结合韧带和钩存在宏观结构特征,与接头中的塑化金属流有关。接头的微观结构在宽度方向上表现出晶粒尺寸,析出物分布和子结构的变化。在所有RFSSW接头中均存在软化区域,其形成可能归因于S沉淀的粗化和溶解。在以最高转速产生的接头的搅拌区中观察到与S的局部熔化相关的液化裂纹。 RFSSW接头的拉伸剪切性能取决于弯钩的几何形状,粘结韧带的分布以及搅拌区的硬度。随着转速从900mm增加到1300mm,弯钩高度增加,焊缝周围的粘结韧带更加分散,搅拌区的硬度降低。当转速为1300rpm时,获得了优化的RFSSW接头,相应的拉伸剪切破坏载荷为10030N。在拉伸剪切试验中确定了两种不同的断裂模式,即剪切断裂模式和剪切塞断裂模式。

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