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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Influence of Welding Temperature on Material Flow During Friction Stir Welding of AZ31 Magnesium Alloy
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Influence of Welding Temperature on Material Flow During Friction Stir Welding of AZ31 Magnesium Alloy

机译:AZ31镁合金摩擦搅拌焊接焊接温度对材料流动的影响

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In this work, the effect of welding temperature on material flow during friction stir welding (FSW) of AZ31 magnesium alloy was examined. To this end, FSW was conducted in the temperature range of 0.65-0.85 T-m (T-m is the melting point) and sample-scale EBSD mapping was employed to characterize texture distribution. Despite that the low-temperature welds contained macro-scale defects (which presumably affected material flow), several important observations were made. In the entire temperature range, the global material motion was shown to consist of two principal components, viz. shoulder-induced flow and probe-induced flow. In some cases, however, a synergetic effect of these two constituents resulted in transitional orientation of macro-scale shear plane thus giving rise to a transitional material flow. During low-temperature FSW, the global material transportation was dominated by the probe. However, the contribution of the shoulder and transitional components was found to increase with welding temperature. This effect was attributed to the dominant role of the shoulder in generation of FSW heat. Above similar to 0.8 T-m, however, the transitional material flow was found to abruptly disappear. This result was associated with reduction of temperature sensitivity of flow stresses and the resulting equilibration of their distribution within the stir zone. (C) The Minerals, Metals & Materials Society and ASM International 2019
机译:在这项工作中,研究了焊接温度对AZ31镁合金摩擦搅拌焊接(FSW)期间材料流动的影响。为此,在0.65-0.85 T-M(T-M是熔点)的温度范围内进行FSW,采用样品级EBSD映射来表征纹理分布。尽管低温焊缝包含宏观缺陷(可能是受影响的物质流量),但制造了几个重要的观察结果。在整个温度范围内,展示了全局材料运动,包括两个主要成分,viz。肩部诱导的流动和探针诱导的流动。然而,在某些情况下,这两个成分的协同作用导致宏观剪切平面的过渡取向,从而产生过渡材料流动。在低温fsw期间,全球材料运输由探针主导。然而,发现肩部和过渡组分的贡献随焊接温度而增加。这种效果归因于肩部在FSW热量中的主导作用。上面类似于0.8 T-m,然而,发现过渡材料流动突然消失。该结果与减少流量应力的温度敏感性以及其在搅拌区内的分布的结果平衡有关。 (c)2019年矿物质,金属和材料协会和ASM国际

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