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On the microstructure and mechanical properties of similar and dissimilar AA7075 and AA2024 friction stir welding joints: Effect of rotational speed

机译:关于相似和相异的AA7075和AA2024摩擦搅拌焊接接头的组织和力学性能:转速的影响

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The similar and dissimilar aluminum alloys (5 mm thick AA7075-T651 and AA2024-T351) joints were performed by friction stir welding to assess the influence of rotational speed (600, 950, 1300 and 1650 rpm) on the microstructure features, materials flow and mechanical properties of the joints. The results indicated that the width of the thermos-mechanically affected zone (TMAZ) on the retreating side (RS) is greater than that of the advancing side (AS). Increasing the rotational speed results in widening the TMAZ on the AS and RS. The mixing degree in the joints is remarkably affected by the rotational speed. Low rotational speed leads to a limited materials mixing, while the typical onion ring of mixing pattern can be acquired at the high rotational speed. Compared to the base materials, significant grain refinement (average grain size: 1.7 mu m) occurs in all the joints at a rotational speed of 600 rpm. Increasing the rotational speed is prone to result in grain coarsening. The crystallographic texture in the nugget zone of all the joints is dominated by a simple shear texture and varies with the rotational speed. The hardness values of all the joints almost increase and then decrease from the top to the bottom along the welding center thickness direction. The tensile fracture locations coincide with that of minimum hardness values in all the joints at various rotational speeds.
机译:通过搅拌摩擦焊接进行相似和不相似的铝合金(5毫米厚的AA7075-T651和AA2024-T351)接头,以评估转速(600、950、1300和1650 rpm)对显微组织特征,材料流动和关节的机械性能。结果表明,撤退侧(RS)的热力学机械影响区(TMAZ)的宽度大于前进侧(AS)的宽度。增加转速会导致AS和RS上的TMAZ变宽。关节中的混合程度受转速显着影响。低转速导致有限的材料混合,而在高转速下可以获得典型的混合模式洋葱圈。与基础材料相比,所有接头在600 rpm的转速下均具有明显的晶粒细化(平均晶粒尺寸:1.7微米)。旋转速度的增加容易导致晶粒粗化。所有接头的熔核区中的晶体织构以简单的剪切织构为主,并随转速变化。所有接头的硬度值沿焊接中心厚度方向从上到下几乎增加然后减小。在各种转速下,所有接头的拉伸断裂位置与最小硬度值一致。

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