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Multi-pass friction stir welding in alloy 7050-T7451: Effects on weld response variables and on weld properties

机译:7050-T7451合金中的多道次摩擦搅拌焊接:对焊接响应变量和焊接性能的影响

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摘要

In some situations it may be necessary or desirable to perform a friction stir weld pass through material, which has already been friction stir welded. Examples include weld repair or crossing weld beads. In either case, one would like to know whether the control parameters used for welding require modification for passes through existing welded material and what is the effect of the multiple passes on the weld properties. To examine this issue, multiple weld passes (five) were performed in 6.4 mm thick 7050-T7451 plate at a tool rotation speed of 540 rpm and a welding speed of 6.77 mms~(-1). Results indicate that for this material and these conditions weld control parameters require no adjustment. The overall reduction from pass 1 to 5 in transverse tensile strength is 7%. In addition, weld metallurgy is only slightly changed in the heat affected zone (HAZ) due to overaging for each weld pass while there is no change in metallurgy in the nugget. Hardness in the HAZ reduces by 14 Vicker's hardness points from pass 1 to 5. The peak longitudinal residual stress is reduced with increasing number of passes.
机译:在某些情况下,可能需要或希望对已进行摩擦搅拌焊接的材料进行搅拌摩擦焊接。示例包括焊缝修复或交叉焊缝。无论哪种情况,都想知道用于焊接的控制参数是否需要修改通过现有焊接材料的焊道,以及多次焊道对焊接性能的影响是什么。为了解决这个问题,在6.4 mm厚的7050-T7451板上以540 rpm的工具转速和6.77 mms〜(-1)的速度进行了多次焊接(五次)。结果表明,对于这种材料和这些条件,无需调整焊接控制参数。从第1道次减至第5道的横向抗拉强度总体降低了7%。此外,由于每次焊接道次的过时效,在热影响区(HAZ)中的焊接冶金仅略有变化,而熔核中的冶金没有变化。从第1遍到第5遍,HAZ中的硬度降低了14个维氏硬度点。随着通过次数的增加,峰值纵向残余应力减小。

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