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Additive Friction Stir-Enabled Solid-State Additive Manufacturing for the Repair of 7075 Aluminum Alloy

机译:适应性摩擦搅拌搅拌的固态添加剂制造用于修复7075铝合金

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摘要

The repair of high strength, high performance 7075 aluminum alloy is essential for a broad range of aerospace and defense applications. However, it is challenging to implement it using traditional fusion welding-based approaches, owing to hot cracking and void formation during solidification. Here, the use of an emerging solid-state additive manufacturing technology, additive friction stir deposition, is explored for the repair of volume damages such as through -holes and grooves in 7075 aluminum alloy. Three repair experiments have been conducted: double through-hole filling, single through-hole filling, and long, wide-groove filling. In all experiments, additive friction stir deposition proves to be effective at filling the entire volume. Additionally, sufficient mixing between the deposited material and the side wall of the feature is always observed in the upper portions of the repair. Poor mixing and inadequate repair quality have been observed in deeper portions of the filling in some scenarios. Based on these observations, the advantages and disadvantages of using additive friction stir deposition for repairing volume damages are discussed. High quality and highly flexible repairs are expected with systematic optimization work on process control and repair strategy development in the future.
机译:高强度的修复,高性能7075铝合金对于广泛的航空航天和防御应用至关重要。然而,利用传统的融合焊接方法实施它是挑战,由于凝固过程中的热开裂和空隙形成。这里,探索了新出现的固态添加剂制造技术,添加剂摩擦搅拌沉积,用于修复体积损坏,例如通过7075铝合金中的孔和凹槽。已经进行了三种修复实验:双通孔填充,单通孔填充,长,宽槽填充。在所有实验中,添加剂摩擦搅拌沉积证明是有效填充整个体积。另外,在修复的上部,始终观察到沉积材料与特征的侧壁之间的充分混合。在一些情景中,在填充的深层部分中观察到差的混合和修复质量不足。基于这些观察结果,讨论了使用添加剂摩擦搅拌沉积来修复体积损坏的优点和缺点。预计未来对过程控制和维修战略开发的系统优化工作预计高品质和高度灵活的维修。

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