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Strengthening Effect Analysis of Laser Shock Processing on Aluminum Alloy Welded Joint Process

机译:激光冲击加工对铝合金焊接接头工艺的影响分析

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High-strength aluminum alloy is one of the commonly used materials of pressure vessels. And it has the significant advantages of light-weight and cost-effective. But the strength of welded aluminum alloy greatly decreased. The welding line and heat-affected zone became high-risk area on pressure vessel. At present, it is difficult to improve the welding process, thus improving the microstructure and stress state of welded joints become the main means to improve the fatigue properties and extend the service time of aluminum pressure vessels. As a new treatment process after welding, the process parameters of laser shock processing (LSP) can be precisely controlled, and the process is non-contact. It can be adapted to deal with macro and micro scale aluminum pressure vessels, so it has broad prospects for engineering applications. Based on the introduction of principle and features of LSP welded joint process, the estimation model of laser-induced surface residual stress is analyzed. The safety lives of welded joint specimens with and without LSP are estimated by making low cycle tensile fatigue test. The effect of LSP on fatigue properties of aluminum alloy welded joint is analyzed. The fatigue fracture mechanisms of these specimens with and without LSP are studied by surface integrity and fracture surface testing. The result showed that the safety lives of these specimens with LSP are increased significantly. At the same time, Compressive residual stress and dense surface layer are induced at the surface of welded joints by LSP. After summarizing the research status about fatigue properties of aluminum alloy welded joint by LSP, the problems existing in current research of LSP welded joint process are pointed out. Finally, expectations of future studies on LSP welded joint process are brought forward.
机译:高强度铝合金是常用的压力容器材料之一。它具有轻质和成本效益的显着优点。但焊接铝合金的强度大大降低。焊接线和热影响区域变成了压力容器上的高风险区域。目前,难以改善焊接过程,从而改善焊接接头的微观结构和应力状态成为改善疲劳性能并延长铝压力容器的使用时间的主要装置。作为焊接后的新处理过程,可以精确控制激光休克处理(LSP)的过程参数,该过程是非接触的。它可以适用于处理宏观和微级铝制压力容器,因此它具有广泛的工程应用前景。基于LSP焊接接头工艺的原理和特征的引入,分析了激光诱导的表面残余应力的估计模型。通过制造低循环拉伸疲劳试验估计焊接关节标本的安全性耐用,估计。分析了LSP对铝合金焊接接头疲劳性能的影响。通过表面完整性和裂缝表面测试研究了具有和不含LSP的这些样品的疲劳断裂机制。结果表明,这些标本用LSP的安全性显着增加。同时,通过LSP在焊接接头表面诱导压缩残余应力和致密表面层。总结了LSP铝合金焊接接头疲劳性能的研究现状后,指出了LSP焊接接头工艺目前研究中存在的问题。最后,提出了对LSP焊接联合过程的未来研究的预期。

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