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Effect of Ultrasonic Impact Treatment on the Residual Stress Distribution of Electron Beam Welded TA15/BTi-6431S Dissimilar Titanium Alloys

机译:超声冲击处理对电子束焊接TA15 / BTi-6431S异种钛合金残余应力分布的影响

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摘要

Ti-6.5Al-2Zr-1Mo-1V (TA15) and Ti-6.5Al-3Sn-3Zr-3Mo-3Nb-1W-0.2Si (BTi-6431S) dissimilar titanium alloy plates were welded through electron beam welding (EBW) method and different ultrasonic impact treatment (UIT) technologies were performed on the weldment. The effects of UIT on the microstructure and residual stress distribution and mechanical properties for the welding joint were investigated. A significant microstructural change occurs after welding. The structure of welding joint is composed of fusion zone (FZ), heat-affected zone (HAZ) and base metal. The microstructure of FZ is composed of martensite structure and a clear interface is observed because of the fusion of dissimilar alloys. HAZ near fusion zone is comprised of martensite structure, while the grain size is much smaller than that in FZ. The HAZ microstructure near TA15 alloy is composed of coarse equiaxed α phases and HAZ microstructure near BTi-6431S alloy is lamellar α phases. Through ultrasonic impact treatment for three times, the residual stress near the welding joint shows a uniform distribution and the maximum tensile stress changes to compressive stress. A characteristic asymmetrical microhardness profile is observed in TA15/BTi-6431S dissimilar alloy welded joint. The HAZ in BTi-6431S alloy side possesses higher hardness compared with that in TA15 alloy side. The microhardness and tensile properties change slightly after ultrasonic impact treatment.
机译:通过电子束焊(EBW)焊接Ti-6.5Al-2Zr-1Mo-1V(TA15)和Ti-6.5Al-3Sn-3Zr-3Mo-3Nb-1W-0.2Si(BTi-6431S)异种钛合金板在焊件上采用了不同的超声冲击处理(UIT)技术。研究了UIT对焊接接头的组织,残余应力分布和力学性能的影响。焊接后发生明显的微观结构变化。焊接接头的结构由熔合区(FZ),热影响区(HAZ)和母材组成。 FZ的显微组织由马氏体结构组成,由于异种合金的融合,观察到清晰的界面。熔合区附近的热影响区由马氏体结构组成,而晶粒尺寸远小于熔融区。 TA15合金附近的HAZ显微组织由粗的等轴α相组成,而BTi-6431S合金附近的HAZ显微组织为层状α相。经过三次超声波冲击处理,焊缝附近的残余应力呈现均匀分布,最大拉应力变为压应力。在TA15 / BTi-6431S异种合金焊接接头中观察到特征性的不对称显微硬度分布。与TA15合金相比,BTi-6431S合金一侧的热影响区具有更高的硬度。超声冲击处理后,显微硬度和拉伸性能略有变化。

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