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Microstructure and properties of underwater laser welding of TC4 titanium alloy

机译:TC4钛合金水下激光焊接的组织与性能

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Underwater local dry laser welding of TC4 alloy was carried out through a double-side gas-shielding nozzle, and the heat input and defocus distance were optimized by analysing the weld quality. With increasing heat input, the fusion zone (FZ) and heat-affected zone (HAZ) expanded, while the amount of vapour increased, resulting in an increase in the degree of oxidization of the underwater joint; the mechanical properties improved initially and subsequently deteriorated, influenced by bead oxidization and welding defects. With increasing defocus distance, the width of the FZ increased gradually, whilst the width of the HAZ remained largely unchanged. Excellent tensile strength and impact toughness were obtained when the laser beam was focused on the upper surface. In the FZ of the underwater laser welding (ULW) joint, the microstructure comprised full martensite alpha' with an acicular morphology, whereas a small amount of grain boundary alpha-phase appeared in the FZ of the in-air joint, and the thickness of the alpha' lamellae decreased compared to that of the inair joint due to the higher cooling rate of the ULW joint. The impact toughness and tensile strength of the underwater joint reached 90% of the values for the in-air joint, and a mixed fracture mode was operative in the fracture surfaces.
机译:通过双面气体屏蔽喷嘴进行TC4合金的水下局部干激光焊接,通过分析焊接质量来优化热输入和散焦距离。随着热输入的增加,融合区(FZ)和热影响区(HAZ)膨胀,而蒸汽量增加,导致水下接头的氧化程度增加;机械性能最初改善并随后劣化,受珠氧化和焊接缺陷的影响。随着散焦距离的增加,FZ的宽度逐渐增加,同时HAZ的宽度远大不变。当激光束聚焦在上表面上时,获得了优异的拉伸强度和冲击韧性。在水下激光焊接(ULW)关节的FZ中,微观结构包括针状形态的全马氏体α',而在空内接头的FZ中出现少量的晶界α相,以及厚度由于ULW关节的较高冷却速率,α'Lamellae与Inair接头的较高相比减小。水下接头的冲击韧性和拉伸强度达到空气接头值的90%,并且在裂缝表面中均匀地进行混合裂缝模式。

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