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Parametric optimisation and microstructural analysis on high power Yb-fibre laser welding of Ti-6Al-4V

机译:Ti-6al-4V高功率Yb光纤激光焊接参数优化及显微组织分析

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摘要

In this work thin sheets of Ti–6Al–4V were full penetration welded using a 5 kW fibre laser in order to evaluate the effectiveness of high power fibre laser as a welding processing tool for welding Ti–6Al–4V with the requirements of the aircraft industry and to determine the effect of welding parameters including laser power, welding speed and beam focal position on the weld microstructure, bead profile and weld quality. It involved establishing an understanding of the influence of welding parameters on microstructural change, welding defects, and the characteristics of heat affected zone (HAZ) and weld metal (WM) of fibre laser welded joints. The optimum range of welding parameters which produced welds without cracking and porosity were identified. The influence of the welding parameters on the weld joint heterogeneity was characterised by conducting detailed microstructural analysis.
机译:在这项工作中,使用5 kW光纤激光器对Ti–6Al–4V薄板进行了全熔透焊接,以便评估高功率光纤激光器作为焊接工艺工具的有效性,以满足飞机的要求焊接Ti–6Al–4V的焊接工艺并确定焊接参数(包括激光功率,焊接速度和光束焦点位置)对焊接显微组织,焊缝轮廓和焊接质量的影响。它涉及建立对焊接参数对显微组织变化,焊接缺陷以及光纤激光焊接接头的热影响区(HAZ)和焊接金属(WM)特性的影响的理解。确定了产生焊缝而无裂纹和气孔的最佳焊接参数范围。通过进行详细的微观结构分析,表征了焊接参数对焊接接头异质性的影响。

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