首页> 外文期刊>Proceedings of the institution of mechanical engineers >Microstructure, mechanical properties and residual stress distribution in pulsed tungsten inert gas welding of Ti-5Al-2.5Sn alloy
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Microstructure, mechanical properties and residual stress distribution in pulsed tungsten inert gas welding of Ti-5Al-2.5Sn alloy

机译:Ti-5Al-2.5Sn合金脉冲钨极惰性气体保护焊的组织,力学性能和残余应力分布

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Pulsed tungsten inert gas welding with full penetration was performed on 1.6 mm thick Ti-5Al-2.5Sn alloy sheet. Hole-drill strain measurement method was employed to measure the distribution of residual stresses across the weld line. Tensile tests were performed on the specimens sectioned in transverse direction of the welded sample. The evolved microstructure in the welded zone was investigated by metallography and X-ray diffraction. Transverse residual stresses of tensile nature were present at different depths below the surface and decreased the yield strength and ultimate tensile strength. However, this decrease was not dependent on the maximum value of transverse residual stress. Fracture location was found to be dependent on the micro-hardness profile and fracture took place in base metal where micro-hardness was the lowest. Furthermore, the presence of tensile residual stresses in the welded sample had no influence on the fractured surface morphology. Peak current and background current had a significant influence on the fusion zone width, heat-affected zone width, and fusion zone grain size.
机译:在1.6毫米厚的Ti-5Al-2.5Sn合金薄板上进行了全熔透脉冲钨极惰性气体保护焊。钻孔应变测量方法用于测量焊接线上的残余应力分布。在沿焊接样品的横向方向剖切的样品上进行拉伸试验。通过金相学和X射线衍射研究了焊接区的组织演变。拉伸性质的横向残余应力出现在表面以下的不同深度,从而降低了屈服强度和极限拉伸强度。但是,这种减少并不取决于横向残余应力的最大值。发现断裂位置取决于显微硬度分布,并且断裂发生在显微硬度最低的母材中。此外,焊接样品中拉伸残余应力的存在对断裂的表面形态没有影响。峰值电流和背景电流对熔合区宽度,热影响区宽度和熔合区晶粒尺寸有重大影响。

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