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Investigation of microstructure and mechanical properties of titanium alloy sheet using low power Nd-YAG laser welding process

机译:低功率Nd-YAG激光焊接工艺对钛合金板微观结构和力学性能研究

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In the present investigation, welding of 1 mm thick Ti-6A1-4V sheet has been done by Pulsed Wave (PW) Nd-YAG laser with a variation of laser power from 100 to 400 W and welding speed from 4 to 6 mm s(-1). The microstructure and microhardness of the fusion zone indicate that the finely serrated and regular plate-shaped microstructures and the resultant hardness in the welds are the key factors behind the enhanced tensile strength of all joints. The weld bead size increases with decreasing welding speed and vice versa. The hardness increases around the heat affected zone as compared to that of the parent metal, and it is the maximum at the centre of the welded region. In the investigation, the tensile strength of specimen with different process parameters has been found to be approximately equal to the tensile strength of the parent metal. In XRD analysis, the weld zone has been found to consist of 78 % alpha and 22 beta peaks where two beta-titanium peaks (bcc) 100 occur at 39.5110(degrees) and 56.9120(degrees).
机译:在本发明的研究中,通过脉冲波(PW)Nd-YAG激光器来焊接1mm厚的Ti-6a1-4V片材,其激光功率从100到400W的变化和4至6mm S的焊接速度( -1)。融合区的微观结构和显微压表明,焊缝中的细纹和常规板状微观结构和所得硬度是所有关节的增强拉伸强度背后的关键因素。焊珠尺寸随着焊接速度的降低而增加,反之亦然。与母金属的相比,硬度随着热影响区域周围增加,并且它是焊接区域的中心的最大值。在调查中,已经发现具有不同工艺参数的样品的拉伸强度大致等于母金属的拉伸强度。在XRD分析中,已发现焊接区由78%α和22β峰组成,其中两个β-钛峰(BCC)100发生在39.5110(度)和56.9120(度)。

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