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Study on YAG Laser Welding Process of Fe-Mn-Si Shape Memory Alloy

机译:Fe-Mn-Si形状记忆合金的YAG激光焊接过程研究

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In this study, 1 mm thick Fe-Mn-Si shape memory alloy was welded by both sides using YAG laser welding. In a certain range of parameters, the optimal processing parameters for the maximum tensile strength are current 100 A, pulse frequency 3 Hz and pulse width 15 ms by orthogonal experiment. With the optimal processing parameters, the tensile strength of the welded joint can achieve 94% of base material, and the fracture appears in the center of welding seam and the surface morphology of welding seam is good. The influence of processing parameters on tensile strength of weld joint is directly embodied in cross-section of the welding seam morphology. In the laser welding, the tensile strength of nonpenetration in seam and hourglass shape welded joint is generally poor, and the perfect welded joint has conditions such as wide welding seam, deep penetration, weld pool filling and "non-hollow". Most importantly, the central area in cross-section of the welding seam is the widest.
机译:在该研究中,使用YAG激光焊接通过两侧焊接1mm厚的Fe-Mn-Si形状记忆合金。 在一定范围的参数中,最大拉伸强度的最佳处理参数是通过正交实验的电流100a,脉冲频率3 Hz和脉冲宽度15ms。 利用最佳加工参数,焊接接头的拉伸强度可以实现94%的基础材料,并且裂缝出现在焊缝中心,焊缝的表面形态良好。 加工参数对焊接接头拉伸强度的影响直接实施在焊缝形态的横截面中。 在激光焊接中,接缝和沙漏形状焊接接头中的非刻度的拉伸强度通常差,完美的焊接接头具有宽焊缝,深渗透,焊接池填充和“非空洞”等条件。 最重要的是,焊缝的横截面中的中心区域是最宽的。

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