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为了优化激光焊接FeCo-V合金拉伸强度,建立数学关系,结合工艺参数如荧光灯电流、焊接速度、脉冲时间和位置,以预测激光束焊FeCo-V薄片拉伸强度。建立程序以提高焊接强度和增大产率。结果表明,脉冲时间和焊接速度对拉伸强度影响很大,焊接接头的拉伸强度随脉冲时间的延长而增大,并在2.25 ms时达到最大。而且,接头的拉伸强度随着焊接速度的减小而增大,并在125 mm/min时达到最大。脉冲时间的延长和焊接速度的减小导致有效峰能量密度减小,因此更耐焊。在较高的脉冲时间和较低的焊接速度时,因为在熔合区形成了凝固微裂纹而使得焊接接头的拉伸强度增大。
In order to optimize the tensile strength of laser welded FeCo-V alloy, a mathematical relationship was established to predict the tensile strength of FeCo-V sheet by laser beam welding in combination with process parameters such as fluorescent lamp current, welding speed, pulse time and position. Establish procedures to increase weld strength and increase productivity. The results show that the pulse time and the welding speed greatly affect the tensile strength. The tensile strength of the welded joints increases with pulse time and reaches the maximum at 2.25 ms. Furthermore, the tensile strength of the joint increases with decreasing welding speed and reaches its maximum at 125 mm / min. The extension of the pulse time and the decrease of the welding speed lead to a decrease of the effective peak energy density and hence the resistance to welding. At higher pulse times and lower welding speeds, the tensile strength of welded joints increases due to the formation of micro-cracks in the fusion zone.