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Investigating the effect of process parameters on the temperature field and mechanical properties in pulsed laser welding of Ti6Al4V alloy sheet using response surface methodology

机译:使用响应表面方法研究Ti6Al4V合金板脉冲激光焊接温度场和力学性能的影响

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摘要

Laser welding of Ti6Al4V alloy with 3 mm sheet thickness was studied. The effect of process parameters including laser peak power, pulse duration, and welding speed was systematically investigated on the temperature field of the fusion zone, tensile strength and elongation. The laser welding experiments were performed based on central composite design and response surface method to develop multiple regression models. The accuracy of the regression models was adequate through analysis of variance to make correlations between input parameters and responses. It was found that laser peak power and pulse duration had remarkable effects on weld tensile strength melt pool dimensions and elongation rate. Increasing the laser peak power from 1800 to 2200 W, clearly increased the tensile strength about 300 Mpa. Both the elongation rate and melt pool dimensions significantly increased with augmentation of laser peak power. Increasing welding speed from 3 to 7 mm/s decreased the temperature of the region near the fusion zone from 370 to 130 degrees C. Increasing welding speed significantly reduced the mechanical strength for 3 mm thickness about 20 percent. On the contrary, this reduction effect is negligible for the elongation rate about 10 percent due to creating high rates of martensitic structure and brittle properties of the weld.
机译:研究了Ti6Al4V合金的激光焊接,研究了3毫米厚度。在融合区的温度场上,系统地研究了包括激光峰值功率,脉冲持续时间和焊接速度的过程参数的影响,拉伸强度和伸长率。基于中央复合设计和响应面法进行激光焊接实验,以开发多元回归模型。回归模型的准确性通过分析方差分析,以在输入参数和响应之间进行相关性。发现激光峰值功率和脉冲持续时间对焊接拉伸强度熔体尺寸和伸长率具有显着影响。将激光峰值从1800升高到2200W,显然增加了约300MPa的拉伸强度。随着激光峰值功率的增强,伸长率和熔池尺寸都显着增加。将焊接速度从3〜7mm / s增加降低了融合区附近的区域温度从370至130℃。焊接速度的增加显着降低了3mm厚度约20%的机械强度。相反,由于产生高速率的马氏体结构和焊缝的脆性性能,这种减少效果可忽略约10%。

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