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Optimization of pulsed GTAW process parameters to obtain maximum tensile strength in AA7075-T6 Aluminium alloy

机译:脉冲GTAW工艺参数的优化,以AA7075-T6铝合金获得最大拉伸强度

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摘要

The mathematical model is developed to predict pulsed gas tungsten are welded (GTAW) joints of AA 7075-T6 aluminium alloy. The mathematical model is developed by incorporating the process parameters like peak current, base current, welding speed, and pulse on time. All the experiments were conducted on the basis of four factors, four levels Composite Design Matrix. In this study an attempt is made to develop mathematical model by preplacing the filler wire in to the weld groove. The optimized GTAW process parameters illustrate that improvement in the tensile properties of welded joints. A mathematical model were developed at 95% confidence level and tested for adequacy. The developed model can be used in industry for predicting tensile strength of AA 7075-T6 aluminium alloy joints. The results shows that welding speed greatest influence on tensile strength subsequently with peak current, pulse on time, and base current when filler wire placed in to the weld groove before starting the welding.
机译:显影数学模型以预测脉冲气体钨焊接(GTAW)接头AA 7075-T6铝合金。通过将过程参数结合在一起,通过将处理参数更换为峰值电流,基极电流,焊接速度和脉冲来开发数学模型。所有实验都是在四个因素的基础上进行的,四个层次的复合设计矩阵进行。在该研究中,尝试通过将填充物线预先填充到焊接槽来开发数学模型。优化的GTAW工艺参数说明了焊接接头的拉伸性能的改进。数学模型以95%的置信水平开发并进行了充分性。开发的模型可用于工业,以预测AA 7075-T6铝合金接头的拉伸强度。结果表明,当在启动焊接之前,焊接速度随后在随后用峰值电流,脉冲脉冲,脉冲和基准电流的焊接速度最大。

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