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Response surface analysis of statistical features of voltage and current in a GMAW powersource on welding v-groove joints

机译:焊接v型槽接头的GMAW电源中电压和电流统计特性的响应面分析

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Past studies have suggested that welding current and voltage are signature variables that have potential information on welding quality and can be used for real-time monitoring while welding. This work explores the interaction between gas metal arc welding parameters such as stick out distance, gas flow rate and transverse speed to the mean and standard deviation of welding voltage and current. SA 516 gr.70 boiler plates with v-grooves were welded using KUKA KR robot and Fronius TPS 5000 power source. Data acquisition system with a sampling rate of 8 kHz was used to acquire current and voltage data during welding. Experimental tests were organized using central composite design. Mean and standard deviation of voltage and current are analyzed using response surface analysis. The measured voltage was confirmed previously to be an effective parameter for detecting porosity using control chart and probability density distribution. Therefore, in this research, the effects and interactions of welding parameters are statistically analyzed. Stick out distance is concluded to be the most effective factor on to the responses being investigated. A change in the gas flow rate can affect the voltage significantly but will not alter the welding current. In addition, mathematical models are developed to forecast mean and normal voltage and current deviations in real-time.
机译:过去的研究表明,焊接电流和电压是特征变量,具有有关焊接质量的潜在信息,可用于焊接时的实时监控。这项工作探索了气体金属电弧焊参数之间的相互作用,例如伸出距离,气体流速和横向速度与焊接电压和电流的均值和标准差之间的关系。使用KUKA KR机器人和Fronius TPS 5000电源焊接了带有v型槽的SA 516 gr.70锅炉板。数据采集​​系统的采样率为8 kHz,用于在焊接过程中采集电流和电压数据。使用中央复合设计组织了实验测试。使用响应面分析来分析电压和电流的均值和标准差。使用控制图和概率密度分布,先前已确认测得的电压是检测孔隙率的有效参数。因此,在这项研究中,对焊接参数的影响和相互作用进行了统计分析。得出结论,伸出距离是影响所调查响应的最有效因素。气体流量的变化会严重影响电压,但不会改变焊接电流。此外,还开发了数学模型来实时预测平均和正常电压和电流偏差。

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