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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Optimization of process parameters on surface integrity in wire electrical discharge machining of tungsten tool YG15
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Optimization of process parameters on surface integrity in wire electrical discharge machining of tungsten tool YG15

机译:钨丝刀具YG15电火花加工中表面完整性的工艺参数优化

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This study mainly investigates the effect and optimization of process parameters on surface integrity including white layer thickness and crack density in wire electrical discharge machining (WEDM) of tungsten tool YG15 which is one of the most important hardened stainless steel alloys used in the mold industries. In this paper, four input process parameters including pulse-on time, pulse current, water pressure, and feed rate were set during WEDM experiment, and three output characteristics including surface roughness (SR), white layer thickness (WLT), and surface crack density (SCD) were taken as the performance criteria of surface integrity. Then an experiment for central composite design (CCD) of processing the tungsten tool YG15 has been conducted according to response surface methodology (RSM). After analyzing the experimental results and optimizing the WEDM process using two different methods namely backpropagation neural network combined with genetic algorithm (BPNN-GA) and Non-dominated Sorting Genetic Algorithm-II (NSGA-II), the optimal solution can be obtained. The analysis results manifest that the pulse-on time and pulse current have a significant effect on the SR, WLT, and SCD. Moreover, several confirmation tests were carried out to verify the efficiency of the optimization methods, and then the more appropriate method was demonstrated by the comparison of optimization results. According to analysis and discussion of results, the most suitable process parameter combinations can be obtained to guide the actual machine, which contribute to increase the surface integrity and accuracy of WEDM and simultaneously reduce the ratio of disqualification for industrial application.
机译:这项研究主要研究工艺参数对钨模具YG15的电火花加工(WEDM)中表面完整性(包括白层厚度和裂纹密度)的影响和优化,钨模具是模具行业中最重要的硬化不锈钢合金之一。本文在WEDM实验中设置了四个输入工艺参数,包括脉冲接通时间,脉冲电流,水压和进给速率,并设置了三个输出特性,包括表面粗糙度(SR),白层厚度(WLT)和表面裂纹密度(SCD)作为表面完整性的性能标准。然后根据响应面方法(RSM)进行了加工钨刀具YG15的中央复合设计(CCD)实验。通过对实验结果进行分析,并采用反向传播神经网络结合遗传算法(BPNN-GA)和非支配排序遗传算法-II(NSGA-II)两种方法,优化了电火花线切割工艺,得到了最优解。分析结果表明,脉冲接通时间和脉冲电流对SR,WLT和SCD都有显着影响。此外,还进行了多次确认测试以验证优化方法的有效性,然后通过比较优化结果来证明更合适的方法。根据对结果的分析和讨论,可以获得最合适的工艺参数组合来指导实际的机器,这有助于提高WEDM的表面完整性和精度,同时减少不合格率,从而降低了工业应用的资格。

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