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首页> 外文期刊>Journal of Materials Engineering and Performance >Experimental Investigations to Study the Effects of Microwave Treatment Strategy on Tool Performance in Turning Operation
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Experimental Investigations to Study the Effects of Microwave Treatment Strategy on Tool Performance in Turning Operation

机译:实验研究,研究微波处理策略对转动操作工具性能的影响

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摘要

In the present study, microwave treatment has been used to enhance the tribological properties of single-point tungsten carbide (WC) cutting tool inserts such as wear resistance and hardness. The tool hardness and cutting parameters were considered to evaluate the performance of microwave-treated WC inserts in turning operation. The optimum cutting parameters were identified using response surface method (RSM)-based desirability approach. The relationship between cutting parameters and output responses, viz. flank wear, cutting force and surface roughness, was developed using the RSM. The investigations revealed that the increase in tool hardness due to complex carbide formation results in a significant reduction in tool wear, cutting forces and improvement in the surface finish of workpiece. Further, the statistical models results were validated with the experimental results. Metallurgical properties of treated and untreated tool inserts were analyzed using scanning electron microscope, x-ray diffraction method and Vickers microhardness tests. The results highlighted the importance of microwave treatment in enhancing the machining performance in turning operation.
机译:在本研究中,微波处理已用于增强单点碳化钨(WC)切削工具插入件(例如耐磨性和硬度)的摩擦学特性。考虑工具硬度和切割参数来评估微波处理的WC插入件在转动操作中的性能。使用响应面法(RSM)的可期望方法来识别最佳切削参数。切割参数与输出响应的关系,viz。使用RSM开发侧面磨损,切割力和表面粗糙度。该研究表明,由于复杂的碳化物形成,刀具硬度的增加导致工具磨损,切割力和工件表面光洁度的改进的显着降低。此外,统计模型结果验证了实验结果。使用扫描电子显微镜,X射线衍射法和维氏微硬度试验分析处理和未处理的工具插入物的冶金性能。结果强调了微波处理在改善转动操作时的加工性能方面的重要性。

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