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Optimization of material removal rate in ultrasonic machining of polycarbonate bulletproof glass and acrylic heat-resistant glass by Taguchi method

机译:田口法在聚碳酸酯防弹玻璃和丙烯酸耐热玻璃超声加工中材料去除率的优化

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Purpose - The purpose of this paper, an original research paper, is to study the optimization of material removal rate (MRR) in ultrasonic machining of polycarbonate bulletproof glass and acrylic heat-resistant glass. The machining of these materials is a very tough job. There are so many constraints which need to be taken into account while machining, but without proper knowledge of material properties and machining parameters, machining is not possible. This paper gives basic knowledge about polycarbonate bulletproof and acrylic heat-resistant glass and provides ways as to how these types of materials are processed or machined. Design/methodology/approach - The Taguchi method was utilized to optimize the ultrasonic machining parameters for drilling these advanced materials. The relationship between MRR and other controllable process parameters such as concentration of slurry, type of abrasive, abrasive grit size, power rating, concentration of HF acid and type of tool material has been analyzed by using the Taguchi approach. Findings - Through the Taguchi analysis, it is concluded that types of abrasive and HF acid concentrations have a significant role to play in MRR for both materials; in which, type of abrasive have 72.91 and 72.96 percent contribution in MRR for polycarbonate bulletproof and acrylic heat-resistant glass, respectively. Similarly, HF acid concentration has 14.70 and 14.65 percent contribution in MRR for polycarbonate bulletproof and acrylic heat-resistant glass, respectively. The MRR was improved by 34.44 percent in polycarbonate bulletproof glass and 29.25 percent in acrylic heat-resistant glass. Originality/value - After experimental investigation, the results of the Taguchi modal are validated.
机译:目的-本文的目的是研究聚碳酸酯防弹玻璃和丙烯酸耐热玻璃的超声波加工中的材料去除率(MRR)的优化。这些材料的机加工是一项艰巨的工作。加工时有很多限制需要考虑,但是如果没有适当的材料特性和加工参数知识,就无法进行加工。本文提供了有关聚碳酸酯防弹和丙烯酸耐热玻璃的基本知识,并提供了有关如何处理或加工这些类型的材料的方法。设计/方法/方法-使用Taguchi方法优化用于加工这些高级材料的超声加工参数。使用Taguchi方法分析了MRR与其他可控制的工艺参数之间的关系,例如浆料浓度,磨料类型,磨料粒度,功率额定值,HF酸浓度和工具材料类型。研究结果-通过田口分析,得出的结论是,两种材料的研磨剂和HF酸浓度的类型在MRR中都起着重要作用。其中,磨料类型对聚碳酸酯防弹玻璃和丙烯酸耐热玻璃的MRR分别贡献72.91%和72.96%。同样,对于聚碳酸酯防弹玻璃和丙烯酸耐热玻璃,HF酸浓度对MRR的贡献分别为14.70%和14.65%。聚碳酸酯防弹玻璃的MRR提高了34.44%,丙烯酸耐热玻璃的MRR提高了29.25%。原创性/价值-经过实验研究,田口模态的结果得到了验证。

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