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Investigation of the effects of machining parameters on material removal rate in abrasive waterjet turning

机译:磨削水刀车削中加工参数对材料去除率的影响研究

摘要

The effects of the main operational machining parameters on the material removal rate (MRR) in abrasive waterjet turning (AWJT) are presented in this paper using a statistical approach. The five most common machining parameters such as water pressure, abrasive mass flow rate, cutting head traverse speed, workpiece rotational speed, and depth of cut have been put into a five-level central composite rotatable experimental design (CCRD). The main effects of parameters and the interaction among them were analyzed by means of the analysis of variance (ANOVA) and the response surfaces for MRR were obtained fitting a second-order polynomial function. It has been found that depth of cut and cutting head traverse speed are the most influential parameters, whereas the rotational speed is insignificant. In addition, the investigations show that interactions between traverse speed and pressure, abrasive mass flow rate and depth of cut, and pressure and depth of cut are significant on MRR. This result advances the AWJT state of the art. A complete model discussion has been reported drawing interesting considerations on the AWJT process characterising phenomena, where parameters interactions play a fundamental role.
机译:本文采用统计方法介绍了主要的操作加工参数对磨料水射流车削(AWJT)中材料去除率(MRR)的影响。五个最常见的加工参数,例如水压,磨料质量流速,切割头移动速度,工件旋转速度和切深已放入五层中央复合可旋转实验设计(CCRD)中。通过方差分析(ANOVA)分析了参数的主要影响及其之间的相互作用,并获得了适合二阶多项式函数的MRR响应面。已经发现,切削深度和切削头的移动速度是最有影响力的参数,而转速无关紧要。此外,研究表明,横向运动速度和压力,磨料质量流速和切削深度以及切削压力和切削深度之间的相互作用对MRR具有重要意义。这一结果使AWJT的技术水平提高了。已经报道了一个完整的模型讨论,对表征现象的AWJT过程进行了有趣的考虑,其中参数交互起着基本作用。

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