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Kerf Profile Modelling in Abrasive Waterjet Milling

机译:磨料水射流铣削中的Kerf轮廓建模

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The Abrasive Water Jet milling process is demonstrated to be an efficient technology for milling low machinability materials. Although its capability is demonstrated, the industrial application of this technology requires a depth control, for which a work focused in process modelling is needed. This research work introduces a model to predict the kerf shape in AWJ slot milling in Aluminium 7075-T651 in terms of four important process parameters: pressure, abrasive mass flow rate, stand-off distance and traverse feed rate. A hybrid evolutionary approach was employed for modelling the profile through two parameters: the maximum cutting depth and the full width at half maximum. Both the maximum depth and the width were also modelled as a function of aforementioned process parameters based on Analysis of Variance and regression techniques. Combination of two models resulted in an adequate strategy to predict the kerf shape for different machining conditions.
机译:事实证明,磨料水射流研磨工艺是研磨低切削性材料的有效技术。尽管已证明其功能,但是该技术的工业应用需要深度控制,为此需要专注于过程建模的工作。这项研究工作引入了一个模型,该模型可以根据四个重要的工艺参数来预测铝7075-T651的AWJ槽铣中的切缝形状:压力,磨料质量流速,支座距离和横向进给速度。采用混合进化方法通过两个参数对轮廓进行建模:最大切削深度和半高全宽。基于方差分析和回归技术,最大深度和宽度都根据上述工艺参数进行建模。两种模型的结合产生了一种适当的策略来预测不同加工条件下的切缝形状。

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