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Experimental analysis of piercing in titanium alloy using abrasive waterjet machine

机译:磨料水射流机钛合金刺穿的实验分析

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摘要

Abrasive Water Jet Machining (AWJM) is one of the fastest growing non-traditional machining processes, which uses highly pressurized water mixed with abrasive particles and is capable of cutting even difficult-to-cut materials. It is used in the manufacturing of components with intricate shapes and profiles. Here the experimentation is conducted on abrasive water jet (AWJ) machining of the most commonly used titanium alloy, Ti-6Al-4V. It is significantly stronger than commercially pure titanium while having the same stiffness and thermal properties The machining operations, i.e. drilling (or piercing), were conducted. For the experiments, the influences of water pressure and drilling time, mesh size and abrasive flow rate were investigated. The experiments are carried out based on Response Surface Methodology (RSM) designed using Box-Behnken method for four parameters into three levels. Using response surface graphs the significant AWJM machining parameters and their levels are identified to achieve depth of cut, hole diameter and kerf width.
机译:磨料水喷射加工(AWJM)是不断增长的非传统加工方法之一,它使用高压水与磨料颗粒混合,并且能够切割甚至难以切割的材料。它用于制造具有复杂形状和型材的组件。在这里,实验在磨料水射流(AWJ)加工上进行最常用的钛合金,Ti-6Al-4V。它比商业上纯钛明显强,同时具有相同的刚度和热性能,即加工操作,即钻孔(或穿孔)。对于实验,研究了水压和钻井时间,网格尺寸和磨料流速的影响。该实验是基于使用Box-Behnken方法设计的响应面方法(RSM)进行四个参数。使用响应表面图,识别出显着的AWJM加工参数及其级别以实现切割深度,孔径和Kerf宽度。

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