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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Effect of process parameter on the kerf geometry in abrasive water jet milling
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Effect of process parameter on the kerf geometry in abrasive water jet milling

机译:工艺参数对磨料水射流铣削切缝几何形状的影响

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摘要

This research work introduces a model to predict the kerf profile in abrasive water jet slot milling in aluminium 7075-T651. The experimentation allowed modelling the maximum cutting depth and the width at the half of maximum depth in terms of four process parameters: pressure, abrasive mass flow rate, stand-off distance, and traverse feed rate. It is shown that the introduction of the maximum depth and the width at the half of maximum depth in a Gaussian function is suitable to describe the kerf profile. The definition of an equivalent traverse feed rate at every instant along the jet trajectory introduces the effect of the jet acceleration in the model. Thus, the model is capable of predicting the kerf profile at constant traverse feed rate and at variable traverse feed rate due to direction changing trajectories. The variations of cutting depth along a slot are also studied in order to avoid the cutting parameters combinations which lead to low repetitiveness conditions and then irregular milling surfaces.
机译:这项研究工作引入了一种模型来预测铝7075-T651的磨料水射流槽铣时的切缝轮廓。实验允许根据四个工艺参数对最大切削深度和最大深度一半的宽度进行建模:压力,磨料质量流速,支座距离和横向进给速度。结果表明,在高斯函数中引入最大深度和最大深度一半处的宽度适用于描述切口轮廓。沿射流轨迹的每个瞬间的等效横移进给速度的定义在模型中引入了射流加速度的影响。因此,该模型能够以恒定的横向进给速率和由于方向改变轨迹而以可变的横向进给速率来预测切口轮廓。为了避免切削参数的组合导致低重复性条件,进而导致不规则的铣削表面,还研究了沿槽的切削深度的变化。

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