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Characterisation of Abrasive Water-jet Process for Pocket Milling in Inconel 718

机译:Inconel 718中用于袋磨的磨料水喷射工艺的特性

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Experiments were carried out in Inconel 718 in order to investigate the possibility of using the abrasive water-jet process for producing 3D features such as pockets. A design of experiments approach was taken, considering variables such as water pressure, nozzle stand-off distance, traverse speed, nozzle orifice diameter, abrasive mass flow rate and tool-path step over distance. The experimental variables were related todepth of cut and pocket geometry. Statistical analysis was carried out in order to develop mathematical models which include process variable interactions and quadratic terms. This led to models with high correlation and prediction power which allow a better understanding of the process and can form the base for further process optimisation. The models were validated with additional experiments and showed good agreement with the water-jet system. The results showed that water pressure has a non-linear behaviour and is of paramount importance for controlling the depth of cut and geometrical errors. Additionally, nozzle diameter and the interaction between feed rate and abrasive mass flow are critical factors affecting the depth of cut.
机译:在Inconel 718中进行了实验,以研究使用磨料水射流工艺生产3D零件(例如袋)的可能性。设计了一种实验方法,考虑了诸如水压,喷嘴支座距离,横移速度,喷嘴孔口直径,磨料质量流速和刀具路径随距离变化的变量。实验变量与切口深度和凹穴几何形状有关。为了建立包括过程变量相互作用和二次项的数学模型,进行了统计分析。这导致了具有高相关性和预测能力的模型,这些模型可以更好地了解过程,并可以为进一步优化过程奠定基础。该模型已通过其他实验验证,并与喷水系统吻合良好。结果表明,水压具有非线性行为,对于控制切深和几何误差至关重要。此外,喷嘴直径以及进给速度与磨料质量流量之间的相互作用是影响切削深度的关键因素。

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