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磨料水射流足迹的随机简化建模。

Stochastic simplified modelling of abrasive waterjet footprints.

作者信息

Torrubia P Lozano, Billingham J, Axinte D A

机构信息

Faculty of Engineering , Department of Mechanical Materials and Manufacturing Engineering , Nottingham NG7 2RD, UK.

School of Mathematical Sciences , University of Nottingham , Nottingham NG7 2RD, UK.

出版信息

Proc Math Phys Eng Sci. 2016 Feb;472(2186):20150836. doi: 10.1098/rspa.2015.0836.

Abstract

Abrasive micro-waterjet processing is a non-conventional machining method that can be used to manufacture complex shapes in difficult-to-cut materials. Predicting the effect of the jet on the surface for a given set of machine parameters is a key element of controlling the process. However, the noise of the process is significant, making it difficult to design reliable jet-path strategies that produce good quality parts via controlled-depth milling. The process is highly unstable and has a strong random component that can affect the quality of the workpiece, especially in the case of controlled-depth milling. This study describes a method to predict the variability of the jet footprint for different jet feed speeds. A stochastic partial differential equation is used to describe the etched surface as the jet is moved over it, assuming that the erosion process can be divided into two main components: a deterministic part that corresponds to the average erosion of the jet and a stochastic part that accounts for the noise generated at different stages of the process. The model predicts the variability of the trench profiles to within less than 8%. These advances could enable abrasive micro-waterjet technology to be a suitable technology for controlled-depth milling.

摘要

磨料微水射流加工是一种非常规加工方法,可用于在难切削材料中制造复杂形状。对于给定的一组机床参数,预测射流对表面的影响是控制该加工过程的关键因素。然而,该加工过程的噪声很大,这使得设计可靠的射线路径策略变得困难,而这些策略要通过控制深度铣削来生产高质量零件。该加工过程极不稳定,具有很强的随机成分,会影响工件质量,在控制深度铣削的情况下尤其如此。本研究描述了一种预测不同射流进给速度下射流足迹变化的方法。使用一个随机偏微分方程来描述当射流在其上移动时的蚀刻表面,假设侵蚀过程可分为两个主要部分:一个确定性部分,对应于射流的平均侵蚀;一个随机部分,考虑了在加工过程不同阶段产生的噪声。该模型预测沟槽轮廓的变化在8%以内。这些进展可能使磨料微水射流技术成为适用于控制深度铣削的技术。

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本文引用的文献

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Ripple formation through an interface instability from moving growth and erosion sources.
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