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Theoretical modelling and analysis of the material removal characteristics in fluid jet polishing

机译:射流抛光材料去除特性的理论建模与分析

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Fluid Jet Polishing (FJP) is a kind of ultra-precision machining technology which not only becomes more widely used for removing tool marks, in order to achieve super finished surfaces while controlling the form accuracy, but also becomes more widely used in superfinishing freeform surfaces made of difficult-to-machine materials. The material removal characteristics, which are described as a tool influence function and assessed in terms of width, maximum depth and material removal rate, play an important role in simulating the surface generation accurately and manufacturing the designed surfaces deterministically in FJP. Due to the multi-factor influence and the complexity of the polishing mechanism, it is difficult to model the material removal characteristics accurately with the consideration of a lot of operational parameters in FJP. In this paper, a ductile-mode erosion model has been built to predict the volume removed by a single particle and a modified Gaussian function was used to describe the spatial distribution of abrasive particles in Fluid Jet Polishing. Hence, an Integrated Computational Fluid Dynamic (CFD)-based erosion model was established which integrates the CFD model, erosion model and experimental study to predict the material removal characteristics in FJP. A series of experiments were conducted by the a Zeeko IRP200 Ultra-precision Computer Controlled Polishing machine so as to validate the predictability of the integrated CFD-based erosion model. The experimental results show a good agreement between the model predicted results of CFD-based erosion modelling. (C) 2014 Elsevier Ltd. All rights reserved.
机译:流体喷射抛光(FJP)是一种超精密加工技术,它不仅广泛用于去除工具痕迹,以便在控制形状精度的同时获得超精加工表面,而且在超精加工自由曲面中也得到广泛应用。由难以加工的材料制成。材料去除特性被描述为一种工具影响函数,并根据宽度,最大深度和材料去除速率进行评估,在准确模拟表面生成并以FJP确定性地制造设计表面方面起着重要作用。由于多因素影响和抛光机制的复杂性,很难在FJP中考虑许多操作参数来精确地建模材料去除特性。在本文中,已经建立了韧性模式腐蚀模型来预测单个颗粒去除的体积,并使用改进的高斯函数描述流体喷射抛光中磨料颗粒的空间分布。因此,建立了基于综合计算流体动力学(CFD)的侵蚀模型,该模型将CFD模型,侵蚀模型和实验研究相结合,以预测FJP中的材料去除特性。 Zeeko IRP200超精密计算机控制抛光机进行了一系列实验,以验证基于CFD的集成腐蚀模型的可预测性。实验结果表明,基于CFD的侵蚀模型的模型预测结果之间具有良好的一致性。 (C)2014 Elsevier Ltd.保留所有权利。

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