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CFD Modeling and Optimization of Magneto-rheological Abrasive Flow Finishing (MRAFF) Process

机译:磁流变磨料流精加工(MRAFF)过程的CFD建模和优化

摘要

A modern nano finishing technique called magnetorheological abrasive flow finishing (MRAFF), which is simply a combined hybrid form of abrasive flow machining (AFM) process and magnetorheological finishing (MRF) process, has been designed for micro finishing of parts even with difficult geometry for a broad range of industrial purposes. In the present work, a model for the prediction of removal of material and surface roughness has been estimated. An effort has been made to study the flow passing through the stainless steel workpiece by CFD modeling in ANSYS 15.0 FLUENT. By assuming the medium as Bingham plastic various parameters affecting the surface roughness has been calculated. Also a theoretical calculation is made for the model if no magnetic field is applied and then comparative study of the two models is proposed. An optimization of the process has also been carried out. With the help of SN Ratio plot and Means plot optimized value of input parameters has been found out to achieve better surface finish.
机译:一种现代的纳米加工技术,称为磁流变磨料流动精加工(MRAFF),它是磨料流加工(AFM)工艺和磁流变精加工(MRF)工艺的简单组合形式,旨在对零件进行微精加工,即使其几何形状较困难。广泛的工业用途。在目前的工作中,已经估计出用于预测材料去除和表面粗糙度的模型。已经在ANSYS 15.0 FLUENT中通过CFD建模研究了流经不锈钢工件的流量。通过假设介质为Bingham塑料,已经计算出影响表面粗糙度的各种参数。如果没有施加磁场,则对该模型进行理论计算,然后对这两个模型进行比较研究。还对过程进行了优化。借助SN比图和均值图,已找到输入参数的最佳值,以获得更好的表面光洁度。

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