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首页> 外文期刊>International Journal of Mechanical Sciences >A novel media properties-based material removal rate model for magnetic field-assisted finishing
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A novel media properties-based material removal rate model for magnetic field-assisted finishing

机译:基于磁场辅助精加工的基于新型媒体特性的材料去除率模型

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Magnetic field assisted finishing (MFAF) is a category of non-conventional finishing processes that use magnetic field to manipulate finishing media typically consisting of magnetic particles and non-magnetic abrasives suspended in a carrier fluid. In order to better control the process, an improved understanding of the actual removal process is needed. This paper introduces a new material removal rate model for magnetic field-assisted finishing (MFAF) that aims to do so. The model considers the complexity of finishing media used in MFAF processes, where two different types of particles are present and interact with each other. The proposed material removal rate expression is based on contact mechanics and is a function of number of active magnetic particles, number of active abrasives, force per magnetic particle, and force per abrasive. Expressions for particle numbers were developed by considering an ideal face-centred cubic configuration for the magnetic particle network, while expressions for forces were developed based on a proposed framework for the particle interactions. The model was verified experimentally for a double-magnet MFAF process by varying the abrasive size and abrasive concentration. When the abrasive size was increased from 0.6 mu m to 15 mu m, the material removal rate decreased, consistent with the theoretical trend given by the model. Then, when abrasive concentration, given by the abrasives-to-carbonyl-iron volumetric ratio, was increased from 0 to 0.768, the material removal rate initially increased and then reached a maximum when the volume ratio is 0.259 before decreasing with further increase of the volume ratio. This is also in agreement with the theoretical trend given by the model.
机译:磁场辅助精加工(MFAF)是一种非传统精加工方法,其使用磁场来操纵介质,所述精加工介质通常由悬浮在载体流体中的磁性颗粒和非磁性研磨剂组成。为了更好地控制该过程,需要改进对实际去除过程的理解。本文介绍了磁场辅助精加工(MFAF)的新材料去除率模型,旨在这样做。该模型考虑了MFAF过程中使用的整理介质的复杂性,其中两种不同类型的粒子存在并相互交互。所提出的材料去除率表达式基于接触力学,并且是活性磁性颗粒的数量,主动磨料的数量,每磁性颗粒的力的函数,以及每磨料的力。通过考虑用于磁粒子网络的理想面对的立方体配置来开发粒子数的表达,而基于所提出的颗粒相互作用的框架,开发用于力的表达。通过改变磨料尺寸和磨料浓度,通过实验实验进行模型进行双磁体MFAF处理。当磨料尺寸从0.6μm升高到15μm时,材料去除率降低,与模型给出的理论趋势一致。然后,当由磨料 - 羰基 - 铁体积比给出的磨料浓度从0到0.768增加时,最初的材料去除率最初增加,然后当体积比为0.259之前达到最大值,然后进一步增加体积比。这也与模型给出的理论趋势一致。

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