Grinding force performance with different types of grinding fluids based on a semi-empirical force model

Guoxu Yin, I. Marinescu, M. C. Weismiller
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引用次数: 2

Abstract

In the present paper, a semi-empirical grinding force model is developed combined with the achievements of previous researchers by composing effects of normal and tangential grinding forces in two main parts respectively: cutting force and sliding force. This model is used to predict the total normal and tangential force in the surface grinding. These force components were expressed in terms of the grinding process parameters such as wheel speed, workpiece feed rate, width of the workpiece and depth of cut. There are four unknown coefficients in each equation which can be determined by experiment results at specific conditions with the variations of grinding process parameters. Four different water-based grinding fluids were tested for different specific grinding conditions. The calculated normal and tangential grinding results are compared with the experimental ones. To have a better agreement with experiment data, shallow grinding condition is chosen to obtain the modified model.
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基于半经验力模型的不同类型磨削液的磨削力性能
本文结合前人研究成果,将法向磨削力和切向磨削力的作用分别纳入切削力和滑动力两个主要部分,建立了半经验磨削力模型。该模型用于预测曲面磨削过程中总法向力和切向力。这些力分量用砂轮速度、工件进给速度、工件宽度和切削深度等磨削工艺参数表示。每个方程中有4个未知系数,它们可以根据磨削工艺参数的变化在特定条件下的实验结果确定。在不同的磨削条件下,对四种不同的水基磨削液进行了试验。计算的法向和切向磨削结果与实验结果进行了比较。为了与实验数据更吻合,选择浅磨条件得到修正模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Abrasive Technology
International Journal of Abrasive Technology Engineering-Industrial and Manufacturing Engineering
CiteScore
0.90
自引率
0.00%
发文量
13
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