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PREDICTIVE FORCE MODELING IN MQL (MINIMUM QUANTITY LUBRICATION) GRINDING

机译:MQL(最小量润滑)磨削中的预测力建模

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摘要

Using grinding fluid is the most common strategy to generate cooling and lubrication during the grinding process. However, economic and environmental drawbacks have been noticed for conventional flood cooling. MQL, which is to apply minimum amount of lubricant directly into the contact zone, is an alternative to deal with those concerns. In order to advance the MQL technique into practical manufacturing situations, understanding of the process and evaluation of the performance is necessary. This paper presents the predictive modeling of MQL grinding force through considerations of boundary lubrication condition, single grit interaction, wheel topography, material properties, and dynamic effects. The friction coefficient was first calculated based on boundary lubrication theory. Subsequently, the single grit interaction is studied considering both chip formation and ploughing mechanisms. Then the undeformed chip thickness distribution and dynamic grit density has been calculated for extrapolating the single grit interaction to the whole wheel. Finally, the predicted tangential and normal forces were presented and compared to surface grinding experiment data.
机译:使用磨削液是在磨削过程中产生冷却和润滑的最常见策略。但是,对于常规的洪水冷却,已经注意到了经济和环境方面的弊端。 MQL是将最小量的润滑剂直接施加到接触区的方法,是解决这些问题的一种替代方法。为了将MQL技术推进到实际制造环境中,必须了解过程并评估性能。本文通过考虑边界润滑条件,单砂粒相互作用,砂轮形貌,材料特性和动力效应,介绍了MQL磨削力的预测模型。首先基于边界润滑理论计算摩擦系数。随后,研究了同时考虑切屑形成和耕作机理的单个砂砾相互作用。然后,计算出未变形的切屑厚度分布和动态砂粒密度,以将单个砂粒相互作用推算到整个砂轮上。最后,给出了预测的切向力和法向力,并将其与表面磨削实验数据进行了比较。

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