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磨削加工时磨削液的流体动压效应
引用本文:葛培琪,刘镇昌,隋庆华.磨削加工时磨削液的流体动压效应[J].润滑与密封,2000,113(1):26-27.
作者姓名:葛培琪  刘镇昌  隋庆华
作者单位:1. 山东工业大学,济南,250061
2. 山东电力高等专科学校
摘    要:根据流体动压润滑理论,分析了平面砂轮磨削液的流体动压效应,并考虑砂轮渗透度的影响,推得了有限宽线接触条件下磨削液三维流动的Reynolds方程,用数值分析方法,得出了砂轮磨削区内磨削液动压力的分布曲线和液膜举起力。然后进一步分析讨论了砂轮渗透度、砂轮与工件间的相对速度及相对间隙对液膜举起力的影响。数值计算结果与实测数据基本吻合。

关 键 词:磨削液  渗透度  流体动压效应  磨削

Grinding Fluid Hydrodynamic Action in Grinding
Ge Peiqi,Sui Qinghua,Liu Zhenchang.Grinding Fluid Hydrodynamic Action in Grinding[J].Lubrication Engineering,2000,113(1):26-27.
Authors:Ge Peiqi  Sui Qinghua  Liu Zhenchang
Abstract:Grinding fluid flow under a surface grinding wheel is analyzed using hydrodynamic lubrication theory. Considering the effects of permeability of the grinding wheel, a three dimensional Reynolds equation of finite line contact is yielded. Using numerical calculation method, numerical solutions of hydrodynamic pressure distribution and vertical force caused by grinding fluid in grinding zone are obtained. In addition, the effects of permeability of grinding wheel, relative speed, and clearance between grinding wheel and workpiece on the vertical force are discussed. The numerical calculation results are in good agreement with experiments.
Keywords:Grinding Fluid Permeability Hydrodynamic Action
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