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A HYBRID MOBILITY SOLUTION METHOD FOR DYNAMICALLY LOADED MISALIGNED JOURNAL BEARINGS

机译:动态加载偏心滑动轴承的混合动力求解方法

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This paper presents a hybrid mobility solution approach to the analysis of dynamically loaded misaligned journal bearings. Mobility data obtained for misaligned bearings (calculated from a finite element representation of the Reynolds equation) are compared with existing curve-fitted mobility maps representative of a perfectly aligned bearing. A relative error analysis of mobility magnitude and direction provides a set of misaligned journal bearing configurations (midplane eccentricity ratio and normalized misalignment angle) where existing curve-fitted mobility map components based on aligned bearings can be used to calculate the resulting journal motion. For bearing configurations where these mobility maps are not applicable, the numerical simulation process proceeds using a complete finite element solution of the Reynolds equation. A set of numerical examples representing misaligned main and connecting rod bearings in a four-stroke automotive engine illustrate the hybrid solution method. Substantial savings in computational time are obtained using the hybrid approach over the complete finite element solution method without loss of computational accuracy.
机译:本文提出了一种混合动力解决方案方法来分析动态载荷未对准的轴颈轴承。将未对中轴承获得的运动数据(由雷诺方程的有限元表示法计算)与代表完美对中轴承的现有曲线拟合运动图进行比较。迁移率大小和方向的相对误差分析提供了一组未对准的轴颈轴承配置(中面偏心比和归一化的未对准角),其中基于对准轴承的现有曲线拟合的迁移率图分量可用于计算所得的轴颈运动。对于其中这些迁移率图不适用的轴承配置,使用雷诺方程的完整有限元解进行数值模拟过程。一组代表四冲程汽车发动机中主轴承和连杆轴承未对准的数值示例说明了混合解决方案方法。使用混合方法比完整的有限元求解方法可节省大量的计算时间,而不会降低计算精度。

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