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Lubrication Model and Dynamic Characteristics of Distributed Liquid Film for Hydrodynamic Bearing

机译:水动力轴承分布式液膜润滑模型及动态特性

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For the thin film lubrication, boundary lubrication, and local dry friction lubrication state of hydrodynamic bearing, a lubrication model of distributed liquid film is established in this paper which is designed to service for calculating or predicting the full life cycle design performance of water-lubricated bearing. The limitations of the fluid-solid-thermal coupling model for describing the distributed liquid film are investigated. Two new methods to build the lubrication model of distributed liquid film are given. The first one takes fluid-solid-thermal model that can guide the design of bearings parameters as dominant factor, and combines with wear, corrosion, two-phase of gas-liquid and other additional factors. A comprehensive model integrating simulation and mechanism can be built. Through researching the regional properties or distributed parameter of water film and solid interface, the second way proposes a decomposition and synthesis modeling method of water film and rubber. A distributed parameters model of dynamic characteristics for water-lubricated bearing is built. The lubrication theory of distributed liquid film proposed in this paper is appropriate for the situation when the film thickness is less than 10μm or contact. When the film thickness is greater than 10μm, classical lubrication theory is applicable.
机译:对于薄膜润滑,边界润滑和局部干摩擦润滑状态的流体动力轴承,本文建立了分布式液体膜的润滑模型,该膜设计为用于计算或预测水润滑的全生命周期设计性能轴承。研究了用于描述分布式液体膜的流体 - 固体热耦合模型的局限性。给出了构建分布式液体膜润滑模型的两种新方法。第一个采用流体固体 - 热模型,可以指导轴承参数设计作为主导因素,并与磨损,腐蚀,两阶段的气液等额外因素相结合。可以构建整合仿真和机制的全面模型。通过研究水膜和固体界面的区域性质或分布式参数,第二种方法提出了水膜和橡胶的分解和合成建模方法。建立了水润滑轴承动态特性的分布式参数模型。本文提出的分布式液体膜的润滑理论适用于膜厚度小于10μm或接触时的情况。当薄膜厚度大于10μm时,经典润滑理论适用。

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