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Flow Mechanism Characterization of Porous Oil-Containing Material Base on Micro-Scale Pore Modeling

机译:微尺寸孔隙建模的多孔油材料基础的流动机理表征

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摘要

The self-lubricating effect of the porous oil-containing cage is realized by storing and releasing lubricants through its internal micro-scale pore structure. The internal flow and heat transfer process in the micron-submicron pore structure is crucial to the self-lubricating mechanism of the porous oil-containing cage. To this end, a new modeling method of porous cage was proposed based on random seeds theory, and the local two-dimensional models of porous cage with different micro-scale pore structure were established. The multiphysics coupling simulation analysis of lubricating oil inside the porous cage with the effect of centrifugal force and thermal expansion was carried out based on the COMSOL Multiphysics platform. In order to characterize the micro-scale pore structure, new structural parameter indicators, such as relative surface perimeter, effective porosity, tortuosity and fluid properties related to the internal flow process, were all extracted from the above models. Combing with the Hagen–Poiseuille equation, a flow resistance model of oil flow inside the porous oil-containing cage was obtained. Finally, comparison of simulation results and analytical solutions of the micro-scale resistance model was carried out to verify the correctness of the micro-scale resistance model. The work provides a new direction for the study of the lubrication mechanism of the porous oil-containing cage.
机译:通过其内部微尺寸孔结构储存和释放润滑剂来实现多孔油笼的自润滑效果。微米亚微米孔结构中的内部流量和传热过程对多孔油笼的自润滑机制至关重要。为此,基于随机种子理论提出了一种新的多孔笼的新建模方法,建立了具有不同微观孔隙结构的多孔笼的局部二维模型。基于COMSOL多麦体育平台进行了离心力和热膨胀效果的多孔笼内润滑油的多体耦合仿真分析。为了表征微尺度孔结构,新的结构参数指示器,例如相对表面周边,有效孔隙率,曲纹和与内部流程过程相关的粉碎和流体性质,都从上面的模型中提取。与Hagen-Poiseuille方程梳理,获得了多孔油笼内内油流量的流动性模型。最后,进行了微垢电阻模型的仿真结果和分析解的比较,以验证微尺度电阻模型的正确性。该工作为研究多孔油笼的润滑机制提供了新的方向。

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