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首页> 外文期刊>Tribology International >Partitioned fluid-structure interaction techniques applied to the mixed-elastohydrodynamic solution of dynamically loaded connecting-rod big-end bearings
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Partitioned fluid-structure interaction techniques applied to the mixed-elastohydrodynamic solution of dynamically loaded connecting-rod big-end bearings

机译:分配的流体结构相互作用技术应用于动态装载连杆大端轴承的混合弹性流体溶液

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摘要

The present contribution proposes different partitioned techniques, which are commonly used in fluid-structure interaction (FSI) applications, in the context of tribological simulations of the transient mixed-elastohydrodynamic problem of dynamically loaded connecting-rod bearings. With the premise that the FSI framework developed is general, in the current work the fluid flow effects have been considered through the averaged Reynolds equation by Patir & Cheng and the mass-conserving p - theta Elrod-Adams cavitation model. The multiphysics simulation framework developed has been used to simulate the connecting-rod big-end bearings of both heavy-duty diesel and high-speed motorcycle engines. In the latter case, the influence of polymer concentration in VM-containing oils with similar HTHS150 values on the bearing power loss is investigated and discussed in details.
机译:本贡献提出了不同分区技术,其通常用于流体结构相互作用(FSI)应用,在动态装载的连接杆轴承的瞬态混合弹性流体问题的摩擦混合 - 弹性正动态问题的情况下。 因此,由于FSI框架的发展是通用的,在目前的工作中,通过Patir&Cheng的平均雷诺方程和大规模保护P - Theta Elrod-Adams空化模型考虑了流体流动效应。 MultiphySics仿真框架已用于模拟重型柴油和高速摩托车发动机的连杆大端轴承。 在后一种情况下,研究并详细讨论了含有类似HTHS150值的VM含油中的聚合物浓度的影响。

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