Multilayer Modelling of Lubricated Contacts: A New Approach Based on a Potential Field Description

Multilayer Modelling of Lubricated Contacts: A New Approach Based on a Potential Field Description
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润滑接触的多层建模:基于势场描述的新方法

DOI:
10.1007/978-3-030-60124-9_16
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发表时间:
2021
期刊:
Springer Tracts in Mechanical Engineering
影响因子:
--
通讯作者:
F. Marner
F. Marner
中科院分区:
--
文献类型:
--
作者:
M. Scholle;M. Mellmann;P. H. Gaskell;L. Westerkamp;F. Marner

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第一个积分的方法,推导出类似的方式,以麦克斯韦的使用势场,是用来调查的流动特性,以尽量减少摩擦,剪切驱动的流体运动之间的刚性表面平行对齐作为一个模型的润滑关节,无论是自然发生的或工程更换。对于由不混溶液体组成的粘性双层布置,示出了如何通过层的平均厚度和它们各自的粘度的比率来影响沿分离界面的流动和剪切应力沿着。另外考虑的是,该方法如何可以扩展应用到更具挑战性的问题时,一个,或两个,层是粘弹性材料。
A first integral approach, derived in an analogous fashion to Maxwell’s use of potential fields, is employed to investigate the flow characteristics, with a view to minimising friction, of shear-driven fluid motion between rigid surfaces in parallel alignment as a model for a lubricated joint, whether naturally occurring or engineered replacement. For a viscous bilayer arrangement comprised of immiscible liquids, it is shown how the flow and the shear stress along the separating interface is influenced by the mean thickness of the layers and the ratio of their respective viscosities. Considered in addition, is how the method can be extended for application to the more challenging problem of when one, or both, of the layers is a viscoelastic material.
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