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Influence of the geometry on the transient and steady flow of lubricating greases

机译:几何形状对润滑油瞬态和稳定流的影响

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摘要

The objective of this paper is to investigate the influences that geometry, roughness of the sensor system and gap size exert on the rheological measurements of a commercial lubricating grease. With this aim, creep and stress growth experiments, stepped strain rate ramps and dynamic measurements were performed using different geometries and roughness. A significant influence of gap size was found in transient and steady-state experiments in a certain range of strain rate. Roughening the surface of the geometry increases considerably the values of the stress in comparison to the measurements performed with smooth surfaces. The experimental results are discussed taking into account the wall slip phenomenon. In addition to this, different grooves made in the surfaces of the tools seem to eliminate or considerably decrease these wall slip effects. However the influence of geometry or roughness was not detected in oscillatory tests performed inside the linear viscoelastic range.
机译:本文的目的是研究几何形状,传感器系统的粗糙度和间隙尺寸对商业润滑脂的流变学测量的影响。为此目的,使用不同的几何形状和粗糙度进行了蠕变和应力增长实验,阶跃应变速率斜率和动态测量。在瞬态和稳态实验中,在一定的应变速率范围内,间隙尺寸的影响很大。与用光滑表面进行的测量相比,粗糙化几何形状的表面会大大增加应力值。考虑壁滑现象讨论了实验结果。除此之外,在工具表面上制成的不同凹槽似乎可以消除或显着降低这些壁滑效应。但是,在线性粘弹性范围内进行的振动测试中未检测到几何形状或粗糙度的影响。

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