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A Model for Shear Degradation of Lithium Soap Grease at Ambient Temperature

机译:环境温度下锂皂润滑脂剪切劣化模型

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In this article, the shear degradation of lithium 12-hydroxy stearate grease will be measured using an in-house-developed Couette aging machine. In this device the shear rate is well defined. The aging is related to the generated entropy density as described in Rezasoltani and Khonsari's work (Tribology Letters, Vol. 56, No. 2, pp. 197-204, 2014). The rheological properties of the aged samples were evaluated using a parallel-plate rheometer. The results showed that there are two aging phases with different degradation rates: a progressive degradation phase at the early stage, followed by a rather slow deterioration afterwards. Based on this observation, an aging equation was formulated to describe the aging behavior of lithium-thickened grease. Atomic force microscopy results of the fresh and aged greases showed that the variation in thickener microstructure provides a good explanation for the lithium grease degradation mechanism: under shear, the original fibrous network is progressively destroyed and becomes fragmented, leading to the loss of consistency and a change in the rheological properties.
机译:在本文中,将使用内部开发的Couge老化机测量锂12-羟基硬脂酸锂润滑脂的剪切降解。在该设备中,剪切速率定义很好。老化与Rezasoltani和Khonsari的工作中所述的产生熵密度(司法学字母,第56号,第2号,第274号)。使用平行板流变仪评估老化样品的流变性质。结果表明,有两种具有不同降解率的老化阶段:早期的逐步降解阶段,然后之后是一个相当缓慢的劣化。基于该观察,配制了衰老方程以描述锂加厚润滑脂的老化行为。新鲜和老化润滑脂的原子力显微镜结果表明,增稠剂微观结构的变化为锂润滑脂降解机理提供了良好的解释:在剪切下,原始的纤维网络逐渐破坏并变成碎裂,导致稠度丧失,导致稠度的损失和一个流变性能的变化。

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