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Thermodynamics of grease degradation

机译:润滑脂降解的热力学

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摘要

A review of grease degradation mechanisms and existing grease models is presented, followed by a detailed thermodynamic analysis of grease degradation. Fundamental formulations are derived from thermodynamic laws and applied to instantaneous nonlinear response of grease to loading. The resulting model of grease degradation relates grease shear stress response to mechanical work, temperatures and environmental effects via the irreversible entropy generated by these dissipative interactions. The model is experimentally verified, and a universally consistent grease characterization methodology is described. A near 100% agreement between the grease model and nonlinear data from uncontrolled experimental measurements is achieved. The model also gives rise to new material and process parameters to characterize grease for performance and hence, system optimization.
机译:提出了对润滑脂降解机制和现有润滑脂模型的综述,然后进行了润滑脂降解的详细热力学分析。 基本配方来自热力学定律,并应用于润滑脂的瞬时非线性反应。 所得到的润滑脂降解模型涉及通过这些耗散相互作用产生的不可逆熵的机械工作,温度和环境影响的润滑脂剪切应力响应。 该模型是通过实验验证的,并且描述了一种普遍一致的润滑脂表征方法。 实现了来自不受控制的实验测量的油脂模型和非线性数据之间的接近100%。 该模型还引发了新材料和工艺参数,以表征性能润滑脂,因此,系统优化。

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