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Evaluation Of Vapor Pressure And Ultra-High Vacuum Tribological Properties Of Ionic Liquids (2) Mixtures and Additives

机译:离子液体蒸气压和超高真空摩擦学特性的评价(2)混合物和添加剂

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Ionic liquids are salts, many of which are typically viscous fluids at room temperature. The fluids are characterized by negligible vapor pressures under ambient conditions. These properties have led us to study the effectiveness of ionic liquids containing both organic cations and anions for use as space lubricants. In the previous paper we have measured the vapor pressure and some tribological properties of two distinct ionic liquids under simulated space conditions. In this paper we will present vapor pressure measurements for two new ionic liquids and friction coefficient data for boundary lubrication conditions in a spiral orbit tribometer using stainless steel tribocouples. In addition we present the first tribological data on mixed ionic liquids and an ionic liquid additive. Post mortem infrared and Raman analysis of the balls and races indicates the major degradation pathway for these two organic ionic liquids is similar to those of other carbon based lubricants, i.e. deterioration of the organic structure into amorphous graphitic carbon. The coefficients of friction and lifetimes of these lubricants are comparable to or exceed these properties for several commonly used space oils.
机译:离子液体是盐,其中许多通常在室温下粘性流体。流体的特征在于环境条件下可忽略不计的蒸气压力。这些性质导致我们研究了含有有机阳离子和阴离子的离子液体的有效性,用作空间润滑剂。在前一篇文章中,我们在模拟空间条件下测量了两个不同离子液体的蒸气压和一些摩擦学性质。在本文中,我们将在使用不锈钢的Tribococoups的螺旋轨道摩擦计中为两个新的离子液体和摩擦系数数据提供蒸气压测量。此外,我们提出了关于混合离子液体和离子液体添加剂的第一种摩擦学数据。验尸红外线和拉曼的球和比赛分析表明这两个有机离子液体的主要降解途径类似于其他碳基润滑剂的途径,即有机结构的恶化为无定形石墨碳。这些润滑剂的摩擦系数和寿命与几种常用的空间油的这些性质相当或超过这些性质。

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