Mesomorphism and Tribotechnical Characteristics of Lubricant Compositions with Mesogenic Additives Carboxylates Cu(II)

L. V. Elnikova, A. T. Ponomarenko, V. G. Shevchenko
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Abstract

The purpose of the work is to characterize the lubricants based on Llitol-24 and synthetic solidol with additives copper(II) carboxylates when using them in friction nodes in loading conditions and temperature. The lubricant compositions with additives copper(II) carboxylates based on synthetic solidol and Litol-24 form the columnar mesophases depending on thermodynamical conditions and concentration of additives.Methods. We study the lubricant compositions with dielectric spectroscopy and и polarization light microscopy. The studies lubricant compositions are tested on the frictional machines by preceding authors, which performed their synthesis and numerical estimations for their geometry parameters. It is shown, that the columnar mesophase formed by the compositions with copper(II) carboxylates simulates favourable tribological conditions for lubrication (reduction of the friction coefficient at the appointed range of additive concentrations and reduction of wear) and unlike to crystalline phases, shows orientation effects at the surface of interacting surfaces of machine elements and devices. These factsmotivate the study of influence of physicochemical properties and composition on mesomorphism of considered lubricant compositions.Results. In our measurements, we found the main dielectric characteristics of two kinds of the lubricant compositions: dielectric constant and dielectric loss, electroconductivity, dissipation factor, the Arrhenius functions are plotted, and the activation energies of the lubricant compositions we study are calculated. The microphotogram for textures of the lubricant compositions depending on temperature and concentrations are received. The differences in mesomorphic properties of the lubricant compositions with additives Cu(II) valerate and isovalerate are confirmed.The conclusion of the work is that the composition of the lubricant is optimized by the choice of additive concentration, the length of the mesogenic chain of the copper(II) carboxylate molecule and its conformation.
含有介生添加剂羧酸铜(II)的润滑油组合物的介形性和摩擦技术特性
这项工作的目的是在加载条件和温度下将含有添加剂羧酸铜(II)的基于利多-24和合成固醇的润滑剂用于摩擦节点时对其进行表征。根据热力学条件和添加剂浓度的不同,基于合成固醇和 Litol-24 的添加剂羧酸铜(II)的润滑剂组合物会形成柱状介相。我们使用介电光谱和偏振光显微镜研究了润滑剂成分。所研究的润滑剂成分已由前人在摩擦机器上进行了测试,并对其几何参数进行了合成和数值估算。结果表明,羧酸铜(II)组合物形成的柱状介相模拟了有利的摩擦学润滑条件(在指定的添加剂浓度范围内降低摩擦系数并减少磨损),与结晶相不同的是,柱状介相在机器元件和设备的相互作用表面上显示出取向效应。这些事实促使我们研究物理化学特性和成分对所考虑的润滑剂成分的介观形态的影响。在测量中,我们发现了两种润滑剂成分的主要介电特性:介电常数和介电损耗、电导率、耗散因子,绘制了阿伦尼乌斯函数,并计算了我们所研究的润滑剂成分的活化能。我们还收到了润滑剂成分质地随温度和浓度变化的微光图。这项研究的结论是,润滑剂成分可通过选择添加剂浓度、羧酸铜(II)分子的中链长度及其构象进行优化。
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