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Structurally Induced Lubricity of Liquid Crystal Cholesterol Nanomaterials in the Friction of Metals

机译:金属摩擦液晶胆固醇纳米材料的结构诱导的润滑性

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摘要

It has been established experimentally that an change in temperature leads to a structurally induced increase in the lubricity of liquid crystal nanomaterials due to cholesterol phase transformations. It has been shown that the minimum values of the friction coefficient almost coincide with the peak values of the dynamic viscosity within this temperature range, thereby cumulatively arguing for the ordered state of liquid crystal cholesterol structures at these temperatures. As a result, it is possible to presume the formation of helically coiled layers of liquid crystal cholesterol molecules with a high antifriction effect within this temperature range in the friction zone. It is also observed that the thickness of liquid crystal cholesterol films appearing under friction reacts sensitively to the temperature changes in the zone of contact with discoloration and energy losses.
机译:实验证明,由于胆固醇相变,温度变化导致液晶纳米材料的润滑性在结构上增加。研究表明,在该温度范围内,摩擦系数的最小值几乎与动态粘度的峰值一致,从而累积证明了液晶胆固醇结构在这些温度下的有序状态。因此,可以假定在摩擦区的该温度范围内形成具有高减摩效果的螺旋状液晶胆固醇分子层。还观察到,在摩擦条件下出现的液晶胆固醇膜的厚度对接触区的温度变化反应灵敏,会导致变色和能量损失。

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  • 来源
    《Doklady. Physics》 |2019年第9期|共4页
  • 作者单位

    Rostov State Univ Transport Commun Rostov Na Donu 344038 Russia;

    Francysk Skoryna Gomel State Univ Gomel 246019 BELARUS;

    Francysk Skoryna Gomel State Univ Gomel 246019 BELARUS;

    Russian Acad Sci Southern Sci Ctr Fed Res Ctr Rostov Na Donu 344006 Russia;

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  • 正文语种 eng
  • 中图分类 物理学;
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