Grupo de Ciencia de Materiales e Ingeniería Metalúrgica. Departamento de Ingeniería de Materiales y Fabricación. Universidad Politécnica de Cartagena. Campus de la Muralla del Mar. C/Doctor Fleming s/n. 30202-Cartagena, Spain.
Int J Mol Sci. 2009 Sep 18;10(9):4102-4115. doi: 10.3390/ijms10094102.
Two decades ago, the literature dealing with the possible applications of low molar mass liquid crystals, also called monomer liquid crystals (MLCs), only included about 50 references. Today, thousands of papers, conference reports, books or book chapters and patents refer to the study and applications of MLCs as lubricants and lubricant additives and efforts are made to develop new commercial applications. The development of more efficient lubricants is of paramount technological and economic relevance as it is estimated that half the energy consumption is dissipated as friction. MLCs have shown their ability to form ordered boundary layers with good load-carrying capacity and to lower the friction coefficients, wear rates and contact temperature of sliding surfaces, thus contributing to increase the components service life and to save energy. This review includes the use of MLCs in lubrication, and dispersions of MLCs in conventional polymers (PDMLCs). Finally, new lubricating system composed of MLC blends with surfactants, ionic liquids or nanophases are considered.
二十年前,有关低分子量液晶(也称为单体液晶,MLC)潜在应用的文献仅包含约 50 篇参考文献。如今,成千上万的论文、会议报告、书籍或章节以及专利都涉及 MLC 作为润滑剂和润滑剂添加剂的研究和应用,并努力开发新的商业应用。开发更高效的润滑剂在技术和经济方面具有至关重要的意义,因为据估计,一半的能源消耗是由于摩擦而散失的。MLC 已显示出其形成具有良好承载能力的有序边界层的能力,并降低滑动表面的摩擦系数、磨损率和接触温度,从而有助于延长部件的使用寿命并节约能源。本文综述了 MLC 在润滑以及 MLC 在常规聚合物(PDMLC)中的分散体中的应用。最后,考虑了由 MLC 混合物与表面活性剂、离子液体或纳米相组成的新型润滑系统。