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Tribological behaviour of self-lubricating materials at high temperatures

机译:高温下自润滑材料的摩擦学行为

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摘要

Self-lubricating materials are becoming more widespread in fields like metal forming or power generation due to the inability to use conventional lubricants in high-temperature (HT) applications. In an effort to summarise the progress done in this field, a detailed literature review has been carried out, ranging from micron-thickness thin films to hardfacings and bulk materials, and classified by the reported solid lubricants. Moreover, the most-cited deposition techniques have been reviewed for each lubricant class in addition to their advantages and limitations. HT friction and wear data for self-lubricating materials have also been examined in order to identify effective lubrication ranges and general trends in their tribological behaviour, which is expected to be useful for researchers interested in this field. Finally, several apparent research gaps have been described, with suggestions for new experimental work that could lead to the development of new high-temperature self-lubricating materials.
机译:由于在高温(HT)应用中不可能使用常规润滑剂,自润滑材料在金属成型或发电等领域变得更加广泛。为了总结该领域的进展,已经进行了详细的文献回顾,从微米厚度薄膜到破碎和散装材料,并由报告的固体润滑剂分类。此外,除了它们的优点和限制之外,还对每个润滑剂类进行了封存技术的最引用的沉积技术。还研究了用于自润滑材料的HT摩擦和磨损数据,以识别其摩擦学行为的有效润滑范围和一般趋势,这预计对对该领域感兴趣的研究人员有用。最后,已经描述了几个明显的研究差距,提出了可能导致新型高温自润滑材料的开发的新实验工作的建议。

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