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Sliding wear behaviour of a cast iron as affected by test environment and applied load

机译:铸铁的滑动磨损行为受测试环境和施加的载荷的影响

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Purpose - The purpose of this paper is to understand the sliding wear response of a cast iron as influenced by applied load and changing concentration of solid lubricant (graphite) particles in oil lubricant, and operating material removal mechanisms in different sets of experimental conditions. Design/methodology/approach - The sliding wear response of a grey cast iron has been examined as a function of test environment and load. Properties evaluated were wear rate, friction coefficient and frictional heating. The wear behaviour of the samples has been substantiated through the characteristics of their wear surfaces, subsurface regions and debris particles. Findings - The wear rate and frictional heating increased with load while friction coefficient was affected in an opposite manner. The presence of oil lubricant led to a substantial improvement in wear response (in terms of decreasing wear rate, friction coefficient and frictional heating) while the presence of graphite particles in the oil lubricant proved to be still better. A critical content of graphite in the oil lubricant becomes most effective towards improving the wear response of the samples. Formation of dark patches on the wear surface, substantial subsurface deformation and fine debris led to improved wear response. Research limitations/implications - The study enables one to understand the wear behaviour of a cast iron as influenced by the changing concentration of solid lubricant (graphite) particles in the oil lubricant. It also enables one to understand the operating material removal mechanisms responsible for the observed wear characteristics of the samples under varying test conditions. The investigation helps one to see that only a critical concentration of the solid lubricant particles in oil can lead to the best wear performance of materials. Originality/value - From a practical standpoint, the observations made here gain importance from the fact that solid lubricants are added frequently in oil in engineering applications but it becomes imperative to understand that only a critical concentration can lead to the best wear behaviour of materials.
机译:目的-本文的目的是了解铸铁的滑动磨损响应,该响应受施加的载荷和油润滑剂中固体润滑剂(石墨)颗粒浓度变化的影响,以及在不同组实验条件下的操作材料去除机理。设计/方法/方法-灰口铸铁的滑动磨损响应已根据测试环境和负载进行了检查。评价的性能是磨损率,摩擦系数和摩擦加热。样品的磨损行为已通过其磨损表面,亚表面区域和碎屑颗粒的特征得到证实。研究结果-磨损率和摩擦热随着负载而增加,而摩擦系数则以相反的方式受到影响。油润滑剂的存在导致磨损响应(就降低的磨损率,摩擦系数和摩擦加热而言)有了实质性的改善,而油润滑剂中石墨颗粒的存在被证明仍然更好。机油润滑剂中的临界石墨含量对改善样品的磨损响应最为有效。在磨损表面上形成深色斑点,明显的地下变形和细小的碎屑导致改善的磨损响应。研究的局限性/意义-这项研究使人们能够了解铸铁的磨损行为,该磨损行为受油润滑剂中固体润滑剂(石墨)颗粒浓度变化的影响。它还使人们能够了解在各种测试条件下观察到的样品磨损特性的操作材料去除机理。这项研究使人们看到,油中固态润滑剂颗粒的临界浓度只能导致材料的最佳磨损性能。独创性/价值-从实践的角度来看,这里的观察结果的重要性在于,在工程应用中经常在油中添加固体润滑剂,但必须理解只有临界浓度才能使材料达到最佳磨损性能。

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