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首页> 外文期刊>Tribology letters >Tribological Performance of Lubricating Greases Based on Calcium Carbonate Polymorphs Under the Boundary Lubrication Condition
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Tribological Performance of Lubricating Greases Based on Calcium Carbonate Polymorphs Under the Boundary Lubrication Condition

机译:边界润滑条件下基于碳酸钙多晶型物的润滑脂的摩擦学性能

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摘要

In this article, we synthesized the calcium sulphonate grease (CSG) based on the calcite using the bright stock (150BS) as the base oil. In order to investigate the tribological performance of lubricating grease containing different calcium carbonate polymorphs under boundary lubrication condition, a calcium sulphonate complex grease (CSCG) based on the vaterite was used as a reference. An oscillating reciprocating friction and wear tester set at a series of applied loads and frequencies was adopted to evaluate the tribological performance under boundary condition. Results showed that the lubricating grease that was composed of crystalline calcite as the partial thickener had excellent friction-reducing and antiwear (AW) properties, regardless of the applied loads and frequencies. The vaterite in CSCG easily experienced a polymorph transformation into calcite or aragonite characterized by Raman spectroscopy. This polymorph transformation was attributed to the highly local friction temperature and activated hydrogen from water or acids oxidated in the rubbing process at high load or frequency. The physical polymorph transformation corresponded to the fluctuations of the friction coefficients, then contributed to the severe wear. XPS analysis indicated that two calcium sulphonate lubricating greases occurred a tribochemical reaction and boundary tribofilms consisted of CaCO_3, CaO, iron oxide and FeSO_4 were formed on the rubbing surfaces. The tribofilm formed by the introduction of the CSG that mainly depended upon the thickeners of calcite structure contributed to an excellent AW protection. The possible boundary friction mechanism for greases based on various calcium carbonate polymorphs was also proposed. Effect of calcium carbonate polymorphs on the tribological performance was discussed.
机译:在本文中,我们使用光亮油(150BS)作为基础油,基于方解石合成了磺酸钙润滑脂(CSG)。为了研究边界润滑条件下含有不同碳酸钙多晶型物的润滑脂的摩擦学性能,以基于球ate石的磺酸钙复合润滑脂(CSCG)为参考。采用在一系列施加的载荷和频率下设置的摆动往复式摩擦磨损测试仪来评估边界条件下的摩擦性能。结果表明,由晶体方解石作为部分增稠剂组成的润滑脂,无论施加的载荷和频率如何,均具有优异的减摩和抗磨(AW)性能。 CSCG中的球ate石很容易经历多晶型转变为方解石或文石,其特征在于拉曼光谱。这种多晶型物的转变归因于高局部摩擦温度以及在高负荷或高频率下在摩擦过程中被氧化的水或酸产生的活化氢。物理多晶型转变对应于摩擦系数的波动,然后导致严重磨损。 XPS分析表明,两种磺酸钙润滑脂发生了摩擦化学反应,在摩擦表面形成了由CaCO_3,CaO,氧化铁和FeSO_4组成的边界摩擦膜。通过引入CSG形成的摩擦膜主要取决于方解石结构的增稠剂,从而提供了出色的防潮保护。还提出了基于各种碳酸钙多晶型物的润滑脂可能的边界摩擦机理。讨论了碳酸钙多晶型物对摩擦学性能的影响。

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