School of Basic Science, East China Jiaotong University, Nanchang, PR China.
PLoS One. 2013 May 3;8(5):e62050. doi: 10.1371/journal.pone.0062050. Print 2013.
A middle base number sulphonate-modified nano calcium carbonate (SMC) with an average size of 35 nm was synthesized, and its tribological and antioxidation synergistic behaviors with ashless antioxidant N-phenyl-α-naphthylamine (T531) in hydrogenated oil (5Cst) were evaluated. The results demonstrate that adding this synthesized additive even at a low amount (<2.0 wt.%) can evidently improve its load-carrying capacity by 1.5 times and enhance its antiwear performance; in addition, the friction-reducing effect of additive in the high load was better than that in low load. The SMC have a good synergistic antioxidation effect with T531, which verifies the nano calcium carbonate compound was a kind of multifunctional and high-performance additive. The chemical composition of the rubbing surface which formed on the boundary film was analyzed by using scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS). The results indicating that the excellent antiwear and load-carrying performance could be attributed to the forming of boundary lubrication film which composed of calcium carbonate, oxides, ferrites, sulphide and FeSO4, and so on. Its ability to increase oxidation free energy of base oil is the main reason for increasing its antioxidant collaboration property with ashless antioxidant T531.
合成了一种中值基数磺酸盐改性纳米碳酸钙(SMC),平均粒径为 35nm,并评价了其在加氢油(5Cst)中与无灰抗氧剂 N-苯基-α-萘胺(T531)的摩擦学和抗氧化协同行为。结果表明,即使添加量低(<2.0wt.%),这种合成添加剂也能显著提高其承载能力 1.5 倍,增强其抗磨性能;此外,添加剂在高负荷下的减摩效果优于低负荷下的减摩效果。SMC 与 T531 具有良好的抗氧化协同作用,验证了纳米碳酸钙化合物是一种多功能、高性能的添加剂。利用扫描电子显微镜(SEM)和 X 射线光电子能谱(XPS)分析了边界膜上形成的摩擦表面的化学成分。结果表明,优异的抗磨和承载性能归因于边界润滑膜的形成,该膜由碳酸钙、氧化物、铁酸盐、硫化物和 FeSO4 等组成。其增加基础油氧化自由能的能力是其与无灰抗氧剂 T531 增加抗氧化协同作用的主要原因。