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Development of a multi-regime tribometer and investigation of zinc dialkyldithiophosphate tribofilm development in the presence of overbased calcium sulfonate

机译:开发多系统摩擦磨损试剂及高碱性磺酸钙存在下二烷基二硫代磷酸锌摩擦膜发展的研究

摘要

A custom tribometer was developed to investigate the production of nano-scale films from the anti-wear additive zinc dialkyldithiophosphate (ZDDP). The tribometer was designed to operate in various conditions of lubrication severity, from boundary to hydrodynamic lubrication regimes. A cylinder-on-plate layout, in which a cylinder rotates and rubs against a plate in a line contact, was employed for this purpose. ZDDP, a wear preventative additive universally used in engine and gear oil formulations, was studied in detail with respect to tribofilm production. As typical oil formulations contain an assortment of additives, the development of these films in the presence of other additives was studied. Of these, overbased detergents have recently been under scrutiny with mixed findings of synergetic and antagonistic effects. This project investigates the effects of overbased calcium sulfonate, a basic detergent used to neutralize acids and solubilize contaminants in oil, using electrical contact resistance (ECR), Auger electron spectroscopy (AES) and 31-phosphorous nuclear magnetic resonance (P₃₁NMR). Oil blends of 2.4% (mass) ZDDP with varying concentrations of calcium sulfonate were mixed for rubbing and heating tests. ECR was used to monitor the development of the tribofilm in-situ of the tribometer and AES was used in postmortem analysis to measure the film thickness. Analysis with P₃₁ NMR was employed for a series of heating experiments to characterize the chemical interactions between the two additives. Tests in light boundary lubrication show a trend of suppression of ZDDP tribofilm formation with the introduction of the detergent.
机译:开发了一种定制的摩擦计,以研究由抗磨添加剂二烷基二硫代磷酸锌(ZDDP)生产纳米级薄膜的过程。摩擦计的设计可在各种润滑条件下(从边界润滑到流体动力润滑)进行操作。为此,采用了圆柱体在板上的布局,其中圆柱体旋转并以线接触的方式摩擦板。 ZDDP是一种普遍用于发动机和齿轮油配方的防磨添加剂,已就摩擦膜的生产进行了详细研究。由于典型的油配方中包含各种添加剂,因此研究了在其他添加剂存在下这些薄膜的显影过程。其中,最近对高碱性洗涤剂的协同作用和拮抗作用进行了审查。该项目利用电接触电阻(ECR),俄歇电子能谱(AES)和31磷核磁共振(P₃₁NMR)研究高碱性磺酸钙的作用,该碱性洗涤剂用于中和酸和溶解油中的污染物。将2.4%(质量)ZDDP与不同浓度的磺酸钙的油共混物进行摩擦和加热测试。 ECR用于监测摩擦计原位摩擦膜的发展,而AES用于事后分析以测量膜厚。用P 1 NMR分析进行一系列加热实验,以表征两种添加剂之间的化学相互作用。在轻质边界润滑条件下进行的测试表明,通过加入清洁剂可以抑制ZDDP摩擦膜的形成。

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