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Evaluating tribological properties of the stearic acid-based organic nanomaterials as additives for aqueous lubricants

机译:评价硬脂酸基有机纳米材料的摩擦学性质作为水性润滑剂添加剂

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摘要

Lubricant additives can effectively enhance tribological properties of water, but most of them are environmentally hazardous. Based on the solubilization principle of surfactants, the water-insoluble stearic acid (SA) can be dissolved in the sodium dodecylbenzene sulfonate (SDBS) aqueous solution to form a milky white liquid (SSA aqueous solutions). This paper presents an evaluation of tribological properties of SSA solution. Compared with the pure water, the SSA aqueous solution is more effective in reducing the friction and wear of the friction pairs. The enhancements are due to the following aspects: (1) on the surfaces of the metals, the SSA aqueous solution can be spread out more easily to form liquid lubricant films; (2) the adsorbed SDBS films can inhibit the corrosion behaviors of the metals; (3) the continuous SSA films can separate the direct rubbing between the friction pairs. The SSA solutions show promising results in reducing friction and wear for various friction pairs under a range of loads and shearing velocities, and can be used as potential lubricants in various processes.
机译:润滑剂添加剂可以有效提高水的摩擦学性质,但大多数是环境危险的。基于表面活性剂的溶解原理,水不溶性硬脂酸(SA)可以溶解在十二烷基苯磺酸钠(SDB)水溶液中以形成乳白色液体(SSA水溶液)。本文介绍了SSA解决方案的摩擦学特性评价。与纯水相比,SSA水溶液在降低摩擦对的摩擦和磨损方面更有效。增强功能是由于以下方面:(1)在金属的表面上,可以更容易地散开SSA水溶液以形成液体润滑膜; (2)吸附的SDBS薄膜可以抑制金属的腐蚀行为; (3)连续的SSA薄膜可以将直接摩擦分离在摩擦对之间。 SSA解决方案表明,在一系列载荷和剪切速度下,有希望在各种摩擦对中减少各种摩擦对的摩擦和磨损,并且可以用作各种方法中的潜在润滑剂。

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