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首页> 外文期刊>Journal of inorganic and organometallic polymers and materials >Copper-Containing Nanomaterials Derived from Copper(Ⅱ) Laurate as Antifriction Additives for Oil Lubricants
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Copper-Containing Nanomaterials Derived from Copper(Ⅱ) Laurate as Antifriction Additives for Oil Lubricants

机译:衍生自铜(Ⅱ)的含铜纳米材料作为油润滑剂的抗抗摩擦添加剂

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摘要

In the present study, an easily accessible method for obtaining copper-containing tribological nanomaterials by thermolysis of copper(II) laurate at 300 degrees C was developed. The obtained nanoparticles were studied using X-ray diffraction, atomic force microscopy, and sedimentation analysis. The composition of nanoparticles and the size of crystallites are shown to depend on the thermolysis time. The tribological characteristics of copper-containing nanomaterials derived from copper(II) laurate were analyzed as additives to liquid paraffin using a pin-on-disc tribometer (additive concentration 0.025-0.2%, normal loads 49 and 96 N, rotation speed 200 rpm). The optimal concentration of nanomaterials at which the coefficient of friction is the lowest is determined. An increase in load to 98 N leads to a decrease in the coefficient of friction. The mechanism of friction in the presence of the studied nanolubricants is discussed.
机译:在本研究中,开发了通过在300摄氏度下通过铜(II)铜(II)的铜(II)的热解来获得含铜摩擦纳米材料的易于接近的方法。 使用X射线衍射,原子力显微镜和沉降分析研究所得纳米颗粒。 显示纳米颗粒的组成和微晶的尺寸依赖于热解时间。 使用销盘摩擦计(添加剂浓度0.025-0.2%,正常载荷49和96N,转速200rpm)分析为含铜(II)铜(II)的铜(II)的铜(II)的铜(II)的铜(II)氟酸盐的碳酸铜(II)的纳米材料的培养基特征 。 确定摩擦系数是最低的纳米材料的最佳浓度。 载荷增加到98n导致摩擦系数减少。 讨论了在研究的纳米脂磺酸中存在的摩擦机制。

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