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Synthesis of polyphenylmethylsiloxanes and their enhancement on tribological properties of titanium complex grease

机译:聚苯基甲基硅氧烷合成及其增强钛配合物润滑脂的摩擦学性质

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摘要

Polyphenylmethylsiloxanes (PPMSs) with the phenyl/methyl mole ratios of 0.25:1-0.75:1 were facilely synthesized using phenylmethyldichlorosilane, diphenyldichlorosilane, dimethyldichlorosilane, and hexamethyldisiloxane as the raw materials with the hydrolysis-condensation method. The molecular weights (M-w) of the as-synthesized PPMSs ranged from 1248.7 to 27 014.0. The maximum molecular weight was obtained at the phenyl/methyl ratio of 0.65:1. Titanium complex greases were prepared by using titanium carboxylate as the thickener and PPMS/mineral oil (KN4010) as the mixed base oil. When the weight percentage of PPMS (phenyl/methyl mole ratio of 0.45:1) in the mixed base oil was 20%, the dropping point of the resultant titanium complex grease increased by 21 degrees C as compared with the sole mineral oil-based titanium complex grease. The friction coefficient and the wear scar dimension were 0.54 and 0.69 times those of the sole mineral oil-based titanium complex grease, respectively. According to thermogravimetric analysis-differential scanning calorimetry analysis, the working temperature of the titanium complex grease could reach 240 degrees C. The addition of PPMS in the titanium complex grease obviously improved its thermal stability and tribological properties. The present work developed a new category of titanium complex grease using PPMS and mineral oil as the mixed base oil. (c) 2018 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47168.
机译:用苯基/甲基摩尔比为0.25:1-0.75:1的聚苯甲基甲基硅氧烷(PPMS)均使用苯基甲基二氯硅烷,二苯基二氯二氯硅烷,二甲基二氯硅烷和六甲基二硅氧烷作为具有水解缩合法的原料。由合成的PPMS的分子量(M-W)范围为1248.7至27 014.0。在0.65:1的苯基/甲基比下获得最大分子量。通过使用羧酸钛作为增稠剂和PPMS /矿物油(KN4010)来制备钛络合物润滑脂作为混合基础油。当混合基础油中的PPMS(苯基/甲基/甲基摩尔比)的重量百分比为20%时,与唯一的矿物油基钛相比,所得钛复合物润滑脂的滴加点增加21℃复杂的油脂。摩擦系数和耐磨瘢痕尺寸分别为0.54和0.69倍的唯一矿物油基钛配合物润滑脂。根据热重分析 - 差示扫描量热法分析,钛复合物润滑脂的工作温度可达到240℃。在钛配体润滑脂中添加PPMS明显改善了其热稳定性和摩擦学特性。本工作开发了一种使用PPMS和矿物油作为混合基础油的新类别的钛配体润滑脂。 (c)2018 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,47168。

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