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Comparative Theoretical and Experimental Study of Linear and Star Polymer Additive Degradation in Kurt Orbahn Tests

机译:Kurt Orbahn试验中线性和星形聚合物添加剂降解的比较理论和实验研究

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The process of molecule scission for a polymer additive dissolved in a lubricant is analyzed quantitatively based on the probabilistic kinetic equation(s) for the density of the polymer molecular weight distribution of linear polymeric molecules/arms or star polymeric molecules. The considered polymer molecule scission process is caused by the temperature and the shear strain rate in the lubricant. The expressions for the probability of scission and the density of the conditional probability of scission are derived. It is shown that in an isolated system the total polymer weight per unit mass of the lubricant is conserved in time along the lubricant flow streamlines while the total number of polymer molecules/arms of star polymeric molecules per unit of the lubricant mass is a non-decreasing function of time. It is shown that the numerically calculated polymer molecular weight distributions and viscosity loss are in excellent agreement with the corresponding test data. The loss of lubricant viscosity depends on the nature of base stock, polymer additive, and the degradation regime. Based on the experimental data and the calculated results the viscosity loss varies from about 10% to 27% for two lubricants formulated with olefin copolymer viscosity modifiers of different average molecular weights.
机译:基于线性聚合物分子/臂或星形聚合物分子的聚合物分子量分布的密度,定量地分析溶解在润滑剂中的聚合物添加剂的分子群的方法。所考虑的聚合物分子裂殖过程是由润滑剂中的温度和剪切应变速率引起的。推导出易于释放概率的表达和群体的条件概率的密度。结果表明,在隔离的系统中,沿着润滑剂流动的时间沿润滑剂流动润滑剂节省每单位润滑剂的总聚合物重量,同时每单位润滑剂质量的明星聚合物分子的聚合物分子/臂的总数是非减少时间的函数。结果表明,数值计算的聚合物分子量分布和粘度损失与相应的测试数据非常好。润滑剂粘度的损失取决于碱性原料,聚合物添加剂和降解制度的性质。基于实验数据和计算结果,粘度损失的两个润滑剂在不同平均分子量的烯烃共聚物粘度调节剂配制的两个润滑剂的约10%至27%的约10%至27%。

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