首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Evaluation of kinetic parameters of thermal and oxidative decomposition of base oils by conventional, isothermal and modulated TGA, and pressure DSC
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Evaluation of kinetic parameters of thermal and oxidative decomposition of base oils by conventional, isothermal and modulated TGA, and pressure DSC

机译:通过常规,等温和调制的TGA和压力DSC评估基础油的热和氧化分解动力学参数

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摘要

Multigrade engine oils used in today's sophisticated engines are carefully engineered products. Different ingredients, such as viscosity index improvers, dispersants, antioxidants, detergents, antiwear agents, pour point depressants, etc. are added to the base oils to improve their performance as lubricants, significantly. However, the ultimate performance of the lubricant principally depends on the quality of the base oil. Therefore, understanding the degradation behaviour of the base oil is of significant importance. In this study, the kinetic parameters of the decomposition of different types and grades of base oils (all-natural, fully synthetic and semi-synthetic) have been investigated in detail by conventional and isothermal thermogravimetric analyses (TGA) as well as modulated TGA (MTGA((R))). Pressure DSC (PDSC) has been employed to evaluate the spontaneous ignition and oxidative degradation behaviour of the base oils. Base oils with higher viscosity within the same grade tend to degrade at higher temperatures. It appears that the degradation of the oils studied can be modelled by an nth-order mechanism and have similar activation energies of degradation under an inert atmosphere. The all-natural base oil ALOR100 is more resistant to oxidation than the semi-synthetic Yubase4 and fully synthetic PAO4 due to the presence of naturally occurring antioxidants. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 27]
机译:当今复杂发动机中使用的多级机油是经过精心设计的产品。将不同的成分(例如粘度指数改进剂,分散剂,抗氧化剂,洗涤剂,抗磨剂,降凝剂等)添加到基础油中,以显着提高其作为润滑剂的性能。但是,润滑剂的最终性能主要取决于基础油的质量。因此,了解基础油的降解行为非常重要。在这项研究中,已通过常规和等温热重分析(TGA)以及调制TGA对不同类型和等级的基础油(全天然,全合成和半合成)分解的动力学参数进行了详细研究。 MTGA(R))。压力DSC(PDSC)已用于评估基础油的自燃和氧化降解行为。同一等级内粘度较高的基础油在较高温度下倾向于降解。看来,所研究的油的降解可以通过n阶机理建模,并且在惰性气氛下具有相似的降解活化能。由于存在天然抗氧化剂,因此纯天然基础油ALOR100比半合成的Yubase4和完全合成的PAO4更耐氧化。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:27]

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