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FTIR Spectrum Interpretation of Lubricants with Treatment of Variation Mileage

机译:润滑脂的FTIR光谱解释和变化里程的处理

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Infrared spectroscopy is a widely used technique for the analysis of lubricating oil, lubricating analyzed in this study on Motorcycle. Taking advantage of FTIR spectroscopy (Fourier Transform Infra Red) in the process of identifying the molecular structure of a compound. Samples lubricants used are mineral and Lubricants Synthetic Lubricants. The goal is to see is there a shift in the spectrum of functional groups and intensity of absorption. In the analysis of changes in or degradation of the lubricant in the FTIR spectrum, lubricants mineral or synthetic, assessed based on several parameters lubricants namely, Oxidation (carbon) (1700 cm-1), Nitration (1630 cm-1), Soot (2000 cm-1), Sulfation (1150 cm-1) and water (3400 cm-1). The results showed that based on the analysis of the spectrum for some parameter, synthetic lubricants have the advantage compared to mineral lubricants. Synthetic lubricants have better viscosity stability compared to mineral lubricants, this is because synthetic lubricants generally have better chemical properties / its chemical structure uniform than mineral lubricants. The use of synthetic lubricants have an impact on fuel consumption savings, this is because its viscosity is most stable.
机译:红外光谱法是一种广泛用于分析润滑油的技术,本次摩托车研究中对润滑油进行了分析。在识别化合物分子结构的过程中利用FTIR光谱(傅立叶变换红外)。使用的样品润滑剂是矿物润滑剂和合成润滑剂。目的是看到官能团的光谱和吸收强度发生变化。在FTIR光谱中润滑剂的变化或降解分析中,基于多种参数对润滑剂进行了矿物或合成润滑剂评估,即氧化(碳)(1700 cm-1),硝化(1630 cm-1),烟灰( 2000 cm-1),硫酸盐(1150 cm-1)和水(3400 cm-1)。结果表明,根据某些参数的光谱分析,与矿物润滑剂相比,合成润滑剂具有优势。与矿物润滑剂相比,合成润滑剂具有更好的粘度稳定性,这是因为合成润滑剂通常具有比矿物润滑剂更好的化学特性/化学结构均匀性。合成润滑剂的使用对节省油耗有影响,这是因为其粘度最稳定。

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