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Thermophysical and viscosimetric properties of environmentally acceptable lubricants

机译:环保型润滑剂的热物理和粘度特性

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Purpose - The use of alternative oils for the lubrication of automobile engines has a potential of ecological and technical advantages. It requires the detailed knowledge of several thermophysical and viscosimetric properties in a large temperature range. Design/methodology/approach - For 11 different oils, the density, the heat capacity, the thermal conductivity, the viscosity at ambient pressure and the pressure-viscosity at maximal 1,000 bar have been measured. The latter has been measured with a newly developed apparatus which is described in detail. Two hydrocarbon-based factory-fill oils and nine alternative oils have been tested. Five of the alternative oils are based partly or completely on esters, the other four on polyglycols, one of them additionally on water. Findings - Data for thermophysical and viscosimetric properties are given in form of diagrams and tables. The consequences for the cooling capacity and the film forming behavior are discussed. The latter is only slightly better for the factory-fill oils, compared to the alternative oils. Research limitations/implications - The pressure-viscosity is measured at up to 1,000 bar, which is lower than the maximum pressure in the tribological contacts of an engine. Practical implications - The published data can be used to calculate tribological contacts which are lubricated with alternative engine oils or with actually used factory-fill oils. This might help to decide if esters or polyglycols are superior as engine oils. Originality/value - The results of this test program might be helpful for engineers who are interested in using alternative lubricants in tribosystems.
机译:目的-使用替代油润滑汽车发动机具有潜在的生态和技术优势。它需要在大温度范围内具有几种热物理和粘度特性的详细知识。设计/方法/方法-对于11种不同的油,已经测量了密度,热容量,导热率,环境压力下的粘度和最大1,000 bar的压力-粘度。后者已经用新开发的设备进行了详细描述。已经测试了两种基于烃的工厂填充油和九种替代油。替代油中的五种部分或完全基于酯,另外四种基于聚乙二醇,其中一种另外基于水。结果-以图表和表格的形式给出了热物理和粘度特性的数据。讨论了冷却能力和成膜行为的后果。与替代油相比,后者对于工厂填充油仅稍好一点。研究的局限性/意义-压力-粘度的测量最高为1,000 bar,低于发动机摩擦接触中的最大压力。实际意义-所发布的数据可用于计算摩擦学接触,这些摩擦学可用替代的发动机油或实际使用的工厂填充油润滑。这可能有助于确定酯或聚乙二醇是否优于发动机油。原创性/价值-该测试程序的结果可能对希望在摩擦系统中使用替代润滑剂的工程师有所帮助。

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