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High Shear Rate Rheology of Lower Viscosity Engine Oils Over a Temperature Range of 80°C to 150°C Using the Tapered Bearing Simulator (TBS) Viscometer

机译:使用锥形轴承模拟器(TBS)粘度计,高温粘度发动机油的高剪切速率流变率下降到80℃至150℃。

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In 2005, the growing emphasis on fuel efficiency coupled with the long-recognized negative effects of viscous friction caused by engine hydrodynamic lubrication, led to considerations of the benefits of lower viscosity engine oils by the SAE Engine Oil Viscosity Classification (EOVC) Task Force. More recently these considerations were given further impetus by OEM enquiry regarding modification of the SAE Viscosity Classification System to include oils of lower viscosity specification than that of SAE 20. For the EOVC Task Force, such considerations of commercially available, significantly lower viscosity engine oils, also produced a need to reassess the precision of high shear rate viscometry of such engine oils as presently practiced at 150°C - as well as interest in temperatures such as 100°C and 120°C believed more representative of engine operating conditions. This paper presents studies of the precision of high shear rate viscometry on lower-viscosity simulated engine oils at temperatures of 80°, 100°, 120°, and 150°C at a shear rate of one million reciprocal seconds (1.0·10~6 s~(-1)) using the Tapered Bearing Simulator (TBS) Viscometer. These viscosity values were then analyzed for conformity to the MacCoull, Walther, Wright viscosity-temperature and the ability to interpolate high-shear rate viscosities. Lastly, the ability to determine the high shear rate viscosities of oils at various chosen temperatures was applied in appraising the fuel efficiency benefits of such oils by determining the Viscous Fuel Efficiency Index. These values are, in turn, compared both to one another and to the Index values of several hundred North American engine oils collected by the Institute of Materials in 2008 and 2009 for their yearly engine oil database. The paper is the authoritative source for the abstract.
机译:2005年,越来越强调燃料效率与发动机流体动力润滑引起的粘性摩擦的长识别的负面影响相结合,导致SAE发动机油粘度分类(EOVC)任务力的较低粘度发动机油的益处的介绍。最近,这些考虑因素通过关于SAE粘度分类系统的修饰,包括较低粘度规格的油的OEM调查,而不是SAE 20的油。对于EOVC任务力,这些考虑可商购,显着降低的粘度发动机油,还需要重新评估这些发动机油的高剪切速率粘度粘度的精度,如在150°C的目前实践 - 以及在100°C和120°C的温度下的兴趣相信更多的发动机操作条件。本文介绍了在80°,100°,120°和150°C的温度下较低剪切速率粘度测定的精度,以80°,剪切速度为100万次互惠秒(1.0·10〜6 S〜(-1))使用锥形轴承模拟器(TBS)粘度计。然后分析这些粘度值以符合Maccoull,Walther,Wright粘度温度和内插高剪切速率粘度的能力。最后,通过确定粘性燃料效率指数来评估这种油的燃料效率优势,应用在各种所选温度下确定油的高剪切速率粘度的能力。反过来,这些值又相互比较了2008年和2009年由材料研究所收集的数百亿北美发动机油的指数值为年代发动机油数据库。本文是摘要的权威来源。

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