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ESTIMATION OF ENERGY CONSERVATION IN INTERNAL COMBUSTION ENGINE VEHICLES USING IONIC LIQUID AS AN ADDITIVE

机译:使用离子液体作为添加剂的内燃机车辆节能估算

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Lubricants play a vital role in improving energy efficiency and reducing friction in any type of frictional contact. The automotive industry is facing strict regulations in terms of emissions from the petroleum fuel. Strict government norms are compelling automotive manufacturers to push their technological limits to improve the fuel economy and emissions from their vehicles. Improving the efficiency of the engine will ultimately result in saving fuel thus improving the fuel economy of the engine. Concerning energy consumption; 33% of the fuel energy developed by combustion of fuel is dissipated to overcome the friction losses in the vehicle [1]. Out of this, 11.56% of the total fuel energy is lost in engine system. The distribution of this 11.56% fuel energy lost in engine system includes 3.5% consumed in bearings, 1.16% in pumping and hydraulic viscous losses, 5.2% and 1.73% consumed in piston assembly and valve train respectively [1]. If we consider losses only in bearings, piston assembly and valve train it results in 10.4% energy loss as compared to the total energy generated by the fuel. In the last decade, ionic liquids have shown potential as lubricants and lubricant additives. This study focusses on the use ionic liquids as additives for friction and wear reduction resulting in energy conservation in an internal combustion engine. In this work, the contact between piston ring and cylinder wall was simulated using a ball-on-flat tribometer. Most of the engine oils are based on mineral oils and results showed that adding 1% of the ionic liquid to mineral oil reduced friction loses by 27% [2], which corresponds to conserving 2.8% of fuel energy if just the frictional loss in piston assembly, valve train and bearing are considered. In the United States, there are 253 million vehicles on average consuming 678 gallons of fuel per year [3], the use of ionic liquid can save an estimated 4.8 billion gallons of fuel per year, which results in estimated saving of 11.56 billion dollars.
机译:润滑油在提高能源效率和在任何类型的摩擦接触减少摩擦至关重要的作用。汽车行业正面临着从石油燃料排放方面的严格规定。严格规范政府引人注目的是汽车制造商可以把自己的技术极限,以提高燃油经济性和排放从他们的车辆。提高发动机的效率,最终将导致节省燃料从而提高了发动机的燃油经济性。关于能源消耗问题;通过燃料的燃烧研制的燃料能量的33%被消耗,以克服在车辆[1]中的摩擦损失。出于这一点,总燃料能量的11.56%,是失去了在发动机系统。在发动机系统丢失此11.56%的燃料能量的分布包括3.5%轴承消耗,1.16%在泵送和液压粘滞损失,5.2%和1.73%在活塞阀分别列车[1]消耗组件和。如果我们只考虑在轴承损失,活塞组件和气门传动它导致10.4%的能量损失相比,由燃料产生的总能量。在过去十年中,离子液体已显示作为润滑剂和润滑油添加剂的潜力。本研究论点集中于使用离子液体作为添加剂用于摩擦并导致节能在内燃发动机的磨损减少。在这项工作中,活塞环和汽缸壁之间的接触采用球 - 平面摩擦计进行了模拟。大部分的发动机油的基于矿物油和结果表明,添加离子液体的1%至矿物油减少的摩擦了27%[2],失去其对应于如果只是在活塞摩擦损失节约燃料能量的2.8%组件,气门机构和轴承被考虑。在美国,平均有2.53亿辆每年消耗[3]678加仑燃料,利用离子液体可以每年节省的估计有480十亿加仑的燃料,这会导致估计节省11.56十亿美元。

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