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Composite nanolubricants in automotive air conditioning system: An investigation on its performance

机译:汽车空调系统复合纳米磺脂磺脂磺脂磺脂磺脂磺脂磺脂磺酸值:对其性能的调查

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AAC system is an important and necessary system in a vehicle in giving thermal comfort to the automotive cars passenger by reducing the surrounding temperature.The experimental investigation on performance of AAC system using composite nanolubricant provides useful data for future development of automotive cars due to its efficiency in improving the system performance.The AAC test bench was developed and utilized from Perodua Kancil.Cooling capacity,compressor work and coefficient of performance(COP)of AAC system using pure lubricant and Al2O3-SiO2/PAG composite nanolubricants had been investigated at different refrigerant charges(95 to 155g)and different speeds(900 to 2100 rpm).The result shows that the cooling capacity and COP of composite nanolubricants increased compared to pure lubricant.Meanwhile,the compressor work was reduced.Cooling capacity and COP are relatively increased by 59.91% and 7.72% respectively compared to based lubricant.The maximum reduction achievement for compressor work is by 9.35% with 155g refrigerant charge and at 2100 rpm.Therefore,Al2O3-SiO2/PAG composite nanolubricants is recommended to be used as the compressor lubrication to enhance AAC performances system.
机译:AAC系统是车辆中的一个重要和必要的系统,通过减少周围温度给汽车汽车提供热舒适性。使用复合纳米磺酸的AAC系统性能的实验研究提供了由于其效率的未来开发的有用数据在提高系统性能方面,来自Perodua Kancil.cooling能力,使用纯润滑剂和Al2O3-SiO 2 / PAG复合纳米脂肪纳米冷却能力,压缩机工作和性能系数(COP)(COP),在不同的制冷剂上进行了研究收费(95至155g)和不同的速度(900到2100 rpm)。结果表明,与纯润滑剂相比,复合纳米脂磺酸的冷却能力和COP增加。偶尔,压缩机工作还原。冷却能力和COP相对增加与基础的润滑剂相比,59.91%和7.72%。补充的最大减少成就Essor Work含有155克制冷剂充电和2100 rpm的9.35%。因此,建议使用Al2O3-SiO 2 / PAG复合纳米脂磺酸作为压缩机润滑,以增强AAC性能系统。

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