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Erosion-corrosion effect of nanocoolant on actual car water pump

机译:纳米中间在实际汽车水泵上的侵蚀腐蚀作用

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In automobile cooling system,water and ethylene glycol are usually used as coolant.For many years,nanofluid has been reported to enhance thermal properties of conventional heat transfer fluid due to dispersion of solid particles which exhibit superior thermal conductivity.Many past researchers found improvement of heat transfer rate in automobile cooling system by using nanofluid as coolant.However,there are very few reported on drawback such as tribological impact on components in automobile cooling system.Hence,this paper focused to determine erosion-corrosion effect of nanofluid on aluminium impeller in Perodua Kancil D37 water pump.Working parameters such as inlet pressure,coolant temperature and rpm of pump were in line with ASTM D2809-09 standard.Testing coolants were made up of con-osive water,ethylene glycol and graphene nanoplatelets.Each pump surface profile was inspected using 3D imaging microscope after undergoing 100 hours of testing continuously.Also,precise weight measurement was carried out before and after testing to determine total material loss.It was observed that corrosion effect was about the same for both base coolant and nanocoolant.Erosion-corrosion effect increased material loss when nanocoolant was used instead of base coolant.Based on ASTM 2809-09 standard,erosion-corrosion damage on impeller was found to be minimal and scored high rating in evaluation.Thus,both coolants can be considered to be incoiporated in future cooling system.
机译:在汽车冷却系统中,水和乙二醇通常用作冷却剂。对于多年,据报道,由于固体颗粒的分散,据报道,纳米流体提高了常规传热流体的热性质,其具有优异的导热性的固体颗粒。Many过去的研究人员发现了改进汽车冷却系统中的传热速率通过使用纳米流体作为冷却剂。然而,在汽车冷却系统中的摩擦学效果等缺点报告的情况下,本文重点是确定纳米流体对铝叶轮上的侵蚀腐蚀作用Perodua Kancil D37水泵。泵的Inlet压力,冷却剂温度和RPM等工程参数均符合ASTM D2809-09标准。截止液,由腐蚀水,乙二醇和石墨烯纳米片组成。泵表面轮廓在经过100小时的测试后使用3D成像显微镜检查.SO,精确的重量测量在测试之前和之后进行的评估以确定总物质损失。观察到碱冷却剂和纳米中间的腐蚀效果大致相同。使用纳米下华代替基础冷却剂时,腐蚀效果增加了材料损失。基于ASTM 2809-09标准,发现叶轮上的侵蚀腐蚀损坏是最小的并且在评估中得分高评级。本,两种冷却剂都可以被认为是在未来的冷却系统中被凝固。

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