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Computerized Experimental Investigation on Performance Exhaust Emission of Twin Cylinder Adiabatic Diesel Engine Coated with YSZ

机译:YSZ涂层双缸绝热柴油机性能与废气排放的计算机实验研究

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The fuel consumption and performance of the Internal Combustion (IC) engine is improved by adopting concepts of an adiabatic engine. An experimental investigation for different load conditions is carried out on a water-cooled, constant-speed, twin-cylinder diesel engine. This research is intended to emphasize energy balance and emission characteristic for standard uncoated base engine and adiabatic engine. The inner walls of diesel engine combustion chamber are thermally insulated by a top coat of Metco 204NS yttria-stabilized zirconia (Y_2O_3ZrO_2) powder (YSZ) of a thickness of 350 mm using plasma spray coating technology. The same combustion chamber is also coated with thermal barrier coating (TBC) bond coats of AMDRY 962 Nickle chromium aluminum yttria of thickness of 150 mm. The NiCrAlY powder specially designed to produce coating’s resistance to hot corrosion. The combination of this ceramic material produces excellent high-temperature thermal barrier coating (TBC) resistant to thermal cycling stresses and strains. The engine valves, engine heads, and engine pistons were thermal barrier ceramic coated and computerized experimental results were compared to the base engine. Experimental results justified TBC engine to give a better diesel engine combustion cycle analysis. The main objective of this study is to increase power and torque parameters resulting in a decrease in fuel consumption. Furthermore, the exhaust emission parameter was found to be decreased. The noise level of the adiabatic engine was found satisfactorily.
机译:通过采用绝热引擎的概念来改善内燃(IC)发动机的燃料消耗和性能。对不同负载条件的实验研究是在水冷,恒速双缸柴油发动机上进行的。该研究旨在强调标准未涂层基本发动机和绝热引擎的能量平衡和排放特性。柴油发动机燃烧室的内壁通过等离子体喷涂技术的厚度为350mm的厚度的MetCO 204ns yttra稳定的氧化锆(Y_2O_3 ZRO_2)粉末(Y_2O_3 ZRO_2)粉末(Y_2O_3 ZRO_2)粉末(YSZ)的内壁。相同的燃烧室也涂覆热屏障涂层(TBC)粘合涂层的AMDRY 962镍铬铝炔铝的厚度为150mm。幼仔粉末专门设计用于生产涂层对热腐蚀的抵抗力。该陶瓷材料的组合为热循环应力和菌株产生了优异的高温热阻挡涂层(TBC)。发动机阀门,发动机头和发动机活塞是热屏障陶瓷涂层,并将计算机化的实验结果与基本发动机进行比较。实验结果是TBC发动机的理由,给出更好的柴油发动机燃烧循环分析。本研究的主要目的是提高功率和扭矩参数,导致燃料消耗降低。此外,发现废气发射参数减少。令人满意地发现了绝热引擎的噪音水平。

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