Low-cost, eco-friendly diesel with a thermally insulated combustion chamber

V. Merzlikin, Г МерзликинВ., A. Makarov, Р МакаровА., S. Smirnov, В СмирновС., A. Kostukov, В КостюковА., Marcos Gutiérrez, Гутиеррес Маркос Охеда
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Abstract

The performance of a diesel engine has been studied using well-known types of ceramic thermal insulating HIC or thermal barrier TBC coatings. This problem is relevant for a diesel engine with low thermal losses of the combustion chamber, in which the intense radiant component (in the near-IR range) reaches ∼ 50 % of the total heat flow. In this paper, the authors continued to study these coatings, but as translucent (SHICs or STBCs) with bulk absorption of penetrating radiant energy. The spectrophotometric modeling of the optical parameters of these coatings made it possible to estimate the characteristics of the temperature field being formed with a reduced near-surface temperature gradient (compared to opaque coatings), causing a significant decrease in heat loss through the heat-insulated piston. A translucent STBC coating based on partially stabilized zirconia (PSZ ceramics ZrO2 + 8 % Y2O3) was chosen, determining the formation of the optimum temperature profile in the piston head. For bench testing was used experimental single-cylinder tractor diesel. With a rotation frequency of n > 2800 1/min, the heat loss did not exceed 0,2 MW/m2 through the bottom of the piston with the heat-shielding layer. The tests performed showed a lower specific fuel consumption of ∼ 2-3 % in comparison with the combustion chamber of a diesel engine with an uncoated ceramic piston. At the same time, torque and effective power increased by ∼ 2-5 %.
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低成本,环保柴油与隔热燃烧室
柴油机的性能已经研究使用知名类型的陶瓷隔热HIC或热障TBC涂层。这个问题与燃烧室热损失低的柴油发动机有关,其中强烈的辐射成分(在近红外范围内)达到总热流的50%。在本文中,作者继续研究这些涂层,但作为半透明的(SHICs或stbc),具有大量吸收穿透辐射能。通过对这些涂层光学参数的分光光度建模,可以估计出在近表面温度梯度降低(与不透明涂层相比)的情况下形成的温度场的特性,从而显著减少通过隔热活塞的热损失。选择了基于部分稳定氧化锆(PSZ陶瓷ZrO2 + 8% Y2O3)的半透明STBC涂层,确定了活塞头部最佳温度分布的形成。台架试验采用实验性单缸拖拉机柴油机。当旋转频率n > 28001 /min时,通过带隔热层的活塞底部的热损失不超过0.2 MW/m2。所进行的测试表明,与未涂覆陶瓷活塞的柴油发动机的燃烧室相比,比燃料消耗低~ 2- 3%。同时,扭矩和有效功率增加了~ 2- 5%。
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