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首页> 外文期刊>Surface review and letters >INVESTIGATION OF THE WEAR CHARACTERISTICS OF THERMAL BARRIER COATING IN A BIODIESEL ENGINE
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INVESTIGATION OF THE WEAR CHARACTERISTICS OF THERMAL BARRIER COATING IN A BIODIESEL ENGINE

机译:生物柴油发动机中热阻挡涂层磨损特性研究

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摘要

This study applied piston-valve coating for an engine that worked 100% on biodiesel fuel and investigated the wear characteristics after the experiment. The plasma spraying method was used as the coating method. Al2O3 and ZrO2 ceramics, which are the most frequently used ones in the literature, were selected as coating material. The deformations on the coated and uncoated surfaces were determined after running the engine at different time intervals. The deformations on the piston surfaces were interpreted by conducting SEM and EDX analyses. In particular, the deformation on the coating material, thermal fatigue cracks, abrasive wear and elements that clang to the piston surface after combustion were determined. Additionally, post-combustion engine oil analysis was carried out to determine the elements that were released as a result of the thermal wear in connection to combustion. The relationship of the coating with thermal efficiency was investigated for all types of coatings by determining temperatures from a certain point on the engine by using a thermal camera and a surface temperature measurement device. As a result of the SEM, EDX and engine oil (ICP) analyses, it was seen that the elements that are released as a result of wear such as Al, Fe and Cr had lower quantities with the aluminum oxide (Al2O3) coating with the Nickel-Chromium (Ni- Cr) bonding agent in comparison to the other coating materials. Additionally, as a result of oil analyses, the coated engine was observed to have more positive outcomes in comparison to the uncoated engine.
机译:这项研究应用于在生物柴油燃料上工作100%的发动机的活塞阀涂层,并在实验后调查磨损特性。等离子体喷涂方法用作涂布方法。选择作为涂料的涂料中最常使用的Al2O3和ZrO2陶瓷。在以不同的时间间隔运行发动机之后确定涂覆和未涂覆的表面上的变形。通过进行SEM和EDX分析来解释活塞表面上的变形。特别地,测定燃烧后涂层材料上的变形,热疲劳裂缝,钝化活塞表面的磨料磨损和元件。另外,进行了燃烧后发动机油分析以确定由于与燃烧有关的热磨损而被释放的元件。通过使用热照相机和表面温度测量装置,通过确定来自发动机上的某个点的温度来研究所有类型的涂层的涂层的关系。由于SEM,EDX和发动机油(ICP)分析,看来,由于诸如Al,Fe和Cr的磨损而被释放的元件具有较低的氧化铝(Al2O3)涂层的含量较低与其他涂料相比,镍铬(Ni-Cr)粘合剂。另外,由于油分析的结果,观察到涂覆的发动机与未涂层发动机相比具有更大的阳性结果。

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