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Development of Novel Fe-Based Coating Systems for Internal Combustion Engines

机译:用于内燃机的新型Fe系涂层系统的研制

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摘要

Nowadays, combustion engines are the most common way to power vehicles. Thereby, losses occur due to cooling, exhaust gas and friction. With regard to frictional losses, highest potentials for optimization can be found in the tribological system of the inner surface of combustion chamber and piston ring. Besides friction, corrosive stress increases, e.g., due to utilization of exhaust gas recovery. In order to save energy, reduce emissions and enhance the life span of combustion engines, the demand for innovative coating material systems, especially for the inner surface of combustion chamber, increases. This study focuses on the development of innovative iron-based coating materials for the combustion chamber. As a first step, the plasma transferred wire arc and rotating single wire arc (RSW) technologies were compared using 0.8% C-steel as a reference. Subsequently, RSW was used for coating deposition using an innovative iron-based feedstock material. In order to improve wear and corrosion resistance, boron and chromium were added to the feedstock material. After deposition, different honing topographies were manufactured and compared under tribological load. Furthermore, electrochemical corrosion tests were conducted using an electrolyte simulating the exhaust gas concentrate. Especially with regard to corrosion, the novel coating system FeCrBMn showed promising results.
机译:如今,燃烧发动机是电力车辆最常见的方式。因此,由于冷却,废气和摩擦,发生损耗。关于摩擦损失,可以在燃烧室内表面和活塞环的摩擦学系统中找到最高的优化潜力。除了摩擦之外,由于利用废气回收,腐蚀性应力增加。为了节省能源,减少排放并增强燃烧发动机的寿命,对创新涂层材料系统的需求,特别是对于燃烧室内表面增加。本研究侧重于开发用于燃烧室的创新铁基涂料。作为第一步,使用0.8%C-钢作为参考,将等离子体转移的线弧和旋转单线弧(RSW)技术进行比较。随后,RSW用于使用创新的铁基原料材料涂覆沉积。为了提高耐磨和耐腐蚀性,将硼和铬加入到原料材料中。在沉积后,在摩擦学载荷下制造并比较了不同的珩磨拓扑。此外,使用模拟废气浓缩物的电解质进行电化学腐蚀试验。特别是关于腐蚀,新型涂层系统Fecrbmn显示出有前途的结果。

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