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Characterization of Thermal Spray Coatings for Cylinder Running Surfaces of Diesel Engines

机译:柴油机气缸工作表面热喷涂涂层的表征

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Future demands of diesel engines are about low-friction and wear-resistant materials in order to increase the efficiency and achieve environmentally sound solutions. Thus, thermally sprayed Fe-base coatings are investigated for application as cylinder running surfaces in cast aluminum crankcases. They should allow the desired combination of structural, productional, and topographical properties required in Diesel engines. To understand the influence of the characteristic microstructures on the integrity of the composites the coatings have to be examined in laboratory tests in terms of different loading situations. Cavitation tests were carried out where the tribological stability of these coatings and their ability to resist high-frequency cyclic impact stresses are revealed. Composite samples (base material and coating) were investigated in terms of crack initiation in a scanning electron microscope with an in situ 3-point-bending test. The endurance under cyclic mechanical stresses was tested with a 4-point-bending stress controlled test.
机译:柴油发动机的未来需求是使用低摩擦和耐磨的材料,以提高效率并实现对环境无害的解决方案。因此,研究了热喷涂铁基涂料在铸铝曲轴箱中作为汽缸工作面的应用。它们应允许柴油发动机所需的结构,生产和形貌特性的理想组合。为了了解特征微结构对复合材料完整性的影响,必须在实验室测试中根据不同的加载情况检查涂层。进行了气蚀测试,揭示了这些涂层的摩擦学稳定性及其抵抗高频循环冲击应力的能力。在具有原位三点弯曲测试的扫描电子显微镜中,研究了复合材料样品(基础材料和涂层)的裂纹萌生。用四点弯曲应力控制测试对循环机械应力下的耐久性进行了测试。

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