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首页> 外文期刊>Tribology in Industry >Tribological Behavior of Thermal Spray Coatings, Deposited by HVOF and APS Techniques, and Composite Electrodeposits Ni/SiC at Both Room Temperature and 300 °C
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Tribological Behavior of Thermal Spray Coatings, Deposited by HVOF and APS Techniques, and Composite Electrodeposits Ni/SiC at Both Room Temperature and 300 °C

机译:HVOF和APS技术沉积的热喷涂层的摩擦学行为,以及在室温和300°C时复合电沉积Ni / SiC的行为

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The Both the thermal spray and the electroplating coatings are widely used because of their high wear resistance combined with good corrosion resistance. In particular the addition of both micro particles or nano‐particles to the electro deposited coatings could lead to an increase of the mechanical properties, caused by the change of the coating microstructure. The thermal spray coatings were deposited following industrial standards procedures, while the Ni/SiC composite coatings were produced at laboratory scale using both micro‐and nano‐sized ceramic particles. All the produced coatings were characterized regarding their microstructure,mechanical properties and the wear resistance. The tribological properties were analyzed using a tribometer under ball on disk configuration at both room temperature and 300oC. The results showed that the cermet thermal spray coatings have a high wear resistance, while the Ni nano‐composite showed good anti wear properties compared to the harder ceramic/cermet coatings deposited by thermal spray technique.
机译:热喷涂和电镀涂层由于其高耐磨性和良好的耐腐蚀性而被广泛使用。特别是将微粒或纳米微粒都添加到电沉积涂层中,可能会由于涂层微观结构的变化而导致机械性能的提高。按照工业标准程序沉积热喷涂层,同时使用微米和纳米尺寸的陶瓷颗粒在实验室规模生产Ni / SiC复合涂层。对所有生产的涂层进行了微观结构,力学性能和耐磨性的表征。在室温和300oC下,使用摩擦计在盘面上的球形配置下分析了摩擦学特性。结果表明,与通过热喷涂技术沉积的较硬的陶瓷/金属陶瓷涂层相比,金属陶瓷热喷涂涂层具有较高的耐磨性,而镍纳米复合材料则具有良好的抗磨性能。

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