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Microstructure and Corrosion Behavior of (CoCrFeNi)95Nb5 High-Entropy Alloy Coating Fabricated by Plasma Spraying

机译:等离子喷涂制备的(CoCrFeNi)95Nb5高熵合金涂层的组织和腐蚀行为

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摘要

In this paper, the (CoCrFeNi)95Nb5 high-entropy alloy (HEA) coating with a thickness of 500 μm on Q235 steel substrate was fabricated by plasma spraying. The microscopic results showed that a new Laves phase is formed in the (CoCrFeNi)95Nb5 HEA coating compared to the HEA powder, and elemental segregation occurs between the dendrites and the interdendrites of the coating, while the interdendritic phase enriches with the Cr and Nb. The phase composition change and elemental segregation behavior were mainly due to the faster cooling rate of the plasma spraying technique. At the junction of the coating and the substrate, the HEA coating bonded well to the substrate; in addition, the width of transition zone was merely 2 μm. The microhardness of the (CoCrFeNi)95Nb5 HEA coating was 321 HV0.5, which is significantly higher than that of the substrate. In terms of corrosion resistance, the (CoCrFeNi)95Nb5 HEA coating has good corrosion resistance in NaCl solution. Although the corrosion form was pitting corrosion, the pitting potential of the (CoCrFeNi)95Nb5 HEA coating was significantly higher than that of other coatings, which was mainly because of the dense passivation film formed by Cr and Nb on the surface of the coating. Once the passivation film was destroyed by Cl, the selective corrosion occurred on the surface of the (CoCrFeNi)95Nb5 HEA coating. In summary, the (CoCrFeNi)95Nb5 HEA coating prepared by plasma spraying technology can significantly improve the corrosion resistance and mechanical properties of the Q235 steel substrate.
机译:通过等离子喷涂在Q235钢基底上制备了厚度为500μm的(CoCrFeNi)95Nb5高熵合金(HEA)涂层。显微结果表明,与HEA粉末相比,(CoCrFeNi)95Nb5 HEA涂层中形成了新的Laves相,并且元素的偏析发生在涂层的枝晶和枝晶之间,而枝晶间相则富含Cr和Nb。相组成的变化和元素的偏析行为主要是由于等离子喷涂技术冷却速度更快。在涂层和基材的接合处,HEA涂层与基材良好粘合;另外,过渡区的宽度仅为2μm。 (CoCrFeNi)95Nb5 HEA涂层的显微硬度为321 HV0.5,显着高于基材的显微硬度。就耐腐蚀性而言,(CoCrFeNi)95Nb5 HEA涂层在NaCl溶液中具有良好的耐腐蚀性。尽管腐蚀形式为点蚀,但(CoCrFeNi)95Nb5 HEA涂层的点蚀电位明显高于其他涂层,这主要是由于Cr和Nb在涂层表面形成了致密的钝化膜。一旦钝化膜被Cl -破坏,选择性腐蚀就会在(CoCrFeNi)95Nb5 HEA涂层的表面发生。总之,通过等离子喷涂技术制备的(CoCrFeNi)95Nb5 HEA涂层可以显着提高Q235钢基材的耐腐蚀性和机械性能。

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