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Lamellar bonding enhanced NiCr-Mo coating with comparable erosion resistance to similar bulk by plasma-spraying shell-core-structured powders

机译:层状粘合增强的NICR-MO涂层,具有可比腐蚀性的抗腐蚀性,通过等离子体喷涂壳芯结构粉末对类似体积的耐磨性

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NiCr-Mo composite coating was prepared by plasma spraying of shell-core-structured NiCr-Mo powders. The morphologies of the NiCr-Mo powders and microstructure of the corresponding NiCr-Mo coating were characterized by SEM. Furthermore, the erosion behavior of the NiCr-Mo coating at impact angles of both 30° and 90° was investigated, and was further compared with that of the Ni20Cr coating and the In-738 alloy bulk. Results showed that fully-dense and homogenous NiCr-Mo coating with excellent interface bonding and no pure Mo inclusions was obtained. Furthermore, the erosion test results showed that the erosion rate of the optimized NiCr-Mo coating is lower than that of NiCr coating at both impact angles. Moreover, the NiCr-Mo coating presented excellent erosion resistance which was comparable as that of In-738 alloy bulk, attributing to the fully-dense microstructure and metallurgical interface bonding within coating.
机译:通过壳芯结构的NiCr-Mo粉末等离子体喷涂制备NiCR-Mo复合涂层。通过SEM表征了NiCR-Mo粉末的形态和相应的NiCR-Mo涂层的微观结构。此外,研究了NiCR-Mo涂层在30°和90°的冲击角下的侵蚀行为,并进一步与Ni 20Cr涂层和738个合金块体进行比较。结果表明,获得具有优异界面粘合性的全密集和均匀的NICR-MO涂层,并且没有得到纯钼夹杂物。此外,侵蚀试验结果表明,优化的NiCR-Mo涂层的腐蚀速率低于两种冲击角的NiCr涂层的腐蚀速率。此外,NiCr-Mo涂层呈现出优异的抗腐蚀性,与738个合金体积相当,归因于涂层内的完全致密的微观结构和冶金界面粘合。

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