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Thermal Shock Behaviors of Laser Cladding NiCoCrAlY Coatings strengthened by Nanometric SiC particles

机译:激光覆层的热冲击行为通过纳米SiC颗粒加固的铌涂层

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Three NiCoCrAlY coatings strengthened by different contents of nano-SiCp (nanometric SiC particles)were prepared on Ni-based superalloy substrates using crosscurrent CO_2 laser, and the thermal shock test of these coatings was conducted by cycling between 1050°C and room temperature (10-15°C). The spalled area in the oxide scale of coatings after 10 thermal shock cycles and the thermal shock cracks in the cross-section of coatings after 100 thermal shock cycles were investigated using SEM, OM, and other means. The results show that the thermal shock resistances of NiCoCrAlY coatings are improved after adding nano-SiCp. Among nano-SiCp-added coatings, the coating added with 1.0 wt% nano-SiCp performs best. After 10 thermal shock cycles, there is a slight spallation whose area is only 2.65% in the oxide scale of the coating; after 100 thermal shock cycles, no internal crack is observed in the cross-section, and the amount and size of propagating cracks are slight.
机译:在使用横电流CO_2激光器的基于Ni的超合金基材上制备三种通过纳米SICP(纳米SiC颗粒)的不同含量加强的铌涂层,并通过循环在1050℃和室温之间进行这些涂层的热冲击试验(10 -15°C)。使用SEM,OM和其他方式研究了10个热冲击循环后涂层的氧化物尺寸的涂层型涂层横截面和涂层横截面后的热冲击裂缝。结果表明,加入纳米SICP后,改善了NicoCraly涂层的热冲击性。在纳米SICP加入的涂层中,加入1.0wt%纳米SICP的涂层最佳。在10个热冲击循环之后,有一个轻微的介质,该区域在涂层的氧化物量表中仅为2.65%;在100次热冲击循环之后,在横截面中没有观察到内部裂纹,并且传播裂缝的量和尺寸轻微。

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