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Development of silicide coatings to ensure the protection of Nb and silicide composites against high temperature oxidation

机译:开发硅化物涂层以确保保护Nb和硅化物复合材料免受高温氧化

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摘要

In thiswork,we describe the fabrication of coatings containing (TiNbXCr)_7Si_6 silicide (with X = Fe, Co andNi) by halide-activated pack-cementation on Nb and silicide composites. The coating oxidation performance is evaluated isothermally at temperatures ranging from 1100 °C to 1300 °C and cyclically at 1100 °C. In all the coating systems examined, the M_7Si_6 silicide formed in the protective coating and constituted the outmost layer for coatings containing Co, whereasM_6Si_5 and a Cr-rich silicide constituted the outmost compounds for Fe and Ni coatings, respectively. The results of isothermal oxidation tests show that all these compounds form protective oxide layers leading to very low mass gains, both at 1100 °C and 1200 °C. Under cyclic conditions at 1100 °C, coatings containing Co and Ni exhibited very long lifetimes, exceeding 2600 1-hour cycles. The beneficial effect of Ni and Co diminished at 1300 °C, due to rapid interdiffusion between substrate and coating in comparison to that found in the Fe containing coating.
机译:在这项工作中,我们描述了在Nb和硅化物复合材料上通过卤化物活化堆积法制备含(TiNbXCr)_7Si_6硅化物(X = Fe,Co和Ni)的涂层的方法。在1100°C至1300°C的温度范围内等温评估涂层氧化性能,并在1100°C的温度下周期性地评估涂层氧化性能。在所有检查的涂层系统中,在保护涂层中形成的M_7Si_6硅化物构成了包含Co的涂层的最外层,而M_6Si_5和富含Cr的硅化物分别构成了Fe和Ni涂层的最外层化合物。等温氧化测试的结果表明,所有这些化合物均形成了保护性氧化层,导致在1100°C和1200°C时极低的质量增加。在1100°C的循环条件下,含Co和Ni的涂层的使用寿命非常长,超过2600个1小时循环。 Ni和Co的有益作用在1300°C时降低了,这是因为与含Fe涂层相比,基底和涂层之间的快速相互扩散。

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