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Effect of partial crystallization of an amorphous layer on the mechanical properties of ceramic/metal-glass coating by thermal spraying

机译:非晶层偏结晶对陶瓷/金属玻璃涂层机械性能的影响热喷涂

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On the basis of successful preparation of amorphous-ceramic composite coating by atmospheric plasma spraying, a nanostructure bond-coat was prepared in-situ by inducing partial crystallization of an amorphous layer through heat treatment. The unit mechanics contribution rate (UMCR) was proposed to evaluate the mechanical properties of the coating, and the interference of the substrate to the evaluation of the coating mechanical properties was removed. In this work, the mechanical properties of the coating were systematically evaluated at the macroscopic, mesoscopic and microscopic scales through three-point bending (3 PB), microhardness and nanoindentation tests, respectively. Results show that the nanoparticle-ceramic coatings formed by heat treatment have a higher hardness and Young's modulus. The mechanical properties at the micro scale were obviously better than those at the macro scale. A partial crystallization was observed in the amorphous bond-coats in the process of heat treatment, and a large number of nanoparticles and solid solution were formed in the nanoparticle-ceramic coatings, effectively hindering the crack growth and improving the coating performance.
机译:在通过大气等离子体喷涂的成功制备无定形陶瓷复合涂层的基础上,通过热处理使非晶层的部分结晶原位制备纳米结构粘合涂层。提出了单位力学贡献率(UMCR)以评估涂层的机械性能,并除去基板对涂层机械性能的评价的干扰。在这项工作中,通过分别通过三点弯曲(3pb),微硬度和纳米狭窄试验来系统地评估涂层的机械性能。结果表明,通过热处理形成的纳米粒子 - 陶瓷涂层具有更高的硬度和杨氏模量。微尺度的机械性能明显优于宏观规模的机械性能。在热处理过程中在无定形键 - 涂层中观察到部分结晶,并且在纳米颗粒 - 陶瓷涂料中形成大量纳米颗粒和固溶体,有效地阻碍裂纹生长并改善涂层性能。

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