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Oxidation Behavior of Multilayer Hard Coatings (TiCN/Al2O3/TiN) in Process of Recycling Coated Multicomponent Hardmetal Scrap

机译:多层硬质金属废料回收过程中多层硬质涂层(TiCN / Al2O3 / TiN)的氧化行为

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摘要

The coating is one of the biggest problems in the recycling of coated multicomponent hardmetal scraps. The isothermal oxidation behavior of WC-Co multicomponent cemented carbide inserts with a TiCN/Al2O3/TiN hard coating in the recycling process was investigated. The oxidation rate slowed down as the protective coating blocked element diffusion. A rapid oxidation rate was obtained when they were milled into powders and isothermally oxidized at 900 °C. A rapid path for element diffusion was provided by the defects, which were promoted by stress, expansion, and gas volatilization. Both the TiN and TiCN layers were oxidized to a porous TiO2 scale, while the Al2O3 phase remained and the dense Al2O3 layer acted as a barrier for its good oxidation resistance. Pieces of the Al2O3 layer were obviously seen in the final oxides. This provides critical information to reduce the negative effect of coatings and improve the performance of recycled WC powders and hard alloys.
机译:涂层是涂层多组分硬质金属废料回收中的最大问题之一。研究了带有TiCN / Al2O3 / TiN硬涂层的WC-Co多组分硬质合金刀片在循环过程中的等温氧化行为。由于保护涂层阻止了元素的扩散,氧化速度减慢了。将它们研磨成粉末并在900°C下等温氧化时,获得了快速的氧化速率。缺陷提供了元素扩散的快速途径,这些缺陷通过应力,膨胀和气体挥发促进。 TiN和TiCN层均被氧化为多孔TiO2鳞片,而Al2O3相保留,致密的Al2O3层对其良好的抗氧化性起着阻挡作用。在最终的氧化物中明显可见到Al2O3层的碎片。这提供了关键信息,以减少涂料的负面影响并提高回收的WC粉和硬质合金的性能。

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