首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A comparative study on microstructure and properties of Ti(C,N)-based cermets with the various Cr doping methods
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A comparative study on microstructure and properties of Ti(C,N)-based cermets with the various Cr doping methods

机译:用各种CR掺杂方法对三种(C,N)基于CERMets的微观结构和性质的对比研究

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摘要

In this work, the effects of chromium doping methods on the microstructures and properties of Ti(C,N)-based cermets were investigated systematically. The results showed that the existence state of Cr element in the cermet was influenced by the different doping methods. The additive pure Cr powders might cause the appearance of Cr particles and solutions in the binder phase of cermets. However, with the addition of NiCr powders, the Cr element might distribute in the binder phase of cermet. The Cr3C2 addition could make Cr element disperse in the rim and binder phase. Moreover, the Cr atoms dissolved into binder phase might have the solid solution strengthening effect on the binder phase, which increased the hardness of cermets. The Cr element in binder phase could improve the oxidation resistance of cermets owing to the existence of chromium oxide layer in the internal oxidation region. Furthermore, the diffusion process of Mo atoms to the surface during oxidation was prevented by the dissolved Cr element in the binder phase, which led to the increased bonding strength between oxidation layer and unoxidized substrate. In addition, a larger amount NiCr powder addition had the excellent reinforcing effect on the corrosion resistance of cermets due to the appearance of stable chromium oxide film on the binder phase. (C) 2019 Elsevier B.V. All rights reserved.
机译:在这项工作中,对Ti(C,N)基金属陶瓷的微结构和属性铬掺杂方法的效果进行了系统的研究。结果表明,在金属陶瓷Cr元素的存在状态是由不同的掺杂方法的影响。添加剂纯的Cr粉末可能会导致Cr颗粒和溶液中的金属陶瓷的粘结相的外观。然而,增加镍铬粉,铬元素可能在金属陶瓷的粘结相分布。该Cr3C2复合除了可以使Cr元素分散在轮缘和粘结相。此外,溶解于粘结相中的Cr原子可能对粘结相,从而增加金属陶瓷硬度的固溶强化作用。在粘结相中的Cr元素可以改善由于氧化铬层的内部氧化区中存在金属陶瓷的耐氧化性。此外,通过在粘结相中溶解的Cr元素,从而导致氧化层和未氧化的基片之间的增加的接合强度防止氧化过程中的Mo原子向表面的扩散过程。此外,更大量的NiCr粉末添加对金属陶瓷的耐腐蚀性优异的补强效果,由于稳定​​氧化铬膜的上粘结相的外观。 (c)2019 Elsevier B.v.保留所有权利。

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