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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >High-quality Ti(C,N)-based cermets via solid-state nitrogen-pressure sintering: Influence of the sintering atmosphere
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High-quality Ti(C,N)-based cermets via solid-state nitrogen-pressure sintering: Influence of the sintering atmosphere

机译:通过固态氮气烧结的高质量Ti(C,N)基于固态氮气烧结:烧结气氛的影响

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Owing to the denitrification behavior of Ti(C,N)-based cermets during the sintering process, nitrogen atmosphere sintering is essential for the fabrication of high-quality products. Disclosing the roles of the sintering atmosphere on the microstructure and properties of cermet is of significance. Herein, Ti(C,N)-based cermets were fabricated under six types of sintering atmosphere. Effects of sintering atmosphere on the microstructure, coercive force (Hc), specific saturation magnetization (Ms (%)), and mechanical properties of cermets were investigated. More rimless Ti(C,N) grains with increased fraction of black cores were formed with increasing the nitrogen partial pressure. Three types of gradient structure of cermets were confirmed caused by the different nitrogen activity at the liquid sintering state. Vacuum sintering induced the formation of thicker rims on smaller Ti(C,N) cores at the surface due to the low nitrogen potential, while fcc solid solutions rich in N was formed in nitrogen atmosphere. Vacuum sintered cermets showed the lowest Hc and Ms. (%) of 3.66 KA/m and 2.13%, owing to the denitrification process. High-quality Ti(C,N)-based cermets were achieved via the solid-state nitrogen atmosphere sintering, benefiting from the optimized core-rim structure, i.e. moderate thickness of rims and certain amount of black Ti(C,N) cores.
机译:由于Ti(C,N)的金属陶瓷在烧结过程中,氮气氛烧结对于制造高质量产品是必不可少的。揭示烧结气氛对金属陶瓷的微观结构和性质的作用具有重要意义。在此,在六种类型的烧结气氛下制造Ti(C,N)的金属陶瓷。研究了烧结气氛对微观结构,矫顽力(HC),特定饱和磁化强度(MS(%))和金属陶瓷的机械性能的影响。通过增加氮气压力,形成具有增加的黑色核的级分的无磁性Ti(C,N)晶粒。由液体烧结状态下的不同氮活性引起的三种类型的CERMet梯度结构。真空烧结由于低氮势而在表面处的较小Ti(C,N)芯上形成较厚的轮辋,而富含N的FCC固溶体在氮气氛中形成。由于反硝化过程,真空烧结的金属陶瓷显示最低的HC和MS(%)3.66ka / m和2.13%。通过固态氮气氛烧结实现高质量的Ti(C,N)基于固态氮气氛,从优化的核心边缘结构中受益,即边缘的中等厚度和一定量的黑色Ti(C,N)核心。

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