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Microstructure evolution and mechanical properties of (Ti_(0.93)W_(0.07))C-xWC-20Ni cermets

机译:(Ti_(0.93)W_(0.07))C-xWC-20Ni金属陶瓷的组织演变和力学性能

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摘要

The microstructure and mechanical properties of (Ti_(0.93)W_(0.07))C-xWC-20Ni cermets were investigated to determine the effect of WC addition on the Ti-based solid solution cermet, (Ti_(0.93)W_(0.07))C-20Ni. (Ti_(0.93)W_(0.07))C-20Ni exhibited a homogeneous microstructure with no core-rim structure; however, a core-rim structure was observed with the addition of WC. The carbide size decreased sharply with the addition of 15 wt.% WC. After composition, very small coreless carbide (VSCC) particles abruptly emerged in the microstructure. These particles might be formed by homogeneous nucleation during the final stage of sintering and cooling after the outer rim formation period. With increasing WC addition, the hardness remained constant, whereas the toughness decreased. Compared with Ti(CN)-based cermets with similar compositions, the hardness and toughness of (Ti_(0.93)W_(0.07))C-xWC-20Ni cermets exhibited higher values. The refined microstructure of Ti-based solid solution cermets is considered to be responsible for the superior mechanical properties.
机译:研究了(Ti_(0.93)W_(0.07))C-xWC-20Ni金属陶瓷的显微组织和力学性能,以确定WC添加对Ti基固溶金属陶瓷(Ti_(0.93)W_(0.07))的影响。 C-20Ni。 (Ti_(0.93)W_(0.07))C-20Ni表现出均匀的微观结构,没有核-边缘结构;然而,在加入WC的情况下观察到了芯-边缘结构。加入15重量%的WC,碳化物尺寸急剧减小。组成后,非常小的无芯碳化物(VSCC)颗粒突然出现在微观结构中。这些颗粒可能是在外缘形成阶段之后的烧结和冷却的最后阶段,通过均相形核形成的。随着WC添加量的增加,硬度保持恒定,而韧性下降。与具有相似组成的基于Ti(CN)的金属陶瓷相比,(Ti_(0.93)W_(0.07))C-xWC-20Ni金属陶瓷的硬度和韧性显示出更高的值。钛基固溶金属陶瓷的精细微观结构被认为是优越的机械性能的原因。

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