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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Synthesis, microstructure and mechanical properties of (Zr,Ti)B2-(Zr,Ti)N composites prepared by spark plasma sintering
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Synthesis, microstructure and mechanical properties of (Zr,Ti)B2-(Zr,Ti)N composites prepared by spark plasma sintering

机译:火花等离子体烧结制备(Zr,Ti)B2-(Zr,Ti)N复合材料的合成,显微组织和力学性能

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摘要

(Zr,Ti)B_2-(Zr,Ti)N composites were fabricated by spark plasma sintering (SPS) using ZrB_2 and TiN powders as initial materials. The adopted TiN contents in the initial compositions were 0, 4,9, and IS wt%, respectively. During the sintering process, the reaction between ZrB_2 and TiN first produced TiB_2 and ZrN and then (Zr,Ti)B2 and (Zr,Ti)N were formed through the solid solutions between Zrlfe and TiB_2, and between ZrN and TiN, respectively. When using 18 wt% TiN, the solid solutions of (Zr,Ti}B_2 and (Zr,Ti)N finished at 1600 °C. Above 1900 °C, the solid solution of (Zr,Ti)N reached saturation in all the composites. With the increasing (Zr,Ti)N content in the composites, the finer microstructure was obtained due to the inhibiting effect of (Zr,Ti)N particles on the growth of (Zr,Ti)B2 grains. The mechanical properties investigation showed that fracture toughness of composites increased with the increment of (Zr,Ti)N content.
机译:(Zr,Ti)B_2-(Zr,Ti)N复合材料是通过火花等离子体烧结(SPS)以ZrB_2和TiN粉末为原料制备的。初始组成中采用的TiN含量分别为0、4、9和IS wt%。在烧结过程中,ZrB_2和TiN之间的反应首先产生TiB_2和ZrN,然后分别通过Zrlfe和TiB_2之间以及ZrN和TiN之间的固溶体形成(Zr,Ti)B2和(Zr,Ti)N。当使用18 wt%的TiN时,(Zr,Ti} B_2和(Zr,Ti)N的固溶体在1600°C时完成。在1900°C以上时,(Zr,Ti)N的固溶体在所有随着(Zr,Ti)N含量的增加,由于(Zr,Ti)N颗粒对(Zr,Ti)B2晶粒生长的抑制作用,获得了更细的组织。结果表明,复合材料的断裂韧性随(Zr,Ti)N含量的增加而增加。

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