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首页> 外文期刊>Diamond and Related Materials >(107786)Role of graphite nano-flakes on the characteristics of ZrB_2-based composites reinforced with SiC whiskers
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(107786)Role of graphite nano-flakes on the characteristics of ZrB_2-based composites reinforced with SiC whiskers

机译:图石墨纳米薄片对Zrb_2基复合材料特性的作用,SIC晶须增强了ZrB_2的复合材料

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摘要

Spark plasma sintering technique was utilized to densify the hybrid ZrB_2-based UHTCs co-toughened with SiC whiskers and different weights of graphite nano-flakes. The role of nano-graphite on the structure, hardness, densification, and toughness characteristics of ZrB_2-SiC_w-graphite nanocomposites were inspected. Although all UHTC matrix composites approached to full densification, a 100% dense ceramic was obtained by the incorporation of 5 wt% graphite nano-flakes. The grain coarsening phenomenon stopped significantly in the presence of carbonaceous nano-additive. Phase and microstructural investigations revealed that no in-situ phases were formed during the SPS consolidation, owing to the non-reactivity of ZrB_2-Si_Cw-graphite system. The Vickers hardness dropped slightly from 22 to 19.5 GPa with increasing the nano-graphite content. However, the fracture toughness approached 6.2 MPa.m~(1/2) by the incorporation of 5 wt% graphite nano-flakes, remarkably tougher than that of graphitic-carbon-free ceramic with a toughness of 4.7 MPa-m~(1/2).
机译:采用火花等离子体烧结技术,使基于杂交ZRB_2的UHTC与SiC晶须和不同重量的石墨纳米薄片共搅拌。纳米石墨对ZRB_2-SIC_W-石墨纳米复合材料的结构,硬度,致密化和韧性特性的作用被检查。尽管所有UHTC基质复合材料都接近完全致密化,但通过掺入5wt%石墨纳米薄膜获得100%致密陶瓷。在含碳纳米添加剂存在下,晶粒粗化现象显着停止。相和微观结构的研究表明,由于ZRB_2-SI_CWW-石墨系统的非反应性,在SPS固结过程中没有形成原位相。随着纳米石墨含量的增加,维氏硬度略微从22至19.5GPa略微下降。然而,通过掺入5wt%石墨纳米薄片的裂缝韧性接近6.2mPa.m〜(1/2),比石墨无碳陶瓷的韧性显着更加难以为4.7mPa-m〜(1 / 2)。

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