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首页> 外文期刊>CERAMICS INTERNATIONAL >Reinforcing effects of SiC whiskers and carbon nanoparticles in spark plasma sintered ZrB2 matrix composites
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Reinforcing effects of SiC whiskers and carbon nanoparticles in spark plasma sintered ZrB2 matrix composites

机译:SiC晶须和碳纳米粒子在火花等离子体烧结ZRB2基质复合材料中的增强效果

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摘要

ZrB2-based ceramics, reinforced with 25 vol% SiC whiskers (SiCw) as well as 0, 2.5, 5 and 7.5 wt% carbon nanoparticles (C-np), were prepared by spark plasma sintering (SPS) at 1900 degrees C under 40 MPa for 7 min in a vacuum environment. The influences of C-np content on densification behavior, microstructure evolution, hardness and fracture toughness of ZrB2-SiCw ceramics were investigated. Compared to the carbon-free sample, the grain growth of ZrB2 matrix was moderately decreased (similar to 20%) after the addition of C-np. The in-situ formation of B4C and ZrC phases was attributed to the elimination of surface oxide impurities through their chemical reactions with the C-np additive. All composite samples approached their theoretical densities. A hardness of 21.9 GPa was obtained for ZrB2-SiCw sample, but the hardness values linearly decreased by the addition of soft carbon additives and reached 14.6 GPa for the composite doped with 7.5 wt% C-np. The fracture toughness showed another trend and increased from 4.7 MPa m(1/2) for the carbon-free sample to 7.1 MPa m(1/2) for 5 wt% C-np-reinforced composite. The formation of new carbides and the presence of unreacted C-np resulted in toughness improvement. Various toughening mechanisms such as crack branching, bridging, and deflection were detected and discussed.
机译:ZRB2的陶瓷,用25体积%的SiC晶须(SiCW)以及0,2.5,5和7.5wt%的碳纳米粒子(C-NP)加固,通过火花等离子体烧结(SPS)在40岁以下的40℃下制备在真空环境中mPa为7分钟。研究了C-NP含量对ZRB2-SiCW陶瓷致密化行为,微观结构演化,硬度和断裂韧性的影响。与无碳样品相比,加入C-NP后,ZRB2基质的晶粒生长(类似于20%)。 B4C和ZRC相的原位形成归因于通过与C-NP添加剂的化学反应消除表面氧化物杂质。所有复合样品都接近了其理论密度。对于ZRB2-SiCW样品获得21.9GPa的硬度,但是通过加入软碳添加剂线性降低并达到14.6GPa的复合材料掺杂,掺杂有7.5wt%的C-NP。断裂韧性显示出另一种趋势并从4.7MPa m(1/2)增加到5wt%C-NP增强复合材料的7.1MPa m(1/2)。新碳化物的形成和未反应的C-NP的存在导致韧性改善。检测和讨论各种增韧机构,例如裂缝分支,桥接和偏转。

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