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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Effects of graphite flake diameter on mechanical properties and thermal shock behavior of ZrB_2-nanoSiC-graphite ceramics
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Effects of graphite flake diameter on mechanical properties and thermal shock behavior of ZrB_2-nanoSiC-graphite ceramics

机译:石墨鳞片直径对ZrB_2-nanoSiC-石墨陶瓷力学性能和热冲击行为的影响

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摘要

ZrB_2-20 vol.% nanoSiC-20 vol.% graphite (ZS_(np)G) ceramics that contained graphite flakes with different diameters were investigated to determine the effects of graphite flake diameter on the microstructure and mechanical properties, as well as thermal shock resistance. The results showed that the flexural strength and relative density of ZS_(np)G ceramics firstly increased and then decreased with increasing the diameter of graphite, whereas the fracture toughness did not change significantly. The improvement in the flexural strength of ZS_(np)G ceramics was strongly dependent on the controlling of graphite distribution, the reduction of the length of the microcrack that resulted from thermal residual stress and the presence of intragranular nano-sized SiC particles. The calculated thermal shock parameters revealed that the graphite with finer starting diameter had a beneficial effect on the blocking of the crack initiation and the graphite with larger diameter restrained the crack propagation of ZS_(np)G ceramics.
机译:研究了ZrB_2-20体积%纳米SiC-20体积%的石墨(ZS_(np)G)陶瓷,这些陶瓷包含不同直径的石墨薄片,以确定石墨薄片直径对显微组织和力学性能以及热冲击的影响抵抗性。结果表明,随着石墨直径的增加,ZS_(np)G陶瓷的抗弯强度和相对密度先增大后减小,而断裂韧性无明显变化。 ZS_(np)G陶瓷抗弯强度的提高在很大程度上取决于石墨分布的控制,由于热残余应力和晶粒内纳米尺寸SiC颗粒的存在而导致的微裂纹长度的减少。计算得出的热冲击参数表明,起始直径较小的石墨对阻止裂纹萌生具有有益的作用,而较大直径的石墨则抑制了ZS_(np)G陶瓷的裂纹扩展。

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