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首页> 外文期刊>Bulletin of materials science >Development and properties of advanced composites based on cork and nanometric silicon carbide-filled phenolic resin
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Development and properties of advanced composites based on cork and nanometric silicon carbide-filled phenolic resin

机译:基于软木和纳米碳化硅填充酚醛树脂的高级复合材料的开发和性能

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摘要

This paper presents the obtaining of advanced materials based on cork powder as reinforcement and phenolic resin (PR) with silicon carbide (nSiC) nanofiller as matrix with potential applications in aerospace industry. Three formulationswere obtained: one control sample PR/cork with no nanofiller, two nanofilled samples with 1 and 2 wt% nSiC loadings into the resin. The materials were tested by flexural and compressive mechanical tests to determine their strength and stiffness, to determine their friction coefficient by tribological tests, to determine their thermal decomposition behaviour by TG-DSC analysis and to evaluate their thermal behaviour by thermal shock tests when subjected to extreme temperature directly from room temperature. The material structure was analysed by SEM visualizing the fracture cross-section after mechanical testing. The test results illustrate that silicon carbide nanoparticles improve flexural and compressive strength, but also stiffness and friction coefficient, delay thermal decomposition onset and improve thermal shock resistance. All these sustain the PRSiC/cork materials as potential advanced materials candidates for thermal protection applications.
机译:本文介绍了以软木粉为增强材料和以碳化硅(nSiC)纳米填料为基质的酚醛树脂(PR)为基础的先进材料的获得,在航空航天工业中具有潜在的应用。获得了三种配方:一个不含纳米填料的对照样品PR /软木塞,两个具有1-2%(重量)nSiC填充到树脂中的纳米填料样品。通过弯曲和压缩机械测试对材料进行测试,以确定其强度和刚度,通过摩擦学测试确定其摩擦系数,通过TG-DSC分析确定其热分解行为,并通过热冲击测试评估它们的热行为。极限温度直接来自室温。在机械测试后,通过SEM可视化断裂截面来分析材料结构。测试结果表明,碳化硅纳米颗粒不仅提高了抗弯强度和抗压强度,而且还提高了其刚度和摩擦系数,延迟了热分解的发生并提高了抗热震性。所有这些都使PR / nSiC /软木材料成为热保护应用的潜在高级材料候选材料。

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