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首页> 外文期刊>CERAMICS INTERNATIONAL >Effect of Si alloying content on the microstructure and thermophysical properties of SiC honeycomb/Al-Mg-Si composites prepared by spontaneous infiltration
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Effect of Si alloying content on the microstructure and thermophysical properties of SiC honeycomb/Al-Mg-Si composites prepared by spontaneous infiltration

机译:Si合金化含量对自发渗透制备的SiC蜂窝/铝-MG-Si复合材料微观结构和热物理性质的影响

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摘要

Directional SiC honeycomb/Al-Mg-Si composites with different Si alloying contents (2-12 wt%) were prepared by spontaneous infiltration. The effect of Si alloying content on the phase composition, microstructure and thermophysical properties of the composites were investigated. The results showed that the equilibrium contact angles between the SiC ceramic and different Al alloys were in the range of 60.5-72 degrees at 1273 K, benefitting the infiltration process. Meanwhile, the Si alloying content not only changed the phase composition of the composites, but also influenced the microstructure of the infiltrated Al alloys, especially changing the microstructure of Mg2Si phase from small flake-like eutectic phase (Mg2SiE) to large polygon-like primary phase (Mg2Sip). Due to the anisotropic feature of SiC honeycomb and the tunable phase composition and microstructure of the infiltrated Al alloys, the composites exhibited anisotropic and tailored thermophysical characteristics. The composites with the Si alloying content of 7 wt% possessed the optimum properties, with the highest TC of 140.95 W m(-1) K-1 in axial direction and relatively low CTE of 11.1 x 10(-6)/K in radial direction. Additionally, the reduction of anisotropy of composites' CTEs in two principal directions with the increase of Si alloying content was also discussed.
机译:通过自发渗透制备具有不同Si合金化含量(2-12wt%)的定向SiC蜂窝/ Al-Mg-Si复合材料。研究了Si合金化含量对复合材料的相组成,微观结构和热物理性质的影响。结果表明,SiC陶瓷和不同的Al合金之间的平衡接触角在1273k的范围内为60.5-72度,受益于渗透过程。同时,Si合金化含量不仅改变了复合材料的相组成,而且影响了渗透的Al合金的微观结构,特别是将Mg2Si相的微观结构从小薄片样共晶相(Mg2sie)改变为大的多边形初级阶段(MG2SIP)。由于SiC蜂窝的各向异性特征和可渗透的Al合金的可调谐相组合物和微观结构,复合材料表现出各向异性和量身定制的热物理特征。具有7wt%的Si合金化含量的复合材料具有最佳性能,最高Tc为140.95Wm(-1)k-1,径向的11.1×10(-6)/ k的相对低的CTE方向。另外,还讨论了两个主要方向上的复合材料CTE的各向异性的各向异性,随着Si合金化含量的增加。

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