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Thermal management applied laminar composites with SiC nanowires enhanced interface bonding strength and thermal conductivity

机译:热管理应用层状复合材料SiC纳米线增强界面结合强度和热导率

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摘要

Design and fabrication of oriented thermal management materials has great significance in meeting the requirements of high-power heat dissipation device applications. To synchronously improve the structure stability and thermal management performance, in this study, large-scale silicon carbide (SiC) nanowires were deposited on the graphite film (GF) surface to reinforce the aluminum-based laminar composites. Highly thermally conductive SiCnws-GF multiscale architecture reinforced Al laminar composites with enhanced interlayer bonding strength were achieved by an innovative pressure infiltration strategy. The embedding of the silicon carbide nanowires not only improved the thermal conductivity of the laminar composites but also enhanced the interface bonding strength between the Al matrix and the SiCnws-GF multiscale structure robustly. The interlaminar shear strength of the SiCnws-GF reinforced Al laminar composites was 134.1 MPa, which was 2.4 times the value of GF reinforced Al composites. The in-plane thermal conductivity of the best-performing SiCnws-GF reinforced Al laminar composites was 868.9 W (m K)(-1), which was 16.9% higher than the value of the GF reinforced Al laminar composites. The outstanding interlaminar shear strength and superior thermal conductivity of the SiCnws-GF reinforced Al laminar composites revealed that a potential and competitive thermal management material was obtained.
机译:面向设计和制造的热管理材料具有重要意义会议要求的大功率热耗散设备应用程序。提高结构的稳定性和热管理性能,在这项研究中,大规模的碳化硅(SiC)纳米线沉积在石墨薄膜(GF)表面加强铝合金层状复合材料制成。高导热SiCnws-GF多尺度建筑钢筋层状复合材料,增强层间结合强度通过一种创新的渗透压力策略。纳米线不仅提高了热层状复合材料的电导率也加强之间的界面结合强度美联矩阵和SiCnws-GF多尺度结构强劲。强度SiCnws-GF强化层流复合材料是134.1 MPa, 2.4倍广发增强铝复合材料的价值。平面的导热系数表现最好的SiCnws-GF增强层流复合材料是868.9 W (m K)(1),这是16.9%的价值高于GF钢筋层状复合材料。抗剪强度和优良的热导率SiCnws-GF增强的层状复合材料显示一个潜在的、有竞争力的热管理材料。

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