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Effect of BN Addition on the Mechanical Properties of AlN

机译:BN添加对ALN机械性能的影响

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摘要

Aluminum nitride (AlN) has several attractive properties including high thermal conductivity, excellent electrical insulation, a thermal expansion coefficient close to that of Si and low density. Accordingly, it is considered a promising packing material and substrate for high power integrated circuits. However, its low fracture toughness at room temperature limits its wide industrial application. To improve its mechanical properties, the approach generally utilized has been to fabricate and add nanostructured materials as a second phase, to make composites. In this study highly dense nanostructured AlN and AlN-BN composites were sintered for two minutes at 1400 °C. The effect of BN on the mechanical properties (fracture toughness and hardness) and the microstructure of the AIN-BN composites was investigated. The hardness and fracture toughness of AlN, AlN-1 vol% BN, AlN-3 vol% BN, AlN-10 vol% BN were 943, 1455, 1147, 1110 kg/mm~2 and 4, 5.7, 5.5, 5.4 MPa-m~(1/2), respectively. The addition of BN to A1N simultaneously improved the hardness and fracture toughness of the AlN-BN composite by deterring crack propagation. This study demonstrates that BN can be an effective reinforcing material to improve the fracture toughness and hardness of A1N composites.
机译:氮化铝(ALN)具有几种有吸引力的特性,包括高导热率,优异的电绝缘,热膨胀系数接近Si和低密度的热膨胀系数。因此,它被认为是用于高功率集成电路的有望的包装材料和基板。然而,室温下的低断裂韧性限制了其宽阔的工业应用。为了改善其机械性能,通常使用的方法是制造和加入纳米结构的材料作为第二阶段,以制备复合材料。在该研究中,高致密的纳米结构AlN和AlN-BN复合材料在1400℃下烧结两分钟。研究了BN对机械性能(断裂韧性和硬度)的影响和AIN-BN复合材料的微观结构。 AlN,Aln-1 Vol%BN,Aln-3 Vol%BN,Aln-10Vol%BN的硬度和断裂韧性为943,1455,1147,1110kg / mm〜2和4,5.7,5.5,5.4MPa -m〜(1/2)。通过阻止裂纹繁殖,加入BN至A1N同时提高ALN-BN复合物的硬度和断裂韧性。本研究表明,BN可以是有效的增​​强材料,以改善A1N复合材料的断裂韧性和硬度。

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