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Enhanced bending strength and thermal conductivity in diamond/Al composites with B 4 C coating

机译:用B 4 C涂层增强金刚石/ Al复合材料中的弯曲强度和导热率

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摘要

Diamond/Al composites containing B4C-coated and uncoated diamond particles were prepared by powder metallurgy. The microstructure, bending strength and thermal conductivity were characterized considering the B4C addition and diamond fraction. The influence of B4C coating and fraction of diamond on both bending strength and thermal conductivity were investigated. The bending strength increased with decreasing diamond fraction. Moreover, addition of B4C coating led to an obvious increase in bending strength. The peak value at 261.2?MPa was achieved in the composite with 30 vt.% B4C-coated diamond particles, which was about twice of that for 30 vt.% uncoated diamond/Al composite (140.1?MPa). The thermal conductivity enhanced with the increase in diamond fraction, and the highest value (352.7?W/m·K) was obtained in the composite with 50 vt.% B4C-coated diamond particles. Plating B4C on diamond gave rise to the enhancement in bending strength and thermal conductivity for diamond/Al composites, because of the improvement of the interfacial bonding between diamond and aluminum matrix.
机译:粉末冶金制备含有B4C涂覆和未涂覆金刚石颗粒的金刚石/ Al复合材料。考虑到B4C添加和金刚石馏分的表征微观结构,弯曲强度和导热率。研究了B4C涂层的影响和金刚石的一部分对弯曲强度和导热率的影响。弯曲强度随着菱形馏分的降低而增加。此外,添加B4C涂层导致弯曲强度的明显增加。在261.2℃下的峰值在复合材料中达到30VT。%B4C涂覆的金刚石颗粒,其约为30Vt的两倍。%未涂覆的金刚石/ Al复合物(140.1〜MPa)。随着金刚石馏分的增加而增强的导热率,并在复合材料中获得最高值(352.7→w / m·k),用50VT。%B4C涂覆的金刚石颗粒。由于金刚石和铝基质之间的界面键合,金刚石上的镀晶B4C对金刚石/ Al复合材料的弯曲强度和导热系数产生了增强。

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