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Fabrication and characteristics of melt-spun Al ribbons reinforced with nano/micro-BN phases

机译:纳米/微BN相增强的熔纺铝带的制备及特性

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摘要

Melt-spun aluminum ribbons with up to 5 wt. of embedded nano/micro boron nitride (BN) phases, namely multiwalled BN nano-tubes (BNNTs) or BN microparticles (BNMPs), were fabricated by melt-spinning in an argon atmosphere. The comparative structural characteristics were analyzed using X-ray diffraction, scanning and transmission electron microscopy, and internal friction measurements as a function of temperature within an 80-800 K range. Room temperature tensile tests were carried out on ribbons. These revealed reinforcing effects on pure Al-matrices after nano/micro-BN embedment for both added phases with the notably higher numbers peculiar to the BNNT-containing samples. The intrastructural interactions between BN additions and Al-matrices are discussed based on the structural analysis and the internal friction data.
机译:通过在氩气气氛中熔融纺丝制备了嵌入纳米/微氮化硼 (BN) 相高达 5 wt.% 的熔纺铝带,即多壁 BN 纳米管 (BNNT) 或 BNM 微粒 (BNMP)。在80-800 K范围内,使用X射线衍射、扫描和透射电子显微镜以及内摩擦测量作为温度函数分析了比较结构特征。在色带上进行室温拉伸试验。这些结果揭示了纳米/微BN包埋后对纯Al基质的增强作用,其中含有BNNT的样品所特有的数量明显更高。基于结构分析和内耗数据,讨论了BN加成与Al基体之间的结构内相互作用。

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