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Microstructure and Mechanical Properties of an AlN/Mg-Al Composite Synthesized by Al-AlN Master Alloy

机译:Al-Aln Master合金合成的Aln / Mg-Al复合材料的微观结构和力学性能

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摘要

In this work, a kind of AlN particles reinforced Mg-Al matrix composite was fabricated by introducing Al-12.5AlN master alloy into the Mg melt during casting. In the 0.8AlN/Mg-8Al composite, the nano-sized AlN particles are uniformly distributed, exhibiting a clean interface with the matrix. The introduction of AlN results in the refinement of -Mg grains through modifying its dendrite morphology, and the -Mg17Al12 intermetallic was also changed from continuous coarse-like to fine morphology. As a result, compared with Mg-8Al matrix alloy, the tensile strength and elongation of the 0.8AlN/Mg-8Al composite were increased by 31% and 213%, respectively. The strengthening mechanism and fracture behaviors were discussed.
机译:在这项工作中,通过将Al-12.5Aln Master合金在铸造期间将Al-12.5Aln Master合金引入Mg熔体中,制备了一种AlN颗粒增强Mg-Al基质复合物。 在0.8Aln / Mg-8AL复合材料中,纳米大小的AlN颗粒均匀分布,具有与基质的清洁界面。 通过改变其枝晶形态,ALN的引入导致-MG晶粒的改进,而-mg17Al12金属间金属间化合物也从连续粗糙的形态变为细形态。 结果,与Mg-8AL基质合金相比,0.8Aln / Mg-8Al复合材料的拉伸强度和伸长率分别增加了31%和213%。 讨论了强化机制和裂缝行为。

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