首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Processing, microstructure and ageing behavior of in-situ submicron TiB2 particles reinforced AZ91 Mg matrix composites
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Processing, microstructure and ageing behavior of in-situ submicron TiB2 particles reinforced AZ91 Mg matrix composites

机译:原位亚微米粒子的加工,微观结构和老化行为增强AZ91mg矩阵复合材料

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摘要

In this paper, in-situ submicron TiB2 particles (2.5 wt.%) reinforced AZ91 matrix composites are processed by the master alloy method combined with an optimized SHS technique. The effect of TiB2 particles on the microstructure, ageing behavior and mechanical properties of Mg matrix composites is investigated. The results reveal that only TiB2 phase is in-situ formed in the Al-TiB2 master alloy and exhibits the size distribution of 100 nm-700 nm. Compared with the unreinforced AZ91 alloy, the grain size and morphology of Mg17Al12 phase in as-cast composites are much refined. The ageing process of composites is accelerated and the peak-aged time of composites decreases from 42 h to 22 h significantly with the introduction of TiB2 particles. Large numbers of fine Mg17Al12 in composites preferentially precipitate at grain boundaries and near TiB2 particles regions. In addition, the hardness, yield strength, ultimate tensile strength and elongation of as-cast composites are improved by 16.1%, 53.0%, 26.3% and 25.6%, respectively. After T6 heat treatment, the strength of composites is increased further due to large amounts of submicron Mg17Al12 phase, and the age hardening efficiency of composites is higher than that of AZ91 alloy. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文通过主合金方法与优化的SHS技术合并,原位亚微米TiB2颗粒(2.5重量%)加固AZ91基质复合材料。研究了TIB2颗粒对Mg基复合材料的微观结构,老化行为和力学性能的影响。结果表明,在Al-Tib2母合金中,只有TIB2相就在原位上形成,并且表现出100nm-700nm的尺寸分布。与未原始的AZ91合金相比,铸造复合材料中Mg17Al12相的晶粒尺寸和形态很大。随着TIB2颗粒的引入,复合材料的衰老过程得到加速,复合材料的峰值老化时间显着从42小时降低到22小时。复合材料中大量细mg17Al12优选地在晶界和TIB2颗粒区域附近沉淀。此外,分别提高了硬度,屈服强度,最终拉伸强度和浇铸复合材料的伸长率分别提高了16.1%,53.0%,26.3%和25.6%。在T6热处理之后,由于大量的亚微米Mg17Al12相,复合材料的强度进一步增加,复合材料的年龄硬化效率高于AZ91合金。 (c)2018年elestvier b.v.保留所有权利。

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