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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure characterization and formation mechanism of functionally graded Al-TiAl3 insitu composite by liquid-solid interaction
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Microstructure characterization and formation mechanism of functionally graded Al-TiAl3 insitu composite by liquid-solid interaction

机译:液固相互作用功能梯度Al-TiAl3 Insitu复合材料的微观结构特征及形成机理

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摘要

In this paper, microstructure and formation mechanism of functionally graded Al-TiAl3 insitu composite fabricated by solid-liquid interaction was investigated. Mechanism of formation and distribution of the intermetallic particles was determined and it was in good agreement with computational thermodynamic calculations results. It was found that the gradient microstructure for Al-TiAl3 insitu composite was obtained at 1173 K (900 degrees C) holding for 180 min which included blocky and plate particles. The Al/Ti interface was changed from flat to irregular form at 1173 K (900 degrees C) due to diffusion of Al in solid Ti. The role of temperature and holding time was found to be important for formation and distribution of both blocky and plate TiAl3 particles. A critical solute value equal to 2.7 wt% was determined for dissolved Ti. Higher concentrations than the critical value led to the formation of blocky particles (mainly during heating) while lower concentrations led to the formation of plate particles (mainly during cooling). The gradient distribution of intermetallic particles in Al matrix led to a gradient hardness. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文研究了通过固液相互作用制造的功能梯度Al-TiAl3 Insitu复合材料的微观结构和形成机理。确定了金属间颗粒的形成和分布机理,并与计算热力学计算结果良好。发现在1173k(900℃)保持180分钟的1173k(900℃)中获得Al-TiAl3 Insitu复合材料的梯度微观结构,其包括嵌段和板颗粒。由于Al在固体Ti中的扩散,Al / Ti界面在1173k(900℃)下,在1173k(900℃)中,改变为不规则形式。发现温度和保持时间的作用对于嵌段和板块3颗粒的形成和分布是重要的。确定溶解的Ti等于2.7wt%的关键溶质值。比临界值更高的浓度导致形成块状颗粒(主要在加热期间),而较低浓度导致板颗粒的形成(主要在冷却过程中)。 Al基质中金属间颗粒的梯度分布导致梯度硬度。 (c)2018年elestvier b.v.保留所有权利。

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