首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A novel method for the fabrication of Al-matrix nanocomposites reinforced by mono-dispersed TiAl3 intermetallic via a three-step process of cold-roll bonding, heat-treatment and accumulative roll bonding
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A novel method for the fabrication of Al-matrix nanocomposites reinforced by mono-dispersed TiAl3 intermetallic via a three-step process of cold-roll bonding, heat-treatment and accumulative roll bonding

机译:一种新的一种通过冷轧,热处理和累积辊键合的单分散TiAl3金属间化合物用单分散的TiAl3金属间化制备Al基质纳米复合材料的新方法

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摘要

A novel method to fabricate aluminum metal-matrix composites reinforced by mono-dispersed TiAl3 intermetallic particles, by cold-roll bonding, heat treatment, followed by accumulative roll bonding (ARB), is demonstrated. Roll bonding of 1100-Al sheets inserted with Ti powder was carried out at room temperature with 50% thickness reduction. Complete conversion of the initial Ti particles into TiAl3 intermetallic was achieved by a post-rolling annealing treatment at 590 degrees C for 2 h, which results in the formation of coarse TiAl3 particles along the interface of the original 1100-Al sheets. Subsequent ARB process was applied to break up and disperse the TiAl3 phase, and after 5 cycles of ARB, an aluminum-matrix composite with mono-dispersed TiAl3 particles of submicron sizes was achieved. The Al matrix also undergoes dynamic recrystallization during the ARB process to result in a fine-grained microstructure (size less than 500 nm). The hardness, tensile strength and elongation of the Al/TiAl3 composite were found to increase with the number of ARB cycles. The tensile strength of the Al/TiAl3 composite after the 5th cycle reaches 400 MPa, which is significantly higher than the 300 MPa of monolithic 1100-Al processed in the same way. The tensile elongation of the Al/TiAl3 composite after 5 cycles of ARB exhibits a good value of similar to 8%, with a ductile fracture mode. This is the first successful attempt to achieve Al-matrix nanocomposites reinforced by mono-dispersed TiAl3 intermetallic based on an ARB method. (C) 2018 Elsevier B.V. All rights reserved.
机译:一种新颖的方法,以由单分散的TiAl3金属间颗粒增强的,由冷辊压接合,热处理编造铝金属基复合材料,然后累积叠轧焊(ARB),是证明。 1100-Al系插入有Ti粉片的辊压接合,在室温下进行的用厚度压下50%。初始的Ti颗粒进入TiAl3金属间用后轧制退火处理在590℃下2小时实现的,完全转化,其结果在粗TiAl3颗粒沿原1100-Al系片材的界面处形成。随后ARB过程被应用于破碎并驱散TiAl3相,和ARB的5个循环之后,达到了具有亚微米尺寸的单分散颗粒TiAl3的铝 - 基质复合材料。所述Al基体也经历在ARB过程动态再结晶导致细粒微结构(尺寸小于500nm)。的硬度,拉伸强度和Al / TiAl3复合材料的伸长率发现增加与ARB的周期数。在第5次循环后的铝/ TiAl3复合材料的拉伸强度达到400兆帕,比单片1100-Al的300兆帕显著更高以同样的方式处理。 ARB的5次循环后的铝/ TiAl3复合材料的拉伸伸长率显示出相似的8%的良好值,具有韧性断裂模式。这是第一次成功尝试实现铝基复合材料基于一种ARB方法增强由单分散的金属间TiAl3。 (c)2018年elestvier b.v.保留所有权利。

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