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搅拌摩擦加工制备Al3Ni-Al原位反应复合体
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西北工业大学科技创新基金(2007KJ01006)


In-Situ Synthesized Al3Ni-Al Composites by Friction Stir Processing
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    摘要:

    通过在搅拌摩擦加工(Friction Stir Processing,FSP)过程中填加微米级Ni粉的方法,利用Al、Ni在FSP条件下的快速原位反应,在Al合金1100-H14表面层获得Al3Ni-Al复合体。采用SEM、EDS以及XRD对表面复合体微观结构及相组成进行分析,并对其显微硬度进行评测。结果表明,在FSP强烈的热、力耦合作用下,Ni粉产生了充分碎化,破碎后的Ni粒子与Al产生快速原位反应,生成亚微米甚至纳米级Al3Ni颗粒,而少量微米级残留Ni颗粒被 Al3Ni包裹,并与细小的Al3Ni颗粒一同均匀分布于Al合金基体中,从而使得表面复合体的硬度显著提高,其平均值达到了818.3 MPa,为基体硬度的2.4倍。

    Abstract:

    By means of adding micron Ni powder in the Friction Stir Processing (FSP) period and the resultant rapid in-situ reaction between Al and Ni under FSP condition, Al3Ni-Al composites were obtained on Al alloy 1100-H14 surface layer. The microstructures of the surface composites were analyzed by SEM and EDS, the phase composition was examined by XRD, and the microhardness was also measured. Results show that Ni powder was broken sufficiently under the severe thermal-mechanical coupling of FSP, and the broken Ni in-situ reacted with Al matrix rapidly to produce sub-micron or even nano particles of Al3Ni; while a few micron particles of residual Ni were covered by Al3Ni layer and homogeneously distributed in Al matrix with fine Al3Ni particles. Therefore, the microhardness of the composites increased greatly and reached to 818.3 MPa, 2.4 times of that of Al alloy 1100-H14.

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熊江涛,张赋升,李京龙,钱锦文,黄卫东.搅拌摩擦加工制备Al3Ni-Al原位反应复合体[J].稀有金属材料与工程,2010,39(1):139~143.[Xiong Jiangtao, Zhang Fusheng, Li Jinglong, Qian Jinwen, Huang Weidong. In-Situ Synthesized Al3Ni-Al Composites by Friction Stir Processing[J]. Rare Metal Materials and Engineering,2010,39(1):139~143.]
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  • 收稿日期:2009-01-21
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