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以纯铝为基体材料,TiH2为发泡剂,镀铜碳纤维为添加剂,制备了不同孔隙率的泡沫铝材料.研究了发泡时间、镀铜碳纤维掺杂量对泡沫铝相对密度、孔径和微观结构的影响.结果表明,在碳纤维含量相同情况下,发泡时间越短,泡沫铝试样的相对密度越大,孔径越小.发泡时间相同时,碳纤维含量越多,泡沫铝的相对密度越大.SEM检测表明,碳纤维在Plateau边界内随机分布,而在气泡壁中和气泡壁表面基本呈平行分布,未发生团聚现象.

The aluminum foams with different porosity were prepared with aluminum as matrix material,the foaming agent of TiH2 and the admixture of copper-coated carbon fibers.The influences of foaming time and carbon fi-bers content on relative density,cell size and microstructure of aluminum foams were studied.The results indicated that with the same amount of carbon fibers,shorter foaming time would lead to heavier relative density and smaller cell size.SEM results confirmed that the carbon fibers distributed randomly at Plateau border,however parallelly to the surface of the cell wall,and no agglomerates were observed.

参考文献

[1] 王淼;王录才.泡沫铝及其复合结构的制备和应用现状[J].材料导报,2015(3):81-84.
[2] 王应武;夏宇;王志平;叶金龙;左孝青;周颖;王志勇.泡沫铝材料应用研究现状[J].材料导报,2013(15):132-134.
[3] 乔吉超;奚正平;汤慧萍;王建永;朱纪磊.金属多孔材料压缩行为的评述[J].稀有金属材料与工程,2010(3):561-564.
[4] 王鹏飞;徐松林;李志斌;胡时胜.高温下轻质泡沫铝动态力学性能实验[J].爆炸与冲击,2014(4):433-438.
[5] 王展光;蔡萍;何正福;韩建锋.SiC颗粒增强复合泡沫铝的性能研究[J].热加工工艺,2014(22):43-45.
[6] Yongliang Mu;Guangchun Yao.Effect of Fly Ash Particles on the Compressive Properties of Closed-Cell Aluminum Foams[J].Journal of Materials Engineering and Performance,20107(7):995-997.
[7] Yongliang Mu.The dependence of damping property of fly ash reinforced closed-cell aluminum alloy foams on strain amplitude[J].Materials & design,20102(2):1007-1009.
[8] 姜正武;李助军;陈致水.粉煤灰漂珠颗粒增强泡沫铝基复合材料的制备与研究[J].热加工工艺,2013(4):103-105.
[9] 张晓莉;孙勇;郑吉良.玻璃纤维增强泡沫铝性能的研究[J].热加工工艺,2014(2):74-76.
[10] Daoud A.Microstructure and tensile properties of 2014 Al alloy reinforced with continuous carbon fibers manufactured by gas pressure infiltration[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,20051/2(1/2):114-120.
[11] A. Urena;J. Rams;M.D. Escalera;M. Sanchez.Characterization of interfacial mechanical properties in carbon fiber/aluminium matrix composites by the nanoindentation technique[J].Composites science and technology,200513(13):2025-2038.
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