发泡参数对粉末冶金制备泡沫铝显微组织和压缩性能的影响

来源期刊:中国有色金属学报(英文版)2017年第7期

论文作者:T. GERAMIPOUR H. OVEISI

文章页码:1569 - 1579

关键词:泡沫铝;粉末冶金;CaCO3;发泡剂;半开孔显微组织;膨胀;压缩性能

Key words:aluminum foam; powder metallurgy; CaCO3; foaming agent; semi open-cell microstructure; expansion; compressive properties

摘    要:使用廉价CaCO3作为发泡剂,采用粉末压块熔炼工艺制备单胞间具有通道的半开孔泡沫铝。将铝和 CaCO3粉末混合物冷压缩成在空气气氛和一定温度下发泡的致密圆柱形前驱体。研究前驱体压缩压力、发泡剂含量、发泡温度和发泡时间对所得泡沫铝显微组织、线膨胀率、相对密度和压缩性能的影响。结果表明,所得泡沫铝的显微组织分布均匀,晶粒尺寸小于100 μm,具有半开孔结构,相对密度为55.4%~84.4%%。随着压缩压力(127~318)的增大,当发泡剂含量为15%(质量分数)时,泡沫铝的线膨胀率、压缩强度和紧实应变增大。当发泡温度从800 °C升高到1000 °C时,除压缩强度和相对密度外,泡沫铝的其他参数都增大。研究结果表明,最佳发泡温度和发泡时间分别为900 °C和10~25 min。

Abstract: Semi open-cell aluminum foams having channels between individual cells were produced using low cost CaCO3 foaming agent and applying the powder compact melting process. To this end, the aluminum and CaCO3 powder mixtures were cold compacted into dense cylindrical precursors for foaming at specific temperatures under air atmosphere. The effects of several parameters including precursor compaction pressure, foaming agent content as well as temperature and time of the foaming process on the cell microstructure, linear expansion, relative density and compressive properties were investigated. A uniform distribution of cells with sizes less than 100 μm, which form semi open-cell structures with relative densities in the range of 55.4%-84.4%, was obtained. The elevation of compaction pressure between 127-318 MPa and blowing agent up to 15% (mass fraction) led to an increase in the linear expansion, compressive strength and densification strain. By varying the foaming temperature from 800 to 1000 °C, all of the investigated parameters increased except compressive strength and relative density. The results indicated the optimal foaming temperature and time as 900 °C and 10-25 min, respectively.

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