@inproceedings{815fd6a0d9244ed4bac540fd9bf4fc07,
title = "Microstructure and compression behavior of cenosphere filled aluminum syntactic foams",
abstract = "Aluminum syntactic foams were fabricated by pressure-infiltrating liquid pure aluminum into packed preforms of cenosphere fly ash. The morphology, true density and porosity of fly ash microballoons were characterized. The microstructure of the syntactic foams demonstrated uniform distribution of the microballoons in the aluminum matrix and seldom infiltration of cenosphere fly ash. These foams were subjected to quasi-static uniaxial compression tests and behaved like high strength aluminum foams under compressive deformation, exhibiting an extended plateau region in the stress-strain curves. With the decreasing of fly ash diameter, the plateau stress and absorbed energy of the syntactic foams increased. X-ray microcomputed tomography was used to examine the foam microstructures after interrupted compression and reveal the damage evolution. The current work provides a better understanding on the structure and mechanical properties of aluminum matrix syntactic foams.",
keywords = "Cenosphere, Compression, Energy absorption, Microstructure, Syntactic foam",
author = "Qiang Zhang and Gaohui Wu",
year = "2012",
doi = "10.4028/www.scientific.net/MSF.706-709.704",
language = "英语",
isbn = "9783037853030",
series = "Materials Science Forum",
publisher = "Trans Tech Publications Ltd",
pages = "704--708",
booktitle = "THERMEC 2011",
address = "瑞士",
note = "7th International Conference on Processing and Manufacturing of Advanced Materials, THERMEC'2011 ; Conference date: 01-08-2011 Through 05-08-2011",
}