Quasi-Static Compression Deformation and Energy Absorption Characteristics of Basalt Fiber-Containing Closed-Cell Aluminum Foam

In this work, closed-cell aluminum foams with 4 wt.% contents of short-cut basalt fibers (BFs) were successful prepared by using the modified melt-foaming method. The pore size of BF-containing aluminum foam and commercially pure aluminum foam was counted. The distribution of BF and its effect on th...

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Veröffentlicht in:Metals (Basel ) 2020-07, Vol.10 (7), p.921
Hauptverfasser: Yang, Donghui, Zhang, Zichen, Chen, Xueguang, Han, Xing, Xu, Tao, Li, Xinglei, Ding, Jian, Liu, Haifeng, Xia, Xingchuan, Gao, Yugang, Wang, Yujiang, Sun, Yu
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Sprache:eng
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Zusammenfassung:In this work, closed-cell aluminum foams with 4 wt.% contents of short-cut basalt fibers (BFs) were successful prepared by using the modified melt-foaming method. The pore size of BF-containing aluminum foam and commercially pure aluminum foam was counted. The distribution of BF and its effect on the compressive properties of closed-cell aluminum foams were investigated. The results showed that the pore size of BF-containing aluminum foams was more uniform and smaller. BF mainly existed in three different forms: Some were totally embedded in the cell walls, some protruded from the cell walls, and others penetrated through the cells. Meanwhile, under the present condition, BF-containing aluminum foams possessed higher compressive strength and energy absorption characteristics than commercially pure aluminum foams, and the reasons were discussed.
ISSN:2075-4701
2075-4701
DOI:10.3390/met10070921