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  5. Manufacturing of open-cell aluminum foams <i>via</i> infiltration casting in super-gravity fields and mechanical properties

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Article
English
2018

Manufacturing of open-cell aluminum foams <i>via</i> infiltration casting in super-gravity fields and mechanical properties

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English
2018
RSC Advances
Vol 8 (29)
DOI: 10.1039/c7ra13689g

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Jintao Gao
Jintao Gao

University Of Science And Technology Beijing

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Zhe Wang
Jintao Gao
Kuan Chang
+3 more

Abstract

Replicated open-cell aluminum foams were produced by infiltration casting in super-gravity fields. Infiltration of preforms packed by NaCl particles with different sizes was conducted to demonstrate the technical feasibility of this method. The relative densities between 0.25 and 0.34 of the aluminum foams were obtained by varying the NaCl particle size of the preform from 600 to 200 μm. Increasing the gravity coefficient (G) increased the centrifugal pressure (P c) and correspondingly improved the relative densities and structural integrity of the resulting foams. As P c increased, the aluminum foam exhibited a transition from a structure of smooth struts to a relatively complex structure where many protrusions extended inside the pores from the surface of the struts. Also, the specific relationship between the minimum centrifugal pressures necessary to produce self-standing aluminum foams and the NaCl particle size of the preform was established. The minimum centrifugal pressures of 32, 49 and 83 kPa were required for aluminum foams with pore sizes of 600, 400 and 200 μm, respectively. Preliminary results show that super-gravity infiltration is promising to be a practical manufacture process for replicated open-cell aluminum foams.

How to cite this publication

Zhe Wang, Jintao Gao, Kuan Chang, Long Meng, Ning Zhang, Zhancheng Guo (2018). Manufacturing of open-cell aluminum foams <i>via</i> infiltration casting in super-gravity fields and mechanical properties. RSC Advances, 8(29), pp. 15933-15939, DOI: 10.1039/c7ra13689g.

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Publication Details

Type

Article

Year

2018

Authors

6

Datasets

0

Total Files

0

Language

English

Journal

RSC Advances

DOI

10.1039/c7ra13689g

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