4.6 Article

Three-Point Bending Behavior of Aluminum Foam Sandwich with Different Interface Bonding Methods

期刊

MATERIALS
卷 15, 期 19, 页码 -

出版社

MDPI
DOI: 10.3390/ma15196931

关键词

aluminum foam; powder metallurgy; three-point bending; energy absorption

资金

  1. National Natural Science Foundation of China [52071069, U1332110]
  2. Liao Ning Revitalization Talents Program [XLYC1902097]

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The interface bonding method has a significant impact on the mechanical properties of aluminum foam sandwich (AFS). The metallurgical-bonding method shows higher strength and energy absorption compared to adhesive bonding method.
The interface bonding method has a great influence on the mechanical properties of aluminum foam sandwich (AFS). This study aims to investigate the effect of different interface bonding methods on the mechanical properties of AFS. In this paper, the metallurgical-bonding interface-formation mechanism of AFS prepared by powder metallurgy was investigated. The shear properties of metallurgical-bonded AFS were determined by the panel peeling test. The flexural properties and energy absorption of metallurgical-bonded and glued AFS were analyzed through the three-point bending test. The results show that the magnesium, silicon, and copper elements of the core layer diffuse to panels and form a metallurgical composite layer. The metallurgical-bonding strength between the panel and core layer is higher than that of the foam core layer. The peak load of metallurgically-bonded AFS is 24% more than that of glued AFS, and energy absorption is 12.2 times higher than that of glued AFS.

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