2003•The Chinese Journal of Nonferrous MetalsRequires access

Microstructure and damping property of fiber/resin/aluminum alloy laminated composite

Zheng Li

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Abstract

The fiber/resin/aluminum alloy laminated composites were fabricated by using laminated solidifying technics. With the help of SEM, the influence of surface-treatment techniques of aluminum alloy on the interfacial bond of the laminated composites was investigated. The results of property tests show that the fiber/resin/aluminum alloy laminated composite exhibits high strength and good formability. Furthermore, the results of damping experiments reveal that the composite has a much higher damping coefficient than the matrix aluminum alloy, which is favorable for anti-vibration.

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The fiber/resin/aluminum alloy laminated composites were fabricated by using laminated solidifying technics. With the help of SEM, the influence of surface-treatment techniques of aluminum alloy on the interfacial bond of the laminated composites was investigated. The results of property tests show that the fiber/resin/aluminum alloy laminated composite exhibits high strength and good formability. Furthermore, the results of damping experiments reveal that the composite has a much higher damping coefficient than the matrix aluminum alloy, which is favorable for anti-vibration.

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Available abstract

The fiber/resin/aluminum alloy laminated composites were fabricated by using laminated solidifying technics. With the help of SEM, the influence of surface-treatment techniques of aluminum alloy on the interfacial bond of the laminated composites was investigated. The results of property tests show that the fiber/resin/aluminum alloy laminated composite exhibits high strength and good formability. Furthermore, the results of damping experiments reveal that the composite has a much higher damping coefficient than the matrix aluminum alloy, which is favorable for anti-vibration.

Key concepts: Materials science, Alloy, Composite material, Composite number, Formability, Microstructure, Aluminium, Fiber

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