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The ferromagnetic wire composites have also been shown to possess metamaterial characteristics and microwave absorption capability.
The technology of wear resistant coatings and new powder wire composites has been developed.
These features could be useful to the design of wire composites and to the dislocation-related plasticity analysis.
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According to the results from a wire pullout test, the interfacial bonding strength of an indented SMA wire composite increased by 4.48 8.58 times as compared with a hand-sanded SMA wire composite at a room temperature condition.
This research is designed to investigate the bond behavior between GFRP/steel wire composite rebars and concrete.
Based on the numerical analysis of the test results, new criteria for acceptable bond performance of GFRP/steel wire composite rebars to concrete were developed.
Developed in this note is a theoretical model describing the mobility of a misfit screw dislocation dipole in a wire composite consisting of a stiff cylindrical substrate covered by a soft co-axial cylindrical film.
The calculation formula of bond strength and the basic development length were proposed, and the calculation principle of development length of concrete structures reinforced with GFRP/steel wire composite rebars was suggested.
Due to significant advantages over GFRP rebars, namely high tensile strength, high elastic modulus, and good ductile properties, GFRP/steel wire composite rebars offer a superior alternative to ordinary steel rebars.
Bonding failure may occur either in the adhesive-enamel or in the wire-composite interface[9].
As the results, transport Jc and Ic values of the PIT filaments composite were increased compared with that of Ag wires composite bulk.
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