Investigation of the Influence of Ultrasound Action on Diffusion Processes in an Explosion-Welded Bimetal System Cu-Al during Heat Treatment

The influence of ultrasound on the main regularities of the formation and growth of the diffusion zone at the interlayer boundary of an explosion-welded layered composite material of Al-Cu systems is investigated. It is proved that the effect of ultrasound contributes to the reduction of the latent...

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Veröffentlicht in:Diffusion and defect data. Solid state data. Pt. A, Defect and diffusion forum Defect and diffusion forum, 2021-08, Vol.410, p.306-312
Hauptverfasser: Slautin, Oleg V., Pronichev, Dmitriy V., Kuz’min, Evgeniy V.
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container_title Diffusion and defect data. Solid state data. Pt. A, Defect and diffusion forum
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creator Slautin, Oleg V.
Pronichev, Dmitriy V.
Kuz’min, Evgeniy V.
description The influence of ultrasound on the main regularities of the formation and growth of the diffusion zone at the interlayer boundary of an explosion-welded layered composite material of Al-Cu systems is investigated. It is proved that the effect of ultrasound contributes to the reduction of the latent period of the nucleation of intermetallic phases at the interlayer boundary, lowers the temperature of the beginning of the eutectic transformation (by about 10 ° C), but at the same time does not affect the phase composition of the diffusion zone as a result of homogeneous reactions at the boundary of contact of solids. It has been established that the thickness of the diffusion zone, with the duration of the supplied acoustic vibrations, ensures the absence of cracks in the diffusion zone, leading to delamination of the material, increases by 30-40% at a fixed temperature of intense diffusion.
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subjects Bimetals
Composite materials
Diffusion layers
Diffusion welding
Eutectic composition
Eutectic reactions
Eutectic temperature
Heat treatment
Interlayers
Intermetallic phases
Laminates
Multilayers
Nucleation
Phase composition
title Investigation of the Influence of Ultrasound Action on Diffusion Processes in an Explosion-Welded Bimetal System Cu-Al during Heat Treatment
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