Role of heat balance on the microstructure evolution of cold spray coated AZ31B with AA7075
A promising solid-state coating mechanism based on the cold spray technique provides highly advantageous conditions on thermal-sensitive magnesium alloys. To study the effect of heat balance in cold spray coating on microstructure, experiments were designed to successfully coat AA7075 on AZ31B with...
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KeAi Communications Co., Ltd.
2021-07-01
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doaj-f4bc0f6da14542d7902c54ca86587d552021-07-05T04:14:10ZengKeAi Communications Co., Ltd.Journal of Magnesium and Alloys2213-95672021-07-019414581469Role of heat balance on the microstructure evolution of cold spray coated AZ31B with AA7075Bahareh Marzbanrad0Mohammad Hadi Razmpoosh1Ehsan Toyserkani2Hamid Jahed3Mechanical and Mechatronics Engineering Department, University of Waterloo, CanadaMechanical and Mechatronics Engineering Department, University of Waterloo, CanadaMechanical and Mechatronics Engineering Department, University of Waterloo, CanadaCorresponding author.; Mechanical and Mechatronics Engineering Department, University of Waterloo, CanadaA promising solid-state coating mechanism based on the cold spray technique provides highly advantageous conditions on thermal-sensitive magnesium alloys. To study the effect of heat balance in cold spray coating on microstructure, experiments were designed to successfully coat AA7075 on AZ31B with two different heat balance conditions to yield a coated sample with tensile residual stress and a sample with compressive residual stress in both coating and substrate. The effects of coating temperature on the microstructure of magnesium alloy and the interfaces of coated samples were then analyzed by SEM, EBSD, TEM in high- and low-heat input coating conditions. The interface of the AA7075 coating and magnesium alloy substrate under both conditions consists of a narrow-band layer with very fine grains, followed by columnar grains of magnesium that have grown perpendicular to the interface. At higher temperatures, this layer became wider. No intermetallic phase was detected at the interface under either condition. It is shown that the microstructure of the substrate was affected by coating temperature, leading to stress relief, dynamic recrystallization and even dynamic grain growth of magnesium under high temperature. Reducing the heat input and increasing the heat transfer decreased microstructural changes in the substrate.http://www.sciencedirect.com/science/article/pii/S2213956721000633Cold sprayingHeat balanceMicrostructural analysisCoating interfaceMagnesium Alloy AZ31BResidual Stress |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bahareh Marzbanrad Mohammad Hadi Razmpoosh Ehsan Toyserkani Hamid Jahed |
spellingShingle |
Bahareh Marzbanrad Mohammad Hadi Razmpoosh Ehsan Toyserkani Hamid Jahed Role of heat balance on the microstructure evolution of cold spray coated AZ31B with AA7075 Journal of Magnesium and Alloys Cold spraying Heat balance Microstructural analysis Coating interface Magnesium Alloy AZ31B Residual Stress |
author_facet |
Bahareh Marzbanrad Mohammad Hadi Razmpoosh Ehsan Toyserkani Hamid Jahed |
author_sort |
Bahareh Marzbanrad |
title |
Role of heat balance on the microstructure evolution of cold spray coated AZ31B with AA7075 |
title_short |
Role of heat balance on the microstructure evolution of cold spray coated AZ31B with AA7075 |
title_full |
Role of heat balance on the microstructure evolution of cold spray coated AZ31B with AA7075 |
title_fullStr |
Role of heat balance on the microstructure evolution of cold spray coated AZ31B with AA7075 |
title_full_unstemmed |
Role of heat balance on the microstructure evolution of cold spray coated AZ31B with AA7075 |
title_sort |
role of heat balance on the microstructure evolution of cold spray coated az31b with aa7075 |
publisher |
KeAi Communications Co., Ltd. |
series |
Journal of Magnesium and Alloys |
issn |
2213-9567 |
publishDate |
2021-07-01 |
description |
A promising solid-state coating mechanism based on the cold spray technique provides highly advantageous conditions on thermal-sensitive magnesium alloys. To study the effect of heat balance in cold spray coating on microstructure, experiments were designed to successfully coat AA7075 on AZ31B with two different heat balance conditions to yield a coated sample with tensile residual stress and a sample with compressive residual stress in both coating and substrate. The effects of coating temperature on the microstructure of magnesium alloy and the interfaces of coated samples were then analyzed by SEM, EBSD, TEM in high- and low-heat input coating conditions. The interface of the AA7075 coating and magnesium alloy substrate under both conditions consists of a narrow-band layer with very fine grains, followed by columnar grains of magnesium that have grown perpendicular to the interface. At higher temperatures, this layer became wider. No intermetallic phase was detected at the interface under either condition. It is shown that the microstructure of the substrate was affected by coating temperature, leading to stress relief, dynamic recrystallization and even dynamic grain growth of magnesium under high temperature. Reducing the heat input and increasing the heat transfer decreased microstructural changes in the substrate. |
topic |
Cold spraying Heat balance Microstructural analysis Coating interface Magnesium Alloy AZ31B Residual Stress |
url |
http://www.sciencedirect.com/science/article/pii/S2213956721000633 |
work_keys_str_mv |
AT baharehmarzbanrad roleofheatbalanceonthemicrostructureevolutionofcoldspraycoatedaz31bwithaa7075 AT mohammadhadirazmpoosh roleofheatbalanceonthemicrostructureevolutionofcoldspraycoatedaz31bwithaa7075 AT ehsantoyserkani roleofheatbalanceonthemicrostructureevolutionofcoldspraycoatedaz31bwithaa7075 AT hamidjahed roleofheatbalanceonthemicrostructureevolutionofcoldspraycoatedaz31bwithaa7075 |
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1721319051874009088 |