Effect of Heat Treatment on High Temperature Damping Capacity of ZK60 Sheet Produced by Twin-roll Casting and hot-rolling

ZK60 alloy sheet with 1mm thickness which produced by twin roll casting and hot rolling was used in this paper. The effect of heat treatment on microstructure and damping capacity of the hot rolled ZK60 alloy sheet was studied by using optical microscope (OM) and dynamic mechanical analyzer (DMA). T...

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Main Authors: Chen Hongmei, Liu Zhongming, Zang Qianhao, Yu Xin, Zhang Jing, Jin Yunxue
Language:English
Published: Science Faculty of Chiang Mai University 2019
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Online Access:http://it.science.cmu.ac.th/ejournal/dl.php?journal_id=6731
http://cmuir.cmu.ac.th/jspui/handle/6653943832/66089
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spelling th-cmuir.6653943832-660892019-08-21T09:18:21Z Effect of Heat Treatment on High Temperature Damping Capacity of ZK60 Sheet Produced by Twin-roll Casting and hot-rolling Chen Hongmei Liu Zhongming Zang Qianhao Yu Xin Zhang Jing Jin Yunxue microstructure damping peak high temperature damping background activation energy ZK60 alloy sheet with 1mm thickness which produced by twin roll casting and hot rolling was used in this paper. The effect of heat treatment on microstructure and damping capacity of the hot rolled ZK60 alloy sheet was studied by using optical microscope (OM) and dynamic mechanical analyzer (DMA). The microstructure of as rolled ZK60 alloy sheet was fibrous deformed structure with elongated grains, with a high density of shear bands along the rolling direction. The small and equiaxed recrystallized grains were obtained after annealing treatment, T4 and T6 treatment in hot rolled ZK60 alloy sheet. There is no P2 (around 280°C) damping peak in the hot rolled ZK60 alloy sheet. The damping peak P0 (around 50°C) was present in hot rolled ZK60 alloy sheet after annealing treatment. The damping peak P1 (around 150°C) was present in hot rolled ZK60 alloy sheet before and after heat treatment. The damping peaks P0 and P2 were not relaxation processes, but the damping peak P1 was relaxation processes. The activation energy for high temperature damping background (HTDB) after T6 treatment was higher than that after T4 treatment. The values of activation energy for high temperature damping background (HTDB) and damping peak P1 after annealing treatment was the lowest among different heat treatment. 2019-08-21T09:18:21Z 2019-08-21T09:18:21Z 2016 Chiang Mai Journal of Science 43, 2 (SPECIAL ISSUE 1, 2016), 351 - 357 0125-2526 http://it.science.cmu.ac.th/ejournal/dl.php?journal_id=6731 http://cmuir.cmu.ac.th/jspui/handle/6653943832/66089 Eng Science Faculty of Chiang Mai University
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
language English
topic microstructure
damping peak
high temperature damping background
activation energy
spellingShingle microstructure
damping peak
high temperature damping background
activation energy
Chen Hongmei
Liu Zhongming
Zang Qianhao
Yu Xin
Zhang Jing
Jin Yunxue
Effect of Heat Treatment on High Temperature Damping Capacity of ZK60 Sheet Produced by Twin-roll Casting and hot-rolling
description ZK60 alloy sheet with 1mm thickness which produced by twin roll casting and hot rolling was used in this paper. The effect of heat treatment on microstructure and damping capacity of the hot rolled ZK60 alloy sheet was studied by using optical microscope (OM) and dynamic mechanical analyzer (DMA). The microstructure of as rolled ZK60 alloy sheet was fibrous deformed structure with elongated grains, with a high density of shear bands along the rolling direction. The small and equiaxed recrystallized grains were obtained after annealing treatment, T4 and T6 treatment in hot rolled ZK60 alloy sheet. There is no P2 (around 280°C) damping peak in the hot rolled ZK60 alloy sheet. The damping peak P0 (around 50°C) was present in hot rolled ZK60 alloy sheet after annealing treatment. The damping peak P1 (around 150°C) was present in hot rolled ZK60 alloy sheet before and after heat treatment. The damping peaks P0 and P2 were not relaxation processes, but the damping peak P1 was relaxation processes. The activation energy for high temperature damping background (HTDB) after T6 treatment was higher than that after T4 treatment. The values of activation energy for high temperature damping background (HTDB) and damping peak P1 after annealing treatment was the lowest among different heat treatment.
author Chen Hongmei
Liu Zhongming
Zang Qianhao
Yu Xin
Zhang Jing
Jin Yunxue
author_facet Chen Hongmei
Liu Zhongming
Zang Qianhao
Yu Xin
Zhang Jing
Jin Yunxue
author_sort Chen Hongmei
title Effect of Heat Treatment on High Temperature Damping Capacity of ZK60 Sheet Produced by Twin-roll Casting and hot-rolling
title_short Effect of Heat Treatment on High Temperature Damping Capacity of ZK60 Sheet Produced by Twin-roll Casting and hot-rolling
title_full Effect of Heat Treatment on High Temperature Damping Capacity of ZK60 Sheet Produced by Twin-roll Casting and hot-rolling
title_fullStr Effect of Heat Treatment on High Temperature Damping Capacity of ZK60 Sheet Produced by Twin-roll Casting and hot-rolling
title_full_unstemmed Effect of Heat Treatment on High Temperature Damping Capacity of ZK60 Sheet Produced by Twin-roll Casting and hot-rolling
title_sort effect of heat treatment on high temperature damping capacity of zk60 sheet produced by twin-roll casting and hot-rolling
publisher Science Faculty of Chiang Mai University
publishDate 2019
url http://it.science.cmu.ac.th/ejournal/dl.php?journal_id=6731
http://cmuir.cmu.ac.th/jspui/handle/6653943832/66089
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