The Effect of Heat Treatment on the Sensitized Corrosion of the 5383-H116 Al-Mg Alloy
In this study, the effects of heat treatment and sensitized corrosion on the 5383-H116 Al-Mg alloy were investigated for temperatures ranging from 100 to 450 °C. The results show that the heat treatment temperature is the main factor that causes changes to the microstructure and mechanical strength...
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doaj-80f23a287c134281bae2f967aa8bf3572020-11-24T21:03:02ZengMDPI AGMaterials1996-19442017-03-0110327510.3390/ma10030275ma10030275The Effect of Heat Treatment on the Sensitized Corrosion of the 5383-H116 Al-Mg AlloyYing-Kai Lin0Shing-Hai Wang1Ren-Yu Chen2Tso-Sheng Hsieh3Liren Tsai4Chia-Chin Chiang5Department of Mechanical Engineering, National Kaohsiung University of Applied Sciences, Kaohsiung City 807, TaiwanDepartment of Electrical Engineering, Fortune Institute of Technology, No. 28, Zhixue Rd., Daliao Dist., Kaohsiung City 831, TaiwanNaval Shipbuilding Development Center, Navy Command R.O.C., Taipei City 104, TaiwanDepartment of Mechanical Engineering, National Kaohsiung University of Applied Sciences, Kaohsiung City 807, TaiwanDepartment of Mechanical Engineering, National Kaohsiung University of Applied Sciences, Kaohsiung City 807, TaiwanDepartment of Mechanical Engineering, National Kaohsiung University of Applied Sciences, Kaohsiung City 807, TaiwanIn this study, the effects of heat treatment and sensitized corrosion on the 5383-H116 Al-Mg alloy were investigated for temperatures ranging from 100 to 450 °C. The results show that the heat treatment temperature is the main factor that causes changes to the microstructure and mechanical strength of the 5383-H116 Al-Mg alloy, inducing β-phase (Al3Mg2) precipitation in the form of a continuous layer along the grain boundaries. Intergranular corrosion was caused by the β-phase of the grain boundary precipitation, and the corrosion susceptibility of the recrystallized structure was significantly higher than the corrosion susceptibility of the recovered structure. According to the conductivity values detected, β-phase precipitation can enhance the 5383-H116 Al-Mg alloy conductivity, with the response due to structural dislocation density being higher than that due to the recrystallized structure. As such, the β-phase precipitation after sensitization is more significant than the β-phase precipitation prior to the sensitization, such that after sensitization, the conductivity rises to a significantly higher level than that exhibited by the recrystallization structure.http://www.mdpi.com/1996-1944/10/3/2755383-H116 Al-Mg alloysensitizationNAMLTβ phase-Al3Mg2 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ying-Kai Lin Shing-Hai Wang Ren-Yu Chen Tso-Sheng Hsieh Liren Tsai Chia-Chin Chiang |
spellingShingle |
Ying-Kai Lin Shing-Hai Wang Ren-Yu Chen Tso-Sheng Hsieh Liren Tsai Chia-Chin Chiang The Effect of Heat Treatment on the Sensitized Corrosion of the 5383-H116 Al-Mg Alloy Materials 5383-H116 Al-Mg alloy sensitization NAMLT β phase-Al3Mg2 |
author_facet |
Ying-Kai Lin Shing-Hai Wang Ren-Yu Chen Tso-Sheng Hsieh Liren Tsai Chia-Chin Chiang |
author_sort |
Ying-Kai Lin |
title |
The Effect of Heat Treatment on the Sensitized Corrosion of the 5383-H116 Al-Mg Alloy |
title_short |
The Effect of Heat Treatment on the Sensitized Corrosion of the 5383-H116 Al-Mg Alloy |
title_full |
The Effect of Heat Treatment on the Sensitized Corrosion of the 5383-H116 Al-Mg Alloy |
title_fullStr |
The Effect of Heat Treatment on the Sensitized Corrosion of the 5383-H116 Al-Mg Alloy |
title_full_unstemmed |
The Effect of Heat Treatment on the Sensitized Corrosion of the 5383-H116 Al-Mg Alloy |
title_sort |
effect of heat treatment on the sensitized corrosion of the 5383-h116 al-mg alloy |
publisher |
MDPI AG |
series |
Materials |
issn |
1996-1944 |
publishDate |
2017-03-01 |
description |
In this study, the effects of heat treatment and sensitized corrosion on the 5383-H116 Al-Mg alloy were investigated for temperatures ranging from 100 to 450 °C. The results show that the heat treatment temperature is the main factor that causes changes to the microstructure and mechanical strength of the 5383-H116 Al-Mg alloy, inducing β-phase (Al3Mg2) precipitation in the form of a continuous layer along the grain boundaries. Intergranular corrosion was caused by the β-phase of the grain boundary precipitation, and the corrosion susceptibility of the recrystallized structure was significantly higher than the corrosion susceptibility of the recovered structure. According to the conductivity values detected, β-phase precipitation can enhance the 5383-H116 Al-Mg alloy conductivity, with the response due to structural dislocation density being higher than that due to the recrystallized structure. As such, the β-phase precipitation after sensitization is more significant than the β-phase precipitation prior to the sensitization, such that after sensitization, the conductivity rises to a significantly higher level than that exhibited by the recrystallization structure. |
topic |
5383-H116 Al-Mg alloy sensitization NAMLT β phase-Al3Mg2 |
url |
http://www.mdpi.com/1996-1944/10/3/275 |
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