Effect of Natural Aging on the Stress Corrosion Cracking Behavior of A201-T7 Aluminum Alloy

The effect of natural aging on the stress corrosion cracking (SCC) of A201-T7 alloy was investigated by the slow strain rate testing (SSRT), transmission electron microscopy (TEM), scanning electron microscopy (SEM), differential scanning calorimetry (DSC), conductivity, and polarization testing. Th...

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Main Authors: Mien-Chung Chen, Ming-Che Wen, Yang-Chun Chiu, Tse-An Pan, Yu-Chih Tzeng, Sheng-Long Lee
Format: Article
Language:English
Published: MDPI AG 2020-12-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/13/24/5631
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author Mien-Chung Chen
Ming-Che Wen
Yang-Chun Chiu
Tse-An Pan
Yu-Chih Tzeng
Sheng-Long Lee
author_facet Mien-Chung Chen
Ming-Che Wen
Yang-Chun Chiu
Tse-An Pan
Yu-Chih Tzeng
Sheng-Long Lee
author_sort Mien-Chung Chen
collection DOAJ
description The effect of natural aging on the stress corrosion cracking (SCC) of A201-T7 alloy was investigated by the slow strain rate testing (SSRT), transmission electron microscopy (TEM), scanning electron microscopy (SEM), differential scanning calorimetry (DSC), conductivity, and polarization testing. The results indicated that natural aging could significantly improve the resistance of the alloys to SCC. The ductility loss rate of the unaged alloy was 28%, while the rates for the 24 h and 96 h aged alloys were both 5%. The conductivity of the as-quenched alloy was 30.54 (%IACS), and the conductivity of the 24 h and 96 h aged alloys were decreased to 28.85 and 28.65. After T7 tempering, the conductivity of the unaged, 24 h, and 96 h aged alloys were increased to 32.54 (%IACS), 32.52 and 32.45. Besides, the enthalpy change of the 24 h and 96 h aged alloys increased by 36% and 37% compared to the unaged alloy. The clustering of the solute atoms would evidently be enhanced with the increasing time of natural aging. Natural aging after quenching is essential to improve the alloy’s resistance to SCC. It might be due to the prevention of the formation of the precipitation free zone (PFZ) after T7 tempering.
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spelling doaj.art-492ac607c6a34c68812fe821472a1d102023-11-21T00:09:19ZengMDPI AGMaterials1996-19442020-12-011324563110.3390/ma13245631Effect of Natural Aging on the Stress Corrosion Cracking Behavior of A201-T7 Aluminum AlloyMien-Chung Chen0Ming-Che Wen1Yang-Chun Chiu2Tse-An Pan3Yu-Chih Tzeng4Sheng-Long Lee5Institute of Material Science and Engineering, National Central University, Taoyuan 320, TaiwanDepartment of Mechanical Engineering, National Central University, Taoyuan 320, TaiwanInstitute of Material Science and Engineering, National Central University, Taoyuan 320, TaiwanInstitute of Material Science and Engineering, National Central University, Taoyuan 320, TaiwanDepartment of Power Vehicle and Systems Engineering, Chung-Cheng Institute of Technology, National Defense University, Taoyuan 334, TaiwanInstitute of Material Science and Engineering, National Central University, Taoyuan 320, TaiwanThe effect of natural aging on the stress corrosion cracking (SCC) of A201-T7 alloy was investigated by the slow strain rate testing (SSRT), transmission electron microscopy (TEM), scanning electron microscopy (SEM), differential scanning calorimetry (DSC), conductivity, and polarization testing. The results indicated that natural aging could significantly improve the resistance of the alloys to SCC. The ductility loss rate of the unaged alloy was 28%, while the rates for the 24 h and 96 h aged alloys were both 5%. The conductivity of the as-quenched alloy was 30.54 (%IACS), and the conductivity of the 24 h and 96 h aged alloys were decreased to 28.85 and 28.65. After T7 tempering, the conductivity of the unaged, 24 h, and 96 h aged alloys were increased to 32.54 (%IACS), 32.52 and 32.45. Besides, the enthalpy change of the 24 h and 96 h aged alloys increased by 36% and 37% compared to the unaged alloy. The clustering of the solute atoms would evidently be enhanced with the increasing time of natural aging. Natural aging after quenching is essential to improve the alloy’s resistance to SCC. It might be due to the prevention of the formation of the precipitation free zone (PFZ) after T7 tempering.https://www.mdpi.com/1996-1944/13/24/5631Al-Cu-Mg-Ag alloynatural agingstress corrosion crackingSSRTPFZ
spellingShingle Mien-Chung Chen
Ming-Che Wen
Yang-Chun Chiu
Tse-An Pan
Yu-Chih Tzeng
Sheng-Long Lee
Effect of Natural Aging on the Stress Corrosion Cracking Behavior of A201-T7 Aluminum Alloy
Materials
Al-Cu-Mg-Ag alloy
natural aging
stress corrosion cracking
SSRT
PFZ
title Effect of Natural Aging on the Stress Corrosion Cracking Behavior of A201-T7 Aluminum Alloy
title_full Effect of Natural Aging on the Stress Corrosion Cracking Behavior of A201-T7 Aluminum Alloy
title_fullStr Effect of Natural Aging on the Stress Corrosion Cracking Behavior of A201-T7 Aluminum Alloy
title_full_unstemmed Effect of Natural Aging on the Stress Corrosion Cracking Behavior of A201-T7 Aluminum Alloy
title_short Effect of Natural Aging on the Stress Corrosion Cracking Behavior of A201-T7 Aluminum Alloy
title_sort effect of natural aging on the stress corrosion cracking behavior of a201 t7 aluminum alloy
topic Al-Cu-Mg-Ag alloy
natural aging
stress corrosion cracking
SSRT
PFZ
url https://www.mdpi.com/1996-1944/13/24/5631
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