Cargando…

Comparison in Deformation Behavior, Microstructure, and Failure Mechanism of Nickel Base Alloy 625 under Two Strain Rates

Tensile deformation behavior and microstructure of nickel-base superalloy Inconel 625 are investigated under different strain rates of 5 × 10(−4) s(−1) and 5 × 10(−5) s(−1). According to the experimental results, yield strength and ultimate tensile strength of the alloy increase with the increase in...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Meng, Wang, Quanyi, Cai, Yifan, Lu, Dong, Wang, Tianjian, Pei, Yubing, Zhang, Hong, Liu, Yongjie, Wang, Qingyuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8158524/
https://www.ncbi.nlm.nih.gov/pubmed/34070188
http://dx.doi.org/10.3390/ma14102652
_version_ 1783699903944327168
author Liu, Meng
Wang, Quanyi
Cai, Yifan
Lu, Dong
Wang, Tianjian
Pei, Yubing
Zhang, Hong
Liu, Yongjie
Wang, Qingyuan
author_facet Liu, Meng
Wang, Quanyi
Cai, Yifan
Lu, Dong
Wang, Tianjian
Pei, Yubing
Zhang, Hong
Liu, Yongjie
Wang, Qingyuan
author_sort Liu, Meng
collection PubMed
description Tensile deformation behavior and microstructure of nickel-base superalloy Inconel 625 are investigated under different strain rates of 5 × 10(−4) s(−1) and 5 × 10(−5) s(−1). According to the experimental results, yield strength and ultimate tensile strength of the alloy increase with the increase in strain rate in room temperature. Microstructure results indicate that the size of dimples is smaller in the tensile fracture surface at low strain rate than the high strain rate, and the number of dimples is also related to the strain rates and twins appear earlier in the specimens with higher strain rates. Apart from Hollomon and Ludwik functions, a new formula considering the variation trend of strength in different deformation stages is deduced and introduced, which fit closer to the tensile curves of the 625 alloy used in the present work at both strain rates. Furthermore, the Schmid factors of tensile samples under two strain rates are calculated and discussed. In the end, typical work hardening behavior resulting from the dislocations slip behavior under different strain rates is observed, and a shearing phenomenon of slip lines cross through the δ precipitates due to the movement of dislocations is also be note.
format Online
Article
Text
id pubmed-8158524
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-81585242021-05-28 Comparison in Deformation Behavior, Microstructure, and Failure Mechanism of Nickel Base Alloy 625 under Two Strain Rates Liu, Meng Wang, Quanyi Cai, Yifan Lu, Dong Wang, Tianjian Pei, Yubing Zhang, Hong Liu, Yongjie Wang, Qingyuan Materials (Basel) Article Tensile deformation behavior and microstructure of nickel-base superalloy Inconel 625 are investigated under different strain rates of 5 × 10(−4) s(−1) and 5 × 10(−5) s(−1). According to the experimental results, yield strength and ultimate tensile strength of the alloy increase with the increase in strain rate in room temperature. Microstructure results indicate that the size of dimples is smaller in the tensile fracture surface at low strain rate than the high strain rate, and the number of dimples is also related to the strain rates and twins appear earlier in the specimens with higher strain rates. Apart from Hollomon and Ludwik functions, a new formula considering the variation trend of strength in different deformation stages is deduced and introduced, which fit closer to the tensile curves of the 625 alloy used in the present work at both strain rates. Furthermore, the Schmid factors of tensile samples under two strain rates are calculated and discussed. In the end, typical work hardening behavior resulting from the dislocations slip behavior under different strain rates is observed, and a shearing phenomenon of slip lines cross through the δ precipitates due to the movement of dislocations is also be note. MDPI 2021-05-18 /pmc/articles/PMC8158524/ /pubmed/34070188 http://dx.doi.org/10.3390/ma14102652 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Meng
Wang, Quanyi
Cai, Yifan
Lu, Dong
Wang, Tianjian
Pei, Yubing
Zhang, Hong
Liu, Yongjie
Wang, Qingyuan
Comparison in Deformation Behavior, Microstructure, and Failure Mechanism of Nickel Base Alloy 625 under Two Strain Rates
title Comparison in Deformation Behavior, Microstructure, and Failure Mechanism of Nickel Base Alloy 625 under Two Strain Rates
title_full Comparison in Deformation Behavior, Microstructure, and Failure Mechanism of Nickel Base Alloy 625 under Two Strain Rates
title_fullStr Comparison in Deformation Behavior, Microstructure, and Failure Mechanism of Nickel Base Alloy 625 under Two Strain Rates
title_full_unstemmed Comparison in Deformation Behavior, Microstructure, and Failure Mechanism of Nickel Base Alloy 625 under Two Strain Rates
title_short Comparison in Deformation Behavior, Microstructure, and Failure Mechanism of Nickel Base Alloy 625 under Two Strain Rates
title_sort comparison in deformation behavior, microstructure, and failure mechanism of nickel base alloy 625 under two strain rates
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8158524/
https://www.ncbi.nlm.nih.gov/pubmed/34070188
http://dx.doi.org/10.3390/ma14102652
work_keys_str_mv AT liumeng comparisonindeformationbehaviormicrostructureandfailuremechanismofnickelbasealloy625undertwostrainrates
AT wangquanyi comparisonindeformationbehaviormicrostructureandfailuremechanismofnickelbasealloy625undertwostrainrates
AT caiyifan comparisonindeformationbehaviormicrostructureandfailuremechanismofnickelbasealloy625undertwostrainrates
AT ludong comparisonindeformationbehaviormicrostructureandfailuremechanismofnickelbasealloy625undertwostrainrates
AT wangtianjian comparisonindeformationbehaviormicrostructureandfailuremechanismofnickelbasealloy625undertwostrainrates
AT peiyubing comparisonindeformationbehaviormicrostructureandfailuremechanismofnickelbasealloy625undertwostrainrates
AT zhanghong comparisonindeformationbehaviormicrostructureandfailuremechanismofnickelbasealloy625undertwostrainrates
AT liuyongjie comparisonindeformationbehaviormicrostructureandfailuremechanismofnickelbasealloy625undertwostrainrates
AT wangqingyuan comparisonindeformationbehaviormicrostructureandfailuremechanismofnickelbasealloy625undertwostrainrates