Effects of Temperature and Strain Rate on Tensile Deformation Behavior of 9Cr-0.5Mo-1.8W-VNb Ferritic Heat-Resistant Steel

A series of uniaxial tensile tests were carried out at different strain rate and different temperatures to investigate the effects of temperature and strain rate on tensile deformation behavior of P92 steel. In the temperature range of 30–700 °C, the variations of flow stress, average work-hardening...

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Main Authors: Guo Xiaofeng, Weng Xiaoxiang, Jiang Yong, Gong Jianming
Format: Article
Language:English
Published: De Gruyter 2017-09-01
Series:High Temperature Materials and Processes
Subjects:
Online Access:https://doi.org/10.1515/htmp-2016-0065
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spelling doaj-7b54a5dbb61249dea0823ff926e73bb22021-09-06T19:19:55ZengDe GruyterHigh Temperature Materials and Processes0334-64552191-03242017-09-0136991392010.1515/htmp-2016-0065Effects of Temperature and Strain Rate on Tensile Deformation Behavior of 9Cr-0.5Mo-1.8W-VNb Ferritic Heat-Resistant SteelGuo Xiaofeng0Weng Xiaoxiang1Jiang Yong2Gong Jianming3School of Mechanical and Power Engineering, Nanjing Tech University, Nanjing, Jiangsu 210009, ChinaSchool of Mechanical and Power Engineering, Nanjing Tech University, Nanjing, Jiangsu 210009, ChinaSchool of Mechanical and Power Engineering, Nanjing Tech University, Nanjing, Jiangsu 210009, ChinaSchool of Mechanical and Power Engineering, Nanjing Tech University, Nanjing, Jiangsu 210009, ChinaA series of uniaxial tensile tests were carried out at different strain rate and different temperatures to investigate the effects of temperature and strain rate on tensile deformation behavior of P92 steel. In the temperature range of 30–700 °C, the variations of flow stress, average work-hardening rate, tensile strength and ductility with temperature all show three temperature regimes. At intermediate temperature, the material exhibited the serrated flow behavior, the peak in flow stress, the maximum in average work-hardening rate, and the abnormal variations in tensile strength and ductility indicates the occurrence of DSA, whereas the sharp decrease in flow stress, average work-hardening rate as well as strength values, and the remarkable increase in ductility values with increasing temperature from 450 to 700 °C imply that dynamic recovery plays a dominant role in this regime. Additionally, for the temperature ranging from 550 to 650 °C, a significant decrease in flow stress values is observed with decreasing in strain rate. This phenomenon suggests the strain rate has a strong influence on flow stress. Based on the experimental results above, an Arrhenius-type constitutive equation is proposed to predict the flow stress.https://doi.org/10.1515/htmp-2016-0065p92 steeltensile testsdynamic strain aging
collection DOAJ
language English
format Article
sources DOAJ
author Guo Xiaofeng
Weng Xiaoxiang
Jiang Yong
Gong Jianming
spellingShingle Guo Xiaofeng
Weng Xiaoxiang
Jiang Yong
Gong Jianming
Effects of Temperature and Strain Rate on Tensile Deformation Behavior of 9Cr-0.5Mo-1.8W-VNb Ferritic Heat-Resistant Steel
High Temperature Materials and Processes
p92 steel
tensile tests
dynamic strain aging
author_facet Guo Xiaofeng
Weng Xiaoxiang
Jiang Yong
Gong Jianming
author_sort Guo Xiaofeng
title Effects of Temperature and Strain Rate on Tensile Deformation Behavior of 9Cr-0.5Mo-1.8W-VNb Ferritic Heat-Resistant Steel
title_short Effects of Temperature and Strain Rate on Tensile Deformation Behavior of 9Cr-0.5Mo-1.8W-VNb Ferritic Heat-Resistant Steel
title_full Effects of Temperature and Strain Rate on Tensile Deformation Behavior of 9Cr-0.5Mo-1.8W-VNb Ferritic Heat-Resistant Steel
title_fullStr Effects of Temperature and Strain Rate on Tensile Deformation Behavior of 9Cr-0.5Mo-1.8W-VNb Ferritic Heat-Resistant Steel
title_full_unstemmed Effects of Temperature and Strain Rate on Tensile Deformation Behavior of 9Cr-0.5Mo-1.8W-VNb Ferritic Heat-Resistant Steel
title_sort effects of temperature and strain rate on tensile deformation behavior of 9cr-0.5mo-1.8w-vnb ferritic heat-resistant steel
publisher De Gruyter
series High Temperature Materials and Processes
issn 0334-6455
2191-0324
publishDate 2017-09-01
description A series of uniaxial tensile tests were carried out at different strain rate and different temperatures to investigate the effects of temperature and strain rate on tensile deformation behavior of P92 steel. In the temperature range of 30–700 °C, the variations of flow stress, average work-hardening rate, tensile strength and ductility with temperature all show three temperature regimes. At intermediate temperature, the material exhibited the serrated flow behavior, the peak in flow stress, the maximum in average work-hardening rate, and the abnormal variations in tensile strength and ductility indicates the occurrence of DSA, whereas the sharp decrease in flow stress, average work-hardening rate as well as strength values, and the remarkable increase in ductility values with increasing temperature from 450 to 700 °C imply that dynamic recovery plays a dominant role in this regime. Additionally, for the temperature ranging from 550 to 650 °C, a significant decrease in flow stress values is observed with decreasing in strain rate. This phenomenon suggests the strain rate has a strong influence on flow stress. Based on the experimental results above, an Arrhenius-type constitutive equation is proposed to predict the flow stress.
topic p92 steel
tensile tests
dynamic strain aging
url https://doi.org/10.1515/htmp-2016-0065
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