Study of hot processing map of AISI 1035 steel under high temperature

In this study, AISI 1035 steel was selected as the research object, and a single-pass thermal compression simulation experiment was carried out. Based on the true stress-strain curve obtained from the experiment, the dynamic DMM thermal processing map theory was used to draw the material under diffe...

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Main Authors: G. C. Yu, G. Song, C. Han, Y. Z. Zhong, H. C. Ji, J. Yuan
Format: Article
Language:English
Published: Croatian Metallurgical Society 2023-01-01
Series:Metalurgija
Subjects:
Online Access:https://hrcak.srce.hr/file/419893
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author G. C. Yu
G. Song
C. Han
Y. Z. Zhong
H. C. Ji
J. Yuan
author_facet G. C. Yu
G. Song
C. Han
Y. Z. Zhong
H. C. Ji
J. Yuan
author_sort G. C. Yu
collection DOAJ
description In this study, AISI 1035 steel was selected as the research object, and a single-pass thermal compression simulation experiment was carried out. Based on the true stress-strain curve obtained from the experiment, the dynamic DMM thermal processing map theory was used to draw the material under different thermal deformation conditions. and the rheological instability map based on the Prasad instability criterion, and the thermal processing map is used to predict the suitable processing interval and rheological instability interval for the thermal deformation process of the material under different process conditions. So as to provide theoretical support for the optimization of the material processing technology.
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spelling doaj.art-272af1fbccc34d07a06702c317bfa48c2023-01-04T09:21:58ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762023-01-01622243246Study of hot processing map of AISI 1035 steel under high temperatureG. C. Yu0G. Song1C. Han2Y. Z. Zhong3H. C. Ji4J. Yuan5China 22 Mcc Group Corporation Limited, Hebei Tangshan, ChinaCollege of Mechanical Engineering, North China University of Science and Technology, Hebei, Tangshan, ChinaChina 22 Mcc Group Corporation Limited, Hebei Tangshan, ChinaChina 22 Mcc Group Corporation Limited, Hebei Tangshan, ChinaCollege of Mechanical Engineering, North China University of Science and Technology, Hebei, Tangshan, ChinaCollege of Mechanical Engineering, North China University of Science and Technology, Hebei, Tangshan, ChinaIn this study, AISI 1035 steel was selected as the research object, and a single-pass thermal compression simulation experiment was carried out. Based on the true stress-strain curve obtained from the experiment, the dynamic DMM thermal processing map theory was used to draw the material under different thermal deformation conditions. and the rheological instability map based on the Prasad instability criterion, and the thermal processing map is used to predict the suitable processing interval and rheological instability interval for the thermal deformation process of the material under different process conditions. So as to provide theoretical support for the optimization of the material processing technology.https://hrcak.srce.hr/file/419893AISI 1035 steelhot forginghot processing mapstraindestabilization zone
spellingShingle G. C. Yu
G. Song
C. Han
Y. Z. Zhong
H. C. Ji
J. Yuan
Study of hot processing map of AISI 1035 steel under high temperature
Metalurgija
AISI 1035 steel
hot forging
hot processing map
strain
destabilization zone
title Study of hot processing map of AISI 1035 steel under high temperature
title_full Study of hot processing map of AISI 1035 steel under high temperature
title_fullStr Study of hot processing map of AISI 1035 steel under high temperature
title_full_unstemmed Study of hot processing map of AISI 1035 steel under high temperature
title_short Study of hot processing map of AISI 1035 steel under high temperature
title_sort study of hot processing map of aisi 1035 steel under high temperature
topic AISI 1035 steel
hot forging
hot processing map
strain
destabilization zone
url https://hrcak.srce.hr/file/419893
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