A New Analytical Model for the Flow Stress of Twin-roll Casting Magnesium Sheet at Elevated Temperatures

To evaluate the flow stress of the twin-roll casting magnesium sheet in high temperature forming processes,a new analytical model was proposed by analyzing stress-strain curves measured under various temperatures and strain rates.The model can be parameterized to reflect the volume fraction of semi-...

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Published inJournal of materials science & technology Vol. 26; no. 5; pp. 461 - 466
Main Authors Liu, Zhimin, Xing, Shuming, Bao, Peiwei, Li, Nan, Yao, Shuqing, Zhang, Milan
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.05.2010
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Abstract To evaluate the flow stress of the twin-roll casting magnesium sheet in high temperature forming processes,a new analytical model was proposed by analyzing stress-strain curves measured under various temperatures and strain rates.The model can be parameterized to reflect the volume fraction of semi-sold grain and sold grains undergoing twinning.By applying the new model,the result showed that the simulated stress-strain curves fit the experiment data very well.Such curve fitting can be employed for any magnesium sheet when the deformation conditions are known.Microstructure evolution indicated that it affected the stress-strain curves directly.The mechanisms of dynamic recrystallization(DRX) depended on the operating deformation mechanisms,which changed with temperatures.And the volume fraction and grain size of DRX changed with the Zener-Hollomon parameter and temperatures.
AbstractList To evaluate the flow stress of the twin-roll casting magnesium sheet in high temperature forming processes, a new analytical model was proposed by analyzing stress-strain curves measured under various temperatures and strain rates. The model can be parameterized to reflect the volume fraction of semi-sold grain and sold grains undergoing twinning. By applying the new model, the result showed that the simulated stress-strain curves fit the experiment data very well. Such curve fitting can be employed for any magnesium sheet when the deformation conditions are known. Microstructure evolution indicated that it affected the stress-strain curves directly. The mechanisms of dynamic recrystallization (DRX) depended on the operating deformation mechanisms, which changed with temperatures. And the volume fraction and grain size of DRX changed with the Zener-Hollomon parameter and temperatures.
To evaluate the flow stress of the twin-roll casting magnesium sheet in high temperature forming processes,a new analytical model was proposed by analyzing stress-strain curves measured under various temperatures and strain rates.The model can be parameterized to reflect the volume fraction of semi-sold grain and sold grains undergoing twinning.By applying the new model,the result showed that the simulated stress-strain curves fit the experiment data very well.Such curve fitting can be employed for any magnesium sheet when the deformation conditions are known.Microstructure evolution indicated that it affected the stress-strain curves directly.The mechanisms of dynamic recrystallization(DRX) depended on the operating deformation mechanisms,which changed with temperatures.And the volume fraction and grain size of DRX changed with the Zener-Hollomon parameter and temperatures.
Author Zhimin Liu Shuming Xing Peiwei Bao Nan Li Shuqing Yao Milan Zhang
AuthorAffiliation School of Mechanical, Electronic and Control Engineering, Beijing Jiaotong University, Beijing 100044, China
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CitedBy_id crossref_primary_10_1016_j_jmst_2017_03_009
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10.1016/j.ijmecsci.2007.09.007
10.1016/S1359-6454(01)00020-9
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Keywords Twin-roll casting
Semi-sold grains
Twinning
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Notes Twin-roll casting; Semi-sold grains; Twinning
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Semi-sold grains
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  doi: 10.1016/j.scriptamat.2003.11.014
  contributor:
    fullname: Perez-Prado
SSID ssj0037588
Score 1.8887856
Snippet To evaluate the flow stress of the twin-roll casting magnesium sheet in high temperature forming processes,a new analytical model was proposed by analyzing...
To evaluate the flow stress of the twin-roll casting magnesium sheet in high temperature forming processes, a new analytical model was proposed by analyzing...
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elsevier
chongqing
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StartPage 461
SubjectTerms Computer simulation
Curve fitting
Deformation
Deformation mechanisms
Dynamic recrystallization
Evolution
Flow stress
Forming
Grain size
Grains
High temperature
Magnesium
Mathematical analysis
Mathematical models
Microstructure
Semi-sold grains
Strain rate
Stress strain curves
Stress-strain relationships
Twin roll casting
Twinning
Volume fraction
Yield strength
体积分数
双辊铸造
应力应变曲线
曲线拟合
流动应力
解析模型
Title A New Analytical Model for the Flow Stress of Twin-roll Casting Magnesium Sheet at Elevated Temperatures
URI https://dx.doi.org/10.1016/S1005-0302(10)60073-4
https://search.proquest.com/docview/753665848
Volume 26
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