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A comparative study of six fracture loci for DIN1623 St12 steel to predict strip tearing in a tandem cold rolling mill
by
Asadi, M.
, Haji Aboutalebi, F.
, Poursina, M.
in
Accuracy
/ Aluminum
/ Axial stress
/ Calibration
/ Classical Mechanics
/ Cold
/ Cold rolling mills
/ Cold strip mills
/ Cold tandem mills
/ Cold working
/ Comparative studies
/ Criteria
/ Curve fitting
/ Damage
/ Ductile fracture
/ Engineering
/ Loci
/ Mechanical properties
/ Metal forming
/ Original
/ Plastic deformation
/ Rolling mills
/ Steel
/ Strip
/ Tearing
/ Tensile tests
/ Theoretical and Applied Mechanics
2021
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A comparative study of six fracture loci for DIN1623 St12 steel to predict strip tearing in a tandem cold rolling mill
by
Asadi, M.
, Haji Aboutalebi, F.
, Poursina, M.
in
Accuracy
/ Aluminum
/ Axial stress
/ Calibration
/ Classical Mechanics
/ Cold
/ Cold rolling mills
/ Cold strip mills
/ Cold tandem mills
/ Cold working
/ Comparative studies
/ Criteria
/ Curve fitting
/ Damage
/ Ductile fracture
/ Engineering
/ Loci
/ Mechanical properties
/ Metal forming
/ Original
/ Plastic deformation
/ Rolling mills
/ Steel
/ Strip
/ Tearing
/ Tensile tests
/ Theoretical and Applied Mechanics
2021
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A comparative study of six fracture loci for DIN1623 St12 steel to predict strip tearing in a tandem cold rolling mill
by
Asadi, M.
, Haji Aboutalebi, F.
, Poursina, M.
in
Accuracy
/ Aluminum
/ Axial stress
/ Calibration
/ Classical Mechanics
/ Cold
/ Cold rolling mills
/ Cold strip mills
/ Cold tandem mills
/ Cold working
/ Comparative studies
/ Criteria
/ Curve fitting
/ Damage
/ Ductile fracture
/ Engineering
/ Loci
/ Mechanical properties
/ Metal forming
/ Original
/ Plastic deformation
/ Rolling mills
/ Steel
/ Strip
/ Tearing
/ Tensile tests
/ Theoretical and Applied Mechanics
2021
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A comparative study of six fracture loci for DIN1623 St12 steel to predict strip tearing in a tandem cold rolling mill
Journal Article
A comparative study of six fracture loci for DIN1623 St12 steel to predict strip tearing in a tandem cold rolling mill
2021
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Overview
During tandem cold rolling mill process, strip tearing reduces production rate, damages the rollers, and consequently decreases efficiency of production. Predicting and postponing of this phenomenon leads to less expensive trial and errors in rolling industries. In this research first, DIN1623 St12 steel which is frequently applied in metal forming industries and also Bao–Wierzbicki ductile damage criterion is selected. Then, six curve fitting methods are employed to calibrate the material and are presented in 2D space of equivalent plastic strain to fracture and stress triaxiality. Finally, the achieved fracture loci are validated by comparing corresponding simulation results with experimental tests and the best curve fitting method with aims of high accuracy for tracking the strip tearing in a tandem cold rolling mill process and fewer numbers of required tests is revealed. Eventually, due to engaging this innovative approach, it is possible to trace the strip tearing in tandem cold rolling mill process by performing only two simple tensile tests. Therefore, it is concluded that strip tearing phenomenon can be precisely predicted in tandem cold rolling mill processes by a special focus on calibration of the Bao–Wierzbicki damage criterion in the range of low positive stress triaxiality which causes less number of needed tests.
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