Recrystallization behavior of twin roll cast low carbon steel strip

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The dynamic and static recrystallization behaviors of twin roll cast low carbon steel strip were investigated with an attempt to provide guiding deformation parameters for the on line hot rolling.In order to investigate dynamic recrystallization behavior,as cast strip was reheated and soaked with austenite grain size similar to the width level of the as cast columnar structure.Tensile test was used and the deformation temperature is in the range of 900℃to 1 100℃and strain rates are 0.01 s~(-1),0.1 s~(-1),1 s~(-1).The activation energy and stress exponent were determined as 306kJ/mol and 4.69 respectively.The ratio of critical strain to the peak strain is 0.65,and that of critical stress to the peak stress is 0.92.The dependence of the peak strain on the initial grain size and Zener - Hollomon parameters Z isε_p =9.1×10~(-4)×D_0~(0.48)Z~(0.13).The kinetics of the dynamic recrystallization and recrystallized grain size was predicted using models published.The as cast coarse austenite were dramatically refined after complete dynamic recrystallization.For static recrystallization,the tensile test was carried out on Gleeble -3500 thermo - mechanical simulator.The deformation temperature is in the range of 800℃to 1 200℃with strain rate 0.01 s~(-1) to 1s~(-1).The pre strain is fixed at 0.04 to 0.12 and the inter-hit delay time varies from 1 s to 3 000 s.The activation energy and Avrami exponent of static recrystallization were determined as 241 kJ/mol and 0.54 respectively.A kinetics model was proposed to describe the static recrystallization kinetics.The predicted results were in good agreement with the experimental results. The dynamic and static recrystallization behaviors of twin roll cast low carbon steel strip were investigated with an attempt to provide guiding deformation parameters for the on line hot rolling. Order to investigate dynamic recrystallization behavior, as cast strip was reheated and soaked with austenite grain size similar to the width level of the as cast columnar structure. Tensile test was used and the deformation temperature is in the range of 900 ° C to 1 100 ° C and the strain rates are 0.01 s -1, 0.1 s -1 , 1 s -1 (-1). The activation energy and stress exponent were determined as 306 kJ / mol and 4.69 respectively. The ratio of critical strain to the peak strain is 0.65, and that of critical stress to the peak stress is 0.92. dependence of the peak strain on the initial grain size and Zener-Hollomon parameters Z isε_p = 9.1 × 10 -4 × D_0 ~ 0.48 Z ~ 0.13. The kinetics of the dynamic recrystallization and recrystallized grain size was predicted using models published. as as cast coarse austen iteration dramatically complete after complete dynamic recrystallization. For static recrystallization, the tensile test was carried out on Gleeble-3500 thermo-mechanical simulator. deformation temperature is in the range 800 ℃ ~ 1 200 ℃ with strain rate 0.01 s ~ (- 1) to 1s ~ (-1). The pre-strain was fixed at 0.04 to 0.12 and the inter-hit delay time varies from 1 s to 3 000 s. The activation energy and Avrami exponent of static recrystallization were determined as 241 kJ / mol and 0.54 respectively. A kinetics model was proposed to describe the static recrystallization kinetics. The predicted results were in good agreement with the experimental results.
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