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Dynamic Recrystallization and Grain Growth Behavior of 20SiMn Low Carbon Alloy Steel 被引量:11

Dynamic Recrystallization and Grain Growth Behavior of 20SiMn Low Carbon Alloy Steel
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摘要 A series of thermodynamics experiments were used to optimize the hot forging process of 20SiMn low-carbon alloy steel. A dynamic recrystallization and grain growth model was developed for the 20SiMn steel for common production conditions of heavy forgings by doing a nonlinear curve fit of the experiment data. Optimized forging parameters were developed based on the control of the dynamic recrystallization and the MnS secondary phase. The data shows that the initial grain size and the MnS secondary phase all affect the behavior of the 20SiMn dynamic recrystallization and grain growth. A series of thermodynamics experiments were used to optimize the hot forging process of 20SiMn low-carbon alloy steel. A dynamic recrystallization and grain growth model was developed for the 20SiMn steel for common production conditions of heavy forgings by doing a nonlinear curve fit of the experiment data. Optimized forging parameters were developed based on the control of the dynamic recrystallization and the MnS secondary phase. The data shows that the initial grain size and the MnS secondary phase all affect the behavior of the 20SiMn dynamic recrystallization and grain growth.
出处 《Tsinghua Science and Technology》 SCIE EI CAS 2008年第5期609-613,共5页 清华大学学报(自然科学版(英文版)
基金 the Key Technologies Research and Development Program of the Eleventh Five-Year Plan of China (No. 2006BAF02B07)
关键词 20SiMn flow stress dynamic recrystallization grain growth secondary phase 20SiMn flow stress dynamic recrystallization grain growth secondary phase
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