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780MPa級熱鍍鋅用TRIP鋼退火工藝及組織演變

Annealing processing parameters and microstructure evolution of 780MPa hot dip galvanizing TRIP steel

  • 摘要: 研究了熱鍍鋅用高強TRIP鋼的退火工藝對性能的影響和組織演變規律.結果表明:實驗用鋼可獲得780.00MPa以上的抗拉強度和24.00%以上的斷后延伸率;兩相區加熱溫度和貝氏體保溫時間對鋼的力學性能具有顯著影響,兩相區加熱溫度為850℃,貝氏體保溫時間為30s時,實驗用鋼能獲得最佳的綜合力學性能;在貝氏體中溫相變后,仍有部分亞穩奧氏體(碳含量較低)在后續冷卻過程中發生馬氏體相變,從而導致鋼退火后的微觀組織由鐵素體、貝氏體、殘余奧氏體和馬氏體組成.

     

    Abstract: The effects of annealing processing on the mechanical properties and microstructure evolution of high strength hot dip galvanizing TRIP steel were investigated.The results show that the tensile strength over 780.00MPa and elongation over 24.00% can be obtained,and the mechanical properties are significantly influenced by intercritical annealing temperature and isothermal bainitic transformation time.When the intercritical annealing temperature is 850℃ and the isothermal bainitic transformation time is 30s,the steel has the best mechanical properties.Partial metastable austenite (with a lower carbon content) remained after bainitic transformation will be transformed into martensite in the later cooling stage.Therefore,the annealing microstructure is composed of ferrite,bainite,retained austenite and martensite.

     

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