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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Deformation and Recrystallization Behavior of the Cast Structure in Large Size, High Strength Steel Ingots: Experimentation and Modeling
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Deformation and Recrystallization Behavior of the Cast Structure in Large Size, High Strength Steel Ingots: Experimentation and Modeling

机译:大尺寸铸造结构的变形和再结晶行为,高强度钢锭:实验与建模

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摘要

Constitutive modeling of the ingot breakdown process of large size ingots of high strength steel was carried out through comprehensive thermomechanical processing using Gleeble 3800(A (R)) thermomechanical simulator, finite element modeling (FEM), optical and electron back scatter diffraction (EBSD). For this purpose, hot compression tests in the range of 1473 K to 1323 K (1200 A degrees C to 1050 A degrees C) and strain rates of 0.25 to 2 s(-1) were carried out. The stress-strain curves describing the deformation behavior of the dendritic microstructure of the cast ingot were analyzed in terms of the Arrhenius and Hansel-Spittel models which were implemented in Forge NxT 1.0(A (R)) FEM software. The results indicated that the Arrhenius model was more reliable in predicting microstructure evolution of the as-cast structure during ingot breakdown, particularly the occurrence of dynamic recrystallization (DRX) process which was a vital parameter in estimating the optimum loads for forming of large size components. The accuracy and reliability of both models were compared in terms of correlation coefficient (R) and the average absolute relative error (ARRE).
机译:通过使用GLEEBLE 3800(A(R))热机械模拟器,有限元建模(FEM),光学和电子背面散射衍射(EBSD)通过综合热机械加工来进行大尺寸钢的铸锭击穿过程的铸锭击穿过程。为此目的,进行1473k至1323k(1200℃至1050℃)的热压缩试验,并进行0.25至2s(-1)的应变率。描述了描述铸锭的树突微观结构的变形行为的应力 - 应变曲线在Forge NXT 1.0(A(R))FEM软件中实现的arhenius和Hansel-Spittel模型。结果表明,在铸锭击穿期间预测铸造结构的微观结构演化,特别是动态再结晶(DRX)过程的发生,特别是在估计大尺寸成分的最佳载荷方面的动态再结晶(DRX)工艺的发生,更可靠。在相关系数(R)和平均绝对相对误差(ARRE)方面比较了两种模型的准确性和可靠性。

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