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首页> 外文期刊>Journal of Materials Processing Technology >Characterization of microstructures and hot-compressive behavior of GH4169 superalloy by kinetics analysis and simulation
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Characterization of microstructures and hot-compressive behavior of GH4169 superalloy by kinetics analysis and simulation

机译:动力学分析及仿真表征GH4169超合金的微观结构和热压缩行为

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摘要

Mechanical performance of hot forming products is strongly related to microstructures and deformation behaviors during hot processing. Through dynamic recrystallization (DRX) kinetics analysis and simulation, evolution of microstructure and hot-compressive behavior of a solution-treated GH4169 superalloy at different deformation conditions were investigated. The DRX behavior confirmed by microstructure observations was promoted at higher temperatures and lower strain rates. No 8 phase existed at or above 1333 K deformation temperature. Flow softening extent became more significant under lower temperatures and strain rates during compression where DRX played a dominate role in the softening behavior. A dramatic yield drop occurred within the temperature range varying from 1273 K to 1333 K due to the dissolution of 8 phase and enhanced mobility of defects. The DRX kinetics model was established to calculate the volume fraction and grain size of DRX under the investigated deformation parameters. Additionally, the relationships between microstructure and deformation behavior as well as mechanical property were discussed. Excellent correlation showed a possibility of controlling microstructure and mechanical properties by selecting suitable deformation parameters. Finally, the microstructure of GH4169 superalloy in terms of grain size after hot compression was successfully predicted by finite element model integrated with the developed kinetics equations implying the excellent applicability of such model for the current study and great potential for practical applications on predicting the mechanical properties of GH4169 alloy after hot working.
机译:热成形产品的力学性能与热加工过程中的微观结构和变形行为密切相关。通过动态再结晶(DRX)动力学分析和模拟,研究了固溶处理GH4169高温合金在不同变形条件下的组织演变和热压缩行为。微观结构观察证实的DRX行为在较高温度和较低应变率下得到促进。1333k变形温度及以上不存在8相。在压缩过程中,当DRX在软化行为中起主导作用时,在较低的温度和应变速率下,流动软化程度变得更加显著。在1273K到1333K的温度范围内,由于8相的溶解和缺陷流动性的增强,产量急剧下降。建立了DRX动力学模型,计算了在所研究的变形参数下DRX的体积分数和晶粒尺寸。此外,还讨论了显微组织与变形行为以及力学性能之间的关系。良好的相关性表明,通过选择合适的变形参数,可以控制微观结构和机械性能。最后,通过有限元模型结合已开发的动力学方程,成功预测了GH4169高温合金热压缩后的晶粒尺寸微观结构,这意味着该模型在当前研究中具有良好的适用性,在预测GH4169合金热加工后的机械性能方面具有巨大的实际应用潜力。

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