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基于球化機理的TA15鈦合金熱變形統一本構模型

Unified constitutive model of TA15 titanium alloy in hot deformation based on the globularization mechanism

  • 摘要: 應用晶界分離模型解釋了片層α相的球化現象,闡述了TA15鈦合金轉變組織中次生片層α相的球化是其主要的流動軟化機制.基于鈦合金球化軟化機理,建立了TA15鈦合金的統一黏塑性本構模型.本構模型綜合考慮了次生α相的球化、正則位錯密度、等向硬化、塑性成形產生的溫升、成形過程中的相變等物理變量.利用遺傳算法確定了本構模型中的材料常數.本構模型能夠較好地描述TA15鈦合金熱變形下的流動應力變化.

     

    Abstract: Globularization of lamellar α phase was stated by the grain boundary separating model. It was elucidated that globularization of secondary (lamellar) αphase in the transformed microstructure is the main flow softening mechanism of TA15 titanium alloy. A unified viscoplastic constitutive equation of TA15 titanium alloy was developed based on the globularization mechanism. Some physical variables including globularization of secondary (lamellar) αphase, normalized dislocation density, isotropic hardening, plastic deformation induced temperature rise, and phase transformation during deformation were comprehensively considered in the constitutive model. Material constants in the constitutive model were determined and optimized by a genetic algorithm. The constitutive model can accurately predict the flow stress of TA15 titanium alloy in hot deformation.

     

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