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A Multiaxial Creep-Fatigue Prediction Method Based On ABAQUS

机译:基于ABAQUS的多轴蠕变预测方法

摘要

The present invention discloses a multiaxial creep-fatigue prediction method based on ABAQUS, which comprises: S1: establishing an ABAQUS finite element model, and defining the viscoplastic constitutive equation of the material to be tested by means of the user subroutine UMAT; S2: determining the model parameters required by the viscoplastic constitutive equation; S3: establishing the fatigue damage calculation model and creep damage calculation model of the multiaxial stress-strain state of the material to be tested; S4: establishing an ABAQUS finite element model under the multiaxial stress-strain state, and calculating the stress-strain tensor of each cycle based on the defined viscoplastic constitutive equation and the model parameters; S5: calculating the equivalent stress and equivalent plastic strain by means of the user subroutine USDFLD, and superimposing the fatigue damage and creep damage of each cycle according to the linear cumulative damage criterion to obtain the crack initiation life of the material to be tested based on the fatigue damage calculation model and creep damage calculation model in combination with the stress-strain tensor.
机译:本发明公开了一种基于ABAQU的多轴蠕变 - 疲劳预测方法,包括:S1:建立ABAQUS有限元模型,并定义借助于用户子程序Umat测试的材料的粘塑性本构体方程; S2:确定粘液组成型方程所需的模型参数; S3:建立耐疲劳损伤计算模型和蠕变损伤计算模型待测材料的多轴应力 - 应变状态; S4:在多轴应力 - 应变状态下建立ABAQUS有限元模型,并基于所限定的粘胶组成型方程和模型参数计算每个循环的应力 - 应变张量; S5:通过用户子程序USDFLD计算等效应力和等效塑性应变,并根据线性累积损伤标准叠加每个循环的疲劳损坏和蠕变损伤,以获得基于的材料的裂纹启动寿命疲劳损伤计算模型与应力 - 应变张量相结合的蠕变损伤计算模型。

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