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A New Combined Isotropic, Kinematic and Cross Hardening Model for Advanced High Strength Steel under Non-Linear Strain Loading Path

机译:非线性菌株负载路径下先进高强度钢新型各向同性,运动交叉硬化模型

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A fully modularized framework was established to combine isotropic, kinematic, and cross hardening behaviors under non-monotonic loading conditions for advanced high strength steels. Experiments under the following types of non-proportional loading conditions were conducted, 1) uniaxial tension-compression-tension/compression-tension-compression full cycle reversal loading, 2) uniaxial reversal loading with multiple cycles, and 3) reversal shear. The calibrated new model is decoupled between isotropic and kinematic hardening behaviors, and independent on both anisotropic yield criterion and fracture model. Nine materials were calibrated using the model, include: DP590, DP600, DP780, TRIP780, DP980LY, QP980, AK Steel DP980, TBF1180, and AK Steel DP1180. Good correlation was observed between experimental and modeled results.
机译:建立了一种完全模块化的框架,以在高强度钢的非单调负载条件下结合各向同性,运动和交叉硬化行为。 在下列类型的非比例加载条件下进行的实验,1)单轴拉伸 - 压缩/压缩 - 压缩 - 压缩全周期反转载荷,2)具有多个循环的单轴逆转载荷,3)逆转剪切。 校准的新模型在各向同性和运动学硬化行为之间解耦,并独立于各向异性屈服标准和裂缝模型。 使用该模型进行校准九种材料,包括:DP590,DP600,DP780,Trip780,DP980,QP980,AK Steel DP980,TBF1180和AK Steel DP1180。 在实验和建模结果之间观察到良好的相关性。

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