This study investigates the mechanical properties of Q235B steel through quasi-static tests at both room temperature and elevated temperature.The initial values of the Johnson-Cook model parameters are determined usin...This study investigates the mechanical properties of Q235B steel through quasi-static tests at both room temperature and elevated temperature.The initial values of the Johnson-Cook model parameters are determined using a fitting method.The global response surface algorithm is employed to optimize and calibrate the Johnson-Cook model parameters for Q235B steel under both room temperature and elevated temperature conditions.A simulation model is established at room temperature,and the simulated mechanical performance curves for displacement and stress are monitored.Multiple optimization algorithms are applied to optimize and calibrate the model parameters at room temperature.The global response surface algorithm is identified as the most suitable algorithm for this optimization problem.Sensitivity analysis is conducted to explore the impact of model parameters on the objective function.The analysis indicates that the optimized material model better fits the experimental values,aligning more closely with the actual test results of material strain mechanisms over a wide temperature range.展开更多
基于孪晶强化Johnson-Cook本构(J-C本构)构建有限元(Finite element method,FEM)耦合黏塑性自洽模型(Visco-plastic self-consistent model,VPSC)宏细观仿真模型,研究预孪晶AZ31镁合金高速冲击过程的力学响应、变形机制和织构演变。结...基于孪晶强化Johnson-Cook本构(J-C本构)构建有限元(Finite element method,FEM)耦合黏塑性自洽模型(Visco-plastic self-consistent model,VPSC)宏细观仿真模型,研究预孪晶AZ31镁合金高速冲击过程的力学响应、变形机制和织构演变。结果表明:基于孪晶强化的J-C本构构建的宏细观仿真模型更能准确地预测高速冲击过程中次要变形机制及织构组分;引入孪晶强化的J-C本构不会对主要变形机制产生影响,主要影响次要变形机制;在次要变形机制中,棱柱面滑移活性的变化影响基面滑移的汇聚效应与锥面〈c+a〉滑移的分离效应之间的竞争关系,导致织构的组分和极密度发生变化。该宏细观仿真模型的构建,为研究高速冲击过程中潜在的变形机理提供了参考。展开更多
文摘This study investigates the mechanical properties of Q235B steel through quasi-static tests at both room temperature and elevated temperature.The initial values of the Johnson-Cook model parameters are determined using a fitting method.The global response surface algorithm is employed to optimize and calibrate the Johnson-Cook model parameters for Q235B steel under both room temperature and elevated temperature conditions.A simulation model is established at room temperature,and the simulated mechanical performance curves for displacement and stress are monitored.Multiple optimization algorithms are applied to optimize and calibrate the model parameters at room temperature.The global response surface algorithm is identified as the most suitable algorithm for this optimization problem.Sensitivity analysis is conducted to explore the impact of model parameters on the objective function.The analysis indicates that the optimized material model better fits the experimental values,aligning more closely with the actual test results of material strain mechanisms over a wide temperature range.
文摘基于孪晶强化Johnson-Cook本构(J-C本构)构建有限元(Finite element method,FEM)耦合黏塑性自洽模型(Visco-plastic self-consistent model,VPSC)宏细观仿真模型,研究预孪晶AZ31镁合金高速冲击过程的力学响应、变形机制和织构演变。结果表明:基于孪晶强化的J-C本构构建的宏细观仿真模型更能准确地预测高速冲击过程中次要变形机制及织构组分;引入孪晶强化的J-C本构不会对主要变形机制产生影响,主要影响次要变形机制;在次要变形机制中,棱柱面滑移活性的变化影响基面滑移的汇聚效应与锥面〈c+a〉滑移的分离效应之间的竞争关系,导致织构的组分和极密度发生变化。该宏细观仿真模型的构建,为研究高速冲击过程中潜在的变形机理提供了参考。