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Computational applications of a coupled plasticity-damage constitutive model for simulating plain concrete fracture

机译:塑性-损伤耦合本构模型在普通混凝土断裂模拟中的计算应用

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摘要

A coupled plasticity-damage model for plain concrete is presented in this paper. Based on continuum damage mechanics (CDM), an isotropic and anisotropic damage model coupled with a plasticity model is proposed in order to effectively predict and simulate plain concrete fracture. Two different damage evolution laws for both tension and compression are formulated for a more accurate prediction of the plain concrete behavior. In order to derive the constitutive equations and for the easiness in the numerical implementation, in the CDM framework the strain equivalence hypothesis is adopted such that the strain in the effective (undamaged) configuration is equivalent to the strain in the nominal (damaged) configuration. The proposed constitutive model has been shown to satisfy the thermodynamics requirements. Detailed numerical algorithms are developed for the finite element implementation of the proposed coupled plasticity-damage model. The numerical algorithm is coded using the user subroutine UMAT and then implemented in the commercial finite element analysis program Abaqus. Special emphasis is placed on identifying the plasticity and damage model material parameters from loading–unloading uniaxial test results. The overall performance of the proposed model is verified by comparing the model predictions to various experimental data, such as monotonic uniaxial tension and compression tests, monotonic biaxial compression test, loading–unloading uniaxial tensile and compressive tests, and mixed-mode fracture tests.
机译:提出了一种普通混凝土的塑性-损伤耦合模型。基于连续损伤力学(CDM),提出了各向同性和各向异性损伤模型以及塑性模型,以有效地预测和模拟普通混凝土的断裂。制定了两种不同的拉伸和压缩损伤演化规律,以更准确地预测普通混凝土的行为。为了导出本构方程并简化数值实现,在CDM框架中采用了应变当量假设,以使有效(未损坏)构型下的应变等于标称(损坏)构型下的应变。所提出的本构模型已经证明可以满足热力学要求。为提出的可塑性-损伤模型的有限元实现开发了详细的数值算法。数值算法使用用户子例程UMAT进行编码,然后在商业有限元分析程序Abaqus中实现。特别强调从装卸单轴测试结果中识别塑性和损伤模型材料参数。通过将模型预测与各种实验数据进行比较,验证了所提出模型的整体性能,例如单调单轴拉伸和压缩测试,单调双轴压缩测试,装卸单轴拉伸和压缩测试以及混合模式断裂测试。

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