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Plasticity constitutive modeling of partially confined concrete with steel jacketing

机译:钢衬套部分承压混凝土的塑性本构模型

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摘要

Current research offers experimental and numerical investigation on concrete blocks with partial steel jackets, which endures axial compression. Experimental procedure provides the primary data for calibration of proposed model. Specimens have various steel jacketing ratios and the load is axial compression. The recorded data are strain components, elongation and the resisted force in experiment. A continuous cap plasticity surface expresses the non-uniform expansion and contraction of concrete beside an isotropic damage law that models the strength degradation using AbaqusA (R) code. In presented mathematical model, the contraction and dilation of concrete is function of lateral pressure provided by steel jackets. The confining pressure is non-uniform due to discrete arrangement of steel ties in jacket and yielding of steel as concrete expands. Model provides parametric curves in order to design the confined-to-unconfined strength and ductility capacities of confined concrete. The presented numerical model is in close agreement with experimental results based on acquired results. We derive finally parametric curves for ductility and strength of confined concrete for various jacketing ratios.
机译:当前的研究提供了对具有部分钢套的混凝土砌块进行轴向压缩的实验和数值研究。实验步骤为标定模型提供了主要数据。标本具有各种不同的钢套比率,并且载荷是轴向压缩。记录的数据是实验中的应变分量,伸长率和抵抗力。连续的盖层可塑性表面表示混凝土的不均匀膨胀和收缩,而各向同性破坏定律则使用AbaqusA(R)代码对强度降低进行建模。在提出的数学模型中,混凝土的收缩和膨胀是钢套提供的侧向压力的函数。由于套管中钢扎带的离散布置以及混凝土膨胀时钢的屈服,围压是不均匀的。模型提供了参数曲线,以设计承压混凝土的承压至非承压强度和延性。所提出的数值模型与基于获得的结果的实验​​结果非常吻合。我们最终得出了各种夹套率下承压混凝土的延性和强度的参数曲线。

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