Empirical Models for Confined Concrete under Uniaxial Loading

Bohwan Oh, R. Sause
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引用次数: 7

Abstract

Theoretically sound empirical models for the axial stress-strain behavior as well as the transverse deformation behavior of concrete with constant confinement under uniaxial compression loading are proposed based on plasticity theory using existing empirical models and test data in the literature. The proposed axial stress-strain model provides strength and ductility increases with increasing confining pressure. The confining pressure is applied in the model as an initial hydrostatic compression loading region. The proposed empirical transverse deformation model uses the plastic strain rate as a function of the axial strain to provide a basis for quantifying the compaction and dilation behavior of confined concrete under uniaxial loading conditions. Concretes with various compressive strengths are considered in combination with confining pressures up to 50% of the unconfined concrete strength. Parameters needed to describe the axial and transverse deformation behaviors are identified and their recommended values are provided.
单轴荷载作用下约束混凝土的经验模型
基于塑性理论,利用已有的经验模型和文献试验数据,提出了在单轴压缩荷载作用下恒定约束混凝土轴向应力-应变行为和横向变形行为的理论完善的经验模型。所提出的轴向应力-应变模型表明,强度和延性随围压的增加而增加。围压在模型中作为初始静水压缩加载区域。本文提出的经验横向变形模型采用塑性应变率作为轴向应变的函数,为量化约束混凝土在单轴加载条件下的压实和膨胀行为提供了依据。具有各种抗压强度的混凝土被考虑与高达50%的无侧限混凝土强度的围压相结合。确定了描述轴向和横向变形行为所需的参数,并给出了它们的推荐值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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