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Experimental Study of Rubberized Concrete Stress-Strain Behavior for Improving Constitutive Models

机译:橡胶混凝土应力-应变特性改进本构模型的试验研究

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摘要

Inclusion of rubber into concrete changes its behavior and the established shape of its stress-strain curve. Existing constitutive stress-strain models for concrete are not valid in case of rubberized concrete, and currently available modified models require additional validation on a larger database of experimental results, with a wider set of influential parameters. By executing uniaxial compressive tests on concrete with rubber substituting 10%, 20%, 30%, and 40% of aggregate, it was possible to study and evaluate the influence of rubber content on its mechanical behavior. The stress-strain curve was investigated in its entirety, including compressive strength, elastic modulus, strains at significant levels of stress, and failure patterns. Experimental results indicated that increase of rubber content linearly decreases compressive strength and elastic modulus, but increases ductility. By comparing experimental stress-strain curves with those plotted using available constitutive stress-strain models it was concluded that they are inadequate for rubberized concrete with high rubber content. Based on determined deviations an improvement of an existing model was proposed, which provides better agreement with experimental curves. Obtained research results enabled important insights into correlations between rubber content and changes of the stress-strain curve required when utilizing nonlinear material properties.
机译:将橡胶包含在混凝土中会改变其行为,并改变其应力-应变曲线的既定形状。对于橡胶混凝土,现有的混凝土本构应力-应变模型无效,并且当前可用的修改模型需要在更大的实验结果数据库中,具有更广泛的影响参数的基础上,进行额外的验证。通过对橡胶代替骨料的10%,20%,30%和40%的混凝土进行单轴压缩试验,可以研究和评估橡胶含量对其力学性能的影响。对应力-应变曲线进行了整体研究,包括抗压强度,弹性模量,明显应力水平下的应变以及破坏模式。实验结果表明,橡胶含量的增加线性降低了抗压强度和弹性模量,但增加了延展性。通过将实验应力-应变曲线与使用可用本构应力-应变模型绘制的曲线进行比较,可以得出结论,这些曲线不足以用于高橡胶含量的橡胶混凝土。基于确定的偏差,提出了对现有模型的改进,它与实验曲线具有更好的一致性。获得的研究结果使人们能够深入了解橡胶含量与利用非线性材料特性所需的应力-应变曲线变化之间的相关性。

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