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Damage Constitutive Model and Mechanical Performance Deterioration of Concrete under Sulfate Environment

机译:硫酸盐环境下混凝土损伤本构模型与机械性能恶化

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摘要

The effects of erosion mode, erosion age, and concentration of sulfate solution on mechanical properties of concrete were investigated. The dimensionless relationship model of the stress-strain of concrete on the basis of randomness was proposed. The variation of the elasticity modulus and Poisson’s ratio of the concrete surface attacked by sulfate was studied, and a novel method of using a superficial parameter to characterize the performance change of the concrete surface was recommended. The results showed that the dimensionless relationship model of stress-strain of concrete could be used to represent the variations of mechanical properties of concrete. The differences of load-displacement of concrete before and after sulfate attack were reflected as the change of curve’s slope and ultimate bearing capacity, and the slope of a straight section of the lateral and longitudinal strain curves of concrete surface also varied. The increment rates of ultimate bearing capacity of concrete attacked by 1% and saturated sulfate solution were about 30% and 10%, respectively. However, the decreasing ratio of the ultimate bearing capacity of concrete attacked by saturated sulfate solution was approximately 25%. The damage factor of the elasticity modulus of the concrete surface of C20 and C40 was 0.185 and −0.19, respectively. The obtained results could provide a support for investigating the variations of stress-strain relationship and mechanical performance of concrete under a sulfate environment.
机译:研究了侵蚀模式,侵蚀时期和硫酸盐溶液浓度对混凝土机械性能的影响。提出了基于随机性的混凝土应力 - 菌株的无量纲关系模型。建议使用硫酸盐攻击的混凝土表面的弹性模量和泊松比的变化,并建议使用浅表参数来表征混凝土表面的性能变化的新方法。结果表明,混凝土应力 - 应力的无量子关系模型可用于表示混凝土机械性能的变化。硫酸盐攻击前后混凝土的载荷 - 位移的差异被反映为曲线的斜坡和最终承载力的变化,并且混凝土表面的横向和纵向应变曲线的直截面的斜率也变化。攻击1%和饱和硫酸盐溶液的混凝土的最终承载能力的增量分别为约30%和10%。然而,由饱和硫酸盐溶液攻击的混凝土的最终承载能力的降低约为25%。 C20和C40的混凝土表面的弹性模量的损伤因子分别为0.185和-0.19。所得结果可以提供对研究硫酸盐环境下混凝土的应力 - 应变关系和机械性能的载体的支持。

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