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Influence of Humidity on the Elastic Modulus and Axis Compressive Strength of Concrete in a Water Environment

机译:湿度对水环境混凝土弹性模量和轴抗压强度的影响

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摘要

Concrete structures are often in different humidity conditions that have a significant impact on the elastic modulus of concrete, therefore, systematic research on the evolution of the law of concrete elastic modulus under different humidity conditions is needed. In this study, the variation laws of the water saturation of concrete specimens with strength grades C15, C20, and C30 were obtained, and then the influence laws of the water saturation on the concrete axial compressive strength were carried out, and the prediction model of elastic modulus of concrete with respect to water saturation was constructed. The results showed that the water saturation of concrete with strength grades C15, C20, and C30 increased with an extension of immersion time, and the water saturation showed an approximately linear rapid growth within three soaking hours, reaching 47.56%, 71.63%, and 47.29%, respectively. Note, the concrete reached saturation state when the soaking time was 240 h. The axial compressive strength with strength grades C15, C20, and C30 decreased with increased water saturation, and the axial compressive strength of saturated concrete decreased by 27.25%, 21.14%, and 20.76%, respectively, as compared with the dry state concrete. The elastic modulus of concrete with strength grades C15, C20, and C30 increased with increased water saturation, and the elastic modulus of saturated concrete was 1.18, 1.19, and 1.24 times higher than those of dry concrete, respectively.
机译:具体结构通常在不同的湿度条件下对混凝土弹性模量产生重大影响,因此需要对不同湿度条件下的混凝土弹性模量规律的演化进行系统研究。在这项研究中,获得了强度等级C15,C20和C30的混凝土样本水饱和度的变化规律,然后进行了水饱和对混凝土轴向抗压强度的影响规律,以及预测模型构建了关于水饱和的混凝土的弹性模量。结果表明,具有强度等级C15,C20和C30的混凝土的水饱和度随着浸入时间的延伸而增加,水饱和度在三个浸泡时间内显示出大致线性的快速生长,达到47.56%,71.63%和47.29 %, 分别。注意,当浸泡时间为240小时时,混凝土达到饱和状态。随着水饱和度的增加,具有强度等级C15,C20和C30的轴向抗压强度随着水饱和度的增加而降低,与干燥状态混凝土相比,饱和混凝土的轴向抗压强度分别降低了27.25%,21.14%和20.76%。具有强度等级C15,C20和C30的混凝土的弹性模量随着水饱和的增加而增加,饱和混凝土的弹性模量分别比干混凝土高1.18,1.19和1.24倍。

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