考虑配合比的不同龄期混凝土纵波速度和弹性模量评价

Mehdi Sabagh, Mansour Asgari Khorasgani, M. Kazemi
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引用次数: 0

摘要

混凝土是一种机械性能随时间变化的材料。这种变化是由于混凝土内部被称为水化的化学反应。其中的弹性模量和纵波速度与混凝土的龄期及其设置有直接关系。在材料混合后,混凝土凝结速度很快,随着时间的推移,其速度下降。在此基础上,制备了一系列立方体混凝土试件,监测了其在养护过程中纵波速度和弹性模量在不同龄期的变化,并给出了两者之间的关系。研究了材料规格、影响因素和混凝土配合比,包括水灰比和细粗骨料比。超声波速在混凝土凝结速度快的早期试件中增加较快,在后期试件纵波波速增加速率减小。水灰比的增加导致纵波速度随时间的增加。经验方程已被表示为对数曲线。对这些经验方程进行了推导,并提出了一个效率更高、精度更高的模型。这些经验方程可用于结构的解析和数值分析。这些模型可用于确定混凝土结构的加载时间,并预测其其他物理和机械性能,如强度和刚度。
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Evaluation of longitudinal wave velocity and elasticity modulus of concrete at different ages considering mixing ratios
Concrete is a material that the mechanical properties of which change over time. This change is due to chemical reactions within the concrete known as hydration. One of these properties is the modulus of elasticity and longitudinal wave velocity, which has a direct relation with the concrete age and its setting. Just after the materials mixing, the concrete setting is fast, and over time its rate decreases. Here, a series of cubic concrete specimens are prepared and changing in longitudinal wave velocity and modulus of elasticity in different ages is monitored during the process of curing and a relationship has been presented. Materials specifications impact and concrete mixing ratios, including the water to cement ratio and fine to coarse aggregates ratio is studied. Ultrasonic wave velocity has been increased faster at early ages of specimens where the concrete setting process is fast and in last days, rates of increasing the longitudinal wave velocity decreases. An increase in the water to cement ratio leads to increases in the longitudinal wave velocity over time. The empirical equations have been formulated as logarithmic curves. These empirical equations have been developed and a model with more efficiency and precision has been presented. These empirical equations can be used in the analytical and numerical analysis of structures. These models can be used to determine the loading time of concrete structures and to predicting their other physical and mechanical properties, such as strength and stiffness.
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