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Effects of Saturation Levels on the Ultrasonic Pulse Velocities and Mechanical Properties of Concrete

机译:饱和水平对混凝土超声脉冲速度和机械性能的影响

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摘要

The main objective of this research is to investigate the effect of water content in concrete on the velocities of ultrasonic waves (P- and S-waves) and mechanical properties (elastic modulus and compressive strength) of concrete. For this study, concrete specimens (100 mm × 200 mm cylinders) were fabricated with three different water-to-binder ratios (0.52, 0.35, and 0.26). These cylinders were then submerged in water to be saturated in different degrees from 25% to 100% with an interval of 25% saturation. Another set of cylinders was also oven-dried to represent the dry condition. The dynamic properties of concrete were then assessed using a measurement of elastic wave accordance with ASTM C597-16 and using resonance tests following ASTM C215-19, before and after immersion in water. The static properties of saturated concrete were also assessed by the uniaxial compressive testing according to ASTM C39/C39M-20 and ASTM C469/C469M-14. It was observed that the saturation level of concrete affected the two ultrasonic wave velocities and the two static mechanical properties of concrete in various ways. The relationship between P-wave velocity and compressive strength of concrete was highly sensitive to saturation condition of concrete. In contrast, S-wave velocity of concrete was closely correlated with compressive strength of concrete, which was much less sensitive to water saturation level compared to P-wave velocity of concrete. Finally, it was noticed that water saturation condition only little affects the relationship between the dynamic and elastic moduli of elasticity of concrete studies in this study.
机译:本研究的主要目的是探讨混凝土混凝土中水含量对混凝土的超声波(P和S波)的速度和机械性能(弹性模量和抗压强度)的影响。对于本研究,用三种不同的水 - 粘合剂比(0.52,0.35和0.26)制造混凝土试样(100mm×200mm圆柱体)。然后将这些气缸浸没在水中以从25%至100%的不同程度饱和,间隔为25%饱和度。还烘箱干燥的另一组气缸以表示干燥条件。然后使用根据ASTM C597-16的弹性波的测量来评估混凝土的动态性质,并在浸入水中的ASTM C215-19之后使用谐振试验。根据ASTM C39 / C39M-20和ASTM C469 / C469M-14,还通过单轴压缩检测评估饱和混凝土的静态性能。观察到,混凝土饱和水平影响了两种超声波速度和混凝土的两个静态力学性能。混凝土P波速度与抗压强度的关系对混凝土饱和条件非常敏感。相反,混凝土的S波速度与混凝土的抗压强度密切相关,与混凝土的P波速度相比,对水饱和水平的敏感性要小得多。最后,注意到水饱和条件只影响本研究中具体研究的动态和弹性模量之间的关系。

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