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Effect of Steel Plates on Estimation of the Compressive Strength of Concrete via Ultrasonic Testing

机译:钢板对超声测试估算混凝土抗压强度的影响

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摘要

The presence of embedded steel affects the estimates obtained for the compressive strength of concrete during ultrasonic testing, as it increases the ultrasonic wave velocity. Thus, if the presence of steel in concrete is inevitable, then a correction factor is required for an accurate estimation of the concrete strength. While previous studies focused on the effect of steel reinforcing bars on the speed of ultrasonic waves in concrete, this work expands on the significance of embedded steel from steel bars to include steel plates. The wave velocity was measured for varying dimensions of embedded steel plates from 15 mm to 150 mm using 54-kHz ultrasonic testing equipment. Through experiments, the effect of steel plates on the ultrasonic testing of concrete was quantified to derive proper correction factors. It was found that the thickness, depth, and height of the steel plates significantly affected the test results. These findings can be applied to ultrasonic testing to estimate the compressive strength of concrete consisting of a significant volume of steel, such as in steel-reinforced concrete structures.
机译:嵌入钢的存在会影响超声测试过程中混凝土抗压强度的估算值,因为它会增加超声波速度。因此,如果不可避免地在混凝土中存在钢,则需要校正因子来精确估计混凝土强度。尽管先前的研究集中于钢筋对混凝土中超声波速度的影响,但这项工作扩展了从钢筋到钢板在内的嵌入式钢的重要性。使用54 kHz超声波测试设备,测量了从15 mm到150 mm的各种尺寸的嵌入式钢板的波速。通过实验,量化了钢板对混凝土超声检测的影响,以得出适当的校正因子。发现钢板的厚度,深度和高度显着影响测试结果。这些发现可用于超声波测试,以估计由大量钢材组成的混凝土的抗压强度,例如在钢增强混凝土结构中。

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