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Experimental Study of Wave Propagation through Grouted Concrete

机译:灌浆混凝土中波传播的试验研究

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The injection of cementitious grout into deteriorated civil structures is a common application for strengthening or repair purposes. The nondestructive estimation of the repair effect, which is always desirable, is not an easy task because geometry, constituent materials' property mismatch, and temperature-dependent hydration rate often impose difficulties to the characterization. In many cases, after the grout injection and the elimination of voids, the pulse velocity decreases unexpectedly, complicating the task of repair evaluation. In this work, an experimental study of stress wave propagation in concrete impregnated with injection cement is presented. It is revealed that, despite the common impression, wave velocity should not be expected to rise after repair in any case because the properties of grout are initially lower than the surrounding concrete. This effect can be emphasized by the low hardening rate that is imposed to the grout material in the case of low environmental temperature. The transmitted frequencies are also decreased shortly after injection and, therefore, the decrease of wave parameters such as velocity or amplitude should not necessarily be taken as a sign of unsuccessful repair or even deterioration.
机译:将水泥浆灌入恶化的土木结构是加固或修复目的的常见应用。始终希望获得对修复效果的非破坏性评估并非易事,因为几何形状,组成材料的特性不匹配以及与温度相关的水化速率通常会给表征带来困难。在许多情况下,在注入注浆和消除空隙之后,脉冲速度会意外降低,这使维修评估的工作变得复杂。在这项工作中,提出了在注入水泥的混凝土中应力波传播的实验研究。结果表明,尽管有普遍的印象,但在任何情况下修补后波速都不会增加,因为水泥浆的性能最初低于周围的混凝土。在低环境温度的情况下,对灌浆材料施加的低硬化率可以增强这种效果。注入后不久,发射的频率也会降低,因此,诸如速度或振幅之类的波参数的降低不一定应视为修复失败甚至恶化的标志。

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