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首页> 外文期刊>Journal of Engineering Mechanics >Ultrasonic Shear Wave Reflection Method for Direct Determination of Porosity and Shear Modulus in Early-Age Cement Paste and Mortar
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Ultrasonic Shear Wave Reflection Method for Direct Determination of Porosity and Shear Modulus in Early-Age Cement Paste and Mortar

机译:超声剪切波反射法直接测定早期水泥浆和砂浆的孔隙率和剪切模量

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摘要

An ultrasonic technique for measuring reflection of horizontally polarized shear (SH) waves at different angles of incidence from early-age hydrating mortar and cement paste is described. Measurements from mortar with varying sand content are presented. A poroelastic formulation for predicting wave reflection from hydrating mortar, which considers mortar as a two-phase, water-filled solid skeleton, is developed. In this representation, the solid phase in early-age hydrating mortar consists of sand, products of hydration and unhydrated cement. Reflection at the mortar interface is predicted using the poroelastic theory. Changes in the reflected amplitude of SH waves are used to obtain changes in the water-filled pore space and the shear modulus of the porous skeleton within the two-phase poroelastic idealization. The water-filled pore space in mortar is identified with the porosity in the two-phase poroelastic material. The porosity of mortar obtained from the poroelastic idealization when referring to the volume of cement paste within the mortar is comparable to the results obtained by directly applying the two-phase idealization to cement paste with identical water-to-cement ratio. The reflection of SH waves is strongly influenced by the absolute porosity of the material at any given time. A methodology for real-time, nondestructive monitoring of evolution of porosity in hydrating cement paste and mortar is established.
机译:描述了一种超声波技术,用于测量早期水合砂浆和水泥浆在不同入射角下的水平极化剪切波的反射。提出了从含沙量不同的砂浆中进行的测量。开发了一种预测弹性水化砂浆波反射的孔隙弹性公式,该公式将砂浆视为两相充水的固体骨架。在这种表述中,早期水合砂浆中的固相由沙子,水合产物和未水合水泥组成。砂浆界面的反射是使用孔隙弹性理论预测的。 SH波反射振幅的变化用于获得两相多孔弹性理想化条件下充水孔隙空间和多孔骨架剪切模量的变化。砂浆中充满水的孔隙空间由两相多孔弹性材料中的孔隙度确定。当参考砂浆中水泥浆的体积时,由孔隙弹性理想化获得的砂浆的孔隙度与通过将两相理想化直接应用于具有相同水灰比的水泥浆获得的结果相当。在任何给定时间,SH波的反射都受到材料绝对孔隙率的强烈影响。建立了一种实时,无损监测水化水泥浆和砂浆中孔隙变化的方法。

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