高分子注浆材料-混凝土接触面剪切力学行为及损伤模型研究

P. Zhao, Mingrui Du, Zhihui Chen, Xaioming Li, Yingli Wang
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引用次数: 1

摘要

高分子灌浆材料(PU)在混凝土管道和路基的非开挖修复中得到越来越多的应用。研究pu -混凝土(P-C)接触面的力学行为为进一步评价钢筋混凝土结构的稳定性提供了基础,但目前尚未开展相关研究。本研究在剪切试验结果的基础上,研究了P-C接触面的力学性能和开裂特征,建立了损伤模型。结果表明:随着PU材料密度的增加,P-C接触面的凝聚力从0.42 MPa增加到1.44 MPa,且在法向应力作用下存在残余强度;P-C接触面的剪切破坏是由剪切带引起的,剪切带的厚度约为9-10 mm。P-C接触面的理论剪应力-应变曲线与实验结果吻合较好。理论抗剪强度与实验抗剪强度的最大相对差约为4.2%,表明该损伤模型能较好地反映P-C接触面在剪切作用下的应力-应变规律。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the shearing mechanical behavior and damage model of the polymer grouting material-concrete contact surface
The polymer grouting material (PU) has been increasingly used in trenchless repair of concrete pipes and roadbeds. Investigating the mechanical behavior of the PU-concrete (P-C) contact surfaces provides a basis for further evaluating the stability of the reinforced concrete structures, which, however, has not been conducted yet. In this study, based on the shear testing results, the mechanical properties and cracking characteristics of the P-C contact surfaces were investigated, followed by establishing the damage model. Results show that the cohesion force of the P-C contact surface increases from 0.42 MPa to 1.44 MPa when the density of the PU materials increases, and there exists residual strength when normal stress is applied. The shear failure of the P-C contact surface is caused by the shearing zone, of which the thickness is about 9-10 mm. The theoretical shear stress-strain curves of the P-C contact surfaces are in good agreement with the experimental ones. The maximum relative difference between the theoretical and experimental shear strength is about 4.2%, implying that the damage model can reflect the stress-strain laws of the P-C contact surfaces under shear.
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