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用聚氨酯灌浆材料加固的混凝土试件的弯曲响应:试验与数值模拟

Flexural Response of Concrete Specimen Retrofitted with PU Grout Material: Experimental and Numerical Modeling.

作者信息

Haruna Sadi Ibrahim, Ibrahim Yasser E, Han Zhu, Farouk Abdulwarith Ibrahim Bibi

机构信息

Engineering Management Department, College of Engineering, Prince Sultan University, Riyadh 11586, Saudi Arabia.

School of Civil Engineering, Tianjin University, Tianjin 300072, China.

出版信息

Polymers (Basel). 2023 Oct 17;15(20):4114. doi: 10.3390/polym15204114.

Abstract

Polyurethane (PU) composite is increasingly used as a repair material for civil engineering infrastructure, including runway, road pavement, and buildings. Evaluation of polyurethane grouting (PUG) material is critical to achieve a desirable maintenance effect. This study aims to evaluate the flexural behavior of normal concrete repaired with polyurethane grout (NC-PUG) under a three-point bending test. A finite element (FE) model was developed to simulate the flexural response of the NC-PUG specimens. The equivalent principle response of the NC-PUG was analyzed through a three-dimensional finite element model (3D FEM). The NC and PUG properties were simulated using stress-strain relations acquired from compressive and tensile tests. The overlaid PUG material was prepared by mixing PU and quartz sand and overlayed on the either top or bottom surface of the concrete beam. Two different overlaid thicknesses were adopted, including 5 mm and 10 mm. The composite NC-PUG specimens were formed by casting a PUG material using different overlaid thicknesses and configurations. The reference specimen showed the highest average ultimate flexural stress of 5.56 MPa ± 2.57% at a 95% confidence interval with a corresponding midspan deflection of 0.49 mm ± 13.60%. However, due to the strengthened effect of the PUG layer, the deflection of the composite specimen was significantly improved. The concrete specimens retrofitted at the top surface demonstrated a typical linear pattern from the initial loading stage until the complete failure of the specimen. Moreover, the concrete specimens retrofitted at the bottom surface exhibit two deformation regions before the complete failure. The FE analysis showed good agreement between the numerical model and the experimental test result. The numerical model accurately predicted the flexural strength of the NC-PUG beam, slightly underestimating Ke by 4% and overestimating the ultimate flexural stress by 3%.

摘要

聚氨酯(PU)复合材料越来越多地用作土木工程基础设施的修复材料,包括跑道、路面和建筑物。评估聚氨酯灌浆(PUG)材料对于实现理想的维护效果至关重要。本研究旨在通过三点弯曲试验评估用聚氨酯灌浆修复的普通混凝土(NC-PUG)的弯曲性能。建立了有限元(FE)模型来模拟NC-PUG试件的弯曲响应。通过三维有限元模型(3D FEM)分析了NC-PUG的等效原理响应。使用从压缩和拉伸试验获得的应力-应变关系来模拟NC和PUG的性能。通过将PU和石英砂混合制备覆盖的PUG材料,并覆盖在混凝土梁的顶面或底面。采用了两种不同的覆盖厚度,包括5毫米和10毫米。通过使用不同的覆盖厚度和配置浇筑PUG材料形成复合NC-PUG试件。参考试件在95%置信区间内显示出最高平均极限弯曲应力为5.56 MPa±2.57%,相应的跨中挠度为0.49 mm±13.60%。然而,由于PUG层的增强作用,复合试件的挠度得到了显著改善。在顶面进行改造的混凝土试件从初始加载阶段到试件完全破坏呈现出典型的线性模式。此外,在底面进行改造的混凝土试件在完全破坏前表现出两个变形区域。有限元分析表明数值模型与试验测试结果吻合良好。数值模型准确预测了NC-PUG梁的弯曲强度,略微低估了Ke 4%,高估了极限弯曲应力3%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e63/10611020/b31f36d22087/polymers-15-04114-g001.jpg

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