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含有电子废弃物骨料的CFRP约束混凝土的轴向应力与应变响应。

Axial stress versus strain responses of CFRP confined concrete containing electronic waste aggregates.

作者信息

Ullah Saad, Qureshi Muhammad Irshad, Saingam Panumas, Hussain Qudeer, Khan Kaffayatullah, Yooprasertchai Ekkachai

机构信息

Government College of Technology, Swabi, Pakistan.

Department of Civil Engineering, University of Engineering and Technology, Taxila, Pakistan.

出版信息

Sci Rep. 2023 Dec 27;13(1):23052. doi: 10.1038/s41598-023-50247-5.

Abstract

This research work investigates the axial stress versus strain responses of un-strengthened and carbon fiber reinforced polymer (CFRP) composites strengthened concrete specimens made with electronic waste coarse aggregates. For this purpose, 36 circular and non-circular 300 mm high concrete specimens constrained with CFRP sheets and partially replaced with E-waste coarse aggregates were prepared. The effect of cross-sectional geometry, 20% partial substitution of natural coarse aggregates with E-waste aggregates, corner effect of non-circular concrete specimens, confinement of specimens with CFRP sheets, and effect of the number of confinement sheets were also studied. In control concrete specimens, the coarse aggregates were 848 kg/m and E-waste aggregates were 212 kg/m. The cement was 475 kg/m and fine aggregates were 655 kg/m. Test results indicated that compressive strength is reduced by substituting natural coarse aggregates with E-waste aggregates. At the same time, compressive strength increased to 71%, 33%, and 25% for circular, square, and rectangular concrete specimens, respectively, by CFRP confinement. Whereas the axial strain increased to 1100%, 250%, and 133%, for circular, square, and rectangular concrete specimens, respectively, by CFRP confinement. CFRP sheets also enhanced the Poisson's ratio. Because of the greater confinement given by a double CFRP layer, it is more effective than a single layer. Furthermore, results also indicated that strength reduction in non-circular concrete specimens was greater than in circular concrete specimens for all studied cases. In the end, for theoretical calculations, strength and strain models for confined concrete suggested by different researchers were applied and compared with experimental results. In comparison to the experimental findings, theoretical data showed that most of the models were either on the higher or on the lower side, while only some model results matched well with the experimental data.

摘要

本研究工作探究了由电子废弃物粗骨料制成的未加固混凝土试件以及碳纤维增强聚合物(CFRP)复合材料加固混凝土试件的轴向应力与应变响应。为此,制备了36个用CFRP片材约束且部分用电子废弃物粗骨料替代的300毫米高的圆形和非圆形混凝土试件。还研究了截面几何形状、用电子废弃物骨料替代20%天然粗骨料的影响、非圆形混凝土试件的角部效应、用CFRP片材对试件的约束以及约束片材层数的影响。在对照混凝土试件中,粗骨料用量为848千克/立方米,电子废弃物骨料用量为212千克/立方米。水泥用量为475千克/立方米,细骨料用量为655千克/立方米。试验结果表明,用电子废弃物骨料替代天然粗骨料会降低抗压强度。同时,通过CFRP约束,圆形、方形和矩形混凝土试件的抗压强度分别提高到71%、33%和25%。而通过CFRP约束,圆形、方形和矩形混凝土试件的轴向应变分别增加到1100%、250%和133%。CFRP片材还提高了泊松比。由于双层CFRP提供的约束更大,所以它比单层更有效。此外,结果还表明,在所有研究案例中,非圆形混凝土试件的强度降低幅度大于圆形混凝土试件。最后,为进行理论计算,应用了不同研究人员提出的约束混凝土强度和应变模型,并与试验结果进行了比较。与试验结果相比,理论数据表明,大多数模型要么偏高要么偏低,只有一些模型结果与试验数据匹配良好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85cd/10754913/e9918d7a9dab/41598_2023_50247_Fig1_HTML.jpg

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