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超高性能聚乙烯纤维增强再生砖骨料混凝土力学性能研究

Investigation of Mechanical Properties of Ultra-High-Performance Polyethylene-Fiber-Reinforced Recycled-Brick-Aggregate Concrete.

作者信息

Ji Yongcheng, Pei Zhiyang

机构信息

School of Civil Engineering and Transportation, Northeast Forestry University, Harbin 150040, China.

出版信息

Polymers (Basel). 2023 Nov 29;15(23):4573. doi: 10.3390/polym15234573.

Abstract

The utilization of ultra-high-molecular-weight polyethylene fibers (UHMWPEFs) to enhance recycled-brick-aggregate concrete represents an efficacious approach for ameliorating the concrete's performance. This investigation addresses the influences of recycled-brick aggregates (RAs) and UHMWPEFs on the concrete's slump, shrinkage, flexural strength, resistance to chloride-ion ingress, and freeze-thaw durability. The mechanisms through which UHMWPEFs ameliorate the performance of the recycled-brick-aggregate concrete were elucidated at both the micro and macroscopic levels. The findings underscore that the three-dimensional network structure established by the UHMWPEFs, while resulting in a reduction in the concrete slump, substantially enhances the concrete's mechanical properties and durability. A regression model for the multifaceted performance of the UHMWPEF-reinforced recycled-brick-aggregate concrete (F-RAC) was formulated by employing response-surface methodology, and the model's reliability was confirmed through variance analysis. The interactive effects of the RA and UHMWPEFs on the concrete were analyzed through a combined approach involving response-surface analysis and contour plots. Subsequently, a multiobjective optimization was conducted for the F-RAC performance, yielding the optimal proportions of RA and UHMWPEFs. It was determined that the optimal performance across the dimensions of the shrinkage resistance, flexural strength, chloride-ion resistance, and freeze-thaw durability of the F-RAC could be simultaneously achieved when the substitution rate of the RA was 14.02% and the admixture of the UHMWPEFs was 1.13%.

摘要

利用超高分子量聚乙烯纤维(UHMWPEFs)增强再生砖骨料混凝土是改善混凝土性能的有效方法。本研究探讨了再生砖骨料(RAs)和UHMWPEFs对混凝土坍落度、收缩率、抗弯强度、抗氯离子侵入性和冻融耐久性的影响。从微观和宏观层面阐明了UHMWPEFs改善再生砖骨料混凝土性能的机理。研究结果强调,UHMWPEFs建立的三维网络结构虽然导致混凝土坍落度降低,但显著提高了混凝土的力学性能和耐久性。采用响应面法建立了UHMWPEF增强再生砖骨料混凝土(F-RAC)多方面性能的回归模型,并通过方差分析验证了模型的可靠性。通过响应面分析和等高线图相结合的方法,分析了RAs和UHMWPEFs对混凝土的交互作用。随后,对F-RAC性能进行了多目标优化,得出了RAs和UHMWPEFs的最佳比例。结果表明,当RA替代率为14.02%,UHMWPEFs掺量为1.13%时,F-RAC在抗收缩、抗弯强度、抗氯离子和冻融耐久性方面的最佳性能可同时实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f89f/10707918/f7c0115acc3d/polymers-15-04573-g001.jpg

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