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利用回收聚对苯二甲酸乙二酯优化砌体饰面砖的抗压和抗弯性能-1

Optimization of Compression and Flexural Properties of Masonry Veneers with Recycled PET-1.

作者信息

Paredes Juan, Castillo Willan, Salinas Gabriela, Erazo Henry, Guerrero Víctor H

机构信息

Escuela Internacional de Doctorado (EIDUNED), Universidad Nacional de Educación a Distancia (UNED), 28040 Madrid, Spain.

Facultad de Ingeniería Civil y Mecánica, Universidad Técnica de Ambato, Ambato 180104, Ecuador.

出版信息

Polymers (Basel). 2023 Feb 23;15(5):1122. doi: 10.3390/polym15051122.

Abstract

The study of new materials formulated using recycled polymers offers an ecological and sustainable alternative for the construction industry. In this work, we optimized the mechanical behavior of manufactured masonry veneers made from concrete reinforced with recycled polyethylene terephthalate (PET) from discarded plastic bottles. For this purpose, we used the response surface methodology to evaluate the compression and flexural properties. PET percentage, PET size and aggregate size were used as input factors in a Box-Behnken experimental design resulting in a total of 90 tests. The fraction of the commonly used aggregates replaced by PET particles was 15%, 20% and 25%. The nominal size of the PET particles used was 6, 8 and 14 mm, while the size of the aggregates was 3, 8 and 11 mm. The function of desirability was used to optimize response factorials. The globally optimized formulation contained 15% of 14 mm PET particles in the mixture, and 7.36 mm aggregates, obtaining important mechanical properties of this characterization of masonry veneers. The flexural strength (four-point) was 1.48 MPa, and the compression strength was 3.96 MPa; these values show property improvements of 110% and 94%, respectively, compared to commercial masonry veneers. Overall, this offers the construction industry a robust and environmentally friendly alternative.

摘要

对使用回收聚合物制成的新材料进行研究,为建筑业提供了一种生态且可持续的选择。在这项工作中,我们优化了由废弃塑料瓶中的回收聚对苯二甲酸乙二酯(PET)增强的混凝土制成的人造砖石饰面的力学性能。为此,我们使用响应面法来评估其压缩和弯曲性能。在Box-Behnken实验设计中,将PET百分比、PET尺寸和骨料尺寸用作输入因素,总共进行了90次测试。被PET颗粒取代的常用骨料比例为15%、20%和25%。所用PET颗粒的标称尺寸为6毫米、8毫米和14毫米,而骨料尺寸为3毫米、8毫米和11毫米。合意性函数用于优化响应因子。全局优化配方在混合物中包含15%的14毫米PET颗粒和7.36毫米的骨料,从而获得了这种砖石饰面特性的重要力学性能。弯曲强度(四点)为1.48兆帕,抗压强度为3.96兆帕;与商业砖石饰面相比,这些值分别显示出110%和94%的性能提升。总体而言,这为建筑业提供了一种强大且环保的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7de9/10006951/f43a2266a1a4/polymers-15-01122-g001.jpg

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