利用数值方法开发生态砖砌体墙抗压强度预测模型

Uche Emmanuel Edike , Ifiok Ekop , Daniel Uwumarogie Idusuyi , Obinna David Nduka
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引用次数: 0

摘要

以生态砖的形式使用废塑料建造建筑物的做法正逐渐受到重视。然而,人们对生态砖砌体墙的性能了解不够,而且建立实验平台进行砌体抗压强度测试的过程通常比较繁琐且昂贵。本研究对生态砖砌体墙体的抗压强度性能进行了研究,并建立了一个用于评估生态砖砌体墙体强度的预测模型。研究回收了废旧聚对苯二甲酸乙二酯(PET)瓶,并利用石粉、尖砂和红土在预定含水率下制造了四种生态砖样本,强度等级分别为 40.5、21.02、13.52 和 3.05 N/mm2。生态砖用七种等级的砂浆砌筑成 54 个生态砖砌体棱柱体。对砌体进行了准静态抗压加载试验,并利用多重非线性回归建立了预测模型。研究发现,生态砖砌体棱柱体能承受较大荷载,但由于拉伸裂缝的扩展和单元的脱粘而失效。研究还发现,生态砖砌体的抗压强度是生态砖抗压强度和用于粘结的砂浆的幂函数。经测定,预期棱柱体强度与实验棱柱体强度的平均比率为 1.002。本研究为预测生态砖砌体强度而开发的数学模型可显著评估生态砖砌体的抗压强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of predictive model for compressive strength of eco-brick masonry walls using numerical method

The usage of waste plastics in the form of eco-bricks for the construction of buildings is gradually gaining traction. However, the performance of eco-brick masonry walls is not sufficiently known, and the process of setting up experimental rigs for the conduct of compressive strength test of masonry are usually cumbersome and expensive. This study investigated the compressive strength performance of eco-brick masonry walls and developed a predictive model for evaluating the strength of eco-brick masonry walls. Waste polyethylene terephthalate (PET) bottles were physically recycled and utilised to manufacture four samples of eco-bricks, strength grades 40.5, 21.02, 13.52 and 3.05 N/mm2 using stone dust, sharp sand and laterite at predetermined moisture contents. The eco-bricks were laid with seven grades of mortar to build 54 eco-brick masonry prisms. A quasi-static compressive loading test was carried out on the masonries, and predictive models were developed using multiple non-linear regression. The study found that eco-brick masonry prisms supported large loads and failed due to the propagation of tensile cracks and debonding of the units. The study also found that the compressive strength of eco-brick masonry is a power function of the compressive strength of eco-bricks and the mortar used for the bonding. It was determined that the mean ratio of the expected to experimental prism strength was 1.002. The mathematical model developed in this study for predicting the strength of eco-brick masonries can significantly evaluate the compressive strength of eco-brick masonry.

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