充砂聚对苯二甲酸乙二酯瓶作为墙体建筑材料的抗压强度研究

Maro Clement Aterezi, B. Dahunsi, M. Onugba
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引用次数: 0

摘要

由于塑料不可生物降解,且含有对人类、动物、植物和整个环境有害的化学物质,在环境中丢弃塑料垃圾对环境造成了负面影响。全球对基础设施需求的增加也导致用于生产建筑材料的自然资源迅速枯竭。因此,有必要开展研究,提出解决方案,以便更好地管理塑料废物,并提供可持续的建筑材料。本研究评估了填充沙子的 PET 瓶子(含水量不同,0-15%)和将填充沙子的 PET 瓶子用于墙体建筑的粘土砖的抗压强度。使用水泥稳定粘土的重量百分比为 0%、10% 和 15%。所生产砖块的抗压强度与对照砖块(不含填充沙的 PET 瓶)的抗压强度进行了比较。结果显示,PET 砖的抗压强度低于对照砖。建议填充 PET 瓶子时沙子的最佳含水量为 2%,而生产填充沙子的 PET 砖时建议用水泥稳定 15%的粘土。充砂 PET 砖可用于非承重墙建筑,因为其抗压强度低于尼日利亚建筑与道路研究所和尼日利亚标准组织对承重墙的最低要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of the Compressive Strength of Sand-Filled Polyethylene Terephthalate Bottles as a Material for Wall Construction
The disposal of plastic wastes in the environment has negatively impacted the environment as plastics are non-biodegradable and contain chemicals that are harmful to humans, animals, plants, and the environment at large. The increased demand for infrastructure across the globe has also resulted in a rapid depletion of natural resources used for the production of construction materials. The need therefore arises for research to proffer solutions that would lead to the better management of plastic wastes, and provide sustainable construction materials. This study evaluated the compressive strength of sand-filled PET bottles (with varying moisture content, 0-15%) and clay bricks incorporating sand-filled PET bottles for wall construction. Cement was used to stabilize the clay at 0%, 10%, and 15% by weight. The compressive strength of the bricks produced was compared with that of control bricks (without sand-filled PET bottles). The results obtained reveal that the compressive strengths of the PET bricks were less than those of the control bricks. An optimum of 2% moisture content of sand is recommended for filling the PET bottles while 15% stabilization of clay with cement is recommended for the production of sand-filled PET bricks. The sand-filled PET bricks can be used for non-load-bearing wall construction as their compressive strengths fall below the minimum requirements of the Nigeria Building and Road Research Institute and the Standards Organization of Nigeria for load-bearing walls.
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