Towards Green and Circular Economy, The Development of Roof Tiles and Bricks from Sand-Plastic Composite

M. Abuhaiba, Mohammad N. Dader, Wesam Elbakry, T. Alrayyes
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Abstract

The main objective of this research is to help solve the deficit and decrease the cost of construction raw materials or provide alternatives for cement, which is sand-plastic. Sand-Plastic consists mainly of sand and recycled plastic, in addition to other materials in small traces such as UV stabilizers, cohesive additives, colour pigments, and fillers. The goal is to optimize the mechanical and physical properties of the Sand-Plastic; to optimize the compression strength, flexure strength, abrasion resistance, and water absorption via controlling the mix proportions of plastic to sand and the process parameters. The path taken was to design and manufacture a mould to produce Sand-Plastic samples of different sizes and various mixes. 15, 20, and 25% plastic (Low Density Polyethylene, LDPE) samples have been examined against compression strength and flexural strength for a temperature range of 150 to $300 ^{\circ}\mathrm{C}$. Tests results indicated that a 20% plastic composition and a temperature between 200 and $250 ^{\circ}\mathrm{C}$ yields the optimum mechanical and physical properties.
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走向绿色循环经济,砂塑复合材料屋面瓦砖的发展
本研究的主要目的是帮助解决建筑原材料的短缺和降低成本,或为水泥提供替代品,这是砂塑性的。砂塑主要由沙子和再生塑料组成,此外还有少量的其他材料,如紫外线稳定剂、粘合添加剂、彩色颜料和填料。目标是优化砂塑的机械和物理性能;通过控制塑料与砂的混合比例和工艺参数,优化塑料的抗压强度、抗弯强度、耐磨性和吸水率。所采取的方法是设计和制造一个模具来生产不同尺寸和各种混合的沙塑样品。15、20和25%塑料(低密度聚乙烯,LDPE)样品在150至300 ^{\circ}\ mathm {C}$的温度范围内进行了抗压强度和弯曲强度的测试。测试结果表明,20%的塑料成分和200 ~ 250 ^{\circ}\ mathm {C}$之间的温度产生最佳的机械和物理性能。
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