Mechanical Strength, Characterization and Suitability of Cement-Plastic Concrete Admixture

S. A. Abubakar, A. O. Hamzat, T. D. Akpenpuun
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Abstract

A significant increment in the consumption of plastic has been monitored globally in recent years, which has led to a high amount of plastic waste. Given its benefits on both an economic and ecological level, recycling plastic waste to create new materials like concrete is considered to be one of the finest ways to get rid of plastic waste. The objective of this paper was to examine the workability, durability, and mechanical strength of concrete with partial replacement of coarse aggregates with plastic waste using standard procedure. The percentages of plastic waste used to replace coarse aggregate were 0%, 5%, 10%, and 15%. Lastly, the mechanical characteristics of the concrete mix specimens was determined by testing them using a testometric and compressor machine.  The specimens are then compared with the conventional mix. The test results demonstrated that the compressive strength exhibited a decreasing trend. For mixes ranging from 0% to 15%, the compressive strength varies from 35.66 to 17.88 N/mm2, however the flexural strength significantly decreases when 15% of the coarse aggregate is replaced with plastic waste. It can be concluded that reusing plastic waste as an aggregate during the concrete-making process reduces waste and conserves resources.
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水泥塑料混凝土外加剂的机械强度、特性和适用性
据监测,近年来全球塑料消费量大幅增加,导致塑料垃圾数量居高不下。鉴于其在经济和生态层面上的益处,回收塑料废弃物来制造混凝土等新材料被认为是处理塑料废弃物的最佳方法之一。本文旨在采用标准程序,研究用塑料废弃物部分替代粗骨料的混凝土的工作性、耐久性和机械强度。塑料废料替代粗骨料的比例分别为 0%、5%、10% 和 15%。最后,混凝土混合物试样的机械特性是通过使用测试仪和压缩机进行测试确定的。 然后将试样与传统混合料进行比较。测试结果表明,抗压强度呈下降趋势。在 0% 至 15% 的混合料中,抗压强度从 35.66 牛顿/平方毫米到 17.88 牛顿/平方毫米不等,但当用塑料废料替代 15%的粗骨料时,抗折强度明显下降。由此可以得出结论,在混凝土生产过程中重新使用塑料废料作为骨料可以减少浪费,节约资源。
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