Experimental Investigation on the Mechanical Properties of Cement Mortar Incorporated With Graphene and C&D Waste

Asmita Subedi, Ankush Jha, Pashupati Deo, Aagya Dahal
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Abstract

Concrete is one among the essential materials utilized in engineering works.The two main properties which attribute to the reliability of concrete as a universal choice are strength and durability. Despite its remarkable properties, it has few shortcomings, namely, low tensile strength, low ductility, and unavoidable cracks. All of these inadequacies are the result of the relatively porous microstructure of concrete. The use of nanomaterials is the most influential and powerful alternative to overcome these limitations. In this paper, a comparative study of the mechanical properties of normal strength mortar over the mortar reinforced with graphene has been presented. Making use of the construction demolition waste in different proportions, namely, 25% and 50% as the partial replacement for fine aggregate, graphene was incorporated in the cement mortar of 1:3 grade in the proportion of 0.1%, 0.4%, 0.7%, and 1% by weight of cement respectively. The proportion of construction demolition waste and graphene were consequently varied and the corresponding change in mechanical properties, namely, compressive strength, tensile strength, and flexural strength of cement mortar was observed on the 7th day, 14th day, 21st day, and 28th day respectively and the same was compared with the result of normal mortar. It was observed that these mechanical properties increased with an increase in the proportion of graphene up to a certain limit after which it decreased. However, the optimum percentage of graphene varied along with the variation in the percentage of C&D waste.
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石墨烯与C&D废弃物复合水泥砂浆力学性能试验研究
混凝土是工程中必不可少的材料之一。作为普遍选择的混凝土的可靠性的两个主要特性是强度和耐久性。尽管它具有卓越的性能,但它也有一些缺点,即抗拉强度低,延展性低,不可避免的裂纹。所有这些不足都是由于混凝土相对多孔的微观结构造成的。纳米材料的使用是克服这些限制的最有影响力和最强大的替代方案。本文对普通强度砂浆与石墨烯增强砂浆的力学性能进行了对比研究。利用25%和50%的不同比例的建筑垃圾作为细骨料的部分替代品,分别以水泥质量比0.1%、0.4%、0.7%和1%的比例,将石墨烯掺入1:3级的水泥砂浆中。因此,改变建筑垃圾和石墨烯的比例,分别在第7天、第14天、第21天和第28天观察水泥砂浆的力学性能变化,即抗压强度、抗拉强度和抗折强度,并与普通砂浆的结果进行比较。观察到,这些机械性能随着石墨烯比例的增加而增加,达到一定限度后,机械性能下降。然而,石墨烯的最佳百分比随着C&D废物百分比的变化而变化。
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