可持续建筑材料:从已知混凝土强度碎片中回收骨料混凝土

C. Issa, Georgio Hilal
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引用次数: 1

摘要

垃圾填埋场接收建筑和拆除废物(CDW),这些废物是在建筑物、道路和桥梁的建造、翻新和拆除过程中产生的碎片。CDW是可用于新建筑项目的资源,从而消除了对原始材料的开采和加工的需要。本研究的主要目的是对混凝土配合比设计的力学行为进行新的研究,该设计采用已知抗压强度的浇筑混凝土碎片中的再生骨料混凝土(RAC),同时仔细监测有效水灰比。在进行混凝土配合比设计时,监测了以下四个变量:再生粗骨料的百分比(RCA),再生细骨料的百分比(RFA),所使用的再生材料的级配以及浇筑混凝土碎片的原始抗压强度。研究了碎片的初始强度和尺寸与获得的可用回收材料的数量。确定了最终混凝土配合比中各变量的使用结果。研究了不同再生材料掺量混凝土的抗压强度、抗弯强度和弹性模量的力学性能。这项研究的结果是实现最佳的混凝土配合比设计,同时通过减少倾倒在垃圾填埋场的CDW量,将对环境的负面影响降至最低。再生粗骨料和再生细骨料的结合,提高了混凝土的力学性能,同时提高了最终材料的环境价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sustainable Construction Materials: Recycled Aggregate Concrete from Known Concrete Strength Debris
Landfills receive construction and demolition wastes (CDW) that are the debris generated during the construction, renovation, and demolition of buildings, roads, and bridges. CDW are resources that could be used in new construction projects, thus eliminating the need for virgin materials to be mined and processed The main objective of this study is to develop a novel investigation of the mechanical behavior of concrete mix design incorporating recycled aggregate concrete (RAC) from casted concrete debris of known compressive strength while meticulously monitoring the effective water to cement ratio. The following four variables were monitored while performing the concrete mix design: the percentage of recycled coarse aggregates (RCA), the percentage of recycled fine aggregates (RFA), the gradation of the recycled material used, and the original compressive strength of the casted concrete debris. Investigated is the initial strength and size of the debris versus the quantity of usable recycled materials obtained. The consequence of the utilization of each variable in the final concrete mix is determined. The mechanical properties investigated are the compressive strength, flexural strength, and modulus of elasticity of concrete made with different percentages of recycled materials. The result of this study is achieving an optimum concrete mix design that also results in minimizing the negative impact on the environment by reducing the amount of CDW being dumped in landfills. The combination of both recycled coarse and recycled fine aggregates resulted in the increase of mechanical performance of the concrete while enhancing the environmental value of the final material.
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