Characteristics of Lightweight Concrete Fabricated with Different Types of Strengthened Lightweight Aggregates

Laith Mohammed Ridha Mahmmod, Anmar Dulaimi, L. Bernardo, Jorge Miguel de Almeida Andrade
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Abstract

The vast majority of different waste building units have negative environmental impacts around the world. Crushed building units can be recycled and utilized in the concrete industry to solve these problems and maintain natural resources. This study investigated the feasibility of employing crushed autoclaved aerated concrete (CAAC) and crushed clay brick (CCB) as a lightweight aggregate (LWA) to fabricate environmentally friendly recycled lightweight concrete (LWC). In addition, a lightweight expanded clay aggregate (LECA) was also used as an LWA, namely to study how the high porosity of an LWA can adversely affect the properties of LWC. Through the experimental program, all types of LWAs were pre-treated and strengthened with two cementitious grouts, and then the performance of the produced LWC was assessed by determining the slump of fresh concrete, the dry density, the unconfined compressive strength, and the splitting tensile strength at ages of 3, 7, 28, and 56 days. The laboratory results revealed that both CCB and CAAC can be reused as full substitutions for normal-weight coarse aggregate to manufacture LWC with appropriate properties. The obtained data show that the properties of an LECA, CCB, and CAAC were improved, and the porous structure can be strengthened by pre-treatment and coating with grouts. In the same way, the mechanical performance of produced LWC is also enhanced.
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使用不同类型强化轻质骨料制造的轻质混凝土的特性
全世界绝大多数不同的废弃建筑单元都会对环境造成负面影响。破碎的建筑单元可以回收并用于混凝土行业,以解决这些问题并保护自然资源。本研究调查了采用破碎蒸压加气混凝土(CAAC)和破碎粘土砖(CCB)作为轻质骨料(LWA)来制造环保型再生轻质混凝土(LWC)的可行性。此外,还使用了轻质膨胀粘土骨料(LECA)作为轻质骨料,即研究轻质骨料的高孔隙率如何对轻质混凝土的性能产生不利影响。通过实验项目,用两种水泥基灌浆料对所有类型的 LWA 进行了预处理和强化,然后通过测定新拌混凝土的坍落度、干密度、无侧限抗压强度以及 3、7、28 和 56 天龄期的劈裂抗拉强度来评估所生产的 LWC 的性能。实验室结果表明,CCB 和 CAAC 可完全替代正常重量的粗骨料,用于制造具有适当性能的低黏度混凝土。获得的数据表明,LECA、CCB 和 CAAC 的性能都得到了改善,多孔结构可以通过预处理和涂抹灌浆料得到加强。同样,生产出的木丝水泥板的机械性能也得到了提高。
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