Abbass Wasim, Kashif Muhammad Hasham, Ahmed Muneeb, Aslam Fahid, Ahmed Ali, Mohamed Abdullah
Department of Civil Engineering, University of Engineering and Technology, Lahore, 54890, Pakistan.
Department of Civil Engineering, College of Engineering in Alkharj, Prince Sattam bin Abdulaziz University, Al-Kharj, 11942, Saudi Arabia.
Heliyon. 2024 May 23;10(12):e31830. doi: 10.1016/j.heliyon.2024.e31830. eCollection 2024 Jun 30.
This study investigates the development of a cost-effective and sustainable dry-shake surface hardener for enhancing the durability of industrial concrete floors. Utilizing locally sourced materials, the research aimed at not only ensuring the hardener's strength and finish but also its economic viability and environmental friendliness. Fourteen unique mixtures were formulated by altering the sand ratios and incorporating superplasticizers to optimize the composition. These mixtures underwent rigorous testing over 7, 14, and 28 days, evaluating their compressive and flexural strengths, flowability, water absorption, and impact resistance. The findings revealed that the modified floor hardener, specifically the FH-12 mixture, exhibited superior performance across all tested parameters. It showed higher compressive and flexural strengths, enhanced impact resistance, and reduced water absorption compared to other variants and commercially available hardeners. Notably, the use of finer coarse sand and the adjustment of superplasticizer quantities significantly contributed to these outcomes. This breakthrough demonstrates the potential of employing locally available materials to create a durable, cost-effective, and environmentally friendly solution for industrial flooring. The study underscores the importance of material characterization and methodical formulation in developing construction materials that meet the dual criteria of performance and sustainability. This option is preferred for its lower environmental impact and compatibility with sustainable practices, contributing to Sustainable Development Goal 9 on industry, innovation, and infrastructure. It highlights the role of floor hardeners in global sustainability efforts.
本研究旨在开发一种经济高效且可持续的干拌地面硬化剂,以提高工业混凝土地面的耐久性。该研究利用本地采购的材料,不仅旨在确保硬化剂的强度和表面光洁度,还注重其经济可行性和环境友好性。通过改变砂比并加入高效减水剂来优化配方,配制出了14种独特的混合物。这些混合物在7天、14天和28天内进行了严格测试,评估了它们的抗压强度、抗折强度、流动性、吸水性和抗冲击性。研究结果表明,改性地面硬化剂,特别是FH - 12混合物,在所有测试参数中均表现出卓越性能。与其他变体和市售硬化剂相比,它具有更高的抗压强度和抗折强度、更强的抗冲击性以及更低的吸水性。值得注意的是,使用更细的粗砂和调整高效减水剂的用量对这些结果起到了显著作用。这一突破表明,利用当地可得材料创造一种耐用、经济高效且环境友好的工业地坪解决方案具有潜力。该研究强调了材料特性表征和系统配方设计在开发符合性能和可持续性双重标准的建筑材料中的重要性。由于其较低的环境影响以及与可持续实践的兼容性,这种选择更受青睐,有助于实现关于工业、创新和基础设施的可持续发展目标9。它凸显了地面硬化剂在全球可持续发展努力中的作用。