工业和农业副产品可持续自密实混凝土的性能研究

K. Navin Balaji , D. Sivakumar
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引用次数: 0

摘要

自密实混凝土(SCC)代表了一种高度可行的混凝土,它在保持均匀分布的同时毫不费力地分布,从而在不使用振动方法的情况下实现完全密实。该研究通过将稻壳灰(RHA)、椰子壳骨料(CSA)和石灰石粉(LSP)作为水泥和天然粗骨料(NCA)的替代品的实验方法,研究了可持续的SCC生产。实验研究在所有混合物中加入15%的石灰石粉替代,RHA含量在0 ~ 25%之间变化,以提高火山灰活性。此外,将20%的NCA均匀地替换为CSA,以提高可持续性并产生轻质SCC。根据EFNARC标准评估了其新鲜性能,包括流动性、通过能力和粘度。研究进一步调查了力学参数,如强度、变形行为和内部结构完整性在不同的养护期间。RHA和LSP与CSA的结合产生的SCC具有增强的机械性能和微填充特性,以及轻质和环保的混凝土性能。确定了RHA的最佳替代品为15%,与其他SCC和常规混合物相比,混合物ID RHA15具有优越的力学性能。研究表明,结合RHA、LSP和CSA的SCC作为开发具有成本效益的可持续混凝土结构的可行方法具有潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of Sustainable Self-Compacting Concrete with Industry and Agricultural By-Products
Self-Compacting Concrete (SCC) represents a highly workable concrete which distributes itself effortlessly while maintaining uniform distribution so that it achieves complete compaction without using vibration methods. The study investigates sustainable SCC production through experimental methods which incorporate rice husk ash (RHA) and coconut shell aggregate (CSA) and limestone powder (LSP) as cement and natural coarse aggregate (NCA) replacements. The experimental research incorporated 15% limestone powder substitution in all mixes while RHA content varied from 0 to 25% to enhance pozzolanic activity. Furthermore, 20% of NCA was uniformly substituted with CSA to enhance sustainability and produce the light weight SCC. The fresh properties, including flowability, passing ability, and viscosity, were assessed in accordance with EFNARC standards. The research furthermore investigated mechanical parameters like as strength, deformation behaviour, and internal structural integrity throughout various curing periods. The combination of RHA and LSP with CSA produced SCC that exhibited enhanced mechanical properties and micro-filling characteristics and lightweight and environmentally friendly concrete behaviour. The optimum substitute of RHA was determined to be 15%, with the mix ID RHA15 exhibiting superior mechanical properties compared to other SCC and conventional mixes. The research indicates that SCC incorporating RHA, LSP, and CSA exhibits potential as a viable approach for developing sustainable concrete structures with cost-effectiveness.
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CiteScore
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