探索铜渣土工聚合物混凝土在结构应用中的可行性:强度变化和地震风险评估研究

IF 3.9 2区 工程技术 Q1 ENGINEERING, CIVIL
Aman Deep , Nikhil P. Zade , Pradip Sarkar
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引用次数: 0

摘要

本研究探讨了在土工聚合物混凝土(GPC)结构应用中使用铜渣(CS)作为天然砂(NS)的可持续替代品。尽管铜渣具有通过重新利用工业废料促进环境可持续发展的潜力,但其在建筑行业中的应用仍然有限。为弥补这一不足,本研究主要关注两个方面:(i) 基于 CS 的 GPC 强度属性的不确定性建模,以及 (ii) 评估基于 CS 的 GPC 在抗震钢筋混凝土(RC)框架建筑中的性能。结果表明,基于 CS 的 GPC 的抗压强度最适合用 Gumbel max 和 Gamma 分布来表示,而 Gamma 和对数正态分布则能很好地模拟劈裂抗拉强度。抗折强度则遵循 Gumbel max 和 Weibull 分布。这些发现为概率结构分析和基于可靠性的设计提供了宝贵的数据。此外,使用含有 CS 的 GPC 制成的 RC 框架的抗震性能与使用 NS 的对照框架相当,这证实了基于 CS 的 GPC 在抗震结构中的可行性。这项研究表明,在不影响结构安全性的前提下,CS 可以有效地应用于 GPC 中,从而为更可持续的混凝土建筑实践做出贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring the viability of copper slag geopolymer concrete in structural applications: A study on strength variability and seismic risk assessment
This study explores the use of copper slag (CS) as a sustainable alternative to natural sand (NS) in geopolymer concrete (GPC) for structural applications. Despite the potential of CS to promote environmental sustainability by repurposing industrial waste, its adoption in the construction industry remains limited. To address this gap, the study focuses on two main aspects: (i) modelling the uncertainty in the strength properties of CS-based GPC, and (ii) assessing the performance of CS-based GPC in seismic-resistant reinforced concrete (RC) framed buildings. The results show that the compressive strength of CS-based GPC is best represented by the Gumbel max and Gamma distributions, while the splitting tensile strength is well-modelled by Gamma and lognormal distributions. The flexural strength follows Gumbel max and Weibull distributions. These findings provide valuable data for probabilistic structural analysis and reliability-based design. Additionally, the seismic performance of RC frames made with GPC containing CS was found to be comparable to that of control frames with NS, confirming the viability of CS-based GPC in seismic-resistant structures. This research demonstrates that CS can be effectively utilized in GPC without compromising structural safety, contributing to more sustainable concrete construction practices.
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来源期刊
Structures
Structures Engineering-Architecture
CiteScore
5.70
自引率
17.10%
发文量
1187
期刊介绍: Structures aims to publish internationally-leading research across the full breadth of structural engineering. Papers for Structures are particularly welcome in which high-quality research will benefit from wide readership of academics and practitioners such that not only high citation rates but also tangible industrial-related pathways to impact are achieved.
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