增强混凝土施工的可持续性:用磨碎的高炉矿渣和陶瓷粉提高热弹性和结构强度

Q2 Engineering
Amit Gautam, Smita Tung
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引用次数: 0

摘要

混凝土仍然是全球使用最广泛的建筑材料,但其对环境的影响和在极端条件下提高性能的需求构成了重大挑战。本研究介绍了一种新的方法来提高混凝土的热弹性和结构强度,通过加入磨碎的粒状高炉渣(GGBS)和陶瓷粉(CP)作为可持续的补充材料。与以往的研究不同的是,这项研究调查了它们的综合效应,为它们的协同作用提供了新的见解。采用热重分析(TGA)和扫描电子显微镜(SEM)等先进技术,对不同比例GGBS和CP的混凝土混合物的热稳定性、抗压强度和微观结构完整性进行了评估。结果表明,20% GGBS和20% CP的最佳组合显著提高了30%的抗压强度,并将高温下的质量损失降低了35%,增强了耐久性和可持续性。微观结构分析表明,水化产物更致密,界面过渡区(itz)更精细,有助于提高粘结强度和降低孔隙率。这些研究结果强调了GGBS和CP在改变可持续混凝土生产方面的潜力,为环境问题和现代建筑的性能要求提供了可行的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhancing sustainability in concrete construction: improving thermal resilience and structural strength with ground granulated blast furnace slag and ceramic powder

Enhancing sustainability in concrete construction: improving thermal resilience and structural strength with ground granulated blast furnace slag and ceramic powder

Concrete remains the most widely used construction material globally, but its environmental impact and need for improved performance in extreme conditions pose significant challenges. This study introduces a novel approach to enhancing both the thermal resilience and structural strength of concrete by incorporating ground granulated blast furnace slag (GGBS) and ceramic powder (CP) as sustainable, supplementary materials. Unlike previous studies that focus on these materials individually, this research investigates their combined effects, providing new insights into their synergistic interaction. Concrete mixtures with varying proportions of GGBS and CP were evaluated for thermal stability, compressive strength, and microstructural integrity using advanced techniques such as thermogravimetric analysis (TGA) and scanning electron microscopy (SEM). Results show that the optimal combination of 20% GGBS and 20% CP significantly improves compressive strength by up to 30% and reduces mass loss at elevated temperatures by 35%, demonstrating enhanced durability and sustainability. The microstructural analysis revealed denser hydration products and refined interfacial transition zones (ITZs), which contribute to improved bond strength and reduced porosity. These findings of the study highlight the potential of GGBS and CP to revolutionize sustainable concrete production, offering a viable solution to both environmental concerns and the performance demands of modern construction.

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来源期刊
Asian Journal of Civil Engineering
Asian Journal of Civil Engineering Engineering-Civil and Structural Engineering
CiteScore
2.70
自引率
0.00%
发文量
121
期刊介绍: The Asian Journal of Civil Engineering (Building and Housing) welcomes articles and research contributions on topics such as:- Structural analysis and design - Earthquake and structural engineering - New building materials and concrete technology - Sustainable building and energy conservation - Housing and planning - Construction management - Optimal design of structuresPlease note that the journal will not accept papers in the area of hydraulic or geotechnical engineering, traffic/transportation or road making engineering, and on materials relevant to non-structural buildings, e.g. materials for road making and asphalt.  Although the journal will publish authoritative papers on theoretical and experimental research works and advanced applications, it may also feature, when appropriate:  a) tutorial survey type papers reviewing some fields of civil engineering; b) short communications and research notes; c) book reviews and conference announcements.
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