麦、玉米秸秆纤维与秸秆灰高压胶凝混合料的性能研究

IF 6.5 2区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY
Tchehoungbo Olivier Noukpo Houankpo, Zeyu Ma, Zhuan Zhao, Goubing Tian
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引用次数: 0

摘要

介绍了一种以小麦和玉米秸秆为原料制备秸秆纤维水泥基复合材料的新工艺。研究分析了小麦-玉米秸秆纤维胶凝复合材料(WCSFCC)的抗压强度、抗弯强度、吸水能力、干密度、孔隙率和热性能等工程特性。采用XRD、SEM和EDS分析表征了WCSFCC混合料的水化性能和密实度。结果表明,NaOH溶液的掺量是增强秸秆纤维表面并促进其与水泥基体有效结合的最佳途径。秸秆粉焚烧法使秸秆灰颗粒的比表面积比秸秆粉高9.6倍。结果表明:秸秆粉WCSFCC混合料的最佳抗压强度为2.85 MPa ~ 3.79 MPa,导热系数为0.147 ~ 0.162 W/(m·K)。秸秆灰的掺入大大提高了混凝土的抗压强度。通过对WCSFCC的力学性能、导热系数与物理性能的分析,发现其力学性能与干密度、导热系数与干密度具有较强的相关性。然而,孔隙率和吸水能力的增加影响了WCSFCC的力学性能和导热性。本研究结果可促进小麦和玉米秸秆纤维的全面利用。WCSFCC的制造工艺简单,有利于广泛使用,生态友好。
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 cementitious high-pressure mixtures with wheat and corn straw fiber and straw ashes
This study aimed to introduce a novel technique for producing straw fiber cement-based composites from wheat and corn straws. The research analyses the engineering characteristics, including compressive and flexural strengths, water absorption capacity, dry density, porosity, and thermal properties of the wheat and corn straw fiber cementitious composite (WCSFCC) mixtures. The hydration performance and compactness of WCSFCC mixes were described using XRD, SEM, and EDS analyses. The results show that the dosage of NaOH solution is the optimal approach for enhancing the surface of straw fibers and facilitating their effective integration with the cement matrix. The straw powder incineration method leads the straw ash particles to have a specific surface area 9.6 times higher than straw powder. The findings indicated that WCSFCC mixes with untreated straw powder had an optimal compressive strength ranging from 2.85 MPa to 3.79 MPa and corresponding thermal conductivity between 0.147 and 0.162 W/(m·K). Adopting the straw ash increased the compressive strength considerably. The analysis of WCSFCC mechanical properties and thermal conductivity with physical properties reveals a strong correlation between the mechanical properties and dry density, as well as thermal conductivity and dry density. However, the increasing porosity and water absorption capacity have compromised the mechanical properties and thermal conductivity of WCSFCC. The findings of this research may enhance the overall use of wheat and corn straw fibers. The manufacturing process of WCSFCC is simple, conducive to widespread use, and ecologically friendly.
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来源期刊
CiteScore
7.60
自引率
19.40%
发文量
842
审稿时长
63 days
期刊介绍: Case Studies in Construction Materials provides a forum for the rapid publication of short, structured Case Studies on construction materials. In addition, the journal also publishes related Short Communications, Full length research article and Comprehensive review papers (by invitation). The journal will provide an essential compendium of case studies for practicing engineers, designers, researchers and other practitioners who are interested in all aspects construction materials. The journal will publish new and novel case studies, but will also provide a forum for the publication of high quality descriptions of classic construction material problems and solutions.
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