Explicit Study of Epoxy/ Momordica Angustisepala Fiber and Rice Husk Ash Nanoparticle Composites for Roofing Sheet Application

IF 0.6 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Annales De Chimie-science Des Materiaux Pub Date : 2020-12-30 DOI:10.18280/acsm.440601
Nwoji Clifford Ugochukwu, Aigbodion Victor Sunday, A. M. Sani, Obetta Emmanuel Chinonso
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引用次数: 1

Abstract

The development of roofing sheets using sustainable materials to reduce the health hazard pose by asbestos, corrosion of galvanized zinc, and cost of long span aluminum has been giving attention. In this work, density, tensile properties, corrosion resistance and stress analysis of Momordica angustisepala fiber (MAf) and rice husk ash nanoparticle/epoxy composite was used as criteria to determine the suitability of the new material as a roofing sheet application. Roofing sheets of lower weight can be produced with this developed material. The yield strength and tensile strength of 73.45 and 75.12 MPa are within the strength recommended for galvanized zinc and long span aluminum. The new material can be used in the production of roofing sheets with better corrosion resistance than galvanized zinc and long span aluminum. It was established that light weight roofing sheets with better corrosion resistance can be made with this composite.
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环氧树脂/苦瓜纤维/稻壳灰纳米颗粒复合屋面板材料的研究
利用可持续材料开发屋面板,以减少石棉对健康的危害、镀锌锌的腐蚀和大跨度铝的成本,一直受到人们的关注。在这项工作中,以苦瓜纤维(MAf)和稻壳灰纳米颗粒/环氧树脂复合材料的密度、拉伸性能、耐腐蚀性和应力分析为标准,确定新材料作为屋面板的适用性。用这种开发的材料可以生产重量较轻的屋面板。屈服强度为73.45 MPa,抗拉强度为75.12 MPa,在镀锌和大跨度铝推荐强度范围内。该新材料可用于生产比镀锌和大跨度铝更耐腐蚀的屋面片材。结果表明,该复合材料可制成耐腐蚀性能较好的轻质屋面板。
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来源期刊
Annales De Chimie-science Des Materiaux
Annales De Chimie-science Des Materiaux 工程技术-材料科学:综合
CiteScore
1.70
自引率
25.00%
发文量
33
审稿时长
>12 weeks
期刊介绍: The ACSM is concerning the cutting-edge innovations in solid material science. The journal covers a broad spectrum of scientific fields, ranging all the way from metallurgy, semiconductors, solid mineral compounds, organic macromolecular compounds to composite materials. The editorial board encourages the submission of original papers that deal with all aspects of material science, including but not limited to synthesis and processing, property characterization, reactivity and reaction kinetics, evolution in service, and recycling. The papers should provide new insights into solid materials and make a significant original contribution to knowledge.
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