Characteristics Investigations of Dry Bamboo Ash Fractional Replaced Cement with in M25 Grade Concrete

IF 0.6 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Annales De Chimie-science Des Materiaux Pub Date : 2021-04-30 DOI:10.18280/ACSM.450207
Vijayvenkatesh Chandrasekaran
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引用次数: 2

Abstract

Received: 24 March 2020 Accepted: 10 August 2020 Most bamboos are used in-house ceiling, Ornament works behavior science of earliest culture regulations. If fresh and dry stages bamboos are equally important, of construction works. Green stage bamboos working process of interlocking formations woodworks and dry stage bamboos are working in support for centering for slabs, tunneling or varies constructional purposes. These papers say about dry bamboos ash to use the sub stained to mixed the partially replaced within 53 grades of cement. In 20, 30, and 40%. And constituent of mixing ratio is M25 grade of concrete (1:1:2). And its process of proper casting of cubes, beams and cylinders to put in to the test analysis for strength, absorption tastings machines and these each types of test result are higher values. Because its better constituent DBA ash mixed with cement substance identical strength attained the concrete cubes, cylinders and beams. And its improved concrete strength and highly interlocking ability of friction bonding into the coarse and fine aggregate of the concrete. And same time its high workability.
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M25级混凝土中掺加干竹灰替代水泥的特性研究
大部分竹子被用于室内天花板,装饰作品行为科学最早的文化规定。如果新鲜和干燥阶段的竹子同样重要,在建筑工程中。绿阶段竹的联锁结构工作过程中,木制品和干阶段竹在楼板、隧道或各种建筑用途的中心支撑中工作。这些论文说,干竹灰要用浸染剂来混合,部分取代了53级以内的水泥。20% 30% 40%配料比为M25级混凝土(1:1:2)。并将其工艺适当的浇铸立方体、横梁和圆柱体放入试验分析中进行强度、吸光度试验,这些各类型的试验结果都是较高的数值。由于其较好的组分DBA灰与水泥物质混合,获得了混凝土立方体、圆柱体和梁的相同强度。它提高了混凝土的强度和高度的摩擦联锁能力,将粗骨料和细骨料粘合成混凝土。同时具有较高的加工性。
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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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