Evaluation the Effects of Coarse Aggregates Size on Concrete Properties

Mamaru Dessalegn Belay
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Abstract

Concrete is the most generally used construction material in buildings,pavements, and infrastructures. Concrete is a construction materialcomposed of cement as binder, fine aggregates and coarse aggregatesmixed with water which hardens with time. Concrete is a versatileconstruction material within the housing industry of the planet. Thestandard of the concrete is tormented by various factors and from thosevarious factors which may have an effect on the concrete quality are, thecoarse combination size has its own nice role on the standard of concreteproduction. A laboratorial experiment was conducted to work out the resultscoarse aggregates size on recent and hardened concrete properties. For thisstudy totally different crushed volcanic rock aggregates sizes were collectedfrom almost Jimma city for determination of the results of coarse aggregatesizes in concrete production. Three coarse aggregate nominal sizes of 10mm, 14 mm and 20 mm were used for samples production to envision thescale effects on concrete properties. For this study the procedures that wasfollowed, the types and quantity of materials for concrete creating weresimilar whereas sizes of nominal basaltic coarse aggregate were different.The fresh concrete has a slump value of 67 mm, 72 mm and 83 mm for10mm, 14 mm and 20 mm aggregate sizes respectively. A total of thirty sixconcrete cube samples were ready and tested using compressive strengthtesting machine at totally different ages of the cube 7 days, 14 days, and 28days, to know their strengths. The compressive strength was 23.524 Mpa,22.643 Mpa and 22.41 MPa for aggregate sizes of 10 mm, 14 mm and 20mm respectively. The laboratory results show that 10mm coarse aggregatesize gave the most effective compressive strength and comparativelylowest slump at similar water/cement ratio of 0.6. At 28th day 10mmcoarse aggregate size gave 23.524 Mpa compressive strength which is themaximum compressive strength from the remainder coarse aggregates so,the optimum maximum size of coarse aggregate for this study was 10mm.
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粗集料粒径对混凝土性能影响的评价
混凝土是建筑物、路面和基础设施中最常用的建筑材料。混凝土是一种建筑材料,由水泥作为粘合剂,细骨料和粗骨料与水混合而成,随着时间的推移而变硬。混凝土是地球上住宅行业中用途广泛的建筑材料。混凝土的质量受到各种因素的影响,从影响混凝土质量的各种因素来看,粗粒度对混凝土的生产标准有其良好的作用。通过室内试验研究了粗骨料粒径对混凝土近期性能和硬化性能的影响。本研究收集了吉马市各地不同粒径的火山岩碎石骨料,以测定粗骨料在混凝土生产中的效果。三种粗骨料标称尺寸分别为10mm、14mm和20mm,用于样品生产,以设想混凝土性能的尺度效应。在这项研究中,所遵循的程序,混凝土材料的类型和数量是相似的,而标称玄武岩粗骨料的尺寸是不同的。对于10mm、14mm和20mm骨料粒径,新拌混凝土的坍落度值分别为67mm、72mm和83mm。共准备了36个混凝土立方体样品,在立方体7天、14天、28天的不同龄期,用抗压强度试验机进行了测试,以了解其强度。骨料粒径为10 mm、14 mm和20mm时,抗压强度分别为23.524 Mpa、22.643 Mpa和22.41 Mpa。实验结果表明,当水灰比为0.6时,10mm粗骨料的有效抗压强度最高,坍落度最低。在第28天,10mm粗骨料的抗压强度为23.524 Mpa,这是剩余粗骨料的最大抗压强度,因此,本研究的最佳粗骨料最大粒径为10mm。
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来源期刊
CiteScore
3.80
自引率
0.00%
发文量
19
期刊介绍: The International Journal of Construction Education and Research is a respected international refereed journal that publishes original works that address cutting edge issues related to construction around the globe. The Journal supports the mission of the Associated Schools of Construction (ASC), a professional association comprised of about 100 universities and colleges. The ASC encourages the sharing of ideas and knowledge and promotes excellence in curricula, teaching, research and service relating to the construction industry.
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