Concrete Brick Properties Incorporating EPS and POFA as Replacement Materials

S. Adnan, N. Yassin, S. Shahidan, M. H. Osman, M. Jeni, W. Jusoh, Z. Jamellodin, N. Hamid, Faridahanim Ahmad
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Abstract

The implementation of sustainable construction and green building becomes the main attention of construction industries in Malaysia as it has been introduced by the government in the Construction Industry Transformation Programme (2016-2020). Therefore, this study focuses on the development of sustainable concrete bricks containing Expanded Polystyrene (EPS) and Palm Oil Fuel Ash (POFA) as sand and cement substitute materials. The percentage of replacement is 20%, 30%, 40% and 50% for EPS and 5%, 10%, 15%, 20% and 25% for POFA. There are 30 different mix designs of brick have been produced and their properties have been identified. Hardened brick density, compressive strength, water absorption and initial rate of absorption are the brick properties identified in this study. Based on the experimental results, it was found that the hardened brick density and compressive strength of the brick decreased as the replacement percentage increased. On the other hand, the water absorption and initial rate of absorption of the brick decreased as the percentage of EPS increased and increased as the percentage of POFA increased. Based on the findings, it shows that EPS and POFA has significantly contributes to the reduction of brick density. Next, for the compressive strength all the bricks have satisfied the minimum strength requirement of non-load bearing brick. Finally, for water absorption and initial rate of absorption, it has been found that majority of the bricks have an acceptable value based on standard requirements for brick. This can be concluded that EPS and POFA could be potential substitute materials for the manufacture of sustainable bricks.
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EPS和POFA替代材料的混凝土砖性能研究
可持续建筑和绿色建筑的实施成为马来西亚建筑业的主要关注点,因为它已被政府引入建筑业转型计划(2016-2020)。因此,本研究的重点是开发含有膨胀聚苯乙烯(EPS)和棕榈油燃料灰(POFA)作为砂和水泥替代材料的可持续混凝土砖。EPS的替换率分别为20%、30%、40%和50%,POFA的替换率分别为5%、10%、15%、20%和25%。已经生产了30种不同的砖混合设计,并确定了它们的性能。硬化砖的密度、抗压强度、吸水率和初始吸收率是本研究确定的砖的性能。试验结果表明,随着替代率的增加,硬化砖的密度和抗压强度均有所下降。另一方面,砖的吸水率和初始吸收率随EPS含量的增加而降低,随POFA含量的增加而增加。研究结果表明,EPS和POFA对降低砖密度有显著的作用。其次,对于抗压强度,所有砖都满足非承重砖的最低强度要求。最后,对于吸水率和初始吸收率,根据砖的标准要求,大多数砖都有一个可接受的值。综上所述,EPS和POFA可能是制造可持续砖的潜在替代材料。
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