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Engineering properties and fracture behaviour of high volume palm oil fuel ash based fibre reinforced geopolymer concrete

机译:高体积棕榈油燃料灰基纤维增强地质聚合物混凝土的工程性能和断裂性能

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This article reports investigation carried out using high volume palm oil fuel ash (POFA-90%) based geopolymer concrete using oil palm shell (OPS) as coarse aggregate. The tensile and fracture properties of OPS based lightweight geopolymer concrete (OPSGC) with the addition of steel fibres (SF) of two aspect ratios (AR80, AR65) and three volume fractions (0.25%, 0.50%, 0.75%) were investigated. The results were compared with that of normal weight geopolymer concrete (NWGC) with and without steel fibre of AR80 and AR65 (0.50% volume fraction). The higher values of flexural and splitting tensile strengths of OPSGC could be attributed to stronger bond between the rougher surfaces of the crushed OPS and matrix. The addition of SF(AR80) produced higher splitting strength, flexural strength and total fracture energy of 5%, 6% and 50-80%, respectively compared to the corresponding values of SF(AR65). The toughness and equivalent flexural strength ratio of OPSGC were found higher than the corresponding values of NWGC and this could be attributed to the ductility of OPS. The values of residual load and residual strength in two-deflection limits of L/600 and L/150 indicated the progressive failure, which reflected the ductility of the OPSGC with fibres. (c) 2016 Elsevier Ltd. All rights reserved.
机译:本文报告了使用油棕壳(OPS)作为粗骨料使用高体积棕榈油燃料灰分(POFA-90%)基地质聚合物混凝土进行的研究。研究了添加两种纵横比(AR80,AR65)和三种体积分数(0.25%,0.50%,0.75%)的钢纤维(SF)的OPS基轻质地质聚合物混凝土(OPSGC)的拉伸和断裂性能。将结果与含和不含钢纤维的AR80和AR65(体积分数为0.50%)的普通重量地质聚合物混凝土(NWGC)进行了比较。 OPSGC较高的抗弯强度和劈裂抗拉强度可以归因于碎OPS的较粗糙表面与基体之间的牢固结合。与SF(AR65)的相应值相比,SF(AR80)的添加产生了更高的劈裂强度,弯曲强度和总断裂能,分别为5%,6%和50-80%。发现OPSGC的韧性和等效抗弯强度比高于NWGC的相应值,这可以归因于OPS的延展性。 L / 600和L / 150的两个挠度极限中的残余载荷和残余强度值表明逐渐破坏,这反映了OPSGC纤维的延展性。 (c)2016 Elsevier Ltd.保留所有权利。

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