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Mechanical properties of glass fibre reinforced concrete with palm oil fuel ash

机译:棕榈油燃料灰的玻璃纤维混凝土的力学性能

摘要

In the absence of steel reinforcement, the brittle nature of conventional concrete always results in catastrophic failure without warning. Researches since decades ago shown that the addition of fibres into the concrete enhanced its ductility while admixtures help to strengthen the cement matrix. To study the effects of palm oil fuel ash (POFA) on the mechanical properties of glass fibre reinforced concrete (GFRC), an experimental programme involved Vebe consistency test, ultrasonic pulse velocity test, compressive strength test, splitting tensile strength test and flexural strength test was carried out. Normal concrete and GFRC with 0, 10, 20 and 30% of POFA were prepared and tested at the age of 1, 7, 28 and 90 days. The glass fibre used was 12mm Cem-Fil Alkali-Resistant (AR) glass fibre added into the concrete at a percentage of 0.5 by volume of concrete. The result shows that the addition of glass fibres reduced the workability of the concrete but the use of superplasticiser helped to compensate the loss. In term of mechanical properties, glass fibres reduced the compressive strength of the concrete for about 10.0% but 20% replacement of cement with POFA gave a 5.4% improvement to the compressive strength at later age. With the incorporation of glass fibres into the concrete, the splitting tensile strength and flexural strength were increased by 2.2% and 20.0% respectively. The replacement of 20% cement with POFA further enhance the concrete for another 8.2% and 10.6% of splitting tensile and flexural strength respectively. In conclusion, glass fibres reduced the compressive strength of the concrete but it helped in improving the splitting tensile and flexural strength of the concrete. To strengthen the concrete, 20% replacement of cement with POFA was found to be the optimum value.
机译:在没有钢筋的情况下,常规混凝土的脆性总是导致灾难性的破坏,而不会发出警告。数十年前的研究表明,在混凝土中添加纤维可增强其延展性,而掺合料则有助于增强水泥基质。为了研究棕榈油燃料灰分(POFA)对玻璃纤维增​​强混凝土(GFRC)力学性能的影响,实验程序包括Vebe稠度测试,超声脉冲速度测试,抗压强度测试,劈裂抗拉强度测试和抗弯强度测试进行了。制备了普通混凝土和含有0、10、20和30%POFA的GFRC,并在1、7、28和90天的龄期进行了测试。所使用的玻璃纤维是12mm Cem-Fil耐碱性(AR)玻璃纤维,其以混凝土的0.5体积%添加到混凝土中。结果表明,添加玻璃纤维会降低混凝土的可加工性,但使用高效减水剂有助于弥补损失。在机械性能方面,玻璃纤维降低了混凝土的抗压强度约10.0%,但用POFA替代20%的水泥可使以后的抗压强度提高5.4%。随着玻璃纤维掺入混凝土,劈裂抗拉强度和抗弯强度分别提高了2.2%和20.0%。用POFA代替20%的水泥可进一步提高混凝土的抗拉强度和抗折强度,分别达到8.2%和10.6%。总之,玻璃纤维降低了混凝土的抗压强度,但有助于改善混凝土的劈裂抗拉强度和抗弯强度。为了增强混凝土,发现用POFA替代20%的水泥是最佳值。

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    Lee Yee Khai;

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  • 年度 2012
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  • 正文语种 en
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