Retrofitting of Reinforced Concrete Beams Using a Fiberglass Jacketing System

T. Artiningsih, Lirawati L., N. Helmi
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引用次数: 1

Abstract

Building collapse that occurred mostly caused by structure failure in containment earthquake load. Factors that lead to the failure of the beam, among others is beam planning that does not calculate ductility or restraint, resulting decline of beams performance. One way to improve beam strength and ductility are to retrofit the beam by wrapping beams using fiberglass. Research aims to discover the increase amount of bending load capacity from concrete beam that has been retrofitted using jacketing fiberglass. Experimental testing was carried out on beam specimens with a cross section size of 150x200 mm and a length of 1400 mm. Three beam specimens were subjected to bending loads with a three point loading system, with different levels of damage, namely BL1 with collapse at level-1, BL2 at level-2, and BL0 at level-5 as a comparison. Then the BL1 and BL2 were retrofitted by being coated with 2 layers of fiberglass which were glued using epoxy resin. Beams BL-1 and BL-2 are then subjected to a bending test again until they reach level-5 collapse. The test results showed that retrofitted beams were able to increase flexural strength, BL-1 increased 115.15% from the original load and BL-2 increased 52.27% from the original load.
用玻璃纤维护套系统加固钢筋混凝土梁
建筑物倒塌主要是由于结构在地震荷载作用下发生的破坏。导致梁破坏的因素之一是梁的规划不考虑延性或约束,导致梁的性能下降。提高梁强度和延性的一种方法是用玻璃纤维包裹梁来改造梁。研究的目的是发现增加的弯曲载荷能力的混凝土梁,已经改造使用护套玻璃纤维。试验试验采用截面尺寸为150 × 200 mm、长度为1400 mm的梁试件进行。3个梁试件采用三点加载体系,分别承受不同破坏程度的弯曲荷载,即BL1破坏为1级,BL2破坏为2级,BL0破坏为5级作为对比。然后对BL1和BL2进行改造,涂上两层玻璃纤维,并用环氧树脂粘接。然后,BL-1和BL-2梁再次进行弯曲试验,直到达到5级坍塌。试验结果表明,加固梁的抗弯强度比原荷载提高了115.15%,比原荷载提高了52.27%。
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