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Experimental Investigation Into Banana Fibre Reinforced Lightweight Concrete Masonry Prism Sandwiched with GFRP Sheet

机译:香蕉纤维增强轻质混凝土砌体夹层的试验研究

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This paper presents the stress-strain behaviour of Natural Banana microfibre reinforced Lightweight Concrete (LWC) prisms under axial compression. The compressive strength of masonry is obtained by testing stack bonded prisms under compression normal to its bed joint. LWC blocks of cross-sectional dimensions 200 mm x 150 mm were used to construct the prism with an overall height of 630 mm. Three series of specimens were cast; (a) prism without Banana fibre (control), (b) prism with Banana microfibres, (c) prism with Banana microfibres sandwiched with Glass Fibre Reinforced Polymer (GFRP) sheets. Natural Banana fibres were used as structural fibre reinforcement at different volume fractions (VF). The results indicate that the presence of fibres helps to improve the strength, stiffness, and ductility of LWC stack bonded prisms under compression. The test results also indicate that banana fibre reinforcement provides an improved crack bridging mechanism at both micro and macro levels. The GFRP sandwiched prism specimens exhibited excellent ductility and load-carrying capacity resulting from improved plastic deformation tolerance under compression and bonding between the LWC block and GFRP sheet.
机译:本文介绍了轴向压缩下天然香蕉微纤维增强轻质混凝土(LWC)棱镜的应力 - 应变行为。通过在垂直于其床接头的压缩下测试堆叠粘合棱镜来获得砌体的抗压强度。 LWC横截面尺寸200mm×150mm的块,用于构造具有630mm的整体高度的棱镜。铸造了三系列标本; (a)没有香蕉纤维(B),(b)棱镜与香蕉微纤维,(c)棱镜与香蕉微纤维夹在玻璃纤维增​​强聚合物(GFRP)板上。在不同体积分数(VF)下使用天然香蕉纤维作为结构纤维增强。结果表明,纤维的存在有助于改善压缩下LWC堆叠粘接棱镜的强度,刚度和延展性。测试结果还表明香蕉纤维增强件在微观和宏观水平下提供了一种改进的裂纹桥接机制。 GFRP夹层棱镜样品表现出优异的延展性和承载能力,由改善的塑性变形公差在LWC块和GFRP片之间的压缩和粘合下进行。

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