Mechanical Performance and Durability of Banana Fibre and Coconut Coir Reinforced Cement Stabilized Earth Blocks

Kirupairaja Thanushan, N. Sathiparan
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引用次数: 1

Abstract

Agricultural waste disposal is among the environmental problem in many countries. Finding economical uses for this waste by incorporating it in a product is the approach often used to overcome the environmental issue. Banana fibre and coconut coir are major agricultural waste products in Sri Lanka and fewer amounts of these are converted into usable products. Manufacturing cement-stabilized earth blocks incorporating these waste materials can reduce the environmental impact. The present study focuses on the post-peak behavior and durability of banana fibre and coconut coir-strengthened cement-stabilized earth blocks. Banana fibre and coconut coir reinforced cement-stabilized earth blocks are tested for compression, flexural bending, water absorption, sorptivity and resistance against chemicals, wet-dry weathering and freeze-thaw weathering. The banana fibre is shown better post-peak behavior in compression and coconut coir shown better post-peak behavior in flexural. Both fibre reinforcements improved the block’s durability against the acid attack, alkaline attack, wet-dry weathering and freeze-thaw weathering. Moreover, the specimen reinforced with coconut coir was found to exhibit better durability compared to the specimen reinforced with banana fibres.
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香蕉纤维和椰椰纤维增强水泥稳定土块的力学性能和耐久性
农业废弃物处理是许多国家面临的环境问题之一。通过将其纳入产品中来寻找这种废物的经济用途是克服环境问题的常用方法。香蕉纤维和椰子纤维是斯里兰卡的主要农业废物,其中转化为可用产品的数量较少。制造含有这些废料的水泥稳定土块可以减少对环境的影响。本文主要研究了香蕉纤维和椰椰纤维增强水泥稳定土方块体的峰后行为和耐久性。对香蕉纤维和椰子纤维增强水泥稳定土块进行了压缩、弯曲、吸水、吸附性和抗化学物质、干湿风化和冻融风化的测试。香蕉纤维在压缩中表现出更好的峰后性能,椰子纤维在弯曲中表现出更好的峰后性能。两种纤维增强材料都提高了砌块的耐酸、碱性、干湿风化和冻融风化的耐久性。此外,与香蕉纤维增强的试件相比,椰子纤维增强的试件表现出更好的耐久性。
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