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Experimental and numerical analysis of short sisal fiber-cement composites produced with recycled matrix

机译:再循环基质生产短剑束纤维复合材料的实验性和数值分析

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摘要

The proper use of renewable or recycled source materials can contribute significantly to reducing the environmental impact of construction industry. In this work, cement-based composites reinforced with natural fibres were developed and their mechanical behaviour was characterised. To ensure the composite sustainability and durability, the ordinary Portland cement matrix was modified by adding metakaolin and the natural aggregate was substituted by 10 and 20% of recycled concrete aggregate. Compression and splitting tensile tests indicated that mechanical strength did not seem to be affected by recycled content. Flat sheets were cast in a self-compacted cement matrix and bending tests were performed to determine the first crack, postpeak strength and cracking behaviour of the composites. The use of short sisal fibre as reinforcement of recycled cement matrices results in a composite with multiple cracking and increment in strength after first crack. The modelling of composites using the finite-element method allowed to determine the tensile stress-strain behaviour of material and to design possible applications of this new sustainable material.
机译:适当使用可再生或再循环的源材料可以显着贡献减少建筑业的环境影响。在这项工作中,开发了用天然纤维增强的基于水泥基复合材料,其力学行为的特征在于。为了确保复合可持续性和耐用性,通过添加甲酸盐蛋白和自然聚集体被10%和20%的再生混凝土骨料取代的普通波特兰水泥基质。压缩和分裂拉伸试验表明,机械强度似乎似乎没有受重新含量的影响。在自压制的水泥基质中浇铸平板,进行弯曲试验以确定复合材料的第一裂纹,延期强度和裂缝行为。使用短剑纤维作为再生水泥基质的加固导致复合材料,在第一裂纹后强度裂化和增长。复合材料的建模使用有限元法测定材料的拉伸应力 - 应变行为,并设计这种新可持续材料的可能应用。

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