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Nonconventional Ca(OH)2 Treatment of Bamboo for the Reinforcement of Cement Composites

机译:非常规Ca(OH)2处理竹增强水泥复合材料

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摘要

This study compares the structural and morphological changes in Kunth (GAK) fiber prepared in three different ways (chips, barkless and crushed) when non-conventional alkaline treatment is applied. Moreover, it shows the improvement of mechanical properties of cement composites reinforced with these treated fibers. The three different preparations of were treated with a saturated solution of calcium hydroxide (5%) at 125 °C and 1.25 kPa for 3 h to remove non-cellulosic compounds. Then, their chemical, morphological, and structural properties were examined. The fibers exhibiting the higher delignification rate were selected to prepare cement composite boards, whose mechanical properties were successively compared with those of composites reinforced with untreated fibers. The water/cement ratios of the cement mixed with the Ca(OH) -treated and the untreated fibers were, respectively, around 0.3 and 0.25. The flexural strength and toughness of the two composites were evaluated after 7, 28, and 90 days of curing. The calcium hydroxide treatment showed higher efficiency in removing non-cellulosic materials when performed on crushed bamboo; moreover, the mechanical properties of the composites reinforced with the treated fibers were higher than those mixed with the untreated ones. After 90 days of curing, the flexural strength increased by around 40% and the toughness became three times higher ( < 0.05). The mechanical improvement by the Ca(OH) treatment of fibers demonstrates its potential for the fabrication of cement composites.
机译:这项研究比较了采用非常规碱处理时,以三种不同方式(切片,无树皮和粉碎)制备的Kunth(GAK)纤维的结构和形态变化。而且,它显示了用这些处理过的纤维增强的水泥复合材料的机械性能的改善。将这三种不同的制剂在125°C和1.25 kPa下用氢氧化钙饱和溶液(5%)处理3小时,以去除非纤维素化合物。然后,检查了它们的化学,形态和结构特性。选择具有较高脱木素率的纤维来制备水泥复合板,其机械性能与未处理纤维增强的复合材料的机械性能相比较。与经Ca(OH)处理的纤维和未处理的纤维混合的水泥的水/水泥比分别为约0.3和0.25。在固化7天,28天和90天后,评估了两种复合材料的弯曲强度和韧性。对碎竹进行氢氧化钙处理后,去除非纤维素材料的效率更高。此外,用处理过的纤维增强的复合材料的机械性能高于未处理过的复合材料的机械性能。固化90天后,抗弯强度提高了约40%,而韧性则提高了三倍(<0.05)。通过Ca(OH)处理纤维进行的机械改进证明了其在水泥复合材料制造中的潜力。

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