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首页> 外文期刊>Journal of Cleaner Production >Effects of alkali-treated recycled carbon fiber on the strength and free drying shrinkage of cementitious mortar
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Effects of alkali-treated recycled carbon fiber on the strength and free drying shrinkage of cementitious mortar

机译:碱处理再生碳纤维对水泥砂浆强度和干缩率的影响

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The waste management of carbon fiber polymer composites has serious environmental implications if the wastes are sent to landfill or incineration. This laboratory investigation explored the viable chemical treatment for recycled carbon fiber (RCF) with residual cured epoxy on its surface, and evaluated the effects of alkali-treated RCF on the strength properties and volume stability of cementitious mortar. A total of seven mortar mixtures were designed to incorporate the untreated RCF and RCF treated by 1, 2 and 3 mol/L NaOH solution, respectively. The dosage of RCF was 1% by volume of the mortar and the water-to-binder ratio was 0.50. The compressive strength, splitting tensile strength and free drying shrinkage of RCF reinforced mortars were evaluated. The mechanical and shrinkage behaviors of cement mortars were enhanced by the RCF (untreated or treated by 1 mol/L NaOH). The scanning electron microscopy revealed that the treated RCF had better adhesion to the mortar matrix than the untreated one. The incorporation of RCF treated by 1 mol/L NaOH is a viable solution to reuse this waste in mortar. The RCF treated by NaOH solution of higher concentrations had a negative effect on the behaviors of mortar because of more damaged RCF and more Ca(OH)(2) in the mortar (if mixed with the waste NaOH solution). Published by Elsevier Ltd.
机译:如果将废物送到垃圾掩埋场或焚烧,则碳纤维聚合物复合材料的废物管理将对环境造成严重影响。该实验室研究探索了在表面残留有固化环氧树脂的再生碳纤维(RCF)的可行化学处理方法,并评估了碱处理RCF对水泥砂浆强度特性和体积稳定性的影响。设计了总共七种砂浆混合物,分别掺入未经处理的RCF和分别经1、2和3 mol / L NaOH溶液处理过的RCF。 RCF的用量为砂浆的1%(体积),水胶比为0.50。评价了RCF增强砂浆的抗压强度,劈裂抗拉强度和自由干燥收缩率。 RCF(未处理或用1 mol / L NaOH处理)可增强水泥砂浆的力学性能和收缩性能。扫描电子显微镜显示,与未处理的RCF相比,处理后的RCF对砂浆基质的粘附性更好。掺入经1 mol / L NaOH处理的RCF是一种可行的解决方案,可以将这种废物重新用于砂浆中。用更高浓度的NaOH溶液处理的RCF对砂浆的性能有负面影响,因为砂浆中的RCF损伤更大,并且Ca(OH)(2)含量更高(如果与废NaOH溶液混合)。由Elsevier Ltd.发布

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