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Investigation of Waste Paper Cellulosic Fibers Utilization into Cement Based Building Materials

机译:废纸纤维素纤维在水泥基建材中的应用研究

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Recently, the utilization of renewable natural cellulosic materials, such as wood, plants, and waste paper in the preparation of building materials has attracted significant interest. This is due to their advantageous properties, low environmental impact and low cost. The objective of this paper is to investigate the influence of recycled cellulosic fibers (in the amount 0.5 wt % of the filler and binder weight) and superplasticizer (in the amount 0.5 wt % of the cement weight) on the resulting properties of cement composites (consistency of fresh mixture, density, thermal conductivity, and compressive and flexural strength) for hardening times of 1, 3, 7, 28, and 90 days. Plasticizer use improved the workability of fresh cement mixture. In comparison to the reference sample, the results revealed a decrease in density of 6.8% and in the thermal conductivity of composites with cellulosic fibers of 34%. The highest values of compressive (48.4 MPa) and flexural (up to 7 MPa) strength were achieved for hardened fiber cement specimens with plasticizer due to their significantly better dispersion of cement particles and improved bond strength between fibers and matrix.
机译:近来,在建筑材料的制备中利用可再生天然纤维素材料,例如木材,植物和废纸引起了极大的兴趣。这是由于它们的有利特性,低环境影响和低成本。本文的目的是研究再生纤维素纤维(占填料和粘合剂重量的0.5 wt%)和高效减水剂(占水泥重量的0.5 wt%)对水泥复合材料最终性能的影响(固化时间分别为1、3、7、28和90天的新鲜混合物的稠度,密度,导热率以及抗压和抗弯强度)。增塑剂的使用改善了新鲜水泥混合物的可加工性。与参考样品相比,结果显示,纤维素纤维复合材料的密度降低了6.8%,导热系数降低了34%。具有增塑剂的硬化纤维水泥样品的抗压强度(48.4 MPa)和抗弯强度(最高7 MPa)达到最高值,这是因为它们在水泥颗粒中的分散性明显更好,并且纤维与基体之间的粘结强度得到了改善。

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