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Evaluation on the Surface Modification of Recycled Fine Aggregates in Aqueous H 2SiF 6 Solution

机译:H 2 SiF 6 水溶液中再生细骨料表面改性的评价

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Abstract Recycled aggregates (RAs) production techniques are essential for the material circulation society because RAs from demolished concrete waste can sustainably be reused as a concrete material. However, RAs can bring about several performance decreases when they are used for recycled aggregate concrete (RAC) because of the low qualities (i.e., high water-absorption rate and low density) caused by the attached hydrated cement paste on the RA surface. Therefore, both the production of high-quality RAs and the surface modification of RAs are significantly important for the extension of RAC utilization. This paper focuses on the surface modification of RFA to reduce the water absorption rate and increase density. Hydrofluorosilicic acid (H~(2)SiF~(6)), which is one of the by-products in phosphoric acid manufacture, is used herein for the surface modification of the RFA. The physical properties and mechanical performance of mortar using RFA were evaluated after RFA modification. Consequently, the proposed method is effective in reducing water absorption rate and increasing density of RFA. The density of RFAs was slightly increased by 0.5–2.6% after modification. On the other hand, the water absorption rate decreased by 4–18% after modification. The compressive strengths of mortar at 28?days ages showed 18.1?MPa with modified RFA and 16.2?MPa with RFA.
机译:摘要再生骨料(RAs)的生产技术对于物质循环社会至关重要,因为来自已拆除混凝土废物的RAs可以可持续地用作混凝土材料。但是,由于RA表面附着水合水泥浆会导致质量低(即高吸水率和低密度),因此将RA用于再生骨料混凝土(RAC)时,性能可能会出现一些下降。因此,高质量RA的生产和RA的表面改性对于扩展RAC的利用都非常重要。本文重点研究了RFA的表面改性,以降低吸水率并增加密度。氢氟硅酸(H〜(2)SiF〜(6))是磷酸生产中的副产物之一,在本文中用于RFA的表面改性。在RFA改性后,评估了使用RFA的砂浆的物理性能和机械性能。因此,所提出的方法在降低吸水率和增加RFA的密度方面是有效的。修改后,RFA的密度略有增加0.5-2.6%。另一方面,改性后的吸水率降低了4-18%。改性RFA的砂浆在28天的压缩强度为18.1MPa,RFA的压缩强度为16.2MPa。

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