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Assessment of durability of recycled aggregate concrete produced by two-stage mixing approach

机译:两阶段混合法生产的再生骨料混凝土的耐久性评估

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As more than 50% construction and demolition (C&D) wastes are composed of concrete debris in Hong Kong, recycling this debris into Recycled Aggregate (RA) for production of Recycled Aggregate Concrete (RAC) is an efficient way to alleviate the burden on landfill areas. Since RA is generated from concrete debris which has undergone years of services, the resulting RAC bears the weaknesses of lower density, higher water absorption, and higher porosity that limit them to lower-grade applications. Pinpointing to these weaknesses, Tam et al. [2005, Cement Concrete Res 35(6):1195-1203] developed the Two-Stage Mixing Approach (TSMA) for improving the strength of RAC, leading to the possibility in applying RAC for higher-grade applications. While the improvement in strength by TSMA has been proven in Tam et al.'s work [2005, Cement Concrete Res 35(6):1195-1203], the durability, in terms of deformation (shrinkage and creep) and permeability (water, air and chloride permeability), remains to be verified. In this paper, 0%, 20% and 100% of RA substitutions have been experimented to compare the durability performance of the Normal Mixing Approach (NMA) and the TSMA. Experiment results highlight that: (i) the higher the substitutions of RA, the weaker the performance of RAC; and (ii) the deformation and permeability of RAC can be enhanced when adopting TSMA. Therefore, it demonstrates that TSMA can help to improve the durability of RAC, on top of the previously verified strength improvement, and thus opening up wider applications of RAC.
机译:由于香港有超过50%的拆建废料是由混凝土碎屑组成的,因此将这些碎屑回收到再生集料(RA)中以生产再生集料混凝土(RAC)是减轻填埋场负担的有效方法。由于RA是由经过多年使用的混凝土碎屑产生的,因此所得的RAC具有密度低,吸水率高和孔隙率高的弱点,将它们限制在较低等级的应用中。 Tam等人指出了这些弱点。 [2005,Cement Concrete Res 35(6):1195-1203]开发了两阶段混合方法(TSMA)以提高RAC的强度,从而导致将RAC应用于更高等级的应用程序的可能性。 Tam等人的工作[2005,Cement Concrete Res 35(6):1195-1203]证明了TSMA可以提高强度,但在变形(收缩和蠕变)和渗透性(水)方面具有耐久性(空气和氯化物的渗透性),还有待验证。在本文中,已经进行了0%,20%和100%的RA取代实验,以比较普通混合法(NMA)和TSMA的耐久性能。实验结果表明:(i)RA的取代基越高,RAC的性能越弱; (ii)采用TSMA可以增强RAC的变形和渗透性。因此,它证明了TSMA在先前验证的强度提高的基础上,可以帮助提高RAC的耐用性,从而打开RAC的广泛应用。

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