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Development of Mobile Crusher for Recycled Aggregate Production

机译:用于回收骨料生产的移动破碎机的开发

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Owing to the comprehensive building redevelopment programme in Hong Kong, there is a huge volume of concrete waste generated that will soon exhaust all the available landfill areas. As such, Recycled Aggregate (RA) is advocated. However, recycled aggregate has been confined only to lower-grade concrete applications, such as pavements, roadwork and sub-base. The major reason is the variable behavior of RA resulted from different concrete waste sources collected for centralised crushing in a centralised recycling plant. This paper proposes the adoption of a mobile crusher for RA production which can: 1) reclaim RA from known sources; 2) maintain consistency of RA properties; 3) alleviate the traffic congestion in delivering concrete waste to a central crushing plant; 4) save in traveling time of discharging trucks; and 5) remove the requirement on the minimum boulder size to be handled by a centralised plant. In this paper, ten samples of recycled aggregate (Samples 1 to 10) had been obtained from ten demolition sites while Sample 11 was collected from Tuen Mun Area 38, the centralised recycling plant. They were compared with the performance of virgin aggregate (Sample 12). From the experimental results, one of the samples (Sample 6), akin to Sample 12 (virgin aggregate), was found to be suitable for all types of construction applications while some samples (Samples 2 and 9) were not suitable for recycled aggregate concrete of any grades of application. This concludes that recycled aggregate from different sources should preferably be separately crushed by mobile crushers rather than processed centrally which will lower the overall quality of recycled aggregate and confine their applications.
机译:由于香港实施了全面的建筑物重建计划,因此产生了大量的混凝土废物,这些废物很快将耗尽所有可用的垃圾填埋场。因此,提倡使用再生骨料(RA)。但是,再生骨料只限于较低等级的混凝土应用,例如人行道,道路工程和路基。主要原因是RA的可变性,这是由集中回收工厂中集中破碎的不同混凝土废料来源导致的。本文提出了一种用于RA生产的移动破碎机,该破碎机可以:1)从已知来源回收RA。 2)保持RA特性的一致性; 3)减轻向中央破碎厂输送混凝土废料的交通拥堵; 4)节省卸货卡车的行驶时间; 5)取消对由集中工厂处理的最小巨石尺寸的要求。本文从十个拆迁地点获得了十个再生骨料样本(样本1至10),而样本11则从中央回收工厂屯门38区收集。将它们与原始骨料的性能进行了比较(样本12)。从实验结果中,发现类似于样本12(原始骨料)的样本之一(样本6)适用于所有类型的建筑应用,而一些样本(样本2和9)不适用于再生骨料混凝土。任何等级的应用。结论是,来自不同来源的再生骨料最好应由移动破碎机分别破碎,而不是集中处理,这将降低再生骨料的整体质量并限制其应用。

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