标题: | 再生粗骨材用以生产高流动化混凝土之可行性与其工程性质研究 Study of Feasibility and Mechanical Properties for Producing High-Flowable Concrete with Recycled Coarse Aggregates. |
作者: | 符哲武 Che-Wu Fu 赵文成 Wen-Chen Jau 土木工程学系 |
关键字: | 再生骨材;废弃混凝土;再生混凝土;高流动化混凝土;recycled aggregate;wasted concrete;recycled concrete;high-flowable concrete |
公开日期: | 2000 |
摘要: | 本研究系采用抗压强度为3000psi至5000psi之废弃混凝土试体,经碎化成再生粗骨材后,在添加适量之飞灰(25%、30%)及强塑剂下,用以生产当水胶比为0.50、0.55及0.60各种不同配比之高流动化混凝土,并测试该新拌混凝土工作度特性及硬固混凝土之各项工程力学性质(包括抗压强度、劈裂抗张强度、握裹力与滑移量、干缩、潜变),同时将试验结果与采用天然粗骨材之高流动化混凝土,在相同配比下做比较分析。 本研究采用废弃混凝土碎化后所得之再生粗骨材,其各项物理性质符合CNS 1240(混凝土粒料)之规定要求,并据以生产高流动化混凝土后,由试验结果得之,其坍度及坍流度等工作度需求符合TAICON定义之高流动化混凝土。且其各种工程力学性质与采用天然粗骨材生产之高流动化混凝土差异不大,足见采用再生粗骨材用以生产高流动化混凝土具有相当之可行性。因此,再生粗骨材之利用,对于砂石替代品之开发及减少废弃混凝土造成之环保问题,具有正面积极之效益。同时再生粗骨材用以生产中低强度之高流动化混凝土,除了易于浇置施工以确保品质外,亦能满足结构物强度设计之需求。 In this study, wasted concrete specimens of compressive strengths ranged from 3000psi to 5000psi were crushed and used as coarse aggregates to produce high-flowable concrete specimens with fly ash (25%、30%) and superplasticizer. The water/binder ratios of concrete specimens were at 0.50、0.55 and 0.60, respectively. The workabilities of fresh concretes and the mechanical properties of hardened concretes such as compressive strength, splitting tension strength, bonding strength, sliding displacement, shrinkage and creep were tested. Meanwhile, the comparsions of mechanical properties of recycled concretes were made with those of ordinary high-flowable concretes. The mechanical properties of coarse aggregate crushed from wasted concrete specimens were conformed to the demands of CNS1240. High-flowable concrete specimens with recycled aggregates were cast. The test results show that the slump and fluidity of recycled concrete are conformed to the demands of TAICON. The mechanical properties between recycled concretes and ordinary concretes have not significant differences. So it is feasible to produce high-flowable concretes with wasted concretes as recycled coarse aggregates. In addition, it has positive benefits for environmental protection owing to instead of natural aggregates quarried and reducing wasted concretes. At the same time, the application of high-flowable concretes with recycled coarse aggregates is able to ensure construction quality and satisfy the strength demand of structure design. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT890015039 http://hdl.handle.net/11536/66430 |
显示于类别: | Thesis |