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Durability of reinforced concrete incorporating recycled concrete as aggregate (RCA).

机译:掺入再生混凝土骨料(RCA)的钢筋混凝土的耐久性。

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摘要

The interest in using recycled construction materials is derived from the growth in construction and demolition waste due to rehabilitation and natural and technological disasters. The driving force for recycling concrete is three-fold: preserving natural resources, utilizing the growing waste and saving energy and money. While some waste concrete is currently being crushed and used for grading and base material for highways, it has not been used as the aggregate in new concrete in Canada, largely because of the plentiful supply of good quality virgin material. However, crushed concrete is being used in new concrete in other parts of the world where the local aggregate is inferior, and there is now a push within the Canadian cement and concrete sector to improve the industry sustainability, one aspect of which is recycling of materials.; The research done to date has emphasized the influence of recycled concrete aggregate (RCA) on the workability and strength of the new concrete with little attention being paid to the behaviour in service. In contrast, the present study is focused on the durability of concrete containing RCA in reinforced structures. Since the most common cause of failure of reinforced concrete structures in this part of the world is corrosion of the reinforcement by de-icing salts, the focus of the project is on this aspect of durability. The project involves a comparative study of the durability of three concrete mixtures containing, as coarse aggregate: (1) new clean recycled concrete aggregate (NC-RCA) obtained by crushing the excess concrete returned to the ready mix yard; (2) old de-icing salt contaminated, recycled concrete aggregate (OC-RCA) from a demolished bridge over Highway 401 in Ontario; (3) natural aggregate as a control material.; These three materials were crushed and sieved to give the same grading for each mix. Natural sand was used as fine aggregate. The mixes were adjusted to account for the different water absorption characteristics of the aggregates but were otherwise identical. Prism specimens with a centrally placed reinforcing bar, cylindrical specimens and non-reinforced slabs were cast from each of the concretes. After curing, the reinforced prisms were exposed to a saturated de-icing salt solution for two of every four weeks. For the second two week period, they were allowed to dry in the laboratory atmosphere or, to accelerate the process, dried at 32°C in a low humidity (18%) chamber.; The electrochemical corrosion behaviour of the steel was monitored using linear polarization resistance and cyclic polarization techniques. In addition, the physical properties of the materials were assessed. For the aggregates, water absorption, chloride content and susceptibility to abrasion were determined. For the concretes, compressive strength, salt scaling resistance and chloride permeability were measured and microscopic observation of the interfacial zones between the aggregate and the new cement paste were conducted.; On the basis of the results, it is concluded that the durability and the strength of the RCA concrete is very dependent on the age of the RCA aggregate. Water and chloride permeability, and, salt scaling and reinforcing steel corrosion resistance of concrete made with a very well hardened old RCA were comparable with or better than those of in normal concrete. Concrete incorporating new RCA exhibited inferior properties and consequently, it is recommended that, the OC-RCA concrete can be used as a sustainable material in structural applications.
机译:使用回收建筑材料的兴趣来自由于修复以及自然和技术灾难而导致的建筑和拆除废物的增长。回收混凝土的动力来自三个方面:保护自然资源,利用不断增长的废物以及节省能源和金钱。尽管目前正在粉碎一些废混凝土,并将其用于公路的平整和基础材料,但由于大量供应的优质原始材料,加拿大尚未将其用作新混凝土中的骨料。但是,在世界其他地方骨料较差的地区,碎混凝土被用于新混凝土中,加拿大水泥和混凝土行业现在正在推动改善行业可持续性,其中一个方面是材料的回收。;迄今为止,已进行的研究强调了再生混凝土骨料(RCA)对新混凝土的可加工性和强度的影响,而很少关注使用中的行为。相反,本研究集中于钢筋混凝土中包含RCA的混凝土的耐久性。由于在这个地区,钢筋混凝土结构失效的最常见原因是通过除冰盐对钢筋的腐蚀,因此该项目的重点是耐久性。该项目涉及对三种包含粗骨料的混凝土混合物的耐久性进行比较研究:(1)通过将多余的混凝土压碎返回预拌场获得的新型清洁再生混凝土骨料(NC-RCA); (2)来自安大略省401高速公路上已拆除桥梁的旧的除冰盐污染的再生混凝土骨料(OC-RCA); (3)天然骨料作为控制材料。将这三种材料压碎并过筛,以使每种混合物的分级相同。天然砂用作细骨料。调节混合物以解决聚集体的不同吸水特性,但其他方面相同。用每种混凝土浇铸带有中心放置的钢筋的棱镜试样,圆柱形试样和非钢筋平板。固化后,将增强的棱镜每4周暴露于饱和的除冰盐溶液中2次。在后两周的时间里,让它们在实验室气氛中干燥,或者为了加速过程,在低湿度(18%)的小室中于32°C干燥。使用线性极化电阻和循环极化技术监测钢的电化学腐蚀行为。另外,评估了材料的物理性质。对于骨料,测定了吸水率,氯化物含量和耐磨性。测量混凝土的抗压强度,耐盐垢性和氯化物渗透性,并对骨料与新水泥浆之间的界面区域进行微观观察。根据结果​​可以得出结论,RCA混凝土的耐久性和强度在很大程度上取决于RCA骨料的使用年限。用非常硬化的旧RCA制成的混凝土的水和氯化物渗透性,以及耐盐垢和钢筋腐蚀的性能与普通混凝土相当或更好。掺入新RCA的混凝土表现出较差的性能,因此,建议将OC-RCA混凝土用作结构应用中的可持续材料。

著录项

  • 作者

    Movassaghi, Ramtin.;

  • 作者单位

    University of Waterloo (Canada).;

  • 授予单位 University of Waterloo (Canada).;
  • 学科 Engineering Civil.; Engineering Mechanical.
  • 学位 M.A.Sc.
  • 年度 2006
  • 页码 160 p.
  • 总页数 160
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;机械、仪表工业;
  • 关键词

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