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Assessing the Performance of Concrete Containing Recycled Glass on Tensile Splitting Strength and Resistance to Alkali Silica Reaction

机译:评估含再生玻璃的混凝土的抗拉劈裂强度和耐碱二氧化硅反应的性能

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Using recycled glass in concrete applications decreases the amount of glass in landfills and substitutes for expensive aggregates in the concrete mix. However, there has been a concern on recycled glass with smooth surfaces that would result in a drop in strength and in particular a reduction of an already low ductility. Thus, in many design aspects, the use of recycled glass in concrete is limited up to 30% by weight due to concern on concrete strength reduction. The current manufacturing technology in the recycling glass has been grown and evolved through which recycled glass has been processed to exhibit the following features: basically zero water absorption, excellent hardness (great abrasion resistance), high durability to resist extreme weather conditions, etc. The paper challenges the currently used recycled glass mixtures and presents new mix design principles for concrete mixed with 10%, 20%, 30%, 50%, and 100% recycled glass as replacements of nature sand and Portland cement to assess (1) strength changes and (2) resistance to alkali silica reaction (ASR). Aggregate, water reducer, hydration stabilizer, mid-range water reducer, fiber, and viscosity modifier were prepared with varying dosages of recycled glass. A series of scanning electron microscope (SEM) imaging were performed to evaluate the resistance of recycled glass specimens to ASR. The paper concludes that the use of recycled glass as an alternative aggregate and cement binder in the concrete mixtures show promising performance in both tensile splitting strength and ASR.
机译:在混凝土应用中使用再生玻璃可减少垃圾填埋场中的玻璃量,并替代混凝土混合物中昂贵的骨料。然而,人们对具有光滑表面的回收玻璃存在担忧,这将导致强度降低,特别是降低已经很低的延展性。因此,在许多设计方面,由于担心混凝土强度降低,所以将再生玻璃在混凝土中的使用限制为最多30重量%。再生玻璃的当前制造技术已经发展壮大,经过加工,再生玻璃表现出以下特征:吸水率基本为零,硬度(耐磨性极佳),在极端天气条件下具有很高的耐久性等。论文挑战了目前使用的再生玻璃混合物,并提出了掺有10%,20%,30%,50%和100%再生玻璃作为自然砂和硅酸盐水泥替代品的混凝土的新混合设计原则,以评估(1)强度变化(2)耐碱性二氧化硅反应(ASR)。用不同剂量的再生玻璃制备骨料,减水剂,水合稳定剂,中档减水剂,纤维和粘度调节剂。进行了一系列扫描电子显微镜(SEM)成像,以评估回收的玻璃样品对ASR的抵抗力。本文得出的结论是,在混凝土混合物中使用再生玻璃作为替代骨料和水泥粘合剂在抗拉劈裂强度和ASR方面均显示出令人鼓舞的性能。

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