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Durability of polymer-modified lightweight flowable concrete made using expanded polystyrene

机译:使用膨胀聚苯乙烯制造的聚合物改性轻质可流动混凝土的耐久性

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Lightweight self-consolidating concrete (LWSCC) intended for structural and repair applications combines the advantages of improved workability and reduced dead loads resulting from the structure self-weight. This investigation evaluates the coupled effects of expanded polystyrene (EPS) and styrene-butadiene rubber (SBR) latexes on durability-related properties of LWSCC weighing between 1870 to 2360 kg/m(3). The water-to-binder ratio (w/b) was regulated to ensure similar compressive strengths. Test results showed that the transport properties including sorptivity, corrosion, and chloride ion penetration were pretty similar to the control normal-weight concrete, despite the decrease in density. This was attributed to a combination of phenomena such as lower w/b that refines the concrete microstructure, EPS particles that function as internal barriers, and presence of SBR polymers that create dispersed network of impermeable films. The incorporation of SBR was beneficial to improve bonding strengths of composite slabs, especially when exposed to repeated freeze/thaw cycles. Compared to normal-weight concrete, the resistance to chemical attack improved when LWSCC is prepared with reduced w/b and/or SBR additions. Different regression models are proposed to predict the concrete durability as a function of w/b, EPS, and SBR rates. (C) 2020 Elsevier Ltd. All rights reserved.
机译:用于结构和修复应用的轻质自巩固混凝土(LWSCC)结合了改进的可加工性和由结构自重引起的死载的优点。该研究评估了膨胀的聚苯乙烯(EPS)和苯乙烯 - 丁二烯橡胶(SBR)胶乳对1870至2360kg / m(3)的耐久性相关性质对耐久性相关性能的偶联效果。调节水 - 粘合剂比(W / B)以确保相似的抗压强度。尽管密度降低,但试验结果表明,包括吸附症,腐蚀和氯离子渗透的运输性能与对照正常重量混凝土相当相似。这归因于现象的组合,例如降低W / B,其改进混凝土微观结构,其用作内部屏障的颗粒,以及产生渗透薄膜的分散网络的SBR聚合物的存在。 SBR的掺入有益于改善复合板坯的粘合强度,特别是当暴露于重复的冷冻/解冻循环时。与正常重量混凝土相比,当LWSCC制备用W / B和B和/或SBR加入的制备时改善了化学侵蚀的抗性。提出了不同的回归模型来预测作为W / B,EPS和SBR率的函数的具体耐久性。 (c)2020 elestvier有限公司保留所有权利。

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