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Workability, strength, and durability of concrete containing recycled plastic fibers and styrene-butadiene rubber latex

机译:包含再生塑料纤维和丁苯橡胶胶乳的混凝土的可加工性,强度和耐久性

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The conventional concrete in the fresh and hardened state was evaluated for obtaining the effect of the combined addition of recycled plastic fiber (RPF) and styrene butadiene rubber (SBR) latex. Though the conventional concrete containing recycled plastics and polymer modifiers such as SBR latex has been explored up to an extent; the effects of blending of RPF and SBR latex on concrete is rarely explored. The objective was to evaluate the properties of concrete due to the addition of RPF and SBR latex blending and obtaining the optimum dosages of RPW and SBR latex. The tests for workability, compressive strength, splitting tensile strength, impact strength, flexure strength, chloride ingress, acid and sulfate resistance and water sorptivity were carried out. The concrete was modified with the SBR latex dosage range of 0%-20% by weight of cement. The RPF was added in the range of 0%-2% by volume of the mix at the average length of the 20 mm and 0.4 mm diameter. The results exhibited improvement in fresh and hardened properties of modified concrete due to the combined addition of RPF and SBR latex namely improved cracking resistance, flexure resistance and reduced rate of chemical and water ingress into the specimens. The combination of 1% RPF by unit volume of concrete and 15% SBR latex by weight of cement showed improvement of all the properties of the concrete mixes. The study also demonstrated an effective way of preparing sustainable concrete from the hazardous plastic waste with enhanced properties. (C) 2018 Elsevier Ltd. All rights reserved.
机译:对新鲜和硬化状态下的常规混凝土进行了评估,以获得混合添加再生塑料纤维(RPF)和丁苯橡胶(SBR)胶乳的效果。尽管已对含再生塑料和聚合物改性剂(例如SBR胶乳)的常规混凝土进行了一定程度的研究; RPF和SBR胶乳混合对混凝土的影响很少被研究。目的是评估由于加入了RPF和SBR乳胶而导致的混凝土性能,并获得RPW和SBR乳胶的最佳用量。进行了可加工性,抗压强度,劈裂抗拉强度,冲击强度,挠曲强度,耐氯化物侵入,耐酸和硫酸盐性以及对水的吸附性的测试。 SBR胶乳的用量范围为水泥重量的0%-20%。以20mm和0.4mm直径的平均长度,RPF以混合物的体积的0%-2%的范围添加。结果表明,由于加入了RPF和SBR乳胶,改性混凝土的新鲜和硬化性能得到了改善,即提高了抗裂性,抗挠性,并降低了化学和水进入试样的速度。以混凝土单位体积计1%的RPF和以水泥重量计15%的SBR胶乳的组合显示出混凝土混合物所有性能的改善。该研究还证明了从具有增强性能的有害塑料废料中制备可持续混凝土的有效方法。 (C)2018 Elsevier Ltd.保留所有权利。

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