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Effects of recycled PET fibres on the mechanical properties and seawater curing of Portland cement-based concretes

机译:再生PET纤维对硅酸盐水泥基混凝土力学性能和海水养护的影响

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This paper deals with an experimental study on the mechanical properties of recycled polyethylene tere-phthalate fibre-reinforced concrete (RPETFRC) and its durability in an aggressive seawater environment. A Portland limestone cement-based concrete with a 0.38 water/cement ratio is used to cast cubic and prismatic specimens, in association with two different PET fibres obtained through extrusion of recycled PET flakes (R-PET). Some of these specimens were conditioned in the Salerno harbour seawater for a period of 6/12 months. Compressive strength and four-point bending tests are performed in order to investigate the mechanical properties of such RPETFRCs. Comparison of the present results and those in the literature for air-cured RPETRCs highlights the influence of the analysed R-PET fibres on the mechanical properties of concretes showing different water/cement ratios and binders. The given results for seawa-ter-cured specimens demonstrate that such a curing condition slightly modifies the first-crack strength and markedly reduces the toughness of the RPETFRCs examined in the present work.
机译:本文对再生的聚对苯二甲酸乙二醇酯纤维增强混凝土(RPETFRC)的机械性能及其在腐蚀性海水环境中的耐久性进行了实验研究。水/水泥比为0.38的波特兰石灰石水泥基混凝土与两种通过挤出再生PET片材(R-PET)挤出获得的不同PET纤维一起用于铸造立方和棱柱形试样。其中一些标本在萨勒诺港口海水中处理了6/12个月。为了研究这种RPETFRCs的机械性能,进行了抗压强度和四点弯曲测试。本结果与文献中对空气固化RPETRC的结果的比较突出了分析的R-PET纤维对混凝土的机械性能的影响,显示出不同的水灰比和粘合剂。海水固化样品的给定结果表明,这种固化条件会稍微改变初裂强度,并显着降低本工作中研究的RPETFRCs的韧性。

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