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Effect of Surface Treatment of Polypropylene (PP) Fiber on the Sulfate Corrosion Resistance of Cement Mortar

机译:聚丙烯(PP)纤维表面处理对水泥砂浆硫酸盐耐腐蚀性的影响

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摘要

Sulfate erosion is one of the most complex and harmful chemical corrosion actions. Following sulfate erosion, concrete expands, cracks, dissolves, peels off, and decreases in strength, which affects the durability of structures. Polypropylene fiber (PP) is widely used in various concrete structures because of its good mechanical properties and chemical corrosion resistance. However, PP fiber has a number of shortcomings, such as a smooth surface, poor hydrophilicity, lack of active groups in the molecular chain, and agglomeration and poor dispersion in cement-based materials. These issues limit its application in cement-based materials. Although the use of a silane coupling agent to modify the surface of PP fiber is effective, the influence of treated PP fiber on the sulfate resistance of cement-based materials is not significant. In this study, a PP fiber treated with a silane coupling agent was used to examine effects of different cement-to-sand ratios (C/S) and dosages of the treated PP fiber on the sulfate erosion resistance of cement mortar. Furthermore, the apparent morphology, mass loss rate, flexural strength, corrosion resistance coefficient, and microstructure of the concrete were investigated by X-ray diffraction (XRD) and scanning electron microscopy (SEM). The results revealed that the PP fiber became rough after modification. Active groups were introduced on the fiber surface, which were well dispersed in the mortar and formed a good network distribution structure in the cement mortar, thereby slowing the erosion rate of the PP fiber mortar in a sodium sulfate solution. At a C/S ratio of 1:1 and a treated fiber dosage of 0.6%, the treated fiber mortar has exhibited good sulfate resistance. In addition, the monofilament fiber immersion test revealed that a layer of sodium sulfate crystals was deposited on the fiber surface, thereby increasing the roughness of the fiber surface and the pull-out force of the fiber from the cement matrix, this result indicated that the interfacial adhesion between the treated PP fiber and cement matrix was improved, which in turn led to the improvement in the sulfate erosion resistance of the treated PP fiber.
机译:硫酸盐侵蚀是最复杂和有害的化学腐蚀作用之一。硫酸盐糜烂后,混凝土膨胀,裂缝,溶解,剥离,并降低强度,影响结构的耐久性。聚丙烯纤维(PP)广泛用于各种混凝土结构,因为其良好的机械性能和化学耐腐蚀性。然而,PP纤维具有许多缺点,例如光滑的表面,亲水性差,分子链中缺乏活性基团,并在水泥基材料中的聚集和分散不良。这些问题限制了其在基于水泥的材料中的应用。尽管使用硅烷偶联剂来改变PP纤维的表面是有效的,但是处理的PP纤维对水泥基材料硫酸盐抗性的影响不显着。在该研究中,使用硅烷偶联剂处理的PP纤维来检查不同水泥 - 砂比(C / S)和剂量处理的PP纤维对水泥砂浆的硫酸盐腐蚀性的影响。此外,通过X射线衍射(XRD)和扫描电子显微镜(SEM)研究了明显的形态,质量损失率,抗腐蚀强度,耐腐蚀系数和混凝土的微观结构。结果表明,PP纤维在修饰后变得粗糙。在纤维表面上引入活性基团,该纤维表面良好地分散在砂浆中,并在水泥砂浆中形成良好的网络分布结构,从而减缓PP纤维砂浆在硫酸钠溶液中的侵蚀速率。在C / S比为1:1和处理的纤维剂量为0.6%,处理过的纤维砂浆表现出良好的硫酸盐抗性。此外,单丝纤维浸渍试验显示,在纤维表面上沉积一层硫酸钠晶体,从而从水泥基质中增加纤维表面的粗糙度和纤维的拉出力,这表明了改善了处理的PP纤维和水泥基质之间的界面粘附,这又导致了处理的PP纤维的硫酸盐腐蚀性的改善。

著录项

  • 期刊名称 Materials
  • 作者

    Yanyan Hu; Linlin Ma;

  • 作者单位
  • 年(卷),期 2021(14),13
  • 年度 2021
  • 页码 3690
  • 总页数 14
  • 原文格式 PDF
  • 正文语种
  • 中图分类 外科学;
  • 关键词

    机译:聚丙烯纤维;表面改性;水泥砂浆;耐硫酸盐攻击;

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