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Effect of fly ash on the behaviour of polymer concrete with different types of resin

机译:粉煤灰对不同类型树脂对聚合物混凝土性能的影响

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摘要

Polymer concrete outperforms its counterpart Ordinary Portland Cement (OPC) concrete in terms of its highly desirable mechanical properties. It is emerging as a new construction material due to its high compressive, tensile and flexural strengths, short curing time, impact resistance, chemical resistance and freeze-thaw durability. It has many applications in the building construction industry. A research program has been initiated to improve fundamental understanding of this material and to provide the knowledge required for its broad utilization. Three types of resins (polyester, vinylester and epoxy resin) combined with fly ash and sand were used to make the organic polymer concrete mortar. A novel approach based on volumetric properties of sand was used in designing the mixes. This paper presents and discusses the results from an investigation of uniaxial compressive stress-strain relationship of polymer based concrete. The effect of resin (binder), sand and fly ash contents on the compressive strength, flexural strength, split tensile strength, modulus of elasticity and ductility of polyester, vinylester and epoxy resin based polymer filler is reported. It has been found that polymer concrete mortar can achieve compressive strengths in a range of 90-100 MPa. Tensile strengths were as high as 15 MPa for vinylester based polymer concrete. The results show that the polymer based filler materials are suitable for both compression and tensile loading situations.
机译:聚合物混凝土在非常理想的机械性能方面胜过其同类普通硅酸盐水泥(OPC)。由于其高的压缩,拉伸和挠曲强度,较短的固化时间,耐冲击性,耐化学性和耐冻融性,它正在成为一种新型建筑材料。它在建筑施工行业中有许多应用。已经启动了一项研究计划,以增进对该材料的基本了解并提供广泛使用所需的知识。将三种类型的树脂(聚酯,乙烯基酯和环氧树脂)与粉煤灰和沙子结合在一起,制成有机聚合物混凝土砂浆。一种基于沙子体积特性的新颖方法被用于设计混合物。本文介绍并讨论了基于聚合物的混凝土的单轴压缩应力-应变关系研究的结果。据报道,树脂(粘结剂),砂和粉煤灰含量对聚酯,乙烯基酯和环氧树脂基聚合物填料的抗压强度,抗弯强度,劈裂抗拉强度,弹性模量和延展性的影响。已经发现,聚合物混凝土砂浆可以达到90-100MPa的抗压强度。乙烯基酯基聚合物混凝土的拉伸强度高达15 MPa。结果表明,基于聚合物的填料适用于压缩和拉伸载荷情况。

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  • 来源
    《Materials & design》 |2013年第10期|175-181|共7页
  • 作者

    Weena Lokuge; Thiru Aravinthan;

  • 作者单位

    Centre of Excellence in Engineered Fibre Composites (CEEFC), Faculty of Engineering and Surveying, University of Southern Queensland (USQ), Toowoomba, Queensland 4350, Australia;

    Centre of Excellence in Engineered Fibre Composites (CEEFC), Faculty of Engineering and Surveying, University of Southern Queensland (USQ), Toowoomba, Queensland 4350, Australia;

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  • 正文语种 eng
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