Natarajan Sakthieswaran, Pillai Nagendran Neelakanda, Murugan Sophia
Department of Civil Engineering, Anna University Regional Campus, Tirunelveli, Tirunelveli 627007, Tamilnadu, India.
Department of Civil Engineering,Rajas International Institute of Technology for Women, Nagercoil 629001,Kanyakumari, Tamilnadu, India.
Materials (Basel). 2019 Feb 20;12(4):645. doi: 10.3390/ma12040645.
This paper deals with the experimental studies conducted on the effects of using sea sand on the properties of polymer concrete modified using epoxy resin. The physical properties including workability, mechanical properties, and durability properties were evaluated as a function of sea-sand substitution. The results obtained behave as strong evidence for the feasibility of using sea sand as fine aggregate to solve the problem associated with the exhaustion of natural aggregates when used in combination with epoxy polymer. A clear understanding of the behavior of polymer concrete with sea sand as aggregate was obtained through some preliminary investigations. The test results showed a significant improvement in the compressive and flexural strength due to the sea-sand substitution in polymer concrete. Resistance to the water intrusion was also improved for the concrete mixes due to the inclusion of epoxy resin. The quality and the integrity of the concrete were also improved,as evident from the SEM analysis and infrared (IR) spectroscopy, and the results function as solid basis for the use of sea-sand polymer-modified concrete for practical applications. Results also show that 15% replacement of fine aggregate by sea sand in air-cured polymer concrete exhibited enhanced strength and durability properties; thus, the produced concrete can be an effective material for unreinforced concrete applications.
本文论述了关于使用海砂对环氧树脂改性聚合物混凝土性能影响的实验研究。对包括工作性、力学性能和耐久性在内的物理性能作为海砂替代量的函数进行了评估。所获得的结果有力地证明了将海砂用作细集料与环氧聚合物结合使用以解决天然集料枯竭相关问题的可行性。通过一些初步研究,对以海砂为集料的聚合物混凝土的性能有了清晰的认识。试验结果表明,聚合物混凝土中用海砂替代显著提高了抗压强度和抗弯强度。由于加入了环氧树脂,混凝土混合料的抗水侵入性也得到了改善。扫描电子显微镜(SEM)分析和红外(IR)光谱表明,混凝土的质量和完整性也得到了改善,这些结果为海砂聚合物改性混凝土在实际应用中的使用提供了坚实的基础。结果还表明,在空气养护的聚合物混凝土中用海砂替代15%的细集料,其强度和耐久性性能得到了增强;因此,所生产的混凝土可成为无筋混凝土应用的有效材料。