Rameshkumar Manickam, Malathy Ramalingam, Chandiran Priyalatha, Paramasivam Sundararajan, Chung Ill-Min, Kim Seung-Hyun, Prabakaran Mayakrishnan
Department of Fashion Technology, Sona College of Technology, Salem 636 005, Tamil Nadu, India.
Department of Civil Engineering, Sona College of Technology, Salem 636 005, Tamil Nadu, India.
Polymers (Basel). 2022 Sep 29;14(19):4093. doi: 10.3390/polym14194093.
Ferrocement is a cost-effective construction material used in the low-cost constructions. It is produced with the combination of cement mortar with closely spaced wire mesh known as chicken wire mesh. Ferrocement process eliminates coarse aggregates when compared to reinforced concrete thus makes the process simple. This paper deals with the influence of various characteristics of warp knitted fabric on the flexural properties of ferrocement composites. Ferrocement composites have a wide range of applications in the construction industry and it has some limitations due to the durability issues. Among the various durability issues, corrosion is one of the main issues to be addressed to enhance the long-term service life of the ferrocement composites. The idea of using non-metallic mesh to eliminate the corrosion problem is discussed in this paper. In this experiment, warp knitted fabric reinforced ferrocement composites were produced using polypropylene warp knitted fabrics. This paper deals with the flexural properties of ferrocement composites made of warp knitted fabric coated with expoxy. This paper deals with the flexural properties of ferrocement composites made of warp knitted fabric coated with expoxy. These composites were analyzed for their flexural strength, energy absorption and ductile property. The variables in the experiment are filament thickness, warp knitted structure and number of layers in the composites. Experimental results proved that the replacement of chicken mesh wire by warp knitted fabrics has an impact in the flexural properties of the composites and the effect of variables in the experiment set up has been analyzed. There is an imporvement of 200% is observed in the first crack load and 120% improvement in the ultimate load of the warp knit fabric reinforced composite compared to control sample. Experimental results proved that there is an increase in flexural strength of ferrocement composites made up with warp knitted fabrics. Microstructure studies like SEM and EDX on ferrocement laminates confirmed good bonding between the mortar mix and warp knitted fabrics.
钢丝网水泥是一种用于低成本建筑的经济高效的建筑材料。它是由水泥砂浆与间距紧密的金属丝网(称为鸡笼网)组合而成。与钢筋混凝土相比,钢丝网水泥工艺省去了粗骨料,从而使工艺更简单。本文探讨了经编针织物的各种特性对钢丝网水泥复合材料弯曲性能的影响。钢丝网水泥复合材料在建筑行业有广泛应用,但由于耐久性问题存在一些局限性。在各种耐久性问题中,腐蚀是提高钢丝网水泥复合材料长期使用寿命需要解决的主要问题之一。本文讨论了使用非金属网消除腐蚀问题的想法。在本实验中,使用聚丙烯经编针织物制备了经编针织物增强钢丝网水泥复合材料。本文研究了涂有环氧树脂的经编针织物制成的钢丝网水泥复合材料的弯曲性能。对这些复合材料的弯曲强度、能量吸收和延性进行了分析。实验中的变量有长丝厚度、经编结构和复合材料中的层数。实验结果证明,用经编针织物替代鸡笼网对复合材料的弯曲性能有影响,并分析了实验设置中变量的影响。与对照样品相比,经编针织物增强复合材料的初裂荷载提高了200%,极限荷载提高了120%。实验结果证明,由经编针织物制成的钢丝网水泥复合材料的弯曲强度有所提高。对钢丝网水泥层压板进行的扫描电子显微镜(SEM)和能谱分析(EDX)等微观结构研究证实了砂浆混合物与经编针织物之间的良好粘结。