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Effect of Geopolymer filler in Glass Reinforced Epoxy (GRE) Pipe for Piping Application: Mechanical Properties

机译:岩土聚合物填料在玻璃增强环氧树脂(GRE)管中的影响:机械性能

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The present work is aimed to carry out the effect of geopolymer material which is fly ash as filler in the glass reinforced epoxy pipe on the microstructure of fly ash geopolymer, compression properties, and bulk density using the filament winding method. Conventional glass reinforced epoxy pipes has its own disadvantages such as high corrosion resistance at acidic environment and low strength which can be replaced by the composite pipes. Geopolymer is a type of amorphous alumino-silicate and can be synthesized by geopolymerization process. A series of glass reinforced epoxy pipe and glass reinforced epoxy pipe filled with 10-40 weight percentage geopolymer filler which is fly ash with 4 Molarity were prepared. Morphology of the raw material fly ash and fly ash based-geopolymer surface was characterized using scanning electron microscopy. It was found that the additions of fly ash at the beginning with 10 wt% are showing higher compressive strength than glass reinforced epoxy pipe without fly ash geopolymer filler. The compressive test of these series of samples was determined using Instron Universal Testing under compression mode. It was found that compressive strength for samples fly ash based-geopolymer filler are higher as compared to glass reinforced epoxy pipe without geopolymer filler. However, the compressive strength of glass reinforced epoxy pipe with fly ash geopolymer filler continues to decline when added to 20 wt% - 40 wt% of geopolymer filler loading. The results showed that the mixing of geopolymer materials in epoxy system can be obtained in this study.
机译:本工作的目的是,进行其是粉煤灰作为在玻璃填料增强的对粉煤灰地质聚合物,压缩特性,以及使用该纤维缠绕法堆积密度的微观结构的环氧管子地质聚合物材料的效果。常规的玻璃纤维增​​强环氧树脂管有其自身的缺点,例如在酸性环境和低强度高的耐腐蚀性能由复合管进行更换。地质聚合物是一型非晶质铝硅酸盐,并且可以通过地质聚合方法合成。一系列的玻璃纤维增​​强环氧树脂管和玻璃纤维增​​强填充有10-40重量百分比的矿物聚合物填料的环氧树脂管是飞灰与4摩尔浓度的溶液。使用扫描电子显微镜的原料粉煤灰的形态和飞灰基于地质聚合物表面进行了表征。结果发现,在用10%(重量)开始飞灰的添加是显示出比玻璃纤维增​​强环氧树脂管而不飞灰矿物聚合物填料更高的压缩强度。下压缩模式使用英斯特朗万能试验这些系列样品的压缩试验进行了测定。结果发现,样品的抗压强度粉煤灰基于地质聚合物填料是与玻璃相比增强环氧树脂管而不地质聚合物填料作为更高。然而,玻璃的压缩强度增强与飞灰的矿物聚合物填料的环氧树脂管继续当加入到20重量%的下降 - 地质聚合物填料负载的40重量%。结果表明,地质聚合物材料的环氧树脂系统中的混合可以在该研究中获得。

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