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Comparison of The Compressive Strength and The Microstructure of Metakaolin Metastar and Metakaolin Bangka as Additive in Ordinary Portland Cement

机译:普通硅酸盐水泥中偏高岭土Metastar和偏高岭土Bangka作为添加剂的抗压强度和微观结构的比较

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Various This paper presents the results of the investigation on the use of Metakaolin (Al_(2)Si_(2)O_(2)) as a supplementary cementing materials to improve the strength of cement. The most effective way to increase the strength of cement is the substitution of a proportion of cement with supplementary cementing materials. One of them was Metakaolin. Metakaolin was produced by thermal treatment calcination from Kaolin at 600-800 Celcius and has highest alumina and silicate purity. By added Metakaolin to Portland Cement type I (OPC), the amount of Calcium Silicate Hydrate (CSH) will increase through binding with Calcium Hydroxide (CaOH). There were two kinds of Metakaolin used in this investigation, commercial metakaolin named Metakaolin Metastar compared with Metakaolin Bangka which derived from Indonesia local resources, Bangka Island. Four Metakaolin replacement levels were employed in this investigation: 5%, 0%, 15%, and 20% with water per cement ratio 0.35, 0.40, and 0.50 both of Metakaolin Metastar and Metakaolin Bangka. The cement pastes cured at room temperature for 7, 14, and 28 days. The mechanical strength examined by compressive strength test, the microstructure were examined by SEM-EDS. The results of the study revealed both Metakaolin Metastar and Metakaolin Bangka enhanced the compressive strength of OPC. The most appropriate strength was obtained for a substitution of 20% metakaolin metastar which had 46,15% higher than OPC and 5% metakaolin Bangka which had 39,06% higher than OPC. The hydration rate was examined by Thermal Analysis Monitor. The results indicated that metakaolin metastar released higher heat than metakaolin Bangka. It can be concluded that Metakaolin metastar was more effective than metakaolin Bangka as additive in OPC.
机译:各种本文介绍了使用偏高岭土(Al_(2)Si_(2)O_(2))作为补充胶凝材料以提高水泥强度的研究结果。增加水泥强度的最有效方法是用辅助胶结材料代替一定比例的水泥。其中之一是偏高岭土。偏高岭土是由高岭土在600-800摄氏度下通过热处理煅烧生产的,具有最高的氧化铝和硅酸盐纯度。通过将偏高岭土添加到I型波特兰水泥(OPC)中,硅酸钙水合物(CSH)的量将通过与氢氧化钙(CaOH)的结合而增加。本次调查使用了两种偏高岭土,一种名为Metakaolin Metastar的商品偏高岭土,另一种是来自印度尼西亚本地资源Bangka岛的Metakaolin Bangka。本研究采用四种偏高岭土替代水平:5%,0%,15%和20%,其中偏高岭土Metastar和偏高岭土Bangka的水/水泥比例分别为0.35、0.40和0.50。水泥浆在室温下固化7、14和28天。通过抗压强度试验检查机械强度,通过SEM-EDS检查显微组织。研究结果表明,偏高岭土的Metastar和偏高岭土的Bangka均可增强OPC的抗压强度。获得了最合适的强度来替代20%的偏高岭土metastar,其比OPC高46.15%,5%的偏高岭土Bangka,其比OPC高39.06%。通过热分析监控器检查水合速率。结果表明,偏高岭土元星释放的热量高于偏高岭土Bangka。可以得出结论,在OPC中,偏高岭土的metastar比偏高岭土的Bangka更有效。

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