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Effects of different wood aggregates on the compressive strength of fly ash and metakaolin-based geopolymer lightweight composites

机译:不同木材骨料对粉煤灰和偏高岭土基地聚合物轻质复合材料抗压强度的影响

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F fly ash with 30% substitution of metakaolin was used as an alumino-silicate source to produce lightweightgeopolymer composites. The investigations focused on different types of wood aggregates that influence the compressivestrength of lightweight geopolymer composites. Wood particles (WP), wood flour (C100), and wood fiber (WF) were added tofly ash and metakaolin-based geopolymers at 10% solid content as reinforcement materials. NaOH in combination with Na2SiO3was used as the alkaline activator with a liquid-to-solid ratio of 1.33:2.00. The samples were cured at 20 °C for 7, 14, and 28days, and at 80 °C for 6 and 24 h (two different curing temperatures and five different curing times) . It was observed that thetypes of wood aggregates affected the properties and compressive strength of lightweight geopolymer composites. The highestcompressive strength of about 38.4 MPa was achieved for the sample containing wood flour that was cured for 28 days.
机译:用偏高岭土取代度为30%的粉煤灰用作铝硅酸盐源,以生产轻质的地质聚合物复合材料。研究集中在影响轻型地质聚合物复合材料抗压强度的不同类型的木骨料上。将木颗粒(WP),木粉(C100)和木纤维(WF)添加到粉煤灰和偏高岭土基地质聚合物中,固含量为10%,作为增强材料。将NaOH与Na 2 SiO 3组合用作碱活化剂,其液固比为1.33:2.00。样品在20°C下固化7、14和28天,在80°C下固化6和24小时(两种不同的固化温度和五种不同的固化时间)。观察到木材聚集体的类型影响轻质地质聚合物复合材料的性能和抗压强度。对于包含木粉的样品,其固化了28天后,获得了约38.4 MPa的最高抗压强度。

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