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The feasibility of properly raising temperature for preparing high-volume fly ash or slag steam-cured concrete: An evaluation on DEF, 4-year strength and durability

机译:适当提高温度以制备大粉煤灰或矿渣蒸汽固化混凝土的可行性:DEF,4年强度和耐久性的评估

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Properly raising steam-curing temperature may aggravate the delayed ettringite formation (DEF) and be adverse to the long-term performance of concrete while adding fly ash or slag may alleviate the DEF and be beneficial to the long-term performance of concrete. However, their comprehensive effect is still unclear. In this paper, the feasibility of properly raising temperature from 60 degrees C to 80 degrees C for preparing high-volume fly ash or slag steam-cured concrete (HFC-80 or HSC-80) is investigated by evaluating the comprehensive effect of properly raising steam-curing temperature and adding fly ash or slag on the DEF, 4-year strength and durability. Plain cement concrete with 60 degrees C and 90 degrees C (PC-60 and PC-90) steam curing is used as the reference. The results show that DEF in HFC-80 is significantly delayed compared with that in PC-90 while DEF does not occur in HSC-80. The expansion of HFC-80 at 4 years is significantly larger than that of PC-60 while the expansion of HSC-80 is as small as that of PC-60. The compressive strength of HFC-80 or HSC-80 at 4 years is 12%-18% smaller than that of PC-60 while the resistance to chloride ion permeability of HFC-80 or HSC-80 at 4 years is better than that of PC-60. Therefore, it can be preliminarily judged that properly raising steam-curing temperature may be unfeasible for HFC but feasible for HSC in terms of in terms of the above results. (C) 2020 Elsevier Ltd. All rights reserved.
机译:适当提高蒸汽养护温度可能会加剧延迟的钙矾石形成(DEF),并且不利于混凝土的长期性能,而添加粉煤灰或矿渣则可以缓解DEF,并有利于混凝土的长期性能。但是,它们的综合效果仍不清楚。在本文中,通过评估适当升高的综合效果,研究了将温度从60摄氏度适当提高到80摄氏度以制备大量粉煤灰或矿渣蒸汽固化混凝土(HFC-80或HSC-80)的可行性。蒸汽固化温度,并在DEF中添加粉煤灰或矿渣,具有4年的强度和耐久性。以60摄氏度和90摄氏度(PC-60和PC-90)蒸汽固化的普通水泥混凝土作为参考。结果表明,与PC-90相比,HFC-80中的DEF明显延迟,而HSC-80中没有DEF。 HFC-80的4年扩展明显大于PC-60,而HSC-80的扩展与PC-60一样小。 HFC-80或HSC-80在4年时的抗压强度比PC-60小12%-18%,而HFC-80或HSC-80在4年时的抗氯离子渗透性优于PC-60。 PC-60。因此,就上述结果而言,可以预先判断出适当升高蒸汽固化温度对于HFC可能是不可行的,但对于HSC而言是可行的。 (C)2020 Elsevier Ltd.保留所有权利。

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