Amin Muhammad Nasir, Khan Kaffayatullah
Department of Civil and Environmental Engineering, College of Engineering, King Faisal University (KFU), Al-Ahsa 31982, Saudi Arabia.
Materials (Basel). 2020 Dec 23;14(1):21. doi: 10.3390/ma14010021.
This study investigated the effect of elevated temperatures on the mechanical properties of high-strength sustainable concrete incorporating volcanic ash (VA). For comparison, control and reference concrete specimens with fly ash (FA) were also cast along with additional specimens of VA and FA containing electric arc furnace slag (EAFS). Before thermal exposure, initial tests were performed to evaluate the mechanical properties (compressive strength, tensile strength, and elastic modulus) of cylindrical concrete specimens with aging. Additionally, 91 day moist-cured concrete specimens, after measuring their initial weight and ultrasonic pulse velocity (UPV), were exposed up to 800 °C and cooled to air temperature. Subsequently, the weight loss, residual UPV, and mechanical properties of concrete were measured with respect to exposure temperature. For all concrete specimens, test results demonstrated a higher loss of weight, UPV, and other mechanical properties under exposure to higher elevated temperature. Moreover, all the results of concrete specimens incorporating VA were observed before and after exposure to elevated temperature as either comparable to or slightly better than those of control and reference concrete with FA. According to the experimental results, a correlation was developed between residual UPV and residual compressive strength (RCS), which can be used to assess the RCS of fire-damaged concrete (up to 800 °C) incorporating VA and EAFS.
本研究调查了高温对掺火山灰(VA)的高强度可持续混凝土力学性能的影响。为作比较,还浇筑了含粉煤灰(FA)的对照和参考混凝土试件,以及含电弧炉渣(EAFS)的VA和FA附加试件。在热暴露之前,进行初始试验以评估老化后圆柱形混凝土试件的力学性能(抗压强度、抗拉强度和弹性模量)。此外,在测量91天潮湿养护混凝土试件的初始重量和超声脉冲速度(UPV)后,将其加热至800℃并冷却至室温。随后,测量混凝土的重量损失、残余UPV和力学性能与暴露温度的关系。对于所有混凝土试件,试验结果表明,在暴露于较高温度下时,重量、UPV和其他力学性能的损失更大。此外,观察到所有掺VA混凝土试件在暴露于高温前后的结果与含FA的对照和参考混凝土相当或略好。根据试验结果,建立了残余UPV与残余抗压强度(RCS)之间的相关性,可用于评估掺VA和EAFS的火灾受损混凝土(高达800℃)的RCS。