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Thermal Physico-Chemical and Mechanical Behaviour of Mass Concrete with Hybrid Blends of Bentonite and Fly Ash

机译:膨润土与粉煤灰混合掺合的大体积混凝土的热物理化学和机械性能

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摘要

Mass concrete has been commonly known for its thermal stresses which arise due to the entrapment of hydration temperature susceptible to thermal cracking. The utilization of mineral additives is a promising and widely adopted technique to mitigate such effects. This paper presents the thermal, physico-chemical, mechanical, and morphological behaviour of mass concrete with blends of bentonite (BT) and fly ash (FA). Apart from the rise in temperature due to hydration, the compressive strength, ultrasonic pulse velocity (UPV), differential thermal analysis (DTA), thermo-gravimetric analysis (TGA), X-ray diffraction (XRD) analysis, and microstructure were studied. The results of this study revealed that the substitution of BT and FA significantly improved the compressive strength and development rate of UPV in the mass concrete samples. The FA concrete (FC) specimen presented the lowest temperature during the peak hours compared to all other concrete mixes studied in this research. Bentonite concrete (BC) was also found to be more effective in controlling the escalation of temperature in mass concrete. Scan electron microscopy (SEM) micrographs presented partially reacted FA particles in a mix. XRD and DTA analysis indicated that the concentration of calcium hydroxide (CH) declined by substituting FA and BT, specifically in ternary blends, which was due to the dilution effect and consumption of CH through the pozzolanic reaction.
机译:大块混凝土由于其热应力而广为人知,其由于易受热裂化的水化温度的夹带而产生。矿物添加剂的利用是减轻这种影响的有前途且被广泛采用的技术。本文介绍了膨润土(BT)和粉煤灰(FA)掺合料的大体积混凝土的热,物理化学,机械和形态学行为。除了因水合作用导致温度升高外,还研究了抗压强度,超声脉冲速度(UPV),差热分析(​​DTA),热重分析(TGA),X射线衍射(XRD)分析和微观结构。这项研究的结果表明,BT和FA的替代显着提高了大体积混凝土样品中UPV的抗压强度和发展速度。与本研究中研究的所有其他混凝土混合物相比,FA混凝土(FC)样品在高峰时段的温度最低。还发现膨润土混凝土(BC)在控制大体积混凝土中温度的升高方面更有效。扫描电子显微镜(SEM)显微照片显示了混合物中部分反应的FA颗粒。 XRD和DTA分析表明,通过取代FA和BT(特别是在三元混合物中),氢氧化钙(CH)的浓度降低了,这是由于稀释作用和通过火山灰反应消耗CH所致。

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