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Evaluation of interfacial strength between hydrating cement paste and epoxy coating

机译:水泥浆料与环氧涂层界面强度评价

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摘要

The objective of this work is to determine the interfacial strength between cement paste and epoxy, coated at the different instant of time during the hydration. The factors influencing the magnitude of interfacial adhesive strength were also studied. To pursue this, the interfacial adhesive strength between cement paste and epoxy coated at different days of hydration was determined by performing macromechanical experiments such as slant shear and pull-off adhesion test. The various instant of hydration when epoxy was coated are 2, 7, 14, 21, and 28 days from the point of initiation of hydration. The possible influencing factors considered were water-cement ratio, curing time, and thickness of the coating. Results of macro-mechanical tests show that the average interfacial adhesive strength between cement paste and the epoxy coating was in the same range, irrespective of the instant of coating. Although the higher surface energy and work of adhesion should result in a higher interfacial strength for epoxy coated on 2nd day, the measured value of interfacial strength, however, did not show such. One of the possible reasons why interfacial strength of epoxy coated on the 2nd day is similar to 28th day coating in spite of higher surface energy and work of adhesion, is the presence of the larger amount of surface water during the earlier days. The effect of this excess water balances out the contributory effect of the physical interactions and mechanical interlocking. From the parametric study, it was observed that the factors considered in the present study play a major role, particularly when coated during the early days of hydration. (C) 2021 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是确定水泥浆料和环氧树脂之间的界面强度,在水合过程中的不同时刻涂覆。还研究了影响界面粘合强度幅度的因素。为了追求这一点,通过进行倾斜剪切和拉出粘附试验等缩剪和粘附试验,测定水泥糊剂和涂覆在水合的不同天水合的环氧树脂之间的界面粘合强度。当环氧树脂涂覆时,水合的各种瞬间是从水合的开始时2,7,14,21和28天。认为可能的影响因素是水水粘器比,固化时间和涂层的厚度。宏观机械测试的结果表明,无论涂层的速度如何,水泥浆料与环氧涂层之间的平均界面粘合强度在相同范围内。尽管较高的表面能和粘合的工作应导致在第2天涂覆的环氧树脂界面强度较高,但是界面强度的测量值没有显示出这样的。在第2天涂覆的环氧树脂界面强度的可能性之一类似于第28天的涂层,尽管表面能量和粘合性更高,是在早期的较较大的日子中存在较大量的地表水。这种多余的水分余额余额达到物理相互作用和机械互锁的贡献效果。从参数研究中,观察到本研究中考虑的因素起主要作用,特别是当在水合早期涂层时涂层。 (c)2021 elestvier有限公司保留所有权利。

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