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Control Water Leaks in Cracked Concrete Using Epoxy Grout

机译:使用环氧树脂灌浆控制裂缝混凝土中的漏水

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The objective of the testing program, approved by the EPA was to evaluate the performance of grouting materials used in the rehabilitation of cracked concrete structures, including pipes, to quantify the infiltration using a combination of model and laboratory tests at the Center for Innovative Grouting Materials and Technology (CIGMAT). A combination of grout and grout-substrate bonding with a simulated model test are being used to evaluate grouts for leak control at repaired cracks in concrete. The concrete crack repairs were simulated using concrete rings placed at selected distance apart and the grouted cracks were tested to 34 kPa (5 psi) water pressure, after subjecting the repaired joints to wet-dry cycles, to quantify the effective reduction in water infiltration. In this study, a commercially available epoxy grout was investigated based on a test protocol developed for EPA to evaluate the performance of grouts to control leak in cracked concrete. The average compressive strength, failure stain, and initial modulus after 3 days of curing were 45 MPa, 8%, and 1.5 GPa, respectively. After 6 months of wet-dry cycle test, the average bonding strength was 1.6 MPa. Model tests showed that the epoxy grout investigated in this study was effective in eliminating the leak in the cracked concrete immediately after grouting and after two wet and dry cycles over period of one month.
机译:经EPA批准的测试程序的目的是评估用于裂缝混凝土结构(包括管道)修复的灌浆材料的性能,以结合创新灌浆材料中心的模型测试和实验室测试来量化渗透量和技术(CIGMAT)。灌浆和灌浆-底材粘结与模拟模型测试的结合被用于评估灌浆在混凝土修复裂缝处的泄漏控制。使用间隔开一定距离的混凝土环来模拟混凝土裂缝的修复,并在对修复后的接缝进行干湿循环后,将灌浆的裂缝测试到34 kPa(5 psi)的水压,以量化水渗透的有效减少量。在这项研究中,根据为EPA开发的测试规程,对市售的环氧灌浆进行了研究,以评估灌浆控制破裂混凝土泄漏的性能。固化三天后的平均抗压强度,破坏斑点和初始模量分别为45 MPa,8%和1.5 GPa。经过6个月的干湿循环测试,平均粘结强度为1.6 MPa。模型测试表明,在本研究中研究的环氧灌浆可有效消除开裂后立即在裂缝混凝土中以及两个月的干湿循环后的渗漏。

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