Test Methods for Durability of Polymeric Fibers in Concrete and UV Light Exposure

P. Balaguru, K. Slattum
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引用次数: 25

Abstract

Two test methods are presented that can be used for evaluating durability of polymeric fibers subjected to alkaline environment present in concrete and to ultraviolet (UV) light exposure. The test methods were used to evaluate three polymeric fibers: nylon, polypropylene, and polyester. Durability of the fibers in an alkaline environment was ascertained by measuring the flexural toughness of fiber reinforced concrete specimens that had been aged in lime saturated water maintained at 50 deg C. The UV light exposure test was conducted at a temperature of 65 deg C with intermittent water spray. The wet spray was used to simulate conditions in the field. Durability of the fibers was determined by measuring the retained tensile strength of the fibers after light exposure and by observing the surface characteristics of fibers under a microscope. The test results indicate that nylon and polypropylene fibers are durable in alkaline environment present in concrete. The nylon fibers, which were light stabilized, were determined to be stable under UV light exposure. Polypropylene fibers deteriorated under UV light, and the deterioration of the polypropylene single filament fibers was more rapid than for the fibrillated fibers. Hence these fibers should not be used in applications where the fiber contribution is needed at cracked-exposed sections.
混凝土中聚合纤维耐久性和紫外线曝晒试验方法
提出了两种测试方法,可用于评估混凝土中存在的碱性环境和紫外线(UV)光暴露下聚合物纤维的耐久性。测试方法用于评估三种聚合纤维:尼龙、聚丙烯和聚酯。通过测量纤维增强混凝土试件在50℃饱和石灰水中老化后的抗弯韧性来确定纤维在碱性环境中的耐久性。紫外线照射试验在65℃的温度下进行,间歇喷水。采用湿喷雾模拟田间条件。通过测量光照后纤维的抗拉强度和在显微镜下观察纤维的表面特性来确定纤维的耐久性。试验结果表明,尼龙和聚丙烯纤维在碱性环境下具有较好的耐久性能。尼龙纤维具有光稳定性,在紫外线照射下具有稳定性。聚丙烯纤维在紫外光作用下劣化,单长丝纤维劣化速度快于原纤纤维。因此,这些纤维不应用于在裂缝暴露部分需要纤维贡献的应用中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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