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Short- and Long-Term Structural Characterization of Cured-in-Place Pipe Liner with Reinforced Glass Fiber Material

机译:玻璃纤维增​​强现浇管衬的短期和长期结构表征

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摘要

Cured-in-place pipe (CIPP), as a kind of trenchless sewer rehabilitation technology, is a method to repair sewer pipe using unsaturated polyester resin. This study develops a CIPP liner using hot water or steam curing as well as glass fiber, in contrast to traditional methods, which use nonwoven fabric. Composite material samples were fabricated by combining liner materials using various methods, and the structural characteristics of the liners were compared and analyzed through short- and long-term flexural strength tests. A long-term test was conducted for 10,000 h, and the results revealed 13.3 times higher flexural strength and 8 times higher flexural modulus than the American Society for Testing Materials minimum criteria for CIPP short-term properties. The maximum creep retention factor was 0.64, thereby reducing the design thickness of the CIPP by up to 54%. The structural characteristics also improved when glass fibers were mixed with traditional CIPP liner, making it possible to reduce the thickness by 30%. Glass fibers result in high structural strength when combined with unsaturated polyester resin. Structural strength increased, even when glass fibers were mixed with traditional CIPP liner. The main contribution of this research is the development of a high strength CIPP liner and improvement of the structural properties of CIPP lining without using the specially formulated resin or lining materials.
机译:现浇管道(CIPP)作为一种非开挖的下水道修复技术,是一种使用不饱和聚酯树脂修复下水管道的方法。与使用无纺布的传统方法相比,本研究开发了使用热水或蒸汽固化以及玻璃纤维开发的CIPP衬里。通过使用各种方法结合衬里材料来制造复合材料样品,并通过短期和长期弯曲强度测试对衬里的结构特性进行比较和分析。进行了10,000 h的长期测试,结果表明,其弯曲强度比美国试验材料学会关于CIPP短期特性的最低标准高出13.3倍和8倍。最大蠕变保持系数为0.64,从而将CIPP的设计厚度减小了多达54%。当玻璃纤维与传统CIPP衬里混合时,结构特性也得到改善,从而可以将厚度减少30%。当与不饱和聚酯树脂结合时,玻璃纤维导致高结构强度。即使将玻璃纤维与传统CIPP衬里混合,结构强度也会提高。该研究的主要贡献是无需使用特殊配方的树脂或衬里材料即可开发出高强度的CIPP衬里并改善CIPP衬里的结构性能。

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