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Field Performance of Recycled Plastic Foundation for Pipeline

机译:管道再生塑料地基的现场性能

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摘要

The incidence of failure of embedded pipelines has increased in Korea due to the increasing applied load and the improper compaction of bedding and backfill materials. To overcome these problems, a prefabricated lightweight plastic foundation using recycled plastic was developed for sewer pipelines. A small scale laboratory chamber test and two field tests were conducted to verify its construction workability and performance. From the small scale laboratory chamber test, the applied loads at 2.5% and 5.0% of deformation were 3.45 kgf/cm2 and 5.85 kgf/cm2 for Case S1, and 4.42 kgf/cm2 and 6.43 kgf/cm2 for Case S2, respectively. From the first field test, the vertical deformation of the recycled plastic foundation (Case A2) was very small. According to the analysis based on the PE pipe deformation at the connection (CN) and at the center (CT), the pipe deformation at each part for Case A1 was larger than that for Case A2, which adopted the recycled lightweight plastic foundation. From the second field test, the measured maximum settlements of Case B1 and Case B2 were 1.05 cm and 0.54 cm, respectively. The use of a plastic foundation can reduce the settlement of an embedded pipeline and be an alternative construction method.
机译:在韩国,由于施加的载荷增加以及垫层和回填材料的压实不当,导致嵌入式管道故障的发生率有所增加。为了克服这些问题,开发了一种使用再生塑料的预制轻质塑料地基,用于下水道管道。进行了小规模的实验室试验箱测试和两次现场测试,以验证其施工可操作性和性能。根据小型实验室试验室测试,案例S1在变形的2.5%和5.0%时施加的负载分别为3.45 kgf / cm 2 和5.85 kgf / cm 2 。对于案例S2,分别为4.42 kgf / cm 2 和6.43 kgf / cm 2 。从第一次现场测试来看,再生塑料基础(案例A2)的垂直变形非常小。根据连接处(CN)和中心(CT)的PE管道变形的分析,案例A1的每个部分的管道变形都大于案例A2的案例,后者采用了回收的轻质塑料基础。根据第二次现场测试,案例B1和案例B2的最大沉降量分别为1.05 cm和0.54 cm。塑料地基的使用可以减少嵌入式管道的沉降,是一种替代的施工方法。

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