首页> 外文期刊>KSCE journal of civil engineering >Performance Evaluation of Modified Marine Dredged Soil and Recycled In-Situ Soil as Controlled Low Strength Materials for Underground Pipe
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Performance Evaluation of Modified Marine Dredged Soil and Recycled In-Situ Soil as Controlled Low Strength Materials for Underground Pipe

机译:改性海洋疏ed土和再生原地土作为受控低强度地下管道材料的性能评估

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The purpose of this research was to present engineering properties of Controlled Low Strength Materials (CLSM) with recycled insitu soil and marine dredged soil as backfill materials for underground pipe line system. The proper mixing ratio was determined, based on the specified criterion of flowing size and unconfined compression strength. Laboratory tests were carried out in this research included particle analysis, unconfmed compression test, direct shear test, dynamic creep test and small scaled laboratory chamber test. The unconfined strength and flow of controlled low strength materials satisfied the criteria for construction materials, which was above 250 kPa. The measured creep strain at 1200 sec longing was 178 urn for Case 3 (natural sand with dredged soil CLSM) and 178 urn for Case 4 (recycled in-situ soil with dredged soil CLSM), and 471.9 urn for natural soil only. The use of CSLM can reduce the settlement of backfill materials for underground pipe line system. The use of CLSM as backfill materials made a large reduction of earth pressure applied on underground pipe. The use of small amount of cement gives the cementation effect for both CLSM and hardening effect.
机译:这项研究的目的是介绍可控制的低强度材料(CLSM)的工程特性,该材料以再生的原地土壤和海洋疏soil土壤作为地下管道系统的回填材料。根据规定的流动尺寸和无限制的压缩强度标准,确定合适的混合比。在这项研究中进行的实验室测试包括颗粒分析,无限制压缩测试,直接剪切测试,动态蠕变测试和小型实验室试验箱测试。受控低强度材料的无侧限强度和流动满足建筑材料的标准,该标准高于250 kPa。在情况1200 s下测得的蠕变应变,对于案例3(带有疏soil土壤CLSM的天然砂)为178 urn,对于案例4(带有疏soil土壤CLSM的再生原位土壤)为178 urn,仅对于天然土壤为471.9 urn。 CSLM的使用可以减少地下管线系统中回填材料的沉降。 CLSM作为回填材料的使用大大降低了施加在地下管道上的土压力。少量水泥的使用会产生CLSM的胶结效果和硬化效果。

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