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Compaction Quality Inspection Method of Soil-Rock Filled Embankment Based on Continuous Compaction Control Technology

机译:基于连续压实控制技术的土岩填充路堤压实质量检测方法

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Affected by the site construction conditions, the measurement passes of the Taihang Expressway K 8?+?105?~? K 8?+?341 (K8 worksite) in the Taihang Expressway did not meet the requirements of data analysis, and the quantity of the control points was insufficient so that the linear correlation between the dynamic deformation modulus () and the vibratory compaction value (VCV) was not strong. Therefore, the target value of VCV cannot be used to diagnose the compaction quality of soil-rock filler. This paper analyzes the roller measurement VCV value and in situ measurements value separately. Results reveal the difference between the VCV mean measured in the last two passes and the standard deviation of the measured VCV mean in the last pass are used as the main basis for the actual compaction quality. In addition, the mean in the last rolling can be used as an auxiliary judgment basis for the quality control of the compaction.
机译:受到现场施工条件的影响,太空高速公路K 8的测量通行证?+ 105?〜? k 8?+?341(K8工地)在太界高速公路上不符合数据分析的要求,控制点的数量不足,使动态变形模量()与振动压缩值之间的线性相关性( VCV)并不强烈。 因此,VCV的目标值不能用于诊断土壤填充物的压实质量。 本文分析了滚子测量VCV值并分别原位测量值。 结果揭示了在最后两次通过中测量的VCV平均值的差异,最后一段通过的测量VCV的标准偏差是实际压实质量的主要基础。 此外,最后轧制中的平均值可以用作压实的质量控制的辅助判断基础。

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