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首页> 外文期刊>Advances in civil engineering >Volume Changes and Mechanical Properties of Expansive Mudstone below Canals under Wet-Dry/Wet-Dry-Freeze-Thaw Cycles
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Volume Changes and Mechanical Properties of Expansive Mudstone below Canals under Wet-Dry/Wet-Dry-Freeze-Thaw Cycles

机译:湿润/湿冷干燥冻融循环下运河下膨胀泥岩的体积变化和机械性能

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The complex environment in northern China is the main reason for degradation of expansive mudstone below the canals, which resulted in instability and damage of canal slopes. In this study, a serial of laboratory tests was conducted to explore the volume changes and mechanical behaviors of expansive mudstone below the canals in Xinjiang. The experimental program includes wet-dry (WD) and wet-dry-freeze-thaw (WDFT) tests, volume measurement, and unconfined compression tests. The test results show that during the WD cycles, the volume changes of expansive mudstones with a higher dry range would be more significant. The freeze-thaw process in the WDFT cycles resulted in a decrease of volume change ranges when the expansive mudstones had a relatively smaller dry range and a slight increase of volume change ranges when the expansive mudstones had a relatively larger dry range. In the meantime, the stress-strain relationships of expansive mudstones with different dry ranges all presented strain softening under the cycles of WD or WDFT. The first cycle resulted in a significant decrease of failure strength. After seven WD/WDFT cycles, the failure strength of expansive mudstones with different dry ranges decreased by 37.2%~59.1%. In addition, the freeze-thaw process in the WDFT cycles promoted the softening of the stress-strain relationships and aggravated the failure strength attenuation of expansive mudstones. Through this study, we expect to provide a preliminary basis for the construction and maintenance of expansive mudstone canals in Xinjiang.
机译:在中国北方的复杂环境是运河,导致不稳定和运河的斜坡下面损害膨胀泥岩退化的主要原因。在这项研究中,实验室测试序列进行了探索体积变化和新疆运河低于膨胀泥岩的力学行为。实验方案包括湿 - 干(WD)和湿 - 干冻融(WDFT)测试,体积测量,和无侧限压缩试验。试验结果表明,在WD循环,膨胀泥岩具有较高干燥范围的体积变化会更显著。在WDFT循环冻融过程导致的体积变化范围的降低时膨胀泥岩具有相对较小的干范围和体积变化范围的轻微增加时膨胀泥岩具有相对较大的干范围。在此期间,用不同的干膨胀泥岩的应力 - 应变关系的范围内的所有呈现应变WD或WDFT的周期下软化。第一个周期导致的故障强度显著下降。经过七WD / WDFT周期,不同的干燥的范围广阔的泥岩的破坏强度下降了37.2%〜59.1%。此外,在WDFT循环冻融过程促进了应力应变关系的软化和扩张加剧泥岩的破坏强度衰减。通过这项研究,我们希望提供在新疆广阔的泥岩运河的建设和维护一个初步的基础。

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