Experimental Investigation of the Bearing Performance and Failure Characteristics of Double-Row Pile-Slab Structures in Steep Mountainous Areas

Rui Su, Qian Su, Peng Cheng, Heng Zhou, Xun Wang, Yanfei Pei
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Abstract

Considering the pile-slab subgrade project of the Hangzhou-Huang Shan Passenger Dedicated Line as the basis, this paper conducts a 1:10 large-scale indoor model test for the horizontal bearing capacity of the pile-slab structure in steep mountainous areas to study the distribution of the pile-slab structure stress, soil pressure and structural deformation and analyze the failure mode of the structure and slope. The research shows that when the subgrade with a double-row pile-slab structure is subjected to horizontal loading in the steep slope section, the steel bars of the pile body above the sliding surface are compressed, and the steel bars of the pile body below the sliding surface are under tension. With the increase in the horizontal load, the stress of the pile body steel bar remains basically unchanged or shows a steady increase and finally sharply increases. The deformation of the bearing plate is dominated by the horizontal displacement, and the horizontal displacement reaches 7.25 mm when the plate is broken. In addition, warping deformation of the inner high and outer low occurs. When the horizontal load reaches 157 kN, shallow damage and local collapse of the slope occur, and transverse and diagonal cracks occur at the top of the pile and near the sliding surface of the pile. During the test, the pile-slab structure always deforms more than the slope, and the overall stability of the structure is good. The test is suitable for sections where the remaining sliding force is less than 770 kN/m (equivalent to a slope length of 79.123 m).
陡坡山区双排桩板结构承载性能及破坏特征试验研究
本文以杭黄客运专线桩板路基工程为基础,对陡峭山区桩板结构水平承载力进行了1:10大尺度室内模型试验,研究桩板结构应力、土压力及结构变形的分布,分析结构及边坡的破坏模式。研究表明,双排桩-板结构路基在陡坡段受水平荷载作用时,滑面以上的桩身钢筋受压缩,滑面以下的桩身钢筋受拉。随着水平荷载的增加,桩身钢筋的应力基本保持不变或呈平稳增加趋势,最后急剧增大。支座板的变形以水平位移为主,支座板破碎时水平位移达到7.25 mm。此外,还会发生内高外低的翘曲变形。当水平荷载达到157 kN时,边坡发生浅层破坏和局部破坏,桩顶和桩滑动面附近出现横向和斜向裂缝。试验过程中,桩板结构的变形始终大于边坡,结构整体稳定性较好。试验适用于剩余滑动力小于770 kN/m的路段(相当于坡长79.123 m)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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