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扩径体直径对钻扩混凝土桩桩周 土体影响的试验研究
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Experimental Study on Influence of Diameter of Expanded Body on Soil around Drilled-expanded Concrete Pile
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    摘要:

    基于室内砂土半面模型桩竖向加载试验,采用 VIC-3D非接触全场应变测量系统 实时记录荷载作用下桩周土体变形的动态发展过程,结合数字图像相关技术,获取了荷载作 用下桩周土体位移场分布特征,探究了扩径体周围土体破坏状态,研究了钻扩混凝土桩扩径 体直径对单桩承载力、位移分布规律、压缩区及沉陷区等的影响,并对主要压缩区和主要沉陷 区范围进行了定量分析.试验结果表明:随着扩径体直径的增加,钻扩混凝土桩承载力明显增 加,单桩荷载-位移曲线由陡降型变为缓变型;扩径体周围土体竖向位移和水平位移随桩顶位 移的增加而增大,但增加幅度受埋深、与扩径体距离及与压缩区边界距离的影响;不同埋深处 的土体水平位移呈“C”字形;桩周土体位移影响范围伴随扩径体直径增大而增大,并于扩径体 上下分别形成沉陷区与压缩区,且区域面积均与扩径体直径、桩顶位移存在正相关性. 通过非 线性曲面拟合,得出主要压缩区面积、主要沉陷区面积与扩径体直径、桩顶位移之间的函数关 系,可为主要压缩区和主要沉陷区范围的预估提供一定的借鉴和参考.

    Abstract:

    Based on the vertical load test on an indoor sand half-surface model pile,the VIC-3D non-contact full-field strain measurement system was used to record the dynamic development of the soil displacement field around the expanded body in real time. By using digital image correlation techniques,the entire process of the soil displacement field distribution characteristics and development under the load was observed. The failure state of soil around the expansion body was investigated. The influence of different expanded diameters on the bearing capacity, the distribution of displacement,the compression zone and the subsidence zone was explored. The main compression area and main subsidence area were quantitatively analyzed. The results show that with the increasing diameter of the expanded body,the bearing capacity of the drilled-expanded concrete pile gradually increases,and the loaddisplacement curve of single pile changes from steep drop type to slow change type. The vertical and horizontal dis? placements of soil around the expanded body increase with the increase of pile top displacement,but the increased amplitude is affected by the buried depth,the distance from the expanding body and the distance from the boundary of the compression zone. The horizontal displacement of soil at different buried depths shows a "C" shape. The influ? ence range of soil displacement around piles increases with the increasing diameter of the expanding body,and the subsidence zone and compression zone are formed above and below the expanding body,respectively. The area of the regions is positively correlated with the diameter of the expanding body and the displacement of the pile top. Through nonlinear surface fitting,the functional relationship between the area of main compression area,main subsidence area,the diameter of expansion body,and displacement of pile top is obtained,which can provide some reference for the prediction of the area of main compression area and main subsidence area.

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徐丽娜 ,邓皓允 ,郑俊杰 ,钱永梅 ,牛雷 .扩径体直径对钻扩混凝土桩桩周 土体影响的试验研究[J].湖南大学学报:自然科学版,2022,49(7):222~234

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  • 在线发布日期: 2022-08-18
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