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Pile-soil interaction visualization test device and test method thereof
The invention discloses a pile-soil interaction visualization test device and a test method thereof.The device comprises a model box, sensor monitoring equipment, visualization image monitoring equipment and a half pile sleeve mold, and the sensor monitoring equipment and the visualization image monitoring equipment are installed on a perspective window in the front side face of the model box; the half-pile sleeve mold is a hollow half-pile mold and is mounted on the side surface of the perspective window; during a test, the observation surface of the poured half pile clings to the perspective window and covers the operation window and the observation window, and the sensors in the pile body can be installed and debugged in a large range and at a short distance through the operation window. Physical and chemical reactions caused by material properties and external environment between the pile and the soil and the volume change and crack generation of the pile body can be recorded in real time through the observation window. According to the method, the actual size of the pile body can be restored to the maximum extent aiming at interaction generated by physical and chemical reactions between pile-soil materials, and the method aims at effectively reducing errors between indoor tests and actual sites.
本发明设计公开了一种桩土相互作用可视化试验装置及其试验方法,该装置包括:模型箱、传感器监测设备、可视化图像监测设备、半桩套筒模具,所述的模型箱前侧面的透视窗上安装有传感器监测设备、可视化图像监测设备,半桩套筒模具为空心半桩型模具,安装在透视窗的侧面;试验时所浇筑的半桩观测面紧贴透视窗且覆盖操作窗与观察窗,通过操作窗可以大范围且近距离的对桩体内部进行传感器的安装和调试,通过观察窗可以实时记录桩‑土间因材料性质和外界环境所引起的物理化学反应及桩体的体积变化与裂纹产生。本发明是针对桩土材料间因为物理化学反应所产生的相互作用,能最大程度地还原桩体实际尺寸,旨在有效降低室内试验与实际现场的误差。
Pile-soil interaction visualization test device and test method thereof
The invention discloses a pile-soil interaction visualization test device and a test method thereof.The device comprises a model box, sensor monitoring equipment, visualization image monitoring equipment and a half pile sleeve mold, and the sensor monitoring equipment and the visualization image monitoring equipment are installed on a perspective window in the front side face of the model box; the half-pile sleeve mold is a hollow half-pile mold and is mounted on the side surface of the perspective window; during a test, the observation surface of the poured half pile clings to the perspective window and covers the operation window and the observation window, and the sensors in the pile body can be installed and debugged in a large range and at a short distance through the operation window. Physical and chemical reactions caused by material properties and external environment between the pile and the soil and the volume change and crack generation of the pile body can be recorded in real time through the observation window. According to the method, the actual size of the pile body can be restored to the maximum extent aiming at interaction generated by physical and chemical reactions between pile-soil materials, and the method aims at effectively reducing errors between indoor tests and actual sites.
本发明设计公开了一种桩土相互作用可视化试验装置及其试验方法,该装置包括:模型箱、传感器监测设备、可视化图像监测设备、半桩套筒模具,所述的模型箱前侧面的透视窗上安装有传感器监测设备、可视化图像监测设备,半桩套筒模具为空心半桩型模具,安装在透视窗的侧面;试验时所浇筑的半桩观测面紧贴透视窗且覆盖操作窗与观察窗,通过操作窗可以大范围且近距离的对桩体内部进行传感器的安装和调试,通过观察窗可以实时记录桩‑土间因材料性质和外界环境所引起的物理化学反应及桩体的体积变化与裂纹产生。本发明是针对桩土材料间因为物理化学反应所产生的相互作用,能最大程度地还原桩体实际尺寸,旨在有效降低室内试验与实际现场的误差。
Pile-soil interaction visualization test device and test method thereof
一种桩土相互作用可视化试验装置及其试验方法
ZHANG YUZHI (Autor:in) / SHEN LIANG (Autor:in) / NIE QINGKE (Autor:in) / WANG MENG (Autor:in) / ZHANG SHUJING (Autor:in) / GUO CUILI (Autor:in) / LIU JINGJING (Autor:in) / WANG WEI (Autor:in)
16.04.2024
Patent
Elektronische Ressource
Chinesisch
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