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Method for controlling construction perpendicularity of vibro-replacement stone column machine
The invention discloses a method for controlling construction perpendicularity of a vibro-replacement stone column machine, which comprises the following steps of: arranging a drill rod system and a mast of a hoisting system in parallel, so that a vibro-replacement device system connected with the bottom of the drill rod system is parallel to the mast; when the vibroflotation construction is carried out through the vibroflotation device system, the perpendicularity of the mast relative to a main machine located on the horizontal plane is detected in real time so as to obtain deviation data of the perpendicularity of the mast; judging whether the perpendicularity of the mast needs to be adjusted or not according to the obtained real-time deviation data of the perpendicularity of the mast; and if the perpendicularity of the mast needs to be adjusted, the perpendicularity of the mast is adjusted, so that the vibroflot system carries out downward vibroflot on the construction stratum with the perpendicularity meeting the requirement, and a vibroflot gravel pile hole is formed. According to the method and the vibro-replacement device system, vibro-replacement gravel pile holes with the perpendicularity meeting the requirement can be formed through vibro-replacement, the uniformity and compactness of the pile diameters of the formed vibro-replacement gravel piles are ensured, the safety of the vibro-replacement gravel piles is improved, the construction period is effectively shortened, and the construction cost is reduced.
本发明公开一种振冲碎石桩机施工垂直度控制的方法,包括:将钻杆系统与吊装系统的桅杆平行安置,以便与钻杆系统底部连接的振冲器系统与桅杆平行;在通过振冲器系统进行振冲施工时,对桅杆相对位于水平面上主机的垂直度进行实时检测,以获得桅杆垂直度的偏差数据;根据获得的桅杆垂直度的实时偏差数据,判断是否需要对桅杆垂直度进行调节;若需要对桅杆垂直度进行调节,则调节桅杆垂直度,以便振冲器系统以符合要求的垂直度对施工地层向下振冲并形成振冲碎石桩孔。本发明方法,振冲器系统能振冲形成垂直度符合要求的振冲碎石桩孔,确保形成的振冲碎石桩桩径的均匀性和密实性,提高振冲碎石桩安全性,且有效缩短施工工期,降低施工成本。
Method for controlling construction perpendicularity of vibro-replacement stone column machine
The invention discloses a method for controlling construction perpendicularity of a vibro-replacement stone column machine, which comprises the following steps of: arranging a drill rod system and a mast of a hoisting system in parallel, so that a vibro-replacement device system connected with the bottom of the drill rod system is parallel to the mast; when the vibroflotation construction is carried out through the vibroflotation device system, the perpendicularity of the mast relative to a main machine located on the horizontal plane is detected in real time so as to obtain deviation data of the perpendicularity of the mast; judging whether the perpendicularity of the mast needs to be adjusted or not according to the obtained real-time deviation data of the perpendicularity of the mast; and if the perpendicularity of the mast needs to be adjusted, the perpendicularity of the mast is adjusted, so that the vibroflot system carries out downward vibroflot on the construction stratum with the perpendicularity meeting the requirement, and a vibroflot gravel pile hole is formed. According to the method and the vibro-replacement device system, vibro-replacement gravel pile holes with the perpendicularity meeting the requirement can be formed through vibro-replacement, the uniformity and compactness of the pile diameters of the formed vibro-replacement gravel piles are ensured, the safety of the vibro-replacement gravel piles is improved, the construction period is effectively shortened, and the construction cost is reduced.
本发明公开一种振冲碎石桩机施工垂直度控制的方法,包括:将钻杆系统与吊装系统的桅杆平行安置,以便与钻杆系统底部连接的振冲器系统与桅杆平行;在通过振冲器系统进行振冲施工时,对桅杆相对位于水平面上主机的垂直度进行实时检测,以获得桅杆垂直度的偏差数据;根据获得的桅杆垂直度的实时偏差数据,判断是否需要对桅杆垂直度进行调节;若需要对桅杆垂直度进行调节,则调节桅杆垂直度,以便振冲器系统以符合要求的垂直度对施工地层向下振冲并形成振冲碎石桩孔。本发明方法,振冲器系统能振冲形成垂直度符合要求的振冲碎石桩孔,确保形成的振冲碎石桩桩径的均匀性和密实性,提高振冲碎石桩安全性,且有效缩短施工工期,降低施工成本。
Method for controlling construction perpendicularity of vibro-replacement stone column machine
振冲碎石桩机施工垂直度控制的方法
SUN LIANG (Autor:in) / SHI FENG (Autor:in) / XING SHULONG (Autor:in) / ZHAO JUN (Autor:in) / TANG YONGJUN (Autor:in) / CAO JIE (Autor:in) / HAN WEI (Autor:in) / SEAN SHANG (Autor:in) / XU FANGCAI (Autor:in) / TANG WENLU (Autor:in)
17.02.2023
Patent
Elektronische Ressource
Chinesisch
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