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Infrastructure lifting engineering trestle and drilling platform construction method
The invention discloses an infrastructure lifting project trestle and drilling platform construction method, and relates to the field of bridge construction, the infrastructure lifting project trestle and drilling platform construction method comprises the following steps: S1, building a foundation: mounting and connecting the bottom of a steel stand column and the water bottom according to a construction method formulated by an engineer; and S2, leveling is conducted, all the connecting columns are adjusted to the same height through a column body telescopic mechanism which is located on the upper side of the steel stand column and locked through inner and outer double-layer threads, and the locking effect after adjustment of the column body telescopic mechanism is improved. According to the infrastructure lifting project trestle and drilling platform construction method, the bottom of a threaded adjusting rod opens a shear-fork monitoring arm through the sliding effect of a sliding connecting groove in the shear-fork monitoring arm, so that the two sides of the shear-fork monitoring arm abut against corresponding steel stand columns correspondingly; according to the construction method for the trestle and the drilling platform of the infrastructure lifting project, the problem that potential risks cannot be observed in time due to the fact that an existing trestle and an existing drilling platform are not provided with a trestle and drilling platform real-time monitoring mechanism is solved.
本发明公开了基础设施提升工程栈桥及钻孔平台施工方法,涉及大桥建造领域,包括以下步骤:S1、筑基,根据工程师制定的施工方法将钢立柱底部与水底进行安装连接;S2、找平,通过钢立柱上侧的通过内外双层螺纹锁紧的柱体伸缩机构将所有的连接柱调整至同等的高度,提高柱体伸缩机构调节后的锁紧效果。该基础设施提升工程栈桥及钻孔平台施工方法,螺纹调节杆底部通过与剪叉监测臂内部滑动连接槽的滑动作用打开剪叉监测臂,使得剪叉监测臂的两侧分别和对应的钢立柱进行抵接,使得该基础设施提升工程栈桥及钻孔平台施工方法解决了现有的栈桥和钻孔平台未设置栈桥及钻孔平台实时监测机构,潜在风险无法被及时观测的问题。
Infrastructure lifting engineering trestle and drilling platform construction method
The invention discloses an infrastructure lifting project trestle and drilling platform construction method, and relates to the field of bridge construction, the infrastructure lifting project trestle and drilling platform construction method comprises the following steps: S1, building a foundation: mounting and connecting the bottom of a steel stand column and the water bottom according to a construction method formulated by an engineer; and S2, leveling is conducted, all the connecting columns are adjusted to the same height through a column body telescopic mechanism which is located on the upper side of the steel stand column and locked through inner and outer double-layer threads, and the locking effect after adjustment of the column body telescopic mechanism is improved. According to the infrastructure lifting project trestle and drilling platform construction method, the bottom of a threaded adjusting rod opens a shear-fork monitoring arm through the sliding effect of a sliding connecting groove in the shear-fork monitoring arm, so that the two sides of the shear-fork monitoring arm abut against corresponding steel stand columns correspondingly; according to the construction method for the trestle and the drilling platform of the infrastructure lifting project, the problem that potential risks cannot be observed in time due to the fact that an existing trestle and an existing drilling platform are not provided with a trestle and drilling platform real-time monitoring mechanism is solved.
本发明公开了基础设施提升工程栈桥及钻孔平台施工方法,涉及大桥建造领域,包括以下步骤:S1、筑基,根据工程师制定的施工方法将钢立柱底部与水底进行安装连接;S2、找平,通过钢立柱上侧的通过内外双层螺纹锁紧的柱体伸缩机构将所有的连接柱调整至同等的高度,提高柱体伸缩机构调节后的锁紧效果。该基础设施提升工程栈桥及钻孔平台施工方法,螺纹调节杆底部通过与剪叉监测臂内部滑动连接槽的滑动作用打开剪叉监测臂,使得剪叉监测臂的两侧分别和对应的钢立柱进行抵接,使得该基础设施提升工程栈桥及钻孔平台施工方法解决了现有的栈桥和钻孔平台未设置栈桥及钻孔平台实时监测机构,潜在风险无法被及时观测的问题。
Infrastructure lifting engineering trestle and drilling platform construction method
基础设施提升工程栈桥及钻孔平台施工方法
SUN DONGJIE (Autor:in) / GUAN TIANZHU (Autor:in) / WANG HONGJIAN (Autor:in) / QIU XIANGJIE (Autor:in) / LI YAODE (Autor:in)
02.07.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E01D
BRIDGES
,
Brücken
/
E02B
HYDRAULIC ENGINEERING
,
Wasserbau
/
G01L
Messen von Kraft, mechanischer Spannung, Drehmoment, Arbeit, mechanischer Leistung, mechanischem Wirkungsgrad oder des Drucks von Fluiden
,
MEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
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