CN-121976534-A - Guide frame for preventing axial deviation of wave pile
Abstract
The invention discloses a guide frame for preventing axial deviation of a wave pile, which relates to the technical field of wave pile installation, and the technical scheme comprises an adjusting shell, wherein one side of the adjusting shell is provided with a first motor, the output end of the first motor is provided with a first threaded rod, the first threaded rod is in threaded connection with a transmission block, the upper part of the transmission block is fixedly connected with a guide rail, the bottom of the transmission block is fixedly connected with a sliding block, the inside of the sliding block is fixedly connected with a locking shell, the first motor is started to drive the first threaded rod to rotate, the first threaded rod rotates to drive the guide rails on two sides to move, the distance between the guide rails is adjusted according to the specification of the wave pile, the guide rails are matched with the wave pile, the fourth motor is started to drive the locking assembly to drive after the adjustment, the locking assembly can drive the rotating fork to rotate, the moving rod is driven to move through the rotation of the rotating fork, the moving rod moves to drive the locking pin to move, and the locking pin can be inserted into the locking jack.
Inventors
- WANG LIN
- XIAO XINPING
- LI ZHENGQUAN
- WANG KUIHUA
- FENG HUABIN
- ZHANG ZHILIN
- WANG KUI
- WU LINHUI
- YANG TAO
- Nan Mingqing
- DING WENMING
Assignees
- 中铁水利水电规划设计集团有限公司
Dates
- Publication Date
- 20260505
- Application Date
- 20260401
Claims (8)
- 1. The utility model provides a prevent guide frame of wave stake axis deviation, includes regulation casing (1), its characterized in that, regulation casing (1) one side is provided with first motor (5), first motor (5) output is provided with first threaded rod (8), first threaded rod (8) threaded connection has driving piece (7), driving piece (7) upper portion fixedly connected with guided way (2), driving piece (7) bottom fixedly connected with slider (20), slider (20) inside fixedly connected with locking casing (23), locking casing (23) one side is provided with fourth motor (24), fourth motor (24) output is provided with locking subassembly, locking subassembly sliding connection has movable rod (29), sliding connection between movable rod (29) and the locking casing (23), movable rod (29) are kept away from locking casing (23) one side fixedly connected with locking pin (22), locking jack (9) have been seted up to regulation casing (1) both sides, and driving guiding way (2) of driving first motor (5) both sides in the device use take place the motion of wave stake, thereby drive locking subassembly (24) and take place after the fourth motor (24) output is provided with locking subassembly, locking subassembly sliding connection has moved (29) between locking casing (23), the control locking pin (22) is inserted into the locking jack (9) to quickly complete position locking.
- 2. A guiding frame for preventing axial deviation of a wave pile according to claim 1, wherein the locking assembly comprises a worm (25) arranged at the output end of a fourth motor (24), worm wheels (26) are connected to two sides of the worm (25) in a meshed mode, and a rotating shaft (27) is fixedly connected to the worm wheels (26).
- 3. A guiding frame for preventing axial deviation of a wave pile according to claim 2, characterized in that the rotating shaft (27) is rotatably connected with the locking shell (23), the rotating shaft (27) is fixedly connected with a rotating fork (28), and a moving rod (29) is slidably connected with one side of the rotating fork (28) away from the rotating shaft (27).
- 4. A guiding frame for preventing axial deviation of a wave pile according to claim 1, wherein a sliding rail (21) is fixedly connected inside the adjusting housing (1), and a sliding block (20) is slidingly connected to the upper part of the sliding rail (21).
- 5. A guiding frame for preventing axial deviation of a wave pile according to claim 1, characterized in that the lower part of the adjusting shell (1) is provided with a lifting shell (3), and the bottom of the lifting shell (3) is fixedly connected with a supporting leg (4).
- 6. A guiding frame for preventing axial deviation of a wave pile according to claim 5, characterized in that a third motor (10) is arranged inside the supporting leg (4), a second threaded rod (11) is arranged at the output end of the third motor (10), the second threaded rod (11) is in threaded connection with a ground grabbing nail (12), and the ground grabbing nail (12) is in sliding connection with the supporting leg (4).
- 7. The guide frame for preventing axial deviation of wave piles according to claim 5, wherein a second motor (6) is arranged on one side of the lifting shell (3), a first gear (13) is arranged at the output end of the second motor (6), the first gear (13) is connected with a second gear (14) in a meshed mode, a third threaded rod (15) is fixedly connected on one side of the second gear (14), and the third threaded rod (15) is rotatably connected with the lifting shell (3).
- 8. The guide frame for preventing axial deviation of wave piles according to claim 7, wherein the third threaded rod (15) is in threaded connection with a moving block (16), two sides of the moving block (16) are rotationally connected with rotating wheels (17), the rotating wheels (17) are in transmission connection with the lifting shell (3), one side of each rotating wheel (17) is rotationally connected with a rotating rod (18), the upper part of each rotating rod (18) is rotationally connected with a lifting table (19), and the upper part of each lifting table (19) is fixedly connected with an adjusting shell (1).
Description
Guide frame for preventing axial deviation of wave pile Technical Field The invention relates to the technical field of wave pile installation, in particular to a guide frame for preventing axial deviation of a wave pile. Background A guide frame for preventing axial deviation of a wave pile is mainly used for positioning and guiding in the wave pile construction process, can effectively control axial deviation of a pile body in the installation process, and improves the wave pile construction precision and the overall structural stability. The wave pile guide device can maintain reliable guide function under complex hydrology and construction environment, reduce problems of pile body inclination, deviation and the like, ensure that the wave pile is accurately positioned according to a design axis, and improve pile forming quality and construction qualification rate. By standardizing the positioning posture of the pile body, the later adjustment and rework cost is reduced, and the construction efficiency and safety are improved. The guide frame is suitable for wave pile construction requirements under different working conditions, is simple and convenient to operate and high in stability, can effectively lighten construction difficulty, guarantees the integrity and durability of an engineering structure, is suitable for various wave pile construction scenes such as river channel remediation, embankment reinforcement and bank protection engineering, and provides reliable positioning guarantee for water conservancy and bank slope protection engineering. In the actual use process of the traditional device, the guide frame for preventing the axial deviation of the wave pile is mainly of a fixed size or rigid structure, is difficult to adaptively match with the appearance errors of the wave pile and pile bodies of different specifications, is easy to generate uneven local stress and overlarge guide gaps, has poor universality and troublesome replacement adaptation, and affects the construction precision and efficiency, so that the guide frame for preventing the axial deviation of the wave pile is provided. Disclosure of Invention The invention aims to solve the problems that in the prior art, the traditional guide frame for preventing the axial deviation of a wave pile is mostly of a fixed size or a rigid structure, the appearance error of the wave pile and pile bodies with different specifications are difficult to be adaptively matched, local uneven stress and overlarge guide clearance are easy to occur, the universality is poor, the replacement and the adaptation are troublesome, and the construction precision and the efficiency are influenced. In order to achieve the above purpose, the present invention adopts the following technical scheme: The utility model provides a prevent leading truck of wave stake axis deviation, includes adjusts the casing, it is provided with first motor to adjust casing one side, first motor output is provided with first threaded rod, first threaded rod threaded connection has the drive block, drive block upper portion fixedly connected with guided way, drive block bottom fixedly connected with slider, the inside fixedly connected with locking casing of slider, locking casing one side is provided with the fourth motor, fourth motor output is provided with locking subassembly, locking subassembly sliding connection has the movable rod, sliding connection between movable rod and the locking casing, movable rod is kept away from locking casing one side fixedly connected with locking pin, locking jack has been seted up to the regulation casing both sides, starts first motor drive both sides's guided way and takes place to remove according to wave stake specification adjustment interval, drives the locking subassembly transmission through the fourth motor after accomplishing the regulation, and locking subassembly drives the locking pin and inserts locking jack inside quick completion position locking, first both ends threaded rod reverse, drive both sides's guided way synchronous movement in the rotation process. The technical scheme further comprises the following steps: The locking assembly comprises a worm arranged at the output end of the fourth motor, worm wheels are connected to two sides of the worm in a meshed mode, and the worm wheels are fixedly connected with rotating shafts. The rotary shaft is rotationally connected with the locking shell, the rotary shaft is fixedly connected with a rotary fork, one side, far away from the rotary shaft, of the rotary fork is slidably connected with a movable rod, and the bottom of the movable rod is provided with a connector through which the rotary fork is slidably connected. The inside fixedly connected with slide rail of regulation casing, slide rail upper portion sliding connection has the slider. The lower part of the adjusting shell is provided with a lifting shell, and the bottom of the lifting shell is fixedly connected with a sup