CN217839742U - Electric creeping formwork device for high pier construction - Google Patents
Electric creeping formwork device for high pier construction Download PDFInfo
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- CN217839742U CN217839742U CN202222234423.2U CN202222234423U CN217839742U CN 217839742 U CN217839742 U CN 217839742U CN 202222234423 U CN202222234423 U CN 202222234423U CN 217839742 U CN217839742 U CN 217839742U
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- shell
- climbing
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- high pier
- rod
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Abstract
The utility model discloses an electronic creeping formwork device of high mound construction, the subassembly that climbs, the platform that climbs, detection device, template device climb, the subassembly that climbs includes the guide rail cat ladder, climbs the rail, guide rail cat ladder and climbs rail sliding connection, the platform that climbs sets up in the upper end of climbing the rail, detection device includes shell, driving medium, elastic component, shell fixed mounting is in the one end of climbing the platform, the elastic component is installed at the both ends of shell, beneficial effect lies in: when climbing the mould and moving in-process height mound and be in the slope, the rotor plate moves according to inclination, and when inclination exceeded the limit value, the elastic component that the rotor plate will restrict through the driving medium unclamped to through the removal of elastic component, prevent the relative movement between guide rail cat ladder and the climbing rail, detect the straightness that hangs down of height mound, alleviate personnel's work load simultaneously, also improve to some extent in the aspect of personnel's safety moreover.
Description
Technical Field
The utility model relates to a high mound creeping formwork field especially relates to an electronic creeping formwork device of high mound construction.
Background
The climbing formwork consists of a climbing formwork, a climbing frame (or the climbing formwork does not have the climbing frame) and climbing equipment, and is an effective tool in high-rise structures such as a construction shear wall system, a cylinder system, piers and the like. Because of the self-climbing capability, the hoisting of hoisting machinery is not needed, and the hoisting workload of the transportation machinery in construction is reduced. The scaffold is hung on the self-climbing formwork, so that an external scaffold in the construction process can be omitted. In conclusion, the climbing formwork can reduce the number of hoisting machines and accelerate the construction speed, so the climbing formwork has better economic benefit.
Modern bridge engineering, especially super-huge bridge, major structure column, pier stud etc. are also increasing more and more highly, the construction requirement is also increasing more and more high, the construction degree of difficulty is increasing more and more, the pier stud that becomes more and more high to the safety requirement often needs creeping formwork device to process, current creeping formwork device, for example china patent of a bridge high mound cantilever creeping formwork construction equipment of No. CN215629470U, then promote the mould to move through first drive assembly according to the demand, reach the assigned position, such mode often all needs the staff of measurement to check its plane position, straightness that hangs down after every template promotion or concatenation, this measurement work seems harder, not only work load is great, and also there are more hidden dangers in the aspect of the safety.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an electronic creeping formwork device of high mound construction just for solving above-mentioned problem.
The utility model discloses a following technical scheme realizes above-mentioned purpose:
an electric climbing formwork device for high pier construction comprises a climbing assembly, a climbing platform, a detection device and a template device;
the climbing assembly comprises a guide rail crawling ladder and a climbing rail, the guide rail crawling ladder is connected with the climbing rail in a sliding mode, and limiting holes are formed in the guide rail crawling ladder and the climbing rail and used for driving the device to climb after high-pier materials are solidified;
the climbing platform is arranged at the upper end of the climbing rail and is used for mounting a supporting device of a movable template;
the detection device comprises a shell, a transmission part and an elastic part;
the outer shell is fixedly arranged at one end of the climbing platform; a rotating plate is rotatably mounted on one side of the shell, a side edge of the rotating plate close to the high pier is a vertically arranged detection edge, the detection edge is abutted against a vertical surface of the high pier, and the rotating plate is started to rotate when the high pier exceeds a limit inclination angle;
the elastic pieces are arranged at the two ends of the shell and used for preventing the relative sliding of the guide rail crawling ladder and the climbing rail after the high pier exceeds the limited inclination angle so as to limit the upward movement of the device;
the transmission part is arranged in the shell and used for transmitting the rotation amount of the rotating plate to the elastic part through the transmission part when the high pier exceeds the limit inclination angle so as to drive the elastic part to prevent the device of the utility model from moving upwards;
the template device is movably arranged at the upper end of the climbing platform and used for limiting high pier materials needing to be solidified and preventing the high pier materials from leaking.
Preferably: the transmission part comprises a cross rod, a vertical rod and a rotating shaft;
the cross rod is rotatably arranged on the shell, and one end of the cross rod is fixedly connected with the rotating plate;
the vertical rod is arranged on one side of the cross rod, the vertical rod is rotatably arranged in the shell, and the vertical rod is meshed with the cross rod through a bevel gear;
the pivot sets up the below of montant, the one end and the shell of pivot are rotated and are connected, and the ellipse wheel is installed to the other end, the pivot with the montant passes through the bevel gear meshing, the lower extreme of ellipse wheel is provided with the movable plate that can reciprocate, the below of movable plate is provided with mobilizable control panel, the control panel with install the pressure spring between the shell.
Preferably: the movable plate with the first telescopic link of shell is connected, first telescopic link with the movable plate is articulated, the control panel passes through the second telescopic link to be installed on the shell, just the movable plate with install universal ball between the control panel.
Preferably: the elastic component comprises a limiting rod, the limiting rod is slidably mounted at two ends of the shell, a spring is mounted between the limiting rod and the shell, the spring is in a force accumulation state in an initial state, the control plate limits the limiting rod to the limiting hole to move, so that the spring keeps in the force accumulation state, when a high pier exceeds a limit inclination angle, the rotating plate drives the control plate to move downwards to unlock the limiting rod, force is released by the spring, and the limiting rod is driven to be inserted into the limiting hole.
Preferably: the clamp plate is installed to the control panel upper end, just the clamp plate passes the shell, the clamp plate with be connected with the extension spring between the shell.
Preferably: the baffle plate device comprises a baffle plate and a supporting plate;
the baffle plate is arranged above the climbing platform;
the supporting plate is fixedly arranged on one side of the baffle plate and is slidably arranged at the upper end of the climbing platform.
Has the advantages that: when the high pier is inclined in the moving process of the creeping formwork, the rotating plate acts according to the inclination angle, when the inclination angle exceeds a limit value, the rotating plate loosens the limited elastic part through the transmission part, and prevents the guide rail ladder stand from moving relative to the climbing rail through the movement of the elastic part, so that the verticality of the high pier is detected, the workload of personnel is reduced, and the safety of the personnel is improved.
Drawings
Fig. 1 is a schematic space perspective view of an electric creeping formwork device for high pier construction according to the present invention;
fig. 2 is a schematic diagram of a detection device of the electric creeping formwork device for high pier construction according to the present invention;
fig. 3 is an enlarged view of a part a in fig. 2 of the electric creeping formwork device for high pier construction according to the present invention;
fig. 4 is an enlarged view of a position B in fig. 2 of the electric creeping formwork device for high pier construction according to the present invention;
fig. 5 is an enlarged view of the electric creeping formwork device for high pier construction at the position C in fig. 2;
fig. 6 is the utility model discloses a template device structure chart of electronic creeping formwork device of high mound construction.
The reference numerals are explained below:
1. a climbing assembly; 101. a guide rail ladder stand; 102. climbing a rail; 2. Climbing a platform; 3. a detection device; 301. a first telescopic rod; 302. a housing; 303. a cross bar; 304. a vertical rod; 305. an elliptical wheel; 306. a rotating shaft; 307. rotating the plate; 308. moving the plate; 309. a control panel; 310. a spring; 311. a limiting rod; 312. pressing a plate; 313. a second telescopic rod; 4. a template device; 401. a baffle plate; 402. and a support plate.
Detailed Description
The present invention will be further explained with reference to the accompanying drawings:
as shown in fig. 1, an electric climbing formwork device for high pier construction comprises a climbing assembly 1, a climbing platform 2, a detection device 3 and a formwork device 4;
as shown in fig. 6, the climbing assembly 1 includes a rail ladder 101 and a climbing rail 102, the rail ladder 101 is slidably connected to the climbing rail 102, and both the rail ladder 101 and the climbing rail 102 are provided with a limiting hole for driving the device to climb up after the high pier material is solidified, so as to reduce the workload of artificial movement and improve the safety of personnel;
the climbing platform 2 is arranged at the upper end of the climbing rail 102 and is used for installing a supporting device of a movable mould plate, so that the stability of the mould in the moving process is ensured, and the working efficiency of the device is improved;
as shown in fig. 2 to 5, the detecting device 3 includes a housing 302, a transmission member, and an elastic member;
the housing 302 is fixedly installed at one end of the climbing platform 2; a rotating plate 307 is rotatably mounted on one side of the shell 302, the side edge of the rotating plate 307 close to the high pier is a vertically arranged detection edge, the detection edge is abutted against the vertical surface of the high pier, and the rotating plate 307 is started to rotate when the high pier exceeds a limit inclination angle, and rotates according to different inclination angles of the high pier to detect whether the inclination angle of the high pier is within an allowable range;
the elastic parts are arranged at the two ends of the shell 302 and are used for preventing the relative sliding of the guide rail crawling ladder 101 and the climbing rail 102 after the high pier exceeds the limited inclination angle so as to limit the upward movement of the device;
the transmission member is arranged inside the shell 302 and used for transmitting the rotation amount of the rotating plate 307 to the elastic member through the transmission member when the high pier exceeds the limit inclination angle so as to drive the elastic member to prevent the device from moving upwards, and prevent the rotating plate 307 from angle misjudgment due to the bulge on the surface of the high pier;
In this embodiment: the transmission part comprises a cross rod 303, a vertical rod 304 and a rotating shaft 306;
the cross bar 303 is rotatably mounted on the housing 302, and one end of the cross bar is fixedly connected with the rotating plate 307;
the vertical rod 304 is arranged on one side of the cross rod 303, the vertical rod 304 is rotatably arranged in the shell 302, and the vertical rod 304 is meshed with the cross rod 303 through a bevel gear;
the rotating shaft 306 is arranged below the vertical rod 304, one end of the rotating shaft 306 is rotatably connected with the housing 302, the elliptical wheel 305 is mounted at the other end of the rotating shaft 306, the rotating shaft 306 is meshed with the vertical rod 304 through a bevel gear, a moving plate 308 capable of moving up and down is arranged at the lower end of the elliptical wheel 305, a movable control plate 309 is arranged below the moving plate 308, a pressure spring is mounted between the control plate 309 and the housing 302, when the rotating plate 307 rotates, the rotating plate 307 is meshed with the bevel gear of the vertical rod 304 through a cross rod 303 to transmit energy to the rotating shaft 306, the rotating shaft 306 drives the elliptical wheel 305 to rotate while rotating, the moving plate 308 is pressed downward while the elliptical wheel 305 rotates, the moving plate 308 is pressed downward by the rotating elliptical wheels 305 at two ends of the moving plate 308, so that the moving plate 308 moves downward and drives the control plate 309 while the moving downward, and the control plate 309 is separated from the restriction of the elastic member.
In this embodiment: the movable plate 308 is connected with the first telescopic rod 301 of the shell 302, the first telescopic rod 301 is hinged with the movable plate 308, the control plate 309 is installed on the shell 302 through the second telescopic rod 313, and a universal ball is installed between the movable plate 308 and the control plate 309, so that the movable plate 308 can rotate around the connection part while moving is guaranteed, and the universal ball can enable the movable plate 308 to rotate so as not to drive the control plate 309 to rotate along with the rotation when the movable plate 308 rotates.
In this embodiment: the elastic piece comprises a limiting rod 311, the limiting rod 311 is slidably mounted at two ends of the shell 302, a spring 310 is mounted between the limiting rod 311 and the shell 302, the spring 310 is in a force accumulation state in an initial state, the control plate 309 limits the limiting rod 311 to move towards a limiting hole so that the spring 310 is kept in the force accumulation state, when the high pier exceeds a limited inclination angle, the rotating plate 307 drives the control plate 309 to move downwards through the transmission piece so as to unlock the limiting rod 311, the spring 310 releases force and drives the limiting rod 311 to be inserted into the limiting hole, and the limiting rod 311 is driven to move through the action of the spring 310 so that the limiting rod 311 moves to a specified position.
In this embodiment: the upper end of the control plate 309 is provided with a pressing plate 312, the pressing plate 312 penetrates through the shell 302, a tension spring is connected between the pressing plate 312 and the shell 302, when the reset is needed, the pressing plate 312 is pressed to move downwards, the tension spring is compressed, then the limiting rod 311 is pushed to return to the initial position, the spring 310 on the limiting rod 311 is compressed at the same time, the pressing plate 312 is released, and the moving plate 308 limits the movement of the limiting rod 311.
In this embodiment: the template device 4 comprises a baffle plate 401 and a supporting plate 402;
the baffle 401 is arranged above the climbing platform 2;
the supporting plate 402 is fixedly installed on one side of the baffle 401, and is slidably installed at the upper end of the climbing platform 2, the supporting plate 402 is moved and drives the baffle 401 to move to a specified position, and the smoothness of processing is guaranteed.
In the structure, when the climbing device is used, firstly, the guide rail ladder 101 is fixed on a high pier, then the climbing rail 102 moves upwards along the guide rail ladder 101, and simultaneously drives the climbing platform 2 to move upwards, the rotating plate 307 is attached to the surface of the high pier in the moving process, when the rotating plate 307 rotates, the rotating plate 307 is meshed with bevel gears of the vertical rods 304 through the transverse rods 303 to transmit energy to the rotating shaft 306, the rotating shaft 306 drives the elliptical wheel 305 to rotate while rotating, the moving plate 308 is pressed downwards while the elliptical wheel 305 rotates, the moving plate 308 stretches the first telescopic rod 301, so that the moving plate 308 moves downwards, the moving plate 308 is driven to move along with the moving plate 309 while moving downwards, the second telescopic rod 313 at the lower end of the control plate 309 is compressed, due to the movement of the control plate 309, the motion limitation of the limiting rod 311 is removed, after the limiting of the spring 310 is removed in a power accumulation state, the limiting rod 311 is driven to be inserted into the limiting hole, the device is prevented from climbing upwards, when the device needs to be reset, the pressing plate 312 moves downwards, and simultaneously, the pressing plate 312 compresses the compression spring 311, and then the limiting rod 311 is pushed to return to the starting position 311, and the moving plate 308 is released.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.
Claims (6)
1. The utility model provides an electronic creeping formwork device of high mound construction which characterized in that: comprises a climbing assembly (1), a climbing platform (2), a detection device (3) and a template device (4);
the climbing assembly (1) comprises a guide rail crawling ladder (101) and a climbing rail (102), wherein the guide rail crawling ladder (101) is connected with the climbing rail (102) in a sliding mode, and limiting holes are formed in the guide rail crawling ladder (101) and the climbing rail (102) and used for driving the device to climb after high-pier materials are solidified;
the climbing platform (2) is arranged at the upper end of the climbing rail (102) and is used for installing a supporting device of a movable template;
the detection device (3) comprises a shell (302), a transmission piece and an elastic piece;
the outer shell (302) is fixedly arranged at one end of the climbing platform (2); a rotating plate (307) is rotatably arranged on one side of the shell (302); the side edge of the rotating plate (307) close to the high pier is a vertically arranged detection edge, the detection edge is abutted against the vertical surface of the high pier, and the rotating plate (307) is started to rotate when the inclination angle of the high pier exceeds a limit inclination angle;
the elastic pieces are arranged at two ends of the shell (302) and are used for preventing the relative sliding of the guide rail crawling ladder (101) and the climbing rail (102) after a high pier exceeds a limit inclination angle so as to limit the upward movement of the device;
the transmission piece is arranged inside the shell (302) and is used for transmitting the rotation amount of the rotating plate (307) to the elastic piece through the transmission piece when the high pier exceeds the limit inclination angle so as to drive the elastic piece to prevent the device from moving upwards;
the template device (4) is movably arranged at the upper end of the climbing platform (2) and used for limiting high pier materials needing to be solidified and preventing the high pier materials from leaking.
2. The electric creeping formwork device for high pier construction according to claim 1, wherein: the transmission piece comprises a cross rod (303), a vertical rod (304) and a rotating shaft (306);
the cross rod (303) is rotatably arranged on the shell (302), and one end of the cross rod is fixedly connected with the rotating plate (307);
the vertical rod (304) is arranged on one side of the cross rod (303), the vertical rod (304) is rotatably installed in the shell (302), and the vertical rod (304) is meshed with the cross rod (303) through a bevel gear;
the rotating shaft (306) is arranged below the vertical rod (304), one end of the rotating shaft (306) is rotatably connected with the shell (302), an elliptical wheel (305) is arranged at the other end of the rotating shaft (306), the rotating shaft (306) is meshed with the vertical rod (304) through a bevel gear, a movable plate (308) capable of moving up and down is arranged at the lower end of the elliptical wheel (305), and a movable control plate (309) is arranged below the movable plate (308); a pressure spring is arranged between the control plate (309) and the shell (302).
3. The electric creeping formwork device for high pier construction according to claim 2, wherein: the movable plate (308) is connected with a first telescopic rod (301) of the shell (302), the first telescopic rod (301) is hinged to the movable plate (308), the control panel is installed on the shell (302) through a second telescopic rod (313), and a universal ball is installed between the movable plate (308) and the control panel (309).
4. The electric creeping formwork device for high pier construction according to claim 3, wherein: the elastic piece comprises a limiting rod (311), the limiting rod (311) is slidably mounted at two ends of the shell (302), a spring (310) is mounted between the limiting rod (311) and the shell (302), the spring (310) is in a power accumulation state in an initial state, the limiting rod (311) is limited by the control panel (309) to move towards a limiting hole, so that the spring (310) is kept in the power accumulation state, and when a high pier exceeds a limit inclination angle, the rotating plate (307) drives the control panel (309) to move downwards through the transmission piece to unlock the limiting rod (311), so that the spring (310) releases power and drives the limiting rod (311) to be inserted into the limiting hole.
5. The electric creeping formwork device for high pier construction according to claim 2, wherein: the pressing plate (312) is installed to control panel (309) upper end, the pressing plate passes shell (302), pressing plate (312) with be connected with the extension spring between shell (302).
6. The electric creeping formwork device for high pier construction according to claim 1, wherein: the template device (4) comprises a baffle plate (401) and a support plate (402);
the baffle plate (401) is arranged above the climbing platform (2);
the supporting plate (402) is fixedly arranged on one side of the baffle plate (401) and is slidably arranged at the upper end of the climbing platform (2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222234423.2U CN217839742U (en) | 2022-08-24 | 2022-08-24 | Electric creeping formwork device for high pier construction |
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CN202222234423.2U CN217839742U (en) | 2022-08-24 | 2022-08-24 | Electric creeping formwork device for high pier construction |
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CN217839742U true CN217839742U (en) | 2022-11-18 |
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CN202222234423.2U Active CN217839742U (en) | 2022-08-24 | 2022-08-24 | Electric creeping formwork device for high pier construction |
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CN (1) | CN217839742U (en) |
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- 2022-08-24 CN CN202222234423.2U patent/CN217839742U/en active Active
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