Hydraulic climbing formwork device applied to building construction and method of using the same
By installing an oil-coated ring and a sponge layer structure at the end of the support telescopic outer rod of the hydraulic climbing formwork equipment, the problem of rust caused by friction between the support telescopic inner and outer rods is solved, improving the ease of use and lifespan of the equipment.
Patent Information
- Application Number
- CN202310669540.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-07
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2043-06-07
AI Technical Summary
In existing hydraulic climbing formwork equipment, friction occurs when the inner and outer telescopic support rods are plugged together, causing rust to appear on the contact surfaces, making it difficult to use and reducing the equipment's lifespan.
An oiling ring is installed at the end of the supporting telescopic outer rod. The inner side of the oiling ring has a central hole ring and a rubber layered extrusion layer. The inner side of the central hole ring has a sponge layer for storing and applying lubricating oil. The rubber layer increases the amount of lubricating oil leaching out. The sponge layer is applied to the outer side of the supporting telescopic inner rod to prevent rust from forming.
This effectively prevents rust from forming on the contact surfaces of the inner and outer support rods, improving the ease of use and lifespan of the equipment.
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Figure CN116657891B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field related to building construction, and particularly relates to a hydraulic climbing formwork device applied to building construction and a use method thereof. BACKGROUND
[0002] The hydraulic climbing formwork is a new technology combining the sliding formwork and the formwork, which absorbs the advantages of the formwork technology, such as pouring concrete by the conventional method, simple labor organization and construction management, less restriction by external conditions, easy guarantee of the concrete surface quality, and avoidance of common defects of the sliding formwork construction, and construction deviation can be eliminated layer by layer. However, the support telescopic inner rod and the support telescopic outer rod of the hydraulic climbing formwork device applied to building construction are usually connected by insertion, and friction exists between them, and when rust appears on the contact surface, it is easy to make the use more difficult and greatly reduce the service life.
[0003] The existing technology has the following problems: the support telescopic inner rod and the support telescopic outer rod of the hydraulic climbing formwork device applied to building construction are usually connected by insertion, and friction exists between them, and when rust appears on the contact surface, it is easy to make the use more difficult and greatly reduce the service life.
[0004] SUMMARY
[0005] The hydraulic climbing formwork device for building construction and the use method thereof provided by the present application can solve the problem that the support telescopic inner rod and the support telescopic outer rod of the hydraulic climbing formwork device for building construction are usually connected by insertion and have friction with each other, and the use becomes more difficult and the service life is greatly reduced when rust appears on the contact surface.
[0006] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a hydraulic climbing formwork device for building construction and the use method thereof, comprising a formwork device placing plate and a connecting plug column arranged at the upper end position of the formwork device placing plate.
[0007] A connecting support strip block is arranged at the upper end position of the connecting plug column.
[0008] A support telescopic outer rod is arranged at the end position of the connecting support strip block.
[0009] A formwork device turnover plate is arranged at the left end position of the connecting support strip block.
[0010] An attached wall body is arranged at the left side position of the formwork device turnover plate.
[0011] A hydraulic system is arranged at the lower end near the left side position of the formwork device placing plate.
[0012] Connecting guide rails are arranged at the middle position of the hydraulic system and on the attached wall body.
[0013] A support platform is arranged at the outer side position of the hydraulic system.
[0014] An oiling ring is arranged at the end position of the support telescopic outer rod, a middle hole ring is arranged at the inner side position of the oiling ring, the middle hole ring is hollow and has small holes on the inner side surface, a rubber layer extrusion layer and a connecting column body are connected to the upper side of the middle hole ring, a sponge layer is arranged at the inner side position of the middle hole ring, the rubber layer extrusion layer and the middle hole ring are used to store lubricating oil, the sponge layer is used to absorb and apply the lubricating oil, and the rubber layer extrusion layer can increase the amount of lubricating oil leaching.
[0015] Preferably, an extrusion cap is arranged at the upper end position of the rubber layer extrusion layer, branch columns are arranged at the two end positions of the extrusion cap, a connecting spring is arranged at the lower side position of the branch column of the extrusion cap, the lower end position of the connecting spring is connected to the connecting column body by welding, an oil injection plug is arranged at the middle position of the extrusion cap, the lower half of the oil injection plug is a threaded rod, and the oil injection plug is rotationally connected to the extrusion cap by the lower half.
[0016] Preferably, the oiling ring is provided with a magnetic sheet on the lower right side, which is connected to the oiling ring by means of glue.
[0017] Preferably, the outer side of the support platform is provided with an outer protective net, which is a metal stainless steel mesh structure, and the outer protective net is connected to the support platform by welding.
[0018] Preferably, the right end side of the template device turnover plate is provided with a connecting strip block, which is connected to the template device turnover plate by welding.
[0019] Preferably, the left upper side of the support telescopic outer rod is provided with a support telescopic inner rod, which is connected to the support telescopic outer rod by inserting and connected to the connecting strip block by a rotating shaft.
[0020] Preferably, the outer side of the connecting guide rail is provided with a protruding buckle, which is an integral structure with the connecting guide rail.
[0021] Preferably, the hydraulic system is provided with a reset pin, which is rotatably connected to the hydraulic system, and the reset pin is provided with a reset spring inside.
[0022] Preferably, the position of the embedded part plate is provided with a connecting bolt, which is rotatably inserted into the embedded part plate.
[0023] A hydraulic climbing formwork device used in building construction and its use method, the method steps are as follows:
[0024] Step one: when using, first, the hydraulic system moves upward to lift the connecting guide rail, the lower part of the hydraulic system moves downward, the reset pin resets repeatedly by the spring inside to lift the protruding buckle, and the connecting bolt between the support platform and the connecting embedded part plate is removed when the connecting guide rail reaches the specified position.
[0025] Step two: connect the connecting guide rail and the embedded part plate through the connecting bolt, then rotate the reset pin, and the angle of the reset pin at this time is clamped to the protruding buckle, so that the support platform will not be lowered, the upper part of the hydraulic system moves upward, the reset pin clamps the protruding buckle, then drives the lower part of the hydraulic system to move upward, the reset pin moves downward because of the spring inside, and is reset to clamp the protruding buckle again after reaching the position, and the whole support platform is lifted by repeating the above steps.
[0026] Compared with the prior art, the hydraulic climbing formwork device used in building construction and its use method have the following beneficial effects:
[0027] In the hydraulic climbing formwork equipment applied to building construction, an oiling ring is arranged at the end position of the supporting telescopic outer rod, a middle hole ring is arranged at the inner side position of the oiling ring, the middle hole ring is hollow and the inner side surface thereof is provided with a small hole, a rubber layer extrusion layer and a connecting column body are connected to the upper side of the middle hole ring, a sponge layer is arranged at the inner side position of the middle hole ring, the rubber layer extrusion layer and the inside of the middle hole ring are used for storing lubricating oil, the sponge layer is used for absorbing and applying the lubricating oil, the rubber layer extrusion layer can increase the leaching amount of the lubricating oil, and the inner side wall of the sponge layer is attached to the outer side surface of the supporting telescopic inner rod for application, because the formwork device turnover plate is turned over, the supporting telescopic inner rod is inserted and moved, the sponge layer can repeatedly apply, and the phenomenon that the contact surface of the supporting telescopic inner rod and the supporting telescopic outer rod of the hydraulic climbing formwork equipment applied to building construction is rusted, which makes the use more difficult and greatly reduces the service life, can be effectively avoided. BRIEF DESCRIPTION OF DRAWINGS
[0028] Figure 1 It is the overall structure schematic diagram of the hydraulic climbing formwork equipment applied to building construction.
[0029] Figure 2 It is the structure schematic diagram of the oiling ring position of the hydraulic climbing formwork equipment applied to building construction.
[0030] Figure 3 It is the cross section structure schematic diagram of the oiling ring of the hydraulic climbing formwork equipment applied to building construction.
[0031] Figure 4 It is the connecting guide rail moving structure schematic diagram of the hydraulic climbing formwork equipment applied to building construction.
[0032] Figure 5 It is the supporting platform climbing structure schematic diagram of the hydraulic climbing formwork equipment applied to building construction.
[0033] In the figure: 1, attached wall body; 2, formwork device placing plate; 3, connecting plug column; 4, formwork device turnover plate; 5, connecting strip block; 6, supporting telescopic inner rod; 7, supporting telescopic outer rod; 8, connecting support strip block; 9, outer protection net; 10, supporting platform; 11, hydraulic system; 12, connecting guide rail; 13, oiling ring; 14, extrusion cap; 15, connecting column body; 16, absorbing iron magnet piece; 17, middle hole ring; 18, sponge layer; 19, connecting spring; 20, rubber layer extrusion layer; 21, oil injection plug; 22, embedded part plate; 23, connecting bolt; 24, reset clamping needle; 25, connecting clamping piece; 26, protruding buckle. DETAILED DESCRIPTION
[0034] Clearly, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the protection scope of the present application.
[0035] The present application provides a hydraulic climbing formwork device for building construction and a method for using the same, as shown in the drawings. Figures 1-3 As shown in the drawings, a hydraulic climbing formwork device for building construction and a method for using the same, comprising a formwork device placing plate 2 and a connecting plug column 3 arranged at the upper end position of the formwork device placing plate 2; a connecting support strip block 8 is arranged at the upper end position of the connecting plug column 3; a support telescopic outer rod 7 is arranged at the end position of the connecting support strip block 8; a formwork device turnover plate 4 is arranged at the left end position of the connecting support strip block 8; a wall body 1 is arranged at the left side position of the formwork device turnover plate 4; a hydraulic system 11 is arranged at the lower end position close to the left side of the formwork device placing plate 2; a connecting guide rail 12 is arranged at the middle position of the hydraulic system 11 and on the wall body 1; a support platform 10 is arranged at the outer side position of the hydraulic system 11, an oiling ring 13 is arranged at the end position of the support telescopic outer rod 7, a middle hole ring 17 is arranged at the inner side position of the oiling ring 13, the middle hole ring 17 is hollow and has small holes arranged on the inner side surface, the middle hole ring 17 is connected with a rubber layer extrusion layer 20 and a connecting column body 15 arranged at the upper side of the middle hole ring 17, a sponge layer 18 is arranged at the inner side position of the middle hole ring 17, the rubber layer extrusion layer 20 and the middle hole ring 17 are used to store lubricating oil, the sponge layer 18 is used to absorb and apply the lubricating oil, the rubber layer extrusion layer 20 can increase the amount of lubricating oil leaching, the inner side wall of the sponge layer 18 is attached to the outer side surface of a support telescopic inner rod 6 to apply the lubricating oil, because the formwork device turnover plate 4 is turned over, the support telescopic inner rod 6 is inserted and moved, the sponge layer 18 can repeatedly apply the lubricating oil, the present application can effectively avoid the phenomenon that the contact surface of the support telescopic inner rod 6 and the support telescopic outer rod 7 of the hydraulic climbing formwork device for building construction is rusted, which makes the use more difficult and greatly reduces the service life.
[0036] As shown in the drawings, the upper end position of the rubber layer extrusion layer 20 is provided with an extrusion cap 14, the two end positions of the extrusion cap 14 are provided with branch columns, the lower side position of the branch column of the extrusion cap 14 is provided with a connecting spring 19, the lower end position of the connecting spring 19 is connected to the connecting column body 15 by welding, the connecting spring 19 can automatically reset after the extrusion cap 14 is pressed, which is very convenient. Figure 3 As shown in the drawings, the upper end position of the rubber layer extrusion layer 20 is provided with an extrusion cap 14, the two end positions of the extrusion cap 14 are provided with branch columns, the lower side position of the branch column of the extrusion cap 14 is provided with a connecting spring 19, the lower end position of the connecting spring 19 is connected to the connecting column body 15 by welding, the connecting spring 19 can automatically reset after the extrusion cap 14 is pressed, which is very convenient.
[0037] Figure 3 As shown, the middle position of the extrusion cap 14 is provided with an oil injection plug 21, the lower half of the oil injection plug 21 is a threaded rod, the oil injection plug 21 is rotatably connected to the extrusion cap 14 through the lower half, and the oil injection plug 21 is tightly closed by rotating the threaded rod, which facilitates the operation.
[0038] As shown in the drawings, Figure 2 As shown, the lower right side of the oiling ring 13 is provided with a magnetic sheet 16, which is connected to the oiling ring 13 by glue, and the oiling ring 13 is connected to the inner side of the support telescopic outer rod 7 by the magnetic sheet 16 to avoid movement.
[0039] As shown in the drawings, Figure 1 As shown, the outer side of the support platform 10 is provided with an outer protective net 9, which is a metal stainless steel mesh structure, and the outer protective net 9 is connected to the support platform 10 by welding, which can protect against falling.
[0040] As shown in the drawings, Figure 1 As shown, the right end side of the template device turnover plate 4 is provided with a connecting strip block 5, which is connected to the template device turnover plate by welding, the upper left side of the support telescopic outer rod 7 is provided with a support telescopic inner rod 6, which is connected to the support telescopic outer rod 7 by inserting and connected to the connecting strip block 5 by a rotating shaft, and the support telescopic inner rod 6 and the support telescopic outer rod 7 are connected to facilitate the turnover of the template device turnover plate 4.
[0041] As shown in the drawings, Figure 4 and Figure 5 As shown, the outer side of the connecting guide rail 12 is provided with a protruding buckle 26, which is an integral structure with the connecting guide rail 12, the hydraulic system 11 is provided with a reset pin 24, which is rotatably connected to the hydraulic system 11, the reset pin 24 is provided with a reset spring inside, the embedded part plate 22 is provided with a connecting bolt 23, which is rotatably inserted into the embedded part plate 22, when the reset pin 24 is at Figure 4 As shown, the rotating angle, the reset pin 24 is against the protruding buckle 26, the support platform 10 and the connecting embedded part plate 22 are connected by the connecting bolt 23, the hydraulic system 11 moves up to lift the connecting guide rail 12, the lower half of the hydraulic system 11 moves down, the reset pin 24 resets by the spring inside to repeatedly lift the protruding buckle 26, after the connecting guide rail 12 reaches the specified position, the connecting bolt 23 between the support platform 10 and the connecting embedded part plate 22 is removed, then the connecting guide rail 12 and the embedded part plate 22 are connected by the connecting bolt 23, and then the reset pin 24 is rotated to make the rotating reset pin 24 at Figure 5From the angle of the reason that the angle of the reset pin 24 is locked with the protruding buckle 26, the support platform 10 cannot be lowered, the upper half of the hydraulic system 11 moves upward, the reset pin 24 is locked with the protruding buckle 26, then drives the lower half of the hydraulic system 11 to move upward, the reset pin 24 is turned over and moved downward due to the internal spring, and is locked into the protruding buckle 26 again due to the reset effect of the internal spring after being in place, and the overall upward movement of the support platform 10 is realized in turn.
[0042] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the foregoing embodiments of the present application are described in detail, for those skilled in the art, it still can be modified, or part of the technical features of the equivalent replacement, within the spirit and principles of the present application, any modification, equivalent replacement, improvement, etc., should be included within the scope of the present application.
Claims
1. A hydraulic climbing formwork device applied to building construction, comprising a formwork device placing plate (2) and a connecting plug post (3) arranged at the upper end position of the formwork device placing plate (2); a connecting support strip block (8) arranged at the upper end position of the connecting plug post (3); a support telescopic outer rod (7) arranged at the end position of the connecting support strip block (8); a formwork device turnover plate (4) arranged at the left end position of the connecting support strip block (8); a wall body (1) arranged at the left side position of the formwork device turnover plate (4); a hydraulic system (11) arranged at the lower end position close to the left side of the formwork device placing plate (2); a connecting guide rail (12) arranged at the middle position of the hydraulic system (11) and on the wall body (1); a support platform (10) arranged at the outer side position of the hydraulic system (11); a buried part plate (22) arranged inside the wall body (1); characterized in that a greasing ring (13) arranged at the end position of the support telescopic outer rod (7), an intermediate hole ring (17) arranged at the inner side position of the greasing ring (13), the intermediate hole ring (17) being hollow and having small holes on the inner side surface, a rubber layer extrusion layer (20) and a connecting column body (15) connected to the upper side of the intermediate hole ring (17), a sponge layer (18) arranged at the inner side position of the intermediate hole ring (17), the rubber layer extrusion layer (20) and the intermediate hole ring (17) being used to store lubricating oil, the sponge layer (18) being used to absorb and apply the lubricating oil, and the rubber layer extrusion layer (20) being capable of increasing the leaching amount of the lubricating oil; an extrusion cap (14) arranged at the upper end position of the rubber layer extrusion layer (20), branch columns arranged at both end positions of the extrusion cap (14), a connecting spring (19) arranged at the lower side position of the branch columns of the extrusion cap (14), the lower end position of the connecting spring (19) being connected to the connecting column body (15) by welding, an oil injection plug (21) arranged at the middle position of the extrusion cap (14), the lower half of the oil injection plug (21) being a threaded rod, and the oil injection plug (21) being rotatably connected to the extrusion cap (14) by the lower half.
2. The hydraulic climbing formwork apparatus for building construction according to claim 1, characterized in that: a magnetic iron sheet (16) arranged at the right lower side position of the greasing ring (13), the magnetic iron sheet (16) being connected to the greasing ring (13) by glue.
3. The hydraulic climbing formwork apparatus for building construction of claim 1, wherein: an outer protective net (9) arranged at the outer side position of the support platform (10), the outer protective net (9) being a metal stainless steel net structure, and the outer protective net (9) being connected to the support platform (10) by welding.
4. The hydraulic climbing formwork apparatus for building construction of claim 1, wherein: a connecting strip block (5) arranged at the right end side position of the formwork device turnover plate (4), the connecting strip block (5) being connected to the formwork device turnover plate by welding.
5. The hydraulic climbing formwork apparatus for use in construction according to claim 1, characterized in that: a support telescopic inner rod (6) arranged at the left upper side middle position of the support telescopic outer rod (7), the support telescopic inner rod (6) being connected to the support telescopic outer rod (7) by insertion and being connected to the connecting strip block (5) by a rotating shaft.
6. The hydraulic climbing formwork apparatus for use in construction according to claim 1, wherein: The connecting rail (12) is provided with a protruding buckle (26) on the outer side, and the protruding buckle (26) is an integral structure with the connecting rail (12).
7. The hydraulic climbing formwork apparatus for use in construction according to claim 1, wherein: The hydraulic system (11) is provided with a reset pin (24), which is rotationally connected with the hydraulic system (11), and the reset pin (24) is provided with a reset spring inside.
8. The hydraulic climbing formwork apparatus for use in construction according to claim 1, characterized in that: The connecting bolt (23) is rotationally inserted into the embedded plate (22).
9. The method of using a hydraulic climbing formwork apparatus for construction according to any one of claims 1-8, wherein: The method steps are as follows: Step one: when in use, first, the hydraulic system moves upward to lift the connecting rail, the lower part of the hydraulic system moves downward, the reset pin resets through the spring inside to repeatedly lift the protruding buckle, the connecting bolt between the supporting platform and the connecting embedded plate is removed when the connecting rail reaches the specified position; Step two: the connecting rail and the embedded plate are connected through the connecting bolt, then the reset pin is rotated, the angle of the reset pin at this time is clamped to the protruding buckle, so that the supporting platform does not descend, the upper part of the hydraulic system moves upward, the reset pin clamps the protruding buckle, then drives the lower part of the hydraulic system to move upward, the reset pin moves downward and turns over due to the spring inside, and is clamped into the protruding buckle again due to the reset effect of the spring inside after reaching the position, and the supporting platform is lifted in turn.
Citation Information
Patent Citations
Hydraulic formwork climbing device for building construction
CN209780230U
Attached climbing elevator cage device
CN211340443U