Lifting equipment for auxiliary mounting and dismounting of formwork
By designing a lifting device for assisted installation and removal of formwork, the safety hazards and low efficiency of the aerial building machine when removing the inner wall formwork were solved, enabling rapid removal and installation of formwork, reducing labor costs and improving the stability of formwork use.
Patent Information
- Application Number
- CN202511699343.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-19
- Publication Date
- 2026-02-03
AI Technical Summary
Existing aerial building construction machines pose safety hazards, are inefficient, have high labor costs, and are prone to damage when dismantling interior wall formwork.
A lifting device for assisted installation and dismantling of formwork was designed, including a mobile frame, a lifting frame, a lifting component, a traction component, a receiving frame, a formwork removal component, an adjustment component, and a limiting component. Through the coordinated work of these components, the formwork can be quickly dismantled, transported, and installed, avoiding manual vertical transfer and collision wear.
It improves construction efficiency, reduces labor costs, ensures the stability and reusability of the formwork, and avoids safety hazards and damage during the assembly and disassembly of the formwork.
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Figure CN121448972A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of building templates, in particular to a lifting device for template assisted installation and disassembly. BACKGROUND
[0002] The air building machine aims to provide a high-integration air building platform. In terms of template construction, the air building machine has a lifting function for the outer wall template, can control the outer wall template to rise together with the air building machine, but has no lifting function for the inner wall template. Generally, a reserved opening is left on the top surface of the lower building, and after the inner wall template is manually removed, it is carried to the reserved opening and delivered by the lower workers and pulled by the upper workers to transport the inner wall template between floors. In the long-term repeated labor of workers, safety hazards are easily caused, and the overall disassembly efficiency of the template is affected, and the labor cost is high. At the same time, in the delivery process of the template, the inner wall template will collide and wear at the reserved opening, which may cause deformation and affect the recycling of the inner wall template. In addition, when disassembling the inner wall template, the adjacent two inner wall templates need to be manually lifted and assembled to make the installation positions of the adjacent two templates match, and then the worker uses bolts to connect, which is a complicated process. The worker needs to continuously hold the template, and multiple workers need to work, which wastes manpower. SUMMARY
[0003] The purpose of the present application is to provide a lifting device for template assisted installation and disassembly to solve the above problems.
[0004] In order to achieve the above purpose, the present application provides a lifting device for template assisted installation and disassembly, comprising: a movable frame, a lifting frame installed on the movable frame, a lifting assembly installed on the lifting frame and the movable frame, an assembly plate provided on the lifting assembly, a traction member installed on the assembly plate and the lifting assembly, a receiving frame connected with the assembly plate, a connecting member installed on the assembly plate and the receiving frame, a control frame movably installed on the receiving frame, a template taking assembly installed on the receiving frame and the control frame, two lifting ring nuts fixed symmetrically on the control frame, a position adjusting assembly provided on the control frame, and a limiting member installed on the lifting frame, wherein The template taking assembly is used to butt joint the wall template and pull the wall template away from the wall surface; The position adjusting assembly is used to assist the butt joint of the template taking assembly and the wall template, and to stably control the height of the wall template; The traction member is used to pull the receiving frame close to the assembly plate to assist the carrying of the wall template; The lifting assembly is used for controlling the upward movement of the supporting frame, so that the removed wall formwork is transported from the lower floor to the adjacent upper floor through the reserved opening of the floor slab. The limiting piece is used for limiting the horizontal movement of the assembly plate and the control frame.
[0005] Further, the limiting piece comprises two limiting rods symmetrically fixed on the lifting frame, two first limiting blocks and two second limiting blocks fixed on the two limiting rods respectively and corresponding to the assembly plate and the control frame, a plurality of movement grooves respectively formed in the two first limiting blocks and the two second limiting blocks, and a plurality of limiting balls respectively movably installed in the movement grooves. The two limiting rods are symmetrically arranged on both sides of the assembly plate and the control frame, and the plurality of limiting balls abut against the assembly plate and the control frame respectively.
[0006] Further, the lifting assembly comprises a lifting seat movably installed in the lifting frame through a plurality of movement rollers, a speed reduction motor set installed on the top of the lifting frame, a lifting lead screw rotatably installed between the movable frame and the lifting frame and fixedly connected with the output end of the speed reduction motor set, a jacking table threadedly connected with the lifting lead screw, two guide rods symmetrically fixed between the movable frame and the lifting frame and movably connected with both ends of the jacking table respectively, two lifting wheels symmetrically installed on the upper surface of the jacking table, two lifting chains respectively meshingly sleeved on the outside of the two lifting wheels and fixedly connected with both ends of the lifting seat and the movable frame. The assembly plate is fixedly connected with the lifting seat.
[0007] Further, the traction piece comprises an electric winch installed on the bottom of the lifting seat, a through groove formed in the lifting seat, a control pulley installed on the top of the assembly plate, and a traction rope having one end connected with the electric winch and the other end passing through the through groove and connected with the control pulley and one of the lifting ring nuts.
[0008] Further, the connecting piece comprises two connecting frames symmetrically fixed on the supporting frame, two top abutting tables fixed on the assembly plate and corresponding to the two connecting frames. The upper ends of the two top abutting tables are respectively slidably inserted between the supporting frame and the two connecting frames.
[0009] Further, the module taking component comprises a plurality of pushing blocks symmetrically fixed on the receiving frame and movably connected with the control frame, a plurality of limiting pushing blocks fixed on the pushing blocks respectively, a connecting plate movably installed in the control frame, a plurality of sliding grooves opened on the connecting plate and movably provided with the limiting pushing blocks respectively, and a plurality of L-shaped clamping blocks fixed on the connecting plate, and two electric push rods symmetrically fixed on the receiving frame. The L-shaped clamping blocks are inserted into a plurality of reinforcing ribs on the wall formwork respectively. The telescopic ends of the two electric push rods are fixedly connected with the control frame.
[0010] Further, the position adjusting component comprises two control grooves symmetrically opened on the control frame, a position control rod movably inserted into the control grooves at two ends and fixedly connected with the connecting plate, and a positioning member installed on the position control rod and the control frame.
[0011] Further, the positioning member comprises a position control screw threadedly installed on the position control rod, a positioning tooth block rotatably installed on the position control screw and movably sleeved on the position control rod, and a positioning rack fixed on the control frame and engaged with the positioning tooth block.
[0012] Further, the bottom of the movable frame is symmetrically provided with two first universal wheels and two first moving wheels, two limiting screws are symmetrically screw-connected on the movable frame, and two abutting blocks are rotatably connected to the bottoms of the two limiting screws.
[0013] Further, the bottom of the receiving frame is fixedly connected with a bearing plate, the upper surface of the bearing plate is abutted with the lower surface of the wall formwork, and the bottom of the bearing plate and the receiving frame are fixedly connected with two second moving wheels and second universal wheels respectively.
[0014] Compared with the prior art, the present application has the following beneficial effects: 1. The lifting equipment for template auxiliary installation and disassembly can quickly and stably lift the wall formwork moved to the position below the reserved opening from the lower floor to the adjacent upper floor through the cooperation of the lifting assembly and the limiting assembly, without manual transmission of the wall formwork, avoiding the long time and high labor intensity of the workers in the vertical transmission process of the wall formwork, ensuring the stability of the wall formwork during lifting, limiting the horizontal movement of the wall formwork during vertical transmission, avoiding the collision and deformation of the wall formwork, and effectively improving the construction efficiency. 2、The lifting device for template assisted installation and disassembly can quickly complete the disassembly of the wall template when the receiving frame moves to the lower wall surface construction site and the upper wall surface construction site through the cooperation of the template taking assembly and the position adjusting assembly, avoids the workers from slowly prying with a crowbar to disassemble the wall template, avoids the wall template that is separated from the wall from directly falling and colliding with the ground to appear deformation and damage, effectively improves the disassembly effect of the wall template, and effectively improves the construction efficiency and reduces the labor cost when assembling the wall template. BRIEF DESCRIPTION OF DRAWINGS
[0015] The application will be further described below in combination with the drawings and examples.
[0016] Figure 1 A perspective view of the application is shown; Figure 2 A split perspective view of the application is shown; Figure 3 A partial sectional view of the application is shown; Figure 4 A partial sectional perspective view of the application is shown; Figure 1 Figure 5 A partial split perspective view of the application is shown; Figure 1 Figure 6 A partial split perspective view of the application is shown; Figure 2 Figure 7 A partial sectional perspective view of the application is shown; Figure 2 Figure 8 A partial sectional perspective view of the application is shown. Figure 3
[0017] In the drawings, the same reference numerals represent the same structural elements, wherein: 1. Movable frame; 2. Lifting frame; 3. Lifting assembly; 4. Assembly plate; 5. Traction component; 6. Support frame; 7. Connecting component; 8. Control frame; 9. Demolding assembly; 10. Lifting eye nut; 11. Positioning assembly; 12. Limiting component; 13. Wall formwork; 14. Limiting rod; 15. First limiting block; 16. Second limiting block; 17. Movable groove; 18. Limiting ball; 19. Lifting seat; 20. Gear motor assembly; 21. Lifting screw; 22. Lifting platform; 23. Guide rod; 24. Lifting wheel; 25. Lifting chain; 26. Electric winch; 27. 1. Through groove; 28. Control pulley; 29. Traction rope; 30. Connecting frame; 31. Top platform; 32. Pushing block; 33. Restricting push block; 34. Connecting plate; 35. Sliding groove; 36. L-shaped locking block; 37. Electric push rod; 38. Control groove; 39. Positioning rod; 40. Positioning component; 41. Positioning screw; 42. Positioning tooth block; 43. Positioning rack; 44. First universal wheel; 45. First moving wheel; 46. Restricting screw; 47. Abutment block; 48. Bearing plate; 49. Second moving wheel; 50. Second universal wheel; 51. Reinforcing rib. Detailed Implementation
[0018] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the invention, and therefore only show the components relevant to the invention.
[0019] like Figures 1-8 As shown, a lifting device for assisting in the installation and dismantling of formwork is part of an intelligent formwork platform. By developing an integrated auxiliary device for the installation and dismantling of exterior wall formwork, interior wall formwork, and shaft formwork, and by improving the lifting and hoisting mechanisms of existing aerial building construction machines, it achieves rapid installation and dismantling of formwork, improves construction efficiency, and reduces labor costs. It includes: a mobile frame 1; a lifting frame 2 mounted on the mobile frame 1; a lifting assembly 3 mounted on the lifting frame 2 and the mobile frame 1; an assembly plate 4 mounted on the lifting assembly 3; a traction component 5 mounted on the assembly plate 4 and the lifting assembly 3; a receiving frame 6 connected to the assembly plate 4; a connecting component 7 mounted on the assembly plate 4 and the receiving frame 6; a control frame 8 movably mounted on the receiving frame 6; a formwork removal assembly 9 mounted on the receiving frame 6 and the control frame 8; two lifting ring nuts 10 symmetrically fixed on the control frame 8; an adjustment component 11 mounted on the control frame 8; and a limiting component 12 mounted on the lifting frame 2. The mold-taking component 9 is used to dock with the wall template 13 and drag the wall template 13 away from the wall surface; The adjustment component 11 is used to assist the docking of the molding component 9 with the wall template 13 and to stably control the height of the wall template 13; The traction member 5 is used to pull the receiving frame 6 close to the assembly plate 4, assisting in the carrying of the wall formwork 13; The lifting assembly 3 is used to control the upward movement of the receiving frame 6, so that the removed wall formwork 13 is transported from the lower floor to the adjacent upper floor through the reserved opening of the floor slab; The limiting member 12 is used to limit the horizontal movement of the assembly plate 4 and the control frame 8. In use, the worker moves the movable frame 1 directly below the reserved opening, and through the connecting assembly, the work of the movable frame 1, the lifting frame 2, the lifting assembly 3, the traction member 5, and the limiting member 12 is carried out. The worker can easily remove the wall formwork 13 from the building wall by moving the receiving frame 6 and using the equipment to cooperate with the positioning assembly 11, without the need for the worker to use a crowbar to pry it apart. At the same time, it avoids the wall formwork 13 from directly falling to the ground and being damaged by collision, effectively improving the removal effect of the wall formwork 13. Then, under the traction assistance of the traction assembly, the receiving frame 6 carrying the wall formwork 13 can be easily moved and transported to the reserved opening, making it easier for the worker to move the wall formwork 13 back and forth, reducing the amount of manpower required and making it easier for the worker to work for a long time. Then, the connecting assembly cooperates with the lifting assembly 3 to quickly complete the connection of the receiving frame 6 and the assembly plate 4. At this time, under the control of the lifting assembly 3, the receiving frame 6 carrying the wall formwork 13 can be controlled to enter the upper floor through the reserved opening, and the upper worker can assist in taking the receiving frame 6 carrying the wall formwork 13, without the need for workers to transfer between floors. In the long process of repetitive labor, the transfer is effectively reduced, and the safety hazards that may occur during the lifting of the wall formwork 13 are avoided, improving the construction efficiency. When the control frame 8 and the assembly plate 4 are controlled to move upward, the limiting member 12 can effectively limit the horizontal movement of the control frame 8 and the assembly plate 4 during lifting, ensuring the stability of the lifting of the control frame 8 and the assembly plate 4, avoiding the collision and wear of the wall formwork 13 when it comes into contact with the reserved opening, facilitating the recycling of the wall formwork 13, and effectively avoiding the tilting of the wall formwork 13 during upward movement, which may cause safety hazards. The upper worker can push the receiving frame 6 carrying the wall formwork 13 on the upper floor, or use the remaining crane equipment to cooperate with the two lifting ring nuts 10 to move the wall formwork 13 to the assembly position. At this time, under the control of the positioning assembly 11, the height of the wall formwork 13 can be controlled and maintained at the current height for a long time, facilitating the abutting assembly of the adjacent wall formwork 13 by the worker, and facilitating the assembly work by a single person, effectively reducing the labor consumption. At the same time, while the upper worker is assembling the wall formwork 13, the lower worker is simultaneously removing the wall formwork 13, effectively improving the construction efficiency and reducing labor costs.
[0020] Optionally, the limiting piece 12 comprises two limiting rods 14 symmetrically fixed on the lifting frame 2, two first limiting blocks 15 and two second limiting blocks 16 fixed on the two limiting rods 14 respectively and corresponding to the assembly plate 4 and the control frame 8, a plurality of movable grooves 17 respectively formed on the two first limiting blocks 15 and the two second limiting blocks 16, and a plurality of limiting balls 18 movably installed in the movable grooves 17 respectively; The two limiting rods 14 are symmetrically arranged on the two sides of the assembly plate 4 and the control frame 8, and the plurality of limiting balls 18 abut against the assembly plate 4 and the control frame 8 respectively. During the lifting process of the receiving frame 6 and the control frame 8 carrying the wall formwork 13 controlled by the lifting assembly 3, the assembly plate 4 and the control frame 8 enter between the two limiting rods 14, and the two first limiting blocks 15 and the two second limiting blocks 16 are close to the assembly plate 4 and the control frame 8 respectively, so as to cooperate with the two limiting rods 14, effectively limit the horizontal movement of the assembly plate 4 and the control frame 8 during lifting, ensure the stability of the assembly plate 4 and the control frame 8 during lifting, thereby avoiding the inclination and sliding of the receiving frame 6 and the control frame 8 carrying the wall formwork 13 during lifting, reducing the safety hazard of the wall formwork 13 during lifting, and ensuring the safety of the wall formwork 13 during conveying from the lower floor to the adjacent upper floor. At the same time, the two limiting rods 14 do not affect the connection between the receiving frame 6 and the assembly plate 4, so that the limiting piece 12 is more convenient to use, and the overall convenience of the equipment is ensured.
[0021] Optionally, the lifting assembly 3 comprises a lifting seat 19 movably installed in the lifting frame 2 through a plurality of movable rollers, a speed reduction motor set 20 installed on the top of the lifting frame 2, a lifting lead screw 21 rotatably installed between the movable frame 1 and the lifting frame 2 and fixedly connected with the output end of the speed reduction motor set 20, a jacking table 22 threadedly connected with the lifting lead screw 21, two guide rods 23 symmetrically fixed between the movable frame 1 and the lifting frame 2 and movably connected with both ends of the jacking table 22 respectively, two lifting wheels 24 symmetrically installed on the upper surface of the jacking table 22, and two lifting chains 25 respectively meshingly sleeved outside the two lifting wheels 24 and fixedly connected with the lifting seat 19 and the movable frame 1 at both ends; The assembly plate 4 is fixedly connected with the lifting seat 19. When the bearing frame 6 carrying the wall formwork 13 is connected with the assembly plate 4 under the control of the connecting piece 7, the lifting motor set 20 is controlled to control the rotation of the lifting screw 21, so that the lifting platform 22 stably moves up under the guidance of the two guide rods 23 and drives the two lifting wheels 24 to move up, thereby engaging the two lifting chains 25 to drive the lifting seat 19 to stably rise in the lifting frame 2 with the assistance of the plurality of movable rollers, and then the bearing frame 6 carrying the wall formwork 13 and the assembly plate 4 are driven to move up from the reserved opening of the adjacent upper floor plate to the upper floor, avoiding the inconvenience and hidden dangers of manual transportation by workers.
[0022] Optionally, the traction member 5 comprises a motor winch 26 installed at the bottom of the lifting seat 19, a through slot 27 opened in the lifting seat 19, a control pulley 28 installed at the top of the assembly plate 4, and a traction rope 29 connected at one end with the motor winch 26 and at the other end with the control pulley 28 and one of the lifting ring nuts 10. Before the workers move the bearing platform, the traction rope 29 is connected with one of the lifting ring nuts 10. After the mold removing assembly 9 completes the removal of the wall formwork 13, the motor winch 26 is started to wind the traction rope 29, thereby pulling the bearing frame 6 and the control frame 8, so that the workers can more easily control the bearing frame 6 and the control frame 8 to move and transport on the lower floor, saving labor and effectively reducing the working intensity of the workers.
[0023] Optionally, the connecting piece 7 comprises two connecting frames 30 symmetrically fixed on the bearing frame 6, and two top abutment platforms 31 fixed on the assembly plate 4 and corresponding to the two connecting frames 30. The upper ends of the two top abutment platforms 31 are respectively slidably inserted between the bearing frame 6 and the two connecting frames 30. When the bearing frame 6 carrying the wall formwork 13 is transported to below the reserved opening of the adjacent upper floor plate by the traction member 5, the workers control the two connecting frames 30 on the bearing frame 6 to abut against the assembly plate 4. At this time, under the work of the lifting assembly 3, the assembly plate 4 rises, thereby making the two top abutment platforms 31 rise and be respectively inserted between the bearing frame 6 and the two connecting frames 30, so that the assembly plate 4 is connected with the bearing frame 6, and in the subsequent rising of the assembly plate 4, the bearing frame 6 provided with the wall formwork 13 can be driven to rise synchronously.
[0024] Optionally, the mold taking assembly 9 comprises a plurality of push blocks 32 symmetrically fixed on the receiving frame 6 and movably connected with the control frame 8, a plurality of limiting blocks 33 fixed on the push blocks 32 respectively, a connecting plate 34 movably installed in the control frame 8, a plurality of sliding grooves 35 opened on the connecting plate 34 and movably provided with the limiting blocks 33 respectively, and a plurality of L-shaped clamping blocks 36 fixed on the connecting plate 34, and two electric push rods 37 symmetrically fixed on the receiving frame 6; When the receiving frame 6 is moved to the wall formwork 13, the L-shaped clamping blocks 36 are inserted into the reinforcing ribs on the wall formwork 13, and under the control of the position adjusting assembly 11, the connecting plate 34 is moved upwards, so that the L-shaped clamping blocks 36 are inserted into the reinforcing ribs, the connection between the connecting plate 34 and the wall formwork 13 is completed, and the limiting blocks 33 are in contact with the wall surface or the adjacent wall formwork 13. Then, the two electric push rods 37 are started to drive the control frame 8 to move close to the receiving frame 6, so that the connecting plate 34 drives the wall formwork 13 to move away from the wall surface, and the wall formwork 13 is separated from the wall surface, without the need for workers to use a crowbar to slowly lift the wall formwork 13 for disassembly, effectively reducing the fatigue of the workers caused by repeated work, reducing the work intensity of the workers, facilitating the continuous work of the workers, and improving the disassembly efficiency of the wall formwork 13.
[0025] Optionally, the position adjusting assembly 11 comprises two control grooves 38 symmetrically opened on the control frame 8, a control rod 39 movably inserted into the control grooves 38 at both ends and fixedly connected with the connecting plate 34, and a positioning member 40 installed on the control rod 39 and the control frame 8. When the receiving frame 6 is moved to the wall formwork 13, the control rod 39 is controlled to move in the control grooves 38 to push the connecting plate 34 upwards, so that the L-shaped clamping blocks 36 are inserted into the reinforcing ribs, and the height of the connecting plate 34 is maintained under the control of the positioning member 40, facilitating the butt joint of the mold taking assembly 9 and the wall formwork 13 for the work of the mold taking assembly 9.
[0026] Optionally, the positioning member 40 comprises a positioning screw 41 screwed on the control rod 39, a positioning gear block 42 rotatably connected on the positioning screw 41 and movably sleeved on the control rod 39, and a positioning rack 43 fixed on the control frame 8 and engaged with the positioning gear block 42. After the height adjustment of the connecting plate 34 and the connection with the wall formwork 13, or the synchronous height adjustment of the wall formwork 13 is completed, the positioning screw 41 can be rotated to make the positioning gear block 42 close to the positioning rack 43. When the positioning gear block 42 is in contact with the positioning rack 43, the movement of the control rod 39 is limited, the stability of the connecting plate 34 and the wall formwork 13 after height adjustment is ensured, the connection between the demolding assembly 9 and the wall formwork 13 is facilitated, and the height of the wall formwork 13 can be stably controlled when the wall formwork 13 is installed and the floor is uneven, so that the connection grooves on the wall formwork 13 at different positions are overlapped, and the wall formwork 13 is quickly assembled.
[0027] Optionally, the bottom of the movable frame 1 is symmetrically provided with two first universal wheels 44 and two first moving wheels 45, and two limiting screws 46 are symmetrically screwed on the movable frame 1. The bottom of each of the two limiting screws 46 is rotatably connected with a resisting block 47. The two first universal wheels 44 and the two first moving wheels 45 are arranged to facilitate the movement of the movable frame 1 on the floor, so that after the removal of the wall formwork 13 in one direction is completed, the angle of the movable frame 1 can be adjusted, and then the removal, transportation and lifting of the wall formwork 13 in the remaining directions are facilitated. After the angle of the movable frame 1 is adjusted, the two limiting screws 46 are rotated to move the two resisting blocks 47 downward to contact the floor, thereby limiting the position of the movable frame 1, so that the equipment is more stable during the transportation and lifting of the auxiliary wall formwork 13.
[0028] Optionally, the bottom of the receiving frame 6 is fixedly connected with a bearing plate 48, the upper surface of the bearing plate 48 abuts against the lower surface of the wall formwork 13, and the bottom of the receiving frame 6 is fixedly connected with two second moving wheels 49 and two second universal wheels 50. When the wall formwork 13 is removed from the wall surface by the demolding assembly 9, the bearing plate 48 can stably support the bottom of the wall formwork 13, thereby improving the stability of the wall formwork 13 during transportation. Meanwhile, under the cooperation of the two second moving wheels 49 and the two second universal wheels 50, the worker can easily move the receiving frame 6 to transport the wall formwork 13 on a single floor, so that the entire process of transporting the wall formwork 13 from the removal position of the wall formwork 13 on the lower floor to the installation position of the wall formwork 13 on the adjacent upper floor is more convenient, the continuous work of the worker is facilitated, and the efficiency of the wall formwork 13 is improved.
[0029] The above merely provides the preferred embodiments of the present application, and is not used to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modifications, equivalent replacements, improvements, etc. made within the principles and technical scope of the present application shall fall into the scope of the present application.
Claims
1. Lifting device for template assisted assembly and disassembly, characterized in that The utility model relates to a lifting equipment for template auxiliary installation and removal, which comprises an active frame (1), a lifting frame (2) installed on the active frame (1), a lifting assembly (3) installed on the lifting frame (2) and the active frame (1), an assembly plate (4) arranged on the lifting assembly (3), a traction member (5) installed on the assembly plate (4) and the lifting assembly (3), a receiving frame (6) connected with the assembly plate (4), a connecting member (7) installed on the assembly plate (4) and the receiving frame (6), a control frame (8) movably installed on the receiving frame (6), a template taking assembly (9) installed on the receiving frame (6) and the control frame (8), two lifting ring nuts (10) symmetrically fixed on the control frame (8), a position adjusting assembly (11) arranged on the control frame (8), and a limiting member (12) installed on the lifting frame (2), wherein the template taking assembly (9) is used for abutting against a wall template (13) and dragging the wall template (13) away from a wall surface; the position adjusting assembly (11) is used for assisting the template taking assembly (9) in abutting against the wall template (13) and stabilizing the height of the wall template (13); the traction member (5) is used for pulling the receiving frame (6) to be close to the assembly plate (4) to assist in carrying the wall template (13); the lifting assembly (3) is used for controlling the receiving frame (6) to move upwards so that the removed wall template (13) is conveyed from a lower floor surface to an adjacent upper floor surface through a reserved opening of a floor slab; the limiting member (12) is used for limiting the horizontal movement of the assembly plate (4) and the control frame (8).
2. The lifting equipment for template auxiliary installation and removal according to claim 1, wherein the limiting member (12) comprises two limiting rods (14) symmetrically fixed on the lifting frame (2), two first limiting blocks (15) and two second limiting blocks (16) fixed on the two limiting rods (14) respectively and corresponding to the assembly plate (4) and the control frame (8), a plurality of movement grooves (17) respectively formed in the two first limiting blocks (15) and the two second limiting blocks (16), and a plurality of limiting balls (18) movably installed in the movement grooves (17) respectively; the two limiting rods (14) are symmetrically arranged on both sides of the assembly plate (4) and the control frame (8), and the plurality of limiting balls (18) abut against the assembly plate (4) and the control frame (8) respectively.
3. The lifting equipment for template auxiliary installation and removal according to claim 2, wherein The lifting assembly (3) comprises a lifting seat (19) movably mounted in the lifting frame (2) through a plurality of movable rollers, a speed reduction motor set (20) mounted on the top of the lifting frame (2), a lifting lead screw (21) rotatably mounted between the movable frame (1) and the lifting frame (2) and fixedly connected with the output end of the speed reduction motor set (20), a jacking table (22) threadedly connected with the lifting lead screw (21), two guide rods (23) symmetrically fixed between the movable frame (1) and the lifting frame (2) and movably connected with two ends of the jacking table (22) respectively, two lifting wheels (24) symmetrically mounted on the upper surface of the jacking table (22), two lifting chains (25) respectively meshingly sleeved outside the two lifting wheels (24) and fixedly connected with the lifting seat (19) and the movable frame (1) at both ends respectively. The assembly plate (4) is fixedly connected with the lifting seat (19).
4. The lifting device for template assisted installation and disassembly according to claim 3, characterized in that, The traction member (5) comprises an electric winch (26) mounted on the bottom of the lifting seat (19), a through slot (27) opened on the lifting seat (19), a control pulley (28) mounted on the top of the assembly plate (4), and a traction rope (29) connected with the electric winch (26) at one end, passing through the through slot (27) and the control pulley (28) at the other end, and connected with one of the lifting ring nuts (10).
5. The lifting device for template assisted installation and disassembly according to claim 4, characterized in that, The connecting member (7) comprises two connecting frames (30) symmetrically fixed on the receiving frame (6), and two top abutting tables (31) fixed on the assembly plate (4) and corresponding to the two connecting frames (30); The upper ends of the two top abutting tables (31) are respectively slidably inserted between the receiving frame (6) and the two connecting frames (30).
6. The lifting device for template assisted installation and disassembly according to claim 1, characterized in that, The template taking assembly (9) comprises a plurality of push blocks (32) symmetrically fixed on the receiving frame (6) and movably connected with the control frame (8), a plurality of limiting blocks (33) fixed on the plurality of push blocks (32) respectively, a connecting plate (34) movably mounted in the control frame (8), a plurality of sliding grooves (35) opened on the connecting plate (34) and movably provided for the plurality of limiting blocks respectively, a plurality of L-shaped clamping blocks (36) fixed on the connecting plate (34), and two electric push rods (37) symmetrically fixed on the receiving frame (6); The plurality of L-shaped clamping blocks (36) are respectively inserted into a plurality of reinforcing ribs (51) on the wall template (13); The telescopic ends of the two electric push rods (37) are fixedly connected with the control frame (8).
7. The lifting device for template assisted installation and disassembly according to claim 6, characterized in that, The position adjusting assembly (11) comprises two control grooves (38) symmetrically formed on the control frame (8), a position control rod (39) movably inserted into the two control grooves (38) at two ends and fixedly connected with the connecting plate (34), and a positioning member (40) mounted on the position control rod (39) and the control frame (8).
8. The lifting device for template assisted installation and dismounting according to claim 7, characterized in that, The positioning member (40) comprises a position control screw (41) screw-mounted on the position control rod (39), a positioning tooth block (42) rotatably mounted on the position control screw (41) and movably sleeved on the position control rod (39), and a positioning rack (43) fixedly connected with the control frame (8) and engaged with the positioning tooth block (42).
9. The lifting device for template assisted installation and dismounting according to claim 8, characterized in that, The bottom of the movable frame (1) is symmetrically provided with two first universal wheels (44) and two first moving wheels (45), two limiting screws (46) are symmetrically screw-connected on the movable frame (1), and two abutting blocks (47) are rotatably connected with the bottoms of the two limiting screws (46) respectively.
10. The lifting device for template assisted installation and dismounting according to claim 9, characterized in that, The bottom of the receiving frame (6) is fixedly connected with a bearing plate (48), the upper surface of the bearing plate (48) is abutted with the lower surface of the wall template (13), and the bottom of the bearing plate (48) and the receiving frame (6) are respectively fixedly connected with two second moving wheels (49) and second universal wheels (50).