An auxiliary installation system for the handling of building curtain walls
By designing an auxiliary installation system for building curtain wall handling, and using components such as mobile stations, rotating brackets and rotating brackets, the curtain wall is stable transportation and precise docking, solving the problems of high altitude operation, high installation cost and high operation difficulty, and improving installation efficiency and safety.
Patent Information
- Application Number
- CN202310552886.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-16
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2043-05-16
AI Technical Summary
During the installation of existing buildings, there are high risks of high-altitude operations, high installation costs, high installation accuracy requirements and high operation difficulty, especially when installed in medium and high-rise buildings and corners.
An auxiliary installation system for building curtain wall handling is designed, including components such as mobile stations, rotating brackets, rotating brackets and mobile frames. Through functions such as clamping, adsorption, support and fine-tuning, the curtain wall can be stable transportation and precise docking.
It effectively shortens the curtain wall docking time, improves installation accuracy and safety, reduces the risk of workers falling, and simplifies the installation process at corners.
Smart Images

Figure CN116791904B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of construction equipment, and in particular to an auxiliary installation system for transporting building curtain walls. Background Art
[0002] A curtain wall is an exterior wall enclosure of a building, which does not bear weight and is hung like a curtain, so it is also called a "curtain wall". It is a lightweight wall with a decorative effect commonly used in modern large-scale and high-rise buildings. It is composed of a panel and a support structure system, and can have a certain displacement ability relative to the main structure or have a certain deformation ability itself, and does not bear the action of the main structure. Such curtain wall installation mainly belongs to high-altitude operations.
[0003] During the installation process of the entire building curtain wall, especially for medium and high-rise buildings, generally a crane hoisting method is used for the installation of the entire curtain wall, and manual assistance is used for installation. And according to the specific installation difficulty, a whole hanging basket is selectively used to assist in the installation of the building curtain wall, which undoubtedly increases the installation cost of the entire building curtain wall. And when using a hanging basket for the installation of high-rise buildings, there are also certain risks. At the same time, during the installation process of the entire curtain wall, due to the existence of building concrete square columns in medium and high-rise buildings, even if BIM is used for the relevant planning of the curtain wall in the early stage, it is inevitable that the splicing part of the curtain wall is located directly in front of the building concrete square column. In addition, individual concrete square columns will exceed the building floors, and when hanging the curtain wall on the outside of the concrete square column, the operation difficulty is also very large, and there are certain problems with the safety of the operators.
[0004] In addition, for the corners of medium and high-rise buildings, for a right-angled building curtain wall, generally two building curtain walls are used for splicing. And this method has certain requirements for the installation accuracy of the curtain wall. And in the specific operation process, the operator needs to constantly fine-tune the entire building curtain wall to make the curtain walls fit together, and the entire docking process will be very troublesome. And for an arc-shaped building curtain wall, generally the same building curtain wall is used for installation, and such a building curtain wall body is also relatively large and heavy, which is not conducive to the installation of the building curtain wall at the corner, and will also greatly reduce the safety of the operators.
[0005] How to solve the above technical problems is the subject faced by the present invention. Summary of the Invention
[0006] In order to solve the deficiencies of the prior art, the present invention provides a prefabricated component stacking rack for assembled buildings with reasonable design, safety and reliability.
[0007] The technical solution adopted by the present invention to solve its technical problems is as follows: an auxiliary installation system for transporting building curtain walls, including a mobile platform, and a clamping groove matching with a concrete square column is arranged on the mobile platform, and universal wheels are arranged on the mobile platform. A lifting component is vertically arranged on the mobile platform, and a rotating bracket is arranged on the mobile platform. A rotating bracket matching with the rotating bracket is arranged on the rotating bracket, and a moving and movable component is arranged on the rotating bracket. A first adsorption component matching with the curtain wall is arranged on the moving and movable component;
[0008] A top support component is arranged on the rotating bracket. A first clamping component matching with the concrete square column is arranged in the rotating bracket. First auxiliary support components and second auxiliary support components are respectively arranged at the top and bottom ends of the rotating bracket, and the first auxiliary support component and the second auxiliary support component are respectively in clearance fit with the curtain wall;
[0009] A mobile vehicle frame is arranged on one side of the mobile platform, and a docking component matching with the mobile vehicle frame is arranged on the mobile platform. A rotating platform rotatably matched with the mobile vehicle frame is arranged on the mobile vehicle frame. A second clamping component matching with the curtain wall is arranged on the rotating platform. A second adsorption component matching with the curtain wall is arranged on the rotating platform. A counterweight component matching with the building floor is arranged on the mobile vehicle frame. A rotating component matching with the rotating platform is arranged on the mobile vehicle frame.
[0010] Further, the lifting component includes several groups of lifting units arranged on the mobile platform. The mobile ends of the several lifting units are commonly connected to the same lifting platform. An lifting clamping groove matching with the clamping groove is arranged on the lifting platform. Several groups of guide rods are arranged on the mobile platform, and the guide rods penetrate through the lifting platform and are matched with the rotating bracket.
[0011] Further, the rotating bracket includes several horizontally arranged clamping circular blocks. A first clamping groove is arranged on the clamping circular block. A connecting bracket is arranged between the clamping circular blocks. The clamping circular block at the top end is connected to a docking circular block through the connecting bracket. A second clamping groove matching with the first clamping groove is opened on the docking circular block. Rotating circular blocks are arranged between the clamping circular block and the docking circular block and between adjacent two docking circular blocks. Several top support grooves matching with the top support component are opened on the docking circular block.
[0012] Further, the top support component includes a top support hydraulic rod matching with the top support groove. An lifting bracket is arranged at the mobile end of the top support hydraulic rod. The several lifting brackets are commonly connected to the same top support circular plate. A top support groove matching with the first clamping groove is opened on the top support circular plate.
[0013] Further, a first circular groove collinear with the axis of the rotating circular block is formed in the rotating circular block, and a circular gear ring is arranged in the first circular groove; and the rotating bracket includes a plurality of arc-shaped sliding blocks that are slidably matched with the rotating circular block one by one. The chord length of the arc-shaped sliding block is greater than the groove distance between the first clamping groove and the second clamping groove, and a bracket is arranged between the arc-shaped sliding blocks;
[0014] Two oppositely arranged rotating grooves are formed in one of the arc-shaped sliding blocks, a rotating gear meshing with the circular gear ring is arranged in the rotating grooves, and a rotating motor cooperating with the rotating gear is arranged on the arc-shaped sliding block. A plurality of guiding grooves are formed in the remaining arc-shaped sliding blocks, and guiding gears meshing with the circular gear ring are arranged in the guiding grooves;
[0015] A cooperating bracket cooperating with the moving and actuating assembly is arranged on the arc-shaped sliding block.
[0016] Further, the moving and actuating assembly includes a horizontal moving track horizontally arranged on the cooperating bracket, a sliding block is arranged on the horizontal moving track, and the sliding block is provided with a horizontal moving platform. A rotating platform is arranged at one end of the horizontal moving platform, a regulating bracket is arranged on the rotating platform, a spacing adjusting unit is arranged on the regulating bracket, and the spacing adjusting unit cooperates with the first adsorption assembly.
[0017] Further, the spacing adjusting unit includes three groups of regulating telescopic rods vertically arranged on the regulating bracket. The telescopic end of the regulating telescopic rod in the middle is hinged to a spacing regulating plate, and spacing sliding blocks are hinged to the telescopic ends of the regulating telescopic rods at the top and bottom ends. The spacing regulating plate is vertically provided with a spacing regulating track cooperating with the spacing sliding blocks; a first adsorption assembly is arranged on the spacing regulating plate.
[0018] Further, the first auxiliary supporting assembly includes a first telescopic bracket horizontally arranged at the top end of the rotating bracket. The first telescopic bracket is provided with a telescopic hydraulic rod, an auxiliary supporting frame is arranged on the telescopic hydraulic rod, and a supporting plate in clearance fit with the curtain wall is arranged on the auxiliary supporting frame;
[0019] The second auxiliary supporting assembly includes a first telescopic bracket horizontally arranged at the bottom end of the rotating bracket, and the first telescopic bracket is horizontally provided with two telescopic rails, and the two telescopic rails are arranged opposite to each other, a movable screw rod is arranged on the telescopic rail, a U-shaped bracket is arranged on one side of the first telescopic bracket, and the U-shaped bracket is provided with a movable block cooperating with the movable screw rod, a telescopic rod is vertically arranged on the U-shaped bracket, a supporting movable block is arranged at the movable end of the telescopic rod, L-shaped plates cooperating with the curtain wall are arranged at both ends of the supporting movable block, and a guide rail cooperating with the L-shaped plate is opened on the supporting movable block.
[0020] Further, the counterweight assembly includes a top support telescopic rod arranged at the other end of the mobile frame, and one end of the top support telescopic rod is equipped with a telescopic clamping plate matched with the mobile frame, and the other end of the top support telescopic rod is equipped with a top support plate matched with the building ceiling;
[0021] The docking assembly includes a mobile frame arranged on the mobile platform, and the mobile frame is arranged opposite to the clamping groove, a mobile bracket is horizontally arranged on the mobile frame, the mobile bracket is provided with a mobile rack, and the mobile bracket is provided with a driving gear meshing with the mobile rack, the mobile frame is provided with a driving motor cooperating with the driving gear, the mobile bracket is provided with a docking block cooperating with the mobile frame, and the docking block is provided with a docking groove cooperating with the mobile frame, and a docking clamping hydraulic rod cooperating with the mobile frame is provided in the docking groove.
[0022] Furthermore, a receiving groove for receiving the rotating platform is provided on the top surface of the mobile frame, a side of the mobile frame close to the mobile platform is rotatably connected to the rotating platform, the rotating platform comprises a rectangular frame, an alignment plate is provided on a side of the rectangular frame close to the mobile platform, and a second clamping assembly cooperating with the curtain wall is provided at the top of the mobile frame, a plurality of connecting plates are horizontally provided in the rectangular frame, and a second adsorption assembly is provided on the connecting plate;
[0023] The second clamping assembly includes clamping units respectively arranged at both sides of the rectangular frame, and the two groups of clamping units are symmetrically arranged, the clamping units include a plurality of clamping top support rods evenly arranged along the length direction of the rectangular frame, and a fixing plate is arranged at the telescopic end of the clamping top support rod, and the fixing plate is in contact with the curtain wall.
[0024] The second adsorption assembly includes a plurality of adsorption plates arranged on the connecting plate, and a plurality of connecting pump tubes are arranged on the adsorption plates. A vacuum air pump cooperating with the connecting pump tubes is arranged on the side of the mobile frame away from the mobile platform, and a pressure gauge is arranged on the connecting pump tubes.
[0025] Through its unique structural design, the present invention can effectively shorten the curtain wall docking time, and can fine-tune during the curtain wall docking, thereby effectively improving the overall curtain wall docking effect. It can greatly improve the safety of operators, reduce the risk of workers falling, and is also conducive to the installation of building curtain walls at corners. It can quickly complete the installation of curtain walls and can complete the installation of curtain walls in different environments.
[0026] Through the cooperation of its rotating bracket and rotating support, the present invention enables the rotating support to rotate around the rotating bracket. At the same time, in cooperation with the moving component, the curtain wall can rotate around the rotating bracket, so that the curtain wall can be transported to the expected position. And in cooperation with the lifting component, fine-tuning of the curtain wall can be achieved, which can effectively reduce the workload of operators and lower the working difficulty of the entire curtain wall installation.
[0027] Through its unique first auxiliary support component and second auxiliary support component, in cooperation with the first adsorption component, second adsorption component, and second clamping component, the present invention rotates the entire rotating platform, enabling the curtain wall to be stably placed in the first adsorption component, thus facilitating the subsequent transfer of the curtain wall.
[0028] Through its unique docking structure and in cooperation with the use of a mobile vehicle frame, the present invention can quickly complete the installation of the curtain wall. Through its lifting component and moving component, fine-tuning during the curtain wall docking can be achieved, solving the problem of curtain wall splicing caused by docking problems. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 It is a front three-dimensional structural schematic diagram of the present invention in the first state;
[0030] Figure 2 It is a rear three-dimensional structural schematic diagram of the present invention in the first state;
[0031] Figure 3 It is a front three-dimensional structural schematic diagram of the present invention in the second state;
[0032] Figure 4 It is a rear three-dimensional structural schematic diagram of the present invention in the second state;
[0033] Figure 5 It is a front three-dimensional structural schematic diagram of the mobile platform, rotating bracket, and rotating support of the present invention in cooperation;
[0034] Figure 6 It is a rear three-dimensional structural schematic diagram of the mobile platform, rotating bracket, and rotating support of the present invention in cooperation;
[0035] Figure 7Three - dimensional structure schematic diagram of the rear - view cooperation of the rotating bracket and the moving component of the present invention;
[0036] Figure 8 Three - dimensional structure schematic diagram of the front - view cooperation of the rotating bracket and the moving component of the present invention;
[0037] Among them, the attached - drawing reference signs are: 1. Mobile platform; 11. Clamping groove; 12. First clamping component; 13. Docking component; 131. Moving frame; 132. Moving bracket; 133. Docking block; 134. Docking groove; 135. Docking clamping hydraulic rod; 2. Lifting component; 21. Lifting unit; 22. Lifting platform; 23. Guide rod; 3. Rotating bracket; 31. Top - supporting component; 311. Top - supporting hydraulic rod; 312. Lifting bracket; 313. Top - supporting circular plate; 314. Top - supporting groove; 32. Clamping circular block; 321. First clamping groove; 33. Connecting bracket; 34. Docking circular block; 341. Second clamping groove; 35. Rotating circular block; 351. First circular groove; 4. Rotating bracket; 41. First auxiliary supporting component; 411. First telescopic bracket; 412. Telescopic hydraulic rod; 413. Supporting plate; 42. Second auxiliary supporting component; 421. First telescopic bracket; 422. Telescopic track; 423. U - shaped bracket; 424. Telescopic rod; 425. Supporting moving block; 426. L - shaped plate; 43. Arc - shaped sliding block; 44. Bracket; 45. Rotating gear; 46. Rotating motor; 5. Moving component; 51. Horizontal moving track; 52. Sliding block; 53. Horizontal moving platform; 54. Rotating platform; 55. Adjusting bracket; 56. Spacing - adjusting unit; 561. Adjusting telescopic rod; 562. Spacing - adjusting plate; 563. Spacing - sliding block; 564. Spacing - adjusting track; 6. Curtain wall; 7. First adsorption component; 8. Mobile vehicle frame; 9. Rotating platform; 91. Second clamping component; 92. Second adsorption component; 93. Counterweight component; 94. Rectangular frame; 95. Connecting plate. Detailed implementation manners
[0038] See Figures 1 to 4 As shown, an auxiliary installation system for transporting building curtain walls includes a mobile platform 1. A clamping groove 11 for cooperating with a concrete square column is provided on the mobile platform 1. Universal wheels are provided on the mobile platform 1. A lifting component 2 is vertically arranged on the mobile platform 1. A rotating bracket 3 is provided on the mobile platform 1. A rotating bracket 4 cooperating with the rotating bracket 3 is provided on the rotating bracket 3. A moving component 5 is provided on the rotating bracket 4. A first adsorption component 7 for cooperating with a curtain wall 6 is provided on the moving component 5.
[0039] A top support assembly 31 is provided on the rotary support 3. A first clamping assembly 12 that mates with the concrete square column is provided in the rotary support 3. First auxiliary support assemblies 41 and second auxiliary support assemblies 42 are respectively provided at the top and bottom ends of the rotary support 3, and the first auxiliary support assemblies 41 and the second auxiliary support assemblies 42 are respectively in clearance fit with the curtain wall 6.
[0040] A mobile vehicle frame 8 is provided on one side of the mobile platform 1, and a docking assembly 13 that mates with the mobile vehicle frame 8 is provided on the mobile platform 1. A rotating platform 9 that is rotationally mated with the mobile vehicle frame 8 is provided on the mobile vehicle frame 8. A second clamping assembly 91 that mates with the curtain wall 6 is provided on the rotating platform 9. A second adsorption assembly 92 that mates with the curtain wall 6 is provided on the rotating platform 9. A counterweight assembly 93 that mates with the building floor is provided on the mobile vehicle frame 8. A rotating assembly that mates with the rotating platform is provided on the mobile vehicle frame 8.
[0041] Furthermore, the lifting assembly 2 includes a plurality of groups of lifting units 21 provided on the mobile platform 1. The mobile ends of the plurality of lifting units 21 are commonly connected to the same lifting platform 22. A lifting clamping groove that mates with the clamping groove 11 is provided on the lifting platform 22. A plurality of groups of guide rods 23 are provided on the mobile platform 1, and the guide rods 23 penetrate through the lifting platform 22 and mate with the rotary support 3.
[0042] Furthermore, the rotary support 3 includes a plurality of horizontally arranged clamping circular blocks 32. A first clamping groove 321 is provided on the clamping circular blocks 32. A connecting bracket 33 is provided between the clamping circular blocks 32. The clamping circular block 32 at the top end is connected to a docking circular block 34 through the connecting bracket 33. A second clamping groove 341 that mates with the first clamping groove 321 is provided on the docking circular block 34. Rotary circular blocks 35 are provided between the clamping circular block 32 and the docking circular block 34 and between adjacent two docking circular blocks 34. A plurality of top support grooves that mate with the top support assembly 31 are provided on the docking circular block 34.
[0043] Preferably, a lifting groove that mates with the lifting assembly 2 is provided between the clamping circular blocks 32 at the bottom end of the rotary support 3. Specifically, a lifting groove that mates with the guide rod 23 is provided between the clamping circular blocks 32.
[0044] Further, the top support assembly 31 includes a top support hydraulic rod 311 that fits into the top support groove, and a lifting bracket 312 is provided at the moving end of the top support hydraulic rod 311. A plurality of the lifting brackets are commonly connected to the same top support circular plate 313, and a top support groove 314 that cooperates with the first clamping groove 321 is formed on the top support circular plate 313.
[0045] Further, a first circular groove 351 collinear with the axis of the rotating circular block 35 is formed in the rotating circular block 35, and a circular gear ring is provided in the first circular groove 351. The rotating bracket 4 includes a plurality of arc-shaped sliding blocks 43 that are slidably engaged with the rotating circular block 35 one by one. The chord length of the arc-shaped sliding block 43 is greater than the groove distance between the first clamping groove 321 and the second clamping groove 341, and a bracket 44 is provided between the arc-shaped sliding blocks 43.
[0046] Two oppositely arranged rotating grooves are provided in one of the arc-shaped sliding blocks 43. A rotating gear 45 that meshes with the circular gear ring is provided in the rotating grooves, and a rotating motor 46 that cooperates with the rotating gear 45 is provided on the arc-shaped sliding block 43. A plurality of guiding grooves are provided in the remaining arc-shaped sliding blocks 43, and guiding gears that mesh with the circular gear ring are provided in the guiding grooves.
[0047] A cooperating bracket that cooperates with the moving and movable assembly 5 is provided on the arc-shaped sliding block 43.
[0048] Further, the moving and movable assembly 5 includes a horizontal moving track 51 horizontally provided on the cooperating bracket. A sliding block 52 is provided on the horizontal moving track 51, and a horizontal moving platform 53 is provided on the sliding block 52. A rotating platform 54 is provided at one end of the horizontal moving platform 53, and a regulating bracket 55 is provided on the rotating platform 54. A spacing adjusting unit 56 is provided on the regulating bracket 55, and the spacing adjusting unit 56 cooperates with the first adsorption assembly 7.
[0049] Further, the spacing adjusting unit 56 includes three groups of regulating telescopic rods 561 vertically provided on the regulating bracket. The telescopic end of the regulating telescopic rod 561 in the middle is hinged to a spacing regulating plate 562. Spacing sliding blocks 563 are hinged to the telescopic ends of the regulating telescopic rods 561 at the top and bottom ends. A spacing regulating track 564 that cooperates with the spacing sliding blocks 563 is vertically provided on the spacing regulating plate 562. The first adsorption assembly 7 is provided on the spacing regulating plate 562.
[0050] Further, the first adsorption assembly 7 includes a plurality of groups of adsorption suction cups provided on the spacing regulating plate 562, and an air pressure tank communicated with the adsorption suction cups is provided on the moving platform 1.
[0051] Preferably, the first adsorption assembly 7 includes a connecting frame arranged on the spacing regulating plate 562. A connecting screw rod connected to the spacing regulating plate 562 is arranged on the connecting frame. A vertical frame is arranged on the connecting frame, and an angle bracket is arranged on the vertical frame. An angle hydraulic rod is arranged on the angle bracket. Two adsorption brackets are hinged at one end of the angle bracket away from the spacing regulating plate 562. The telescopic end of the angle hydraulic rod is fixedly connected to the adsorption bracket. A plurality of adsorption suction cups are arranged on the adsorption bracket, and an air pressure tank communicated with the adsorption suction cups is arranged on the moving platform 1.
[0052] Furthermore, the first auxiliary support assembly 41 includes a first telescopic support 411 horizontally arranged at the top of the rotating bracket 3. The first telescopic support 411 is provided with a telescopic hydraulic rod 412. An auxiliary support frame is arranged on the telescopic hydraulic rod 412, and a support plate 413 in clearance fit with the curtain wall 6 is arranged on the auxiliary support frame;
[0053] The second auxiliary support assembly 42 includes a first telescopic support 421 horizontally arranged at the bottom of the rotating bracket 3. Two telescopic tracks 422 are horizontally arranged on the first telescopic support 421. The two telescopic tracks 422 are arranged oppositely. A moving lead screw is arranged on the telescopic track 422. A U-shaped bracket 423 is arranged on one side of the first telescopic support 421. A moving block matched with the moving lead screw is arranged on the U-shaped bracket 423. A telescopic rod 424 is vertically arranged on the U-shaped bracket 423. A support moving block 425 is arranged at the moving end of the telescopic rod 424. L-shaped plates 426 matched with the curtain wall 6 are arranged at both ends of the support moving block 425, and a guide rail matched with the L-shaped plates 426 is arranged on the support moving block 425.
[0054] Furthermore, the counterweight assembly 93 includes a top support telescopic rod arranged at the other end of the mobile vehicle frame 8. A telescopic clamping plate matched with the mobile vehicle frame 8 is arranged at one end of the top support telescopic rod, and a top support plate matched with the building ceiling is arranged at the other end of the top support telescopic rod;
[0055] The docking assembly 13 includes a mobile frame 131 arranged on the mobile platform 1, and the mobile frame 131 is arranged opposite to the clamping groove 11, a mobile bracket 132 is horizontally arranged on the mobile frame 131, the mobile bracket 132 is provided with a mobile rack, and the mobile frame is provided with a driving gear meshing with the mobile rack, the mobile frame 131 is provided with a driving motor cooperating with the driving gear, the mobile bracket 132 is provided with a docking block 133 cooperating with the mobile frame 8, and the docking block 133 is provided with a docking groove 134 cooperating with the mobile frame 8, and a docking clamping hydraulic rod 135 cooperating with the mobile frame 8 is provided in the docking groove 134.
[0056] Preferably, the counterweight assembly is arranged on a counterweight bracket at the other end of the moving frame, and the counterweight bracket is provided with a counterweight block.
[0057] Furthermore, a receiving groove 81 for receiving the rotating platform 9 is provided on the top surface of the mobile frame 8, and the side of the mobile frame 8 close to the mobile platform 1 is rotatably connected to the rotating platform 9, and the rotating platform 9 includes a rectangular frame 94, and an alignment plate is provided on the side of the rectangular frame 94 close to the mobile platform 1, and a second clamping component 91 cooperating with the curtain wall 6 is provided at the top of the mobile frame 8, and a plurality of connecting plates are horizontally provided in the rectangular frame 94, and a second adsorption component 92 is provided on the connecting plate;
[0058] The second clamping assembly 91 includes clamping units respectively arranged at both sides of the rectangular frame 94, and the two groups of the clamping units are symmetrically arranged. The clamping units include a plurality of clamping top support rods evenly arranged along the length direction of the rectangular frame, and a fixing plate is arranged at the telescopic end of the clamping top support rod, and the fixing plate is in contact with the curtain wall.
[0059] The second adsorption assembly 92 includes a plurality of adsorption plates arranged on the connecting plate, and a plurality of connecting pump tubes are arranged on the adsorption plates. A vacuum air pump cooperating with the connecting pump tubes is arranged on the side of the mobile frame away from the mobile platform, and a pressure gauge is arranged on the connecting pump tubes.
[0060] Furthermore, the rotating assembly includes a holding unit disposed on the supporting plate 413 and cooperating with the rotating platform 9, and a limiting unit rotatably cooperating with the rotating platform 9 is disposed on the top surface of the moving frame 8;
[0061] Preferably, the pulling unit includes a pulling bracket arranged at the top end of the rotating plate, a winch is arranged on the pulling bracket, a pulling motor cooperating with the winch is arranged on the pulling bracket, a hinge rope is arranged on the winch, and a hook cooperating with the hinge rope is arranged on the mobile platform.
[0062] Preferably, the limiting unit comprises a rotating semicircular block arranged on the movable frame, the rotating semicircular block is provided with a semicircular ring groove, and sliding grooves are provided on both sides of the rectangular frame, and sliding connectors cooperating with the semicircular ring grooves are provided in the sliding grooves.
[0063] Furthermore, the rotating assembly includes rotating columns respectively arranged on both sides of the rotating platform, and the rotating platform is rotatably matched with the moving frame through the rotating columns. A rotating gear is arranged on the rotating column, and the rotating gear is meshed with a driving gear, and a driving motor is arranged on the driving gear.
[0064] When in use, during the entire docking process, the curtain wall of each part is installed specifically according to the scenario in which it is to be used.
[0065] When it comes to ordinary curtain wall 6 installation, that is, during the curtain wall installation process between two concrete square columns, the mobile platform is transported to the appropriate position, and then the entire top support assembly 31 is used to contact the ceiling in the building, so that the entire mobile platform 1 is fixedly placed at the expected position.
[0066] After the expected position of the mobile platform 1 is determined, the entire curtain wall 6 is then hoisted to the expected floor using a crane, and the curtain wall 6 is hoisted to the rotating platform 9 of the mobile frame 8, wherein the entire curtain wall 6 is transported to the rotating platform 9 using manual assistance, and the position of the entire curtain wall 6 is specifically adjusted, and the entire curtain wall 6 is defined by the second adsorption component 92 and the second clamping component 91, and then the entire mobile frame 8 is transported to the mobile platform 1, so that the docking component 13 is docked with the mobile frame 8, and the mobile frame 8 is transported to the docking groove 134, and the docking clamping hydraulic rod 135 is used to fix the mobile frame 8, and then the rotating frame 8 is used. The rotating motor on the bracket 4 causes the rotating bracket 3 to rotate, so that the rotating bracket 3 is transported to the expected position, and then the first auxiliary supporting component 41 and the second auxiliary supporting component 42 are moved, and the first auxiliary supporting component 41 and the second auxiliary supporting component 42 are adjusted to the expected height, and the entire rotating platform 9 is rotated by using the rotating component, so that the rotating platform 9 is changed from a horizontal state to a vertical state, and then the first adsorption component 7 is used to adsorb the entire rotating platform 9, and the second adsorption component 92 and the second clamping component 91 are separated from the curtain wall 6, and then the first auxiliary supporting component 41 and the second auxiliary supporting component 42 are extended and retracted.
[0067] When the entire curtain wall 6 is installed on the rotating bracket 3, then the rotating motor 46 is used to drive the rotating bracket 4 to rotate, and then drive the curtain wall 6 to be transported to the expected position. Subsequently, the height and the specific position of the curtain wall 6 are finely adjusted by using the moving component 5, the lifting component 2, etc.
[0068] When the curtain wall 6 is located directly in front of the building concrete square column, place the concrete square column in the clamping groove, and use the first clamping component 12 to fix the concrete square column. Subsequently, make the entire jacking component 31 contact the ceiling in the building, so that the entire mobile platform 1 is fixedly placed at the expected position. Repeat the same steps as the installation of the ordinary curtain wall 6, so as to finally complete the installation of the curtain wall 6.
[0069] When the curtain wall 6 is located at the four corners of the building and it is a splicing of two templates, place the device on one side of the concrete square column. Subsequently, make the entire jacking component 31 contact the ceiling in the building, so that the entire mobile platform 1 is fixedly placed at the expected position. Repeat the same steps as the installation of the ordinary curtain wall, so as to finally complete the installation of the curtain wall.
[0070] When the curtain wall 6 is located at the four corners of the building and it is a certain arc-shaped template, place the concrete square column in the clamping groove. Subsequently, make the entire jacking component 31 contact the ceiling in the building, so that the entire mobile platform 1 is fixedly placed at the expected position. Repeat the same steps as the installation of the ordinary curtain wall, so as to finally complete the installation of the curtain wall.
[0071] The technical features not described in the present invention can be achieved by or adopted from the prior art, and will not be elaborated here. Of course, the above description is not a limitation of the present invention, and the present invention is not limited to the above examples. Changes, modifications, additions or substitutions made by those of ordinary skill in the art within the scope of the essence of the present invention should also fall within the protection scope of the present invention.
Claims
1. An auxiliary installation system for building curtain wall handling, including a mobile platform (1), and a clamping groove (11) matching with a concrete square column is arranged on the mobile platform (1), and universal wheels are arranged on the mobile platform (1), and it is characterized in that: The mobile station (1) is vertically provided with a lifting assembly (2), and a rotating bracket (3) is arranged on the mobile station (1), and a rotating bracket (4) that cooperates with the rotating bracket (3) is arranged on the rotating bracket (3), and a moving and movable assembly (5) is arranged on the rotating bracket (4), and a first adsorption assembly (7) that cooperates with the curtain wall (6) is arranged on the moving and movable assembly (5); A top support assembly (31) is arranged on the rotating bracket (3), a first clamping assembly (12) that cooperates with the concrete square column is arranged in the rotating bracket (3), a first auxiliary support assembly (41) and a second auxiliary support assembly (42) are respectively arranged at the top and bottom ends of the rotating bracket (3), and the first auxiliary support assembly (41) and the second auxiliary support assembly (42) are respectively in clearance fit with the curtain wall (6); A moving vehicle frame (8) is arranged on one side of the mobile station (1), and a docking assembly (13) that cooperates with the moving vehicle frame (8) is arranged on the mobile station (1), a rotating platform (9) that is rotationally matched with the moving vehicle frame (8) is arranged on the moving vehicle frame (8), a second clamping assembly (91) that cooperates with the curtain wall (6) is arranged on the rotating platform (9), a second adsorption assembly (92) that cooperates with the curtain wall (6) is arranged on the rotating platform (9), a counterweight assembly (93) that cooperates with the building floor slab is arranged on the moving vehicle frame (8), and a rotating assembly that cooperates with the rotating platform is arranged on the moving vehicle frame (8).
2. The auxiliary installation system for transporting a building curtain wall according to claim 1, wherein: The lifting assembly (2) includes several groups of lifting units (21) arranged on the mobile station (1), and the mobile ends of the several lifting units (21) are commonly connected to the same lifting platform (22), and a lifting clamping groove that cooperates with the clamping groove (11) is arranged on the lifting platform (22), and several groups of guide rods (23) are arranged on the mobile station (1), and the guide rods (23) penetrate through the lifting platform (22) to cooperate with the rotating bracket (3).
3. The auxiliary installation system for transporting a building curtain wall according to claim 1, wherein: The rotating bracket (3) includes several horizontally arranged clamping circular blocks (32), and a first clamping groove (321) is arranged on the clamping circular block (32), a connecting bracket (33) is arranged between the clamping circular blocks (32), the clamping circular block (32) at the top end is connected to a docking circular block (34) through the connecting bracket (33), and a second clamping groove (341) that cooperates with the first clamping groove (321) is opened on the docking circular block (34), a rotating circular block (35) is arranged between the clamping circular block (32) and the docking circular block (34) and between two adjacent docking circular blocks (34), and several top support grooves that cooperate with the top support assembly (31) are opened on the docking circular block (34).
4. An auxiliary installation system for transporting building curtain walls according to claim 3, characterized in that: The top support assembly (31) includes a top support hydraulic rod (311) that mates with the top support groove, and a lifting bracket (312) is provided at the moving end of the top support hydraulic rod (311). A plurality of the lifting brackets are commonly connected to the same top support circular plate (313), and a top support groove (314) that mates with the first clamping groove (321) is formed in the top support circular plate (313).
5. An auxiliary installation system for transporting building curtain walls according to claim 3, characterized in that: A first circular groove (351) collinear with the axis of the rotating circular block (35) is formed in the rotating circular block (35), and a circular gear ring is provided in the first circular groove (351); and the rotating bracket (4) includes a plurality of arc-shaped sliding blocks (43) that are slidably mated with the rotating circular block (35) one by one. The chord length of the arc-shaped sliding block (43) is greater than the groove distance between the first clamping groove (321) and the second clamping groove (341), and a bracket (44) is provided between the arc-shaped sliding blocks (43); One of the arc-shaped sliding blocks (43) is provided with two oppositely arranged rotating grooves, a rotating gear (45) that meshes with the circular gear ring is provided in the rotating grooves, and a rotating motor (46) that mates with the rotating gear (45) is provided on the arc-shaped sliding block (43). A plurality of guiding grooves are provided on the remaining arc-shaped sliding blocks (43), and guiding gears that mesh with the circular gear ring are provided in the guiding grooves; A mating bracket that mates with the moving and movable assembly (5) is provided on the arc-shaped sliding block (43).
6. The auxiliary installation system for transporting building curtain walls according to claim 5, characterized in that: The moving and movable assembly (5) includes a horizontal moving track (51) horizontally arranged on the mating bracket. A sliding block (52) is provided on the horizontal moving track (51), and a horizontal moving platform (53) is provided on the sliding block (52). A rotating platform (54) is provided at one end of the horizontal moving platform (53), a regulating bracket (55) is provided on the rotating platform (54), a spacing adjusting unit (56) is provided on the regulating bracket (55), and the spacing adjusting unit (56) mates with the first adsorption assembly (7).
7. An auxiliary installation system for transporting a building curtain wall according to claim 6, characterized in that: The spacing adjusting unit (56) includes three groups of regulating telescopic rods (561) vertically arranged on the regulating bracket. The telescopic end of the regulating telescopic rod (561) at the middle is hinged to a spacing regulating plate (562). The telescopic ends of the regulating telescopic rods (561) at the top and bottom ends are hinged to a spacing sliding block (563). A spacing regulating track (564) that mates with the spacing sliding block (563) is vertically arranged on the spacing regulating plate (562); a first adsorption assembly (7) is provided on the spacing regulating plate (562).
8. An auxiliary installation system for transporting a building curtain wall according to claim 1, characterized in that: The first auxiliary support assembly (41) includes a first telescopic support (411) horizontally arranged at the top end of the rotating bracket (3). The first telescopic support (411) is provided with a telescopic hydraulic rod (412), an auxiliary support frame is provided on the telescopic hydraulic rod (412), and a support plate (413) that has a clearance fit with the curtain wall (6) is provided on the auxiliary support frame; The second auxiliary supporting component (42) comprises a first telescopic bracket (421) horizontally arranged at the bottom end of the rotating bracket (3), and the first telescopic bracket (421) is horizontally provided with two telescopic rails (422), and the two telescopic rails (422) are arranged opposite to each other, and a moving screw is arranged on the telescopic rail (422), and a U-shaped bracket (423) is arranged on one side of the first telescopic bracket (421), and the U-shaped bracket (423) is provided with a moving block that cooperates with the moving screw, and the U-shaped bracket (423) is vertically provided with a telescopic rod (424), and a supporting moving block (425) is arranged at the moving end of the telescopic rod (424), and L-shaped plates (426) that cooperate with the curtain wall (6) are arranged at both ends of the supporting moving block (425), and a guide rail that cooperates with the L-shaped plate (426) is opened on the supporting moving block (425).
9. An auxiliary installation system for transporting a building curtain wall according to claim 1, characterized in that: The counterweight assembly (93) comprises a top support telescopic rod arranged at the other end of the mobile frame (8), one end of the top support telescopic rod is a telescopic clamping plate that cooperates with the mobile frame (8), and the other end of the top support telescopic rod is provided with a top support plate that cooperates with the building ceiling; The docking assembly (13) comprises a moving frame (131) arranged on the moving platform (1), and the moving frame (131) is arranged opposite to the clamping groove (11); a moving bracket (132) is horizontally arranged on the moving frame (131); the moving bracket (132) is provided with a moving rack, and the moving frame is provided with a driving gear meshing with the moving rack; the moving frame (131) is provided with a driving motor mating with the driving gear; the moving bracket (132) is provided with a docking block (133) mating with the moving frame (8); the docking block (133) is provided with a docking groove (134) mating with the moving frame (8); and a docking clamping hydraulic rod (135) mating with the moving frame (8) is provided in the docking groove (134).
10. An auxiliary installation system for transporting a building curtain wall according to claim 1, characterized in that: A receiving groove (81) for receiving the rotating platform (9) is provided on the top surface of the movable frame (8); a side of the movable frame (8) close to the movable platform (1) is rotatably connected to the rotating platform (9); the rotating platform (9) comprises a rectangular frame (94); an alignment plate is provided on a side of the rectangular frame (94) close to the movable platform (1); a second clamping assembly (91) cooperating with the curtain wall (6) is provided at the top end of the movable frame (8); a plurality of connecting plates are horizontally provided in the rectangular frame (94); and a second adsorption assembly (92) is provided on the connecting plate; The second clamping assembly (91) includes clamping units respectively arranged on both sides of the rectangular frame (94), and the two groups of clamping units are symmetrically arranged. The clamping unit includes a plurality of clamping and propping rods uniformly arranged along the length direction of the rectangular frame, and a fixing plate is arranged at the telescopic end of the clamping and propping rod, and the fixing plate is in contact with the curtain wall. The second adsorption assembly (92) includes a plurality of adsorption discs arranged on the connecting plate, and a plurality of connecting pump pipes are arranged on the adsorption discs. A vacuum air pump cooperating with the connecting pump pipes is arranged on one side of the mobile vehicle frame away from the mobile platform, and a pressure gauge is arranged on the connecting pump pipe.
Citation Information
Patent Citations
Installation method of spliced building curtain wall
CN112431336A
Trasferring apparatus for construction panel
KR1020140124122A