A temporary support system for high-rise construction

By designing an adjustable support system, the problem of fixing the existing support frame guardrail structure was solved, and the support plate was adjusted and expanded at multiple angles, which enhanced the functionality and safety of construction and improved the applicability and stability of the equipment.

CN117758980BActive Publication Date: 2026-04-24CHINA MCC17 GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHINA MCC17 GRP CO LTD
Filing Date
2024-01-29
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

The existing support frame has a fixed guardrail structure that cannot be unfolded or deformed, resulting in limited functionality and an inability to meet diverse construction needs.

Method used

A temporary support system for high-rise structure construction was designed, including a base plate, support plate, telescopic rod, electric cylinder, long side plate and short side plate. The long side plate and short side plate are rotated by a drive mechanism. Combined with electromagnetic slider and sealing mechanism, the support plate can be adjusted and expanded at multiple angles to enhance the support effect.

Benefits of technology

It enables multi-angle adjustment and expansion of the support plate, increases the support surface, improves the functionality and safety of construction, enhances the applicability and stability of the equipment, and improves the comfort of construction personnel.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of temporary support systems for high-rise structure construction, including bottom plate;The bottom plate upper end is connected with support plate;Between the bottom plate and support plate, connecting telescopic rod;The four side edges of the support plate are respectively hinged with long side plate and short side plate;Driving mechanism is connected on the long side plate and short side plate;The long side plate and short side plate are rotatably connected with support plate by driving mechanism.The application is designed by setting support plate, two long side plates, two short side plates and driving mechanism, so that support plate, two long side plates, two short side plates and four extension plates form a flat plate, at this time, by four electric cylinders, support plate is displaced upward, which makes the flat plate move upward and contact with the top wall in high-rise structure, thereby achieving support effect and increasing the functionality of the equipment.
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Description

Technical Field

[0001] This invention relates to the field of construction support equipment technology, and in particular to a temporary support system for high-rise structure construction. Background Technology

[0002] Buildings refer to man-made assets and belong to the category of fixed assets. They include two main categories: houses and structures. Houses refer to engineering buildings used for people to live, work, study, produce, operate, entertain, store goods, and carry out other social activities. With social development and the improvement of productivity, a large number of super high-rise buildings have emerged. Currently, during the interior construction of high-rise buildings, especially when painting or waterproofing the interior walls, it is necessary to build a support frame.

[0003] Existing support frame channels typically include a liftable frame and a guardrail installed on top of the liftable frame. Wheels are installed at the bottom of the liftable frame to facilitate movement, and a stabilizing mechanism is usually installed on the support frame to ensure stability during use. However, most existing support frames still have the following drawbacks in actual use:

[0004] The guardrail structure of the support frame is fixed, and the guardrail cannot be unfolded or deformed, making it inconvenient to use the support frame for support and limiting its function. Summary of the Invention

[0005] The purpose of this invention is to solve the problems in the prior art by proposing a temporary support system for high-rise structure construction.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] A temporary support system for high-rise structure construction includes a base plate; wheels are connected to the lower end of the base plate; a spirit level is fixedly connected to the upper surface of the base plate; a support plate is connected to the upper surface of the base plate; a telescopic rod is connected between the base plate and the support plate; a connecting block is fixedly connected to the upper end of the telescopic rod; an electric cylinder is connected between the connecting block and the base plate; the output end of the electric cylinder is fixedly connected to the bottom end of the connecting block; the telescopic rod drives the telescopic part of the connecting block and the telescopic rod to move up and down through the electric cylinder; long side plates and short side plates are respectively hinged to the four sides of the support plate; a driving mechanism is connected to each of the long side plates and short side plates; the long side plates and short side plates are rotatably connected to the support plate through the driving mechanism; extension plates are symmetrically slidably connected to the two long side plates along the axial direction, and electromagnetic sliders connected to the extension plates are fixedly connected to the long side plates.

[0008] Preferably, the long side plate includes a long plate body hinged to the support plate; a receiving groove is provided at the top of the long plate body; a long inner plate is movably inserted through the long plate body and located in the receiving groove; an electric actuator connected to the long inner plate is fixedly installed in the long plate body and located in the receiving groove.

[0009] Preferably, the short side plate includes a short plate body hinged to the support plate; the short plate body is hinged to the support plate; a receiving groove 2 is provided at the top of the short plate body; a short inner plate is movably inserted through the short plate body and located in the receiving groove 2; an electric actuator 2 connected to the short inner plate is fixedly installed in the short plate body and located in the receiving groove 2.

[0010] Preferably, the extension plate is disposed on the long plate and connected to the long inner plate; the extension plate includes an outer plate that is slidably mounted on the long plate in a horizontal direction; the top of the outer plate has an inner plate that movably passes through it; a guide rod in a vertical direction is fixedly disposed inside the outer plate; the inner plate is slidably connected to the guide rod; the inner plate is slidably connected to the long inner plate; and the electromagnetic slider is fixedly mounted on the long inner plate and connected to the inner plate.

[0011] Preferably, the long inner plate has multiple through holes 1; the multiple through holes 1 are distributed in an equidistant array; a sealing mechanism 1 is connected to the long inner plate; the sealing mechanism 1 is used to seal the multiple through holes 1; the short inner plate has multiple through holes 2; the multiple through holes 2 are distributed in an equidistant array; a sealing mechanism 2 is connected to the short inner plate; the sealing mechanism 2 is used to seal the multiple through holes 2.

[0012] Preferably, the first sealing mechanism includes a sealing plate; the sealing plate matches the first through hole; a groove is formed inside the long inner plate on the side near the first through hole; the sealing plates are slidably installed in the grooves; a sliding groove is formed on one side of the long inner plate below the multiple first through holes; the sliding groove is connected to the multiple grooves; an adjusting plate that is fixedly connected to the multiple sealing plates is slidably connected in the sliding groove; the second sealing mechanism has the same structure as the first sealing mechanism.

[0013] Preferably, the drive mechanism includes a servo motor and a bevel gear assembly; the servo motor is fixedly mounted on the support plate; the output shaft of the servo motor is coaxially fixedly connected to one of the hinge shafts on the support plate; the other two adjacent hinge shafts on the support plate are connected to each other by bevel gear assemblies; the bevel gear assemblies in two adjacent groups are symmetrically arranged.

[0014] Preferably, the upper end of the telescopic rod is also connected to a connecting mechanism; the connecting mechanism includes a housing and a connecting rod; the housing is disposed at the bottom of the support plate; the connecting rod movably passes through the bottom end of the housing and is hinged to the upper end of the connecting block; an electric cylinder II connected to the connecting rod is fixedly installed inside the housing; a servo motor II for driving the connecting rod to rotate is fixedly installed on one of the connecting blocks.

[0015] Preferably, a stabilizing mechanism is connected to the base plate; the stabilizing mechanism includes multiple threaded rods, all vertical and threaded through the base plate; a contact plate is installed at the bottom of the threaded rods; the contact plate is driven to contact the ground through the threaded rods.

[0016] Preferably, a lifting mechanism is connected to the outer side of the long side plate; the lifting mechanism includes a bracket fixedly connected to the long plate; a winding roller is rotatably connected to the bracket; a pull rope is wound on the winding roller; a hook is fixedly connected to the end of the pull rope; and a handwheel is fixedly connected to the winding roller.

[0017] Compared with the prior art, the present invention provides a temporary support system for high-rise structure construction, which has the following beneficial effects:

[0018] This temporary support system for high-rise structure construction, through the design of a support plate, two long side plates, two short side plates, and a drive mechanism, allows the two long and two short side plates to rotate on the support plate, ensuring that they are all on the same horizontal plane. Furthermore, by controlling two electromagnetic sliders on the long side plates, the two extension plates are moved away from each other, aligning the sides of the two extension plates that are moving away from each other with the sides of the two short side plates that are moving away from each other. This creates a flat plate formed by the support plate, the two long side plates, the two short side plates, and the four extension plates. Then, by using four electric cylinders to move the support plate upwards, the flat plate moves upwards to contact the inner top wall of the high-rise structure, thus achieving a support effect and increasing the functionality of the equipment.

[0019] The parts of this device not covered herein are the same as or can be implemented using existing technologies. This invention has a simple structure and is easy to operate. Attached Figure Description

[0020] Figure 1 A three-dimensional structural schematic diagram of the present invention is shown;

[0021] Figure 2 A schematic diagram of the installation structure of the drive mechanism of the present invention is shown;

[0022] Figure 3 A schematic diagram of the installation structure of the spirit level of the present invention is shown;

[0023] Figure 4A schematic diagram of the mounting structure of the servo motor II of the present invention is shown;

[0024] Figure 5 A schematic diagram of the structure of the short side plate of the present invention is shown;

[0025] Figure 6 A schematic diagram of the installation structure of the sealing mechanism of the present invention is shown;

[0026] Figure 7 A schematic diagram of the lifting mechanism of the present invention is shown;

[0027] Figure 8 A schematic diagram of the mounting structure of the extension plate of the present invention is shown;

[0028] Figure 9 A schematic diagram of the installation structure of the electromagnetic slider of the present invention is shown.

[0029] In the diagram: 1. Base plate; 11. Wheel body; 12. Telescopic rod; 13. Connecting block; 131. Servo motor II; 14. Electric cylinder I; 15. Stabilizing mechanism; 151. Threaded rod; 152. Contact plate; 16. Level; 2. Connecting mechanism; 21. Housing; 22. Connecting rod; 23. Electric cylinder II; 3. Support plate; 31. Long side plate; 311. Long plate body; 312. Receiving groove I; 313. Long inner plate; 3131. Through hole I; 3132. Groove; 3133. Sliding groove; 314. Electric push rod 1. Short side plate; 32. Short plate body; 322. Receiving groove 2; 323. Short inner plate; 3231. Through hole 2; 324. Electric push rod 2; 33. Extension plate; 331. Outer plate body; 332. Inner plate body; 34. Electromagnetic slider; 4. Drive mechanism; 41. Servo motor 1; 42. Bevel gear assembly; 5. Sealing mechanism 1; 51. Sealing plate; 52. Adjusting plate; 6. Sealing mechanism 2; 7. Lifting mechanism; 71. Bracket; 72. Winding roller; 73. Pull rope; 74. Hook; 75. Handwheel. Detailed Implementation

[0030] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0031] In the description of this invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0032] Example 1

[0033] Reference Figure 1-9 A temporary support system for high-rise structure construction includes a base plate 1; a wheel 11 is connected to the lower end of the base plate 1; a level 16 is fixedly connected to the upper surface of the base plate 1; a support plate 3 is connected to the upper end of the base plate 1; a telescopic rod 12 is connected between the base plate 1 and the support plate 3; a connecting block 13 is fixedly connected to the upper end of the telescopic rod 12; an electric cylinder 14 is connected between the connecting block 13 and the base plate 1; the output end of the electric cylinder 14 is fixedly connected to the bottom end of the connecting block 13; the telescopic rod 12 drives the telescopic parts of the connecting block 13 and the telescopic rod 12 to move up and down through the electric cylinder 14; the support plate 3 has a rectangular cross-section, and long side plates 31 are hinged to both sides of the support plate 3 along its length direction, and short side plates 32 are hinged to both sides of the support plate 3 along its width direction; a driving mechanism 4 is connected to both the long side plates 31 and the short side plates 32; the long side plates 31 and the short side plates 32 are rotatably connected to the support plate 3 through the driving mechanism 4.

[0034] The long side plate 31 includes a long plate body 311 hinged to the support plate 3; the top of the long plate body 311 has a receiving groove 312; a long inner plate 313 is movably inserted through the long plate body 311 within the receiving groove 312; an electric actuator 314 connected to the long inner plate 313 is fixedly installed inside the long plate body 311 within the receiving groove 312. The short side plate 32 includes a short plate body 321 hinged to the support plate 3; the short plate body 321 is hinged to the support plate 3; the top of the short plate body 321 has a receiving groove 322; a short inner plate 323 is movably inserted through the short plate body 321 within the receiving groove 322; an electric actuator 324 connected to the short inner plate 323 is fixedly installed inside the short plate body 321 within the receiving groove 322.

[0035] By utilizing the design of the long inner plate 313 and the short inner plate 323, the long inner plate 313 can be slid outward along the long plate body 311 by electric actuator 314, and the short inner plate 323 can be slid outward along the short plate body 321 by electric actuator 324. This increases the area of ​​the long side plate 31 and the short side plate 32. When the long inner plate 313 slides outward along the long plate body 311, it drives the inner plate body 332 to slide outward along the outer plate body 331, thereby increasing the overall area of ​​the plate and increasing the support surface of the equipment, which is beneficial for workers to carry out construction.

[0036] The drive mechanism 4 includes a servo motor 41 and a bevel gear assembly 42. The servo motor 41 is fixedly mounted on the support plate 3. The output shaft of the servo motor 41 is coaxially fixedly connected to one of the hinge shafts on the support plate 3. The other two adjacent hinge shafts on the support plate 3 are connected to each other by the bevel gear assembly 42. The bevel gear assemblies 42 are symmetrically arranged between adjacent sets. In use, the servo motor 41 is turned on, and the servo motor 41 drives the hinge shaft fixed to it to rotate, thereby driving multiple hinge shafts to rotate on the support plate 3 through multiple sets of bevel gear assemblies 42. Since the bevel gear assemblies 42 are symmetrically arranged between adjacent sets, the two long side plates 31 and the two short side plates 32 can rotate on the support plate 3, so that the two long side plates 31 and the two short side plates 32 are perpendicular to the support plate 3 or on the same horizontal plane, which is convenient for control.

[0037] Example 2

[0038] Based on the above embodiments, refer to Figure 8 Two long side plates 31 are symmetrically slidably connected to extension plates 33 along the axial direction. An electromagnetic slider 34 connected to the extension plate 33 is fixedly connected to the long side plate 31. The extension plate 33 is disposed on the long plate body 311 and connected to the long inner plate 313. The extension plate 33 includes an outer plate body 331 that is slidably mounted on the long plate body 311 in a horizontal direction. An inner plate body 332 is movably passed through the top of the outer plate body 331. A vertical guide rod is fixedly disposed inside the outer plate body 331. The inner plate body 332 is slidably connected to the guide rod. The inner plate body 332 is slidably connected to the long inner plate 313. The electromagnetic slider 34 is fixedly mounted on the long inner plate 313 and connected to the inner plate body 332.

[0039] When the two extension plates 33 are in contact, the sides of the two extension plates 33 that are far apart from each other are flush with the two ends of the long side plate 31. When the two long side plates 31 and the two short side plates 32 are all on the same horizontal plane as the support plate 3, the sides of the two extension plates 33 that are far apart from each other can be flush with the sides of the two short side plates 32 that are far apart from each other.

[0040] Example 3

[0041] Based on the above embodiments, refer to Figure 6 The long inner plate 313 has multiple through holes 3131; the multiple through holes 3131 are distributed in an equidistant array; a sealing mechanism 5 is connected to the long inner plate 313; the sealing mechanism 5 is used to seal the multiple through holes 3131; the short inner plate 323 has multiple through holes 3231; the multiple through holes 3231 are distributed in an equidistant array; a sealing mechanism 6 is connected to the short inner plate 323; the sealing mechanism 6 is used to seal the multiple through holes 3231.

[0042] The first sealing mechanism 5 includes a sealing plate 51; the sealing plate 51 matches the first through hole 3131; the inner long plate 313 has grooves 3132 on the side near the first through hole 3131; the sealing plates 51 are slidably installed in the grooves 3132; a sliding groove 3133 is provided on one side of the inner long plate 313 and below the multiple first through holes 3131; the sliding groove 3133 is connected to the multiple grooves 3132; an adjusting plate 52, which is fixedly connected to the multiple sealing plates 51, is slidably connected in the sliding groove 3133; the second sealing mechanism 6 has the same structure as the first sealing mechanism 5.

[0043] By designing through holes 3131 and 3231, when using this equipment to seal windows for protection, the sealing mechanism 5 can be used to seal multiple through holes 3131, and the sealing mechanism 6 can be used to seal multiple through holes 3231, thereby increasing indoor ventilation and improving the comfort of workers. When supporting the inner top wall of a high-rise structure, the sealing mechanism 5 can be used to seal multiple through holes 3131, and the sealing mechanism 6 can be used to seal multiple through holes 3231.

[0044] In use, applying force to the adjusting plate 52 causes it to slide within the sliding groove 3133, which in turn drives multiple sealing plates 51 to slide into multiple grooves 3132, allowing the sealing plates 51 to be hidden within the grooves 3132, thus canceling the sealing of the first through hole 3131. Applying force to the adjusting plate 52 causes multiple sealing plates 51 to slide out of the multiple grooves 3132, thus sealing the first through hole 3131. The operation is simple.

[0045] Example 4

[0046] Based on the above embodiments, refer to Figure 4 The upper end of the telescopic rod 12 is also connected to a connecting mechanism 2; the connecting mechanism 2 includes a housing 21 and a connecting rod 22; the housing 21 is disposed at the bottom of the support plate 3; the connecting rod 22 movably passes through the bottom end of the housing 21 and is hinged to the upper end of the connecting block 13; an electric cylinder 23 connected to the connecting rod 22 is fixedly installed inside the housing 21; a servo motor 231 for driving the connecting rod 22 to rotate is fixedly installed on one of the connecting blocks 13.

[0047] In use, the electric cylinder 23 is controlled to make the connecting rod 22 slide along the housing 21, thereby adjusting the length of the connecting mechanism 2, increasing the overall length of the connecting mechanism 2, and adjusting the height of the support plate 3, thus increasing the applicability of the device. Through the design of the servo motor 131, controlling the servo motor 131 to turn it on will make the connecting rod 22 rotate on the connecting block 13. Then, by using the two electric cylinders 14 on the base plate 1 and located on the same side below the servo motor 131, the support plate 3 can be adjusted to a vertical position. This allows the device to be moved to the window of a high-rise building to seal the window, achieving a protective effect and increasing the safety of workers during construction.

[0048] Example 5

[0049] Based on the above embodiments, refer to Figure 1 , Figure 3 A stabilizing mechanism 15 is connected to the base plate 1. The stabilizing mechanism 15 includes multiple threaded rods 151, all vertical and threaded through the base plate 1. A contact plate 152 is installed at the bottom of each threaded rod 151. The contact plate 152 is driven to contact the ground by the threaded rods 151. In use, a force is applied to the threaded rods 151, causing them to rotate on the base plate 1. This causes the threaded rods 151 to spiral downwards along the base plate 1, thereby driving the contact plate 152 to contact the ground, increasing the contact area between the equipment and the ground, and thus increasing the stability of the equipment.

[0050] Example 6

[0051] Based on the above embodiments, refer to Figure 7 The outer side of the long side plate 31 is connected to a lifting mechanism 7; the lifting mechanism 7 includes a bracket 71 fixedly connected to the long plate body 311; a winding roller 72 is rotatably connected to the bracket 71; a pull rope 73 is wound on the winding roller 72; a hook 74 is fixedly connected to the end of the pull rope 73; and a handwheel 75 is fixedly connected to the winding roller 72.

[0052] When in use, place the material in the container, hang the container using the hook 74, turn the handwheel 75 to drive the winding roller 72 to rotate on the bracket 71, winding the pull rope 73, and causing the hook 74 to move upward, thus achieving the effect of lifting the goods, which is convenient to use.

[0053] Working principle and usage process of this invention:

[0054] In use, the operator stands on the support plate 3 and controls four electric cylinders 14 to move the four connecting blocks 13 up and down along the four telescopic rods 12. This, in turn, drives the support plate 3 to move up and down via the connecting mechanism 2, adjusting its position to support the operator. While supporting the operator, force is applied to multiple threaded rods 151, causing them to rotate on the base plate 1. This spirals the threaded rods 151 downwards along the base plate 1, bringing the contact plate 152 into contact with the ground. When the ground is uneven, the contact plate 152 rotates with the threaded rods 151, increasing the contact area and further enhancing the stability of the equipment. The design of the level 16 allows the operator to observe the tilt of the base plate 1. By coordinating the multiple threaded rods 151, the base plate 1 can be adjusted to a horizontal position, further increasing the stability of the equipment.

[0055] When this equipment is needed to support the inner top wall of a high-rise structure, the servo motor 41 is activated. The servo motor 41 drives the hinge shaft fixed to it to rotate, causing the two long side plates 31 and two short side plates 32 to rotate on the support plate 3. This ensures that the two long side plates 31 and two short side plates 32 are all on the same horizontal plane as the support plate 3. Four electric cylinders 14 then move the support plate 3 upwards, allowing the flat plate to move upwards and contact the inner top wall of the high-rise structure, thus achieving the support effect and increasing the functionality of the equipment. The electric push rod 314 can then move the long inner plate 313 along its length... The plate 311 slides outward, and the short inner plate 323 can slide outward along the short plate 321 via the electric push rod 324, thereby increasing the area of ​​the long side plate 31 and the short side plate 32. When the long inner plate 313 slides outward along the long plate 311, it drives the inner plate 332 to slide outward along the outer plate 331. Then, the two electromagnetic sliders 34 on the long inner plate 313 are used to move the two inner plates 332 away from each other, and drive the two outer plates 331 away from each other, thereby increasing the overall area of ​​the plate and increasing the support surface of the equipment, which is beneficial for workers to carry out construction.

[0056] By designing the connecting mechanism 2 and servo motor 131, the electric cylinder 23 is controlled to slide the connecting rod 22 along the housing 21, thereby adjusting the length of the connecting mechanism 2, increasing the overall length of the connecting mechanism 2, and adjusting the height of the support plate 3, thus increasing the applicability of the device. By designing the servo motor 131, controlling the servo motor 131 to turn it on allows the connecting rod 22 to rotate on the connecting block 13. Then, by using the two electric cylinders 14 on the base plate 1 and located on the same side below the servo motor 131, the support plate 3 can be adjusted to a vertical position, allowing the device to be moved to the window of a high-rise building to seal the window, achieving a protective effect and increasing the safety of workers during construction. During this process, the sealing mechanism 5 can be removed from sealing multiple through holes 3131, and the sealing mechanism 6 can be removed from sealing multiple through holes 3231, thereby increasing indoor ventilation and increasing the comfort of workers during construction.

[0057] By utilizing the design of the lifting mechanism 7, when in use, the material is placed inside the container, the container is hung using the hook 74, and the handwheel 75 is turned to drive the winding roller 72 to rotate on the bracket 71, winding the pull rope 73 and causing the hook 74 to move upward, thereby achieving the effect of lifting the goods, which is convenient to use.

[0058] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A temporary support system for high-rise structure construction, characterized in that, Includes a base plate (1); a wheel (11) is connected to the lower end of the base plate (1); a level (16) is fixedly connected to the upper surface of the base plate (1); a support plate (3) is connected to the upper end of the base plate (1); a telescopic rod (12) is connected between the base plate (1) and the support plate (3); a connecting block (13) is fixedly connected to the upper end of the telescopic rod (12); an electric cylinder (14) is connected between the connecting block (13) and the base plate (1); the output end of the electric cylinder (14) is fixedly connected to the bottom end of the connecting block (13); the telescopic rod (12) drives the telescopic part of the connecting block (13) and the telescopic rod (12) to move up and down through the electric cylinder (14); the support plate (3) The four sides are respectively hinged with long side plates (31) and short side plates (32); each of the long side plates (31) and short side plates (32) is connected to a drive mechanism (4); the long side plates (31) and short side plates (32) are rotatably connected to the support plate (3) through the drive mechanism (4); the two long side plates (31) are symmetrically slidably connected to the extension plates (33) along the axial direction, and the long side plates (31) are fixedly connected to the electromagnetic sliders (34) connected to the extension plates (33); The long side plate (31) includes a long plate body (311) hinged to the support plate (3); the top of the long plate body (311) is provided with a receiving groove (312); a long inner plate (313) is movably inserted through the long plate body (311) and located in the receiving groove (312); an electric actuator (314) connected to the long inner plate (313) is fixedly installed in the long plate body (311) and located in the receiving groove (312). The extension plate (33) is disposed on the long plate body (311) and connected to the long inner plate (313); the extension plate (33) includes an outer plate body (331) that is horizontally slidably installed on the long plate body (311); the top of the outer plate body (331) is movably penetrated by the inner plate body (332); a vertically oriented guide rod is fixedly disposed inside the outer plate body (331); the inner plate body (332) is slidably connected to the guide rod; the inner plate body (332) is slidably connected to the long inner plate (313); the electromagnetic slider (34) is fixedly installed on the long inner plate (313) and connected to the inner plate body (332).

2. The temporary support system for high-rise structure construction according to claim 1, characterized in that, The short side plate (32) includes a short plate body (321) hinged to the support plate (3); the short plate body (321) is hinged to the support plate (3); a receiving groove (322) is provided on the top of the short plate body (321); a short inner plate (323) is movably inserted through the short plate body (321) and located in the receiving groove (322); an electric actuator (324) connected to the short inner plate (323) is fixedly installed in the short plate body (321) and located in the receiving groove (322).

3. A temporary support system for high-rise structure construction according to claim 2, characterized in that, The long inner plate (313) has multiple through holes (3131) arranged in an equidistant array. A sealing mechanism (5) is connected to the long inner plate (313). The sealing mechanism (5) is used to seal the multiple through holes (3131). The short inner plate (323) has multiple through holes (3231) arranged in an equidistant array. A sealing mechanism (6) is connected to the short inner plate (323). The sealing mechanism (6) is used to seal the multiple through holes (3231).

4. A temporary support system for high-rise structure construction according to claim 3, characterized in that, The first sealing mechanism (5) includes a sealing plate (51); the sealing plate (51) matches the first through hole (3131); a groove (3132) is provided on the side of the long inner plate (313) near the first through hole (3131); the sealing plates (51) are slidably installed in the grooves (3132); a sliding groove (3133) is provided on one side of the long inner plate (313) and below the multiple first through holes (3131); the sliding groove (3133) is connected to the multiple grooves (3132); an adjusting plate (52) is slidably connected in the sliding groove (3133) and is fixedly connected to the multiple sealing plates (51); the second sealing mechanism (6) has the same structure as the first sealing mechanism (5).

5. A temporary support system for high-rise structure construction according to claim 1, characterized in that, The drive mechanism (4) includes a servo motor (41) and a bevel gear assembly (42); the servo motor (41) is fixedly mounted on the support plate (3); the output shaft of the servo motor (41) is coaxially fixedly connected to one of the hinge shafts on the support plate (3); the other two adjacent hinge shafts on the support plate (3) are connected to each other by bevel gear assembly (42); the bevel gear assemblies (42) of the two adjacent sets are symmetrically arranged.

6. A temporary support system for high-rise structure construction according to claim 1, characterized in that, The upper end of the telescopic rod (12) is also connected to a connecting mechanism (2); the connecting mechanism (2) includes a housing (21) and a connecting rod (22); the housing (21) is located at the bottom of the support plate (3); the connecting rod (22) moves through the bottom end of the housing (21) and is hinged to the upper end of the connecting block (13); an electric cylinder two (23) connected to the connecting rod (22) is fixedly installed inside the housing (21); a servo motor two (131) for driving the connecting rod (22) to rotate is fixedly installed on one of the connecting blocks (13).

7. A temporary support system for high-rise structure construction according to claim 1, characterized in that, A stabilizing mechanism (15) is connected to the base plate (1); the stabilizing mechanism (15) includes multiple threaded rods (151) that are all vertical and threaded through the base plate (1); a contact plate (152) is installed at the bottom of the threaded rod (151); the contact plate (152) is driven to contact the ground through the threaded rod (151).

8. A temporary support system for high-rise structure construction according to claim 1, characterized in that, A lifting mechanism (7) is connected to the outside of the long side plate (31); the lifting mechanism (7) includes a bracket (71) fixedly connected to the long plate body (311); a winding roller (72) is rotatably connected to the bracket (71); a pull rope (73) is wound on the winding roller (72); a hook (74) is fixedly connected to the end of the pull rope (73); and a handwheel (75) is fixedly connected to the winding roller (72).

Citation Information

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