Support system for hydraulic creeping formwork construction and mounting method thereof

By designing a hydraulic climbing formwork support system, rapid installation is achieved through connecting locks and embedded structures. Combined with a drive motor to adjust the position of the formwork and the angle of the support pipe, the problem of cumbersome assembly of existing supports is solved, thus improving construction efficiency and safety.

CN121853473APending Publication Date: 2026-04-14CHINA CONSTR FOURTH ENG DIV CORP LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-16
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

The existing hydraulic climbing formwork support is cumbersome to assemble during construction, which affects construction efficiency.

Method used

A hydraulic climbing formwork construction support system was designed, including components such as a first support arm, mounting frame, fixed base, clamps and support feet. It achieves rapid installation through connecting buckles and embedded structure, and uses a drive motor to adjust the position of the formwork and the support tube to adjust the angle, thereby improving the ease of operation and safety.

Benefits of technology

It enables rapid installation and adjustment of the support system, improves construction efficiency, enhances safety, reduces usage risks, and extends the lifespan of the equipment.

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Abstract

The invention discloses a support system for hydraulic creeping formwork construction and a mounting method of the support system, and relates to the technical field of bridge construction, in particular to the support system for hydraulic creeping formwork construction and the mounting method of the support system for hydraulic creeping formwork construction. Connecting lock catches are fixedly mounted on the left side and the right side of the mounting frame correspondingly, a third supporting arm is mounted at the upper end of the second supporting arm, and a pushing rod is slidably mounted at the upper end of the third supporting arm. According to the support system for hydraulic creeping formwork construction and the mounting method of the support system, a device is quickly mounted by matching a connecting lock catch with an embedded part structure, so that a first supporting arm is supported and limited by matching with an upper fixing base and a supporting foot, and then an upper structure is supported by matching with a second supporting arm and a supporting pipe; the device is simple in structure and easy to operate during use, and can be quickly mounted, so that a subsequent structure can be conveniently constructed and used.
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Description

Technical Field

[0001] This invention relates to the field of bridge construction technology, specifically to a hydraulic climbing formwork construction support system and its installation method. Background Technology

[0002] Since the beginning of the 21st century, with the rapid development of bridge construction technology and the application of new materials, the bridge industry has gradually integrated practical functions with artistic concepts when designing and building bridges, giving full consideration to the protection of the surrounding environment. As a result, bridges have become new tourist attractions in cities. In particular, the three-dimensional curved pylons of cable-stayed bridges, with their smooth lines and novel and beautiful shapes, are being used more and more widely. While these three-dimensional curved concrete pylons add to the aesthetics, they also greatly increase the difficulty of construction, especially in order to ensure the outline of the pylon and high-altitude operations.

[0003] Hydraulic climbing formwork technology utilizes hydraulic cylinders to automatically ascend the formwork within the wall. It offers advantages such as simple operation, high speed, and high safety during construction, significantly reducing construction costs and accelerating progress in concrete cable tower construction. Currently, most existing hydraulic climbing formwork systems rely on cranes or climbing frames for erection. However, these systems are often complex, requiring multiple people to work together, and necessitate subsequent use with tower cranes to lift materials for further ascent, making them inconvenient to use. Summary of the Invention

[0004] To address the shortcomings of existing technologies, this invention provides a hydraulic climbing formwork construction support system and its installation method, which solves the problems mentioned in the background art, such as the cumbersome assembly of existing hydraulic climbing formwork supports in actual use, which can easily slow down construction efficiency.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a hydraulic climbing formwork construction support system, comprising a first support arm, an mounting frame slidably mounted on the upper end of the first support arm, connecting latches fixedly mounted on both the left and right sides of the mounting frame, a fixed base mounted on the lower end of the first support arm, a clamp fixedly mounted on the lower end of the fixed base, two supporting feet slidably mounted on the side end of the clamp, a second support arm mounted on the upper end of the first support arm, a support tube installed between the second support arm and the fixed base, a third support arm mounted on the upper end of the second support arm, and a push rod slidably mounted on the upper end of the third support arm.

[0006] Optionally, the first support arm has reserved holes on both the upper and lower sides, four first fixing blocks are fixedly installed inside the first support arm, and first threaded bolts are slidably installed inside the two reserved holes on the upper part of the first support arm. A first nut is fitted on the outer surface of each first threaded bolt.

[0007] Optionally, a sliding block is fixedly installed inside the mounting bracket. The mounting bracket is slidably installed above the first support arm through the sliding block cooperating with the first threaded bolt, the first nut, and the reserved hole. Connecting latches are installed on both the left and right sides of the mounting bracket. Each connecting latch has a fixing buckle installed on its side end. Each connecting latch is slidably installed on both sides of the mounting bracket through the fixing buckle.

[0008] Optionally, two second threaded bolts are slidably installed inside the fixed base, and a second nut is fitted on the outer surface of each second threaded bolt. The fixed base is installed below the first support arm by cooperating with the second threaded bolts, the second nuts and two reserved holes opened below the first support arm.

[0009] Optionally, a first limiting hole is provided at the side end of the fixed base, an installation side plate is fixedly installed at the lower end of the fixed base, a clamp is fixedly installed at the side end of the installation side plate, two support rods are slidably installed inside the clamp, and a support foot is fixedly installed at the side end of each support rod.

[0010] Optionally, a retaining plate is slidably installed on the side end of the second support arm. Two third threaded bolts are slidably installed inside the retaining plate. A fourth nut is fitted on the outer surface of the side end of each third threaded bolt. The lower end of the retaining plate is inserted into the sliding block. The second support arm is slidably installed above the first support arm through the cooperation of the retaining plate, the sliding block, the first threaded bolt, the first nut, and the reserved hole.

[0011] Optionally, four second fixing blocks are fixedly installed inside the second support arm. First threaded rotating rods are rotatably installed on both the left and right sides of the support tube. A connecting rotating block is installed on the side end of one of the first threaded rotating rods. The connecting rotating block is connected to the side opening of the second support arm. A rotating platform is rotatably installed on the side end of the other first threaded rotating rod. Mounting columns are rotatably installed on both sides of the rotating platform. The rotating platform and mounting columns are installed inside the fixed base in cooperation with the first limiting hole.

[0012] Optionally, four third fixing blocks are fixedly installed inside the third support arm, and four fourth threaded bolts are installed on the lower left and right sides of the third support arm. The third support arm is installed above the second support arm through the fourth threaded bolts, and a support plate is fixedly installed at the upper end of the third support arm.

[0013] Optionally, a second threaded rotating rod is rotatably mounted inside the support plate, a drive motor is mounted on the side end of the second threaded rotating rod, a push rod is sleeved on the outer surface of the second threaded rotating rod, a clamping base plate is fixedly mounted on the side end of the push rod, and two mounting buckles are fixedly mounted on the upper end of the clamping base plate.

[0014] An installation method for a hydraulic climbing formwork construction support system includes the following specific installation steps: Step 1: The user first prepares the embedded part assembly, which consists of an embedded plate, high-strength bolts, climbing cones, load-bearing bolts, and embedded support. First, fix the climbing cones, load-bearing bolts, and high-strength bolts to the panel of the template. Then, apply enough grease to the contact surface between the climbing cone and the concrete and the internal threads, and wrap it with plastic film to ensure that the climbing cone can be easily removed after the concrete is poured. The user then inserts the embedded plate, climbing cones, load-bearing bolts, and other structures into the concrete for installation. Step 2: The user picks up the first support arm and mates it with the sliding block installed inside the mounting bracket through the two pre-drilled holes on the top of the first support arm. Then, the user takes the first threaded bolt and the first nut and installs them to limit their movement. The first threaded bolt and the first nut are passed through the sliding block and the pre-drilled holes to limit their movement. Then, the user installs and fixes the first support arm with the fixed base, the second threaded bolt, and the second nut in the same way through the pre-drilled holes on the bottom of the first support arm. Finally, the user installs two support rods by drilling holes inside the clamp under the fixed base. Step 3: Then install the clamping plate on the side of the second support arm. Use the third threaded bolt and the fourth nut to fit the clamping plate into the hole on the side of the second support arm. Then insert the lower part of the clamping plate into the sliding block and fit it with the first threaded bolt and the first nut to install the second support arm above the first support arm. Then pick up the support tube and install it along the hole on the side of the connecting block and the second support arm. Install the support tube along the first limiting hole on the side of the rotating table, the mounting column and the fixed base. Step 4: The user then hooks the assembled device to the embedded component along the connecting lock position, and then limits the position with bolts. Then, rotate the support rod installed inside the fixed base below the first support arm to adjust the position of the support foot in conjunction with the clamp, so that the first support arm is perpendicular to the ground. Then, according to the use needs, rotate the first threaded rotating rod and the support tube to adjust the length of the first threaded rotating rod on both sides of the support tube, so as to install the second support arm perpendicular to the first support arm in conjunction with the rotating table and connecting rotating block. Step 5: The user then mates the lower opening of the third support arm with the upper opening of the second support arm and the fourth threaded bolt to quickly assemble the third and second support arms. Afterwards, the protective backplate is installed along the opening on one side of the third support arm to protect the subsequent installation structure. Step Six: After installing the back panel, build the upper frame on the ground, then install the lower frame, and then install the enclosure steel pipes. Lift the assembled frame and install it above the third support arm. At this time, the support plate, installation buckle plate and other structures will be limited, thereby supporting the subsequent installation structure.

[0015] This invention provides a hydraulic climbing formwork construction support system and its installation method, which has the following beneficial effects: This hydraulic climbing formwork construction support system uses a connecting lock and embedded structure to quickly install the device. It then works with a fixed base and support feet to support and limit the first support arm. Subsequently, it works with a second support arm and support pipe to support the upper structure. The device is simple to operate and can be installed quickly, which facilitates the subsequent construction and use of the structure.

[0016] This hydraulic climbing formwork support system uses a drive motor to rotate the second threaded rod, which in turn pulls the clamping base plate and other parts backward via a push rod. This allows the formwork to be moved backward quickly, enabling rapid adjustment and demolding of the formwork.

[0017] This hydraulic climbing formwork construction support system adjusts the distance between the support feet and the clamp by rotating the internal support rod along the clamp. It works in conjunction with the support pipe and the first threaded rotating rods on both sides for operation and adjustment. This allows the device to be quickly adjusted when facing walls with different inclinations, thus keeping the upper part of the device parallel to the ground at all times and improving the practicality of the device.

[0018] This hydraulic climbing formwork construction support system uses a first support arm, a fixed base, a second support arm, and a support pipe for support. When combined with the subsequently installed upper and lower frames and protective steel pipes, the system can quickly support the upper structure while providing alignment and protection, thus enhancing the safety of the system and reducing its operational risks.

[0019] This hydraulic climbing formwork construction support system uses embedded parts. During installation, sufficient grease is applied to the contact surfaces between the embedded parts and the concrete, and then the parts are wrapped with plastic film. This allows for easy disassembly of the embedded parts after use, ensuring smooth removal after subsequent concrete pouring, thereby improving the efficiency and service life of the system. Attached Figure Description

[0020] Figure 1 A schematic diagram of the first support arm structure for bridge construction in this invention; Figure 2 A schematic diagram of the bridge construction connection locking structure in this invention; Figure 3 A schematic diagram of the fixed base structure for bridge construction in this invention; Figure 4 A schematic diagram of the second support arm structure for bridge construction in this invention; Figure 5 This is a schematic diagram of the third support arm structure for bridge construction in this invention.

[0021] In the diagram: 1. First support arm; 11. Reserved hole; 12. First fixing block; 13. First threaded bolt; 14. First nut; 15. Mounting bracket; 16. Sliding block; 17. Connecting lock; 18. Fixing buckle; 2. Fixed base; 21. First limiting hole; 22. Second threaded bolt; 23. Second nut; 24. Mounting side plate; 25. Clamp; 26. Support rod; 27. Support foot; 3. Second support arm; 31. Second fixing block; 32. Clamping plate; 33. Third threaded bolt; 34. Fourth nut; 4. Support tube; 41. First threaded rotating rod; 42. Connecting rotating block; 43. Rotating table; 44. Mounting column; 5. Third support arm; 51. Third fixing block; 52. Fourth threaded bolt; 53. Support plate; 54. Second threaded rotating rod; 55. Drive motor; 56. Push rod; 57. Clamping base plate; 58. Mounting buckle plate. Detailed Implementation

[0022] 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.

[0023] In the description of this invention, unless otherwise stated, "a plurality of" means two or more; the terms "upper," "lower," "left," "right," "inner," "outer," "front end," "rear end," "head," "tail," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing the 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, and therefore should not be construed as a limitation of the invention. Furthermore, the terms "first," "second," "third," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0024] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0025] Please see Figures 1 to 5The present invention provides a technical solution: a hydraulic climbing formwork construction support system and its installation method, comprising a first support arm 1, an installation frame 15 slidably mounted on the upper end of the first support arm 1, connecting locks 17 fixedly mounted on both the left and right sides of the installation frame 15, a fixed base 2 mounted on the lower end of the first support arm 1, a clamp 25 fixedly mounted on the lower end of the fixed base 2, two supporting feet 27 slidably mounted on the side end of the clamp 25, a second support arm 3 mounted on the upper end of the first support arm 1, a support tube 4 installed between the second support arm 3 and the fixed base 2, a third support arm 5 mounted on the upper end of the second support arm 3, and a push rod 56 slidably mounted on the upper end of the third support arm 5.

[0026] In this embodiment, as Figure 1 and Figure 2 As shown, the first support arm 1 has reserved holes 11 on both the upper and lower sides. Four first fixing blocks 12 are fixedly installed inside the first support arm 1. First threaded bolts 13 are slidably installed inside the two reserved holes 11 on the upper part of the first support arm 1. A first nut 14 is fitted on the outer surface of each first threaded bolt 13. This structure allows for quick docking and installation of other components in subsequent use of the device through the reserved holes 11 on the upper and lower sides of the first support arm 1.

[0027] In this embodiment, as Figure 1 and Figure 2 As shown, a sliding block 16 is fixedly installed inside the mounting frame 15. The mounting frame 15 is slidably installed above the first support arm 1 through the sliding block 16 cooperating with the first threaded bolt 13, the first nut 14, and the reserved hole 11. Connecting latches 17 are installed on both the left and right sides of the mounting frame 15. Each connecting latch 17 has a fixing buckle 18 installed on its side end. Each connecting latch 17 is slidably installed on both sides of the mounting frame 15 through the fixing buckle 18. This structure can be fastened by the connecting latches 17 cooperating with the embedded parts, and then limited by bolts, so as to quickly fix and install the device, which is convenient for subsequent assembly.

[0028] In this embodiment, as Figure 1 , Figure 2 and Figure 3 As shown, two second threaded bolts 22 are slidably installed inside the fixed base 2. Each second threaded bolt 22 has a second nut 23 fitted on its outer surface. The fixed base 2 is installed below the first support arm 1 by engaging the second threaded bolts 22 and the second nuts 23 with the two reserved holes 11 opened below the first support arm 1. This structure allows the first support arm 1 to be quickly and easily connected and installed with the fixed base 2 by engaging the second threaded bolts 22 and the second nuts 23 with the reserved holes 11 opened below the first support arm 1.

[0029] In this embodiment, as Figure 1 and Figure 3 As shown, a first limiting hole 21 is provided on the side end of the fixed base 2, and a mounting side plate 24 is fixedly installed on the lower end of the fixed base 2. A clamp 25 is fixedly installed on the side end of the mounting side plate 24. Two support rods 26 are slidably installed inside the clamp 25, and a support foot 27 is fixedly installed on the side end of each support rod 26. This structure can rotate the support rods 26 installed inside the clamp 25, thereby driving the support rods 26 to rotate and slide, thereby adjusting the position of the support foot 27, which is convenient for installation at different angles.

[0030] In this embodiment, as Figure 1 , Figure 2 and Figure 4 As shown, a retaining plate 32 is slidably installed on the side end of the second support arm 3. Two third threaded bolts 33 are slidably installed inside the retaining plate 32. A fourth nut 34 is fitted on the outer surface of the side end of each third threaded bolt 33. The lower end of the retaining plate 32 is inserted into the sliding block 16. The second support arm 3 is slidably installed above the first support arm 1 through the cooperation of the retaining plate 32 with the sliding block 16, the first threaded bolt 13, the first nut 14, and the reserved hole 11. This structure can cooperate with the retaining plate 32 installed on the side end of the second support arm 3 with the sliding block 16, the reserved hole 11, and other structures, thereby facilitating the limiting installation of multiple structures during use and improving the efficiency of the device.

[0031] In this embodiment, as Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, four second fixing blocks 31 are fixedly installed inside the second support arm 3. First threaded rotating rods 41 are rotatably installed on both the left and right sides of the support tube 4. A connecting rotating block 42 is installed on the side end of one of the first threaded rotating rods 41. The connecting rotating block 42 is connected to the side opening of the second support arm 3. A rotating platform 43 is rotatably installed on the side end of the other first threaded rotating rod 41. Mounting columns 44 are rotatably installed on both sides of the rotating platform 43. The rotating platform 43, the mounting columns 44 and the first limiting hole 21 are installed inside the fixed base 2. This structure can extend or retract by the support tube 4 and the first threaded rotating rod 41, thereby improving the flexibility of the device and facilitating support at different angles, thus keeping the structure above the device level.

[0032] In this embodiment, as Figure 1 and Figure 5As shown, four third fixing blocks 51 are fixedly installed inside the third support arm 5, and four fourth threaded bolts 52 are installed on the lower left and right sides of the third support arm 5. The third support arm 5 is installed above the second support arm 3 through the fourth threaded bolts 52, and a support plate 53 is fixedly installed at the upper end of the third support arm 5. This structure can drive the second threaded rotating rod 54 to rotate by the drive motor 55, thereby facilitating the sliding of the subsequent driven components.

[0033] In this embodiment, as Figure 1 and Figure 5 As shown, a second threaded rotating rod 54 is rotatably mounted inside the support plate 53. A drive motor 55 is mounted on the side end of the second threaded rotating rod 54. A push rod 56 is sleeved on the outer surface of the second threaded rotating rod 54. A clamping base plate 57 is fixedly mounted on the side end of the push rod 56. Two mounting buckles 58 are fixedly mounted on the upper end of the clamping base plate 57. This structure can be engaged with the protrusion above the third support arm 5 by the clamping base plate 57. In conjunction with the push rod 56, the support plate 53, and the second threaded rotating rod 54, the device can be driven to slide, thereby adjusting the structural position of subsequent installation.

[0034] In this embodiment, as Figures 1 to 5 As shown, a hydraulic climbing formwork construction support system and its installation method include the following specific installation steps: Step 1: The user first prepares the embedded part assembly, which consists of an embedded plate, high-strength bolts, climbing cones, load-bearing bolts, and embedded support. First, fix the climbing cones, load-bearing bolts, and high-strength bolts to the panel of the template. Then, apply enough grease to the contact surface between the climbing cone and the concrete and the internal threads, and wrap it with plastic film to ensure that the climbing cone can be easily removed after the concrete is poured. The user then inserts the embedded plate, climbing cones, load-bearing bolts, and other structures into the concrete for installation. Step 2: The user picks up the first support arm 1 and mates it with the sliding block 16 installed inside the mounting bracket 15 through the two reserved holes 11 on the upper part of the first support arm 1. Then, the user takes the first threaded bolt 13 and the first nut 14 and installs them to limit their movement. The first threaded bolt 13 and the first nut 14 are passed through the sliding block 16 and through the reserved holes 11 for installation and limitation. Then, the user installs and fixes the first support arm 1 with the fixed base 2, the second threaded bolt 22, and the second nut 23 through the reserved holes 11 on the lower part of the first support arm 1 in the same way. Then, the user opens holes in the clamp 25 below the fixed base 2 and installs two support rods 26. Step 3: Then install the clamping plate 32 on the side of the second support arm 3. Use the third threaded bolt 33 and the fourth nut 34 to fit the clamping plate 32 with the opening on the side of the second support arm 3. Then insert the lower part of the clamping plate 32 into the sliding block 16 and fit it with the first threaded bolt 13 and the first nut 14 to install the second support arm 3 on top of the first support arm 1. Then pick up the support tube 4 and install the support tube 4 along the opening on the side of the connecting block 42 and the second support arm 3. Install the support tube 4 along the first limiting hole 21 on the side of the rotating table 43, the mounting column 44 and the fixed base 2. Step 4: Then the user hooks the assembled device along the connecting buckle 17 to the embedded component, and then limits it with bolts. Then, rotate the support rod 26 installed inside the fixed base 2 below the first support arm 1. Rotate the support rod 26 to adjust the position of the support foot 27 with the clamp 25 so that the first support arm 1 is perpendicular to the ground. Then, rotate the first threaded rotating rod 41 and the support tube 4 as needed to adjust the length of the first threaded rotating rod 41 on both sides of the support tube 4. Then, with the help of the rotating table 43 and the connecting rotating block 42, install the second support arm 3 perpendicular to the first support arm 1. Step 5: The user then mates the lower opening of the third support arm 5 with the upper opening of the second support arm 3 and the fourth threaded bolt 52 to quickly assemble the third support arm 5 and the second support arm 3. Then, the protective back plate is installed along the opening on one side of the third support arm 5 to protect the subsequent installation structure. Step Six: After installing the back panel, build the upper frame on the ground, then install the lower frame, and then install the enclosure steel pipes. Lift the assembled frame and install it above the third support arm 5. At this time, the support plate 53, the mounting plate 58 and other structures will be limited, thereby supporting the subsequent installation structure.

[0035] In summary, the hydraulic climbing formwork construction support system and its installation method involve placing the device on a horizontal surface, the user lifting the first support arm 1, installing four first fixing blocks 12 inside the first support arm 1, then lifting the mounting frame 15, installing sliding blocks 16 inside the mounting frame 15, installing connecting latches 17 on both sides of the mounting frame 15, and installing fixing buckles 18 on the side of each connecting latch 17 for fixation. Then, the assembled mounting frame 15 is lifted and installed along the sliding blocks 16 into the two pre-drilled holes 11 above the first support arm 1. A retaining plate 32 is then inserted inside the sliding block 16, and a hole is drilled below the retaining plate 32 to install first threaded bolts 13 inside the sliding block 16 and the pre-drilled holes 11. 13. Secure the first nut 14 to the side end. Then, the user picks up the fixed base 2 and installs the mounting side plate 24 below the fixed base 2. Install the clamp 25 on the side end of the mounting side plate 24. Then, install two support rods 26 inside the clamp 25 and install support feet 27 on the side ends of the two support rods 26. Then, align the assembled fixed base 2 with the two reserved holes 11 below the first support arm 1. Then, install the second threaded bolts 22 in the holes on both sides of the fixed base 2 and in the reserved holes 11. Install the second nut 23 on the side end of the second threaded bolts 22. Then, the user picks up the second support arm 3 and installs four second fixing blocks 31 inside the second support arm 3. Then, move the assembled second support arm 3 along the side end and above the clamping plate 32. After docking, a third threaded bolt 33 is installed in the opening at the side end of the second support arm 3 and the opening above the clamping plate 32. A fourth nut 34 is installed on the side end of the third threaded bolt 33. At this time, the second support arm 3 will be installed above the first support arm 1. Then, the user picks up the support tube 4 and installs the first threaded rotating rods 41 on both sides of the support tube 4. A connecting rotating block 42 is installed on one side of one of the first threaded rotating rods 41, and a rotating platform 43 is installed on the side end of the other first threaded rotating rod 41. A mounting post 44 is installed on the side end of the rotating platform 43. Then, the assembled support tube 4 is installed along the rotating platform 43, the mounting post 44 and the first limiting hole 21 opened on the side end of the fixed base 2. The other side of the support tube 4 is connected to the second support arm 3 along the connecting rotating block 42. The third support arm 5 is installed by fitting the side opening. The user then lifts the third support arm 5 and installs the third fixing block 51 inside it. A support plate 53 is installed above the third support arm 5, and a second threaded rotating rod 54 is installed inside the support plate 53. A drive motor 55 is installed on the side end of the second threaded rotating rod 54. The user then lifts the push rod 56 and installs a clamping base plate 57 on its side end. A mounting plate 58 is installed above the clamping base plate 57. The assembled push rod 56 is then fitted onto the outer surface of the second threaded rotating rod 54. The clamping base plate 57 is then fitted onto the third support arm 5. The assembled third support arm 5 is then aligned with the opening above the second support arm 3 along its lower opening. Finally, a fourth threaded bolt 52 is installed inside to secure it.When the user needs to use the device, the user first prepares the embedded component assembly, which consists of an embedded plate, high-strength screw, climbing cone, load-bearing bolt, and embedded support. First, the climbing cone, load-bearing bolt, and high-strength bolt are fixed to the template panel. Then, sufficient grease is applied to the contact surface between the climbing cone and the concrete, as well as the internal threads. A plastic film is then wrapped around the climbing cone to ensure it can be easily removed after the concrete is poured. The user inserts the embedded plate, climbing cone, and load-bearing bolt into the concrete for installation. Next, the user hooks the assembled device to the embedded component along the connecting lock 17, then uses bolts to limit its position. Then, the user rotates the support rod 26 installed inside the fixed base 2 below the first support arm 1. Rotating the support rod 26 engages with the clamp 25 to adjust the position of the support foot 27, making the first support arm 1 perpendicular to the ground. Then, according to the instructions... The length of the first threaded rod 41 on both sides of the support tube 4 is adjusted by rotating the first threaded rod 41 and the support tube 4. This, in conjunction with the rotating table 43 and the connecting block 42, allows the second support arm 3 to be installed perpendicular to the first support arm 1. Then, the user aligns the third support arm 5 with the second support arm 3 by using the opening below the third support arm 5 and the opening above the second support arm 3, along with the fourth threaded bolt 52, to quickly assemble the third support arm 5 and the second support arm 3. Next, a protective backplate is installed along the opening on one side of the third support arm 5 to protect the subsequent installation structure. After installing the backplate, a frame is erected on the ground, followed by the lower frame, and then the protective steel pipes. The assembled frame is then lifted and installed above the third support arm 5. At this point, the support plate 53, the mounting buckle plate 58, and other structures are limited, thus supporting the subsequent installation structure.

[0036] 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 hydraulic climbing formwork construction support system, comprising a first support arm (1), characterized in that: A mounting bracket (15) is slidably installed on the upper end of the first support arm (1). Connecting latches (17) are fixedly installed on both the left and right sides of the mounting bracket (15). A fixed base (2) is installed on the lower end of the first support arm (1). A clamp (25) is fixedly installed on the lower end of the fixed base (2). Two supporting feet (27) are slidably installed on the side end of the clamp (25). A second support arm (3) is installed on the upper end of the first support arm (1). A support tube (4) is installed between the second support arm (3) and the fixed base (2). A third support arm (5) is installed on the upper end of the second support arm (3). A push rod (56) is slidably installed on the upper end of the third support arm (5).

2. The hydraulic climbing formwork construction support system according to claim 1, characterized in that: The first support arm (1) has reserved holes (11) on both the upper and lower sides. Four first fixing blocks (12) are fixedly installed inside the first support arm (1). The two reserved holes (11) on the upper part of the first support arm (1) are slidably installed with first threaded bolts (13). The outer surface of each first threaded bolt (13) is fitted with a first nut (14).

3. The hydraulic climbing formwork construction support system according to claim 2, characterized in that: The mounting bracket (15) is fixedly installed with a sliding block (16). The mounting bracket (15) is slidably installed above the first support arm (1) through the sliding block (16) cooperating with the first threaded bolt (13), the first nut (14), and the reserved hole (11). The mounting bracket (15) is equipped with connecting buckles (17) on both the left and right sides. Each connecting buckle (17) is equipped with a fixing buckle (18) at its side end. Each connecting buckle (17) is slidably installed on both sides of the mounting bracket (15) through the fixing buckle (18).

4. A hydraulic climbing formwork construction support system according to claim 2, characterized in that: The fixed base (2) has two second threaded bolts (22) slidably installed inside. Each second threaded bolt (22) has a second nut (23) fitted on its outer surface. The fixed base (2) is installed below the first support arm (1) by cooperating with the second threaded bolts (22) and the second nut (23) and the two reserved holes (11) opened below the first support arm (1).

5. The hydraulic climbing formwork construction support system according to claim 1, characterized in that: The fixed base (2) has a first limiting hole (21) at its side end. The fixed base (2) has a mounting side plate (24) fixedly installed at its lower end. The mounting side plate (24) has a clamp (25) fixedly installed at its side end. The clamp (25) has two support rods (26) slidably installed inside. Each support rod (26) has a support foot (27) fixedly installed at its side end.

6. A hydraulic climbing formwork construction support system according to claim 3, characterized in that: The second support arm (3) is slidably mounted with a clamping plate (32) at its side end. Two third threaded bolts (33) are slidably mounted inside the clamping plate (32). A fourth nut (34) is fitted on the outer surface of the side end of each third threaded bolt (33). The lower end of the clamping plate (32) is inserted into the sliding block (16). The second support arm (3) is slidably mounted above the first support arm (1) through the clamping plate (32) in cooperation with the sliding block (16), the first threaded bolt (13), the first nut (14), and the reserved hole (11).

7. A hydraulic climbing formwork construction support system according to claim 5, characterized in that: The second support arm (3) has four second fixing blocks (31) fixedly installed inside. The support tube (4) has a first threaded rotating rod (41) rotatably installed on both the left and right sides. One of the first threaded rotating rods (41) has a connecting rotating block (42) installed on its side end. The connecting rotating block (42) is connected to the side end opening of the second support arm (3). The other side has a rotating table (43) rotatably installed on its side end. The rotating table (43) has mounting columns (44) rotatably installed on both sides. The rotating table (43), mounting columns (44) and the first limiting hole (21) are installed inside the fixed base (2).

8. The hydraulic climbing formwork construction support system according to claim 1, characterized in that: The third support arm (5) has four third fixing blocks (51) fixedly installed inside. The third support arm (5) has four fourth threaded bolts (52) installed on the lower left and right sides. The third support arm (5) is installed above the second support arm (3) through the fourth threaded bolts (52). The upper end of the third support arm (5) has a support plate (53) fixedly installed.

9. A hydraulic climbing formwork construction support system according to claim 8, characterized in that: The support plate (53) is rotatably mounted with a second threaded rod (54), and a drive motor (55) is mounted on the side end of the second threaded rod (54). A push rod (56) is sleeved on the outer surface of the second threaded rod (54), and a clamping base plate (57) is fixedly mounted on the side end of the push rod (56). Two mounting buckles (58) are fixedly mounted on the upper end of the clamping base plate (57).

10. An installation method for the hydraulic climbing formwork construction support system described in claims 1 to 9, characterized in that: The specific installation steps are as follows: Step 1: The user first prepares the embedded part assembly, which consists of an embedded plate, high-strength bolts, climbing cones, load-bearing bolts, and embedded support. First, fix the climbing cones, load-bearing bolts, and high-strength bolts to the panel of the template. Then, apply enough grease to the contact surface between the climbing cone and the concrete and the internal threads, and wrap it with plastic film to ensure that the climbing cone can be easily removed after the concrete is poured. The user then inserts the embedded plate, climbing cones, load-bearing bolts, and other structures into the concrete for installation. Step 2: The user picks up the first support arm (1) and engages it with the sliding block (16) installed inside the mounting bracket (15) through the two reserved holes (11) on the top of the first support arm (1). Then, the user takes the first threaded bolt (13) and the first nut (14) to install and limit them. The first threaded bolt (13) and the first nut (14) pass through the sliding block (16) and through the reserved hole (11) to install and limit them. Then, the user installs and fixes the first support arm (1) with the fixed base (2), the second threaded bolt (22), and the second nut (23) in the same way through the reserved hole (11) on the bottom of the first support arm (1). Then, the user opens a hole in the clamp (25) below the fixed base (2) and installs two support rods (26). Step 3: Then install the clamping plate (32) on the side of the second support arm (3), and install the clamping plate (32) with the third threaded bolt (33) and the fourth nut (34) and the opening on the side of the second support arm (3). Then insert the lower part of the clamping plate (32) into the sliding block (16), and install the second support arm (3) above the first support arm (1) with the first threaded bolt (13) and the first nut (14). Then pick up the support tube (4), install the support tube (4) along the opening on the side of the connecting rotating block (42) and the second support arm (3), and install the support tube (4) along the first limiting hole (21) opened on the side of the rotating table (43), the mounting column (44) and the fixed base (2). Step 4: Then the user hooks the assembled device along the connecting buckle (17) to the embedded component, then limits it with bolts, and then rotates the support rod (26) installed inside the fixed base (2) below the first support arm (1). The support rod (26) is rotated to cooperate with the clamp (25) to adjust the position of the support foot (27) so that the first support arm (1) is perpendicular to the ground. Then, according to the use needs, the first threaded rotating rod (41) and the support tube (4) are rotated to adjust the length of the first threaded rotating rod (41) on both sides of the support tube (4). Then, the second support arm (3) is installed perpendicular to the first support arm (1) in cooperation with the rotating table (43) and the connecting rotating block (42). Step 5: Then the user then mates the lower opening of the third support arm (5) with the upper opening of the second support arm (3) and the fourth threaded bolt (52) to quickly assemble the third support arm (5) and the second support arm (3). Then the protective back plate is installed along the opening on one side of the third support arm (5) to protect the subsequent installation structure. Step 6: After the back panel is installed, the upper frame is built on the ground, then the lower frame is installed, and then the protective steel pipe is installed. The assembled frame is lifted and installed above the third support arm (5). At this time, the support plate (53), the mounting plate (58) and other structures will be limited, thereby supporting the subsequent installation structure.