Green energy-saving glass curtain wall construction equipment and construction method thereof

By designing a combination of negative pressure air cylinder and limiting mechanism, the angle of the glass curtain wall can be flexibly adjusted, solving the problem that existing equipment cannot adjust the angle, reducing the burden on workers' shoulders and wrists, and improving the safety and convenience of construction.

CN117306842BActive Publication Date: 2026-02-10CHINA RAILWAY CONSTRUCTION ENGINEERING GROUP +1
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202311384612.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-24
Publication Date
2026-02-10
Estimated Expiration
2043-10-24

AI Technical Summary

Technical Problem

Existing handheld adsorption equipment cannot adjust the angle when installing large-area, heavy glass curtain walls, causing excessive strain on workers' shoulders and wrists and easily leading to joint damage.

Method used

A green and energy-saving glass curtain wall construction device was designed, including a negative pressure air cylinder, a flared cylinder, a gasket, a piston block, and a limiting mechanism. Through the cooperation of the limiting mechanism and the triggering component, the flared ring and the support rod are allowed to rotate, thereby achieving angle adjustment and reducing the tilting and deflection of the shoulder and wrist.

Benefits of technology

The angle of the glass can be adjusted by moving the elbow joint up and down slightly, reducing the risk of joint injury and improving the convenience and safety of construction.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN117306842B_ABST
    Figure CN117306842B_ABST
Patent Text Reader

Abstract

The application discloses a kind of green energy-saving glass curtain wall construction equipment and its construction method, it is related to glass curtain wall installation field, it solves the angle of the existing construction equipment adjusting curtain wall glass inconvenient, also likely to cause joint damage problem, including negative pressure air cylinder and fixed in the flared barrel of one end of negative pressure air cylinder, and the end of flared barrel away from negative pressure air cylinder is equipped with gasket, gasket is made of flexible material, the present application is improved to existing negative pressure adsorption equipment, after flared barrel and curtain wall glass are closely connected, still can under the action of limiting mechanism and triggering component, let handheld flared ring and support rod swing, so in the process of adjusting the installation angle of curtain wall glass, only need to be moved up and down by elbow joint small amplitude, can adjust the angle of curtain wall glass, without needing to tilt and deflect its shoulder and wrist joint as in prior art, ensure the convenience of construction, also reduce the risk of joint injury.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of glass curtain wall installation, specifically to a green and energy-saving glass curtain wall construction equipment. Background Technology

[0002] When installing a glass curtain wall, a suspended basket is hoisted from the rooftop and slowly lowered down the wall using four steel cables. Workers stand in the basket and use a suction device to pick up the glass and then install it onto the wall.

[0003] Due to the large area and weight of glass curtain walls, the existing adsorption equipment used for installation presents challenges. Because the existing handheld adsorption devices cannot be adjusted after adsorbing the glass, workers must use both hands to apply the adsorption material. If the angle of the glass doesn't align properly and needs adjustment, the entire upper body must be engaged to grip the devices tightly. This tilting of the shoulders and wrists during adjustment places significant strain on these areas, easily leading to joint injuries. Therefore, we propose a green and energy-saving glass curtain wall construction equipment and method. Summary of the Invention

[0004] The purpose of this invention is to provide a green and energy-saving glass curtain wall construction equipment and construction method to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a green and energy-saving glass curtain wall construction device, comprising a negative pressure air cylinder and a flared cylinder fixedly disposed at one end of the negative pressure air cylinder, wherein a gasket is provided at the end of the flared cylinder away from the negative pressure air cylinder, the gasket being made of a flexible material to prevent excessive adhesion between the flared cylinder and the curtain wall glass, which could cause damage to the curtain wall glass; a piston block is slidably embedded inside the negative pressure air cylinder, and a connecting rod that slides through the negative pressure air cylinder is fixedly installed at the end of the piston block away from the gasket; a spring is also provided between the end of the piston block away from the gasket and the negative pressure air cylinder; a lifting mechanism for actuating the connecting rod, the lifting mechanism being disposed at the end of the connecting rod away from the flared cylinder, and a limiting mechanism being provided between the lifting mechanism and the negative pressure air cylinder; and an actuating component for actuating the limiting mechanism, the actuating component being disposed between the lifting mechanism and the limiting mechanism.

[0006] Preferably, the lifting mechanism includes a fixed sleeve fixedly installed outside the negative pressure air cylinder, and a sleeve movably embedded between the fixed sleeve and the negative pressure air cylinder. A retaining ring is fixedly installed on the outer surface of the sleeve and rotates and engages with the fixed sleeve. A flared ring is fixedly installed at the end of the sleeve away from the retaining ring, and a support rod is fixedly installed at the center of the flared ring. A pull block is provided at the end of the connecting rod near the support rod. Two limiting strips are fixedly installed on the inner wall of the sleeve and slide and engage with the pull block. A connecting component is provided between the pull block and the connecting rod. The design of the limiting strips engaging and limiting with the pull block is to ensure that the pull block and the support rod move on the same horizontal plane and will not deviate arbitrarily, which is convenient for operators.

[0007] Preferably, the connecting assembly includes a rotating post fixedly installed inside the pull block, and the end of the rotating post away from the support rod is rotatably embedded inside the connecting rod. In order to ensure that the connecting rod will not be affected when the sleeve drives the pull block to rotate later, a rotating post is designed between the pull block and the connecting rod.

[0008] Preferably, the limiting mechanism includes a toothed ring fixedly sleeved on the outer surface of the sleeve, and the toothed ring is located inside the fixed sleeve. A retaining ring is fixedly installed on the outer surface of the fixed sleeve. A plurality of sliding rods are radially slidably embedded between the fixed sleeve and the retaining ring, and each sliding rod has a locking block fixedly provided at one end near the sleeve. The locking block is movably engaged with the toothed ring. A support plate is fixedly sleeved on the outer surface of each sliding rod, and the support plate is located between the fixed sleeve and the retaining ring. A second spring is fixedly provided between the end of each support plate away from the sleeve and the retaining ring. When the locking blocks are all engaged with the toothed ring, the sleeve is limited to the outer surface of the negative pressure air cylinder and cannot rotate.

[0009] Preferably, the actuating component includes an actuating ring rotatably disposed outside the sleeve and the fixed sleeve. The end of the actuating ring away from the flared ring has a curved portion, and the curved portion is slidably embedded between the support plate and the fixed sleeve. A retaining ring is also fixedly sleeved on the outer surface of the sleeve. The actuating ring is located between the retaining ring and the support plate. A limiting groove is formed on the outside of the flared ring, and a sliding rod that slidably engages with the limiting groove is fixedly installed at the end of the actuating ring near the flared ring. A pressing block is fixedly provided at the end of the sliding rod away from the actuating ring. When the actuating ring moves toward the flared cylinder, the curved portion pushes against several support plates, causing the retaining block to separate from the toothed ring.

[0010] Preferably, the sleeve is further provided with an anti-reverse mechanism that temporarily limits the pull block. The anti-reverse mechanism includes a connecting seat located between the pull block and the support rod, and a fixed shaft is fixedly installed inside the connecting seat. Both ends of the fixed shaft are fixedly sleeved with arc-shaped clips. A brake rod that slides through the sleeve is fixedly installed at the end of the connecting seat away from the connecting rod. A lever is fixedly sleeved on the outer surface of the end of the brake rod that extends out of the sleeve. Springs are distributed on the outer surface of the brake rod and are located between the connecting seat and the sleeve. When the notch of the arc-shaped clip is just locked at the bottom of the pull block, the pull block can be effectively prevented from retracting under the pressure of the springs.

[0011] Preferably, the fixed shaft, the pull block, and the support rod are parallel to each other to ensure the stability of the pull block and the support rod.

[0012] Preferably, the arc-shaped card holder is three-quarters cylindrical in shape, and the opening of the arc-shaped card holder faces upward. During the upward movement of the pull block, it will first abut against the arc surface of the arc-shaped card holder, and then push it.

[0013] Preferably, the gasket is made of silicone rubber, which has good deformation sealing ability.

[0014] A green and energy-saving glass curtain wall construction equipment, and a construction method, including the following steps:

[0015] S1. Adsorption and Lifting Stage: Lift the two construction devices with both hands, and put each hand into the inside of the flared ring. Use the web of your hand and your index, middle and ring fingers to hold between the support rod and the pull block. After the gasket is in close contact with the glass surface, pull the pull block to move the piston block. The negative pressure will make the construction device adhere tightly to the glass.

[0016] S2, Temporary Positioning Stage: During the upward movement of the pull block, it will first push the arc surface of the arc bracket and then move upward until the notch of the arc bracket is stuck at the bottom of the pull block, which can temporarily limit the pull block and prevent the pull block and spring from resetting.

[0017] S3, Locking Release Stage: Under normal conditions, the sleeve cannot be twisted due to the engagement of the locking block and the toothed ring. When the operator needs to adjust the angle of the glass, the trigger ring is pushed by the action of the pressing block and the sliding rod. Its curved part can cause the support plate to move, allowing the locking block to separate from the toothed ring. At this time, the operator can adjust the angle of the glass by moving the arm up and down.

[0018] Compared with the prior art, the beneficial effects of the present invention are:

[0019] 1. This invention improves upon existing negative pressure adsorption equipment. After the flared cylinder is tightly connected to the curtain wall glass, the handheld flared ring and support rod can rotate and swing under the action of the limiting mechanism and the touch component. In this way, when adjusting the installation angle of the curtain wall glass, the angle of the curtain wall glass can be adjusted by simply moving the elbow joint up and down slightly, without the need for tilting and deflecting the shoulder and wrist joints as in the existing technology. This ensures the convenience of construction and reduces the risk of joint damage.

[0020] 2. In this invention, through the action of the anti-reverse mechanism, when the piston block compresses the spring, the pull block can be limited by the arc-shaped bracket when it moves, avoiding the piston block from resetting due to the reaction force of the spring. This replaces the worker in fixing the pull block and ensures the stability of the construction equipment in absorbing the curtain wall glass. Attached Figure Description

[0021] Figure 1 This is a schematic diagram illustrating the construction process of the construction equipment of the present invention picking up curtain wall glass.

[0022] Figure 2 This is a schematic diagram of the flared cylinder and gasket structure of the present invention;

[0023] Figure 3 This is a schematic diagram of the internal structure of the negative pressure air cylinder of the present invention;

[0024] Figure 4 This is a schematic diagram of the pull block and limiting strip structure of the present invention;

[0025] Figure 5 This is a schematic diagram of the structure of the trigger ring, slide bar, and pressing block of the present invention;

[0026] Figure 6 For the present invention Figure 5 Enlarged view of point A in the middle;

[0027] Figure 7 This is a schematic diagram of the connection component structure of the present invention;

[0028] Figure 8 This is a schematic diagram of the anti-reverse mechanism of the present invention.

[0029] In the diagram: 1. Negative pressure air cylinder; 2. Flared cylinder; 3. Gasket; 4. Piston block; 5. Spring 1; 6. Connecting rod; 7. Lifting mechanism; 8. Limiting mechanism; 9. Actuating component; 10. Fixed sleeve; 11. Sleeve; 12. Pull block; 13. Connecting component; 14. Limiting strip; 15. Flared ring; 16. Support rod; 17. Snap ring; 18. Toothed ring; 19. Sliding rod; 20. Snap tooth block; 21. Retaining ring; 22. Support plate; 23. Spring 2; 24. Actuating ring; 25. Bend; 26. Sliding rod; 27. Pressing block; 28. Limiting groove; 29. ​​Snap ring; 30. Rotating column; 31. Anti-reverse mechanism; 32. Brake rod; 33. Pulley; 34. Connecting seat; 35. Fixed shaft; 36. Arc-shaped clip; 37. Spring 3. Detailed Implementation

[0030] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention. Example 1

[0031] Please see Figures 1-7 The diagram illustrates a green and energy-saving glass curtain wall construction device, comprising a negative pressure air cylinder 1 and a flared cylinder 2 fixedly disposed at one end of the negative pressure air cylinder 1. A gasket 3, made of flexible material, is provided at the end of the flared cylinder 2 away from the negative pressure air cylinder 1 to prevent excessive adhesion between the flared cylinder 2 and the curtain wall glass, which could damage the glass. A piston block 4 is slidably embedded inside the negative pressure air cylinder 1, and a connecting rod 6, which slides through the negative pressure air cylinder 1, is fixedly installed at the end of the piston block 4 away from the gasket 3. A spring 5 is also provided between the end of the piston block 4 away from the gasket 3 and the negative pressure air cylinder 1. A lifting mechanism 7 is used to actuate the connecting rod 6. The lifting mechanism 7 is located at the end of the connecting rod 6 away from the flared cylinder 2, and a limiting mechanism 8 is provided between the lifting mechanism 7 and the negative pressure air cylinder 1. An actuating component 9 is used to actuate the limiting mechanism 8 and is located between the lifting mechanism 7 and the limiting mechanism 8.

[0032] The lifting mechanism 7 includes a fixed sleeve 10 fixedly installed outside the negative pressure air cylinder 1, and a sleeve 11 is movably embedded between the fixed sleeve 10 and the negative pressure air cylinder 1. A retaining ring 17 is fixedly installed on the outer surface of the sleeve 11 and rotates and engages with the fixed sleeve 10. A flared ring 15 is fixedly installed at the end of the sleeve 11 away from the retaining ring 17, and a support rod 16 is fixedly installed at the center of the flared ring 15. A pull block 12 is provided at the end of the connecting rod 6 near the support rod 16. Two limiting strips 14 are fixedly installed on the inner wall of the sleeve 11 and slide and engage with the pull block 12. A connecting component 13 is provided between the pull block 12 and the connecting rod 6. The design of the limiting strips 14 engaging and limiting the pull block 12 is to ensure that the pull block 12 and the support rod 16 move on the same horizontal plane and will not shift arbitrarily, which is convenient for the operator.

[0033] The connecting component 13 includes a rotating post 30 fixedly installed inside the pull block 12, and the end of the rotating post 30 away from the support rod 16 is rotatably embedded inside the connecting rod 6. In order to ensure that the connecting rod 6 will not be affected when the sleeve 11 drives the pull block 12 to rotate later, the rotating post 30 is designed between the pull block 12 and the connecting rod 6.

[0034] The limiting mechanism 8 includes a toothed ring 18 fixedly sleeved on the outer surface of the sleeve 11, and the toothed ring 18 is located inside the fixed sleeve 10. A retaining ring 21 is fixedly installed on the outer surface of the fixed sleeve 10. Several sliding rods 19 are radially slidably embedded between the fixed sleeve 10 and the retaining ring 21 and are distributed equidistantly in a circle. Each sliding rod 19 has a locking block 20 fixedly provided at one end near the sleeve 11, and the locking block 20 is movably engaged with the toothed ring 18. A support plate 22 is fixedly sleeved on the outer surface of each sliding rod 19, and the support plate 22 is located between the fixed sleeve 10 and the retaining ring 21. A spring 23 is fixedly provided between the end of each support plate 22 away from the sleeve 11 and the retaining ring 21. When several locking blocks 20 are engaged with the toothed ring 18, the sleeve 11 is limited to the outer surface of the negative pressure air cylinder 1 and cannot rotate.

[0035] The triggering component 9 includes a triggering ring 24 rotatably disposed outside the sleeve 11 and the fixed sleeve 10. The triggering ring 24 has a curved portion 25 at the end away from the flared ring 15, and the curved portion 25 is slidably embedded between the support plate 22 and the fixed sleeve 10. A retaining ring 29 is also fixedly sleeved on the outer surface of the sleeve 11. The triggering ring 24 is located between the retaining ring 29 and the support plate 22. A limiting groove 28 is opened on the outside of the flared ring 15, and a sliding rod 26 that slides and engages with the limiting groove 28 is fixedly installed at the end of the triggering ring 24 near the flared ring 15. A pressing block 27 is fixedly provided at the end of the sliding rod 26 away from the triggering ring 24. When the triggering ring 24 moves toward the flared cylinder 2, the curved portion 25 pushes against several support plates 22, causing the retaining tooth block 20 to separate from the toothed ring 18.

[0036] Gasket 3 is made of silicone rubber, which provides excellent deformation sealing capability.

[0037] A green and energy-saving glass curtain wall construction equipment, and a construction method, including the following steps:

[0038] S1. Adsorption and lifting stage: Lift the two construction devices with both hands, and put each hand into the inside of the flared ring 15. Use the web of your hand and your index, middle and ring fingers to hold the support rod 16 and the pull block 12. After the gasket 3 is in close contact with the glass surface, pull the pull block 12 to move the piston block 4. The negative pressure will make the construction device adhere tightly to the glass.

[0039] S2, Temporary Positioning Stage: During the upward movement of the pull block 12, it will first push the arc surface of the arc bracket 36 and then move upward until the notch of the arc bracket 36 is stuck at the bottom of the pull block 12, which can temporarily limit the pull block 12 and prevent the pull block 12 and spring 15 from resetting.

[0040] S3. Locking Release Stage: Under normal conditions, the sleeve 11 cannot be twisted due to the engagement of the locking block 20 and the toothed ring 18. When the operator needs to adjust the angle of the glass, the trigger ring 24 is pushed by the action of the pressing block 27 and the sliding rod 26. Its curved part 25 can cause the support plate 22 to move, so that the locking block 20 and the toothed ring 18 are separated. At this time, the operator can adjust the angle of the glass by moving the arm up and down.

[0041] The working principle of facilitating the adjustment of the installation angle of the curtain wall glass without causing damage to the wrist and shoulder joints of the workers is as follows: When adjusting the angle of the curtain wall glass during the installation process, the worker can push the sliding rod 26 by pressing the pressing block 27, causing the trigger ring 24 to move towards the flared cylinder 2. At this time, the curved part 25 of the trigger ring 24 will push several support plates 22, causing several support plates 22 to move along with the sliding rod 19. At this time, the locking block 20 will separate from the toothed ring 18, and the sleeve 11 can rotate freely between the fixed sleeve 10 and the negative pressure air cylinder 1. In this state, the worker's elbow joint only needs to move vertically up and down to adjust the angle of the curtain wall glass, without having to adjust the angle of the entire shoulder and wrist joint. This is extremely labor-saving and convenient, and can also avoid damage to the wrist and shoulder joints caused by excessive load. Example 2

[0042] Please see Figure 7 and 8This embodiment further illustrates Example 1. The sleeve 11 is also provided with an anti-reverse mechanism 31 that temporarily limits the pull block 12. The anti-reverse mechanism 31 includes a connecting seat 34 located between the pull block 12 and the support rod 16. A fixed shaft 35 is fixedly installed inside the connecting seat 34. Both ends of the fixed shaft 35 are fixedly sleeved with arc-shaped clips 36. A brake rod 32 that slides through the sleeve 11 is fixedly installed at the end of the connecting seat 34 away from the connecting rod 6. A lever 33 is fixedly sleeved on the outer surface of the end of the brake rod 32 that extends out of the sleeve 11. Springs 37 are distributed on the outer surface of the brake rod 32 and are located between the connecting seat 34 and the sleeve 11. When the notch of the arc-shaped clip 36 is just locked at the bottom of the pull block 12, the pull block 12 can be effectively prevented from retracting under the pressure of the springs 37.

[0043] The fixed shaft 35, the pull block 12, and the support rod 16 are parallel to each other to ensure the stability of the fit between the pull block 12 and the support rod 16.

[0044] The arc-shaped bracket 36 is three-quarters cylindrical in shape, with its opening facing upwards. As the pull block 12 moves upwards, it will first press against the arc surface of the arc-shaped bracket 36 before pushing it.

[0045] In this embodiment: The worker pulls the pull block 12 to move the piston block 4, creating a negative pressure between the flared cylinder 2 and the curtain wall glass. During this process, the movement of the piston block 4 compresses the spring 5, which in turn generates a reaction force. To avoid the worker continuously applying pulling force to the pull block 12, and to ensure the stability of the piston block 4, in this design, during the movement of the pull block 12, the pull block 12 pushes against the arc surface of the arc-shaped bracket 36, causing the arc-shaped bracket 36 to displace a certain distance. During this displacement, the spring 36... 7 will also compress and generate a reaction elastic force. When the pull block 12 pushes the arc-shaped bracket 36 and continues to move, the arc-shaped bracket 36 will be stuck at the bottom of the pull block 12 due to the pushing force of the spring 37, which will support the pull block 12. At this time, the staff does not need to continuously apply pulling force to the pull block 12, saving physical strength. After the curtain wall glass is installed, the brake rod 32 can be pulled directly by the lever 33 to separate the arc-shaped bracket 36 from the pull block 12. At this time, the pull block 12 and the connecting rod 6 can be reset normally.

[0046] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0047] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A green and energy-saving glass curtain wall construction equipment, characterized in that: It includes a negative pressure air cylinder (1) and a flared cylinder (2) fixedly disposed at one end of the negative pressure air cylinder (1). A gasket (3) is provided at the end of the flared cylinder (2) away from the negative pressure air cylinder (1). A piston block (4) is slidably embedded inside the negative pressure air cylinder (1). A connecting rod (6) that slides through the negative pressure air cylinder (1) is fixedly installed at the end of the piston block (4) away from the gasket (3). A spring (5) is also provided between the end of the piston block (4) away from the gasket (3) and the negative pressure air cylinder (1). A lifting mechanism (7) is provided to actuate the connecting rod (6). The lifting mechanism (7) is located at the end of the connecting rod (6) away from the flared cylinder (2). A limiting mechanism (8) is also provided between the lifting mechanism (7) and the negative pressure cylinder (1). A triggering component (9) is provided for triggering the limiting mechanism (8), and the triggering component (9) is disposed between the lifting mechanism (7) and the limiting mechanism (8); The lifting mechanism (7) includes a fixed sleeve (10) fixedly installed outside the negative pressure air cylinder (1), and a sleeve (11) is movably embedded between the fixed sleeve (10) and the negative pressure air cylinder (1). A (17) is fixedly installed on the outer surface of the sleeve (11) and rotates and engages with the fixed sleeve (10). A flared ring (15) is fixedly installed at the end of the sleeve (11) away from the (17), and a support rod (16) is fixedly installed at the center of the flared ring (15). A pull block (12) is provided at the end of the connecting rod (6) near the support rod (16). Two limiting strips (14) are fixedly installed on the inner wall of the sleeve (11) and slide to engage with the pull block (12). A connecting component (13) is provided between the pull block (12) and the connecting rod (6). The limiting mechanism (8) includes a toothed ring (18) fixedly sleeved on the outer surface of the sleeve (11), and the toothed ring (18) is located inside the fixed sleeve (10). A retaining ring (21) is fixedly installed on the outer surface of the fixed sleeve (10). A plurality of sliding rods (19) are radially slidably embedded between the fixed sleeve (10) and the retaining ring (21). Each sliding rod (19) is fixedly provided with a toothed block (20) at one end near the sleeve (11), and the toothed block (20) is movably engaged with the toothed ring (18). A support plate (22) is fixedly sleeved on the outer surface of each sliding rod (19), and the support plate (22) is located between the fixed sleeve (10) and the retaining ring (21). A spring (23) is fixedly provided between the end of each support plate (22) away from the sleeve (11) and the retaining ring (21). The triggering component (9) includes a triggering ring (24) rotatably disposed outside the sleeve (11) and the fixed sleeve (10). The triggering ring (24) has a curved part (25) at one end away from the flared ring (15), and the curved part (25) is slidably embedded between the support plate (22) and the fixed sleeve (10). A retaining ring (29) is also fixedly sleeved on the outer surface of the sleeve (11). The triggering ring (24) is located between the retaining ring (29) and the support plate (22). A limiting groove (28) is opened on the outside of the flared ring (15), and a sliding rod (26) is fixedly installed at one end of the triggering ring (24) near the flared ring (15) and slides into the limiting groove (28). A pressing block (27) is fixedly provided at one end of the sliding rod (26) away from the triggering ring (24).

2. The green and energy-saving glass curtain wall construction equipment according to claim 1, characterized in that: The connecting assembly (13) includes a rotating post (30) fixedly installed inside the pull block (12), and one end of the rotating post (30) away from the support rod (16) is rotatably embedded inside the connecting rod (6).

3. The green and energy-saving glass curtain wall construction equipment according to claim 1, characterized in that: The sleeve (11) is also provided with an anti-reverse mechanism (31) that temporarily limits the pull block (12). The anti-reverse mechanism (31) includes a connecting seat (34) located between the pull block (12) and the support rod (16). A fixed shaft (35) is fixedly installed inside the connecting seat (34). Both ends of the fixed shaft (35) are fixedly sleeved with arc-shaped clips (36). A brake rod (32) that slides through the sleeve (11) is fixedly installed at the end of the connecting seat (34) away from the connecting rod (6). A lever (33) is fixedly sleeved on the outer surface of the end of the brake rod (32) that extends out of the sleeve (11). Springs (37) are distributed on the outer surface of the brake rod (32). Springs (37) are located between the connecting seat (34) and the sleeve (11).

4. The green and energy-saving glass curtain wall construction equipment according to claim 3, characterized in that: The fixed shaft (35), the pull block (12), and the support rod (16) are parallel to each other.

5. The green and energy-saving glass curtain wall construction equipment according to claim 4, characterized in that: The arc-shaped card holder (36) is three-quarters cylindrical in shape, and the opening of the arc-shaped card holder (36) faces upward.

6. The green and energy-saving glass curtain wall construction equipment according to claim 1, characterized in that: The gasket (3) is made of silicone rubber.

7. A green and energy-saving glass curtain wall construction equipment according to any one of claims 1-6, characterized in that: It also includes a construction method, comprising the following steps: S1, Adsorption and Lifting Stage: Lift the two construction devices with both hands, and put each hand into the inside of the flared ring (15). Use the tiger's mouth of the hand and the index, middle and ring fingers to hook between the support rod (16) and the pull block (12). After the gasket (3) is in close contact with the glass surface, pull the pull block (12) to move the piston block (4). The negative pressure will make the construction device adhere tightly to the glass. S2, Temporary positioning stage: During the upward movement of the pull block (12), it will first push the arc surface of the arc bracket (36) and then move upward until the notch of the arc bracket (36) is stuck at the bottom of the pull block (12), which can temporarily limit the pull block (12) and prevent the pull block (12) and spring 1 (5) from resetting. S3, Locking Release Stage: Under normal conditions, the sleeve (11) cannot be twisted due to the engagement of the locking block (20) and the toothed ring (18). When the operator needs to adjust the angle of the glass, the trigger ring (24) is pushed by the action of the pressing block (27) and the sliding rod (26). Its curved part (25) can cause the support plate (22) to move, so that the locking block (20) and the toothed ring (18) are separated. At this time, the operator can adjust the angle of the glass by moving the arm up and down.

Citation Information

Patent Citations

  • Auxiliary mounting device for metal plate curtain wall

    CN116427730A

  • Portable auxiliary device for glass curtain wall installation

    CN219732818U