A curtain wall installation auxiliary device
By designing an integrated auxiliary system, the problems of stability and adaptability of curtain wall installation equipment in high-rise buildings with complex shapes were solved, realizing efficient and safe installation of curtain walls, meeting the needs of lightweight and high-strength materials, and ensuring installation accuracy and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- THE FIRST COMPARY OF CHINA EIGHTH ENG BUREAU LTD
- Filing Date
- 2025-07-04
- Publication Date
- 2026-07-21
AI Technical Summary
Existing curtain wall installation equipment is difficult to guarantee stability in high-rise buildings, is complex to operate and difficult to maintain, and is difficult to adapt to the installation requirements of complex shapes and lightweight, high-strength materials, posing safety hazards and installation errors.
An integrated auxiliary system was designed, including an auxiliary frame moving unit, an auxiliary moving component, an auxiliary sling mechanism, and an auxiliary installation mechanism. By utilizing components such as shock-absorbing suspension units, adsorption units, and sling units, the system enables stable hoisting, movement, and precise positioning of the curtain wall, ensuring installation accuracy and safety.
It improves the efficiency and safety of curtain wall installation, reduces manpower requirements, ensures installation accuracy and quality, adapts to the installation needs of complex shapes and lightweight, high-strength materials, and reduces safety hazards.
Smart Images

Figure CN120625905B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of building decoration engineering construction, and in particular to an auxiliary device for curtain wall installation. Background Technology
[0002] In the modern construction industry, curtain wall systems, as an important building envelope, not only serve a decorative purpose but also fulfill various functional requirements such as thermal insulation, heat insulation, and sound insulation. However, with the increase in building height and design complexity, the installation difficulty of curtain walls is also constantly increasing. Traditional curtain wall installation methods often rely on scaffolding or high-altitude work platforms, which are not only time-consuming and costly but also pose significant safety hazards.
[0003] To improve the efficiency and safety of curtain wall installation, the industry has developed various auxiliary equipment and technologies. These typically include hoisting systems, support systems, and positioning systems, designed to achieve rapid and precise positioning and fixing of curtain wall units. However, existing curtain wall installation auxiliary equipment still has some shortcomings in practical applications. For example, some equipment is significantly affected by wind loads when used in high-rise buildings, making stability difficult to guarantee; others suffer from complex operation and difficult maintenance, limiting their widespread application on construction sites.
[0004] Furthermore, with the diversification of architectural design, the forms and materials of curtain walls are constantly innovating. For example, some new curtain walls use lightweight, high-strength materials, placing higher demands on the load-bearing capacity and precision of installation equipment. At the same time, curtain walls with complex shapes such as curved and sloping surfaces are becoming increasingly common, undoubtedly increasing the difficulty and complexity of installation. In addition, due to the large size and weight of curtain walls, traditional hoisting and installation methods often fail to guarantee precise installation and stability, easily leading to installation errors and safety hazards.
[0005] How to solve the above-mentioned technical problems is the challenge facing this invention. Summary of the Invention
[0006] To address the shortcomings of existing technologies, this invention provides a rationally designed, safe, and reliable curtain wall installation auxiliary device. Its core principle lies in integrating stability, mobility, hoisting, and installation assistance functions throughout the curtain wall installation process through a comprehensive auxiliary system. This device aims to improve the efficiency and safety of curtain wall installation, reduce manpower requirements, and simultaneously ensure installation accuracy and quality.
[0007] The technical solution adopted by this invention to solve its technical problem is: an auxiliary device for curtain wall installation. The system includes an auxiliary moving frame installed on the exterior wall of the building. The auxiliary moving frame is equipped with an auxiliary moving component for stably placing the auxiliary moving frame on the exterior wall of the building and facilitating the movement of the auxiliary moving frame on the exterior wall of the building. An auxiliary sling mechanism is installed on the outside of the building for hoisting the auxiliary moving frame onto the exterior wall of the building. The auxiliary moving frame is also equipped with an auxiliary installation mechanism for facilitating the installation of the curtain wall by construction personnel and for hoisting the curtain wall installation accessories. The auxiliary installation mechanism includes an auxiliary installation bracket disposed on the auxiliary moving frame, an auxiliary leveling component disposed on the auxiliary moving frame for leveling the auxiliary installation bracket, a curtain wall mounting component disposed on the auxiliary installation bracket for mounting the curtain wall on the curtain wall bracket, and an auxiliary installation component disposed on the auxiliary installation bracket for cooperating with the curtain wall mounting component.
[0008] Furthermore, the auxiliary moving component includes a shock-absorbing moving frame disposed on the auxiliary moving frame, a shock-absorbing suspension unit disposed between the shock-absorbing moving frame and the auxiliary moving frame, and a moving wheel disposed on the shock-absorbing moving frame that contacts the exterior wall of the building. Auxiliary adsorption units for stably adsorbing the auxiliary moving frame onto the exterior wall of the building are disposed at both ends of the auxiliary moving frame, and a sling unit cooperating with the auxiliary sling assembly is disposed on the auxiliary moving frame. Additionally, a shock-absorbing contact unit cooperating with both the shock-absorbing suspension unit and the auxiliary adsorption unit is disposed on the auxiliary moving frame. The auxiliary moving frame includes a movable moving frame that cooperates with the moving wheels and facilitates installation by the auxiliary installation mechanism. Adsorption brackets that cooperate with the auxiliary adsorption unit are provided at both ends of the movable moving frame, and an auxiliary hanger that cooperates with the sling unit is provided at the top of the movable moving frame.
[0009] Furthermore, the auxiliary adsorption unit includes a plurality of adsorption hydraulic rods disposed on the adsorption bracket, the movable end of the adsorption hydraulic rods being provided with an adsorption suction cup adsorbed to the exterior wall surface of the building, the adsorption bracket being provided with a negative pressure tank cooperating with the adsorption suction cup, the negative pressure tank being provided with a plurality of negative pressure suction pipes connected to the adsorption suction cup, and the adsorption bracket being provided with an electric adsorption control chip for controlling the adsorption suction cup; The shock-absorbing and abutting unit includes an abutting hydraulic rod mounted on the adsorption bracket. An abutting bracket is mounted at the moving end of the abutting hydraulic rod. An abutting plate that contacts the exterior wall of the building is mounted on one side of the abutting bracket. Several shock-absorbing springs are mounted between the abutting bracket and the abutting plate. The sling unit includes a lifting swivel frame mounted on the auxiliary sling, a sling wheel on the lifting swivel frame that cooperates with the auxiliary sling mechanism, a stable cable guide frame on the lifting swivel frame that cooperates with the auxiliary sling mechanism, an upper shock-absorbing cable guide arm on the stable cable guide frame, and a cable guide wheel on the shock-absorbing cable guide arm that cooperates with the auxiliary sling mechanism.
[0010] Furthermore, the auxiliary sling mechanism includes a stable sling frame installed at the top of the building, a translational stabilizing component for stably installing the stable sling frame at the top of the building, a telescopic inclined frame installed on the stable sling frame, and a sling assembly for slinging the auxiliary sling frame. The telescopic inclined frame is equipped with a smooth wiring assembly that cooperates with the sling assembly and facilitates the smooth movement of the frame on the exterior wall of the building. A cable routing bracket is installed at the bottom of the building. The cable routing bracket is equipped with translation wheels and a stabilizing telescopic leg that cooperates with the translation wheels. The stabilizing telescopic leg is equipped with a stable base plate that cooperates with the ground. The cable routing bracket is equipped with a stabilizing cable routing component that cooperates with the smooth cable routing component.
[0011] Furthermore, the sling assembly includes a hanger mounted on the stable sling frame, a lifting winch mounted on the hanger, a lifting motor mounted on the hanger that cooperates with the lifting winch, a lifting rope fixedly connected to the auxiliary moving frame mounted on the lifting winch, a stabilizing counterweight frame mounted on the sling frame that cooperates with the telescopic inclined frame and telescopically cooperates with the stable sling frame, a counterweight block mounted on the stabilizing counterweight frame that cooperates with the telescopic inclined frame, a guide wheel assembly mounted on the stable sling frame that cooperates with the lifting rope, and telescopic guide wheels mounted on the telescopic inclined frame. The smooth cable routing assembly includes a cable routing winch that is configured to cooperate with the stable sling frame, a cable routing motor that cooperates with the cable routing winch, a cable routing rope on the cable routing winch, a cable routing guide wheel assembly that cooperates with the sling rope on the stable sling frame, and a cable routing guide wheel on the telescopic inclined frame. The stabilizing cable routing assembly includes a stabilizing cable routing frame mounted on the cable routing bracket. The stabilizing cable routing frame is equipped with a tensioning winch for tightening the cable routing rope. The tensioning winch is equipped with a tensioning motor that cooperates with the tensioning winch. The stabilizing cable routing frame is equipped with a shock-absorbing tensioning arm that cooperates with the tensioning winch. The telescopic end of the shock-absorbing tensioning arm is equipped with a tensioning wheel that cooperates with the cable routing rope.
[0012] Furthermore, the translational stabilization assembly includes a stabilizing base frame fixedly connected to the stabilizing cable frame. The stabilizing base frame is provided with a plurality of translational telescopic rods. A translational frame is provided at the moving end of each translational telescopic rod. The translational frame is provided with translational rollers for translating the stabilizing base frame. The stabilizing base frame is provided with a storage slot for accommodating the translational frame. A fixed clamping unit that cooperates with the translation roller is provided at one end of the stabilizing base frame. A driving clamping unit that cooperates with the fixed clamping unit and is used to drive the stabilizing base frame to move along the top of the building is provided on the stabilizing base frame. When the stabilizing base frame is stably placed on the top of the building, the fixed clamping unit and the driving clamping unit are respectively located at both ends of the stabilizing base frame.
[0013] Furthermore, the fixing clamping unit includes fixing frames symmetrically arranged on both sides of the stabilizing base frame. The fixing frames are provided with a plurality of first hydraulic rods for clamping and fixing to the exterior wall of the building. The moving ends of the plurality of first hydraulic rods are connected to the same extrusion plate. The drive clamping unit includes a drive slide groove along the length of the stabilizing base, a drive screw in the drive slide groove, the drive slide groove penetrating the stabilizing base, a drive carriage that cooperates with the drive screw in the drive slide groove, movable frames on both sides of the drive carriage, and a plurality of second hydraulic rods for clamping and fixing to the top of the building on the movable frames, the movable ends of the plurality of second hydraulic rods being connected to the same drive plate.
[0014] Furthermore, the auxiliary moving frame has a leveling groove on the side facing the building's exterior wall that cooperates with the auxiliary leveling component. The auxiliary leveling component includes a stabilizing leveling column disposed in the leveling groove and rotatably cooperating with the auxiliary mounting bracket. Several stabilizing frames are disposed in the leveling groove along the axial direction of the stabilizing leveling column, and several stabilizing gears are evenly disposed on the stabilizing frames along their circumferential direction. The auxiliary mounting bracket includes a leveling ring disposed in the leveling groove. The leveling ring is provided with a stabilizing gear ring that meshes with the stabilizing gear. One of the stabilizing rings is provided with a stabilizing electric drive motor for driving the stabilizing gear ring to rotate. The stabilizing electric drive motor is provided with an electric drive gear that meshes with the stabilizing gear ring. The leveling ring is provided with a stabilizing sleeve for connecting the stabilizing leveling column to the leveling ring. The leveling ring is provided with a mounting bracket. The curtain wall mounting component and the auxiliary mounting component are both disposed on the mounting bracket.
[0015] Furthermore, the curtain wall mounting assembly includes a mounting hydraulic rod disposed on the mounting bracket, a receiving groove that mates with the mounting hydraulic rod on the stabilizing leveling column, a mounting bracket at the moving end of the mounting hydraulic rod, a mounting slide that slidably mates with the mounting bracket at the top of the mounting bracket, a mounting electric rod that mates with the mounting slide on the mounting bracket, and an abutment mounting plate that contacts the top surface of the curtain wall on the mounting bracket. The support frame is equipped with a fixed support frame, and the fixed support frame is equipped with a movable support frame that slides with the fixed support frame. The fixed support frame is equipped with a movable hydraulic rod that cooperates with the movable support frame. The fixed support frame is equipped with a first bracket, and the movable support frame is equipped with a second bracket. The first bracket is equipped with a first roller, and the second bracket is equipped with a second roller. The first bracket is equipped with a first motor that cooperates with the first roller, and the second bracket is equipped with a second motor that cooperates with the second roller. A support cloth for supporting the bottom end of the curtain wall is provided between the first bracket and the second bracket. The two ends of the support cloth are respectively wound and connected to the first roller and the second roller. The auxiliary installation assembly includes two sets of installation hydraulic rods symmetrically arranged at both ends of the curtain wall mounting assembly. Several installation hydraulic rods are connected to the same auxiliary installation frame. A damping plate that contacts the curtain wall is provided on one side of the auxiliary installation frame. A damping spring is provided between the auxiliary installation frame and the damping plate.
[0016] Furthermore, an auxiliary intermediate moving frame is provided on the exterior wall of the building, and the auxiliary intermediate moving frame is provided with an intermediate moving component for stably placing the auxiliary intermediate moving frame on the exterior wall of the building and facilitating the movement of the auxiliary moving frame on the exterior wall of the building; The top of the auxiliary intermediate moving frame is provided with an intermediate hoisting assembly that cooperates with the auxiliary sling mechanism, and the bottom of the auxiliary intermediate moving frame is provided with an intermediate winch for hoisting the auxiliary moving frame onto the exterior wall of the building. The intermediate winch is provided with an intermediate hoisting rope for hoisting the auxiliary moving frame. The structure of the intermediate moving component is the same as that of the auxiliary moving component.
[0017] The auxiliary moving frame of this invention is equipped with a shock-absorbing suspension unit, similar to an air suspension system in a car, which can effectively absorb vibrations generated during movement, ensuring the entire device remains stable during operation and reducing safety hazards caused by vibration. Simultaneously, the auxiliary adsorption unit includes several adsorption hydraulic rods, adsorption suction cups, and a negative pressure tank, utilizing the principle of vacuum adsorption to firmly fix the auxiliary moving frame to the building's exterior wall, ensuring the safety and stability of the operation process. Furthermore, the shock-absorbing contact unit, driven by a contact hydraulic rod, contacts the wall with a contact plate, and shock-absorbing springs further buffer the impact, protecting the equipment itself and the curtain wall material from damage, while also increasing the overall system's stability and safety.
[0018] The auxiliary moving component of this invention, equipped with moving wheels, allows the auxiliary moving frame to slide smoothly on the exterior wall of a building. Combined with a shock-absorbing suspension unit, this enables the auxiliary moving frame to not only move freely on the wall but also maintain good balance during movement, thereby improving construction efficiency. The sling unit, through the design of the sling wheels on the hoisting frame and the stable cable routing frame, allows the auxiliary moving frame to move smoothly along a pre-set path, reducing manual adjustment time and improving work efficiency. The translational telescopic rods and translational rollers on the stable sling frame in the translational stabilization component allow the sling mechanism to move flexibly at the top of the building to adapt to the installation needs of different locations, enhancing the system's flexibility and practicality.
[0019] The auxiliary leveling component in this invention, especially the stabilizing leveling column in the leveling groove, combined with the stabilizing gear and stabilizing gear ring, ensures that the auxiliary installation bracket can be precisely adjusted to a horizontal state at any angle, thereby guaranteeing the accuracy of curtain wall installation.
[0020] The curtain wall mounting assembly of this invention, including the mounting hydraulic rod, mounting bracket, and lifting frame, works in tandem to easily lift and secure the curtain wall in place. The design of the first and second rollers facilitates precise adjustment of the curtain wall, ensuring installation quality. The auxiliary mounting assembly of this invention uses a mounting hydraulic rod to push the auxiliary mounting frame closer to the curtain wall, achieving final fixation through contact with a shock-absorbing plate, ensuring both tightness and aesthetics in the curtain wall installation. Attached Figure Description
[0021] Figure 1 This is a three-dimensional structural diagram of the present invention in the building's usage state; Figure 2 This is a three-dimensional structural diagram of the overall structure of the present invention; Figure 3 This is a schematic diagram of the overall structure of the auxiliary sling mechanism of the present invention.
[0022] Figure 4 This is a three-dimensional schematic diagram of the top structure of the auxiliary sling mechanism of the present invention.
[0023] Figure 5 This is a schematic diagram of the structure at point A of the present invention.
[0024] Figure 6 This is a three-dimensional schematic diagram of the bottom structure of the auxiliary sling mechanism of the present invention.
[0025] Figure 7 This is a schematic diagram of the auxiliary intermediate moving frame and the auxiliary moving frame cooperation of the present invention.
[0026] Figure 8 This is a first assembly diagram of the auxiliary moving frame, auxiliary moving component, and auxiliary installation mechanism of the present invention.
[0027] Figure 9 This is a second assembly diagram of the auxiliary moving frame, auxiliary moving component, and auxiliary installation mechanism of the present invention.
[0028] Figure 10 This is a schematic diagram of the structure at point B of the present invention.
[0029] Figure 11 This is a partial structural diagram of the auxiliary moving frame, auxiliary moving component, and auxiliary installation mechanism of the present invention.
[0030] Figure 12 This is an exploded view of the auxiliary mounting bracket and auxiliary leveling component of the present invention.
[0031] Figure 13 This is a schematic diagram of the cooperation between the curtain wall mounting component and the auxiliary installation component of the present invention.
[0032] The attached diagram is labeled as follows: Auxiliary moving frame; 110, Movable moving frame; 111, Leveling groove; 120, Adsorption bracket; 130, Auxiliary hanger; 200, Auxiliary moving assembly; 210, Shock-absorbing moving frame; 220, Shock-absorbing suspension unit; 230, Moving wheel; 240, Auxiliary adsorption unit; 241, Adsorption hydraulic rod; 242, Adsorption suction cup; 243, Negative pressure tank; 244, Negative pressure extraction pipe; 250, Shock-absorbing contact unit; 251, Contact hydraulic rod; 252, Contact bracket; 253, Contact plate; 254, Shock-absorbing spring; 260, Sling unit; 261, Lifting gantry; 262, Sling wheel; 263, Stable cable routing frame; 264, Shock-absorbing cable routing arm; 265, Cable routing wheel; 300, Auxiliary sling. Mechanism; 310, Stable sling frame; 320, Translational stabilization assembly; 321, Stabilizing base frame; 322, Translational telescopic rod; 323, Translational frame; 324, Fixed clamping unit; 3241, Fixed frame; 3242, First hydraulic rod; 3243, Extrusion plate; 325, Drive clamping unit; 3251, Drive slide; 3252, Drive screw; 3253, Drive slide; 3254, Movable frame; 3255, Second hydraulic rod; 3256, Drive plate; 330, Telescopic inclined frame; 340, Sling assembly; 341, Hanger; 342, Lifting winch; 343, Lifting motor; 344, Lifting rope; 345, Stabilizing counterweight frame; 346, Counterweight block; 347, Guide wheel assembly; 348, Telescopic guide wheel; 3 50. Smooth cable routing assembly; 351. Cable routing winch; 352. Cable routing motor; 353. Cable routing rope; 354. Cable routing guide wheel assembly; 355. Cable routing guide wheel; 360. Cable routing bracket; 370. Translation wheel; 380. Stabilizing telescopic leg; 390. Stabilizing base plate; 400. Stabilizing cable routing assembly; 401. Stabilizing cable routing frame; 402. Tensioning winch; 403. Tensioning motor; 404. Shock-absorbing tensioning arm; 405. Tensioning wheel; 500. Auxiliary installation mechanism; 510. Auxiliary installation bracket; 511. Leveling round frame; 512. Mounting bracket; 520. Auxiliary leveling assembly; 521. Stabilizing leveling column; 522. Receiving groove; 523. Stabilizing round frame; 524. Stabilizing gear; 525. Stabilizing gear ring; 52 6. Stabilizing frame; 530. Curtain wall mounting assembly; 531. Mounting hydraulic rod; 532. Mounting bracket; 533. Mounting carriage; 534. Mounting electric rod; 535. Anti-mounting plate; 536. Lifting fixed frame; 537. Lifting movable frame; 538. Movable hydraulic rod; 539. First bracket; 540. Second bracket; 541. First roller; 542. Second roller; 543. First motor; 544. Second motor; 545. Lifting cloth; 550. Auxiliary installation assembly; 551. Mounting hydraulic rod; 552. Auxiliary installation frame; 553. Anti-vibration damping plate; 554. Anti-spring; 600. Auxiliary intermediate moving frame; 610. Intermediate moving assembly; 620. Intermediate hoisting assembly; 630. Intermediate winch. Detailed Implementation
[0033] See Figures 1 to 13 As shown, a curtain wall installation auxiliary device includes an auxiliary moving frame 100 installed on the exterior wall of a building. The auxiliary moving frame 100 is provided with an auxiliary moving component 200 for stably placing the auxiliary moving frame 100 on the exterior wall of the building and facilitating the movement of the auxiliary moving frame 100 on the exterior wall of the building. An auxiliary sling mechanism 300 is provided on the outside of the building for hoisting the auxiliary moving frame 100 on the exterior wall of the building. The auxiliary moving frame 100 is provided with an auxiliary installation mechanism 500 for facilitating the installation of the curtain wall by construction personnel and for hoisting curtain wall installation accessories. The auxiliary installation mechanism 500 includes an auxiliary installation bracket 510 disposed on the auxiliary moving frame 100, an auxiliary leveling component 520 disposed on the auxiliary moving frame 100 for leveling the auxiliary installation bracket 510, a curtain wall mounting component 530 disposed on the auxiliary installation bracket 510 for mounting the curtain wall on the curtain wall bracket, and an auxiliary installation component 550 disposed on the auxiliary installation bracket 510 for cooperating with the curtain wall mounting component 530.
[0034] In summary, the auxiliary moving frame 100, as the main structure of the entire installation auxiliary equipment, is designed to be stably attached to the exterior wall of the building while being easily movable along the wall. This design solves the problem of frequently erecting scaffolding or platforms in traditional curtain wall installation, improving construction flexibility. The auxiliary moving component 200, installed on the auxiliary moving frame 100, primarily ensures that the auxiliary moving frame 100 is stably placed on the exterior wall of the building while allowing for easy horizontal or vertical movement, effectively reducing the physical burden on construction workers and improving installation efficiency. The auxiliary sling mechanism 300, located on the outside of the building, is used to hoist the auxiliary moving frame 100 to the designated height and position, solving the hoisting problem of large auxiliary equipment in high-altitude operations and ensuring the safety and operability of the installation process. The auxiliary installation mechanism 500, installed on the auxiliary moving frame 100, has a leveling function, allowing for precise placement of curtain wall supports or curtain wall panels in designated positions, and completing the final fixing work through various mechanical devices. The auxiliary installation bracket 510 serves as the direct support structure for installing the curtain wall and its accessories. Mounted on the auxiliary moving bracket 100, it provides a stable working platform. The auxiliary leveling component 520 adjusts the horizontal state of the auxiliary installation bracket 510, ensuring accuracy during curtain wall installation. It can automatically or manually adjust the height of the bracket to adapt to uneven wall surfaces. The curtain wall placement component 530 is designed for temporary fixing of curtain wall panels, facilitating precise adjustment and positioning by construction personnel to ensure the curtain wall does not slip or shift during installation. The auxiliary installation component 550 works in conjunction with the curtain wall placement component 530 to complete the final fixing and installation of the curtain wall panels, aiming to improve installation efficiency and quality.
[0035] Furthermore, the auxiliary moving assembly 200 includes a shock-absorbing moving frame 210 disposed on the auxiliary moving frame 100, a shock-absorbing suspension unit 220 disposed between the shock-absorbing moving frame 210 and the auxiliary moving frame 100, and a moving wheel 230 disposed on the shock-absorbing moving frame 210 that contacts the exterior wall of the building. At both ends of the auxiliary moving frame 100, auxiliary adsorption units 240 are disposed for stably adsorbing the auxiliary moving frame 100 onto the exterior wall of the building. The auxiliary moving frame 100 is provided with a sling unit 260 that cooperates with the auxiliary sling assembly mechanism, and the auxiliary moving frame 100 is provided with a shock-absorbing contact unit 250 that cooperates with the shock-absorbing suspension unit 220 and the auxiliary adsorption unit 240. The auxiliary moving frame 100 includes a movable moving frame 110 that cooperates with the moving wheels 230 and facilitates the installation of the auxiliary installation mechanism 500. At both ends of the movable moving frame 110, there are adsorption brackets 120 that cooperate with the auxiliary adsorption unit 240. At the top of the movable moving frame 110, there is an auxiliary hanger 130 that cooperates with the sling unit 260.
[0036] The structure of the aforementioned shock absorber suspension unit 220 is the same as that of air suspension in cars on the market, and will not be described further here.
[0037] In summary, the auxiliary moving frame 100 is the foundation of the entire system. It is designed to move freely on the building's exterior wall while providing a stable working platform. Through the shock-absorbing suspension unit 220 and the moving wheels 230, the auxiliary moving frame 100 can move smoothly on the building's exterior wall, reducing the impact of vibration on construction. The auxiliary adsorption unit 240 ensures that the moving frame is in firm contact with the building's exterior wall, preventing slippage or detachment during operation.
[0038] Furthermore, the auxiliary adsorption unit 240 includes a plurality of adsorption hydraulic rods 241 disposed on the adsorption bracket 120. The movable end of the adsorption hydraulic rod 241 is provided with an adsorption suction cup 242 for adsorbing the exterior wall surface of the building. The adsorption bracket 120 is provided with a negative pressure tank 243 that cooperates with the adsorption suction cup 242. The negative pressure tank 243 is provided with a plurality of negative pressure suction tubes 244 that are connected to the adsorption suction cup 242. The adsorption bracket 120 is provided with an electric adsorption control chip for controlling the adsorption suction cup 242. The shock-absorbing and abutting unit 250 includes an abutting hydraulic rod 251 disposed on the adsorption bracket 120, an abutting bracket 252 disposed at the moving end of the abutting hydraulic rod 251, an abutting plate 253 disposed on one side of the abutting bracket 252 that contacts the exterior wall of the building, and a plurality of shock-absorbing springs 254 disposed between the abutting bracket 252 and the abutting plate 253. The sling unit 260 includes a lifting frame 261 mounted on the auxiliary sling 130. The lifting frame 261 is provided with a sling pulley 262 that cooperates with the auxiliary sling mechanism 300. The lifting frame 261 is provided with a stable cable guide frame 263 that cooperates with the auxiliary sling mechanism 300. The stable cable guide frame 263 is provided with an upper shock-absorbing cable guide arm 264. The shock-absorbing cable guide arm 264 is provided with a cable guide pulley 265 that cooperates with the auxiliary sling mechanism 300.
[0039] Preferably, the guide wheel 265 cooperates with the guide rope 353 in the auxiliary sling mechanism 300, so that the guide wheel 265 moves along the guide rope 353. The guide wheel 265 is mainly used to tighten the guide rope 353, so that the auxiliary moving frame 100 is stably hoisted on the exterior wall of the building and can move according to the needs of the operator.
[0040] Preferably, two sets of the stable cable routing frame 263 are provided on the cable routing frame 263, and the two sets of the stable cable routing frame 263 are respectively located at both ends of the sling pulley 262.
[0041] The shock-absorbing transfer frame 210 is equipped with a shock-absorbing suspension unit 220 and moving wheels 230 for easy movement on the building's exterior wall. The moving wheels 230 contact the building's exterior wall, providing support for movement. The auxiliary adsorption unit 240, through adsorption hydraulic rods 241 and adsorption suction cups 242, utilizes the negative pressure generated by the negative pressure tank 243 to stably adsorb the auxiliary transfer frame 100 onto the building's exterior wall. The shock-absorbing contact unit 250, through contact hydraulic rods 251, contact brackets 252, and shock-absorbing springs 254, further increases the contact stability between the auxiliary transfer frame 100 and the wall, while absorbing possible vibrations. In the sling unit 260, the lifting slewing frame 261 supports the sling wheel 262 and the stable cable routing frame 263. The sling wheel 262 cooperates with the auxiliary sling mechanism 300 to achieve rotation and guidance during the lifting process. The stable cable routing frame 263 ensures the stable operation of the cable 353, reducing swaying. The shock-absorbing cable guide arm 264, cable guide wheel 265, and cable guide rope 353 work together to further absorb vibrations during the hoisting process and ensure stable hoisting.
[0042] Furthermore, the auxiliary sling mechanism 300 includes a stable sling frame 310 disposed at the top of the building. The stable sling frame 310 is provided with a translational stabilizing component 320 for stably installing the stable sling frame 310 at the top of the building. The stable sling frame 310 is provided with a telescopic inclined frame 330. The telescopic inclined frame 330 is provided with a sling assembly 340 for slinging the auxiliary moving frame 100. The telescopic inclined frame 330 is equipped with a smooth wiring assembly 350 that cooperates with the sling assembly 340 and facilitates the smooth movement of the auxiliary frame 100 on the exterior wall of the building. A cable routing bracket 360 is installed at the bottom of the building. The cable routing bracket 360 is equipped with a translation wheel 370 and a stabilizing telescopic leg 380 that cooperates with the translation wheel 370. The stabilizing telescopic leg 380 is equipped with a stable base plate 390 that cooperates with the ground. The cable routing bracket 360 is equipped with a stabilizing cable routing assembly 400 that cooperates with the smooth cable routing assembly 350.
[0043] In general, the auxiliary sling mechanism 300 is located at the top of the building and mainly consists of a stable sling frame 310, a telescopic inclined frame 330, a sling assembly 340, and a smooth cable routing assembly 350. The stable sling frame 310 is fixed to the top of the building by the translational stabilizing assembly 320, and lateral movement is achieved by the drive clamping unit 325. The telescopic inclined frame 330 is telescopic, working in conjunction with the sling assembly 340 to achieve vertical hoisting and smooth movement of the auxiliary moving frame 100. The smooth cable routing assembly 350 and the stable cable routing assembly 400 ensure the stability of the auxiliary moving frame 100 during hoisting, reducing swaying.
[0044] Furthermore, the sling assembly 340 includes a sling 341 mounted on the stable sling frame 310, a hoisting winch 342 mounted on the sling 341, a hoisting motor 343 cooperating with the hoisting winch 342 mounted on the sling 341, a hoisting rope 344 fixedly connected to the auxiliary moving frame 100 mounted on the hoisting winch 342, a stabilizing counterweight frame 345 cooperating with the telescopic inclined frame 330 and telescopically cooperating with the stable sling frame 310 mounted on the sling frame, a counterweight block 346 cooperating with the telescopic inclined frame 330 mounted on the stabilizing counterweight frame 345, a guide wheel assembly 347 cooperating with the hoisting rope 344 mounted on the stable sling frame 310, and a telescopic guide wheel 348 mounted on the telescopic inclined frame 330. The stable cable routing assembly 350 includes a cable routing winch 351 that cooperates with the stable sling frame 310, a cable routing motor 352 that cooperates with the cable routing winch 351, a cable routing rope 353 that is provided on the cable routing winch 351, a cable routing guide wheel assembly 354 that cooperates with the sling rope 344 that is provided on the stable sling frame 310, and a cable routing guide wheel 355 that is provided on the telescopic inclined frame 330. The stabilizing cable routing assembly 400 includes a stabilizing cable routing frame 401 mounted on the cable routing bracket 360. The stabilizing cable routing frame 401 is equipped with a tensioning winch 402 for tensioning the cable routing rope 353. The tensioning winch 402 is equipped with a tensioning motor 403 that cooperates with the tensioning winch 402. The stabilizing cable routing frame 401 is equipped with a shock-absorbing tensioning arm 404 that cooperates with the tensioning winch 402. The telescopic end of the shock-absorbing tensioning arm 404 is equipped with a tensioning wheel 405 that cooperates with the cable routing rope 353.
[0045] The sling assembly 340 enables the hoisting of the auxiliary moving frame 100. The sling 341 supports the hoisting winch 342 and the hoisting motor 343. The hoisting winch 342, driven by the hoisting motor 343, raises and lowers the hoisting rope 344. The hoisting rope 344 is fixedly connected to the auxiliary moving frame 100 to achieve hoisting. The stabilizing counterweight frame 345 cooperates with the telescopic inclined frame 330 to provide counterweight and ensure hoisting stability. The guide wheel assembly 347 guides the movement of the hoisting rope 344 and reduces friction.
[0046] The stabilizing cable routing assembly 350 is used to achieve the horizontal movement of the auxiliary moving frame 100, while the cable routing winch 351 is driven by the cable routing motor 352 to control the winding and unwinding of the cable routing rope 353, thereby achieving the horizontal movement of the auxiliary moving frame 100. The cable routing motor 352 provides power to drive the cable routing winch 351. The cable routing rope 353 connects the cable routing winch 351 and the stabilizing cable routing assembly 400, transmitting the horizontal movement force. The cable routing guide pulley assembly 354 guides the cable routing rope 353, ensuring stability during the cable routing process. The cable routing guide wheel 355 is mounted on the telescopic inclined frame 330 to guide the cable routing rope 353, ensuring stability during the cable routing process.
[0047] The stabilizing cable routing assembly 400 ensures the tension of the cable routing rope 353, reducing vibration during cable routing. The stabilizing cable routing frame 401 is mounted on the cable routing bracket 360, providing support. The tensioning winch 402, driven by the tensioning motor 403, controls the tension of the cable routing rope 353. The tensioning motor 403 provides power to drive the tensioning winch 402. The shock-absorbing tensioning arm 404 absorbs vibration during cable routing, ensuring the tension of the cable routing rope 353. The tensioning pulley 405 is located at the telescopic end of the shock-absorbing tensioning arm 404 and cooperates with the cable routing rope 353 to ensure its tension.
[0048] Furthermore, the translational stabilization component 320 includes a stabilizing base frame 321 fixedly connected to the stabilizing sling frame 310. The stabilizing base frame 321 is provided with a plurality of translational telescopic rods 322. A translational frame 323 is provided at the moving end of the translational telescopic rod 322. The translational frame 323 is provided with translational rollers for translating the stabilizing base frame 321. The stabilizing base frame 321 is provided with a storage slot for accommodating the translational frame 323. A fixed clamping unit 324 that cooperates with the translation roller is provided at one end of the stabilizing base frame 321. A driving clamping unit 325 that cooperates with the fixed clamping unit 324 and is used to drive the stabilizing base frame 321 to move along the top of the building is provided on the stabilizing base frame 321. When the stabilizing base frame 321 is stably placed on the top of the building, the fixed clamping unit 324 and the driving clamping unit 325 are respectively located at both ends of the stabilizing base frame 321.
[0049] Furthermore, the fixing clamping unit 324 includes a fixing frame 3241 symmetrically arranged on both sides of the stabilizing base frame 321. The fixing frame 3241 is provided with a plurality of first hydraulic rods 3242 for clamping and fixing to the exterior wall of the building. The moving ends of the plurality of first hydraulic rods 3242 are connected to the same extrusion plate 3243. The drive clamping unit 325 includes a drive slide groove 3251 formed along the length of the stabilizing base 321, a drive screw 3252 formed in the drive slide groove 3251, the drive slide groove 3251 penetrating the stabilizing base 321, a drive slide 3253 that cooperates with the drive screw 3252 is provided in the drive slide groove 3251, and movable frames 3254 are provided on both sides of the drive slide 3253. Several second hydraulic rods 3255 are provided on the movable frames 3254 for clamping and fixing to the top of the building, and the moving ends of the several second hydraulic rods 3255 are connected to the same drive plate 3256.
[0050] The translational stabilization component 320 ensures the stability and mobility of the sling frame 310 at the top of the building. This requires not only providing sufficient clamping force to prevent displacement of the sling frame during construction, but also a certain degree of flexibility to adjust the position of the sling frame according to actual construction needs. The translational telescopic rod 322, through its telescopic characteristics, enables the lateral movement of the sling frame 310 at the top of the building. Translational rollers are mounted on the translational frame 323, providing a low-friction moving interface for the sling frame, allowing the entire structure to slide easily along the surface of the building top, especially in the parapet wall section of the building floors. The fixed clamping unit 324 and the driving clamping unit 325 work together to achieve a secure clamping of the building top. The fixed clamping unit 324 is responsible for providing a stable clamping force, while the driving clamping unit 325 allows for controlled lateral movement of the sling frame.
[0051] In this fixed clamping unit 324, the first hydraulic rod 3242 serves as the core component, and several first hydraulic rods 3242 are arranged on both sides of the stable base 321. These hydraulic rods are controlled by oil pressure and can be precisely extended or retracted, thereby adjusting the distance between the extrusion plate 3243 and the building's exterior wall. The extrusion plate 3243 is located at the moving end of the first hydraulic rod 3242. When the hydraulic rod extends, the extrusion plate 3243 presses tightly against the building's exterior wall, generating sufficient clamping force to ensure the stability of the sling frame 310 at the top of the building. This design allows the sling frame to remain stationary even under the influence of wind or other external forces.
[0052] In the drive clamping unit 325, a drive groove 3251 is formed along the length of the stabilizing base 321 to accommodate the drive screw 3252 and the drive carriage 3253, forming a linear guide system. The drive screw 3252 is installed in the drive groove 3251 and converts rotational motion into linear motion, making it a key component for achieving lateral movement of the stabilizing sling frame 310. It works in conjunction with the nut on the drive carriage 3253 to convert the rotational power provided by the motor into horizontal thrust. The drive carriage 3253 is connected to the drive screw 3252 and moves along the groove as the screw rotates. The drive carriage 3253 is also connected to a movable frame 3254, on which a second hydraulic rod 3255 is mounted for clamping the top of the building. The second hydraulic rod 3255 is similar to the first hydraulic rod 3242, but their operation is slightly different. During the movement of the drive carriage 3253, the second hydraulic rod 3255 maintains a clamping state on the top of the building, ensuring the stability of the sling frame throughout the movement. Simultaneously, the second hydraulic rod 3255 can adjust the clamping force as needed to adapt to different building structural characteristics.
[0053] Furthermore, the auxiliary moving frame 100 has a leveling groove 111 on the side facing the building's exterior wall, which cooperates with the auxiliary leveling component 520. The auxiliary leveling component 520 includes a stabilizing leveling column 521 disposed in the leveling groove 111 and rotatably cooperating with the auxiliary mounting bracket 510. A plurality of stabilizing round frames 523 are disposed in the leveling groove 111 along the axial direction of the stabilizing leveling column 521, and a plurality of stabilizing gears 524 are evenly disposed in the circumferential direction of the stabilizing round frame 523. The auxiliary mounting bracket 510 includes a leveling ring 511 disposed in the leveling groove 111. The leveling ring 511 is provided with a stabilizing gear ring 525 that meshes with the stabilizing gear 524. One of the stabilizing rings 523 is provided with a stabilizing electric drive motor for driving the stabilizing gear ring 525 to rotate. The stabilizing electric drive motor is provided with an electric drive gear that meshes with the stabilizing gear ring 525. The leveling ring 511 is provided with a stabilizing sleeve 526 for connecting the stabilizing leveling column 521 to the leveling ring 511. The leveling ring 511 is provided with a mounting bracket 512. The curtain wall mounting component 530 and the auxiliary mounting component 550 are both disposed on the mounting bracket 512.
[0054] Furthermore, the curtain wall mounting assembly 530 includes a mounting hydraulic rod 531 mounted on the mounting bracket 512, a receiving groove 522 that mates with the mounting hydraulic rod 531 on the stabilizing leveling column 521, a mounting bracket 532 at the moving end of the mounting hydraulic rod 531, a mounting slide 533 that slidably mates with the mounting bracket 532 at the top end of the mounting bracket 532, a mounting electric rod 534 that mates with the mounting slide 533 on the mounting bracket 532, and an abutment mounting plate 535 that contacts the top surface of the curtain wall on the mounting bracket 532. The support bracket 532 is equipped with a lifting frame 536, and the lifting frame 536 is equipped with a lifting movable frame 537 that slides with the lifting frame 536. The lifting frame 536 is equipped with a movable hydraulic rod 538 that cooperates with the lifting movable frame 537. The lifting frame 536 is equipped with a first bracket 539, and the lifting movable frame 537 is equipped with a second bracket 540. The first bracket is equipped with a first roller 541, and the second bracket 540... A second roller 542 is provided on the first bracket 539, a first motor 543 that cooperates with the first roller 541 is provided on the first bracket 539, a second motor 544 that cooperates with the second roller 542 is provided on the second bracket 540, and a support cloth 545 for supporting the bottom end of the curtain wall is provided between the first bracket 539 and the second bracket 540. The two ends of the support cloth 545 are respectively wound and connected to the first roller 541 and the second roller 542. The auxiliary installation component 550 includes two sets of installation hydraulic rods 551 symmetrically arranged at both ends of the curtain wall mounting component 530. Several installation hydraulic rods 551 are connected to the same auxiliary mounting frame 552. A damping plate 553 that contacts the curtain wall is provided on one side of the auxiliary mounting frame 552. A damping spring 554 is provided between the auxiliary mounting frame 552 and the damping plate 553.
[0055] Specifically, the auxiliary moving frame 100, as a key support structure in the curtain wall installation process, needs to ensure that it remains horizontal and stable when facing different building exterior surfaces in order to accurately install the curtain wall. The auxiliary leveling component 520 is designed to solve this problem. Through the cooperation of the stabilizing leveling column 521, the stabilizing circular frame 523, and the stabilizing gear 524, the auxiliary moving frame 100 can be precisely leveled in space.
[0056] The curtain wall mounting assembly 530 is responsible for precisely mounting the curtain wall onto the building's exterior wall, while the auxiliary mounting assembly 550 provides necessary support and vibration damping to ensure safety and stability during installation. In use of the curtain wall mounting assembly 530, the mounting hydraulic rod 531 pushes the mounting bracket 532 to move, allowing the curtain wall to accurately align with the building's exterior wall. The mounting carriage 533 slides on the mounting bracket 532, and the horizontal adjustment of the curtain wall is achieved through the adjustment of the mounting electric rod 534. The contact plate 253 contacts the top surface of the curtain wall, providing support. The support fabric 545 is wound and connected by a first roller 541 and a second roller 542, and is driven by a first motor 543 and a second motor 544 to lift and move the bottom end of the curtain wall. In the auxiliary mounting assembly 550, the mounting hydraulic rod 551 pushes the auxiliary mounting bracket 552 closer to the curtain wall, providing necessary support. The damping plate 553 contacts the curtain wall, while the damping spring 254 absorbs the impact force during installation, protecting the curtain wall from damage.
[0057] Furthermore, an auxiliary intermediate moving frame 600 is provided on the exterior wall of the building, and an intermediate moving component 610 is provided on the auxiliary intermediate moving frame 600 for stably placing the auxiliary intermediate moving frame 600 on the exterior wall of the building and facilitating the movement of the auxiliary moving frame 100 on the exterior wall of the building. The top of the auxiliary intermediate moving frame 600 is provided with an intermediate hoisting assembly 620 that cooperates with the auxiliary sling mechanism 300. The bottom of the auxiliary intermediate moving frame 600 is provided with an intermediate winch 630 for hoisting the auxiliary moving frame 100 onto the exterior wall of the building. An intermediate hoisting rope 344 for hoisting the auxiliary moving frame 100 is provided on the intermediate winch 630. The structure of the intermediate moving component 610 is the same as that of the auxiliary moving component 200.
[0058] Specifically, the auxiliary intermediate moving frame 600 is provided with a smooth cable routing assembly 350 that cooperates with the auxiliary sling mechanism 300, so that the auxiliary intermediate moving frame 600 travels along the cable routing bracket 360 and the stable sling frame 310 in the auxiliary sling mechanism 300.
[0059] In large-scale construction projects or installation scenarios requiring greater flexibility, the auxiliary intermediate moving frame 600, acting as a bridge connecting the auxiliary sling mechanism 300 and the auxiliary moving frame 100, needs to ensure stable movement on the building's exterior wall and accurate hoisting of the auxiliary moving frame 100. The intermediate moving assembly 610 is designed to achieve this goal. Through the intermediate moving assembly 610 and the intermediate hoisting assembly 620, it achieves collaborative operation with the auxiliary sling mechanism 300, further expanding the operational range and flexibility. Specifically, the intermediate hoisting assembly 620 is located at the top of the auxiliary intermediate moving frame 600, cooperating with the auxiliary sling mechanism 300. The bottom is equipped with a hoisting winch 342 and hoisting ropes for hoisting the auxiliary moving frame 100. The structure of the intermediate moving assembly 610 is consistent with that of the auxiliary moving assembly 200. With the cooperation of the smooth cable routing assembly 350, the auxiliary intermediate moving frame 600 can travel along the cable routing rope 353 between the cable routing bracket 360 and the stable sling frame 310. In this way, the auxiliary intermediate moving frame 600 can move stably on the exterior wall of the building and accurately hoist the auxiliary moving frame 100 to the designated position.
[0060] The technical features of this invention not described can be implemented by or using existing technology, and will not be repeated here. Of course, the above description is not a limitation of this invention, and this invention is not limited to the examples above. Any changes, modifications, additions or substitutions made by those skilled in the art within the scope of this invention should also be within the protection scope of this invention.
Claims
1. A curtain wall installation auxiliary device, characterized in that: The system includes an auxiliary moving frame (100) installed on the exterior wall of the building. The auxiliary moving frame (100) is provided with an auxiliary moving component (200) for stably placing the auxiliary moving frame (100) on the exterior wall of the building and for facilitating the movement of the auxiliary moving frame (100) on the exterior wall of the building. An auxiliary sling mechanism (300) is provided on the outside of the building for hoisting the auxiliary moving frame (100) onto the exterior wall of the building. The auxiliary moving frame (100) is provided with an auxiliary installation mechanism (500) for facilitating the installation of the curtain wall by construction personnel and for hoisting curtain wall installation accessories. The auxiliary installation mechanism (500) includes an auxiliary installation bracket (510) disposed on the auxiliary moving frame (100), an auxiliary leveling component (520) disposed on the auxiliary moving frame (100) for leveling the auxiliary installation bracket (510), a curtain wall mounting component (530) disposed on the auxiliary installation bracket (510) for mounting the curtain wall on the curtain wall bracket, and an auxiliary installation component (550) disposed on the auxiliary installation bracket (510) for cooperating with the curtain wall mounting component (530). The auxiliary moving frame (100) has a leveling groove (111) on the side facing the exterior wall of the building, which cooperates with the auxiliary leveling component (520). The auxiliary leveling component (520) includes a stabilizing column (521) disposed in the leveling groove (111) and rotatably cooperates with the auxiliary mounting bracket (510). A plurality of stabilizing frames (523) are disposed in the leveling groove (111) along the axial direction of the stabilizing column (521). A plurality of stabilizing gears (524) are evenly disposed in the circumferential direction of the stabilizing frame (523). The auxiliary mounting bracket (510) includes a leveling ring (511) disposed in the leveling groove (111). The leveling ring (511) is provided with a stabilizing gear ring (525) that meshes with the stabilizing gear (524). One of the stabilizing rings (523) is provided with a stabilizing electric drive motor for driving the stabilizing gear ring (525) to rotate. The stabilizing electric drive motor is provided with an electric drive gear that meshes with the stabilizing gear ring (525). The leveling ring (511) is provided with a stabilizing sleeve (526) for connecting the stabilizing leveling column (521) to the leveling ring (511). The leveling ring (511) is provided with a mounting bracket (512). The curtain wall mounting component (530) and the auxiliary mounting component (550) are both disposed on the mounting bracket (512).
2. The curtain wall installation auxiliary equipment as described in claim 1, characterized in that: The auxiliary moving assembly (200) includes a shock-absorbing moving frame (210) disposed on the auxiliary moving frame (100), a shock-absorbing suspension unit (220) disposed between the shock-absorbing moving frame (210) and the auxiliary moving frame (100), and a moving wheel (230) disposed on the shock-absorbing moving frame (210) that contacts the exterior wall of the building. At both ends of the auxiliary moving frame (100) are provided auxiliary adsorption units (240) for stably adsorbing the auxiliary moving frame (100) onto the exterior wall of the building. The auxiliary moving frame (100) is provided with a sling unit (260) that cooperates with the auxiliary sling assembly mechanism, and the auxiliary moving frame (100) is provided with a shock-absorbing contact unit (250) that cooperates with the shock-absorbing suspension unit (220) and the auxiliary adsorption unit (240). The auxiliary transfer frame (100) includes a movable transfer frame (110) that cooperates with the movable wheel (230) and facilitates installation by the auxiliary installation mechanism (500). At both ends of the movable transfer frame (110) are adsorption brackets (120) that cooperate with the auxiliary adsorption unit (240), and at the top of the movable transfer frame (110) is an auxiliary hanger (130) that cooperates with the sling unit (260).
3. The curtain wall installation auxiliary equipment as described in claim 2, characterized in that: The auxiliary adsorption unit (240) includes a plurality of adsorption hydraulic rods (241) disposed on the adsorption bracket (120). The moving end of the adsorption hydraulic rod (241) is provided with an adsorption suction cup (242) for adsorbing the exterior wall surface of the building. The adsorption bracket (120) is provided with a negative pressure tank (243) that cooperates with the adsorption suction cup (242). The negative pressure tank (243) is provided with a plurality of negative pressure suction pipes (244) that are connected to the adsorption suction cup (242). The adsorption bracket (120) is provided with an electric adsorption control chip for controlling the adsorption suction cup (242). The shock-absorbing and abutting unit (250) includes an abutting hydraulic rod (251) mounted on the adsorption bracket (120), an abutting bracket (252) mounted at the moving end of the abutting hydraulic rod (251), an abutting plate (253) mounted on one side of the abutting bracket (252) that contacts the exterior wall of the building, and a plurality of shock-absorbing springs (254) mounted between the abutting bracket (252) and the abutting plate (253). The sling unit (260) includes a lifting sling (261) mounted on the auxiliary sling (130). The lifting sling (261) is provided with a sling wheel (262) that cooperates with the auxiliary sling mechanism (300). The lifting sling (261) is provided with a smooth cable guide (263) that cooperates with the auxiliary sling mechanism (300). The smooth cable guide (263) is provided with a shock-absorbing cable guide arm (264). The shock-absorbing cable guide arm (264) is provided with a cable guide wheel (265) that cooperates with the auxiliary sling mechanism (300).
4. The curtain wall installation auxiliary equipment as described in claim 1, characterized in that: The auxiliary sling mechanism (300) includes a stable sling frame (310) installed at the top of the building. The stable sling frame (310) is provided with a translational stabilizing component (320) for stably installing the stable sling frame (310) at the top of the building. The stable sling frame (310) is provided with a telescopic inclined frame (330). The telescopic inclined frame (330) is provided with a sling assembly (340) for hoisting the auxiliary moving frame (100). The telescopic inclined frame (330) is provided with a smooth wiring assembly (350) that cooperates with the sling assembly (340) and facilitates the smooth movement of the auxiliary frame (100) on the exterior wall of the building. A cable routing bracket (360) is provided at the bottom of the building. A translation wheel (370) is provided on the cable routing bracket (360), and a stable telescopic leg (380) that cooperates with the translation wheel (370) is provided on the cable routing bracket (360). A stable base plate (390) that cooperates with the ground is provided on the stable telescopic leg (380). A stable cable routing assembly (400) that cooperates with the smooth cable routing assembly (350) is provided on the cable routing bracket (360).
5. The curtain wall installation auxiliary equipment as described in claim 4, characterized in that: The sling assembly (340) includes a sling (341) mounted on the stable sling frame (310), a hoisting winch (342) mounted on the sling (341), a hoisting motor (343) cooperating with the hoisting winch (342) mounted on the sling (341), a hoisting rope (344) fixedly connected to the auxiliary moving frame (100) mounted on the hoisting frame, a stabilizing counterweight frame (345) cooperating with the telescopic inclined frame (330) and telescopically cooperating with the stable sling frame (310) mounted on the sling frame, a counterweight block (346) cooperating with the telescopic inclined frame (330) mounted on the stabilizing sling frame (310), a guide wheel assembly (347) cooperating with the hoisting rope (344) mounted on the stable sling frame (310), and a telescopic guide wheel (348) mounted on the telescopic inclined frame (330). The stable cable routing assembly (350) includes a cable routing winch (351) mounted on the stable sling frame (310), a cable routing motor (352) cooperating with the cable routing winch (351), a cable routing rope (353) mounted on the cable routing winch (351), a cable routing guide wheel assembly (354) cooperating with the sling rope (344) mounted on the stable sling frame (310), and a cable routing guide wheel (355) mounted on the telescopic inclined frame (330). The stabilizing cable routing assembly (400) includes a stabilizing cable routing frame (401) mounted on the cable routing bracket (360). The stabilizing cable routing frame (401) is equipped with a tensioning winch (402) for tensioning the cable routing rope (353). The tensioning winch (402) is equipped with a tensioning motor (403) that cooperates with the tensioning winch (402). The stabilizing cable routing frame (401) is equipped with a shock-absorbing tensioning arm (404) that cooperates with the tensioning winch (402). The telescopic end of the shock-absorbing tensioning arm (404) is equipped with a tensioning wheel (405) that cooperates with the cable routing rope (353).
6. The curtain wall installation auxiliary equipment as described in claim 4, characterized in that: The translational stabilization assembly (320) includes a stabilizing base frame (321) fixedly connected to the stabilizing sling frame (310). The stabilizing base frame (321) is provided with a plurality of translational telescopic rods (322). A translational frame (323) is provided at the moving end of the translational telescopic rod (322). The translational frame (323) is provided with translational rollers for translating the stabilizing base frame (321). The stabilizing base frame (321) is provided with a storage slot for accommodating the translational frame (323). A fixed clamping unit (324) cooperating with the translation roller is provided at one end of the stabilizing base frame (321). A driving clamping unit (325) cooperating with the fixed clamping unit (324) and used to drive the stabilizing base frame (321) to move along the top of the building is provided on the stabilizing base frame (321). When the stabilizing base frame (321) is stably placed on the top of the building, the fixed clamping unit (324) and the driving clamping unit (325) are respectively provided at both ends of the stabilizing base frame (321).
7. The curtain wall installation auxiliary equipment as described in claim 6, characterized in that: The fixed clamping unit (324) includes a fixed frame (3241) symmetrically arranged on both sides of the stable base frame (321). The fixed frame (3241) is provided with a plurality of first hydraulic rods (3242) for clamping and fixing to the exterior wall of the building. The moving ends of the plurality of first hydraulic rods (3242) are connected to the same extrusion plate (3243). The drive clamping unit (325) includes a drive slide groove (3251) opened along the length direction of the stabilizing base frame (321), a drive screw (3252) opened in the drive slide groove (3251), the drive slide groove (3251) passes through the stabilizing base frame (321), a drive carriage (3253) that cooperates with the drive screw (3252) is provided in the drive slide groove (3251), and movable frames (3254) are provided on both sides of the drive carriage (3253). Several second hydraulic rods (3255) are provided on the movable frames (3254) for clamping and fixing at the top of the building. The moving ends of several second hydraulic rods (3255) are connected to the same drive plate (3256).
8. The curtain wall installation auxiliary equipment as described in claim 1, characterized in that: The curtain wall mounting assembly (530) includes a mounting hydraulic rod (531) mounted on the mounting bracket (512), a receiving groove (522) that cooperates with the mounting hydraulic rod (531) on the stabilizing leveling column (521), a mounting bracket (532) at the moving end of the mounting hydraulic rod (531), a mounting slide (533) that slides with the mounting bracket (532) at the top end of the mounting bracket (532), a mounting electric rod (534) that cooperates with the mounting slide (533) on the mounting bracket (532), and an abutment mounting plate (535) that contacts the top surface of the curtain wall on the mounting bracket (532). The mounting bracket (532) is provided with a lifting frame (536), the lifting frame (536) is provided with a lifting movable frame (537) that slides with the lifting frame (536), the lifting frame (536) is provided with a movable hydraulic rod (538) that cooperates with the lifting movable frame (537), the lifting frame (536) is provided with a first bracket (539), the lifting movable frame (537) is provided with a second bracket (540), the first bracket is provided with a first roller (541), and the second bracket (540) is provided with a first roller (541). The first bracket (539) is provided with a second roller shaft (541), the first bracket (540) is provided with a first motor (543) that cooperates with the first roller shaft (541), the second bracket (540) is provided with a second motor (544) that cooperates with the second roller shaft (542), and a support cloth (545) for supporting the bottom end of the curtain wall is provided between the first bracket (539) and the second bracket (540). The two ends of the support cloth (545) are respectively wound and connected to the first roller shaft (541) and the second roller shaft (542). The auxiliary installation assembly (550) includes two sets of installation hydraulic rods (551) symmetrically arranged at both ends of the curtain wall mounting assembly (530). Several installation hydraulic rods (551) are connected to the same auxiliary mounting frame (552). A damping plate (553) that contacts the curtain wall is provided on one side of the auxiliary mounting frame (552). A damping spring (554) is provided between the auxiliary mounting frame (552) and the damping plate (553).
9. The curtain wall installation auxiliary equipment as described in claim 1, characterized in that: An auxiliary intermediate moving frame (600) is provided on the exterior wall of the building. An intermediate moving component (610) is provided on the auxiliary intermediate moving frame (600) for stably placing the auxiliary intermediate moving frame (600) on the exterior wall of the building and for facilitating the movement of the auxiliary moving frame (100) on the exterior wall of the building. The top of the auxiliary intermediate moving frame (600) is provided with an intermediate hoisting assembly (620) that cooperates with the auxiliary hoisting mechanism (300), and the bottom of the auxiliary intermediate moving frame (600) is provided with an intermediate winch (630) for hoisting the auxiliary moving frame (100) onto the exterior wall of the building. The intermediate winch (630) is provided with an intermediate hoisting rope (344) for hoisting the auxiliary moving frame (100). The structure of the intermediate moving component (610) is the same as that of the auxiliary moving component (200).