A transfer shock-absorbing bracket suitable for transporting glass curtain wall decorative panels

By designing a transport shock-absorbing bracket with integrated shock-absorbing, telescopic and angle-adjusting functions, the instability and safety issues during the transportation of glass curtain wall decorative panels are solved, achieving efficient and safe transportation results.

CN119821839BActive Publication Date: 2025-09-30THE FIRST COMPARY OF CHINA EIGHTH ENG BUREAU LTD
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Patent Information

Application Number
CN202510200816.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2025-09-30
Estimated Expiration
2045-02-24

AI Technical Summary

Technical Problem

The existing glass curtain wall decorative panels lack effective shock absorption and fixing mechanisms during transportation, resulting in transportation instability and safety issues. In addition, the existing bracket system has poor versatility, high cost, and lacks real-time monitoring and early warning functions.

Method used

A transfer shock-absorbing bracket with integrated shock-absorbing, telescopic and angle adjustment functions is designed, which includes a shock-absorbing bracket assembly, a shock-absorbing top support assembly, a shock-absorbing tie assembly and an angle adjustment assembly. Through the coordinated work of multiple components, it provides all-round shock-absorbing protection and can adapt to glass panels of different sizes and shapes.

Benefits of technology

It improves the stability and safety of glass curtain wall transportation, reduces construction costs, enhances the adaptability and ease of operation of the system, and ensures the safe arrival of decorative panels during transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention is a transfer shock-absorbing bracket suitable for transporting glass curtain wall decorative panels, which relates to the technical field of construction for building decoration projects, including a transfer base, on which are provided several groups of support platforms, between which are provided regulating brackets, and on which are provided angle regulating components; the regulating brackets are provided several shock-absorbing bracket assemblies, and at both ends of the regulating brackets there are provided shock-absorbing top support assemblies, and the shock-absorbing top support assemblies are provided with shock-absorbing clamping assemblies, and at both sides of the shock-absorbing bracket assemblies there are shock-absorbing tie assemblies, and at both sides of the shock-absorbing top support assemblies there are shock-absorbing holding assemblies, and the regulating brackets are provided with telescopic control components. The present invention aims to ensure the safety of oversized glass curtain walls during transportation and reduce various damages that may occur during transportation through multi-faceted support, precise angle adjustment, and effective shock-absorbing measures. This system can be applied to various types of glass curtain wall decorative panels.
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Description

Technical Field

[0001] The invention relates to the technical field of building decoration engineering construction, in particular to a transport shock-absorbing bracket suitable for transporting glass curtain wall decorative panels. Background Art

[0002] In architectural decoration, glass curtain walls have become an indispensable element in modern building design due to their aesthetics, light transmittance, and energy-saving properties. With the advancement of architectural technology, oversized glass curtain wall panels are becoming increasingly popular, not only providing expansive views but also enhancing the building's modern feel. However, the transportation of these oversized glass panels presents numerous challenges, particularly regarding safety, requiring specialized transportation systems to ensure their stability and integrity during transport.

[0003] The transport of oversized glass curtain wall panels places higher demands on transportation conditions due to their size and weight. In particular, the inertia of the glass panels can cause them to shift or become damaged during sudden braking, posing a significant risk to transportation safety. Furthermore, existing transport support systems often lack effective shock absorption and securing mechanisms, resulting in cumbersome and inefficient loading and unloading processes, insufficient versatility and adaptability, and a lack of real-time monitoring and early warning systems. These issues collectively hinder the safe and efficient transportation of oversized glass curtain wall panels.

[0004] While some solutions for transporting glass curtain wall panels are available on the market, they still have limitations in practical application. For example, traditional fixing methods cannot provide sufficient stability during sudden braking; simple shock-absorbing devices have limited shock absorption effect and low durability; customized brackets are expensive and lack universality; and basic monitoring equipment lacks intelligent analysis and early warning capabilities.

[0005] How to solve the above technical problems is the subject faced by the present invention. Summary of the Invention

[0006] To address the shortcomings of existing technologies, this invention provides a rationally designed, safe, and reliable transport shock-absorbing bracket suitable for transporting glass curtain wall decorative panels. This bracket integrates multiple functions, including shock absorption, telescoping, and angle adjustment, to ensure the stability and safety of the glass curtain wall during transportation. Through innovative design and optimized component configuration, it effectively addresses many issues inherent in traditional transportation methods, improving transportation efficiency and quality while reducing construction costs and safety risks.

[0007] The technical solution adopted by the present invention to solve its technical problem is: a transfer shock-absorbing bracket suitable for transporting glass curtain wall decorative panels, comprising a transfer base, wherein the transfer base is provided with a plurality of groups of support platforms, and each group of the support platforms includes two support platforms symmetrically arranged on the transfer base, an adjustment bracket is provided between the two support platforms, and the support platforms are provided with an angle adjustment component that cooperates with the adjustment bracket;

[0008] The regulating bracket is provided with several shock-absorbing bracket assemblies in contact with the glass curtain wall, shock-absorbing top support assemblies are provided at both ends of the regulating bracket, shock-absorbing top support assemblies are provided with shock-absorbing clamping assemblies cooperating with the shock-absorbing top support assemblies, and shock-absorbing tie assemblies cooperating with the glass curtain wall are provided on both sides of the shock-absorbing bracket assembly, shock-absorbing holding assemblies cooperating with the glass curtain wall are provided on both sides of the shock-absorbing top support assembly, and a telescopic control assembly for controlling the cooperation between the shock-absorbing tie assemblies and the shock-absorbing holding assemblies is provided on the regulating bracket.

[0009] Furthermore, the shock-absorbing bracket assembly includes a shock-absorbing cylinder arranged on the regulating bracket, a shock-absorbing circular groove is formed at one end of the shock-absorbing cylinder facing the glass curtain wall, the shock-absorbing bracket is arranged in the shock-absorbing circular groove, a circumferential cylinder is arranged in the shock-absorbing circular groove, a shock-absorbing ring cylinder coaxially arranged in the circumferential cylinder and cooperating with the shock-absorbing bracket, and a circumferential spring is arranged between the circumferential cylinder and the shock-absorbing ring cylinder;

[0010] The shock-absorbing bracket is provided with a shock-absorbing groove on the side facing the glass curtain wall, the shock-absorbing groove is provided with a shock-absorbing rod, the shock-absorbing rod is provided with a suction cup that cooperates with the glass curtain wall, the shock-absorbing rod is provided with a shock-absorbing ring plate, and the shock-absorbing rod is sleeved with a shock-absorbing spring that cooperates with the shock-absorbing ring plate.

[0011] Furthermore, the shock-absorbing top support assembly includes a top support tube arranged on the regulating bracket, a shock-absorbing top support groove is provided at one end of the top support tube facing the glass curtain wall, a circumferential ring tube is provided in the shock-absorbing top support groove, a shock-absorbing circumferential tube is coaxially provided on the circumferential ring tube, a plurality of shock-absorbing springs are provided between the shock-absorbing circumferential tube and the circumferential ring tube, the shock-absorbing circumferential tube is provided with a top support rod, a top support seat is provided on the top support rod, and a shock-absorbing airbag cooperating with the glass curtain wall is provided on the top support seat.

[0012] Furthermore, the shock-absorbing clamping assembly includes a clamping frame arranged on the regulating bracket, a telescopic frame slidingly matched with the clamping frame is provided on the clamping frame, a limit screw matched with the telescopic frame is provided on the clamping frame, an L-shaped plate is provided on the telescopic frame, a clamping fixing plate is provided on the L-shaped plate, a clamping hydraulic rod is provided on the clamping fixing plate, and a connecting plate is provided at the telescopic plate of the clamping hydraulic rod;

[0013] A shock-absorbing clamping plate is arranged between the two shock-absorbing clamping assemblies, and the two ends of the shock-absorbing clamping plate are respectively fixedly connected to the connecting plate. A shock-absorbing airbag is arranged on one end surface of the shock-absorbing clamping plate facing the glass curtain wall, and an airbag blowing unit cooperating with the shock-absorbing airbag is arranged on the other end surface of the shock-absorbing clamping plate.

[0014] Furthermore, the shock-absorbing holding assembly includes a holding telescopic arm rotatably connected to the shock-absorbing supporting assembly, one end of the holding telescopic arm is provided with a holding telescopic rod rotatably connected to the holding telescopic arm, and one end of the holding telescopic rod is provided with a holding adsorption frame rotatably connected to the holding telescopic rod;

[0015] The holding and adsorption frame is provided with a shock-absorbing holding circular groove, a holding ring is provided in the shock-absorbing holding circular groove, a holding sleeve is coaxially provided on the holding ring, a holding spring is provided between the holding sleeve and the holding ring, a holding rod is provided in the holding sleeve, and a holding suction cup that is adapted to be adsorbed on the glass curtain wall is provided on the holding rod;

[0016] The structure of the shock-absorbing and pulling assembly is consistent with that of the shock-absorbing and pulling assembly.

[0017] Furthermore, a stabilizing telescopic rod is provided between the holding telescopic arm and the holding telescopic rod to strengthen the stabilizing relationship between the holding telescopic arm and the holding telescopic rod, a first plug-in bracket connected to the stabilizing telescopic rod is provided on the holding telescopic arm, and a second plug-in bracket connected to the stabilizing telescopic rod is provided on the holding telescopic rod;

[0018] The pulling telescopic arm is provided with a pulling suction cup unit in contact with the glass curtain wall, and the pulling telescopic rod is provided with a pulling suction cup unit cooperating with the pulling suction cup unit.

[0019] Furthermore, the pulling suction cup unit includes a pulling telescopic rod, a connecting screw connected to the pulling telescopic arm is provided on the pulling telescopic rod, a pulling frame rotatably connected to the pulling telescopic rod is provided at one end of the pulling telescopic rod, a pulling circular groove is provided on the pulling frame, a pulling circular frame is provided in the pulling circular groove, a pulling ring frame is coaxially provided on the pulling circular frame, a pulling spring is provided between the pulling ring frame and the pulling circular frame, a pulling rod is provided in the pulling ring frame, and a pulling suction cup cooperating with the glass curtain wall is provided on the pulling rod.

[0020] Furthermore, the structure of pulling the suction cup unit may adopt the structure of pulling the suction cup unit described above.

[0021] Furthermore, the telescopic control assembly includes a plurality of groups of strip-shaped through-grooves provided on the regulating bracket, and each group of the strip-shaped through-grooves includes two strip-shaped through-grooves symmetrically provided on both sides of the shock-absorbing bracket assembly or the shock-absorbing top support assembly, and each group of the strip-shaped through-grooves is correspondingly provided with a sliding sleeve;

[0022] The regulating bracket is provided with a connecting bracket connected to several of the sliding sleeves, the connecting bracket is provided with a connecting screw connected to the sliding sleeve, the connecting bracket is provided with a linkage block that slides with the regulating bracket, and the regulating bracket is provided with a telescopic hydraulic cylinder that cooperates with the connecting bracket.

[0023] Furthermore, the angle control assembly includes a control slot vertically provided on the support frame, a control sleeve sleeve slidably matched with the support frame is provided on the support frame, a control sliding frame slidably matched with the control slot is provided on the control sleeve, an angle circular frame is provided on one end surface of the control sleeve facing the control bracket, a rotating unit matched with the control bracket is provided on the angle circular frame, and a lifting unit matched with the control sleeve is provided on the support frame;

[0024] The regulating bracket includes a regulating frame, and a rotating shaft cooperating with the rotating unit is provided at both ends of the regulating frame. A sliding support frame cooperating with the angle circular frame is provided at both ends of the regulating frame, and a sliding ring groove is provided on the angle circular frame to slide with the sliding support frame.

[0025] Furthermore, a plurality of stabilizing grooves are provided on the transfer base, and a stabilizing seat that slides with the stabilizing groove is provided in the stabilizing groove. A stabilizing telescopic frame is provided on the stabilizing seat, and one end of the stabilizing telescopic frame is rotatably connected to the regulating bracket. The stabilizing seat is provided with a stabilizing screw connected to the transfer base.

[0026] The present invention provides a comprehensive vibration reduction solution through the coordinated operation of a vibration-absorbing bracket assembly, a vibration-absorbing top support assembly, a vibration-absorbing tie assembly, and a vibration-absorbing pull assembly. These components are designed to effectively absorb and disperse vibration and impact forces generated during transportation, reducing the impact of sudden braking or bumpy road conditions on the glass sheets, thereby ensuring stability and safety during transportation.

[0027] The addition of the angle adjustment assembly in this invention enables the system to precisely adjust the angle between the support frame and the adjustment bracket, accommodating curved, oversized glass panels. This feature is particularly important when encountering curved or non-standard decorative panels. The combination of a rotating motor or gear structure with a lifting screw or capstan structure allows for pre-adjustment of the decorative panel before installation, ensuring accurate positioning and reducing the difficulty and time of on-site installation. It also allows for quick adjustment of the support frame height to accommodate glass panels of varying thicknesses, further enhancing the system's applicability and ease of operation.

[0028] The present invention utilizes a comprehensive, shock-absorbing support network, formed by the coordinated action of a shock-absorbing bracket assembly, a shock-absorbing top support assembly, a shock-absorbing tie assembly, a shock-absorbing pull assembly, and an angle adjustment assembly. This system provides adequate support and protection for decorative panels regardless of their transport conditions, significantly enhancing their adaptability and versatility for oversized decorative panels.

[0029] The combination of the stabilizing grooves and stabilizing bases on the transfer base, along with the use of stabilizing telescopic brackets and stabilizing screws, ensures the stability of the entire transport system under all road conditions. Furthermore, the secure connection between the control frame and the support platform further enhances the overall rigidity of the system, providing a safer transport environment for decorative panels.

[0030] Through precise adjustment of the telescopic control assembly, the present invention can accommodate oversized glass panels of varying sizes, achieving dynamic expansion and contraction of the shock-absorbing bracket assembly and the shock-absorbing top support assembly. The coordination of the telescopic hydraulic cylinder and the linkage block ensures that the decorative panels receive a continuous and timely shock-absorbing effect during transportation, effectively resisting impacts caused by sudden braking, road bumps, and the like, significantly improving the stability and safety of the decorative panels during transportation. The coordinated use of the strip-shaped through-grooves and sliding sleeves, as well as the precise control of the drive telescopic rod, ensure flexible adjustment of the width and length of the glass panels. This design significantly improves the versatility of the system, enabling it to serve glass curtain wall decorative panels of various specifications. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 This is a schematic diagram of the three-dimensional structure of multiple glass curtain walls of the present invention when in use.

[0032] Figure 2 This is a schematic diagram of the three-dimensional structure of a single glass curtain wall of the present invention when in use.

[0033] Figure 3 It is an enlarged schematic diagram of point A of the present invention.

[0034] Figure 4 This is a diagram showing the coordination between the support stand and the shock-absorbing support system of the present invention.

[0035] Figure 5 It is a schematic diagram of the glass curtain wall and the shock-absorbing support system of the present invention from a first perspective.

[0036] Figure 6 It is a schematic diagram of the three-dimensional structure of the shock-absorbing support system of the present invention.

[0037] Figure 7 This is a diagram showing the coordination of the shock-absorbing bracket assembly, the shock-absorbing top support assembly, and the regulating bracket of the present invention.

[0038] Figure 8 It is a front view of the shock-absorbing bracket assembly, the shock-absorbing top support assembly, and the regulating bracket of the present invention.

[0039] Figure 9 It is an AA cross-sectional view of the present invention.

[0040] Figure 10 It is a BB cross-sectional view of the present invention.

[0041] Figure 11 It is a schematic diagram of the glass curtain wall and the shock-absorbing support system of the present invention from a second viewing angle.

[0042] Figure 12 It is an enlarged schematic diagram of point B of the present invention.

[0043] The accompanying drawings are marked as follows: 100, transfer base; 101, stabilizing groove; 102, stabilizing seat; 103, stabilizing telescopic frame; 104, stabilizing screw; 200, support frame; 201, regulating groove; 202, regulating sleeve; 203, regulating sliding frame; 300, regulating bracket; 301, regulating moment frame; 302, rotating shaft; 303, sliding support frame; 304, sliding ring groove; 305, placement cylinder; 306, fastening screw; 307, linkage groove; 308, regulating seat; 400 , shock-absorbing bracket assembly; 401, shock-absorbing cylinder; 402, shock-absorbing circular groove; 403, shock-absorbing bracket; 404, circumferential cylinder; 405, shock-absorbing ring cylinder; 406, circumferential spring; 407, shock-absorbing groove; 408, shock-absorbing rod; 409, suction cup; 410, shock-absorbing ring plate; 411, shock-absorbing spring; 500, shock-absorbing top support assembly; 501, top support cylinder; 502, shock-absorbing top support groove; 503, circumferential ring cylinder; 504, shock-absorbing circumferential cylinder; 505, shock-absorbing spring; 506, top support rod; 507, top Support; 508, shock-absorbing airbag; 600, shock-absorbing clamping assembly; 601, clamping frame; 602, telescopic frame; 603, limit screw; 604, L-shaped plate; 605, shock-absorbing clamping plate; 606, shock-absorbing airbag; 607, airbag blowing unit; 700, shock-absorbing pulling assembly; 701, pulling telescopic arm; 702, pulling telescopic rod; 703, pulling adsorption frame; 704, pulling ring; 705, pulling sleeve; 706, pulling spring; 707, pulling rod; 708, pulling suction cup ;709, stabilize the telescopic rod; 710, the first plug-in rack; 711, the second plug-in rack; 712, pull the suction cup unit; 713, pull the suction cup unit; 800, shock-absorbing and holding assembly; 900, telescopic control assembly; 901, strip through-groove; 902, sliding sleeve; 903, connecting bracket; 904, positioning screw; 905, linkage block; 906, telescopic hydraulic cylinder; 1000, angle control assembly; 1001, angle circular frame; 1002, rotating unit; 1003, lifting unit. DETAILED DESCRIPTION

[0044] See also Figures 1 to 12 As shown, a transport shock-absorbing bracket suitable for transporting glass curtain wall decorative panels includes a transport base 100, on which are disposed several groups of support platforms 200, and each group of support platforms 200 includes two support platforms 200 symmetrically disposed on the transport base 100, and an adjustment bracket 300 is disposed between the two support platforms 200, and an angle adjustment component 1000 that cooperates with the adjustment bracket 300 is disposed on the support platform 200;

[0045] The regulating bracket 300 is provided with several shock-absorbing bracket assemblies 400 that are in contact with the glass curtain wall, and shock-absorbing top support assemblies 500 are provided at both ends of the regulating bracket 300. The shock-absorbing top support assemblies 500 are provided with shock-absorbing clamping assemblies 600 that cooperate with the shock-absorbing top support assemblies 500, and shock-absorbing tie assemblies 700 that cooperate with the glass curtain wall are provided on both sides of the shock-absorbing bracket assembly 400, and shock-absorbing holding assemblies 800 that cooperate with the glass curtain wall are provided on both sides of the shock-absorbing top support assembly 500. The regulating bracket 300 is provided with a telescopic control assembly 900 for controlling the cooperation between the shock-absorbing tie assembly 700 and the shock-absorbing holding assembly 800.

[0046] Specifically, the transfer base 100 serves as the base of the entire system, providing a stable foundation that supports all components above it and is removable for easy transportation of the entire device. The support platform 200 provides a stable support point for the control bracket 300. The angle adjustment assembly 1000 installed on each support platform 200 allows the angle of the glass curtain wall to be adjusted to suit different transportation requirements and installation locations. The control bracket 300 is a key component that directly supports the glass curtain wall. By working with the angle adjustment assembly 1000, its tilt angle can be adjusted to better accommodate glass curtain walls of different shapes and sizes. The angle adjustment assembly 1000 adjusts the angle of the control bracket 300 relative to the support platform 200, ensuring that the glass curtain wall can be placed at the most suitable tilt angle for safe transportation. The shock-absorbing bracket assembly 400 is used to directly contact and support the glass curtain wall, while also providing a cushioning effect to reduce potential damage to the glass caused by vibration during transportation. The shock-absorbing top support assembly 500, located at both ends of the control bracket 300, provides additional support for the glass curtain wall to prevent displacement caused by external impact. The shock-absorbing clamp assembly 600 secures the glass by applying uniform pressure on both sides, while maintaining a certain degree of flexibility to prevent damage caused by hard contact. The shock-absorbing tie assembly 700 and the shock-absorbing pull assembly 800, through a series of structural designs, apply stabilizing force to the glass curtain wall from multiple directions, ensuring that it does not move unnecessarily during transportation. The telescopic control assembly 900 controls the relative position of the shock-absorbing bracket assembly 400 and the shock-absorbing pull assembly 800, allowing them to be flexibly adjusted according to actual needs.

[0047] Furthermore, the shock-absorbing bracket assembly 400 includes a shock-absorbing cylinder 401 disposed on the regulating bracket 300. A shock-absorbing circular groove 402 is formed at one end of the shock-absorbing cylinder 401 facing the glass curtain wall. The shock-absorbing bracket 403 is disposed in the shock-absorbing circular groove 402. A circumferential cylinder 404 is disposed in the shock-absorbing circular groove 402. A shock-absorbing ring cylinder 405 coaxially disposed in the circumferential cylinder 404 and cooperating with the shock-absorbing bracket 403 is disposed. A circumferential spring 406 is disposed between the circumferential cylinder 404 and the shock-absorbing ring cylinder 405.

[0048] The shock-absorbing bracket 403 is provided with a shock-absorbing groove 407 on the side facing the glass curtain wall. The shock-absorbing groove 407 is provided with a shock-absorbing rod 408. The shock-absorbing rod 408 is provided with a suction cup 409 that cooperates with the glass curtain wall. The shock-absorbing rod 408 is provided with a shock-absorbing ring plate 410. The shock-absorbing rod 408 is provided with a shock-absorbing spring 411 that cooperates with the shock-absorbing ring plate 410.

[0049] Furthermore, the shock-absorbing top support assembly 500 includes a top support tube 501 arranged on the regulating bracket 300, and a shock-absorbing top support groove 502 is provided at one end of the top support tube 501 facing the glass curtain wall, and a circumferential ring tube 503 is provided in the shock-absorbing top support groove 502, and a shock-absorbing circumferential tube 504 is coaxially provided on the circumferential ring tube 503, and a plurality of shock-absorbing springs 505 are provided between the shock-absorbing circumferential tube 504 and the circumferential ring tube 503, and the shock-absorbing circumferential tube 504 is provided with a top support rod 506, and a top support seat 507 is provided on the top support rod 506, and a shock-absorbing airbag 508 cooperating with the glass curtain wall is provided on the top support seat 507.

[0050] Furthermore, the shock-absorbing clamping assembly 600 includes a clamping frame 601 provided on the regulating bracket 300, a telescopic frame 602 slidably matched with the clamping frame 601 provided on the clamping frame 601, a limit screw 603 matched with the telescopic frame 602 provided on the clamping frame 601, an L-shaped plate 604 provided on the telescopic frame 602, a clamping fixing plate provided on the L-shaped plate 604, a clamping hydraulic rod provided on the clamping fixing plate, and a connecting plate provided at the telescopic plate of the clamping hydraulic rod;

[0051] A shock-absorbing clamping plate 605 is arranged between the two shock-absorbing clamping assemblies 600, and the two ends of the shock-absorbing clamping plate 605 are respectively fixedly connected to the connecting plate. A shock-absorbing airbag 606 is arranged on one end surface of the shock-absorbing clamping plate 605 facing the glass curtain wall, and an airbag blowing unit 607 cooperating with the shock-absorbing airbag 606 is arranged on the other end surface of the shock-absorbing clamping plate 605.

[0052] Preferably, a guide slot is provided on the L-shaped plate 604 , a guide slider is provided in the guide slot, and a connecting screw connected to the shock-absorbing clamping plate 605 is provided on the guide slider.

[0053] The structure of the airbag blowing unit is basically the same as the existing airbag blowing structure, and will not be elaborated in this article.

[0054] Specifically, during operation, the shock-absorbing bracket assembly 400, as the component that directly contacts the glass sheet, provides initial horizontal support and shock absorption for the glass sheet through its shock-absorbing cylinder 401 and shock-absorbing circular groove 402. The shock-absorbing top support assembly 500, located above the glass sheet, provides top support for the glass sheet through its top support cylinder 501 and shock-absorbing airbag 508, while also absorbing impact forces from above and protecting the glass sheet from damage. The shock-absorbing clamping assembly 600, through its clamping frame 601 and telescopic frame 602, laterally secures the glass sheet to prevent lateral movement during transportation. Working in conjunction with the shock-absorbing tie assembly 700 and the shock-absorbing pull assembly 800, it provides comprehensive fixation and protection.

[0055] Furthermore, the shock-absorbing and pulling assembly 700 includes a pulling and telescopic arm 701 rotatably connected to the shock-absorbing and supporting assembly 500, one end of the pulling and telescopic arm 701 is provided with a pulling and telescopic rod 702 rotatably connected to the pulling and telescopic arm 701, and one end of the pulling and telescopic rod 702 is provided with a pulling and adsorption frame 703 rotatably connected to the pulling and telescopic rod 702;

[0056] The holding and adsorption frame 703 is provided with a shock-absorbing holding circular groove, in which a holding ring 704 is provided, and a holding sleeve 705 is coaxially provided on the holding ring 704. A holding spring 706 is provided between the holding sleeve 705 and the holding ring 704, and a holding rod 707 is provided in the holding sleeve 705. The holding rod 707 is provided with a holding suction cup 708 that is adapted to be adsorbed by the glass curtain wall.

[0057] The structure of the shock-absorbing and pulling assembly 700 is consistent with that of the shock-absorbing and pulling assembly 800 .

[0058] Specifically, the shock-absorbing tie assembly 700 is mainly used to provide a tie force on the side of the glass curtain wall decorative panel to prevent the glass panel from lateral movement or flipping due to vibration or sudden braking during transportation. It usually includes a tie telescopic arm, a tie telescopic rod, a tie adsorption frame, etc. These components work together to provide stable lateral support for the glass panel through a telescopic and adsorption mechanism. The shock-absorbing holding assembly 800 is similar to the shock-absorbing tie assembly 700. The shock-absorbing holding assembly 800 is also responsible for lateral support, but its design may focus more on the strength and stability of the holding to accommodate glass panels of different weights and sizes. It includes a holding telescopic arm 701, a holding telescopic rod 702, a holding adsorption frame 703, etc. The design of these components allows uniform tension to be applied to the glass panel, reducing the risk of damage caused by uneven force. The shock-absorbing tie assembly 700 and the shock-absorbing pull assembly 800 work together, using their respective telescopic arms and rods to adjust to the actual size and shape of the glass sheet, ensuring balanced tension on both sides of the glass sheet. This synergistic effect ensures the stability of the glass sheet throughout transportation, minimizing displacement and vibration even during sharp turns or sudden braking.

[0059] When all of these components work together, they form a three-dimensional shock-absorbing support system. The shock-absorbing bracket assembly 400 and the shock-absorbing top support assembly 500 provide vertical support and shock absorption, while the shock-absorbing tie assembly 700 and the shock-absorbing pull assembly 800 provide horizontal stability. This comprehensive shock-absorbing support structure effectively protects oversized glass curtain wall decorative panels from various external forces during transportation, ensuring their safe and stable arrival at their destination.

[0060] Preferably, a stabilizing telescopic rod 709 is provided between the holding telescopic arm 701 and the holding telescopic rod 702 to strengthen the stable relationship between the holding telescopic arm 701 and the holding telescopic rod 702. The holding telescopic arm 701 is provided with a first plug-in bracket 710 connected to the stabilizing telescopic rod 709, and the holding telescopic rod 702 is provided with a second plug-in bracket 711 connected to the stabilizing telescopic rod 709.

[0061] The holding telescopic arm 701 is provided with a pulling suction cup unit 712 that contacts the glass curtain wall, and the holding telescopic rod 702 is provided with a pulling suction cup unit 713 that cooperates with the pulling suction cup unit 712 .

[0062] Preferably, two structural designs of the pulling suction cup unit 712 are provided, as follows:

[0063] First, the pulling suction cup unit 712 includes a pulling telescopic rod, a connecting rod connected to the pulling telescopic arm 701 is provided on the pulling telescopic rod, a pulling frame rotatably connected to the pulling telescopic rod is provided at one end of the pulling telescopic rod, a pulling circular groove is provided on the pulling frame, a pulling circular frame is provided in the pulling circular groove, a pulling ring frame is coaxially provided on the pulling circular frame, a pulling spring is provided between the pulling ring frame and the pulling circular frame, a pulling rod is provided in the pulling ring frame, and a pulling suction cup 409 cooperating with the glass curtain wall is provided on the pulling rod.

[0064] Secondly, the pulling suction cup unit 712 includes a pulling frame, which has a pulling circular groove, a pulling circular frame disposed in the pulling circular groove, a pulling ring frame coaxially disposed on the pulling circular frame, a plurality of pulling springs disposed between the pulling circular frame and the pulling ring frame, a pulling rod disposed in the pulling ring frame, and a pulling suction cup 409 cooperating with the glass curtain wall disposed on the pulling rod;

[0065] The pulling frame is provided with a guide wheel group, and the pulling frame is provided with a pulling rope that cooperates with the guide wheel group.

[0066] Furthermore, the structure of the pulling suction cup unit 713 may adopt the structure of the pulling suction cup unit 712 .

[0067] Furthermore, the telescopic control assembly 900 includes a plurality of groups of strip-shaped through-grooves 901 provided on the regulating bracket 300, and each group of the strip-shaped through-grooves 901 includes two strip-shaped through-grooves 901 symmetrically provided on both sides of the shock-absorbing bracket assembly 400 or the shock-absorbing top support assembly 500, and each group of the strip-shaped through-grooves 901 is correspondingly provided with a sliding sleeve 902;

[0068] The regulating bracket 300 is provided with a connecting bracket 903 connected to several of the sliding sleeves 902, the connecting bracket 903 is provided with a positioning screw 904 connected to the sliding sleeve 902, the connecting bracket 903 is provided with a linkage block 905 that slides with the regulating bracket 300, and the regulating bracket 300 is provided with a telescopic hydraulic cylinder 906 that cooperates with the connecting bracket 903.

[0069] Specifically, the main function of the telescopic control assembly 900 is to achieve telescopic adjustment of the shock-absorbing and binding assembly 700 and the shock-absorbing and holding assembly 800 to accommodate oversized glass curtain wall decorative panels of different widths and lengths. A strip-shaped through-groove 901 is provided on the control bracket 300 to guide the movement of the sliding sleeve 902 and ensure telescopic stability. The sliding sleeve 902 slides within the strip-shaped through-groove 901 and is connected to the corresponding shock-absorbing and binding or holding assembly via a telescopic hydraulic cylinder 906. The connecting bracket 903 is connected to the sliding sleeve 902 to provide fixation and support, and is connected to the sliding sleeve 902 via a positioning screw 904 to achieve telescopic adjustment. The linkage block 905 slides in conjunction with the connecting bracket 903 to synchronously adjust the sliding sleeves 902 on both sides to ensure balanced binding and holding forces. The telescopic hydraulic cylinder 906 provides telescopic power and controls the movement of the sliding sleeve 902 via a hydraulic system to achieve precise adjustment.

[0070] Furthermore, the angle control assembly 1000 includes a control slot 201 vertically provided on the support frame 200, a control sleeve 202 that slides with the support frame is provided on the support frame 200, a control sliding frame 203 that slides with the control slot 201 is provided on the control sleeve 202, an angle circular frame 1001 is provided on one end surface of the control sleeve 202 facing the control bracket 300, a rotating unit 1002 that cooperates with the control bracket 300 is provided on the angle circular frame 1001, and a lifting unit 1003 that cooperates with the control sleeve 202 is provided on the support frame 200;

[0071] The regulating bracket 300 includes a regulating frame 301, and a rotating shaft 302 cooperating with the rotating unit 1002 is provided at both ends of the regulating frame 301. A sliding support frame 303 cooperating with the angle circular frame 1001 is provided at both ends of the regulating frame 301, and a sliding ring groove 304 is provided on the angle circular frame 1001 to slide with the sliding support frame 303.

[0072] Specifically, the regulating frame 301 is provided with a plurality of placement tubes 305 that cooperate with the shock-absorbing bracket assembly 400 or the shock-absorbing top support assembly 500, and the placement tubes 305 are provided with fastening screws 306 for fastening the shock-absorbing bracket assembly 400 or the shock-absorbing top support assembly 500. The two strip-shaped through grooves 901 of each group are respectively located on both sides of the placement tube 305, and the regulating frame 301 is provided with a linkage groove 307 that slides with the linkage block 905, and the regulating frame 301 is provided with a regulating seat 308 that cooperates with the telescopic hydraulic cylinder 906.

[0073] Furthermore, the transfer base 100 is provided with a plurality of stabilizing grooves 101, and the stabilizing grooves 101 are provided with stabilizing seats 102 that slide with the stabilizing grooves 101, and the stabilizing seats 102 are provided with stabilizing telescopic frames 103, and one end of the stabilizing telescopic frames 103 is rotatably connected to the regulating bracket 300, and the stabilizing seats 102 are provided with stabilizing screws 104 that are connected to the transfer base 100.

[0074] The lifting unit 1003 mentioned above includes a lifting screw rod or a lifting winch structure arranged on the support platform 200, and the rotating unit 1002 mentioned above includes a rotating motor or a rotating gear structure arranged in cooperation with the angle circular frame 1001.

[0075] Specifically, the angle control assembly 1000 is used to adjust the angle between the support frame 200 and the control bracket 300 to adapt to glass curtain wall decorative panels with curvature or different angle requirements. Among them, the control groove 201 is vertically opened on the support frame 200 to guide the sliding of the control sleeve 202. The control sleeve 202 slides in the control groove 201 to adjust the angle as needed. The control sliding frame 203 cooperates with the control sleeve 202 to achieve fine-tuning of the angle. The angle circular frame 1001 is set on the control sleeve 202 and cooperates with the rotating unit 1002 to provide rotation support. The rotating unit 1002 can be a rotating motor or a rotating gear structure, which is used to drive the rotation of the angle circular frame 1001 to achieve precise adjustment of the angle.

[0076] Technical features not described in the present invention can be achieved through or by adopting existing technologies and will not be described in detail here. Of course, the above description is not a limitation of the present invention, and the present invention is not limited to the above examples. Changes, modifications, additions or substitutions made by ordinary technicians in this technical field within the essential scope of the present invention should also fall within the scope of protection of the present invention.

Claims

1. A transport shock-absorbing bracket suitable for transporting glass curtain wall decorative panels, characterized by: The invention comprises a transfer base (100), wherein a plurality of groups of support racks (200) are arranged on the transfer base (100), and each group of the support racks (200) comprises two support racks (200) symmetrically arranged on the transfer base (100), an adjustment bracket (300) is arranged between the two support racks (200), and an angle adjustment component (1000) matched with the adjustment bracket (300) is arranged on the support rack (200); The regulating bracket (300) is provided with a plurality of shock-absorbing bracket assemblies (400) in contact with the glass curtain wall, shock-absorbing top support assemblies (500) are provided at both ends of the regulating bracket (300), shock-absorbing clamping assemblies (600) cooperating with the shock-absorbing top support assemblies (500) are provided on the shock-absorbing top support assemblies (500), and shock-absorbing tie assemblies (700) cooperating with the glass curtain wall are provided on both sides of the shock-absorbing bracket assemblies (400), shock-absorbing holding assemblies (800) cooperating with the glass curtain wall are provided on both sides of the shock-absorbing top support assemblies (500), and a telescopic control assembly (900) for controlling the cooperation between the shock-absorbing tie assemblies (700) and the shock-absorbing holding assemblies (800) is provided on the regulating bracket (300); The shock-absorbing bracket assembly (400) includes a shock-absorbing cylinder (401) arranged on the regulating bracket (300), a shock-absorbing circular groove (402) is provided at one end of the shock-absorbing cylinder (401) facing the glass curtain wall, the shock-absorbing bracket (403) is provided in the shock-absorbing circular groove (402), a circumferential cylinder (404) is provided in the shock-absorbing circular groove (402), a shock-absorbing ring cylinder (405) coaxially arranged in the circumferential cylinder (404) and cooperating with the shock-absorbing bracket (403), and the circumferential cylinder (404) is provided with a plurality of shock-absorbing rings. ) and the shock-absorbing ring tube (405) are provided with a circumferential spring (406); a shock-absorbing groove (407) is provided on the side of the shock-absorbing bracket (403) facing the glass curtain wall, the shock-absorbing groove (407) is provided with a shock-absorbing rod (408), the shock-absorbing rod (408) is provided with a suction cup (409) that cooperates with the glass curtain wall, the shock-absorbing rod (408) is provided with a shock-absorbing ring plate (410), and the shock-absorbing rod (408) is sleeved with a shock-absorbing spring (411) that cooperates with the shock-absorbing ring plate (410); The shock-absorbing top support assembly (500) includes a top support tube (501) arranged on the regulating bracket (300), a shock-absorbing top support groove (502) is provided at one end of the top support tube (501) facing the glass curtain wall, a circumferential ring tube (503) is provided in the shock-absorbing top support groove (502), a shock-absorbing circumferential tube (504) is coaxially provided on the circumferential ring tube (503), a plurality of shock-absorbing springs (505) are provided between the shock-absorbing circumferential tube (504) and the circumferential ring tube (503), a top support rod (506) is provided on the top support rod (506), and a top support seat (507) is provided on the top support seat (507), and a shock-absorbing airbag (508) that cooperates with the glass curtain wall is provided on the top support seat (507); The shock-absorbing clamping assembly (600) includes a clamping frame (601) arranged on the regulating bracket (300), a telescopic frame (602) slidingly matched with the clamping frame (601) is arranged on the clamping frame (601), a limiting screw (603) matched with the telescopic frame (602) is arranged on the clamping frame (601), an L-shaped plate (604) is arranged on the telescopic frame (602), a clamping fixing plate is arranged on the L-shaped plate (604), and a clamping fixing plate is arranged on the clamping fixing plate. A clamping hydraulic rod is provided, and a connecting plate is provided at the telescopic plate of the clamping hydraulic rod; a shock-absorbing clamping plate (605) is provided between the two shock-absorbing clamping assemblies (600), and both ends of the shock-absorbing clamping plate (605) are respectively fixedly connected to the connecting plate; a shock-absorbing airbag (606) is provided on one end surface of the shock-absorbing clamping plate (605) facing the glass curtain wall, and an airbag blowing unit (607) cooperating with the shock-absorbing airbag (606) is provided on the other end surface of the shock-absorbing clamping plate (605).

2. A transport shock-absorbing bracket suitable for transporting glass curtain wall decorative panels according to claim 1, characterized in that: The shock-absorbing and pulling assembly (700) comprises a pulling and telescopic arm (701) rotatably connected to the shock-absorbing and supporting assembly (500); one end of the pulling and telescopic arm (701) is provided with a pulling and telescopic rod (702) rotatably connected to the pulling and telescopic arm (701); and one end of the pulling and telescopic rod (702) is provided with a pulling and adsorption frame (703) rotatably connected to the pulling and telescopic rod (702); The holding and adsorption frame (703) is provided with a shock-absorbing holding circular groove, a holding ring tube (704) is provided in the shock-absorbing holding circular groove, a holding sleeve (705) is coaxially provided on the holding ring tube (704), a holding spring (706) is provided between the holding sleeve (705) and the holding ring tube (704), a holding rod (707) is provided in the holding sleeve (705), and a holding suction cup (708) that cooperates with the glass curtain wall is provided on the holding rod (707); The structure of the shock-absorbing and pulling assembly (700) is consistent with the structure of the shock-absorbing and pulling assembly (800).

3. A transport shock-absorbing bracket suitable for transporting glass curtain wall decorative panels as claimed in claim 2, characterized in that: A stabilizing telescopic rod (709) is provided between the holding telescopic arm (701) and the holding telescopic rod (702) to strengthen the stabilizing relationship between the holding telescopic arm (701) and the holding telescopic rod (702); a first plug-in bracket (710) connected to the stabilizing telescopic rod (709) is provided on the holding telescopic arm (701); and a second plug-in bracket (711) connected to the stabilizing telescopic rod (709) is provided on the holding telescopic rod (702); The holding telescopic arm (701) is provided with a pulling suction cup unit (712) in contact with the glass curtain wall, and the holding telescopic rod (702) is provided with a pulling suction cup unit (713) cooperating with the pulling suction cup unit (712).

4. A transport shock-absorbing bracket suitable for transporting glass curtain wall decorative panels as claimed in claim 3, characterized in that: The pulling suction cup unit (712) includes a pulling telescopic rod, a connecting rod connected to the pulling telescopic arm (701) is provided on the pulling telescopic rod, a pulling frame rotatably connected to the pulling telescopic rod is provided at one end of the pulling telescopic rod, a pulling circular groove is provided on the pulling frame, a pulling circular frame is provided in the pulling circular groove, a pulling ring frame is coaxially provided on the pulling circular frame, a pulling spring is provided between the pulling ring frame and the pulling circular frame, a pulling rod is provided in the pulling ring frame, and a pulling suction cup (409) cooperating with the glass curtain wall is provided on the pulling rod.

5. The transport shock-absorbing bracket suitable for transporting glass curtain wall decorative panels according to claim 1, characterized in that: The telescopic control assembly (900) includes a plurality of groups of strip-shaped through-grooves (901) provided on the regulating bracket (300), and each group of the strip-shaped through-grooves (901) includes two strip-shaped through-grooves (901) symmetrically provided on both sides of the shock-absorbing bracket assembly (400) or the shock-absorbing top support assembly (500), and each group of the strip-shaped through-grooves (901) is correspondingly provided with a sliding sleeve (902); The regulating bracket (300) is provided with a connecting bracket (903) connected to a plurality of the sliding sleeves (902), the connecting bracket (903) is provided with a positioning screw (904) connected to the sliding sleeves (902), the connecting bracket (903) is provided with a linkage block (905) that slides with the regulating bracket (300), and the regulating bracket (300) is provided with a telescopic hydraulic cylinder (906) that cooperates with the connecting bracket (903).

6. The transport shock-absorbing bracket suitable for transporting glass curtain wall decorative panels according to claim 1, characterized in that: The angle control assembly (1000) comprises a control slot (201) vertically provided on the support frame (200); a control sleeve (202) slidingly matched with the support frame is provided on the support frame (200); a control sliding frame (203) slidingly matched with the control slot (201) is provided on the control sleeve (202); an angle circular frame (1001) is provided on one end surface of the control sleeve (202) facing the control bracket (300); a rotating unit (1002) matching with the control bracket (300) is provided on the angle circular frame (1001); and a lifting unit (1003) matching with the control sleeve (202) is provided on the support frame (200); The regulating bracket (300) comprises a regulating frame (301), wherein rotating shafts (302) cooperating with the rotating unit (1002) are provided at both ends of the regulating frame (301), sliding support frames (303) cooperating with the angle frame (1001) are provided at both ends of the regulating frame (301), and a sliding ring groove (304) slidably cooperating with the sliding support frame (303) is provided on the angle frame (1001).

7. The transport shock-absorbing bracket suitable for transporting glass curtain wall decorative panels according to claim 1, characterized in that: The transfer base (100) is provided with a plurality of stabilizing grooves (101), the stabilizing grooves (101) are provided with stabilizing seats (102) that slide with the stabilizing grooves (101), the stabilizing seats (102) are provided with stabilizing telescopic frames (103), one end of the stabilizing telescopic frames (103) is rotatably connected to the regulating bracket (300), and the stabilizing seats (102) are provided with stabilizing screws (104) that are connected to the transfer base (100).

Citation Information

Patent Citations

  • Adjustable building curtain wall anti-falling device

    CN115928920A

  • Glass transportation protection frame

    CN117383078A