Triangular supporting structure of quick-release type disc buckle frame

The quick-release disc-lock triangular support structure solves the problems of easy loosening and complicated installation of traditional scaffolding, enabling rapid installation and efficient dismantling, thus improving the stability and construction efficiency of the scaffolding.

CN224259823UActive Publication Date: 2026-05-19ANHUI CONSTRUCTION ENGINEERING WANGJIABA CONSTRUCTION INVESTMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI CONSTRUCTION ENGINEERING WANGJIABA CONSTRUCTION INVESTMENT CO LTD
Filing Date
2025-03-14
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Traditional scaffolding is prone to loosening after prolonged use or vibration. Cup-lock scaffolding nodes are limited by space when there are many horizontal bars, and require a lot of tightening operations during construction, which affects stability and efficiency.

Method used

The system adopts a quick-release disc-lock triangular support structure, which is spliced ​​together with connecting rods, support rods and scaffolding in a triangular structure. The quick-release mechanism enables rapid installation and disassembly. The semi-circular support blocks and reinforcing ribs enhance stability, and the use of fixing rods and connecting discs improves connection reliability.

Benefits of technology

It enables rapid installation and dismantling of scaffolding, improves stability and construction efficiency, reduces labor input and operational complexity, and enhances the safety and durability of the overall structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of scaffold installation, and particularly relates to a triangular supporting structure of a quick-release type disc buckle frame, which is used for connecting a scaffold and comprises a main rod body, a connecting rod perpendicular to one side of the main rod body, a supporting rod arranged on the main rod body below the connecting rod, and the connecting rod, the supporting rod and the scaffold are spliced in a triangular structure. A quick release mechanism is arranged at the end of the connecting rod and comprises a connecting block arranged at the end of the connecting rod, a clamping groove used for being connected with a scaffold is formed in the connecting block in the horizontal direction, a fixing penetrating hole is formed in the connecting block in the vertical direction, a fixing rod is inserted into the fixing penetrating hole, and the connecting rod, the supporting rod and the scaffold are spliced in a triangular structure. Quick mounting and dismounting can be carried out through the quick dismounting mechanism, operation is convenient, manufacturing cost is low, construction is convenient, and safety and reliability are achieved.
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Description

Technical Field

[0001] This utility model belongs to the field of scaffolding installation technology, specifically relating to a quick-release disc buckle triangular support structure. Background Technology

[0002] Traditional coupler-type scaffolding relies on tightened couplers for connections. However, after prolonged use or exposure to vibration, these couplers can loosen, leading to a decrease in overall stability. Cup-lock scaffolding joints are susceptible to space constraints when there are many horizontal members, affecting overall stability. Coupler-type scaffolding requires extensive tightening operations during erection, resulting in high labor input and long construction time. Cup-lock scaffolding also has high requirements for the insertion depth of horizontal member joints, making adjustments difficult and impacting construction progress. Utility Model Content

[0003] To address the shortcomings of existing technologies, this utility model provides a quick-release disc-lock scaffold triangular support structure. The connecting rods, support rods, and scaffolding are spliced ​​in a triangular structure, allowing for rapid installation and disassembly via a quick-release mechanism. This solves the problems of cup-lock scaffolding nodes being easily constrained by space limitations when there are many horizontal bars, affecting overall stability; coupler-type scaffolding requiring extensive tightening operations, resulting in high labor input and long construction time; and cup-lock scaffolding having high insertion depth requirements for horizontal bar joints, making adjustment difficult and impacting construction progress.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a quick-release disc buckle triangular support structure for connecting scaffolding, comprising a main pole, a connecting rod disposed on one side perpendicular to the main pole, a support rod disposed on the main pole below the connecting rod, the connecting rod, the support rod and the scaffolding being spliced ​​together in a triangular structure, a quick-release mechanism disposed at the end of the connecting rod, the quick-release mechanism comprising a connecting block disposed at the end of the connecting rod, the connecting block being provided with a snap-fit ​​groove in the horizontal direction for connecting with the scaffolding, and a fixing through hole in the vertical direction, into which a fixing rod is inserted.

[0005] Preferably, the top of the support rod is provided with a semi-circular support block for fitting against the outer wall of the scaffold.

[0006] Preferably, both the main pole and the scaffold are equipped with connecting plates, and the connecting plates have several fixing holes.

[0007] Preferably, a reinforcing rib is provided between the connecting rod and the support rod.

[0008] Preferably, the fixing rod includes a main body, and a crossbar is provided at the end of the main body.

[0009] Preferably, the fixing rod includes a main body, and a ring is provided at the end of the main body.

[0010] Preferably, the bottom of the main body is a tapered structure that gradually tapers.

[0011] Preferably, when the connecting plate is inserted into the snap-fit ​​groove of the connecting block on the connecting rod, the fixing through hole and the fixing hole are connected, and the fixing rod is inserted into the fixing through hole and the fixing hole to fix the connecting rod and the scaffold. At this time, the semi-circular support block on the support rod contacts the outer wall of the scaffold, and the connecting rod, the support rod and the scaffold form a triangular structure.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows: the connecting rod, support rod and scaffold are spliced ​​in a triangular structure, and can be quickly installed and disassembled through a quick-release mechanism. It is easy to operate, has low manufacturing cost, is convenient for construction, and is safe and reliable.

[0013] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description or may be learned by practice of the invention. Attached Figure Description

[0014] Figure 1 A three-dimensional structural diagram of the installation state of a quick-release disc buckle bracket triangular support structure. Figure 1 .

[0015] Figure 2 A three-dimensional structural diagram of the installation state of a quick-release disc buckle bracket triangular support structure. Figure 2 .

[0016] Figure 3 A three-dimensional structural diagram of a quick-release disc buckle frame with triangular support structure. Figure 1 .

[0017] Figure 4 A three-dimensional structural diagram of a quick-release disc buckle frame with triangular support structure. Figure 2 .

[0018] In the diagram: 1. Main pole; 2. Connecting rod; 3. Support rod; 31. Semi-circular support block; 4. Quick release mechanism; 41. Connecting block; 42. Snap-fit ​​groove; 43. Fixing through hole; 5. Fixing rod; 51. Main body; 52. Horizontal bar; 6. Connecting plate; 7. Fixing hole; 8. Reinforcing rib; 9. Scaffolding. Detailed Implementation

[0019] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model. All other embodiments obtained by those skilled in the art without inventive effort are within the scope of protection of this utility model.

[0020] Combination Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, a quick-release disc-lock triangular support structure is used to connect scaffolding 9. It includes a main pole 1, which serves as the supporting foundation for the entire structure, ensuring stability and safety even under heavy loads. A connecting rod 2 is provided perpendicular to one side of the main pole 1. The connecting rod 2 not only serves a connecting function but also enhances the rigidity of the overall structure through its design.

[0021] A support rod 3 is installed on the main pole 1 below the connecting rod 2. The connecting rod 2, support rod 3, and scaffold 9 are spliced ​​in a triangular structure. The support rod 3 is connected to the main pole 1 and the connecting rod 2 by precision welding or bolts, forming a stable triangular structure. This not only conforms to the principles of mechanics and can effectively distribute and resist pressure from all directions, but also makes the installation of the entire support structure on the scaffold 9 more stable and reliable.

[0022] The end of the connecting rod 2 is equipped with a quick-release mechanism 4, which greatly improves the efficiency of scaffolding 9 erection and dismantling. The quick-release mechanism 4 includes a connecting block 41 located at the end of the connecting rod 2. The connecting block 41 has a locking groove 42 in the horizontal direction for connecting with the scaffolding 9. The locking groove 42 is designed in the horizontal direction of the connecting block 41. The shape of the locking groove 42 matches the standard connectors on the scaffolding 9. The initial connection and fixation can be achieved simply by pushing the connectors of the scaffolding 9 into the locking groove 42.

[0023] To further enhance the stability of the connection, the connecting block 41 is provided with a fixing hole 43 in the vertical direction, and a fixing rod 5 is inserted into the fixing hole 43. The diameter and depth of the fixing hole 43 are precisely calculated to ensure that the fixing rod 5 can be tightly accommodated. One end of the fixing rod 5 is designed to be tapered or threaded, so as to easily insert into the fixing hole 43 and lock it tightly, thereby effectively preventing the scaffolding 9 from accidentally loosening or falling off during operation.

[0024] The quick-release mechanism 4 is designed with ease of operation in mind. Through a simple locking and releasing mechanism, operators can quickly insert and remove the fixing rod 5 without the need for complex tools, greatly improving construction efficiency.

[0025] Combination Figure 2 , Figure 3 and Figure 4 As shown, a semi-circular support block 31 for fitting against the outer wall of the scaffold 9 is provided at the top of the support rod 3.

[0026] Specifically, a semi-circular support block 31 is set at the top of the support rod 3 to fit against the outer wall of the scaffold 9, which not only enhances the support capacity of the structure, but also improves the accuracy and stability of the connection.

[0027] The semi-circular support block 31 ensures good physical properties and durability during long-term use. Its semi-circular shape perfectly matches the curvature of the outer wall of the scaffold 9, reducing stress concentration caused by shape mismatch, thereby effectively extending the service life of the support structure and the scaffold 9.

[0028] During the manufacturing process, the connection between the semi-circular support block 31 and the top of the support rod 3, as well as the smoothness and flatness of the surface, not only improves the fit between the support block and the outer wall of the scaffold 9, but also reduces noise and wear caused by friction, making the entire support structure quieter and smoother during operation. This not only improves construction efficiency but also allows the support structure to adapt to scaffolds 9 of different sizes and shapes, enhancing its versatility and practicality.

[0029] Combination Figure 2 , Figure 3 and Figure 4 As shown, both the main pole 1 and the scaffold 9 are equipped with connecting plates 6. As a standardized connecting component, the connecting plate 6 not only simplifies the installation process but also greatly improves the flexibility and adaptability of the structure.

[0030] The connecting plate 6 has several fixing holes 7. These fixing holes 7 are key to the connecting plate 6's connection function. These fixing holes 7 are not only numerous but also evenly distributed, providing installers with multiple connection options, making the connection between the main pole 1 and the scaffold 9 more flexible and adaptable to connection requirements at different angles and directions. The design of the fixing holes 7 also considers ease of installation; by using standard-sized bolts, nuts, and other fasteners, operators can quickly and accurately complete the connection work, greatly improving construction efficiency.

[0031] Combination Figure 2 , Figure 3 and Figure 4 As shown, a reinforcing rib 8 is provided between the connecting rod 2 and the support rod 3.

[0032] Specifically, stiffeners 8 are placed between connecting rod 2 and support rod 3 to further enhance the strength and stiffness of this area. The position, shape, and number of stiffeners 8 may be adjusted according to specific design requirements to achieve optimal structural performance. To ensure the strength and stiffness of this area, stiffeners 8 are placed between connecting rod 2 and support rod 3. Stiffeners 8 not only increase the overall strength of the structure but also improve its resistance to deformation. These stiffeners 8 typically have specific shapes (such as triangles or rectangles) and are precisely calculated and arranged to ensure they can effectively transfer and distribute loads, thereby preventing structural damage under stress. Through this design, connecting rod 2, support rod 3, and stiffeners 8 together constitute a stable and robust structural system.

[0033] Combination Figure 2 , Figure 3 and Figure 4 As shown, the fixing rod 5 includes a main body 51, and a crossbar 52 is provided at the end of the main body 51.

[0034] Specifically, the fixing rod 5 is a key component used to fix or support other parts, comprising a high-strength body 51. The body 51 may be made of metal or other high-strength materials and may have a cylindrical or other shape to meet specific application requirements. At the end of the body 51, a crossbar 52 is provided to increase the stability and support capacity of the fixing rod 5. The crossbar 52 may be a separate component, securely fixed to the body 51 by welding, bolting, or other means. This ensures a stable connection and support between the crossbar 52 and the body 51. The fixing rod 5 demonstrates excellent performance and stability in practical applications.

[0035] Combination Figure 2 , Figure 3 and Figure 4 As shown, the fixing rod 5 includes a main body 51, and a ring is provided at the end of the main body 51.

[0036] Specifically, the fixing rod 5 is a key structural component, comprising a body 51 made of high-strength material. The shape and dimensions of the body 51 are designed according to specific application requirements to ensure it can withstand the required loads and maintain the stability of the overall structure. At the end of the body 51, a ring is provided, which may be used to connect, secure, or guide other components. The diameter, thickness, and material of the ring are selected to meet the required strength and durability requirements. The ring is securely fixed to the body 51 by welding, bolting, or other mechanical means to ensure the reliability and stability of the connection. The fixing rod 5 can perform excellently in a variety of mechanical devices, building structures, or vehicles.

[0037] Combination Figure 1 , Figure 3 and Figure 4 As shown, the bottom of the main body 51 is a tapered structure that gradually tapers.

[0038] Specifically, the bottom of the main body 51 is designed as a gradually tapering conical structure, which is not only aesthetically pleasing but also serves multiple practical functions. The conical structure reduces air or liquid resistance, improving fluid flow efficiency, thus finding wide application in aerospace, automotive manufacturing, and other fields. Simultaneously, the conical structure also acts as a guide or positioning element, ensuring that the main body 51 can be accurately aligned or inserted into a predetermined position. Furthermore, the conical structure increases the strength of the bottom of the main body 51, enabling it to better withstand pressure or impact from below. The degree of tapering, angle, length, and diameter of the bottom of the conical structure are all carefully designed and calculated to ensure they meet specific application requirements. This conical structure is typically an integral part of the main body 51, tightly connected to other parts of the main body 51 through advanced manufacturing processes, forming a stable and reliable overall structure.

[0039] Combination Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, when the connecting plate 6 is inserted into the snap-fit ​​groove 42 of the connecting block 41 on the connecting rod 2, the fixing through hole 43 is connected to the fixing hole 7. The fixing rod 5 is inserted into the fixing through hole 43 and the fixing hole 7 to fix the connecting rod 2 and the scaffold 9. At this time, the semi-circular support block 31 on the support rod 3 is in contact with the outer wall of the scaffold 9, and the connecting rod 2, the support rod 3 and the scaffold 9 form a triangular structure.

[0040] Specifically, when the connecting plate 6 is precisely inserted into the snap-fit ​​groove 42 of the connecting block 41 on the connecting rod 2, a crisp "click" sound is heard, indicating that the two have been firmly connected. At this time, the fixing hole 43 and the fixing hole 7 automatically align and connect, providing a convenient channel for the insertion of the fixing rod 5. The fixing rod 5, as a slender and high-strength rod structure, is tightly inserted into the fixing hole 43 and the fixing hole 7 using specific tools or methods, thereby firmly connecting the connecting rod 2 and the scaffold 9 together. At the same time, the semi-circular support block 31 on the support rod 3 fits tightly against the outer wall of the scaffold 9, providing additional support and stability to the entire structure. Finally, the connecting rod 2, the support rod 3, and the scaffold 9 form a stable triangular structure. This structural form has natural stability and can effectively resist forces and pressures from all directions, making the entire system more robust and durable.

[0041] This invention represents a preferred embodiment of the present invention, but its scope of protection is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this invention, based on the technical solution and inventive concept of this invention, shall be covered within the scope of protection of this invention.

Claims

1. A quick-release disc-lock triangular support structure for connecting scaffolding (9), comprising a main pole (1), a connecting rod (2) provided on one side perpendicular to the main pole (1), a support rod (3) provided on the main pole (1) below the connecting rod (2), the connecting rod (2), the support rod (3) and the scaffolding (9) being spliced ​​in a triangular structure, and a quick-release mechanism (4) provided at the end of the connecting rod (2), characterized in that, The quick-release mechanism (4) includes a connecting block (41) provided at the end of the connecting rod (2). The connecting block (41) is provided with a snap-fit ​​groove (42) for connecting with the scaffold (9) in the horizontal direction. The connecting block (41) is provided with a fixing hole (43) in the vertical direction. A fixing rod (5) is inserted into the fixing hole (43).

2. The quick-release disc buckle frame triangular support structure according to claim 1, characterized in that, The top of the support rod (3) is provided with a semi-circular support block (31) for fitting against the outer wall of the scaffold (9).

3. The quick-release disc buckle frame triangular support structure according to claim 2, characterized in that, Both the main pole (1) and the scaffold (9) are equipped with connecting plates (6), and the connecting plates (6) have several fixing holes (7).

4. The quick-release disc buckle frame triangular support structure according to claim 3, characterized in that, A reinforcing rib (8) is provided between the connecting rod (2) and the support rod (3).

5. The quick-release disc buckle frame triangular support structure according to claim 1, characterized in that, The fixing rod (5) includes a main body (51) and a crossbar (52) is provided at the end of the main body (51).

6. The quick-release disc buckle frame triangular support structure according to claim 1, characterized in that, The fixing rod (5) includes a main body (51), and a ring is provided at the end of the main body (51).

7. A quick-release disc buckle frame triangular support structure according to claim 5 or 6, characterized in that, The bottom of the main body (51) is a tapered structure that gradually tapers.

8. The quick-release disc buckle frame triangular support structure according to claim 3, characterized in that, When the connecting plate (6) is inserted into the snap-fit ​​groove (42) of the connecting block (41) on the connecting rod (2), the fixing through hole (43) is connected to the fixing hole (7), and the fixing rod (5) is inserted into the fixing through hole (43) and the fixing hole (7) to fix the connecting rod (2) and the scaffold (9). At this time, the semi-circular support block (31) on the support rod (3) contacts the outer wall of the scaffold (9), and the connecting rod (2), the support rod (3) and the scaffold (9) form a triangular structure.