Anti-seismic support suspender locking piece
By designing a shock-resistant bracket boom locking member including a frame, an upper mounting plate, a threaded rod, a positioning ring, an adjustment plate and an anti-slip block, the problem of inconvenience in installation of multiple support rods in the prior art is solved, and the stability and earthquake resistance of the bracket are improved.
Patent Information
- Application Number
- CN202421873761.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-03
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-08-03
AI Technical Summary
The existing shock-resistant bracket boom locking parts are inconvenient to operate when multiple support rods are installed at different angles, and it is difficult to ensure the stability of the bracket.
A shock-resistant bracket boom locking member including a frame, an upper mounting plate, a threaded rod, a positioning ring, an adjustment plate and a non-slip block are designed. Through the zigzag structure of the upper mounting plate and the adjustment plate of the threaded rod, installation adjustments at different angles are achieved, and the combination of pinch bolts and anti-slip blocks ensures the stable and fixed pipes.
This design facilitates the connection operation of multiple support rods in different directions, improves the stability and earthquake resistance of the bracket, and is suitable for installation needs of different lengths and angles.
Smart Images

Figure CN222937359U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bracket suspenders, in particular to an anti-seismic bracket suspender locking piece. Background Technique
[0002] When installing indoor pipelines, the pipelines often need to be suspended at the top of the corridor. The strength requirement for pipeline suspension is firm and reliable. In order to improve the strength of pipeline suspension and seismic resistance, anti-seismic support brackets are required.
[0003] Existing anti-seismic brackets for pipeline fixing usually adopt support rods in multiple directions. Specifically, they include a first support rod extending perpendicular to the axial direction of the pipeline, a second support rod extending obliquely along the axial direction of the pipeline, and a third support rod extending along the radial direction of the pipeline. When installing the suspender, a locking piece is required. For example, a suspender locking piece for an anti-seismic support bracket disclosed in a Chinese patent with the publication number CN213271355U in the prior art includes a channel steel. The channel steel includes a bottom plate and side plates arranged on both sides of the bottom plate. On the side of the side plate away from the bottom plate, flanges are arranged towards the direction of their mutual approach. A pressing plate is arranged on the flange towards the direction of the bottom plate. A suspender for hanging the pipe body is placed inside the channel steel. The suspender is placed closely against the bottom plate. A locking block is slidably installed inside the channel steel. A pressing bolt is penetrated and threadedly installed inside the locking block. A pressing block for pressing the threaded rod is installed in the direction of the pressing bolt close to the bottom plate. The locking block is in a cuboid shape, and transition arc corners are formed at two opposite corners on the side surface of the locking block.
[0004] This locking piece fixes the suspender by placing the suspender into the channel steel. However, in order to ensure the stability of the bracket, generally multiple support rods need to be coordinated. The setting of a single channel steel is not convenient for the installation of multiple support rods at different angles. Therefore, we propose an anti-seismic bracket suspender locking piece to solve the above problems. Content of the Utility Model
[0005] The purpose of the utility model is to provide an anti-seismic bracket suspender locking piece to solve the problems raised in the above background technique.
[0006] To achieve the above purpose, the utility model provides the following technical solution: an anti-seismic bracket suspender locking piece, including a frame body. One end of the frame body is fixedly connected with an upper mounting plate. The other end of the frame body is sleeved with a tightening bolt through a threaded structure. One end of the tightening bolt is rotatably connected with one end of a rotating column. The rotating column is movably arranged inside the frame body. The other end of the rotating column is fixedly connected with an anti-sliding block. A hinge opening is penetrated through the middle of the rotating column. One end of a hinge plate is respectively hinged on both sides of the hinge opening. The other end of the hinge plate is fixedly connected with one side end of a threaded rod. The other side of the threaded rod is slidably arranged inside a movable opening. The movable opening is penetrated through the middle parts of both sides of the frame body;
[0007] On one side of the threaded rod close to the hinge plate, a positioning ring is sleeved through a threaded structure. The positioning ring is movably arranged outside the frame body. On the side of the threaded rod far from the hinge plate, an adjusting plate is rotatably sleeved. One end of the adjusting plate is fixedly connected to the mounting plate.
[0008] Preferably, the upper mounting plate is in a U-shaped structure, and a threaded hole is opened in the middle of the upper mounting plate.
[0009] Preferably, one end of the positioning ring is fixedly connected with a rubber ring, and the other end of the positioning ring is fixedly connected with a hexagon block one.
[0010] Preferably, the adjusting plate is rotatably sleeved with a threaded ring, and one end of the threaded ring is fixedly connected with a hexagon block two. The hexagon block two and the threaded ring are sleeved on the threaded rod through a threaded structure.
[0011] Preferably, a plurality of mounting holes are provided through the mounting plate, and the mounting holes are evenly distributed.
[0012] Preferably, the anti-slip block is made of rubber.
[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows: The support rod of the seismic support is fixedly connected through the mounting plate. The hinge plate is fixedly connected with the threaded rod. The hinged setting of the hinge plate facilitates the adjustment of different installation angles. At the same time, in cooperation with the threaded rod, the hoisted pipeline is further limited. The hoisted pipeline is fixed by the tightening bolt and the anti-slip block, which facilitates the connection operation of multiple support rods in different directions. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is a schematic structural diagram of the present utility model;
[0015] Figure 2 is a schematic plan view of the present utility model.
[0016] In the figure: frame body 1, pipeline 2, upper mounting plate 3, threaded hole 31, movable opening 4, threaded rod 5, positioning ring 6, rubber ring 61, hexagon block one 7, adjusting plate 8, hexagon block two 81, mounting plate 9, mounting hole 91, tightening bolt 10, rotating column 11, hinge interface 111, anti-slip block 12, hinge plate 13. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0017] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0018] Embodiment 1
[0019] Refer to Figure 1 、 2 This is the first embodiment of the present utility model. This embodiment provides an anti-seismic bracket hanger locking member, which includes a frame body 1. One end of the frame body 1 is fixedly connected with an upper mounting plate 3. The other end of the frame body 1 is sleeved with a tightening bolt 10 through a threaded structure. One end of the tightening bolt 10 is rotatably connected with one end of a rotating column 11. The rotating column 11 is movably arranged in the frame body 1. The other end of the rotating column 11 is fixedly connected with an anti-sliding block 12. A hinge interface 111 is provided through the middle of the rotating column 11. One ends of hinge plates 13 are respectively hinged on both sides of the hinge interface 111. The other ends of the hinge plates 13 are fixedly connected with one side end of a threaded rod 5. The other side of the threaded rod 5 is slidably arranged in a movable opening 4. The movable opening 4 runs through the middle parts of both sides of the frame body 1;
[0020] A positioning ring 6 is sleeved on the side of the threaded rod 5 close to the hinge plate 13 through a threaded structure. The positioning ring 6 is movably arranged outside the frame body 1. An adjusting plate 8 is rotatably sleeved on the side of the threaded rod 5 away from the hinge plate 13. One end of the adjusting plate 8 is fixedly connected with a mounting plate 9.
[0021] During installation and use, the pipeline 2 passes through the frame body 1 of the mouth-shaped structure. Then, the tightening bolt 10 is rotated. The tightening bolt 10 cooperates with the rotating column 11 to drive the anti-sliding block 12 to move towards the pipeline 2. The anti-sliding block 12 abuts against the outer wall of the pipeline 2 to limit and fix the pipeline 2. Then, the threaded rod 5 is swung to adjust the mounting plate 9 to a suitable installation angle. At the same time, the outer wall of the threaded rod 5 abuts against the outer wall of the pipeline 2 to further limit the pipeline 2 and prevent the pipeline 2 from shifting. Then, a tool (such as a wrench) is used to rotate the hexagon block 7. The hexagon block 7 drives the positioning ring 6 to rotate. The positioning ring 6 cooperates with the threaded rod 5 through a threaded structure to drive the rubber ring 61 to move towards the outer wall of the frame body 1. After the rubber ring 61 abuts against the outer wall of the frame body 1, the angular position of the threaded rod 5 is fixed. By rotating the hexagon block 81 with a tool and cooperating with the threaded structure of the threaded rod 5, the adjusting plate 8 is driven to move, thereby adjusting the distance between the mounting plate 9 and the anti-seismic bracket support rod, which is convenient for installation at different length positions. The support rod of the anti-seismic bracket is fixedly installed on the mounting plate 9 through bolts. The vertical support rod is fixedly installed on the upper mounting plate 3 through bolts, thereby realizing the overall installation of the anti-seismic bracket.
[0022] Embodiment 2
[0023] Refer to Figure 1-2 This is the second embodiment of the present utility model. This embodiment is based on the previous embodiment. Specifically, the upper mounting plate 3 is of a U-shaped structure. A threaded hole 31 is provided in the middle of the upper mounting plate 3. The bolt cooperates with the threaded rod 31 to fixedly install the vertical support rod of the anti-seismic bracket.
[0024] Specifically, one end of the positioning ring 6 is fixedly connected with a rubber ring 61, and the other end of the positioning ring 6 is fixedly connected with a first hexagonal block 7. By using a tool (such as a wrench) to rotate the first hexagonal block 7, the first hexagonal block 7 drives the positioning ring 6 to rotate. The positioning ring 6 cooperates with the threaded rod 5 through a threaded structure, driving the rubber ring 61 to move towards the outer wall of the frame body 1. After the rubber ring 61 abuts against the outer wall of the frame body 1, the angular position of the threaded rod 5 is fixed. The rubber ring 61 is made of rubber material, increasing the friction force at the contact position.
[0025] Specifically, the adjusting plate 8 is rotatably sleeved with a threaded ring, and one end of the threaded ring is fixedly connected with a second hexagonal block 81. The second hexagonal block 81 and the threaded ring are sleeved on the threaded rod 5 through a threaded structure. By using a tool to rotate the second hexagonal block 81 and cooperating with the threaded structure of the threaded rod 5, the adjusting plate 8 is driven to move, thereby adjusting the distance between the mounting plate 9 and the support rod of the anti-seismic bracket, facilitating the adaptation to different installation lengths.
[0026] Specifically, a plurality of mounting holes 91 are provided through the mounting plate 9, and the mounting holes 91 are evenly distributed. The mounting holes 91 on the mounting plate 9 cooperate with bolts to fixedly install the support rods on both sides of the anti-seismic bracket.
[0027] Specifically, the anti-slip block 12 is made of rubber material. The rubber material has strong anti-slip performance and good elasticity, increasing the friction force between the anti-slip block 12 and the pipeline 2, and at the same time preventing the anti-slip block 12 from damaging the pipeline 2.
[0028] Embodiment 3
[0029] Referring to Figure 1-2 , this is the third embodiment of the present utility model. Based on the above two embodiments, during installation and use, the pipeline 2 passes through the frame body 1 with a square structure. Then, rotate the tightening bolt 10. The tightening bolt 10 cooperates with the rotating column 11 to drive the anti-slip block 12 to move towards the pipeline 2. The anti-slip block 12 abuts against the outer wall of the pipeline 2 to limit and fix the pipeline 2. Then, swing the threaded rod 5 to adjust the mounting plate 9 to a suitable installation angle. At the same time, the outer wall of the threaded rod 5 abuts against the outer wall of the pipeline 2 to further limit the pipeline 2 and prevent it from shifting. Then, use a tool (such as a wrench) to rotate the first hexagonal block 7. The first hexagonal block 7 drives the positioning ring 6 to rotate. The positioning ring 6 cooperates with the threaded rod 5 through a threaded structure, driving the rubber ring 61 to move towards the outer wall of the frame body 1. After the rubber ring 61 abuts against the outer wall of the frame body 1, the angular position of the threaded rod 5 is fixed. By using a tool to rotate the second hexagonal block 81 and cooperating with the threaded structure of the threaded rod 5, the adjusting plate 8 is driven to move, thereby adjusting the distance between the mounting plate 9 and the support rod of the anti-seismic bracket, facilitating the adaptation to different installation lengths. The support rods of the anti-seismic bracket are fixedly installed on the mounting plate 9 with bolts, and the vertical support rods are fixedly installed on the upper mounting plate 3 with bolts, thereby realizing the overall installation of the anti-seismic bracket.
[0030] Although embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A seismic support suspension rod locking member, comprising a frame (1), characterized in that: One end of the frame (1) is fixedly connected to an upper mounting plate (3), the other end of the frame (1) is sleeved with a tightening bolt (10) through a threaded structure, one end of the tightening bolt (10) is rotatably connected to one end of a rotating column (11), the rotating column (11) is movably arranged in the frame (1), the other end of the rotating column (11) is fixedly connected to an anti-sliding block (12), a hinge port (111) is provided through the middle of the rotating column (11), the two sides of the hinge port (111) are respectively hinged to one end of a hinge plate (13), the other end of the hinge plate (13) is fixedly connected to one end of a threaded rod (5), the other side of the threaded rod (5) is slidably arranged in a movable opening (4), and the movable opening (4) is arranged through the middle of both sides of the frame (1); The side of the threaded rod (5) close to the hinge plate (13) is sleeved with a positioning ring (6) through a threaded structure, and the positioning ring (6) is movably arranged outside the frame (1). The side of the threaded rod (5) away from the hinge plate (13) is rotatably sleeved with an adjustment plate (8), and one end of the adjustment plate (8) is fixedly connected to a mounting plate (9).
2. The anti-seismic support hanger rod locking member according to claim 1, characterized in that: The upper mounting plate (3) is a U-shaped structure, and a threaded hole (31) is provided in the middle of the upper mounting plate (3).
3. The anti-seismic support hanger rod locking member according to claim 1, characterized in that: One end of the positioning ring (6) is fixedly connected to a rubber ring (61), and the other end of the positioning ring (6) is fixedly connected to a hexagonal block 1 (7).
4. The anti-seismic support hanger rod locking member according to claim 1, characterized in that: The adjusting plate (8) is rotatably sleeved with a threaded ring and one end of the threaded ring is fixedly connected to a second hexagonal block (81); the second hexagonal block (81) and the threaded ring are sleeved with a threaded rod (5) via a threaded structure.
5. The anti-seismic support hanger rod locking member according to claim 1, characterized in that: The mounting plate (9) is provided with a plurality of mounting holes (91) extending therethrough, and the mounting holes (91) are evenly distributed.
6. The anti-seismic support hanger rod locking member according to claim 1, characterized in that: The anti-sliding block (12) is made of rubber.
Citation Information
Patent Citations
Suspender locking piece for anti-seismic support hanger
CN213271355U