Bilateral socket type bridge support

By designing a double-sided plug-in bridge bracket containing multiple adjustment components, the problem of inconvenience in the support plate slippage and height adjustment in the prior art is solved, and the height and length of the pipeline mounting frame are finely adjusted, ensuring the stability and safety of the installation.

CN222868470UActive Publication Date: 2025-05-13SHENZHEN HUIANG ELECTRIC CO LTD
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Patent Information

Application Number
CN202421755749.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2025-05-13
Estimated Expiration
2034-07-23

AI Technical Summary

Technical Problem

The existing double-sided plug-in bridge brackets are likely to cause the support plate to slip and fall off during long-term use, and the height of the support plate cannot be adjusted at a small distance to make its top surface located on the same horizontal plane.

Method used

A double-sided plug-in bridge bracket is designed including a top mount, a fastening assembly, a snap assembly, a transverse adjustment assembly and a vertical adjustment assembly. Through the linkage of these components, the length and height of the pipeline mounting frame can be adjusted to ensure that the pipeline installation position is on the same horizontal plane.

Benefits of technology

The height and length of the pipeline mounting frame are finely adjusted, avoiding the phenomenon of slipping and loosening of the support board. It is suitable for complex installation environments and ensures the stability and safety of installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a bilateral socket type bridge support, which relates to the technical field of mechanical and electrical installation engineering construction and comprises a top installation seat, fastening bolts are fixed on the top installation seat, I-shaped steel is fixedly installed at the bottom of the top installation seat, through sockets are arranged on the I-shaped steel in an array mode, and a pipeline installation frame is installed on one side of the I-shaped steel in a clamping mode. An inclined supporting plate is fixedly installed at the bottom of the pipeline installation frame, the side face of the inclined supporting plate is in an inverted trapezoid shape, and a sliding block is arranged on one side of the inclined supporting plate. Compared with the prior art, through the arrangement of the transverse adjusting assembly and the vertical adjusting assembly, the mounting height can be conveniently adjusted, the pipeline width can be conveniently adapted, so that the pipeline mounting positions are located on the same horizontal plane, the pipeline mounting device is suitable for the complex mounting environment, and through the arrangement of the fastening assembly, the stability of the I-shaped steel can be better; and through the arrangement of the buckle assembly, the interface can be prevented from loosening while convenient installation is realized.
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Description

Technical Field

[0001] The utility model relates to the technical field of electromechanical installation engineering construction, in particular to a double-sided socket-type bridge support. Background Art

[0002] The bridge bracket for pipeline installation refers to a bracket system used to support and fix pipelines, cables, lines and other equipment. This bracket system is usually used in the fields of industry, construction and infrastructure to support and protect pipelines and lines. In the installation of pipelines and lines, the bridge bracket plays an important role to ensure the safety, stability and neatness of pipelines and lines.

[0003] A Chinese patent with publication number CN220605462U discloses a double-sided socket-type bridge support, comprising: a C-shaped steel and a support plate, a plurality of slots are evenly arranged on the side walls of the C-shaped steel, the upper end of the C-shaped steel is connected to a top plate through a mounting plate, a placement plate is fixedly mounted on the upper end of the support plate, and an insert block is fixedly mounted on the inner end side wall; the structure squeezes the insert block into the socket by squeezing the anti-slip pad, and fixes the support plate by friction, but in actual use, long-term use may cause the support plate to slip, causing danger, and the structure can only be adjusted according to the position of the socket. When there is a height difference on the mounting surface that is less than the socket spacing, the height of the support plate cannot be properly adjusted so that the top surface of the support plate is on the same horizontal plane. For this reason, we propose a double-sided socket-type bridge support to solve the problem that the prior art can only adjust the height according to the position of the socket, and cannot adjust the height of the support plate by a smaller distance. Utility Model Content

[0004] The purpose of the utility model is to provide a double-sided socket-type bridge support to solve the problem that the prior art proposed in the above background technology can only adjust the height according to the position of the socket and cannot adjust the height of the support plate to a smaller distance.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a double-sided socket-type bridge support, comprising: a top mounting seat, a fastening bolt is fixed on the top mounting seat, an I-beam is fixedly installed at the bottom of the top mounting seat, a through socket is arranged on the I-beam, a pipeline mounting frame is clamped and installed on one side of the I-beam, a diagonal support plate is fixedly installed at the bottom of the pipeline mounting frame, the side surface of the diagonal support plate is in an inverted trapezoidal shape, and a slider is arranged on one side of the diagonal support plate;

[0006] A fastening assembly, which is fixedly mounted on the bottom of the top mounting seat, and the fastening assembly is used to reinforce the I-beam;

[0007] A buckle assembly is slidably mounted on one side of the pipeline mounting frame, and the buckle assembly is used to lock the pipeline mounting frame onto the I-beam;

[0008] A lateral adjustment assembly is installed inside the pipeline mounting frame, and the lateral adjustment assembly is used to adjust the installable length of the pipeline mounting frame;

[0009] The vertical adjustment component is installed inside the pipeline installation frame, and the vertical adjustment component is used to adjust the height of the pipeline installation frame.

[0010] Preferably, the fastening assembly includes a wedge-shaped seat fixedly installed at the bottom of the top mounting seat, and inclined-stayed bases are fixedly installed on both sides of the top mounting seat. The inclined-stayed bases are in multiple groups and arranged in a rectangular shape. Pull rings are fixedly installed on both sides of the I-beam, and the inclined-stayed bases are fixedly connected to the pull rings through steel wire ropes.

[0011] Preferably, the buckle assembly includes a slide rail slidably mounted on one side of the diagonal support plate, a first mounting plate is fixedly mounted on one side of the slide rail, an upper buckle tooth is fixedly mounted on the top of one side of the first mounting plate, a lower buckle tooth is slidably mounted on the bottom of one side of the first mounting plate, a spring base is fixedly mounted on the inner wall of one side of the first mounting plate, a first slider is fixedly mounted on one side of the lower buckle tooth, and a spring is fixedly mounted between the first slider and the spring base.

[0012] Preferably, the side surfaces of the upper buckle tooth and the lower buckle tooth are both L-shaped, and the upper buckle tooth and the lower buckle tooth are adapted to the insertion holes provided on the I-beam.

[0013] Preferably, the vertical adjustment assembly includes a shaft seat fixedly mounted on the inner wall of the diagonal support plate, a threaded shaft is rotatably mounted on the shaft seat, a first connecting rod is hingedly mounted on the inner wall of the diagonal support plate, a second friction block is hingedly mounted on one end of the first connecting rod, a second connecting rod is hingedly mounted on one side of the second friction block, a first threaded seat is hingedly mounted on one end of the second connecting rod, the first threaded seat is threadedly connected to the threaded shaft, a first friction strip is fixedly mounted on one side of the slide rail, the first friction strip is adaptively arranged to the second friction block, a knob is rotatably mounted on one side of the diagonal support plate, the knob is fixedly connected to the threaded shaft, a limit block is fixedly mounted on one side of the slide rail, and the limit block is located below the first friction strip.

[0014] Preferably, the lateral adjustment assembly includes a third connecting rod hingedly mounted on the inner wall of the diagonal support plate, a third friction block is hingedly mounted on one end of the third connecting rod, a fourth connecting rod is hingedly mounted on the bottom of the third friction block, the fourth connecting rod is hingedly mounted to the inner wall of the diagonal support plate, a fifth connecting rod is hingedly mounted on the other end of the third connecting rod, a knob is threadedly mounted on the middle part of the threaded shaft, the other end of the fifth connecting rod is hingedly mounted to the top of the knob, a baffle is slidably mounted on the top of the pipeline mounting frame, and the baffle is adapted to match the third friction block.

[0015] Preferably, the threaded shaft is provided with two opposite threads and are respectively threadedly connected to the first threaded seat and the knob, one side of the second friction block is provided with a serrated protrusion, and one side of the first friction strip is provided with a serrated protrusion opposite to the second friction block.

[0016] Preferably, a sawtooth-shaped protrusion is provided on the top of the third friction block, and a sawtooth-shaped protrusion opposite to the top of the third friction block is provided on the bottom of the baffle.

[0017] Technical effects and advantages of the utility model:

[0018] 1. The utility model has a reasonable structure. The installable length of the pipeline mounting frame can be adjusted by the transverse adjustment component, and the height of the pipeline mounting frame can be adjusted by the vertical adjustment component to adapt to installation planes of different heights. Through the linkage of the vertical adjustment component and the transverse adjustment component, the transverse and vertical locking can be completed by controlling the forward and reverse rotation of the knob, and the installation height can be easily adjusted to adapt to the pipeline width, so that the pipeline installation position is on the same horizontal plane, which is suitable for complex installation environments;

[0019] 2. In the utility model, the I-beam can be reinforced by the fastening assembly, and the I-beam can be given tension in four directions, so that the stability of the I-beam is better. The buckle assembly is convenient for fixing the pipeline mounting frame on the I-beam, and has a locking effect. Compared with the prior art, it can achieve convenient installation and avoid loosening of the interface during long-term use. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic diagram of the front three-dimensional structure of the utility model;

[0021] Figure 2 This is a schematic diagram of the three-dimensional structure of the inclined-stayed base of the utility model;

[0022] Figure 3 This is a schematic diagram of the planar structure of the lateral adjustment component of the utility model;

[0023] Figure 4 This is a schematic diagram of the three-dimensional structure of the first friction strip of the utility model;

[0024] Figure 5 For this utility model Figure 3 Enlarged view of point A in the middle;

[0025] Figure 6 For this utility model Figure 3 Enlarged view of point B in the middle;

[0026] Figure 7It is a schematic diagram of the three-dimensional structure of the pipeline installation frame of the utility model.

[0027] In the figure: 1. top mounting seat; 2. fastening bolts; 3. I-beam; 4. pipeline mounting frame; 5. wedge-shaped seat; 6. inclined base; 7. pull ring; 8. upper buckle tooth; 9. first mounting plate; 10. slide rail; 11. lower buckle tooth; 12. first slider; 13. spring base; 14. diagonal support plate; 15. first friction strip; 16. limit block; 17. second friction block; 18. first connecting rod; 19. second connecting rod; 20. first threaded seat; 21. shaft seat; 22. threaded shaft; 23. knob; 24. third connecting rod; 25. fourth connecting rod; 26. third friction block; 27. baffle; 28. fifth connecting rod. DETAILED DESCRIPTION

[0028] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0029] like Figures 1 to 7The double-sided socket-type bridge support shown in the figure comprises: a top mounting seat 1, a fastening bolt 2 is fixed on the top mounting seat 1, an I-beam 3 is fixedly installed on the bottom of the top mounting seat 1, an array of through sockets are opened on the I-beam 3, a pipeline mounting frame 4 is clamped and installed on one side of the I-beam 3, a diagonal support plate 14 is fixedly installed on the bottom of the pipeline mounting frame 4, the side of the diagonal support plate 14 is an inverted trapezoid, and a slider is provided on one side of the diagonal support plate 14; a fastening component, which is fixedly installed on the bottom of the top mounting seat 1, and the fastening component is used to reinforce the I-beam 3; a buckle component, which is slidably installed on one side of the pipeline mounting frame 4, and the buckle component is used to lock the pipeline mounting frame 4 on the I-beam 3; a lateral adjustment component, which is installed inside the pipeline mounting frame 4, and the lateral adjustment component is used to adjust the installable length of the pipeline mounting frame 4; a vertical adjustment component, which is installed on the pipeline mounting frame 4 The vertical adjustment component is used to adjust the height of the pipeline mounting frame 4 inside; the top mounting seat 1 is fixed to the mounting surface by the arranged fastening bolts 2, and the I-beam 3 can be reinforced by the arranged fastening component, and the I-beam 3 is given tensioning force in four directions, so that the stability of the I-beam 3 is better. The arranged buckle component is convenient for fixing the pipeline mounting frame 4 on the I-beam 3, and at the same time has a locking effect, which can prevent the pipeline mounting frame 4 from loosening and falling off during long-term use. The arranged lateral adjustment component can be used to adjust the installable length of the pipeline mounting frame 4, and the adaptability is better. The height of the pipeline mounting frame 4 can be adjusted by the arranged vertical adjustment component to adapt to installation planes of different heights. Compared with the prior art, the installation height can be conveniently adjusted so that the pipeline installation position is on the same horizontal plane, which is suitable for complex installation environments.

[0030] like Figure 1 and Figure 2 As shown, the fastening assembly includes a wedge-shaped seat 5 fixedly installed at the bottom of the top mounting seat 1, and inclined bases 6 are fixedly installed on both sides of the top mounting seat 1. The inclined bases 6 are multiple groups and are arranged in a rectangular shape. Pull rings 7 are fixedly installed on both sides of the I-beam 3, and the inclined bases 6 are fixedly connected to the pull rings 7 through steel wire ropes. Through the arranged inclined bases 6 and pull rings 7, lateral pulling force can be provided to the I-beam 3. When a pipeline is installed on the pipeline mounting frame 4, the I-beam 3 will generate a force to tilt to one side, and the steel wire rope fixed on the inclined base 6 can pull the pull ring 7 to share the tilting force on the I-beam 3, which can avoid deformation of the connection between the I-beam 3 and the pipeline mounting frame 4 during long-term use, thereby improving safety.

[0031] like Figure 3 and Figure 4As shown, the buckle assembly includes a slide rail 10 slidably mounted on one side of the diagonal support plate 14, a first mounting plate 9 is fixedly mounted on one side of the slide rail 10, an upper sprocket 8 is fixedly mounted on the top of one side of the first mounting plate 9, a lower sprocket 11 is slidably mounted on the bottom of one side of the first mounting plate 9, the side surfaces of the upper sprocket 8 and the lower sprocket 11 are both L-shaped, and the upper sprocket 8 and the lower sprocket 11 are both adapted to the jacks opened on the I-beam 3, a spring base 13 is fixedly mounted on the inner wall of one side of the first mounting plate 9, a first slider 12 is fixedly mounted on one side of the lower sprocket 11, and the first slider 1 2 and a spring is fixedly installed between the spring base 13; in the actual installation process, it is only necessary to align the upper buckle tooth 8 and the lower buckle tooth 11 with the insertion hole on the I-beam 3 and insert them to complete the installation of the pipeline mounting frame 4, which is more convenient. After insertion, under the action of the spring, the lower buckle tooth 11 is driven to rebound upward. Since the upper buckle tooth 8 and the lower buckle tooth 11 are both set in an L shape, the upper buckle tooth 8 and the lower buckle tooth 11 will clamp the I-beam 3. Compared with the prior art, while achieving convenient installation, it can avoid the loosening of the interface during long-term use.

[0032] like Figure 3 , Figure 4 and Figure 5As shown, the vertical adjustment assembly includes a shaft seat 21 fixedly mounted on the inner wall of the diagonal support plate 14, a threaded shaft 22 is rotatably mounted on the shaft seat 21, a first connecting rod 18 is hingedly mounted on the inner wall of the diagonal support plate 14, a second friction block 17 is hingedly mounted on one end of the first connecting rod 18, a second connecting rod 19 is hingedly mounted on one side of the second friction block 17, a first threaded seat 20 is hingedly mounted on one end of the second connecting rod 19, the first threaded seat 20 is threadedly connected to the threaded shaft 22, and one side of the slide rail 10 A first friction strip 15 is fixedly installed, and the first friction strip 15 is adapted to be arranged with a second friction block 17. A knob 23 is rotatably installed on one side of the diagonal support plate 14, and the knob 23 is fixedly connected with the threaded shaft 22. A limit block 16 is fixedly installed on one side of the slide rail 10, and the limit block 16 is located below the first friction strip 15. Two opposite threads are arranged on the threaded shaft 22 and are respectively threadedly connected with the first threaded seat 20 and the knob 23. A serrated protrusion is arranged on one side of the second friction block 17. , a serrated protrusion opposite to the second friction block 17 is provided on one side of the first friction strip 15; when the knob 23 is rotated, the first threaded seat 20 can be driven to move to one side, and under the action of the first connecting rod 18 and the second connecting rod 19, the second friction block 17 moves obliquely upward and separates from the first friction strip 15. At this time, the height of the pipeline mounting frame 4 can be adjusted. When the knob 23 is rotated in the opposite direction, the first threaded seat 20 is driven to move to the other side, and the second friction block 17 moves obliquely downward and contacts the first friction strip 15. Since the first friction strip 15 and the second friction block 17 are both provided with serrated protrusions, after being pressed together, the pipeline mounting frame 4 is fixed and will not move downward. The limit block 16 provided can prevent the pipeline mounting frame 4 from falling when the first friction strip 15 and the second friction block 17 are separated. Compared with the prior art, the height of the pipeline mounting frame 4 can be adjusted. When encountering different heights of the mounting surface, the level of the pipeline can be kept, which has a wider range of applications and is more convenient to use.

[0033] like Figure 3 and Figure 6As shown, the lateral adjustment assembly includes a third connecting rod 24 hingedly mounted on the inner wall of the diagonal support plate 14, one end of the third connecting rod 24 is hingedly mounted with a third friction block 26, the bottom of the third friction block 26 is hingedly mounted with a fourth connecting rod 25, the fourth connecting rod 25 is hingedly set with the inner wall of the diagonal support plate 14, the other end of the third connecting rod 24 is hingedly mounted with a fifth connecting rod 28, the middle part of the threaded shaft 22 is threadedly mounted with a knob 23, the other end of the fifth connecting rod 28 is hingedly set with the top of the knob 23, a baffle 27 is slidably mounted on the top of the pipeline mounting frame 4, the baffle 27 is adapted to the third friction block 26, the top of the third friction block 26 is provided with a serrated protrusion, and the bottom of the baffle 27 is provided with a serrated protrusion opposite to the top of the third friction block 26; when the knob 23 is rotated forward , the first friction strip 15 is separated from the second friction block 17, and the knob 23 moves to the side opposite to the first threaded seat 20, and drives the third friction block 26 to move obliquely downward, so that the baffle 27 is separated from the third friction block 26. At this time, the position of the baffle 27 can be adjusted. When the knob 23 is rotated in the opposite direction, the knob 23 moves to the side away from the first threaded seat 20, and drives the third friction block 26 to move obliquely upward. At this time, the third friction block 26 is fitted with the baffle 27. Since the third friction block 26 and the baffle 27 are both provided with serrated protrusions, the baffle 27 is fixed and will not move laterally. Compared with the prior art, by linkage with the lateral adjustment component, it is only necessary to control the forward and reverse rotation of the knob 23 to complete the lateral and vertical locking, which is more convenient for installation and use.

[0034] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A double-sided socket-type bridge support, characterized in that: include: A top mounting seat (1), wherein a fastening bolt (2) is fixed on the top mounting seat (1), an I-beam (3) is fixedly mounted on the bottom of the top mounting seat (1), an array of through sockets is provided on the I-beam (3), a pipeline mounting frame (4) is clamped and mounted on one side of the I-beam (3), a diagonal support plate (14) is fixedly mounted on the bottom of the pipeline mounting frame (4), the side surface of the diagonal support plate (14) is in the shape of an inverted trapezoid, and a slider is provided on one side of the diagonal support plate (14); A fastening assembly, which is fixedly mounted on the bottom of the top mounting seat (1), and is used to reinforce the I-beam (3); A buckle assembly, which is slidably mounted on one side of the pipeline mounting frame (4), and the buckle assembly is used to lock the pipeline mounting frame (4) onto the I-beam (3); A transverse adjustment component, which is installed inside the pipeline installation frame (4), and the transverse adjustment component is used to adjust the installable length of the pipeline installation frame (4); A vertical adjustment component is installed inside the pipeline installation frame (4), and the vertical adjustment component is used to adjust the height of the pipeline installation frame (4).

2. A double-sided socket-type bridge support according to claim 1, characterized in that: The fastening assembly comprises a wedge-shaped seat (5) fixedly mounted on the bottom of the top mounting seat (1), and inclined-stayed bases (6) are fixedly mounted on both sides of the top mounting seat (1), and the inclined-stayed bases (6) are multiple groups and arranged in a rectangular shape. Pull rings (7) are fixedly mounted on both sides of the I-beam (3), and the inclined-stayed bases (6) are fixedly connected to the pull rings (7) via steel wire ropes.

3. A double-sided socket-type bridge support according to claim 1, characterized in that: The buckle assembly comprises a slide rail (10) slidably mounted on one side of a diagonal support plate (14); a first mounting plate (9) is fixedly mounted on one side of the slide rail (10); an upper buckle tooth (8) is fixedly mounted on the top of one side of the first mounting plate (9); a lower buckle tooth (11) is slidably mounted on the bottom of one side of the first mounting plate (9); a spring base (13) is fixedly mounted on the inner wall of one side of the first mounting plate (9); a first slider (12) is fixedly mounted on one side of the lower buckle tooth (11); and a spring is fixedly mounted between the first slider (12) and the spring base (13).

4. A double-sided socket-type bridge support according to claim 3, characterized in that: The side surfaces of the upper buckle teeth (8) and the lower buckle teeth (11) are both L-shaped, and the upper buckle teeth (8) and the lower buckle teeth (11) are adapted to the insertion holes provided on the I-beam (3).

5. The double-sided socket-type bridge support according to claim 3, characterized in that: The vertical adjustment assembly comprises a shaft seat (21) fixedly mounted on the inner wall of the diagonal support plate (14), a threaded shaft (22) being rotatably mounted on the shaft seat (21), a first connecting rod (18) being hingedly mounted on the inner wall of the diagonal support plate (14), a second friction block (17) being hingedly mounted on one end of the first connecting rod (18), a second connecting rod (19) being hingedly mounted on one side of the second friction block (17), a first threaded seat (20) being hingedly mounted on one end of the second connecting rod (19), and the first threaded seat (20) being hingedly mounted on one end of the second connecting rod (19). The first threaded seat (20) is threadedly connected to the threaded rotating shaft (22); a first friction strip (15) is fixedly mounted on one side of the slide rail (10); the first friction strip (15) and the second friction block (17) are matched; a knob (23) is rotatably mounted on one side of the diagonal support plate (14); the knob (23) is fixedly connected to the threaded rotating shaft (22); a limit block (16) is fixedly mounted on one side of the slide rail (10); the limit block (16) is located below the first friction strip (15).

6. A double-sided socket-type bridge support according to claim 5, characterized in that: The lateral adjustment assembly comprises a third connecting rod (24) hingedly mounted on the inner wall of the diagonal support plate (14); a third friction block (26) is hingedly mounted on one end of the third connecting rod (24); a fourth connecting rod (25) is hingedly mounted on the bottom of the third friction block (26); the fourth connecting rod (25) is hingedly mounted on the inner wall of the diagonal support plate (14); a fifth connecting rod (28) is hingedly mounted on the other end of the third connecting rod (24); a knob (23) is threadedly mounted on the middle part of the threaded rotating shaft (22); the other end of the fifth connecting rod (28) is hingedly mounted on the top of the knob (23); a baffle (27) is slidably mounted on the top of the pipeline mounting frame (4); the baffle (27) is matched with the third friction block (26).

7. A double-sided socket-type bridge support according to claim 5, characterized in that: The threaded shaft (22) is provided with two opposite threads which are threadedly connected to the first threaded seat (20) and the knob (23) respectively; one side of the second friction block (17) is provided with a serrated protrusion; and one side of the first friction strip (15) is provided with a serrated protrusion opposite to the second friction block (17).

8. The double-sided socket-type bridge support according to claim 6, characterized in that: The top of the third friction block (26) is provided with a sawtooth-shaped protrusion, and the bottom of the baffle (27) is provided with a sawtooth-shaped protrusion opposite to the top of the third friction block (26).

Citation Information

Patent Citations

  • Bilateral socket type bridge support

    CN220605462U