Fabricated anti-seismic support
By designing a support platform and a stable connection for the seismic-resistant components, combined with the hinged seat and spring structure of the buffer components, the problem of unstable connection and insufficient buffering during vibration of the seismic-resistant bracket is solved, achieving stable connection and effective buffering, and improving the seismic resistance effect.
Patent Information
- Application Number
- CN202422966284.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-03
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-12-03
AI Technical Summary
Existing seismic bracing is not stable enough during vibration and is prone to breakage. Furthermore, the lack of buffer components makes the pipes susceptible to rupture.
The design employs a support platform, a stable connection between the anti-seismic components and the buffer components. The support blocks and support bars are fixed with screws and nuts, and the stable connection and buffer protection are achieved by the cooperation of the hinge seat and spring.
This achieves stable connection during vibration, reduces the risk of support breakage, improves the seismic resistance and stability of the pipeline, and lowers the probability of pipeline rupture.
Smart Images

Figure CN223549954U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of building technology, specifically relating to a prefabricated seismic bracing system. Background Technology
[0002] In modern engineering construction, it is often necessary to lay pipelines and cable trays. Pipelines are used to transport tap water, fire water, air, and natural gas, while cable trays are used to lay cables, network cables, etc. During the laying process, supports are used to fix and support the pipelines. A search revealed that application number "CN202320349299.6" discloses "a prefabricated seismic support," which describes that "the main support rod, the secondary support rod, and the side support rod provide stable support and fixation for the seismic support, increasing the stress area of the seismic support on the wall, dispersing the stress points of the seismic support during severe vibrations, and improving the seismic resistance effect of the seismic support. When the pipeline shakes violently, the seismic resistance..." The damping springs and rubber bases on the seismic support frame initially weaken and offset the downward and lateral vibration forces of the pipeline, thus reducing the overall stress on the seismic support and improving its seismic resistance. The main support rods, secondary support rods, and side support rods provide stable support and fixation for the seismic support, increasing the stress-bearing area of the seismic support on the wall. Indeed, when the pipeline shakes violently, the damping springs and rubber bases on the seismic support frame initially weaken and offset the downward and lateral vibration forces of the pipeline, thus reducing the overall stress on the seismic support and improving its seismic resistance. However, the above comparison document still has the following problems in actual use:
[0003] In actual use, the connection is not stable enough and it is prone to breakage when vibration occurs. In addition, the lack of buffer components during use makes the pipe prone to cracking.
[0004] Therefore, providing a bracket that can achieve stable connection and has a buffer component is highly practical. Utility Model Content
[0005] The purpose of this utility model is to provide a prefabricated seismic bracing system to solve the above-mentioned technical problems.
[0006] This utility model provides a prefabricated seismic bracing system, including a support platform, a stable connection seismic bracing component, and a buffer component.
[0007] A connecting plate is provided on one side of the support platform;
[0008] The stable connection anti-seismic component includes two support blocks interlaced on the top of the support platform. Support bars are interlaced at both ends of the top of the support platform. A first screw is threadedly connected to the inside of the support platform and the support blocks. A first nut is threadedly connected to one side of the first screw. A second screw is threadedly connected to the bottom of the inside of the support platform and the support bars. A second nut is threadedly connected to one end of the second screw. A fixing rod is provided on the top of each of the two support blocks and the support bars. Limit plates are provided on the outer walls of several fixing rods. A lower pressure plate is movably connected to the inside of several fixing rods. The bottom of the lower pressure plate is movably connected to the limit plate. A third screw is threadedly connected to the lower pressure plate and the four corners of the support platform. A reinforcing plate is provided on the top of three of the fixing rods. A connecting hole is provided inside several reinforcing plates. One side of the connecting plate has the same structure as the other side.
[0009] The buffer assembly includes a support box disposed on the top of the connecting plate. Inside the support box are two auxiliary rods. Two movable blocks are slidably connected to the outer walls of each of the two auxiliary rods. A first hinge seat is disposed on the top of each of the two movable blocks. A connecting rod is hinged to the top of each of the two first hinge seats. A second hinge seat is hinged to the top of each connecting rod. A movable plate is disposed on the top of several second hinge seats. A support seat is disposed on the top of each movable plate. Two limiting posts are slidably connected inside the movable plate. The bottoms of the two limiting posts are fixedly connected to the bottom of the inner wall of the support box. A spring is disposed on one side of each of the movable blocks. One side of each of the springs is fixedly connected to one side of the inner wall of the support box. The interiors of each of the springs are slidably connected to the auxiliary rods.
[0010] In one embodiment of this utility model, a pipe is movably connected to the top of the support base, and a pressure seat is movably connected to the top of the pipe.
[0011] In one embodiment of this utility model, both sides of the support base and the pressure base are provided with fixing plates, and a fourth screw is connected to the internal threads of several fixing plates.
[0012] In one embodiment of this utility model, a reinforcing rod is inserted and connected inside the two fixing rods, a connecting groove is provided in the middle of the reinforcing rod, and limit pins are inserted and connected on both sides of the reinforcing rod.
[0013] In one embodiment of this utility model, several of the fixing rods are all cast from titanium alloy.
[0014] In one embodiment of this utility model, both support platforms are made of chromium casting.
[0015] Compared with the prior art, the beneficial effects of this utility model are:
[0016] 1) The provided support platform allows users to easily remove the two support platforms and connecting plates, hold the fixing rod, insert the support blocks and support strips into the support platforms, and insert the first and second screws into the support platforms, support blocks and support strips, and fix them with the first and second nuts. It should be noted that "the support strips are inserted into the top of both ends, the support blocks are inserted into the top of both sides, and the first and second screws are installed in groups of two support blocks and two support strips." After the fixing rod is installed, the user slides the lower pressure plate into the fixing rod and presses down the limiting plate, and tightens it with the third screw. When installing, the user fixes it to the indoor ceiling through the connecting holes and connecting grooves. In the event of vibration, the combination of the fixing rod and the lower pressure plate can make it more stable, thereby achieving the purpose of stable connection and earthquake resistance.
[0017] 2) The second hinge seat facilitates the use of a stable connection to the anti-vibration component to resist vibrations. After the vibration is absorbed, some of the vibration is transmitted to the connecting plate, which then transmits the force to the support box. The support box, under the force, transmits the force to the moving plate. When the moving plate moves downwards under the force, the second hinge seat and the connecting rod work together to make the first hinge seat drive the moving block to slide on the auxiliary rod, and cause the spring to contract, store energy, and rebound to buffer it. This buffers and protects the structure at the top of the moving plate, thus achieving the purpose of buffering. Attached Figure Description
[0018] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings:
[0019] Figure 1 This is a schematic diagram of the structure of this utility model;
[0020] Figure 2 This is a schematic diagram of the top structure of this utility model;
[0021] Figure 3 This is a schematic diagram of one side of the structure of this utility model.
[0022] In the diagram: 100, support platform; 110, connecting plate; 200, stable connection anti-seismic component; 210, support block; 220, support bar; 230, first screw; 240, first nut; 250, second screw; 260, second nut; 270, fixing rod; 280, limiting plate; 290, lower pressure plate; 2910, third screw; 2920, reinforcing plate; 300, buffer component; 310, support box; 320, auxiliary rod; 330, moving block; 340, first hinge seat; 350, connecting rod; 360, second hinge seat; 370, moving plate; 380, support seat; 390, limiting post; 3910, spring; 400, pipe; 500, pressure seat; 600, fixing plate; 700, fourth screw; 800, reinforcing rod; 900, limiting pin. Detailed Implementation
[0023] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model. Example
[0024] Please see Figure 1-3 A prefabricated seismic bracing system includes a support platform 100, a stable connection seismic bracing component 200, and a buffer component 300.
[0025] Please refer to the details. Figure 1 A connecting plate 110 is provided on one side of the support platform 100.
[0026] Please see Figure 2The stable connection anti-seismic component 200 includes two support blocks 210 interlaced on the top of the support platform 100. Support bars 220 are interlaced at both ends of the top of the support platform 100. A first screw 230 is threaded into the internal parts of the support platform 100 and the support blocks 210. A first nut 240 is threaded into one side of the first screw 230. A second screw 250 is threaded into the bottom of the internal parts of the support platform 100 and the support bars 220. A second nut 260 is threaded into one end of the second screw 250. The two support blocks 210 and the support bars 220... Each of the tops of the 0 is provided with a fixing rod 270, and the outer walls of several fixing rods 270 are provided with limit plates 280. The interior of several fixing rods 270 is movably connected with a lower pressure plate 290. The bottom of the lower pressure plate 290 is movably connected with the limit plate 280. The lower pressure plate 290 and the four corners of the support platform 100 are threaded with third screws 2910. The tops of three fixing rods 270 are provided with reinforcing plates 2920. The interiors of several reinforcing plates 2920 are provided with connecting holes. One side of the connecting plate 110 is provided with the same structure as the other side.
[0027] In one specific embodiment, the provided support platform 100 facilitates the user to remove the two support platforms 100 and the connecting plate 110, and, holding the fixing rod 270, insert the support block 210 and support strip 220 into the support platform 100. The first screw 230 and the second screw 250 are then inserted into the support platform 100, support block 210, and support strip 220, and secured with the first nut 240 and the second nut 260. It should be noted that "the support strip 220 is inserted into the top of both ends, and the support block 210 is inserted into the top of both sides." The first screw 230 and the second screw 250 are installed in groups of two support blocks 210 and two support bars 220. Then the fixing rod 270 is installed. At this time, the user slides the lower pressure plate 290 into the fixing rod 270 and presses down the limiting plate 280. The third screw 2910 is tightened. During installation, the user fixes it to the indoor ceiling through the connecting holes and connecting grooves. When vibration occurs, the combination of the fixing rod 270 and the lower pressure plate 290 can be used to make it more stable, thereby achieving the purpose of stable connection and earthquake resistance.
[0028] Please see Figure 3The buffer assembly 300 includes a support box 310 disposed on the top of the connecting plate 110. The support box 310 contains two auxiliary rods 320. The outer walls of the two auxiliary rods 320 are slidably connected to two moving blocks 330. The tops of the two moving blocks 330 are each provided with a first hinge seat 340. The tops of the two first hinge seats 340 are hinged to a connecting rod 350. The tops of the connecting rod 350 are hinged to a second hinge seat 360. The tops of several second hinge seats 360 are provided with moving plates 370. The tops of the moving plates 370 are provided with support seats 380. The interior of the moving plates 370 contains two limiting posts 390. The bottoms of the two limiting posts 390 are fixedly connected to the bottom of the inner wall of the support box 310. One side of each of the several moving blocks 330 is provided with a spring 3910. One side of each of the several springs 3910 is fixedly connected to one side of the inner wall of the support box 310. The interiors of each of the several springs 3910 are slidably connected to the auxiliary rods 320.
[0029] In one specific embodiment, the second hinge seat 360 facilitates the use of the stable connection anti-vibration component 200 to absorb vibrations. After vibration, some of the vibration is transmitted to the connecting plate 110, which then transmits the force to the support box 310. The support box 310, under pressure, transmits the force to the moving plate 370. When the moving plate 370 moves downward under pressure, the second hinge seat 360 and the connecting rod 350 cooperate to cause the first hinge seat 340 to drive the moving block 330 to slide on the auxiliary rod 320. This causes the spring 3910 to contract, store energy, and rebound to buffer the vibration, thereby providing buffer protection for the structure at the top of the moving plate 370, thus achieving the purpose of buffering.
[0030] Please see Figure 3 The top of the support 380 is movably connected to the pipe 400, and the top of the pipe 400 is movably connected to the pressure seat 500.
[0031] In one specific embodiment, the provided support base 380 facilitates the support of the pipe 400, making the pipe 400 more stable during use, improving its stability, and increasing its probability of not being damaged.
[0032] Please see Figure 3 Both sides of the support base 380 and the pressure base 500 are provided with fixing plates 600, and several fixing plates 600 are internally threaded with fourth screws 700.
[0033] In one specific embodiment, the fourth screw 700 is provided to facilitate the fixing of the fixing plate 600 during use, so that the support base 380 and the seat 500 can wrap around the pipe 400 for support.
[0034] Please see Figure 1The two fixing rods 270 are internally connected to a reinforcing rod 800. The reinforcing rod 800 has a connecting groove in the middle and a limit pin 900 is inserted on both sides of the reinforcing rod 800.
[0035] In one specific embodiment, the limiting pin 900 is provided to conveniently limit the reinforcing rod 800, thereby preventing it from shifting during use and slipping out of one of the two fixing rods 270, which would cause instability.
[0036] Please see Figure 2 Several fixing rods 270 are all cast from titanium alloy.
[0037] In one specific embodiment, the titanium alloy provided allows the use of the fixing rod 270 to take advantage of its sturdy, durable, and lightweight properties, effectively reducing its own weight while providing stable support for other parts.
[0038] Please see Figure 1 Both support platforms 100 are made of chromium metal.
[0039] In one specific embodiment, the presence of chromium metal allows the support platform 100 to be made more stable during use due to its robust and durable properties, thus preventing damage or breakage.
[0040] In use, firstly, the user can easily remove the two support platforms 100 and the connecting plate 110 by using the provided support platform 100. Holding the fixing rod 270, the user inserts the support block 210 and support strip 220 into the support platform 100, and then inserts the first screw 230 and the second screw 250 into the support platform 100, support block 210, and support strip 220, and secures them with the first nut 240 and the second nut 260. It should be noted that "the support strip 220 is inserted at both ends of the top, the support block 210 is inserted at both sides of the top, the first screw 230 and the second screw 250 are installed in groups of two support blocks 210, and then in groups of two support strips 220." After the fixing rod 270 is installed, the user slides the lower pressure plate 290 into the fixing rod 270 and presses down the limiting plate 280, tightening it with the third screw 2910. During installation, the user fixes it to the indoor ceiling through the connecting holes and connecting slots. In the event of vibration, the combination of the fixing rod 270 and the lower pressure plate 290 can be used to make it more stable, thereby achieving the purpose of stable connection and earthquake resistance. Then, through the provided second hinge seat 360, it is convenient to use the stable connection and earthquake resistance component 200 to resist vibration. After the vibration occurs, some of the vibration is transmitted to the connecting plate 110. The connecting plate 110 transmits the force to the support box 310. The support box 310 transmits the force to the moving plate 370. When the moving plate 370 is subjected to force and moves downward, the second hinge seat 360 and the connecting rod 350 cooperate to make the first hinge seat 340 drive the moving block 330 to slide on the auxiliary rod 320. Finally, the spring 3910 contracts to store force and rebounds to buffer it, thereby buffering and protecting the structure at the top of the moving plate 370, thereby achieving the purpose of buffering.
[0041] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A prefabricated seismic bracing system, characterized in that, include: A support platform (100) is provided with a connecting plate (110) on one side; A stable connection seismic-resistant component (200) includes two support blocks (210) interlocked on the top of a support platform (100). Support bars (220) are interlocked at both ends of the top of the support platform (100). A first screw (230) is threaded into the internal parts of the support platform (100) and the support blocks (210). A first nut (240) is threaded onto one side of the first screw (230). A second screw (250) is threaded into the bottom of the internal part of the support bar (220) of the support platform (100). A second nut (260) is threaded onto one end of the second screw (250). The two support blocks (210)... The top of the support bar (220) and the support bar (220) are provided with a fixing rod (270), and the outer wall of the fixing rod (270) is provided with a limiting plate (280). The interior of the fixing rod (270) is movably connected with a lower pressure plate (290). The bottom of the lower pressure plate (290) is movably connected with the limiting plate (280). The lower pressure plate (290) and the four corners of the support platform (100) are threaded with a third screw (2910). The top of the three fixing rods (270) is provided with a reinforcing plate (2920). The interior of the reinforcing plate (2920) is provided with a connecting hole. One side of the connecting plate (110) is provided with the same structure as the other side. A buffer assembly (300) includes a support box (310) disposed on the top of a connecting plate (110). The support box (310) contains two auxiliary rods (320). The outer walls of the two auxiliary rods (320) are slidably connected to two moving blocks (330). The tops of the two moving blocks (330) are each provided with a first hinge seat (340). The tops of the two first hinge seats (340) are hinged to a connecting rod (350). The tops of the connecting rods (350) are hinged to a second hinge seat (360). A plurality of second hinge seats... A movable plate (370) is provided on the top of (360), and a support base (380) is provided on the top of the movable plate (370). Two limiting posts (390) are slidably connected inside the movable plate (370). The bottom of the two limiting posts (390) is fixedly connected to the bottom of the inner wall of the support box (310). A spring (3910) is provided on one side of each of the several movable blocks (330). One side of each of the several springs (3910) is fixedly connected to one side of the inner wall of the support box (310). The interior of each of the several springs (3910) is slidably connected to the auxiliary rod (320).
2. The prefabricated seismic bracing according to claim 1, characterized in that: The top of the support (380) is movably connected to a pipe (400), and the top of the pipe (400) is movably connected to a pressure seat (500).
3. The prefabricated seismic bracing according to claim 2, characterized in that: Both sides of the support base (380) and the pressure base (500) are provided with fixing plates (600), and a number of the fixing plates (600) are internally threaded with fourth screws (700).
4. The prefabricated seismic bracing according to claim 1, characterized in that: Two of the fixing rods (270) are internally connected to a reinforcing rod (800), and a connecting groove is provided in the middle of the reinforcing rod (800). Limiting pins (900) are inserted and connected to both sides of the reinforcing rod (800).
5. A prefabricated seismic bracing system according to claim 4, characterized in that: Several of the aforementioned fixing rods (270) are cast from titanium alloy.
6. The prefabricated seismic bracing according to claim 1, characterized in that: Both of the support platforms (100) are made of chromium.
Citation Information
Patent Citations
Fabricated anti-seismic support
CN219510298U