Fire-fighting pipe clamping tool structure and mounting method thereof
The combined structure of base, rotating shaft, L-shaped adjusting arm and fixing mechanism solves the problem of deformation and failure of fire protection pipelines in high temperature and humidity environment, realizes stable installation and efficient fixing of fire protection pipelines, and improves the convenience and safety of installation.
Patent Information
- Application Number
- CN202511963814.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-24
- Publication Date
- 2026-02-27
AI Technical Summary
Existing fire pipe clamping fixtures are prone to deformation and failure in high temperature or humid environments, material aging, and decreased fixing performance. Moreover, the installation process is time-consuming and requires high technical skills from operators, posing safety hazards.
It adopts a combination structure of base, rotating shaft, L-shaped adjusting arm, V-shaped clamp and fixing mechanism. The base is fixed by expansion bolts, the rotating shaft allows the fire pipe angle to be adjusted, the V-shaped clamp provides initial clamping force, the fixing plate is fixed to the rotating plate by screws, and the shock absorption mechanism is buffered by springs and soft rubber pads to cushion the impact force.
It improves the installation stability and adaptability of fire protection pipelines, reduces installation difficulty and safety risks, enhances the adaptability and convenience of the device in complex environments, and ensures the reliable delivery of fire protection pipelines.
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Figure CN121576468A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of fire pipe technology, specifically to a fire pipe clamping fixture structure and its installation method. Background Technology
[0002] Fire hoses are primarily used to transport the media needed for firefighting, most commonly water. In urban fire protection systems, fire hoses act like blood vessels in the human body, transporting water from water sources to the fire scene. For example, when a fire occurs inside a building, fire hoses deliver water to the fire area through fire hydrants or automatic sprinkler systems to extinguish the fire.
[0003] The anti-pipe clamping fixture structure mainly consists of a clamping body made of metal with sufficient strength and rigidity, a clamping groove or hole matching the outer contour of the fire pipe, and is also equipped with bolts and nuts for fixing it firmly to the wall and ground support structure of the building. Some fixtures will have rubber pads for buffering and protection in the clamping groove to protect the fire pipe and increase stability. Currently, pipes are installed by welding and bolting. These methods are not only time-consuming, but also require high technical skills from the operators. Improper installation can cause safety hazards. Existing solutions use elastic clamps to fix the pipes to the wall, but they are prone to deformation and failure under long-term stress. In high temperature or humid environments, the materials will deteriorate and the clamps will age, resulting in a decrease in fixing performance. Summary of the Invention
[0004] To address the shortcomings of existing technologies, this invention provides a fire pipe clamping fixture structure and its installation method. However, these fixtures are prone to deformation and failure under long-term stress, and in high-temperature or humid environments, the clamps age and their fixing performance decreases due to material return.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a fire pipe clamping fixture structure, comprising a base and a shock-absorbing mechanism. Multiple connecting cylinders are fixedly connected to the bottom perimeter of the base. Multiple expansion bolts are provided around the outer wall of the base, and these expansion bolts are threadedly connected to the connecting cylinders. A rotating shaft is located at the top center of the base. A fire pipe is rotatably connected to the inner wall of the rotating shaft. An L-shaped adjusting arm is fixedly connected to the outer wall of the fire pipe. A sliding groove is provided at the rear right side of the outer wall of the L-shaped adjusting arm. A spring is provided on the left side of the inner wall of the sliding groove. A movable plate is fixedly and slidably connected to the inner wall of the spring. A V-shaped clamp is fixedly connected to the left side of the outer wall of the movable plate. A connecting rod is fixedly connected to the front right side of the outer wall of the L-shaped adjusting arm. Springs are fixedly connected to the front and rear sides of the right end of the inner wall of the connecting rod. Slanted tongues are fixedly connected to the tops of the two springs. A slot is provided at the bottom of the movable plate, and the slot engages with the slanted tongues. A fixing mechanism is provided on the outer wall of the base.
[0006] Preferably, the fixing mechanism includes the fixing plate, the inner wall of the fixing plate is fixedly connected to the outer wall of the base, the outer wall of the fixing plate has grooves on both the front and back, the inner walls of the two grooves are fixedly connected to fixing columns, the outer walls of the two fixing columns are rotatably connected to rotating plates, and the left and right sides of the outer walls of the two rotating plates are threaded with screws.
[0007] Preferably, the shock absorption mechanism includes multiple springs, the tops of which are fixedly connected to the middle of the bottom of the base, and shock-absorbing plates are fixedly connected to the bottom of each spring. Multiple connecting grooves are provided around the bottom of the base, and springs are fixedly connected to the inner walls of each connecting groove. Soft rubber pads are fixedly connected to the bottom of each spring.
[0008] Preferably, the outer right side of the movable plate is provided with a mounting groove, and the inner wall of the mounting groove is fixedly connected with a handle.
[0009] Preferably, a connecting block is fixedly connected to the middle of the bottom end of the oblique tongue, a connecting column is fixedly connected to the right side of the outer wall of the connecting block, a protective sleeve is fixedly connected to the right end of the outer wall of the connecting column, and an anti-slip groove is provided on the outer wall of the protective sleeve.
[0010] Preferably, the outer wall of the movable plate on the left side is fixedly connected to both the front and rear sides with connecting pieces one, and the outer walls of the two connecting pieces one are threaded with screws three, and the outer walls of the two screws three are threaded to the left side of the outer wall of the L-shaped adjusting arm.
[0011] Preferably, each of the two V-shaped clamps has an installation groove II on an adjacent side, and the inner walls of the two installation groove II are fixedly connected with protective cotton I. The outer walls of the two V-shaped clamps have connection groove II at the front and rear ends, and the inner walls of the two connection groove II are fixedly connected with protective cotton II.
[0012] Preferably, a circular groove is provided at the top center of the base, and multiple mounting grooves are provided around the bottom of the rotating shaft. Rotating balls are fixedly connected to the inner walls of the multiple mounting grooves, and the outer walls of the multiple rotating balls are rotatably connected to the inner walls of the circular grooves.
[0013] Preferably, a fixing block is fixedly connected to the bottom of the connecting rod, and connecting pieces two are fixedly connected to the front and rear sides of the outer wall of the fixing block. Screws two are threadedly connected to the outer walls of the two connecting pieces two, and the outer walls of the two screws two are threadedly connected to the top right side of the base. A connecting hole is opened on the left side of the inner wall of the sliding groove one, and the inner wall of the connecting hole is fixedly connected to the spring three. Sliding grooves two are opened on the front and rear sides of the inner wall of the sliding groove one. Sliding blocks are fixedly connected to the front and rear sides of the outer wall of the moving plate, and the inner walls of the two sliding grooves two are slidably connected to the sliding blocks.
[0014] An installation method for a fire pipe clamping fixture structure includes the following steps: S1. The base is a flat steel plate. The connecting cylinders around the bottom of the base are used to install in the corresponding mounting holes on the wall. The base is fixed to the wall by screwing. The top center of the base is provided with a fixed connection to the outer wall. The base is pushed by hand and slid in the right rear end to clamp the base. When pushed to a certain position, the base on the right side engages with the base at the bottom. S2. The outer wall of the fixed plate has grooves on the front and back with fixed columns. The rotating plate is rotatably connected to the fixed columns, allowing the rotating plate to rotate freely within a certain range. This can adapt to the angle difference between the wall and the base in different installation scenarios. When the operator rotates the rotating plate, the angle of the rotating plate can be flexibly adjusted according to the actual situation of the wall to make it fit tightly against the wall, thereby increasing the contact area. The rotating plate is connected to the screws on the left and right sides of the outer wall by tightening the screws to fix the rotating plate tightly to the wall. S3. When the device is subjected to external impact force, the impact force is first transmitted to the base. The multiple springs in the middle of the bottom of the base will undergo elastic deformation due to the force. At the same time, the shock-absorbing plate connected to its bottom end can further disperse and weaken the impact force. The springs around the bottom of the base will also be compressed and deformed due to the impact force. Each of the springs independently buffers and absorbs the impact force, dispersing the impact force to multiple directions, further reducing the vibration impact on the overall device. S3, the protective cotton 2 inside the front and rear connecting grooves of the V-shaped clamp outer wall, the protective cotton 2 can provide additional protection for both ends of the clamped item; S4. The rotating shaft is rotatably connected to the inner wall of the circular groove at the center of the top of the base via a rotating ball fixed in the three mounting slots around its bottom. When an external force is applied to rotate the rotating shaft, the rotating ball rolls within the circular groove. S5. Spring 3 is fixed in the connecting hole on the left side of the inner wall of slide 1, and it interacts with the moving plate. When the moving plate is subjected to an external rightward thrust, spring 3 will be compressed.
[0015] This invention provides a fire pipe clamping fixture structure and its installation method. It has the following beneficial effects: 1. This invention uses expansion bolts to firmly fix the base to the working plane. The anchoring force after expansion effectively prevents the base from shifting, providing a solid foundation for the fire pipeline and ensuring the stability of subsequent installation and use. This makes the delivery of fire extinguishing media more reliable. The rotating shaft gives the fire pipeline the ability to rotate, allowing workers to flexibly adjust the angle as needed, easily adapting to different installation scenarios and layouts, and reducing installation difficulty and safety risks.
[0016] 2. The present invention tightly connects the base with the fixed plate, while the rotating plate can flexibly rotate around the axis by means of the rotating connection between the fixed column and the groove of the fixed plate. It can adapt well to the differences in angle and shape of various wall surfaces. After the angle is adjusted, it can perfectly fit the wall surface, paving the way for subsequent fixing work and greatly improving the adaptability of the device to complex installation environments and the convenience of installation.
[0017] 3. The present invention utilizes the ingenious combination of spring 2 and soft rubber pad in the connecting groove 1 around the bottom of the base. When encountering horizontal or multi-angle impact vibration, spring 2 can generate elastic deformation in multiple directions, effectively absorbing and buffering the impact force. When subjected to horizontal force, it can dissipate the force through compression or stretching, protecting the device structure and internal components. Attached Figure Description
[0018] Figure 1 This is a perspective view of the present invention; Figure 2 This is a front view of the present invention; Figure 3 This is a top view of the present invention; Figure 4 This is a partial structural illustration of the present invention; Figure 5 This is a schematic diagram of the fixing mechanism of the present invention; Figure 6 This is a schematic diagram of the shock absorption mechanism of the present invention; Figure 7 This is a partial structural breakdown diagram of the present invention; Figure 8 This is a partial structural illustration of the present invention.
[0019] The components include: 1. Base; 2. Fixing mechanism; 201. Fixing plate; 202. Groove; 203. Fixing column; 204. Rotating plate; 205. Screw 1; 3. Shock absorption mechanism; 301. Spring 1; 302. Shock absorption plate; 303. Connecting groove 1; 304. Spring 2; 305. Soft rubber pad; 4. Connecting cylinder; 5. Expansion bolt; 6. Rotating shaft; 7. Fire pipe; 8. L-shaped adjusting arm; 9. Slide groove 1; 10. Spring 3; 11. Moving plate; 12. V-shaped clamp; 13. Connecting rod; 14. Spring 4; 15. Slanted tongue; 16. Slot; 17. Mounting slot 1; 18. Handle; 19. Connecting block; 20. Connecting post; 21. Protective sleeve; 22. Anti-slip groove; 23. Connecting piece 1; 24. Mounting slot 2; 25. Protective cotton 1; 26. Connecting slot 2; 27. Protective cotton 2; 28. Circular groove; 29. Mounting slot 3; 30. Rotating ball; 31. Fixing block; 32. Connecting piece 2; 33. Screw 2; 34. Connecting hole; 35. Slide groove 2; 36. Slider; 37. Screw 3. Detailed Implementation
[0020] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0021] Please see the appendix Figure 1 Appendix Figure 4 and attached Figure 6 This invention provides a fire pipe clamping fixture structure, including a base 1 and a shock absorption mechanism 3. Multiple connecting cylinders 4 are fixedly connected to the bottom perimeter of the base 1. Multiple expansion bolts 5 are provided around the outer perimeter of the base 1, and the expansion bolts 5 are threadedly connected to the connecting cylinders 4. A rotating shaft 6 is provided at the top center of the base 1. A fire pipe 7 is rotatably connected to the inner wall of the rotating shaft 6. An L-shaped adjusting arm 8 is fixedly connected to the outer wall of the fire pipe 7. A groove 9 is provided at the rear right side of the outer wall of the L-shaped adjusting arm 8. A spring 3 10 is provided on the left side of the inner wall. A movable plate 11 is fixedly and slidably connected to the inner wall of the spring 3 10. A V-shaped clamp 12 is fixedly connected to the left side of the outer wall of the movable plate 11. A connecting rod 13 is fixedly connected to the front end of the right side of the outer wall of the L-shaped adjusting arm 8. A spring 4 14 is fixedly connected to both the front and rear sides of the right end of the inner wall of the connecting rod 13. A slanted tongue 15 is fixedly connected to the top of each of the two spring 4 14. A slot 16 is opened at the bottom of the movable plate 11. The slot 16 engages with the slanted tongue 15. A fixing mechanism 2 is provided on the outer wall of the base 1. Specifically, by threading multiple expansion bolts 5 to the connecting sleeves 4 around the bottom of the base 1, the base 1 is securely installed on the predetermined working plane. During tightening, the expansion bolts 5 expand outwards, tightly pressing against the surrounding mounting surfaces, providing strong friction and anchoring force. This ensures that the base 1 maintains a stable position under subsequent working loads, vibrations, and impacts, without displacement or shaking. The fire-fighting pipe 7 is placed inside the rotating shaft 6, which allows the fire-fighting pipe 7 to rotate around its axis at a certain angle. This provides flexibility for the installation and adjustment of the fire-fighting pipe 7, enabling it to adapt to different installation directions and layout requirements. Under the action of the spring 10, the moving plate 11 on the L-shaped adjusting arm 8 applies an initial clamping force to the fire-fighting pipe 7 via its left-side V-shaped clamp 12, causing... The V-shaped clamp 12 fits tightly against the outer wall of the fire-fighting pipe 7 to prevent horizontal displacement of the pipe 7 during operation. When further adjustment of the clamping tightness is required, the moving plate 11 is pushed or pulled by external force to overcome the elastic force of the spring 10 and change the pressure between the V-shaped clamp 12 and the fire-fighting pipe 7, thereby achieving precise adaptation to fire-fighting pipes 7 with different pipe diameters or different installation requirements. The spring 14 and the oblique tongue 15 in the connecting rod 13 cooperate with the slot 16 at the bottom of the moving plate 11 to lock the position of the moving plate 11. When the moving plate 11 moves to the appropriate position, the spring 14 pushes the oblique tongue 15 upward to lock it into the slot 16, preventing the moving plate 11 from accidentally moving back under the elastic force of the spring 10, thus ensuring the clamping stability of the V-shaped clamp 12 on the fire-fighting pipe 7.
[0022] Please see the appendix Figure 2 Appendix Figure 5 and attached Figure 6 The fixing mechanism 2 includes a fixing plate 201. The inner wall of the fixing plate 201 is fixedly connected to the outer wall of the base 1. The outer wall of the fixing plate 201 has grooves 202 on both the front and back. The inner walls of the two grooves 202 are fixedly connected to fixing posts 203. The outer walls of the two fixing posts 203 are rotatably connected to rotating plates 204. The left and right sides of the outer walls of the two rotating plates 204 are threaded with screws 205. Specifically, the fixing plate 201 is pre-fixed firmly to the outer wall of the base 1 via its inner wall, providing a stable foundation structure for the entire fixing operation and ensuring the relative position stability of the base 1 and subsequent fixing components. When it is necessary to fix the entire device to the wall or other supporting surface, the operator can rotate the rotating plate 204 according to the actual situation. Since the rotating plate 204 and the fixing column 203 are rotatably connected, the rotating plate 204 can flexibly change its angle within a certain range to adapt to different installation plane angles and shapes, so as to better fit with the supporting surface and improve the stability and reliability of the fixing. After the rotating plate 204 is adjusted to the appropriate position and in close contact with the supporting surface, the final fixing is achieved by tightening the screws 205 on the left and right sides of the outer wall of the rotating plate 204. During the tightening process, the threads of the screws 205 will gradually penetrate into the supporting surface, generating strong friction and biting force, pressing the rotating plate 204 tightly onto the supporting surface, and then the base 1 is firmly fixed to the supporting surface by the fixing plate 201.
[0023] Please see the appendix Figure 6 Appendix Figure 7 and attached Figure 8 The shock absorption mechanism 3 includes multiple springs 301. The top of each spring 301 is fixedly connected to the middle of the bottom of the base 1. The bottom of each spring 301 is fixedly connected to a shock absorption plate 302. Multiple connecting grooves 303 are provided around the bottom of the base 1. Springs 304 are fixedly connected to the inner wall of each connecting groove 303. Soft rubber pads 305 are fixedly connected to the bottom of each spring 304. Specifically, when the device is subjected to a vertical impact, the impact force is first transmitted to the base 1. Multiple springs 301 at the bottom center of the base 1 then begin to function, absorbing the impact force and converting it into stored elastic potential energy, thereby reducing the impact force transmitted to the main body of the device. Simultaneously, the damping plate 302 connected to the bottom of the springs 301 also disperses the impact force. Springs 304 within the connecting grooves 303 around the bottom of the base 1 also deform under impact. Due to the design of the connecting grooves 303, the springs 304 can buffer the impact force in multiple directions, including horizontally and at certain angles. The elastic deformation of these springs 304 absorbs the impact force from all directions around the device. This converts the energy into elastic potential energy. The soft rubber pad 305 at the bottom of spring 2 304 has two important functions: first, the soft rubber pad 305 itself has a certain elasticity, which can help spring 2 304 further absorb the impact force; second, the soft rubber pad 305 can increase the friction with the support surface. When the device is vibrated and tends to move in the horizontal direction, the friction between the soft rubber pad 305 and the support surface can prevent the device from moving. At the same time, the soft rubber pad 305 can also isolate the small vibrations transmitted from the ground or support surface to a certain extent, thereby improving the stability of the device. Through the synergistic effect of spring 1 301, spring 2 304 and soft rubber pad 305, the vibration and impact on the device in various directions can be effectively reduced, protecting the device and its internal structure from damage.
[0024] Please see the appendix Figure 1 Appendix Figure 2 and attached Figure 3 The outer wall of the movable plate 11 has a mounting groove 17 on the right side, and the inner wall of the mounting groove 17 is fixedly connected to a handle 18; the bottom center of the tongue 15 is fixedly connected to a connecting block 19, the outer wall of the connecting block 19 is fixedly connected to a connecting post 20, the outer wall of the connecting post 20 is fixedly connected to a protective sleeve 21, and the outer wall of the protective sleeve 21 is provided with an anti-slip groove 22; the outer wall of the left movable plate 11 is fixedly connected to both the front and rear sides of the outer wall, and the outer walls of the two connecting pieces 23 are threaded with screws 37, and the outer walls of the two screws 37 are threaded to the left side of the outer wall of the L-shaped adjusting arm 8. Specifically, by gripping the handle 18, the operator can more easily and precisely apply external force to overcome the spring force or other resistance, allowing the moving plate 11 to slide left and right within the groove. The handle 18 is ergonomically designed, providing a comfortable and easy-to-apply force point, improving the convenience and efficiency of operation. It ensures that the position of the moving plate 11 can be quickly and accurately adjusted during installation and maintenance to adapt to fire pipes of different diameters or meet other installation requirements. The structural design of the connecting block 19 at the bottom center of the inclined tongue 15, as well as the connecting post 20 and the protective sleeve 21, serves multiple functions. The connecting block 19 securely connects the inclined tongue 15 to the connecting post 20. When the inclined tongue 15 is engaged upwards by the action of the spring 14, the moving plate 11... When the slot 16 at the bottom of the plate 11 is engaged, the connecting post 20 plays a guiding and supporting role, ensuring that the tongue 15 can be accurately and stably engaged in the slot 16, thereby locking the position of the moving plate 11. The connecting piece 23 on the front and rear sides of the outer wall of the left moving plate 11 and the screw 37 with threaded connection are the key structures for fixing the moving plate 11 to the L-shaped adjusting arm 8. After the device is installed and the position of the moving plate 11 is adjusted, by tightening the screw 37, the connecting piece 23 will be pressed tightly against the outer wall of the L-shaped adjusting arm 8. The friction and pressure between the threads will firmly fix the moving plate 11 to the L-shaped adjusting arm 8, preventing it from being displaced or loosened due to vibration, collision or other external forces during the operation of the device.
[0025] Please see the appendix Figure 3 Appendix Figure 7 and attached Figure 8 Each of the two V-shaped clamps 12 has a mounting groove 24 on one adjacent side, and a protective cotton 25 is fixedly connected to the inner wall of each mounting groove 24. Each of the two V-shaped clamps 12 has a connecting groove 26 at both the front and rear ends of its outer wall, and a protective cotton 27 is fixedly connected to the inner wall of each connecting groove 26. A circular groove 28 is formed at the center of the top of the base 1. Multiple mounting grooves 29 are formed around the bottom of the rotating shaft 6, and rotating balls 30 are fixedly connected to the inner walls of each mounting groove 29. The outer walls of the rotating balls 30 are rotatably connected to the inner walls of the circular grooves 28. The connecting rod... A fixing block 31 is fixedly connected to the bottom of 13. Connecting pieces 2 32 are fixedly connected to the front and rear sides of the outer wall of the fixing block 31. Screws 2 33 are threadedly connected to the outer walls of the two connecting pieces 2 32. The outer walls of the two screws 2 33 are threadedly connected to the top right side of the base 1. A connecting hole 34 is opened on the left side of the inner wall of the slide groove 1 9. The inner wall of the connecting hole 34 is fixedly connected to the spring 3 10. Slide grooves 2 35 are opened on the front and rear sides of the inner wall of the slide groove 1 9. Slider 36 is fixedly connected to the front and rear sides of the outer wall of the movable plate 11. The inner walls of the two slide grooves 2 35 are slidably connected to the slider 36. Specifically, when the fire-fighting pipe 7 is placed between the two V-shaped clamps 12, the protective cotton 25 inside the second installation groove 24 is in direct contact with the outer wall of the pipe. The protective cotton 25 is soft and has a certain degree of elasticity, which increases the friction between the pipe and the pipe, preventing the pipe from easily sliding or rotating inside the clamp and ensuring the stability of the clamp. It also avoids scratching and abrasion damage to the pipe surface during the clamping process, protecting the integrity and appearance of the pipe. At the same time, the protective cotton 27 inside the second connection groove 26 is located at the front and rear ends of the outer wall of the V-shaped clamp 12. When the device is subjected to external collisions or vibrations, the protective cotton 27 buffers the impact forces from these directions, preventing the pipe ends from deforming or being damaged due to collisions, and providing all-round protection for the pipe. To ensure that the fire-fighting pipe 7 can be safely fixed and protected under various working conditions, the rotating ball 30 in the mounting groove 29 at the bottom of the rotating shaft 6 is rotatably connected to the inner wall of the circular groove 28 at the top center of the base 1. The fixing block 31 at the bottom of the connecting rod 13 is threadedly connected to the top right side of the base 1 through the connecting piece 2 32 and the screw 2 33. During installation, tightening the screw 2 33 will press the connecting piece 2 32 tightly onto the base 1, firmly fixing the fixing block 31, thereby providing stable support for the connecting rod 13 and related structures. The slider 36 on the front and rear sides of the outer wall of the moving plate 11 cooperates with the sliding groove 2 35 on the front and rear sides of the inner wall of the sliding groove 1 9, so that the moving plate 11 can only slide in a straight line along the direction of the sliding groove 1 9.
[0026] An installation method for a fire pipe clamping fixture structure includes the following steps: S1, the base 1 is a flat steel plate. The connecting cylinders 4 around the bottom of the base 1 are used to install in the corresponding mounting holes on the wall. By twisting 5, the base 1 is fixed to the wall. The top center of the base 1 is provided with 7. The outer wall of 7 is fixedly connected with 8. By holding 18, push 11 to slide in the rear end 9 on the right side of 8, so that 12 and 7 are clamped. When 11 is pushed to a certain position, 15 on the right side of 13 and 16 at the bottom of 11 are engaged. S2. The grooves 202 on the front and back of the outer wall of the fixed plate 201 are fixed with fixed columns 203. The rotating plate 204 is rotatably connected to the fixed columns 203, so that the rotating plate 204 can rotate freely within a certain range. It can adapt to the angle difference between the wall and the base 1 under different installation scenarios. When the operator rotates the rotating plate 204, the angle of the rotating plate can be flexibly adjusted according to the actual situation of the wall so that it can fit tightly with the wall, thereby increasing the contact area. The screws 205 threaded on the left and right sides of the outer wall of the rotating plate 204 are tightened to fix the rotating plate tightly to the wall. S3. When the device is subjected to external impact force, the impact force is first transmitted to the base 1. Multiple springs 301 in the middle of the bottom of the base 1 will undergo elastic deformation due to the force. At the same time, the shock-absorbing plate 302 connected to its bottom end can further disperse and weaken the impact force. The springs 304 around the bottom of the base 1 will also be compressed and deformed due to the impact force. Each spring 304 independently buffers and absorbs the impact force, dispersing the impact force to multiple directions, further reducing the vibration impact on the overall device. S3, the protective cotton 27 inside the front and rear connecting groove 26 on the outer wall of the V-shaped clamp, the protective cotton 27 can provide additional protection for both ends of the clamped item; S4. The rotating shaft 6 is rotatably connected to the inner wall of the circular groove 28 at the center of the top of the base 1 via a rotating ball 30 fixed in the mounting groove 29 around its bottom. When an external force is applied to rotate the rotating shaft 6, the rotating ball 30 rolls within the circular groove 28. S5. Spring 310 is fixed in the connecting hole 34 on the left side of the inner wall of slide 9, and it interacts with the moving plate 11. When the moving plate 11 is subjected to an external rightward pushing force, spring 310 will be compressed.
[0027] Working principle: The base 1 is fixed to the working plane by connecting the connecting cylinders 4 around the bottom and the expansion bolts 5 through threads. During installation, the expansion bolts 5 expand after being drilled into the mounting surface, thus tightly locking into the mounting surface and providing strong anchoring force to ensure the stability of the base 1 and prevent displacement. The fire pipe 7 is placed at the top center of the base 1 through its outer wall and the inner wall of the rotating shaft 6. The rotating shaft 6 allows the fire pipe 7 to rotate around the shaft, facilitating the adjustment of the angle of the fire pipe 7. The L-shaped adjusting arm 8 fixedly connected to the fire pipe 7 rotates with the rotation of the fire pipe 7. The L-shaped adjusting arm 8 is mainly used for auxiliary fixing and position adjustment of the fire pipe 7. At the rear right side of the outer wall of the L-shaped adjusting arm 8, the spring 10 in the slide groove 9 applies elastic force to the moving plate 11. Under the action of the spring 10, the V-shaped clamp 12 on the left side of the outer wall of the moving plate 11 generates an initial clamping force on the fire pipe 7. The fire pipe 7 is initially fixed between the V-shaped clamp 12 and the L-shaped adjusting arm 8. When it is necessary to adjust the clamping force of the V-shaped clamp 12 on the fire pipe 7, the moving plate 11 is pushed by external force. The moving plate 11 slides in the slide groove 9. The sliding process is achieved by the cooperation of the slider 36 on the front and rear sides of the outer wall of the moving plate 11 and the slide groove 35 on the front and rear sides of the inner wall of the slide groove 9, which changes the distance between the V-shaped clamp 12 and the fire pipe 7, thereby adapting to fire pipes 7 of different diameters. When the moving plate 11 moves to the appropriate position, the spring 14 in the connecting rod 13 on the right side of the outer wall of the L-shaped adjusting arm 8 pushes the tongue 15 upward, so that it is locked into the slot 16 at the bottom of the moving plate 11, preventing the moving plate 11 from returning to its original position under the elastic force of the spring 3 10, and ensuring that the clamping state of the V-shaped clamp 12 on the fire pipe 7 is stable. When it is necessary to adjust the position of the V-shaped clamp 12 again, the tongue 15 is pressed down to disengage it from the slot 16, and then the moving plate 11 is moved. Meanwhile, the inner wall of the fixing plate 201 is fixedly connected to the outer wall of the base 1, so that the fixing mechanism 2 is tightly connected to the base 1. When the entire device needs to be installed on the wall, since the rotating plate 204 is rotatably connected to the groove 202 on the fixing plate 201 through the fixing post 203, the rotating plate 204 can rotate around the fixing post 203, so that the rotating plate 204 can adapt to the angle and shape of different installation planes. By adjusting the angle of the rotating plate 204, the rotating plate 204 can be made to fit against the wall, creating good conditions for subsequent fixing operations. After the rotating plate 204 is adjusted to a suitable angle and fits tightly against the installation plane, the screws 205 on the left and right sides of the outer wall of the rotating plate 204 are tightened to achieve the desired result. When screw 205 is tightened, the threaded part of screw 205 gradually drills into the mounting surface, such as the wall. Due to the characteristics of the thread, a large frictional force is generated between screw 205 and the wall. Since screw 205 is tightened simultaneously from both sides of rotating plate 204, rotating plate 204 is evenly pressed against the wall. This uniform pressure is transmitted through rotating plate 204 to fixing plate 201, and then to base 1, thereby firmly fixing the entire device to the wall. The action of multiple screws 205 effectively disperses the external force on the device, preventing the device from loosening or being damaged due to excessive local force during use, and ensuring the stability and reliability of the device after installation. Furthermore, when the device is subjected to horizontal or other multi-angle impacts and vibrations through the connecting grooves 303 around the bottom of the base 1, the springs 304 can undergo elastic deformation in multiple directions, including the horizontal direction and a certain angle of inclination, due to the presence of the connecting grooves 303. When the device is subjected to a horizontal force, the springs 304 will be compressed or stretched in the horizontal direction, thereby absorbing and buffering the horizontal impact force. Moreover, the soft rubber pad 305 at the bottom of the springs 304 also has a certain degree of elasticity, which can assist the springs 304 in absorbing the impact force. The soft rubber pad 305 also has an important function: it can increase the friction with the support surface. When the device is vibrated and tends to move in the horizontal direction, the friction between the soft rubber pad 305 and the support surface can prevent the device from shifting. At the same time, the soft rubber pad 305 can isolate the small vibrations transmitted from the ground or support surface to a certain extent, thereby improving the stability of the device and enabling the device to receive effective shock absorption protection when subjected to vibrations and impacts in various directions.
[0028] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A fire-fighting pipe clamping fixture structure comprising a base (1) and a damping mechanism (3), characterized in that, The bottom of the base (1) is fixedly connected with a plurality of connecting barrels (4), the outer wall of the base (1) is provided with a plurality of expansion bolts (5), the expansion bolts (5) are threadedly connected with the connecting barrels (4), the top of the base (1) is provided with a rotating shaft (6), the inner wall of the rotating shaft (6) is rotatably connected with a fire pipe (7), the outer wall of the fire pipe (7) is fixedly connected with an L-shaped adjusting arm (8), the outer wall of the L-shaped adjusting arm (8) is provided with a sliding groove (9) at the right side of the rear end, the inner wall of the sliding groove (9) is provided with a spring (10) at the left side, the inner wall of the spring (10) is fixedly and slidably connected with a moving plate (11), the outer wall of the moving plate (11) is fixedly connected with a V-shaped clamping plate (12) at the left side, the outer wall of the L-shaped adjusting arm (8) is fixedly connected with a connecting rod (13) at the right side of the front end, the inner wall of the connecting rod (13) is fixedly connected with a spring (14) at the right end of the front and back sides, the top of the two springs (14) is fixedly connected with a bevel tongue (15), the bottom of the moving plate (11) is provided with a clamping groove (16), the clamping groove (16) is clamped with the bevel tongue (15), and the outer wall of the base (1) is provided with a fixing mechanism (2).
2. The fire hose clamping tool structure according to claim 1, wherein, The fixing mechanism (2) comprises a fixing plate (201), the inner wall of the fixing plate (201) is fixedly connected to the outer wall of the base (1), the outer wall of the fixing plate (201) is provided with a groove (202) at the front and back, the inner wall of the two grooves (202) is fixedly connected with a fixed column (203), the outer wall of the two fixed columns (203) is rotatably connected with a rotating plate (204), and the outer wall of the two rotating plates (204) is threadedly connected with a screw (205) at the left and right sides.
3. The fire hose clamping tool structure of claim 1, wherein, The damping mechanism (3) comprises a plurality of springs (301), the top of the plurality of springs (301) is fixedly connected to the middle of the bottom of the base (1), the bottom of the plurality of springs (301) is fixedly connected with a damping plate (302), the bottom of the base (1) is provided with a plurality of connecting grooves (303) at the four corners, the inner wall of the plurality of connecting grooves (303) is fixedly connected with a spring (304), and the bottom of the plurality of springs (304) is fixedly connected with a soft rubber pad (305).
4. The fire hose clamping tool structure of claim 1, wherein, The outer wall of the moving plate (11) is provided with a mounting groove (17) at the right side, and the inner wall of the mounting groove (17) is fixedly connected with a handle (18).
5. The fire hose clamping tool structure of claim 1, wherein, The bottom of the bevel tongue (15) is fixedly connected with a connecting block (19), the outer wall of the connecting block (19) is fixedly connected with a connecting column (20) at the right side, the outer wall of the connecting column (20) is fixedly connected with a protective sleeve (21) at the right end, and the outer wall of the protective sleeve (21) is provided with an anti-skid groove (22).
6. The fire hose clamping tool structure of claim 1, wherein, The outer wall of the left side of the moving plate (11) is fixedly connected with a connecting sheet one (23) on the front and back sides, the outer wall of the two connecting sheet ones (23) is threadedly connected with a screw three (37), and the outer wall of the two screw threes (37) is threadedly connected with the outer wall left side of the L-shaped adjusting arm (8).
7. The fire hose clamping fixture of claim 1, wherein, The adjacent side of the two V-shaped clamping plates (12) is provided with an installation groove two (24), the inner wall of the two installation groove twos (24) is fixedly connected with a protection cotton one (25), the outer wall of the two V-shaped clamping plates (12) is provided with a connecting groove two (26) on the front and back ends, and the inner wall of the two connecting groove twos (26) is fixedly connected with a protection cotton two (27).
8. The fire hose clamping tool structure of claim 1, wherein, The top middle part of the base (1) is provided with a circular groove (28), the bottom of the rotating shaft (6) is provided with a plurality of installation grooves three (29) around, the inner wall of the plurality of installation grooves three (29) is fixedly connected with a rotating ball (30), and the outer wall of the plurality of rotating balls (30) is rotatably connected with the inner wall of the circular groove (28).
9. The fire hose clamping tool structure of claim 1, wherein, The bottom of the connecting rod (13) is fixedly connected with a fixed block (31), the outer wall of the fixed block (31) is fixedly connected with a connecting sheet two (32) on the front and back sides, the outer wall of the two connecting sheet twos (32) is threadedly connected with a screw two (33), the outer wall of the two screw twos (33) is threadedly connected with the top right side of the base (1), the inner wall left side of the sliding groove one (9) is provided with a connecting hole (34), the inner wall of the connecting hole (34) is fixedly connected with the spring three (10), the inner wall of the sliding groove one (9) is provided with a sliding groove two (35) on the front and back sides, and the outer wall of the moving plate (11) is fixedly connected with a sliding block (36) on the front and back sides. The inner wall of the two sliding groove twos (35) is slidably connected with the sliding block (36).
10. A method of installing a fire hose clamping tool structure according to any one of claims 1 to 9, characterized in that, The following steps are included: S1, the base (1) is a plane steel plate, the connecting barrel (4) around the bottom of the base (1) is used for being installed in the corresponding installation hole on the wall, the base (1) is fixed on the wall by screwing (5), the top middle part of the base (1) is provided with (7), the outer wall of (7) is fixedly connected with (8), (11) is slid in (8) right end (9) by pushing (18), (12) is clamped with (7), when (11) reaches a certain position, (15) on the right side of (13) is clamped with (16) on the bottom of (11); S2, the recess (202) provided on the outer wall of the fixed plate (201) is fixedly connected with the fixed column (203), the rotating plate (204) is rotatably connected with the fixed column (203), so that the rotating plate (204) can freely rotate within a certain range, and can adapt to the angle difference between the wall and the base (1) in different installation scenes, when the staff rotates the rotating plate (204), the angle of the rotating plate can be adjusted flexibly according to the actual situation of the wall, so that it can be closely attached to the wall, thereby increasing the contact area, the screw one (205) threadedly connected with the outer wall left and right sides of the rotating plate (204) is used for tightly fixing the rotating plate on the wall by tightening the screw one (205). S3、When the device is subjected to external impact force, the impact force is first transmitted to the base (1), the plurality of spring one (301) in the middle of the bottom of the base (1) will produce elastic deformation due to stress, at the same time, the shock absorbing plate (302) connected to the bottom end can further disperse and weaken the impact force, the spring two (304) around the bottom of the base (1) will also be compressed and deformed due to the impact force, the spring two (304) respectively independently buffers and absorbs the impact force, disperses the impact force to multiple directions, further reduces the vibration impact on the whole device; S3、The protective cotton two (27) in the V-shaped clamping plate outer wall front and rear end connecting groove two (26) can provide additional protection for the two ends of the clamped object; S4、The rotating shaft (6) is rotatably connected with the inner wall of the circular groove (28) in the middle of the top end of the base (1) through the rotating ball (30) fixed in the bottom four around the installation groove three (29). When external force makes the rotating shaft (6) rotate, the rotating ball (30) rolls in the circular groove (28); S5、The spring three (10) is fixed in the connecting hole (34) on the left side of the inner wall of the sliding groove one (9), which interacts with the moving plate (11). When the moving plate (11) is subjected to external rightward thrust, the spring three (10) will be compressed.