Pipe storage safety rack
By designing adjustable triangular brackets, anti-slip pads, and restraint components, the problems of incompatible pipe storage rack models and pipe rolling were solved, achieving stable fixing and safe storage of pipes.
Patent Information
- Application Number
- CN202410818668.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-24
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2044-06-24
AI Technical Summary
Existing pipe storage racks are difficult to adjust the boom type and spacing, cannot meet the placement requirements of bundled pipes, and pose a risk of steel pipes rolling.
A pipe storage safety rack was designed, including an adjustable triangular bracket, an anti-slip pad, and restraint components. Through components such as support springs, guide wheels, and pull ropes, the bracket can be easily replaced and the pipe can be stably fixed.
The triangular bracket enables convenient adjustment and fixation, preventing steel pipes from rolling and improving the stability and safety of bundled pipes.
Smart Images

Figure CN118597556B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of pipe storage rack structure technology, and more particularly to a pipe storage safety rack. Background Technology
[0002] During construction, steel pipes are transported by trucks. These pipes need to be stored in a centralized location, as directly piling them on the ground could lead to accidents. Therefore, steel pipe racks are used to place the pipes.
[0003] During transportation, pipelines are typically stacked on the boom of a safety rack. Some safety racks have baffles on the boom to prevent pipelines from rolling. However, because the boom is fixed to the safety rack with bolts or welding, it is difficult to adjust and change the boom model and boom spacing to meet specific needs, making it unsuitable for storing bundled pipelines. Furthermore, relying solely on baffles, there is still a risk of pipelines rolling when bundled and placed on the boom. Therefore, a pipeline storage safety rack is needed to solve these problems. Summary of the Invention
[0004] The purpose of this invention is to solve the problems mentioned in the background section.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A pipe storage safety rack includes a safety rack end, which includes a base. Two guide columns are symmetrically connected to the top left and right sides of the base. A rod assembly is movably mounted on the surface of each guide column. Each rod assembly includes a bushing. A bracket assembly is connected to both sides of the bushing via mating components. The bracket assembly includes a triangular bracket. A pad assembly is laid on the surface of the triangular bracket. The left and right bushings are connected and fixed together by a beam. The beam is fitted onto the surface of a positioning column through a through groove. Two handles are symmetrically connected to the bottom end of the beam. A fixing pin is inserted through a through hole at the center of the side of the beam. Positioning holes for matching the fixing pin are equidistantly opened on the surface of the positioning column. The square column design of the positioning column also prevents the beam from shifting or rotating.
[0007] Preferably, two guide wheels are symmetrically installed on both sides of the inner wall of the bushing, and guide grooves adapted to the guide wheels are opened on both sides of the guide post. The guide wheels rub and roll in the guide grooves of the guide post, which can ensure the smooth movement of the bushing and facilitate the staff to adjust the position of the triangular bracket.
[0008] Preferably, the docking component includes an insert plate that is fixedly connected to the side of the bushing. The top of the insert plate has a groove, and a retaining plate is movably installed in the groove. The bottom of the retaining plate is connected to a support spring, and the bottom of the support spring is fixedly connected to the inner wall of the groove of the insert plate. The retaining plate is supported by the elastic force of the support spring, so that the retaining plate is snapped against the inner wall of the groove of the triangular bracket during rotation, ensuring the convenience of interlocking between the insert plate and the triangular bracket.
[0009] Preferably, the bottom end of the insert plate is connected to a pressure block, and the pressure block abuts against the side of the triangular bracket through a groove. The left side of the triangular bracket is connected to a rubber sleeve, and the rubber sleeve is fitted and fits against the outside of the insert plate. The pressure block can be embedded in the groove on the side of the triangular bracket, so that the pressure block can support the triangular bracket in a downward movement.
[0010] Preferably, a pressing component is provided on the left side of the top of the triangular bracket. The pressing component includes a movable shaft, which passes through the triangular bracket via a through hole and is connected to a pressure plate. A button is connected to the top of the movable shaft, and a return spring is connected to the bottom of the button. The bottom of the return spring is fixedly connected to the surface of the triangular bracket. The position of the pressure plate is on the same vertical horizontal line as the card plate. Pressing down the button can push the movable shaft to move. During the movement, the movable shaft can push the pressure plate to move, so that the pressure plate presses down on the card plate, separating the card plate from the inner wall of the groove of the triangular bracket, thereby facilitating the pulling and placing of the triangular bracket.
[0011] Preferably, the top of the triangular bracket is provided with a pad assembly, which includes a rubber insert. The rubber insert is inserted into the triangular bracket through a slot. Two limiting plates are symmetrically connected to the inner wall of the slot of the triangular bracket, and the limiting plates are inserted into the side of the rubber insert through a slot. An anti-slip pad is connected to the top of the rubber insert, and the anti-slip pad covers the top surface of the triangular bracket. The top of the anti-slip pad has triangular grooves at equal intervals. By inserting the rubber insert into the slot at the top of the triangular bracket, the rubber insert can be easily positioned and installed. At the same time, the limiting plate in the slot of the triangular bracket can be snapped back into the slot on the side of the rubber insert to ensure that the rubber insert is stably installed on the surface of the triangular bracket.
[0012] Preferably, the bottom end of the triangular bracket is provided with a constraint component, the constraint component including a movable column, the movable column being rotatably mounted on the right side of the triangular bracket, a locking pin being inserted through a threaded hole on the bottom side of the triangular bracket, and the shaft end of the locking pin being inserted into the movable column through a through hole. The vertical movable column design facilitates the insertion and connection of the pull rope. A groove is provided on the surface of the triangular bracket to facilitate the insertion of the pull rope.
[0013] Preferably, a constraint post is connected to the top left side of the triangular bracket, a through groove is provided at the bottom of the triangular bracket, a fixing ring is connected to the side of the bottom of the triangular bracket near the through groove, a slider is movably installed at the bottom of the triangular bracket through a guide groove, and a lifting ring is connected to the bottom of the slider. A pull rope is wound around the bottom of the lifting ring. By connecting one end of the pull rope to the constraint post, the pull rope passes through the slot of the triangular bracket and then moves through the through hole of the lifting ring. The lifting ring can move with the pull of the pull rope, which is convenient for adapting to the bundled volume of the pipe.
[0014] Preferably, an auxiliary support assembly is installed on the side of the beam. The auxiliary support assembly includes a straight plate, and a sleeve plate is inserted inside the straight plate. The ends of the two sleeve plates are connected and fixed by a guardrail. A limit block is connected to the inner wall of the straight plate, and the limit block is embedded in the surface of the sleeve plate through a guide groove. A rubber block end is provided on the side of the sleeve plate. The sleeve plate can be pulled and moved inside the straight plate, thereby adjusting the length of the auxiliary support. The limit block and the guide groove of the sleeve plate mutually limit each other, preventing the sleeve plate from detaching from the surface of the straight plate during pulling.
[0015] This invention has at least the following beneficial effects:
[0016] 1. By setting up a rod assembly, the triangular bracket can be replaced and adjusted. Compared with the traditional structure, this device allows the left side of the triangular bracket to be interlocked with the insert plate, so that the insert plate can be embedded in the docking groove of the triangular bracket. The elastic force of the support spring supports the clamping plate, causing the clamping plate to be snapped into the groove inside the docking groove of the triangular bracket. This ensures the convenience of assembling and disassembling the triangular bracket and allows the triangular bracket to meet the placement requirements of steel pipes. At the same time, the pressure block abuts against the side of the triangular bracket, which can increase the suspension pressure of the triangular bracket. The bushing slides vertically on the surface of the guide column, which can adjust the distance between the two triangular brackets and further adapt to the storage requirements of bundled steel pipes.
[0017] 2. By setting up pads, the bundled steel pipes are constrained and limited. This device uses rubber blocks inserted into the slots of the triangular brackets, so that the limiting plate in the slots engages with the positioning grooves on the side of the rubber blocks for positioning. This causes the anti-slip pads to be laid on the surface of the triangular brackets. The triangular groove design on the surface of the anti-slip pads can effectively prevent the steel pipes from rolling and ensure the stable storage effect of the bundled steel pipes.
[0018] 3. By setting up constraint components, stable storage of bulk steel pipes is achieved. This device uses a pull rope to sequentially insert into the groove of the constraint column, the triangular bracket and the inside of the lifting ring. Pulling the pull rope can drive the lifting ring to move at the bottom of the triangular bracket, so that the end of the pull rope is inserted into the fixing ring and tied and locked, thereby preventing the bulk steel pipes from rolling in the stack and further improving the stability of the steel pipe placement. Attached Figure Description
[0019] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the following description of the embodiments will be briefly introduced. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a schematic diagram of the external structure of a pipe storage safety rack proposed in this invention;
[0021] Figure 2 This is a three-dimensional disassembly diagram of the rod assembly in a pipeline storage safety frame proposed in this invention;
[0022] Figure 3 This is a partial disassembly diagram of the docking component in a pipe storage safety rack proposed in this invention;
[0023] Figure 4 This is a partial disassembly diagram of the pad assembly in a pipeline storage safety rack proposed in this invention;
[0024] Figure 5 This is a three-dimensional disassembly diagram of the restraint component in a pipeline storage safety frame proposed in this invention;
[0025] Figure 6 This is a three-dimensional disassembly diagram of the docking component and the pressing component in a pipe storage safety rack proposed in this invention;
[0026] Figure 7 This is a three-dimensional disassembly diagram of the auxiliary support component in a pipeline storage safety frame proposed in this invention.
[0027] In the diagram: 1. Safety frame end; 11. Base; 12. Guide column; 2. Rod assembly; 21. Beam rod; 22. Fixing pin; 23. Handle; 24. Bushing; 25. Guide wheel; 26. Connecting component; 261. Insert plate; 262. Clamping plate; 263. Support spring; 264. Pressure block; 3. Bracket assembly; 31. Triangular bracket; 32. Rubber sleeve; 33. Pad assembly; 331. Rubber insert block; 332. Anti-slip pad; 3 33. Limiting plate; 34. Pressing component; 341. Movable shaft; 342. Button; 343. Return spring; 344. Pressure plate; 35. Restraining component; 351. Fixing ring; 352. Slider; 353. Lifting ring; 354. Pull rope; 355. Movable column; 356. Locking pin; 357. Restraining column; 4. Positioning column; 5. Auxiliary support assembly; 51. Straight plate; 52. Limiting block; 53. Sleeve plate; 54. Guardrail plate. Detailed Implementation
[0028] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0029] Reference Figure 1-7 A pipe storage safety rack includes a safety rack end 1, which includes a base 11. Two guide posts 12 are symmetrically connected to the top left and right sides of the base 11. A rod assembly 2 is movably installed on the surface of the guide posts 12. The rod assembly 2 includes a bushing 24. A bracket assembly 3 is connected to both sides of the bushing 24 through a docking component 26. The bracket assembly 3 includes a triangular bracket 31. A pad assembly 33 is laid and installed on the surface of the triangular bracket 31. The left and right bushings 24 are connected and fixed by a beam 21. The beam 21 is sleeved on the surface of the positioning post 4 through a through groove. Two handles 23 are symmetrically connected to the bottom end of the beam 21. A fixing pin 22 is inserted through a through hole at the center position of the side of the beam 21. Positioning holes adapted to the fixing pin 22 are opened at equal intervals on the surface of the positioning post 4.
[0030] Two guide wheels 25 are symmetrically installed on both sides of the inner wall of the bushing 24, and guide grooves adapted to the guide wheels 25 are opened on both sides of the guide post 12.
[0031] The docking component 26 includes an insert plate 261 that is fixedly connected to the side of the bushing 24. The top of the insert plate 261 has a groove, and a retaining plate 262 is movably installed in the groove. The bottom of the retaining plate 262 is connected to a support spring 263, and the bottom of the support spring 263 is fixedly connected to the inner wall of the groove of the insert plate 261.
[0032] The bottom end of the insert plate 261 is connected to a pressure block 264, and the pressure block 264 abuts against the side of the triangular bracket 31 through a groove. A rubber sleeve 32 is connected to the left side of the triangular bracket 31, and the rubber sleeve 32 is fitted and adheres to the outside of the insert plate 261.
[0033] A pressing component 34 is provided on the top left side of the triangular bracket 31. The pressing component 34 includes a movable shaft 341. The movable shaft 341 passes through the triangular bracket 31 through a through hole and is connected to a pressure plate 344. A button 342 is connected to the top of the movable shaft 341. A return spring 343 is connected to the bottom of the button 342. The bottom of the return spring 343 is connected and fixed to the surface of the triangular bracket 31. The position of the pressure plate 344 is on the same vertical horizontal line as the clamping plate 262.
[0034] The top of the triangular bracket 31 is provided with a pad assembly 33, which includes a rubber insert 331. The rubber insert 331 is inserted into the inside of the triangular bracket 31 through a slot. Two limiting plates 333 are symmetrically connected to the inner wall of the slot of the triangular bracket 31, and the limiting plates 333 are inserted into the side of the rubber insert 331 through a slot. The top of the rubber insert 331 is connected with an anti-slip pad 332, which wraps around the top surface of the triangular bracket 31. The top of the anti-slip pad 332 has triangular inner grooves equidistantly opened.
[0035] The bottom end of the triangular bracket 31 is provided with a constraint component 35, which includes a movable column 355. The movable column 355 is rotatably mounted on the right side of the triangular bracket 31. A locking pin 356 is inserted into the bottom side of the triangular bracket 31 through a threaded hole, and the shaft end of the locking pin 356 is inserted into the movable column 355 through a through hole.
[0036] A constraint post 357 is connected to the top left of the triangular bracket 31. A through groove is opened at the bottom of the triangular bracket 31. A fixing ring 351 is connected to the side of the bottom of the triangular bracket 31 near the through groove. A slider 352 is movably installed at the bottom of the triangular bracket 31 through a guide groove. A lifting ring 353 is connected to the bottom of the slider 352. A pull rope 354 is wound around the bottom of the lifting ring 353.
[0037] A supporting component 5 is installed on the side of the beam 21. The supporting component 5 includes a straight plate 51. A sleeve plate 53 is inserted inside the straight plate 51. The ends of the two sleeve plates 53 are connected and fixed by a guardrail 54. A limiting block 52 is connected to the inner wall of the straight plate 51, and the limiting block 52 is embedded in the surface of the sleeve plate 53 through a guide groove. A rubber block end is provided on the side of the sleeve plate 53.
[0038] By gripping the handle 23, the beam 21 can be easily lifted, allowing it to move on the surface of the positioning post 4, thereby adjusting the position of the triangular bracket 31. Once the beam 21 is adjusted to the appropriate height, the fixing pin 22, passing through the positioning hole between the beam 21 and the positioning post 4, can quickly suspend and fix the beam 21. When the bushing 24 moves on the surface of the guide post 12, it drives the guide wheel 25 to move within the guide groove of the guide post 12. The guide wheel 25 rolls and rubs within the guide groove, ensuring smooth movement of the bushing 24 and facilitating the adjustment of the position of the triangular bracket 31. When the triangular bracket 31 aligns with the insert plate 261, the spring force of the support spring 263 supports the clamping plate 262, allowing the clamping plate 262 to rotate. The insert plate 261 is fastened to the inner wall of the groove in the triangular bracket 31, ensuring convenient interlocking between the insert plate 261 and the triangular bracket 31. A triangular bracket 31 of appropriate size and length can be installed according to usage requirements. When the triangular bracket 31 is fitted onto the surface of the insert plate 261, the pressure block 264 can be embedded in the groove on the side of the triangular bracket 31, allowing the pressure block 264 to provide downward support for the triangular bracket 31, increasing the upper limit of pressure on the triangular bracket 31. When the triangular bracket 31 needs to be disassembled, pressing down on the button 342 will push the movable shaft 341 to move. During movement, the movable shaft 341 will push the pressure plate 344 to move, causing the pressure plate 344 to press down on the clamping plate 262, separating the clamping plate 262 from the inner wall of the groove in the triangular bracket 31, thus facilitating the disassembly of the triangular bracket. The bracket 31 can be pulled out and placed. During removal, when the triangular bracket 31 is pulled out to a certain position, the movable shaft 341 can limit the triangular bracket 31 to prevent it from easily falling off. At this point, the force of pressing the button 342 needs to be released so that the pressure plate 344 disengages from the groove of the insert plate 261 before the triangular bracket 31 can be pulled out further. This provides a certain degree of protection during removal and placement. The rubber insert 331 is inserted into the slot at the top of the triangular bracket 31, facilitating its positioning and installation. Simultaneously, the limiting plate 333 in the slot of the triangular bracket 31 can be snapped back into the side groove of the rubber insert 331, ensuring the rubber insert 331 is stably installed on the surface of the triangular bracket 31. When pipes are stacked on the surface of the anti-slip mat 332... The triangular groove design of the anti-slip pad 332 prevents the pipe from rolling and acts as a restraint and containment mechanism. After the movable column 355 rotates, it stands upright on the outside of the triangular bracket 31, thus restraining and limiting the pipe placed on the surface of the triangular bracket 31, preventing it from falling off during rolling. Simultaneously, the upright design of the movable column 355 facilitates the insertion and connection of the pull rope 354. The groove on the surface of the triangular bracket 31 also facilitates the insertion of the pull rope 354. When the movable column 355 is upright, the locking pin 356 moves within the threaded hole at the bottom of the triangular bracket 31, causing the shaft end of the locking pin 356 to insert into the through hole at the bottom of the movable column 355, preventing the movable column 355 from loosening when upright.By connecting one end of the pull rope 354 to the constraint post 357, the pull rope 354 passes through the slot of the triangular bracket 31 and then moves through the through hole of the lifting ring 353. The lifting ring 353 can move with the pull of the pull rope 354, which can easily adapt to the bundled volume of the pipes. At the same time, the end of the pull rope 354 can be knotted and fixed to the surface of the fixing ring 351 after being pulled, ensuring the stability of the bundled pipes and preventing the pipes from loosening. The straight plate 51 and the sleeve plate 53 cooperate to provide auxiliary support for the pipes, reducing the pressure on the triangular bracket 31. Meanwhile, the sleeve plate 53 can be pulled and moved within the straight plate 51, thereby adjusting the auxiliary support length. The limiting block 52 and the guide groove of the sleeve plate 53 mutually limit each other, which can prevent the sleeve plate 53 from detaching from the surface of the straight plate 51 during pulling. At the same time, the rubber block design on the side of the sleeve plate 53 can increase the friction when the sleeve plate 53 is pulled and moved within the straight plate 51, preventing the sleeve plate 53 from moving easily.
[0039] Working principle: According to the appendix Figure 3 With appendix Figure 6 As shown, during use, the triangular bracket 31 and the insert plate 261 can be interlocked, causing the pressure block 264 to abut against the groove on the left side of the triangular bracket 31. When the insert plate 261 is inserted into place, the elastic force of the support spring 263 can push the locking plate 262 to snap into the slot of the triangular bracket 31. At this time, the rubber sleeve 32 can be attached to the outside of the insert plate 261 to prevent impurities and debris from entering the gap between the insert plate 261 and the triangular bracket 31 and affecting the insertion effect of the insert plate 261 and the triangular bracket 31. At the same time, by holding the handle 23 and lifting it up, the handle 23 can drive the beam rod 21 to move on the surface of the positioning post 4. While the beam rod 21 moves, the bushing 24 can move on the surface of the guide post 12, thereby adjusting and changing the height of the triangular bracket 31. After the beam rod 21 is adjusted, the fixing pin 22 can pass through the through hole between the beam rod 21 and the positioning post 4 to lock it.
[0040] Secondly, according to the appendix Figure 4As shown, before placing the pipe, the anti-slip mat 332 can be laid on the surface of the triangular bracket 31, so that the rubber plug 331 can be inserted into the slot at the top of the triangular bracket 31. At this time, the rubber plug 331 deforms and fits against the inner wall of the slot of the triangular bracket 31 during insertion. At the same time, the limiting plate 333 can be snapped back into the limiting groove on the side of the rubber plug 331 to ensure the convenience of laying the anti-slip mat 332. In daily use, the movable column 355 can be rotated to make the movable column 355 stand upright on the side of the triangular bracket 31, and the locking pin 356 can be rotated and moved to make the locking pin 356... After being inserted into the bottom of the movable column 355, it is locked. The movable column 355 can prevent the pipe from falling onto the surface of the triangular bracket 31 during rolling. When the pipe is stacked in bulk on the surface of the triangular bracket 31, one end of the pull rope 354 can be connected to the restraint column 357. Moving the slider 352 can change the position of the lifting ring 353. At this time, the pull rope 354 is inserted into the groove of the triangular bracket 31 and the through hole of the lifting ring 353 and then through the fixing ring 351. The pull rope 354 is fixed and locked to the surface of the fixing ring 351. The loose pipe can be pulled and fixed by the pull rope 354.
[0041] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed invention. The scope of protection claimed by the appended claims and their equivalents is defined.
Claims
1. A pipe storage safety rack, comprising a safety rack end (1), characterized in that, The safety frame end (1) includes a base (11). Two guide posts (12) are symmetrically connected to the top left and right sides of the base (11). A rod assembly (2) is movably installed on the surface of the guide posts (12). The rod assembly (2) includes a bushing (24). A bracket assembly (3) is connected to both sides of the bushing (24) through a docking component (26). The bracket assembly (3) includes a triangular bracket (31). A pad assembly (33) is laid and installed on the surface of the triangular bracket (31). A beam connects the left and right bushings (24). The beam (21) is connected and fixed together. The beam (21) is sleeved on the surface of the positioning column (4) through a through groove. Two handles (23) are symmetrically connected to the bottom end of the beam (21). A fixing pin (22) is inserted through a through hole at the center position of the side of the beam (21). The positioning column (4) has positioning holes that are equidistant from the fixing pin (22). A constraint component (35) is provided at the bottom end of the triangular bracket (31). The constraint component (35) includes a movable column (355). The movable column (355) rotates... The triangular bracket (31) is mounted on the right side. A locking pin (356) is inserted into the bottom side of the triangular bracket (31) through a threaded hole, and the shaft end of the locking pin (356) is inserted into the movable column (355) through a through hole. A constraint column (357) is connected to the left side of the top of the triangular bracket (31). A through groove is opened at the bottom of the triangular bracket (31). A fixing ring (351) is connected to the bottom side of the triangular bracket (31) near the through groove. The bottom of the triangular bracket (31) is movably mounted through a guide groove. The device is equipped with a slider (352), and a lifting ring (353) is connected to the bottom end of the slider (352). A pull rope (354) is wound around the bottom end of the lifting ring (353). By connecting one end of the pull rope (354) to the constraint post (357), the pull rope (354) passes through the slot of the triangular bracket (31) and then moves through the through hole of the lifting ring (353). The lifting ring (353) can move with the pull of the pull rope (354). After the end of the pull rope (354) is pulled, it can be knotted and fixed on the surface of the fixing ring (351) to prevent the pipe from loosening.
2. A pipe storage safety rack according to claim 1, characterized in that, Two guide wheels (25) are symmetrically installed on both sides of the inner wall of the bushing (24), and guide grooves adapted to the guide wheels (25) are opened on both sides of the guide post (12).
3. A pipe storage safety rack according to claim 1, characterized in that, The docking component (26) includes a plug plate (261) that is connected and fixed to the side of the bushing (24). The top of the plug plate (261) has a groove, and a retaining plate (262) is movably installed in the groove. The bottom of the retaining plate (262) is connected to a support spring (263), and the bottom of the support spring (263) is connected and fixed to the inner wall of the groove of the plug plate (261).
4. A pipe storage safety rack according to claim 3, characterized in that, The bottom end of the insert plate (261) is connected to a pressure block (264), and the pressure block (264) abuts against the side of the triangular bracket (31) through a groove. The left side of the triangular bracket (31) is connected to a rubber sleeve (32), and the rubber sleeve (32) is fitted and adheres to the outside of the insert plate (261).
5. A pipe storage safety rack according to claim 1, characterized in that, A pressing component (34) is provided on the left side of the top of the triangular bracket (31). The pressing component (34) includes a movable shaft (341). The movable shaft (341) passes through the triangular bracket (31) through a through hole and is connected to a pressure plate (344). A button (342) is connected to the top of the movable shaft (341). A return spring (343) is connected to the bottom of the button (342). The bottom of the return spring (343) is connected and fixed to the surface of the triangular bracket (31). The position of the pressure plate (344) is on the same vertical horizontal line as the clamping plate (262).
6. A pipe storage safety rack according to claim 5, characterized in that, The top of the triangular bracket (31) is provided with a pad assembly (33), the pad assembly (33) includes a rubber insert (331), the rubber insert (331) is inserted into the triangular bracket (31) through a slot, the inner wall of the slot of the triangular bracket (31) is symmetrically connected with two limiting plates (333), and the limiting plates (333) are inserted into the side of the rubber insert (331) through a slot. The top of the rubber insert (331) is connected with an anti-slip pad (332), the anti-slip pad (332) is wrapped around the top surface of the triangular bracket (31), and the top of the anti-slip pad (332) is provided with triangular inner grooves at equal intervals.
7. A pipe storage safety rack according to claim 1, characterized in that, The beam (21) is equipped with an auxiliary support assembly (5) on its side. The auxiliary support assembly (5) includes a straight plate (51). A sleeve plate (53) is inserted inside the straight plate (51). The ends of the two sleeve plates (53) are connected and fixed by a guardrail (54). A limiting block (52) is connected to the inner wall of the straight plate (51), and the limiting block (52) is embedded in the surface of the sleeve plate (53) through a guide groove. A rubber block end is provided on the side of the sleeve plate (53).
Citation Information
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