Storage device convenient to transfer and used for galvanized aluminum magnesium coil processing

By designing a storage device including a clamping rod and an anti-movement mechanism, the problem of rolling and collision damage of galvanized aluminum-magnesium coils during transportation is solved, and the safe and stable transportation of galvanized aluminum-magnesium coils is achieved.

CN223421280UActive Publication Date: 2025-10-10TIANJIN QIANHONG TECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202422952933.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-10-10
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

During transportation, galvanized aluminum-magnesium coils are prone to rolling and colliding inside the storage device, causing damage and affecting their quality.

Method used

A storage device including a storage rack, a load plate, a clamping rod, a moving wheel, an anti-movement mechanism and a rolling plate is designed. The galvanized aluminum-magnesium coils are fixed by the clamping rod and the anti-movement mechanism to prevent them from rolling and colliding, and the moving wheels and the rolling plate ensure the stability of the transfer process.

Benefits of technology

Effectively prevent galvanized aluminum-magnesium coils from rolling and collision damage during transportation, ensure their safety and stability, and improve transportation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of galvanized aluminum magnesium coil transfer, in particular to a storage device convenient to transfer and used for galvanized aluminum magnesium coil processing, and solves the problem that in the prior art, galvanized aluminum magnesium coils are prone to rolling and colliding in a storage device to be damaged during transfer. A storage device convenient to transfer and used for galvanized aluminum magnesium coil machining comprises a storage frame, a plurality of bearing plates are fixedly connected into the storage frame, a plurality of clamping rods are arranged at the tops of the bearing plates through adjusting mechanisms, a plurality of moving wheels are rotationally connected to the side face of the storage frame, and an anti-moving mechanism is arranged on the side face of the storage frame. The bottom of the bearing plate is fixedly connected with two triangular reinforcing blocks, and the side face of the storage frame is fixedly connected with two triangular rolling plates. In the transferring process, the galvanized aluminum magnesium coil cannot be damaged due to rolling and collision, and the safety of the galvanized aluminum magnesium coil is guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of galvanized aluminum-magnesium coil transportation, in particular to a storage device for processing galvanized aluminum-magnesium coils which is convenient for transportation. Background Art

[0002] Galvanized aluminum-magnesium coil is a new type of highly corrosion-resistant coated steel sheet. Its coating contains alloying elements such as zinc, aluminum, magnesium, and rare earth elements. The synergistic effect of these elements gives it superior corrosion resistance compared to traditional galvanized steel sheet. Under the same environmental conditions, galvanized aluminum-magnesium coil has a longer service life and can effectively reduce maintenance costs caused by corrosion. It has excellent processing properties such as stamping, bending, and stretching, and can meet the processing requirements of various shapes and sizes. It is widely used in the automotive manufacturing, home appliance manufacturing, architectural decoration and other fields. In high-temperature environments, the coating of galvanized aluminum-magnesium coil is not easy to fall off or peel, and it can maintain good protective properties. It is suitable for equipment and components that need to be used under such conditions. The environmentally friendly plating solution and process used in the production process reduce environmental pollution. At the same time, due to its excellent corrosion resistance, it reduces waste generated by corrosion, which is beneficial to environmental protection. It can be used in the manufacture of building components such as roofs, walls, roof panels, and wall panels, which can effectively improve the service life and corrosion resistance of buildings. It also has a good decorative effect. As the main material of photovoltaic brackets, galvanized aluminum-magnesium coils have excellent corrosion resistance and high strength, and can operate stably for a long time under harsh outdoor environmental conditions, providing reliable guarantees for the construction of photovoltaic power stations. After processing, the galvanized aluminum-magnesium coils need to be placed in a storage device for storage, and then the galvanized aluminum-magnesium coils on the storage device are transferred for on-board transportation when loading.

[0003] In the prior art, when the galvanized aluminum-magnesium coils are transported, the storage device is moved so that the galvanized aluminum-magnesium coils are moved to a designated place for transportation. This process improves the efficiency of transportation and facilitates the transportation of the galvanized aluminum-magnesium coils.

[0004] However, when the galvanized aluminum-magnesium coils are transported using a storage device, the galvanized aluminum-magnesium coils are easily damaged by rolling and colliding inside the storage device, thereby affecting the quality of the galvanized aluminum-magnesium coils during transportation. Utility Model Content

[0005] The utility model aims to provide a storage device for processing galvanized aluminum-magnesium coils that is easy to transport, thereby solving the problem in the prior art that galvanized aluminum-magnesium coils are easily damaged by rolling and colliding inside the storage device during transport.

[0006] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0007] A storage device for processing galvanized aluminum-magnesium coils that is easy to transport includes a storage rack. Several supporting plates are fixedly connected to the interior of the storage rack. Several clamping rods are provided on the top of the supporting plates through an adjustment mechanism. Several moving wheels are rotatably connected to the sides of the storage rack. An anti-movement mechanism is provided on the sides of the storage rack. Two triangular reinforcement blocks are fixedly connected to the bottom of the supporting plates. Two triangular rolling plates are fixedly connected to the sides of the storage rack.

[0008] Preferably, the adjustment mechanism includes a plurality of clamping grooves formed on the surface of the bearing plate, the clamping rods are slidably connected to the inside of adjacent clamping grooves, and the top of the clamping rods is fixedly connected to a clamping block in an arc shape.

[0009] Preferably, the side of the clamping rod is rotatably connected to an anti-slip block, the side of the clamping groove is provided with an anti-slip groove, and the anti-slip block is located inside the adjacent anti-slip groove.

[0010] Preferably, the anti-movement mechanism includes an extension rod fixedly connected to the side of the storage rack, and an anti-movement rod is passed through the top of the extension rod.

[0011] Preferably, a screw rod is threadedly connected to the side surface of the extension rod, and a plurality of height-fixing grooves are opened on the surface of the anti-movement rod, and the screw rods are located inside adjacent height-fixing grooves.

[0012] Preferably, the bottom of the anti-movement rod is elastically connected to a friction block via an extrusion spring.

[0013] The utility model has the following beneficial effects:

[0014] When the galvanized aluminum-magnesium coil needs to be transported, the galvanized aluminum-magnesium coil can be clamped and fixed by the clamping block to prevent the galvanized aluminum-magnesium coil from rolling and colliding. The clamping block can also adjust the clamping and fixing of the galvanized aluminum-magnesium coil through the position of the clamping groove. When clamping and fixing galvanized aluminum-magnesium coils of different sizes, it can be used conveniently to ensure the stability of galvanized aluminum-magnesium coils of different sizes, so that the galvanized aluminum-magnesium coil will not be damaged by rolling or colliding during the transportation process, thereby ensuring the safety of the galvanized aluminum-magnesium coil. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0016] Figure 1 It is a structural diagram of the utility model;

[0017] Figure 2 for Figure 1 Schematic diagram of the side structure;

[0018] Figure 3 for Figure 1 Schematic diagram of the side structure of the anti-movement mechanism;

[0019] Figure 4 for Figure 1 Schematic diagram of the side structure of the middle adjustment mechanism;

[0020] Figure 5 for Figure 3 Schematic diagram of the structure in which the friction block and the anti-lock rod are separated.

[0021] In the figure: 1. Storage rack; 2. Loading plate; 3. Adjustment mechanism; 4. Clamping rod; 5. Moving wheel; 6. Anti-movement mechanism; 7. Reinforcement block; 8. Rolling plate; 301. Clamping groove; 302. Clamping block; 303. Anti-slip block; 304. Anti-slip groove; 601. Extension rod; 602. Anti-movement rod; 603. Screw; 604. Height-fixing groove; 605. Extrusion spring; 606. Friction block. DETAILED DESCRIPTION

[0022] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0023] Reference Figures 1-5A storage device for processing galvanized aluminum-magnesium coils that is easy to transport includes a storage rack 1. Several supporting plates 2 are fixedly connected to the interior of the storage rack 1. The supporting plates 2 can carry the processed galvanized aluminum-magnesium coils so that the galvanized aluminum-magnesium coils can be placed and stored. Several clamping rods 4 are provided on the top of the supporting plate 2 through an adjustment mechanism 3. Before the galvanized aluminum-magnesium coils need to be transported, the clamping rods 4 can be fixed on the supporting plate 2 through the adjustment mechanism 3, and the galvanized aluminum-magnesium coils can be restricted by the two clamping rods 4 to prevent them from being stored in the storage rack. When the galvanized aluminum-magnesium coils are moved and transported, the rolling of the galvanized aluminum-magnesium coils may cause collision damage or fall off the storage rack 1. This ensures the safety of the galvanized aluminum-magnesium coils during transportation. The side of the storage rack 1 is rotatably connected to a number of moving wheels 5. After the galvanized aluminum-magnesium coils are placed on the storage rack 1, the storage rack 1 is pushed. The storage rack 1 can be easily moved by the moving wheels 5, so that the storage rack 1 can be easily moved, thereby transporting the galvanized aluminum-magnesium coils on the storage rack 1. The side of the storage rack 1 is provided with an anti-movement mechanism 6. When the galvanized aluminum-magnesium coils on the carrier plate 2 need to be transported, the storage rack 1 can be easily moved by the moving wheels 5. When loading, the anti-movement mechanism 6 can be used to fix the position of the storage rack 1 to prevent the storage rack 1 from moving when loading the galvanized aluminum-magnesium coils, which makes loading inconvenient. Two triangular reinforcing blocks 7 are fixedly connected to the bottom of the carrying plate 2. When the carrying plate 2 is needed to place the galvanized aluminum-magnesium coils, the strength of the carrying plate 2 can be increased by the reinforcing blocks 7 to prevent the carrying plate 2 from being easily damaged during actual use, thereby ensuring the safe placement of the galvanized aluminum-magnesium coils during storage. Two triangular rolling plates 8 are fixedly connected to the side of the storage rack 1. When the galvanized aluminum-magnesium coils are transported through the storage rack 1, the storage rack 1 can be supported by the rolling plates 8 during transportation to prevent the storage rack 1 from tipping over on the front or back during transportation. The storage rack 1 can be restricted by the rolling plates 8 to prevent it from tipping over and causing damage to the galvanized aluminum-magnesium coils. When transporting to the designated location, the galvanized aluminum-magnesium coils can also be easily unloaded by the rolling plates 8. The top of the rolling plates 8 is made of soft material, which can assist the galvanized aluminum-magnesium coils during unloading and prevent the galvanized aluminum-magnesium coils from directly colliding with the ground.

[0024] Further, the adjusting mechanism 3 comprises a plurality of clamping grooves 301 opened on the surface of the bearing plate 2, the clamping rod 4 is slidingly connected in the adjacent clamping groove 301, the top of the clamping rod 4 is fixedly connected with the arc-shaped clamping block 302, when it is necessary to adjust the position of the clamping rod 4, so that the clamping rod 4 can conveniently clamp and limit different galvanized aluminum magnesium coils, the galvanized aluminum magnesium coil can be placed on the bearing plate 2 first, and then the clamping rod 4 is inserted into the corresponding clamping groove 301, at this time the clamping rod 4 can conveniently limit the galvanized aluminum magnesium coil through the clamping block 302, the stability of the galvanized aluminum magnesium coil is ensured, and the clamping groove 301 will not be too long, preventing the overall stability of the bearing plate 2 from being reduced due to the clamping groove 301 being too long, only the clamping block 302 can clamp and fix the galvanized aluminum magnesium coil after the clamping rod 4 enters the clamping groove 301, which can prevent the bearing plate 2 from being broken when bearing the galvanized aluminum magnesium coil, and ensure that the strength of the bearing plate 2 will not be reduced.

[0025] Further, the side surface of the clamping rod 4 is rotatably connected with the anti-dropping block 303, the side surface of the clamping groove 301 is provided with the anti-dropping groove 304, the anti-dropping block 303 is located in the adjacent anti-dropping groove 304, after the clamping rod 4 is inserted into the clamping groove 301, the anti-dropping block 303 can be rotated, so that the anti-dropping block 303 can enter the adjacent anti-dropping groove 304, at this time the clamping rod 4 will be limited by the anti-dropping block 303, so that the clamping rod 4 will not easily leave from the insertion direction, and the clamping block 302 on the clamping rod 4 can conveniently clamp and fix the galvanized aluminum magnesium coil, and the stability of the galvanized aluminum magnesium coil is ensured.

[0026] Further, the anti-moving mechanism 6 comprises an extension rod 601 fixedly connected to the side surface of the storage rack 1, and the top of the extension rod 601 is provided with an anti-moving rod 602, when it is necessary to ensure the stability of the storage rack 1 to facilitate the galvanized aluminum magnesium coil to be placed on the bearing plate 2, the stability can be increased by the contact of the anti-moving rod 602 with the ground, preventing the storage rack 1 from being easily moved when the galvanized aluminum magnesium coil is placed.

[0027] Furthermore, a screw rod 603 is threadedly connected to the side of the extension rod 601, and a plurality of fixed height grooves 604 are provided on the surface of the anti-movement rod 602. The screw rod 603 is located inside the adjacent fixed height groove 604. When it is necessary to limit the movement of the storage rack 1, the anti-movement rod 602 can be squeezed downward, and then the screw rod 603 is rotated so that the screw rod 603 enters the adjacent fixed height groove 604, so that the anti-movement rod 602 can always be in contact with the ground, so that the storage rack 1 will not move easily. When it is necessary to move, the screw rod 603 is rotated away from the fixed height groove 604, and then the anti-movement rod 602 is lifted upward to make the anti-movement rod 602 leave the ground, and then the screw 603 is rotated again to enter the adjacent fixed height groove 604, so that the screw 603 can fix the anti-movement rod 602 again, so that the storage rack 1 can be conveniently moved by the moving wheel 5.

[0028] Furthermore, the bottom of the anti-movement rod 602 is elastically connected to a friction block 606 through an extrusion spring 605. When the anti-movement rod 602 needs to restrict the ground, the friction block 606 can be used to increase the friction force, and the extrusion spring 605 can also be used to conveniently apply force to the ground, thereby increasing the friction force and ensuring the anti-movement effect.

[0029] In summary:

[0030] When the galvanized aluminum-magnesium coil storage rack 1 needs to be transported, the galvanized aluminum-magnesium coil is first placed on the carrier plate 2. The carrier plate 2 can increase its strength through the reinforcing block 7. Then the clamping rod 4 can be inserted into the clamping groove 301 on the carrier plate 2 through the adjustment mechanism 3. At this time, the clamping block 302 on the clamping rod 4 can clamp and fix the galvanized aluminum-magnesium coil, and then the anti-slip block 303 is rotated to enter the anti-slip groove 304, so that the clamping rod 4 will not easily leave the clamping groove 301. In the process of placing the galvanized aluminum-magnesium coil into the carrier plate 2, the bottom of the anti-movement rod 602 on the extension rod 601 needs to be close to the ground, and the friction block 606 can be in contact with the ground under the pressure of the extrusion spring 605. At this time, the friction block 606 can stabilize the storage rack 1 to prevent the storage rack 1 from easily After the galvanized aluminum-magnesium coils are placed, the screw 603 is rotated to leave the fixed height groove 604, and then the anti-movement rod 602 is lifted to make the friction block 606 leave the ground, and then the screw 603 is rotated again to make the screw 603 enter the adjacent fixed height groove 604 to fix the position of the anti-movement rod 602, and then the storage rack 1 is pushed. The storage rack 1 is moved by the moving wheel 5. During the movement, the rolling plate 8 can prevent the storage rack 1 from tipping over, ensuring the safety of the storage rack 1. The above structure can be used to conveniently clamp and fix galvanized aluminum-magnesium coils of different sizes during transportation, prevent the galvanized aluminum-magnesium coils from shaking and colliding during transportation and causing damage, and prevent the galvanized aluminum-magnesium coils from falling, ensuring the normal transportation of the galvanized aluminum-magnesium coil storage rack 1, and improving transportation efficiency and safety.

[0031] The above shows and describes 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 above embodiments and descriptions merely illustrate the principles of the present invention. Various changes and improvements are possible without departing from the spirit and scope of the present invention. Such changes and improvements are intended to fall within the scope of the present invention. The scope of protection claimed for the present invention is defined by the appended claims and their equivalents.

Claims

1. A storage device for processing galvanized aluminum-magnesium coils that is convenient for transportation, comprising a storage rack (1), characterized in that: The storage rack (1) is fixedly connected to a plurality of supporting plates (2) inside, a plurality of clamping rods (4) are provided on the top of the supporting plates (2) through an adjustment mechanism (3), a plurality of moving wheels (5) are rotatably connected to the side of the storage rack (1), an anti-movement mechanism (6) is provided on the side of the storage rack (1), two triangular reinforcement blocks (7) are fixedly connected to the bottom of the supporting plates (2), and two triangular rolling plates (8) are fixedly connected to the side of the storage rack (1).

2. The storage device for processing galvanized aluminum-magnesium coils that is convenient for transportation according to claim 1, characterized in that: The adjustment mechanism (3) comprises a plurality of clamping grooves (301) provided on the surface of the carrier plate (2); the clamping rod (4) is slidably connected to the inside of adjacent clamping grooves (301); and the top of the clamping rod (4) is fixedly connected to a clamping block (302) in the shape of an arc.

3. The storage device for processing galvanized aluminum-magnesium coils that is convenient for transportation according to claim 2, characterized in that: The side of the clamping rod (4) is rotatably connected to an anti-slip block (303), and the side of the clamping groove (301) is provided with an anti-slip groove (304), and the anti-slip block (303) is located inside the adjacent anti-slip groove (304).

4. The storage device for processing galvanized aluminum-magnesium coils that is convenient for transportation according to claim 1, characterized in that: The anti-movement mechanism (6) comprises an extension rod (601) fixedly connected to the side of the storage rack (1), and an anti-movement rod (602) is provided on the top of the extension rod (601).

5. The storage device for processing galvanized aluminum-magnesium coils that is convenient for transportation according to claim 4, characterized in that: The side surface of the extension rod (601) is threadedly connected with a screw rod (603), and the surface of the anti-movement rod (602) is provided with a plurality of height-fixing grooves (604), and the screw rod (603) is located inside the adjacent height-fixing grooves (604).

6. The storage device for processing galvanized aluminum-magnesium coils that is convenient for transportation according to claim 4, characterized in that: The bottom of the anti-movement rod (602) is elastically connected to a friction block (606) via a compression spring (605).