Anti-deformation supporting structure for aluminum foil forming

By adjusting the spacing of the support plates using telescopic rods and sliding blocks, and combining this with a humidity detection and display system, the problem of difficult adjustment of existing aluminum foil support structures has been solved. This enables adaptability to aluminum foil rolls of different specifications and environmental conditions, ensuring the stability and anti-deformation effect of the aluminum foil rolls.

CN224181846UActive Publication Date: 2026-05-01安徽金运新材料科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
安徽金运新材料科技有限公司
Filing Date
2025-05-23
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

The existing aluminum foil forming anti-deformation support structure cannot be flexibly adjusted, making it unable to adapt to aluminum foil rolls of different specifications. Furthermore, it cannot adjust the support strength and position in real time when the environment changes, resulting in the aluminum foil rolls collapsing and deforming.

Method used

It adopts a telescopic rod and sliding block structure, combined with positioning bolts and connectors, to achieve flexible adjustment of the spacing and height of the support plates. It is equipped with a humidity detector and display meter to monitor and display humidity changes in real time. The protective shell and limit plate ensure structural stability and moisture protection.

Benefits of technology

It enables flexible adaptation to aluminum foil rolls of different specifications, prevents deformation, ensures the stability and quality of aluminum foil rolls during storage and transportation, and avoids deformation or damage caused by humidity changes.

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Abstract

The utility model relates to the technical field of aluminum foil forming deformation prevention, and discloses an aluminum foil forming deformation prevention supporting structure which comprises a plurality of supporting plates, and a first telescopic rod and a second telescopic rod are fixedly connected between every two adjacent supporting plates on the left side and between every two adjacent supporting plates on the right side. Fixing plates are fixedly connected between the two first telescopic rods on the left side and the two second telescopic rods on the right side, supporting rods are fixedly connected to the tops of the two supporting plates on the left side and the tops of the two supporting plates on the right side, and sliding blocks are slidably connected to the sides, away from each other, of the two supporting rods on the left side and the two supporting rods on the right side; and a plurality of positioning holes are formed in the supporting rods. According to the utility model, the adjustment of the whole structure is realized, the problem that the supporting structure is difficult to adjust is solved, flexible adjustment can be carried out according to the diameter and width specifications of aluminum foil rolls, the compatibility of different aluminum foil rolls is improved, and the aluminum foil is effectively prevented from deforming after being formed.
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Description

A type of aluminum foil forming anti-deformation support structure Technical Field

[0001] This utility model relates to the field of aluminum foil forming anti-deformation technology, and in particular to an aluminum foil forming anti-deformation support structure. Background Technology

[0002] Aluminum foil forming anti-deformation support structure is a mechanical structure device that prevents deformation of aluminum foil material during the forming process due to external forces, temperature changes, and its own gravity. In the field of aluminum foil production and manufacturing, aluminum foil needs to undergo multiple forming processes such as rolling, stamping, and folding. Due to the soft texture and thin thickness of aluminum foil, wrinkles, dents, and warping deformations can occur. The anti-deformation support structure maintains the stable shape of the aluminum foil during the forming process by applying reasonable support force, thus ensuring the dimensional accuracy and surface quality of the aluminum foil products.

[0003] The aluminum foil forming anti-deformation support structure is a mechanical structure device used to prevent deformation of aluminum foil rolls during storage and transportation after they have been formed. After the aluminum foil rolls are produced, the core collapses and the outer aluminum foil loosens and wrinkles under the action of gravity. The deformation is more obvious when the rolls are left for a long time or subjected to bumps and vibrations. The anti-deformation support structure provides stable support to the aluminum foil rolls, maintains the integrity of the cylindrical structure, and ensures the quality and performance of the aluminum foil rolls.

[0004] Existing anti-deformation support structures for aluminum foil rolls after forming have the problem of unadjustable support mechanisms. They are difficult to adjust flexibly before or during placement. Current support structures use fixed-size and fixed-installation support components. Before placement, the spacing, height, and support angle of the support mechanism cannot be adjusted according to different specifications of aluminum foil rolls; they are only suitable for specific sizes. During placement, when the aluminum foil rolls are stored for extended periods or changes in environmental temperature and humidity cause changes in their shape, the fixed support mechanism cannot adjust the support strength and position in real time, making it difficult to continuously provide effective support. Ultimately, this leads to the aluminum foil rolls collapsing and deforming, affecting their quality and subsequent use. Summary of the Invention

[0005] To overcome the above shortcomings, this utility model provides an aluminum foil forming anti-deformation support structure, which aims to improve the problems of difficult adjustment of support structures and poor compatibility of aluminum foil rolls in the prior art.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: an aluminum foil forming anti-deformation support structure, comprising multiple support plates, with telescopic rod one and telescopic rod two fixedly connected between adjacent left two support plates and right two support plates, with fixed plates fixedly connected between adjacent left two telescopic rod one and right two telescopic rod two, with support rods fixedly connected to the top of the left two support plates and right two support plates, with sliding blocks slidably connected to the opposite sides of the left two support rods and right two support rods, with multiple positioning holes opened inside the multiple support rods, with connectors fixedly connected between adjacent left two sliding blocks and right two sliding blocks, with fixed rings fixedly connected to the middle of the two connectors, with positioning bolts rotatably connected to the outer sides of the multiple sliding blocks, and a protective mechanism provided at the bottom of the two support plates, the protective mechanism being used to detect and prevent moisture from entering the interior of the aluminum foil roll.

[0007] As a further description of the above technical solution:

[0008] The protective mechanism includes a base plate, the top of which is fixedly connected to the bottom of two support plates. A protective shell is fixedly connected to the outer side of the base plate. Two limiting plates are fixedly connected to the top of the base plate. A humidity detector is fixedly connected to the middle left side of the protective shell. A humidity display meter is connected to the right side of the humidity detector.

[0009] As a further description of the above technical solution:

[0010] The top of the two support plates is provided with anti-slip grooves, and multiple rubber pads are provided on the inner side of the anti-slip grooves.

[0011] As a further description of the above technical solution:

[0012] Each of the support rods has a connecting plate fixedly connected to its top, and a fixing column is fixedly connected to the bottom of each of the two connecting plates on the left and the two connecting plates on the right.

[0013] As a further description of the above technical solution:

[0014] The bottom right sides of the two fixed columns on the left are fixedly connected to the top right side of the left support plate, and the bottoms of the two fixed columns on the right are fixedly connected to the top left side of the right support plate.

[0015] As a further description of the above technical solution:

[0016] The bottom of the base plate is fixedly connected to multiple anti-slip blocks, which are designed to be equidistant.

[0017] As a further description of the above technical solution:

[0018] Two tie rods are fixedly connected to the top of the protective shell, and multiple hanging rods are fixedly connected to the outer perimeter of the protective shell.

[0019] As a further description of the above technical solution:

[0020] A support block is fixedly connected to the bottom of the humidity display, and the rear side of the support block is fixedly connected to the middle of the front side of the protective shell.

[0021] This utility model has the following beneficial effects:

[0022] 1. In this utility model, the distance between adjacent support plates can be changed by extending and retracting telescopic rod one and telescopic rod two. The sliding block slides on the support rod, and is fixed by rotating the positioning bolt to cooperate with different positioning holes. The height of the sliding block is adjusted, and the sliding blocks on both sides are connected by connectors and fixing rings to realize the adjustment of the overall structure. This solves the problem of difficult adjustment of the support structure, and can be flexibly adjusted according to the diameter and width specifications of the aluminum foil roll, improving the compatibility with different aluminum foil rolls and effectively preventing the aluminum foil from deforming after forming.

[0023] 2. In this utility model, the humidity inside the protective shell is monitored in real time by a humidity detector. When the ambient humidity changes, the humidity detector converts the detected data into an electrical signal and transmits it to the humidity display for intuitive display. Based on the data on the display, the staff can take dehumidification measures in a timely manner. The protective shell forms a closed protective space for the aluminum foil roll inside, while the limiting plate and support plate play a role in positioning and supporting the aluminum foil roll. Attached Figure Description

[0024] Figure 1 is a perspective view of an aluminum foil forming anti-deformation support structure proposed in this utility model;

[0025] Figure 2 is a front view of an aluminum foil forming anti-deformation support structure proposed in this utility model;

[0026] Figure 3 is a cross-sectional view of the protective mechanism of the aluminum foil forming anti-deformation support structure proposed in this utility model;

[0027] Figure 4 is a schematic diagram of the sliding block of an aluminum foil forming anti-deformation support structure proposed in this utility model.

[0028] Figure 5 is a schematic diagram of the fixing plate of an aluminum foil forming anti-deformation support structure proposed in this utility model.

[0029] Legend:

[0030] 1. Support plate; 2. Protective mechanism; 201. Base plate; 202. Protective shell; 203. Limiting plate; 204. Humidity detector; 205. Humidity display; 3. Fixing plate; 4. Telescopic rod one; 5. Telescopic rod two; 6. Sliding block; 7. Support rod; 8. Positioning hole; 9. Connector; 10. Positioning bolt; 11. Fixing ring; 12. Anti-slip groove; 13. Rubber pad; 14. Connecting plate; 15. Fixing column; 16. Anti-slip block; 17. Pull rod; 18. Support block; 19. Hanging rod. Detailed Implementation

[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0032] Referring to Figures 1, 4, and 5, one embodiment of this utility model provides an anti-deformation support structure for aluminum foil forming, comprising multiple support plates 1 to provide a foundation and ensure stable load-bearing after the aluminum foil forming process. Telescopic rods 1-4 and 2-5 are fixedly connected between adjacent left and right support plates 1, allowing for flexible adjustment of the support spacing to adapt to the needs of aluminum foils of different sizes after forming. Fixed plates 3 are fixedly connected between adjacent left and right telescopic rods 1-4 and 2-5, strengthening the connection and fixing, and enhancing the overall structural stability. Support rods 7 are fixedly connected to the tops of the left and right support plates 1, increasing the vertical support strength. Sliding connections are made between the opposite sides of the left and right support rods 7. The movable block 6 is easy to adjust in height to adapt to aluminum foil forming operations of different heights. Multiple support rods 7 have multiple positioning holes 8 inside, which are used with positioning bolts 10 to accurately fix the position of the sliding block 6. Connectors 9 are fixedly connected between the two sliding blocks 6 on the left and the two sliding blocks 6 on the right, which are used to connect the sliding blocks 6 and make the two sides work together. A fixing ring 11 is fixedly connected to the middle of each of the two connectors 9 to firmly fix the aluminum foil roll and prevent it from shifting during the placement of the aluminum foil roll after the forming process. Positioning bolts 10 are rotatably connected to the outside of the multiple sliding blocks 6. By cooperating with the positioning holes 8, the height of the sliding block 6 is locked. A protective mechanism 2 is set at the bottom of the two support plates 1 to detect and prevent moisture from entering the interior of the aluminum foil roll, so as to avoid deformation or damage of the aluminum foil due to moisture.

[0033] Specifically, firstly, based on the aluminum foil size requirements, the distance between the two support plates 1 on the left and the two support plates 1 on the right is adjusted by telescopic rod 1 4 and telescopic rod 2 5. At the same time, the fixing plate 3 strengthens the connection between adjacent telescopic rods to ensure the stability of the horizontal support structure. According to the height required for aluminum foil forming, the sliding block 6 moves on the support rod 7. Since multiple positioning holes 8 are opened inside the multiple support rods 7, the position of the sliding block 6 is precisely fixed by screwing the positioning bolt 10 into the corresponding positioning hole 8, thereby realizing the adjustment of the vertical support height. After the position of the sliding block 6 is determined, the connector 9 connects the two sliding blocks 6, so that the two sides of the structure work together to enhance the overall stability. When the aluminum foil roll is placed after forming, the fixing ring 11 firmly fixes it to prevent displacement. The protection mechanism 2 located at the bottom of the two support plates 1 continuously monitors and prevents moisture from entering the interior of the aluminum foil roll, avoiding deformation or damage of the aluminum foil due to moisture, thus realizing the function of preventing deformation during aluminum foil forming.

[0034] Referring to Figures 1, 2, and 3, the protective mechanism 2 includes a base plate 201, which serves as a support and connecting component. The top of the base plate 201 is fixedly connected to the bottom of two support plates 1, providing stable support for the support plates 1 and ensuring the stability of the entire support structure. A protective shell 202 is fixedly connected to the outside of the base plate 201. The protective shell 202 protects the internal structure and aluminum foil, preventing external collisions from affecting the aluminum foil and causing damage. Two limiting plates 203 are fixedly connected to the top of the base plate 201. The limiting plates 203 can limit the fixed position of the support plates 1 on the base plate 201 and prevent displacement. A humidity detector 204 is fixedly connected to the middle left side of the protective shell 202. The humidity detector 204 is used to detect the humidity of the internal environment of the protective mechanism 2. A humidity display table 205 is connected to the right side of the humidity detector 204. The humidity display table 205 intuitively displays the humidity data detected by the humidity detector 204, making it convenient for operators to understand the internal humidity information in a timely manner.

[0035] Specifically, when the protective mechanism 2 is working, the base plate 201 is a device for supporting and fixing the structure. Connected to the bottom of the two support plates 1 at the top, it provides a stable support platform for the support plates 1, ensuring the stability of the entire support and withstanding pressure and load from above. The protective shell 202 connected to the outside of the base plate 201 tightly wraps the internal structure and aluminum foil. When external collisions or compressions occur, the protective shell 202 can effectively buffer external forces, preventing damage to the internal aluminum foil due to external factors and protecting its normal performance. The two limiting plates 203 at the top of the base plate 201 precisely limit the position of the support plates 1 on the base plate 201, preventing the support plates from being damaged through physical blocking. The support plate 1 shifts during use, enhancing the overall structural stability. The humidity detector 204 connected to the middle left side of the protective shell 202 continuously monitors the humidity of the internal environment of the protective mechanism 2 in real time, sensing changes in internal humidity. The detected humidity data is converted into values ​​on the humidity display table 205, which is connected to the humidity detector 204. Operators can check the humidity display table 205 to understand the humidity information inside the protective mechanism 2 in a timely and accurate manner. If the humidity is abnormal, measures are taken in time to adjust it to ensure the suitability of the internal environment and ensure that the internal structure of the aluminum foil is stored and placed in a good humidity environment.

[0036] Referring to Figures 1, 2, and 5, the top of the support plate 1 is provided with an anti-slip groove 12, and multiple rubber pads 13 are provided on the inner side of the anti-slip groove 12 to increase friction and prevent the aluminum foil from sliding. The top of the multiple support rods 7 are all fixedly connected with connecting plates 14 to connect the support rods 7 and the fixing posts 15. The bottom of the two connecting plates 14 on the left and the two connecting plates 14 on the right are all fixedly connected with fixing posts 15. The bottom right side of the two fixing posts 15 on the left is fixedly connected to the top right side of the left support plate 1, and the bottom of the two fixing posts 15 on the right is fixedly connected to the top left side of the right support plate 1. This enhances the connection stability between the support plates 1, improves the support effect on the aluminum foil, and prevents the aluminum foil roll after forming from deforming due to uneven force.

[0037] Specifically, during the aluminum foil forming process, the anti-slip groove 12 on the top of the support plate 1 and multiple rubber pads 13 work together. The anti-slip groove 12 increases the roughness of the contact surface, and the rubber pads 13 utilize elastic deformation and high friction characteristics to tightly adhere to the surface of the aluminum foil when it is placed on the support plate 1, increasing the friction between the two and effectively preventing the aluminum foil from sliding under gravity. This ensures that the aluminum foil is fixed in position after the forming process. When the aluminum foil is placed on the support plate 1 and subjected to processing pressure, the pressure is transmitted through the support plate 1 to the fixed column 15 and the connecting plate 14, and then distributed to the support rod 7. Due to the firm connection of the components, the gravity can be evenly distributed, avoiding excessive local stress. This prevents the aluminum foil from deforming due to uneven stress, ensuring that the aluminum foil remains stable during the forming process and ensuring the forming quality.

[0038] Referring to Figures 1, 2, and 4, the bottom of the base plate 201 is fixedly connected with multiple equidistant anti-slip blocks 16, which can effectively increase the friction with the placement surface and prevent the structure from sliding and displacing. The top of the protective shell 202 is fixedly connected with two pull rods 17, which makes it easy for users to lift and move the entire support structure using mechanical devices, facilitating handling operations. Multiple hanging rods 19 are fixedly connected around the outside of the protective shell 202, which are used by users to move the protective mechanism 2 using different mechanical devices. The bottom of the humidity display meter 205 is fixedly connected with a support block 18, and the rear side of the support block 18 is fixedly connected to the front middle of the protective shell 202, which can stably support the humidity display meter 205, maintain a stable display state, and facilitate users to clearly read the humidity information.

[0039] Specifically, when the support structure is placed on a flat surface, the equidistant anti-slip blocks 16 increase the friction with the surface to prevent the structure from sliding and ensure the stability of the entire support structure. When the support structure needs to be moved, the user can use two pull rods 17 in conjunction with a mechanical device to lift and move it. Multiple lifting rods 19 provide connection points for the user to use different mechanical devices for moving, improving the convenience and flexibility of moving. During the use of the support structure, the rear side of the support block 18 is fixedly connected to the front middle of the protective shell 202, providing stable support for the humidity display meter 205, keeping the humidity display meter 205 in a stable display state, making it easy for the user to clearly read the humidity information, and ensuring the efficient and stable operation of the entire support structure.

[0040] Working principle: After the aluminum foil roll is formed, the distance between the two support plates 1 on the left and the two support plates 1 on the right is adjusted by telescopic rod 1 4 and telescopic rod 2 5. At the same time, the fixing plate 3 strengthens the connection between adjacent telescopic rods to ensure the stability of the horizontal support structure. According to the height required for the aluminum foil forming operation, the sliding block 6 moves on the support rod 7. Multiple positioning holes 8 are used to precisely fix the position of the sliding block 6 by screwing the positioning bolt 10 into the corresponding positioning hole 8, so as to realize the adjustment of the vertical support height. After the position of the sliding block 6 is determined, the connector 9 connects the two sliding blocks 6, so that the two sides work together to enhance the overall stability. When the aluminum foil roll is placed after forming, the fixing ring 11 is used to firmly fix it to prevent displacement.

[0041] When the protective mechanism 2 is in operation, the base plate 201 is connected to the bottom of the two support plates 1, providing a stable support platform for the support plates 1, ensuring the stability of the entire support, and withstanding the pressure and load from above. The protective shell 202 tightly wraps the internal structure and aluminum foil. When there is an external collision or squeezing, the protective shell 202 can effectively buffer the external force and prevent the internal aluminum foil from being damaged by external factors, thus protecting normal performance. The two limiting plates 203 precisely limit the position of the support plates 1 on the base plate 201. Through physical blocking, they prevent the support plates 1 from shifting during use, enhancing the stability of the overall structure. The humidity detector 204 continuously monitors the humidity of the internal environment of the protective mechanism 2 in real time, sensing changes in internal humidity. The detected humidity data is converted into values ​​on the humidity display 205. Operators can check the humidity display 205 to understand the humidity information inside the protective mechanism 2 in a timely and accurate manner. If the humidity is abnormal, measures can be taken in time to adjust it to ensure the suitability of the internal environment and ensure that the internal structure of the aluminum foil is stored and placed in a good humidity environment.

[0042] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An aluminum foil forming anti-deformation support structure, comprising multiple support plates (1), characterized in that: Telescopic rod 1 (4) and telescopic rod 2 (5) are fixedly connected between adjacent support plates (1) on the left and right sides. Fixed plate (3) is fixedly connected between adjacent telescopic rod 1 (4) on the left and telescopic rod 2 (5) on the right. Support rod (7) is fixedly connected to the top of support plates (1) on the left and right sides. Sliding block (6) is slidably connected to the opposite side of support rod (7) on the left and right sides. Multiple positioning holes (8) are opened inside multiple support rods (7). Connector (9) is fixedly connected between adjacent sliding blocks (6) on the left and right sides. Fixed ring (11) is fixedly connected to the middle of two connectors (9). Positioning bolt (10) is rotatably connected to the outer side of multiple sliding blocks (6). Protective mechanism (2) is provided at the bottom of two support plates (1). The protective mechanism (2) is used to detect and prevent moisture from entering the interior of the tin foil roll.

2. The aluminum foil forming anti-deformation support structure according to claim 1, characterized in that: The protective mechanism (2) includes a base plate (201), the top of which is fixedly connected to the bottom of two support plates (1), a protective shell (202) is fixedly connected to the outside of the base plate (201), two limiting plates (203) are fixedly connected to the top of the base plate (201), a humidity detector (204) is fixedly connected to the middle left side of the protective shell (202), and a humidity display meter (205) is connected to the right side of the humidity detector (204).

3. The aluminum foil forming anti-deformation support structure according to claim 1, characterized in that: The top of the two support plates (1) is provided with anti-slip grooves (12), and multiple rubber pads (13) are provided on the inner side of the anti-slip grooves (12).

4. The aluminum foil forming anti-deformation support structure according to claim 1, characterized in that: Each of the support rods (7) has a connecting plate (14) fixedly connected to its top, and a fixing column (15) is fixedly connected to the bottom of each of the two connecting plates (14) on the left and the two connecting plates (14) on the right.

5. The aluminum foil forming anti-deformation support structure according to claim 4, characterized in that: The bottom right side of the two fixed columns (15) on the left is fixedly connected to the top right side of the left support plate (1), and the bottom of the two fixed columns (15) on the right is fixedly connected to the top left side of the right support plate (1).

6. The aluminum foil forming anti-deformation support structure according to claim 2, characterized in that: The bottom of the base plate (201) is fixedly connected with a plurality of anti-slip blocks (16), and the plurality of anti-slip blocks (16) are designed to be equidistant.

7. The aluminum foil forming anti-deformation support structure according to claim 2, characterized in that: Two tie rods (17) are fixedly connected to the top of the protective shell (202), and multiple hanging rods (19) are fixedly connected to the outer perimeter of the protective shell (202).

8. The aluminum foil forming anti-deformation support structure according to claim 2, characterized in that: The bottom of the humidity display (205) is fixedly connected to a support block (18), and the rear side of the support block (18) is fixedly connected to the front middle of the protective shell (202).