Baking device for aluminum cup processing

By designing clamping and spin-drying components in the baking device for aluminum cup processing, centrifugal force is used to spin out the moisture inside the aluminum cup and combined with hot air circulation, the problem of low drying efficiency of existing baking devices is solved, and a highly efficient aluminum cup drying effect is achieved.

CN224215698UActive Publication Date: 2026-05-08GUANGDONG BAIDE METAL GIFTS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG BAIDE METAL GIFTS CO LTD
Filing Date
2025-04-25
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

In existing baking equipment, due to the large amount of residual moisture inside the aluminum cup, most of the heat from the hot air is used to evaporate the moisture when it comes into contact with the aluminum cup, resulting in low drying efficiency.

Method used

A baking device for aluminum cup processing was designed, including a clamping component and a spin-drying component. The clamping component clamps the bottom side wall of the aluminum cup, and the spin-drying component uses centrifugal force to spin out the water. Combined with the heating element, a hot air circulation is formed to accelerate the evaporation of water.

Benefits of technology

Through precise clamping and spin-drying design, the drying efficiency of aluminum cups is significantly improved, the service life of heating elements is extended, and the quality and efficiency of aluminum cup processing are enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of aluminum cup processing, and discloses a baking device for aluminum cup processing, which comprises a dryer body and a feeding plate horizontally inserted in the dryer body, a clamping component is mounted on the feeding plate and used for clamping the bottom side wall of an aluminum cup, the opening of the aluminum cup faces downwards, a spin-drying component is mounted on the other clamping plate, and the spin-drying component is used for drying the aluminum cup. A heating piece is installed on the side wall of the drying machine body and arranged above the aluminum cup. The clamping position is accurately arranged on the side wall of the bottom of the aluminum cup, the rotating radius of the aluminum cup is greatly increased under the same rotating angular speed through the unique structure, centrifugal force during spin-drying is greatly improved, and internal residual water drops are efficiently thrown out; after the aluminum cup is spin-dried, the heating pieces on the side wall of the dryer body heat internal air to form hot air circulation, at the moment, due to the fact that most water is thrown out, the hot air can make efficient contact with the aluminum cup, evaporation of residual water is accelerated, the drying efficiency is improved, the influence of spin-drying water drops on the heating pieces is reduced, and the service life of the heating pieces is prolonged.
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Description

Technical Field

[0001] This utility model belongs to the field of aluminum cup processing technology, specifically, it relates to a baking device for aluminum cup processing. Background Technology

[0002] In modern manufacturing, aluminum cups are widely used in various fields such as food, beverage, and daily chemicals due to their advantages of being lightweight, corrosion-resistant, and relatively low-cost. With the continuous growth of market demand, higher requirements are being placed on the production efficiency and quality of aluminum cups, among which the baking process in aluminum cup manufacturing is crucial.

[0003] In existing baking equipment, due to the large amount of residual moisture inside the aluminum cup, most of the heat from the hot air is used to evaporate the moisture when it comes into contact with the aluminum cup, resulting in low drying efficiency.

[0004] In view of this, this utility model is proposed. Utility Model Content

[0005] To address the technical problem of low drying efficiency in existing baking devices where a large amount of moisture remains inside the aluminum cup, causing most of the heat from hot air to evaporate this moisture upon contact with the cup, the basic concept of this invention is as follows:

[0006] A baking apparatus for aluminum cup processing includes a dryer body and a feed plate horizontally inserted therein.

[0007] The feeding plate is equipped with a clamping assembly, which is used to clamp the bottom side wall of the aluminum cup, with the opening of the aluminum cup facing downwards.

[0008] The clamping assembly includes a pair of clamping plates placed on both sides of the aluminum cup, and the pair of clamping plates are connected by a screw and a matching nut. A sleeve is installed on the back of one of the clamping plates, and an insert rod is movably installed inside the sleeve. A positioning seat is installed on the insert rod, and the positioning seat is installed on the feeding plate.

[0009] Another clamping plate is equipped with a spin-drying assembly, which includes a swing motor, the output shaft of which is connected to the rotation center of the clamping plate without the sleeve installed;

[0010] Heating elements are installed on the side wall of the dryer body, and the heating elements are positioned above the aluminum cup.

[0011] In a preferred embodiment of the present invention, a base is installed at the bottom of the dryer body, and a support leg is screwed onto the base. A collection trough is provided inside the dryer body for collecting water droplets that are thrown out.

[0012] In a preferred embodiment of this utility model, a cover plate is installed at the end of the feeding plate. The cover plate is adapted to the inlet of the dryer body. A handle is installed on the cover plate, and the surface of the handle is provided with anti-slip grooves. An observation window for observing the internal drying status is opened on the surface of the cover plate.

[0013] In a preferred embodiment of this utility model, a pair of guide frames are installed on the side wall of the cover plate, and several pairs of rollers are installed on the pair of guide frames. A pair of parallel guide rails are installed on the inner side wall of the dryer body, and the rollers roll in the guide rails.

[0014] In a preferred embodiment of this utility model, the side wall of the cover plate is connected to the housing of the swing motor, a synchronous shaft is installed at the output end of the swing motor, the synchronous shaft movably passes through the cover plate, and the end of the synchronous shaft is connected to the rotation center of the clamping plate without the sleeve installed, and a limit seat is rotatably installed on the side wall of the synchronous shaft, and the limit seat is installed on the feeding plate.

[0015] In a preferred embodiment of this utility model, the surface of the feeding plate is provided with several pairs of feeding grooves, a sliding plate is installed at the bottom of the feeding plate, a limiting rod is movably installed through the sliding plate, one end of the limiting rod is installed on the side wall of the dryer body, and the other end of the limiting rod is installed with a limiting plate to prevent the sliding plate from disengaging.

[0016] Compared with the prior art, the present invention has the following advantages:

[0017] This utility model's baking device for aluminum cup processing is ingeniously designed, showcasing outstanding synergistic advantages. By precisely setting the clamping position on the bottom side wall of the aluminum cup, its unique structure significantly increases the cup's rotation radius at the same rotational angular velocity, greatly enhancing the centrifugal force during spin-drying and efficiently removing residual water droplets. Simultaneously, the screw and nut in the clamping assembly work together to adjust the spacing between the clamping plates, and the sleeve and insert rod are precisely positioned to ensure smooth movement of the clamping plates. The insert rod can flexibly adapt to aluminum cups of different sizes, achieving stable clamping. After the aluminum cup is spin-dried, the heating elements on the side wall of the dryer body heat the internal air, creating a hot air circulation. Since most of the moisture has been removed, the hot air can efficiently contact the aluminum cup, accelerating the evaporation of residual moisture, improving drying efficiency, reducing the impact of spin-dried water droplets on the heating elements, and extending their service life. This ingenious design allows the spin-drying, clamping, and drying processes to work closely together, comprehensively improving the quality and efficiency of aluminum cup processing.

[0018] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings. Attached Figure Description

[0019] In the attached diagram:

[0020] Figure 1This is a three-dimensional structural schematic diagram of the present invention;

[0021] Figure 2 This is a schematic diagram of the overall structure of this utility model;

[0022] Figure 3 This is a bottom view of the present invention;

[0023] Figure 4 This is a partial structural schematic diagram of the present invention.

[0024] In the picture:

[0025] 1. Dryer body; 2. Heating element; 3. Collection trough; 4. Feeding plate; 5. Discharge trough; 6. Clamping plate; 7. Screw; 8. Sleeve; 9. Insert rod; 10. Positioning seat; 11. Limiting seat; 12. Synchronous shaft; 13. Swing motor; 14. Cover plate; 15. Handle; 16. Observation window; 17. Slide plate; 18. Limiting rod; 19. Limiting plate; 20. Guide frame; 21. Roller; 22. Guide rail; 23. Base. Detailed Implementation

[0026] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions in the embodiments will be clearly and completely described below with reference to the accompanying drawings. The following embodiments are used to illustrate this utility model.

[0027] like Figures 1 to 4 As shown, the baking apparatus for aluminum cup processing includes a dryer body 1 and a feeding plate 4 horizontally inserted inside it.

[0028] A clamping assembly is installed on the feeding plate 4. The clamping assembly is used to clamp the bottom side wall of the aluminum cup, and the opening of the aluminum cup faces downward. This design has many advantages. First, the downward opening facilitates the natural falling of water droplets, reducing the water accumulation in the aluminum cup before drying. Second, during the subsequent spin-drying process, it can prevent water droplets from accumulating in the cup, improving the efficiency of spin-drying and drying.

[0029] The clamping assembly includes a pair of clamping plates 6 placed on both sides of the aluminum cup, and the pair of clamping plates 6 are connected by a screw 7 and a matching nut. A sleeve 8 is installed on the back of one of the clamping plates 6, and an insert rod 9 is movably installed inside the sleeve 8. A positioning seat 10 is installed on the insert rod 9 and the positioning seat 10 is installed on the feeding plate 4. A spin-drying assembly is installed on the other clamping plate 6. The spin-drying assembly includes a swing motor 13, and the output shaft of the swing motor 13 is connected to the rotation center of the clamping plate 6 without the sleeve 8 installed.

[0030] A heating element 2 is installed on the side wall of the dryer body 1. The heating element 2 is positioned above the aluminum cup to reduce the impact of splashing water droplets on the heating element 2 during the spin-drying process. This arrangement effectively reduces the contact between splashing water droplets and the heating element 2 during the spin-drying process, preventing damage to the heating element 2 due to water contact, extending the service life of the heating element 2, and ensuring the safety and stability of the drying process.

[0031] like Figures 1 to 4 As shown in the specific embodiment, a base 23 is installed at the bottom of the dryer body 1, and support legs are screwed onto the base 23. This makes the device more stable and can effectively reduce vibration and shaking during operation. A collection tank 3 is provided inside the dryer body 1. The collection tank 3 is used to collect the water droplets that are thrown out, preventing water droplets from accumulating inside the device, keeping the inside of the device clean, and reducing the risk of equipment damage caused by water accumulation.

[0032] like Figures 1 to 4 As shown, a cover plate 14 is further installed at the end of the feeding plate 4. The cover plate 14 is adapted to the inlet of the dryer body 1. A handle 15 is installed on the cover plate 14, and the surface of the handle 15 is provided with anti-slip grooves to facilitate the operator to push the feeding plate 4 and effectively prevent the hand from slipping during operation, thereby improving the convenience and safety of operation. In addition, an observation window 16 is opened on the surface of the cover plate 14 for observing the internal drying status, so that the operator can adjust the drying parameters in time to ensure the drying effect.

[0033] like Figures 1 to 4 As shown, furthermore, a pair of guide frames 20 are installed on the side wall of the cover plate 14, and several pairs of rollers 21 are installed on the pair of guide frames 20. A pair of parallel guide rails 22 are installed on the inner side wall of the dryer body 1, and the rollers 21 roll in the guide rails 22. This design makes the feeding plate 4 insert and withdraw from the dryer body 1 more smoothly, reduces friction, reduces the labor intensity of operators, and also improves the service life of the feeding plate 4.

[0034] like Figures 1 to 4 As shown, furthermore, the sidewall of the cover plate 14 is connected to the housing of the swing motor 13. A synchronous shaft 12 is installed at the output end of the swing motor 13. The synchronous shaft 12 movably passes through the cover plate 14, and its end is connected to the rotation center of the clamping plate 6 without the sleeve 8 installed. A limit seat 11 is rotatably installed on the sidewall of the synchronous shaft 12, and the limit seat 11 is installed on the feeding plate 4. The synchronous shaft 12 ensures that the power of the swing motor 13 can be stably and accurately transmitted to the clamping plate 6, driving the aluminum cup to swing and improving the spin-drying effect.

[0035] like Figures 1 to 4As shown, furthermore, the surface of the feeding plate 4 is provided with several pairs of feeding grooves 5, and a sliding plate 17 is installed at the bottom of the feeding plate 4. A limiting rod 18 is movably installed through the sliding plate 17. One end of the limiting rod 18 is installed on the side wall of the dryer body 1, and the other end of the limiting rod 18 is installed with a limiting plate 19 to prevent the sliding plate 17 from disengaging. This structure ensures the stability of the feeding plate 4 during movement, prevents the feeding plate 4 from deviating from the track or falling off, and improves the reliability of the device.

[0036] The operating principle of the baking device for aluminum cup processing is as follows:

[0037] The aluminum cup is placed on the clamping assembly of the feeding plate 4, positioned between a pair of clamping plates 6, with the clamping position precisely fixed on the bottom side wall of the cup. By rotating the screw 7 and nut, one of the clamping plates 6 is moved, thereby adjusting the spacing between the clamping plates 6. During this process, the sleeve 8 installed on the back of the clamping plate 6 slides along the insert rod 9. The cooperation between the insert rod 9 and the sleeve 8 provides precise positioning, ensuring the smooth movement of the clamping plate 6 and preventing deviation, until the clamping plate 6 tightly clamps the bottom side wall of the aluminum cup, with the cup opening facing downwards. This clamping method on the bottom side wall has significant advantages. When the aluminum cup rotates subsequently, because the bottom of the cup is relatively far from the center of rotation, according to the centrifugal force formula F=mrω² (where F is the centrifugal force, m is the mass of the object, r is the radius of rotation, and ω is the angular velocity), at the same angular velocity of rotation, the larger radius of rotation r significantly increases the centrifugal force on the aluminum cup. Meanwhile, the insertion rod 9 can be flexibly adjusted within the sleeve 8 to adapt to the placement of aluminum cups of different sizes, ensuring that the positioning seat 10 is firmly installed on the feeding plate 4, thus guaranteeing the clamping stability of the clamping plate 6 on the aluminum cup from multiple aspects.

[0038] Next, the feeding plate 4 is pushed so that the cover plate 14 at the end of the feeding plate 4 is aligned with the inlet of the dryer body 1. During this process, the rollers 21 on the guide frame 20 on the side wall of the cover plate 14 roll along the guide rail 22 on the inner side wall of the dryer body 1, ensuring that the feeding plate 4 is smoothly inserted into the dryer body 1. At the same time, the output shaft of the swing motor 13 drives the synchronous shaft 12 to rotate, and the clamping plate 6 without the sleeve 8 connected to the end of the synchronous shaft 12 swings accordingly, thereby causing the clamped aluminum cup to swing. Thanks to the clamping design of the cup bottom side wall, the water droplets remaining inside the aluminum cup can be more efficiently thrown out by centrifugal force during the swinging process. The collection tank 3 inside the dryer body 1 can collect these thrown water droplets and prevent water droplets from splashing everywhere.

[0039] At this point, the heating element 2 installed on the side wall of the dryer body 1 begins to function, heating the air inside the dryer body 1 to form a hot air circulation. After a large amount of moisture in the aluminum cup is shaken out, the cup body and the small amount of residual moisture inside the cup are in a relatively humid state. At this time, the hot air can contact the aluminum cup more efficiently, accelerating the evaporation of moisture and achieving the drying purpose. Compared with directly drying the aluminum cup with a large amount of moisture, the drying efficiency is significantly improved.

Claims

1. A baking apparatus for processing aluminum cups, comprising a dryer body (1) and a feeding plate (4) horizontally inserted therein, characterized in that: A clamping assembly is installed on the feeding plate (4). The clamping assembly is used to clamp the bottom side wall of the aluminum cup, and the opening of the aluminum cup faces downward. The clamping assembly includes a pair of clamping plates (6) placed on both sides of the aluminum cup, and the pair of clamping plates (6) are connected by a screw (7) and a matching nut. A sleeve (8) is installed on the back of one of the clamping plates (6), and a plug rod (9) is movably installed inside the sleeve (8). A positioning seat (10) is installed on the plug rod (9), and the positioning seat (10) is installed on the feeding plate (4). Another clamping plate (6) is equipped with a spin-drying assembly, which includes a swing motor (13) whose output shaft is connected to the rotation center of the clamping plate (6) without the sleeve (8) installed. The dryer body (1) has a heating element (2) installed on its side wall, and the heating element (2) is placed above the aluminum cup.

2. The baking apparatus for aluminum cup processing according to claim 1, characterized in that, The dryer body (1) is equipped with a base (23) at the bottom, and a support leg is screwed onto the base (23). A collection trough (3) is provided inside the dryer body (1) for collecting water droplets that are thrown out.

3. The baking apparatus for aluminum cup processing according to claim 1, characterized in that, The feed plate (4) is equipped with a cover plate (14) at its end. The cover plate (14) is adapted to the inlet of the dryer body (1). A handle (15) is installed on the cover plate (14), and the surface of the handle (15) is provided with an anti-slip groove. An observation window (16) for observing the internal drying status is opened on the surface of the cover plate (14).

4. The baking apparatus for aluminum cup processing according to claim 3, characterized in that, A pair of guide frames (20) are installed on the side wall of the cover plate (14), and several pairs of rollers (21) are installed on the pair of guide frames (20). A pair of parallel guide rails (22) are installed on the inner side wall of the dryer body (1), and the rollers (21) roll in the guide rails (22).

5. The baking apparatus for aluminum cup processing according to claim 3, characterized in that, The side wall of the cover plate (14) is connected to the housing of the swing motor (13). The output end of the swing motor (13) is equipped with a synchronous shaft (12). The synchronous shaft (12) moves through the cover plate (14), and the end of the synchronous shaft (12) is connected to the rotation center of the clamp plate (6) without the sleeve (8). The side wall of the synchronous shaft (12) is rotatably installed with a limit seat (11), and the limit seat (11) is installed on the feeding plate (4).

6. The baking apparatus for processing aluminum cups according to claim 1, characterized in that, The surface of the feeding plate (4) is provided with several pairs of feeding grooves (5). A sliding plate (17) is installed at the bottom of the feeding plate (4). A limiting rod (18) is movably installed through the sliding plate (17). One end of the limiting rod (18) is installed on the side wall of the dryer body (1), and the other end of the limiting rod (18) is installed with a limiting plate (19) to prevent the sliding plate (17) from disengaging.