Stamping and pushing structure for radiator fins

By introducing components such as brackets, rollers, drums, and clamping bases into the radiator fin pushing structure, the offset problem during the fin pushing process is solved, realizing automated loading and unloading, and improving production efficiency and product quality.

CN223775845UActive Publication Date: 2026-01-09LIYANG HUACHUANG ENERGY EQUIPMENT CO LTD
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Patent Information

Application Number
CN202520195265.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-08
Publication Date
2026-01-09
Estimated Expiration
2035-02-08

AI Technical Summary

Technical Problem

In existing technologies, the heat sink fin pushing structure is prone to displacement and shaking during the pushing process. It lacks a fixing device, cannot achieve automated loading and unloading, and increases labor costs.

Method used

The device employs components such as a bracket, rotating wheel, roller, clamping base, lifting device, and position sensor. The roller provides support, the clamping base fixes the fins, the lifting device adjusts the height, and the position sensor monitors the position to ensure the accuracy and safety of the pushing process.

Benefits of technology

It improves the stability and reliability of fins during transportation and stamping, realizes automated loading and unloading, reduces labor costs, and improves production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a radiator fin stamping and pushing structure, and relates to the technical field of pushing structures, the pushing structure comprises a support, a discharging bin is installed above the support, rotating wheels are installed on the inner walls of the two sides of the discharging bin, a roller is installed between supporting blocks, one side of the discharging bin is provided with a clamping base station, and the other side of the discharging bin is provided with a pressing plate. A first supporting plate is installed between the two supports, a pushing device is installed above the first supporting plate, a position sensor is installed on the inner wall of the discharging bin, and fins are placed on the discharging bin. The position sensor is used for monitoring the positions of the fins in the discharging bin in real time, the pushing device is used for pushing the fins to conduct the stamping process again, manual intervention is reduced in the whole process, the machining and production efficiency of the fins is improved, and meanwhile the quality consistency of products can be improved easily.
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Description

TECHNICAL FIELD

[0001] The utility model relates to push structure technical field, concretely is a radiator fin stamping push structure. BACKGROUND

[0002] In today's industrial production field, the radiator plays a vital role, as a kind of key heat exchange equipment, its performance is directly related to the operation efficiency and stability of the whole industrial system, the fin part of the radiator, as the core component of this equipment, has decisive influence on realizing efficient heat dissipation effect, the traditional radiator fin production method mainly relies on manual operation or semi-automatic stamping technology, these methods are often accompanied by a series of problems such as low production efficiency, insufficient machining accuracy, low material utilization rate, with the continuous improvement of industrial automation level and the increasing requirement for heat dissipation performance, more strict and advanced requirements are put forward for the manufacturing process of the radiator fin, in order to achieve higher production efficiency, more accurate machining accuracy and higher material utilization rate, so as to ensure that the radiator can play the best performance in various industrial applications.

[0003] Prior art CN215469365U discloses a fin pushing tool, the technical scheme discloses "a fin pushing tool, comprising: a placing assembly, comprising a placing component, one end of the placing component is provided with an inner pushing mechanism, the placing component is used for placing multiple fins, and the inner pushing mechanism is used for pushing the fins to move to the other end of the placing component;Outer pushing mechanism, located at one end of the placing assembly;Transfer mechanism, located at one end of the placing assembly, and located at the same end with the outer pushing mechanism;The placing assembly is used for placing multiple fins, the outer pushing mechanism acts on the fins located at one end of the placing assembly, so that the fins move outward, and the transfer mechanism is used for receiving the pushed fins and driving the fins to move. The utility model discloses when processing the condenser, it is convenient to push and feed the fins, improves the automation degree when assembling the fins, correspondingly improves the processing efficiency of the condenser, and has strong practicality".

[0004] Although the prior art has disclosed a fin pushing tool, there are still some deficiencies, specifically, in the actual operation process, the pushing structure lacks a fixing device in the pushing process, and deviation and shaking are prone to occur in the pushing process, and the automatic feeding function cannot be realized in the fin pushing process, which increases the labor cost. SUMMARY

[0005] The utility model discloses a radiator fin stamping push structure to solve the problems in the prior art.

[0006] In order to achieve the above object, the utility model provides the following technical scheme: a heat radiator fin stamping push structure, the push structure includes support, the support top is equipped with the discharge bin, the discharge bin both sides inner wall is equipped with the runner, the supporting block between being equipped with the cylinder, the discharge bin one side is provided with the clamping base, the two supports between being equipped with the support plate one, the support plate one top is equipped with the lifting device and the push device, the discharge bin's inner wall is equipped with the position sensor, and the fin is placed in the discharge bin. The runner is used for providing support for the fin in the push process, the function of the cylinder is guiding the smooth movement of the fin, guaranteeing the stability of the fin in the transportation push process, the clamping base is used for fixing the fin, providing support for the fin in the stamping process, the lifting device is used for adjusting the height of the push device, and the push device is responsible for pushing the fin from the discharge bin into the clamping base, the position sensor can monitor the position of the fin in the discharge bin in real time, and data is fed back to the control system, ensuring the accuracy and safety of the push process.

[0007] The discharge bin bottom is provided with a through groove, the four groups of runners are symmetrically fixed on the inner wall of the discharge bin, the runners on the inner wall on one side of the discharge bin are provided with two supporting blocks, the two supporting blocks are provided with a cylinder, and the runners are connected through a chain on one side.

[0008] The clamping base is provided with a groove in the middle, the groove is provided with a fixed block away from the discharge bin on one side, and the fins are provided with baffles matched with the fixed block on both sides. The width of the through groove is the same as the diameter of the baffle, and the baffle moves in the groove to increase the stability.

[0009] The support plate one is located between the two supports away from the clamping base, the lifting device includes a cylinder one, the cylinder one is installed on the support plate one, a piston rod one is installed on the cylinder one, and a support plate two is installed above the piston rod one. The support plate one provides support for the lifting device and the push device to provide a stable support structure, and the cylinder one and the piston rod one cooperate to form a support structure that can move up and down.

[0010] The push device is installed on the support plate two, the push device includes a cylinder two, the cylinder two is installed on the support plate two, a piston rod two is installed on one side of the cylinder two, a moving block is installed on one side of the piston rod two, the moving block is a semicircular column, and the moving block is matched with the baffle. The support plate two provides support for the push device, the cylinder two is used for providing power to push the moving block, and the moving block pushes the fin to move.

[0011] The position sensor is located on the inner wall of the discharge bin close to one side of the second cylinder, and the position sensor is electrically connected with the control system.

[0012] Compared with the prior art, the utility model has the advantages that:

[0013] 1、The utility model discloses a supporting plate is provided for the fin through the drum rotating wheel, and the fin is transported stably through the drum, the fixed block on the clamping base is matched with the baffle on the fin, and the stability of the fixed fin is guaranteed, not only in the transportation process, but also in the stamping process, the fin can be kept in the ideal position, thereby the stability and reliability of the stamping process are greatly improved, and the quality of the final product is guaranteed.

[0014] 2、The utility model discloses the cooperation of the cylinder and the position sensor realizes real -time monitoring of the position of the fin and the moving block, and these information is passed to the control system, and the control system can intelligently control the operation of the cylinder according to the received data. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is the perspective drawing of the utility model;

[0016] Figure 2 It is the top view of the utility model;

[0017] Figure 3 It is the internal structure perspective drawing of the utility model;

[0018] Figure 4 It is the sectional view of the utility model;

[0019] Figure 5 It is the power device perspective drawing of the utility model.

[0020] In the drawing: 1, support;2, discharge bin;3, clamping base;4, fin;5, baffle;6, rotating wheel;7, supporting block;8, drum;9, fixed block;10, support plate one;11, cylinder one;12, piston rod one;13, support plate two;14, cylinder two;15, piston rod two;16, moving block;17, position sensor. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0022] Please refer to Figures 1-5 The utility model provides technical scheme: a heat radiator fin stamping push structure, push structure includes support 1, the top of support 1 is equipped with discharge bin 2, the inner wall of both sides of discharge bin 2 is equipped with runner 6, and the installation of supporting block 7 between roller 8, discharge bin 2 one side is provided with clamping base 3, and the installation of support plate one 10 between two support 1, the top of support plate one 10 is equipped with lifting device and pusher, the inner wall of discharge bin 2 is equipped with position sensor 17, and fin 4 is placed in discharge bin 2. Runner 6 is used to provide support for fin 4 during the push process, the effect of roller 8 is to guide the smooth movement of fin 4, ensure the stability of fin 4 in the transportation push process, clamping base 3 is used to fix fin 4, provide support for fin 4 during the stamping process, lifting device is used to adjust the height of pusher, pusher is responsible for pushing fin 4 from discharge bin 2 into clamping base 3, position sensor 17 can monitor the position of fin 4 in discharge bin 2 in real time, and data is fed back to the control system, to ensure the accuracy and safety of the push process.

[0023] The bottom of discharge bin 2 is provided with a through slot, four groups of runners 6 are symmetrically fixed on the inner wall of discharge bin 2, two supporting blocks 7 are installed between the runners 6 on the inner wall of one side of discharge bin 2, a roller 8 is installed between the two supporting blocks 7, the runners 6 are connected by a chain, and the chain is driven by a motor. The motor provides power for the whole structure, drives the chain to drive the runner 6 to rotate and transport the fin 4.

[0024] A recess is arranged in the middle of the clamping base 3, a fixed block 9 is arranged on the side of the recess away from the discharge bin 2, and baffles 5 are arranged on the two sides of the fin 4 and matched with the fixed block 9. The width of the through slot is the same as the diameter of the baffle 5, and the stability is increased when the baffle 5 moves in the recess.

[0025] The support plate one 10 is located between the two support 1 away from the clamping base 3, the lifting device includes a cylinder one 11, the cylinder one 11 is installed on the support plate one 10, a piston rod one 12 is installed on the cylinder one 11, and a support plate two 13 is installed above the piston rod one 12. The support plate one 10 provides support for the lifting device and the pusher to provide a stable support structure, and the cylinder one 11 and the piston rod one 12 cooperate to form a support structure that can move up and down.

[0026] The pushing device is installed on the support plate two 13, the pushing device comprises a cylinder two 14, the cylinder two 14 is installed on the support plate two 13, one side of the cylinder two 14 is provided with a piston rod two 15, one side of the piston rod two 15 is provided with a moving block 16, the moving block 16 is a semicircular column, and the moving block 16 is matched with the baffle 5. The support plate two 13 provides support for the pushing device, the cylinder two 14 is used for providing power to push the moving block 16, and the moving block 16 pushes the fin 4 to move.

[0027] The position sensor 17 is located on the inner wall of the discharge bin 2 close to one side of the cylinder two 14, and the position sensor 17 is electrically connected with the control system. The position sensor 17 can monitor the specific positions of the fin 4 and the moving block 16 in real time, so that the operation system can realize accurate pushing control.

[0028] The working principle of the utility model is as follows: in the working process of the pushing device, the fin 4 is placed on the rotating wheel 6 of the discharge bin 2, when stamping the fin 4 is needed, the control system controls the cylinder one 11 to operate, the cylinder one 11 pushes the piston rod one 12 to move upwards, the piston rod one 12 pushes the support plate two 13 to move upwards, when the position sensor 17 monitors that the moving block 16 moves upwards to the same height as the baffle 5, the control system controls the cylinder one 11 to stop operating, so that the pushing device is kept at the corresponding height, the control system controls the cylinder two 14 to operate, the cylinder two 14 operates to push the piston rod two 15 to move, the piston rod two 15 pushes the moving block 16 to move, the moving block 16 is matched with the baffle 5 on the fin 4, the baffle 5 on the fin 4 is matched with the fixed block 9, the continuous operation of the cylinder one 11 and the cylinder two 14 is kept, and the fixed effect is provided for the stamping of the fin 4.

[0029] After the stamping work is completed, the control system controls the cylinder two 14 to operate, the cylinder two 14 is retracted, the cylinder one 11 operates, the piston rod one 12 is driven to move downwards, the cylinder one 11 and the moving block 16 move downwards to below the discharge bin 2, so that the fin 4 is prevented from being hindered when being transported out of the discharge bin 2, the control system controls the motor to operate, the motor drives the chain to rotate, the rotating wheel 6 is driven to rotate, the rotating wheel 6 drives the fin 4 to move towards the discharge bin 2, and the two rollers 8 ensure that the fin 4 can move stably and is transported out of the device from the discharge bin 2.

[0030] It is apparent for a person skilled in the art that the present application is not restricted to the details of the above exemplary embodiments, but that it can be implemented in other concrete forms without departing from the spirit or the essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary only, and not limiting, the scope of the present application being defined by the appended claims rather than the above description, and all changes coming within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims concerned.

Claims

1. A heat sink fin stamping push structure, characterized by: The push structure includes a support (1), a discharge bin (2) is installed above the support (1), rotating wheels (6) are installed on the inner walls of the two sides of the discharge bin (2), rollers (8) are installed between the supporting blocks (7), a clamping base (3) is arranged on one side of the discharge bin (2), a supporting plate (10) is installed between the two supports (1), a lifting device and a pushing device are installed above the supporting plate (10), a position sensor (17) is installed on the inner wall of the discharge bin (2), and the fin (4) is placed in the discharge bin (2).

2. The fin push structure of claim 1, wherein: The discharge bin (2) is provided with a through slot at the bottom, four groups of rotating wheels (6) are symmetrically fixed on the inner walls of the discharge bin (2), the rotating wheels (6) on the inner walls of the two sides of the discharge bin (2) are installed between the two supporting blocks (7), the rollers (8) are installed between the two supporting blocks (7), the rotating wheels (6) are connected through chains, and the chains are driven by the motor.

3. The fin push structure of claim 2, wherein: The clamping base (3) is provided with a groove in the middle, the groove is provided with a fixed block (9) away from the discharge bin (2) on one side, and the fin (4) is provided with a baffle (5) matched with the fixed block (9) on the two sides.

4. The heat sink fin push-pull structure of claim 3, wherein: The supporting plate (10) is located between the two supports (1) away from the clamping base (3), the lifting device includes a cylinder (11), the cylinder (11) is installed on the supporting plate (10), a piston rod (12) is installed on the cylinder (11), and a supporting plate (13) is installed above the piston rod (12).

5. The fin push structure of claim 4, wherein: The pushing device is installed on the supporting plate (13), the pushing device includes a cylinder (14), the cylinder (14) is installed on the supporting plate (13), a piston rod (15) is installed on one side of the cylinder (14), a moving block (16) is installed on one side of the piston rod (15), the moving block (16) is a semicircular column, and the moving block (16) is matched with the baffle (5).

6. The fin push structure of claim 5, wherein: The position sensor (17) is located on the inner wall of the discharge bin (2) close to the cylinder (14), and the position sensor (17) is electrically connected with the control system.

Citation Information

Patent Citations

  • Fin pushing tool

    CN215469365U