Laminated fin collecting system
The stacked fin collection system utilizes a telescopic support mechanism and a pushing assembly to achieve stacked collection of fins, solving the problem of scattered fins and improving conveying efficiency and safety.
Patent Information
- Application Number
- CN202520365280.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-03-03
AI Technical Summary
In existing technologies, the fins lack a collection mechanism at the end of the conveying process, causing the fins to scatter and fall off, making them prone to damage.
A stacked fin collection system was designed. Through the cooperation of the first and second telescopic support mechanisms, the support plate and the pusher assembly, the fins are stacked and collected. The first telescopic support mechanism is used for temporary storage, the second telescopic support mechanism is used for stacking and the support plate is used for pushing out, so as to avoid the fins from scattering.
Fins can be stacked to avoid scattering, facilitate transfer, reduce damage, and improve conveying efficiency and safety.
Smart Images

Figure CN223751947U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of radiator, concretely is a kind of laminated fin collection system. BACKGROUND
[0002] Radiator is a kind of device for reducing the temperature of equipment or space, widely used in various fields, such as automobile, computer and industrial equipment etc. Its main function is to release the excess heat to the surrounding environment through heat exchange, so as to maintain the normal operating temperature of system, prevent the failure caused by overheating. In the automobile, radiator is usually connected with engine cooling system, through water or coolant circulation, the heat generated by engine is transferred to radiator, and then the heat is dissipated through air convection. At present, radiator has become an essential accessory of some products, and the commonly used radiator is generally composed of fin and base.
[0003] After the fin is made and processed, the fin is transported by conveying mechanism, but in the prior art, the conveying mechanism end is not provided with corresponding collecting mechanism, and the fin is scattered and dropped on the ground, and the fin is directly dropped and easily damaged. UTILITY MODEL CONTENT
[0004] The utility model aims at solving above-mentioned problem, provides a kind of laminated fin collection system, fin can be collected together in the form of stacking by the cooperation of first telescopic support mechanism, second telescopic support mechanism, supporting plate and pushing assembly, it is convenient for the transfer of fin after, can avoid the fin scattered and stacked on the ground.
[0005] To achieve the above object, the utility model provides the following technical scheme:
[0006] A kind of laminated fin collection system, including machine table, further including receiving mechanism being set on machine table, the receiving mechanism is equipped with the receiving slot being butt joint with the conveying mechanism of external device, first telescopic support mechanism and second telescopic support mechanism are arranged in the receiving slot symmetrically;Pushing assembly and the supporting plate of liftable are provided on the machine table, first telescopic support mechanism, second telescopic support mechanism and supporting plate are sequentially arranged from top to bottom;
[0007] The conveying mechanism of external device transports the fin one by one into receiving slot and is temporarily stored on first telescopic support mechanism;
[0008] The first telescopic support mechanism makes fin fall one by one and stack on second telescopic support mechanism by contraction;
[0009] The second telescopic support mechanism makes the fin that stacks fall on supporting plate by contraction;
[0010] The pusher assembly pushes the stacked fins out of the supporting plate after the supporting plate is reset downward.
[0011] In the above-described laminated fin collecting system, the first telescopic supporting mechanism comprises a first L-shaped plate and a first cylinder arranged on the receiving mechanism, a free end of a horizontal part of the first L-shaped plate is located in the receiving groove, the horizontal part of the first L-shaped plate is used for supporting fins, and a vertical part of the first L-shaped plate is connected with an output end of the first cylinder.
[0012] In the above-described laminated fin collecting system, the second telescopic supporting mechanism comprises a second L-shaped plate and a second cylinder arranged on the receiving mechanism, a free end of a horizontal part of the second L-shaped plate is located in the receiving groove, the horizontal part of the second L-shaped plate is used for supporting fins, and a vertical part of the second L-shaped plate is connected with an output end of the second cylinder.
[0013] In the above-described laminated fin collecting system, a lifting cylinder is arranged in the machine table, and an output end of the lifting cylinder is connected with the supporting plate.
[0014] In the above-described laminated fin collecting system, the pusher assembly comprises a pusher cylinder arranged on the machine table and a pusher plate arranged on an output end of the pusher cylinder, and the pusher plate is located on one side of the supporting plate.
[0015] In the above-described laminated fin collecting system, the receiving mechanism comprises a fixed frame and a mounting frame arranged at intervals on the machine table, and a gap between the fixed frame and the mounting frame forms a receiving groove for receiving fins.
[0016] Two first telescopic supporting mechanisms are arranged on the fixed frame and the mounting frame respectively, and two second telescopic supporting mechanisms are arranged on the fixed frame and the mounting frame respectively.
[0017] In the above-described laminated fin collecting system, a slide rail and a driving module are arranged on the machine table, the slide rail is arranged at two ends of the machine table, the mounting frame is arranged on the slide rail, the driving module is connected with the mounting frame, and the driving module is used for driving the mounting frame to move away from the fixed frame, so that the gap between the fixed frame and the mounting frame is increased.
[0018] In the above-described laminated fin collecting system, a guide conveying belt is further arranged, one end of the guide conveying belt is connected with the receiving groove, and the other end of the guide conveying belt is connected with an externally arranged conveying mechanism.
[0019] In the above-described laminated fin collecting system, a horizontal slide groove and a positioning baffle fixed on the slide groove by bolts are arranged on the top of the fixed frame, and the positioning baffle is used for limiting the sliding of the fins along the length direction of the receiving groove.
[0020] In the above-described laminated fin collecting system, the mounting frame is hingedly connected with a dustproof plate.
[0021] Compared with the prior art, the fin collecting system has the advantages that:
[0022] The first telescopic supporting mechanism, the second telescopic supporting mechanism, the supporting plate and the pushing assembly are matched, fins can be collected in a stacked form, the fins are convenient to transfer, and the fins can be prevented from being scattered on the ground. BRIEF DESCRIPTION OF DRAWINGS
[0023] Fig. 1 is a perspective view of the laminated fin collecting system of embodiment 1;
[0024] Fig. 2 is a sectional view of the laminated fin collecting system of embodiment 1;
[0025] Fig. 3 is a structural schematic view of the laminated fin collecting system of embodiment 1;
[0026] In the drawings, the reference numerals of the respective figures are:
[0027] 1, machine table; 11, supporting plate; 12, lifting cylinder; 13, sliding rail; 14, driving module; 2, receiving mechanism; 21, receiving groove; 22, fixing frame; 221, sliding groove; 23, mounting frame; 231, dustproof plate; 3, first telescopic supporting mechanism; 31, first cylinder; 32, first L-shaped plate; 4, second telescopic supporting mechanism; 41, second cylinder; 42, second L-shaped plate; 5, positioning baffle; 6, pushing assembly; 61, pushing cylinder; 62, pushing plate; 7, guide conveying belt. DETAILED DESCRIPTION
[0028] 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 in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0029] Embodiment 1
[0030] Reference Figs. 1-3The application relates to a laminated fin collecting system which comprises a machine table 1 and a receiving mechanism 2 arranged on the machine table 1, wherein the receiving mechanism 2 is provided with a receiving groove 21 which is connected with a conveying mechanism of an external device, and the first and second telescopic supporting mechanisms 3 and 4 are symmetrically arranged in the receiving groove 21; the machine table 1 is provided with a pushing assembly 6 and a liftable supporting plate 11, and the first telescopic supporting mechanism 3, the second telescopic supporting mechanism 4 and the supporting plate 11 are sequentially arranged from top to bottom.
[0031] The conveying mechanism of the external device conveys the fins into the receiving groove 21 and temporarily stores the fins on the first telescopic supporting mechanism 3.
[0032] The first telescopic supporting mechanism 3 makes the fins fall one by one and stack on the second telescopic supporting mechanism 4 through contraction.
[0033] The second telescopic supporting mechanism 4 makes the stacked fins fall on the supporting plate 11 through contraction.
[0034] The supporting plate 11 pushes the stacked fins out of the supporting plate 11 through the pushing assembly 6 after descending and resetting.
[0035] In the design, the conveying mechanism of the external device conveys the fins into the receiving groove 21, and the fins are temporarily stored on the first telescopic supporting mechanism 3 when the single fins enter the receiving groove 21; then the first telescopic supporting mechanism 3 is contracted, and the first telescopic supporting mechanism 3 resets to receive the next fin after the fins fall on the second telescopic supporting mechanism 4; the fins fall on the second telescopic supporting mechanism 4 through the contraction and resetting of the first telescopic supporting mechanism 3 and are stacked; when a certain amount of fins are stacked on the second telescopic supporting mechanism 4, the second telescopic supporting mechanism 4 is contracted to make the stacked fins fall on the supporting plate 11; then the supporting plate 11 descends and resets, and finally the fins stacked on the supporting plate 11 are pushed out through the pushing plate 62; after being pushed out, the supporting plate 11 ascends to receive the next batch of stacked fins; in this way, the fins can be collected in the form of stacking, the fins are convenient to transport, and the fins can be prevented from being scattered on the ground.
[0036] In the embodiment, the top of the fixing frame 22 is provided with a horizontally-arranged chute 221 and a positioning baffle 5 which is fixed on the chute 221 through bolts, and the positioning baffle 5 is used for limiting the sliding of the fins along the length direction of the receiving groove 21.
[0037] The first telescopic supporting mechanism 3 comprises a first L-shaped plate 32 and a first cylinder 31 arranged on the receiving mechanism 2, the free end of the horizontal part of the first L-shaped plate 32 is located in the receiving groove 21, the horizontal part of the first L-shaped plate 32 is used for supporting the fins, and the vertical part of the first L-shaped plate 32 is connected with the output end of the first cylinder 31.
[0038] The second telescopic supporting mechanism 4 comprises a second L-shaped plate 42 and a second cylinder 41 arranged on the receiving mechanism 2, the free end of the horizontal part of the second L-shaped plate 42 is located in the receiving groove 21, the horizontal part of the second L-shaped plate 42 is used to support the fin, and the vertical part of the second L-shaped plate 42 is connected with the output end of the second cylinder 41.
[0039] Specifically, the conveying mechanism of the external device conveys the fins one by one into the receiving groove 21, and the free end of the horizontal part of the first L-shaped plate 32 is located in the receiving groove 21, so that the first L-shaped plate 32 supports the bottom of the fin, the fin slides on the horizontal part of the first L-shaped plate 32 due to inertia, and the positioning baffle 5 blocks the sliding baffle to limit the position of the fin, then the first cylinder 31 drives the first L-shaped plate 32 to make the bottom of the fin lose support, so that the fin falls on the horizontal part of the second L-shaped plate 42, then the first cylinder 31 drives the first L-shaped plate 32 to reset to receive the next fin, and after the first cylinder 31 repeatedly drives the first L-shaped plate 32 for multiple times, a certain amount of fins are stacked on the horizontal part of the second L-shaped plate 42;
[0040] After the stacking is completed, the second cylinder 41 drives the second L-shaped plate 42, so that the fins stacked are lost the support of the bottom, and then fall on the supporting plate 11, after the stacked fins fall on the supporting plate 11, the supporting plate 11 is reset downward, then the pushing assembly 6 pushes the fins stacked on the supporting plate 11 out, and then the supporting plate 11 is raised to receive the next batch of stacked fins.
[0041] Preferably, the machine table 1 is provided with a lifting cylinder 12, and the output end of the lifting cylinder 12 is connected with the supporting plate 11. The lifting mechanism is arranged in the machine table 1 to drive the lifting of the supporting plate 11.
[0042] Preferably, the pushing assembly 6 comprises a pushing cylinder 61 arranged on the machine table 1 and a pushing plate 62 arranged on the output end of the pushing cylinder 61, and the pushing plate 62 is located on one side of the supporting plate 11.
[0043] Further, after the supporting plate 11 is reset downward, the pushing cylinder 61 drives the pushing plate 62 to move to push the fins stacked on the supporting plate 11 out, and after the stacked fins are pushed out, the supporting plate 11 is raised and lowered to receive the next batch of stacked fins.
[0044] More preferably, the receiving mechanism 2 comprises a fixed frame 22 and a mounting frame 23 arranged at intervals on the machine table 1, and the gap between the fixed frame 22 and the mounting frame 23 forms a receiving groove 21 for receiving fins;
[0045] Two first telescopic supporting mechanisms 3 are arranged on the fixed frame 22 and the mounting frame 23 respectively; two second telescopic supporting mechanisms 4 are arranged on the fixed frame 22 and the mounting frame 23 respectively.
[0046] Preferably, the machine table 1 is provided with a slide rail 13 and a driving module 14, the slide rail 13 is arranged at two ends of the machine table 1, the mounting frame 23 is arranged on the slide rail 13, the driving module 14 is connected with the mounting frame 23, and the driving module 14 is used for driving the mounting frame 23 to move away from the fixed frame 22, so that the gap between the fixed frame 22 and the mounting frame 23 is increased.
[0047] The driving module 14 can adopt a speed reducer, and the mounting frame 23 is driven to move on the slide rail 13 through the speed reducer.
[0048] Specifically, the fins have different widths, the mounting frame 23 is arranged on the slide rail 13, the mounting frame 23 is driven to move away from the fixed frame 22 by the driving module 14, and then the gap is increased, so that the fins with different widths are matched, and the compatibility is improved.
[0049] More preferably, the guiding conveying belt 7 is further arranged, one end of the guiding conveying belt 7 is connected with the receiving groove 21, and the other end of the guiding conveying belt 7 is connected with an external conveying mechanism.
[0050] Further, the external conveying mechanism conveys the fins one by one, the fins enter the guiding conveying belt 7 first, and then the fins are conveyed into the receiving groove 21 by the guiding conveying belt 7, so that the conveying of the fins is completed.
[0051] In the embodiment, the mounting frame 23 is hinged with a dustproof plate 231. The dustproof plate 231 can reduce the dust entering.
[0052] The above is only the preferred embodiment of the present application, and it should be pointed out that, for ordinary skilled in the art, without departing from the principles of the present application, a number of improvements or deformations can be made, and these improvements or deformations should be regarded as the protection range of the present application.
Claims
1. A stacked fin collection system comprising a machine table, wherein, The receiving mechanism is provided on the machine table and is provided with a receiving groove which is connected with the conveying mechanism of the external device, and the first and second telescopic supporting mechanisms are symmetrically arranged in the receiving groove; the machine table is provided with a pushing assembly and a liftable supporting plate, and the first and second telescopic supporting mechanisms and the supporting plate are sequentially arranged from top to bottom; The conveying mechanism of the external device conveys the fins one by one into the receiving groove and temporarily stores them on the first telescopic supporting mechanism; The first telescopic supporting mechanism makes the fins fall one by one and stack on the second telescopic supporting mechanism through contraction; The second telescopic supporting mechanism makes the stacked fins fall onto the supporting plate through contraction; After the supporting plate is reset by descending, the pushing assembly pushes the stacked fins out of the supporting plate.
2. A stacked fin collection system according to claim 1, wherein, The first telescopic supporting mechanism comprises a first L-shaped plate and a first cylinder arranged on the receiving mechanism, the free end of the horizontal part of the first L-shaped plate is located in the receiving groove, the horizontal part of the first L-shaped plate is used for supporting the fins, and the vertical part of the first L-shaped plate is connected with the output end of the first cylinder.
3. A laminated fin collection system according to claim 1, wherein, The second telescopic supporting mechanism comprises a second L-shaped plate and a second cylinder arranged on the receiving mechanism, the free end of the horizontal part of the second L-shaped plate is located in the receiving groove, the horizontal part of the second L-shaped plate is used for supporting the fins, and the vertical part of the second L-shaped plate is connected with the output end of the second cylinder.
4. The laminated fin collection system of claim 1, wherein, The machine table is provided with a lifting cylinder, and the output end of the lifting cylinder is connected with the supporting plate.
5. The laminated fin collection system of claim 1, wherein, The pushing assembly comprises a pushing cylinder arranged on the machine table and a pushing plate arranged on the output end of the pushing cylinder, and the pushing plate is located on one side of the supporting plate.
6. The laminated fin collection system of claim 1, wherein, The receiving mechanism comprises a fixed frame and a mounting frame which are arranged on the machine table at intervals, and the gap between the fixed frame and the mounting frame forms the receiving groove for receiving the fins; Two first telescopic supporting mechanisms are arranged on the fixed frame and the mounting frame respectively; and two second telescopic supporting mechanisms are arranged on the fixed frame and the mounting frame respectively.
7. A laminated fin collection system according to claim 6, wherein, The machine table is provided with a sliding rail and a driving module, the sliding rail is arranged at both ends of the machine table, the mounting frame is arranged on the sliding rail, the driving module is connected with the mounting frame, and the driving module is used for driving the mounting frame to move away from the fixed frame so as to increase the gap between the fixed frame and the mounting frame.
8. The laminated fin collection system of claim 1, wherein, The guiding conveying belt is connected with the receiving groove at one end and connected with the conveying mechanism of the external device at the other end.
9. The laminated fin collection system of claim 6, wherein, The top of the fixed frame is provided with a horizontally arranged sliding groove and a positioning baffle fixed on the sliding groove by bolts, and the positioning baffle is used for limiting the sliding of the fins along the length direction of the receiving groove.
10. The laminated fin collection system of claim 6, wherein, The mounting frame is hinged with a dustproof plate.