Finished product stacking device for heating radiator head production line

By designing an automated feeding, sorting, and transfer structure, the problems of time-consuming, labor-intensive, and damaging traditional manual stacking of radiator heads have been solved, achieving automated and orderly stacking of radiator heads and improving product quality and warehousing efficiency.

CN224076629UActive Publication Date: 2026-04-03TANGSHAN SHANGTE METAL PRODUCTS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Radiator fins are small and numerous, and traditional manual stacking is time-consuming and labor-intensive, and they are easily damaged by collisions and squeezing, affecting product quality.

Method used

A finished product palletizing device was designed, which includes a feeding structure, a sorting structure, and a transfer structure. Through components such as conveyor belts, push plates, telescopic gates, and sliders, the device achieves automated sorting and orderly arrangement of radiator heads, reducing manual intervention and lowering the risk of damage.

Benefits of technology

It has enabled automated and orderly stacking of radiator heads, reducing labor costs, lowering the risk of damage, and improving product quality and warehousing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The finished product stacking device for the heating radiator head production line is characterized by comprising a piece feeding structure, an arrangement structure and a transfer structure, the arrangement structure is arranged on one side of the piece feeding structure, the piece feeding structure is connected with the arrangement structure in a welded mode, the transfer structure is arranged on one side of the arrangement structure, and the transfer structure is connected with the arrangement structure in a welded mode. The arrangement structure is improved, the arrangement structure is composed of the arrangement chamber, the retractable door and the retractable plate, the number of the radiator heads arranged at a time can be controlled through the retractable door, and the radiator heads which are arranged in a mess can be quickly transferred to the transfer structure through the retractable plate. According to the invention, a plurality of workers are replaced, the labor cost is reduced, the standardization of the operation process is facilitated, the reworking and adjusting time caused by improper placement of the heating radiator heads is shortened, the damage of the heating radiator heads caused by collision and extrusion in the carrying process is reduced, and the product quality is improved.
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Description

Technical Field

[0001] This utility model relates to the field of radiator tip production technology, and in particular to a finished product stacking device for a radiator tip production line. Background Technology

[0002] Radiator fins are typically located at the top and bottom of the radiator, and their main functions include preventing dust from entering and increasing the heat dissipation area. The design of the fins not only affects the radiator's aesthetics but also its heat dissipation efficiency and durability. Finished product palletizing equipment is a type of machinery used for automated processing of finished goods. Its main function is to sort, classify, and place various finished products produced on the production line in designated locations for subsequent transportation, storage, and management.

[0003] Existing patent CN115231326A discloses a finished product palletizing device for an insulation wall panel production line, including a first drive rail and a second drive rail. The first and second drive rails are staggered, with the second drive rail located above the first drive rail. Multiple electrically operated rotating rollers are linearly arranged between the first and second drive rails. Multiple insulation wall panels to be palletized are placed on the electrically operated rotating rollers in the first drive rail. A stacking mechanism for stacking the insulation wall panels is provided above the first drive rail. A horizontal pushing mechanism is provided above the stacking mechanism, and stacked insulation wall panel assemblies are arranged within the stacking mechanism. This invention uses a push rod fixed to a side push plate. The push rod is connected to a transmission toothed plate via a connecting plate. It should be noted that when the toothed plate moves, it drives the side push plate at the end of the push rod to push the already stacked insulation wall panels away from the stacking mechanism and onto the second drive rail for subsequent packaging.

[0004] Problems identified with existing technology: Radiator heads are small in size and numerous in number. Traditional manual stacking requires a lot of manpower and time. The finished radiator heads are arranged in a messy manner, making them very easy to collide and squeeze during transportation, which can lead to damage to the radiator heads and affect product quality. Utility Model Content

[0005] To address the above technical problems, this utility model provides a finished product stacking device for a radiator tip production line, characterized by comprising an infeed structure, a sorting structure, and a transfer structure. The sorting structure is provided on one side of the infeed structure, and the infeed structure and the sorting structure are connected by welding. The transfer structure is provided on one side of the sorting structure, and the sorting structure and the transfer structure are connected by welding.

[0006] The feeding structure consists of a feeding hopper, a conveyor belt, a baffle, and a pusher plate. A conveyor belt is installed on one side of the feeding hopper, and the feeding hopper and the conveyor belt are connected by threads and nuts. A baffle is installed on one side of the conveyor belt, and the conveyor belt and the baffle are connected by welding. A pusher plate is installed on one side of the baffle, and the baffle and the pusher plate are connected by welding. A support is installed on one side of the conveyor belt, and the support has reserved positions for installation on other equipment.

[0007] The sorting structure consists of a sorting chamber, a telescopic door, and a telescopic plate. The telescopic door is located on one side of the sorting chamber, and the sorting chamber and the telescopic door are connected by threads and nuts. A telescopic plate is located inside the sorting chamber, and the sorting chamber and the telescopic plate are connected by welding. A telescopic cylinder is connected to one side of the telescopic door, which controls the opening and closing of the door. The telescopic plate is electrically operated, and a quantity sensor is located on one side of the telescopic door. The quantity sensor controls the telescopic cylinder through a control device; the quantity sensor is a readily available commercially available device.

[0008] The transfer structure consists of a support column, a connecting platform, a slide rail, a slider, a holding box, and a stacking bin. A connecting platform is located on one side of the support column, and the support column and connecting platform are connected by welding. A slide rail is located on one side of the connecting platform, and the connecting platform and slide rail are connected by welding. A slider is located on one side of the slide rail, and a holding box is located on one side of the slider. The slider and holding box are connected by snap-fit ​​connections. Stacking bins are located at both ends of the connecting platform, and the connecting platform and stacking bins are connected by welding. A slot is located at the top of the slider. The holding box has several placement slots inside, with elongated slots along the edges of the placement slots. A telescopic plate passes through these elongated slots, dividing the placement slots into several compartments. A slot is located at the top of the holding box, and a locking head is located at the bottom of the holding box. The height of the four sides of the holding box is higher than the height of the radiator fins.

[0009] The beneficial effects of this utility model are as follows:

[0010] This utility model improves the feeding structure, which consists of a feeding hopper, a conveyor belt, a baffle, and a pusher plate. The feeding structure can flatten the longitudinally stacked radiator heads by pushing the pusher plate, so that the radiator heads are all on the same plane, preventing the radiator heads from stacking. This can significantly reduce the risk of the items collapsing due to instability and avoid accidents.

[0011] This invention improves the sorting structure, which consists of a sorting chamber, a telescopic door, and a telescopic plate. The telescopic door controls the number of radiator heads that can be sorted at one time, and the telescopic plate quickly organizes the randomly placed radiator heads into an orderly arrangement. This replaces multiple workers, reduces labor costs, helps standardize work processes, reduces rework and adjustment time caused by improper placement of radiator heads, reduces damage to radiator heads caused by collisions and compression during transportation, and improves product quality.

[0012] This utility model improves the transfer structure, which consists of a support column, a connecting platform, a slide rail, a slider, a holding box, and a stacking bin. It can uniformly place the sorted radiator heads into the stacking bin for unified packaging, making it easier to count and check the radiator heads, reducing errors caused by messy placement. The orderly arranged radiator heads can be stacked more compactly, making full use of storage space and reducing storage costs. At the same time, products can be sampled or fully inspected according to a certain order and standard, and products with quality problems can be identified in a timely manner, which facilitates product quality inspection and management. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of a finished product stacking device for a radiator tip production line according to the present invention;

[0014] Figure 2 This is a top view of a finished product stacking device for a radiator tip production line according to the present invention;

[0015] Figure 3 This is a partial schematic diagram of a finished product stacking device for a radiator tip production line according to the present invention;

[0016] Figure 4 This is a schematic diagram of a container for a finished product stacking device used in a radiator tip production line according to the present invention;

[0017] Figure 5 This is a schematic diagram of the telescopic plate passing through the holding box of a finished product stacking device for a radiator tip production line according to this utility model;

[0018] Figure 6 This is a schematic diagram of the telescopic plate of a finished product stacking device for a radiator tip production line according to the present invention.

[0019] As shown in the figure: 1 is the feeding hopper; 2 is the conveyor belt; 3 is the baffle; 4 is the push plate; 5 is the sorting chamber; 6 is the telescopic door; 7 is the telescopic plate; 8 is the support column; 9 is the connecting platform; 10 is the slide; 11 is the slider; 12 is the holding box; 13 is the palletizing bin; 14 is the card slot; 15 is the card head; 16 is the placement slot; 17 is the bracket. Detailed Implementation Example 1

[0020] This utility model provides a finished product stacking device for a radiator tip production line. Its features include an infeed structure consisting of an infeed hopper 1, a conveyor belt 2, a baffle 3, and a pusher 4; a sorting structure consisting of a sorting chamber 5, a telescopic door 6, and a telescopic plate 7; and a transfer structure consisting of a support column 8, a connecting platform 9, a slide rail 10, a slider 11, a holding box 12, and a stacking bin 13.

[0021] A conveyor belt 2 is installed on one side of the feeding hopper 1, and the feeding hopper 1 and the conveyor belt 2 are connected by threads and nuts. A baffle 3 is installed on one side of the conveyor belt 2, and the conveyor belt 2 and the baffle 3 are connected by welding. A push plate 4 is installed on one side of the baffle 3, and the baffle 3 and the push plate 4 are connected by welding. A telescopic door 6 is installed on one side of the sorting chamber 5, and the sorting chamber 5 and the telescopic door 6 are connected by threads and nuts. A telescopic plate 7 is installed inside the sorting chamber 5, and the sorting chamber 5 and the telescopic plate 7 are connected by welding. A connecting platform 9 is installed on one side of the support column 8, and the support column 8 and the connecting platform 9 are connected by welding. A slide rail 10 is installed on one side of the connecting platform 9, and the connecting platform 9 and the slide rail 10 are connected by welding. A slider 11 is installed on one side of the slide rail 10, and a holding box 12 is installed on one side of the slider 11. The slider 11 and the holding box 12 are connected by snap-fit. Palletizing bins 13 are installed at both ends of the connecting platform 9, and the connecting platform 9 and the palletizing bins 13 are connected by welding. Example 2

[0022] When using this utility model, the conveyor belt support 17 is connected to the outlet of the finished radiator heads through a reserved position. The radiator heads enter through the feed hopper 1 and move forward under the drive of the conveyor belt 2. The stacked radiator heads are pushed down by the push plate 4, so that the radiator heads are all on the same plane. The radiator heads pass through the gap between the push plate 4 and the conveyor belt 2. The radiator heads are prevented from falling by the baffle 3. The radiator heads enter the holding box 12 through the telescopic gate 6. The telescopic plate 7 at the rear of the holding box 12 first extends out through the long strip-shaped slot. The radiator heads first enter the rear placement slot 16. The remaining telescopic plates 7 extend out in sequence from back to front. The radiator heads are restricted in the placement slot 16 from back to front. When the quantity sensor above the telescopic gate 6 accumulates... When the number of stacked radiator heads reaches the set quantity, the telescopic cylinder is used by the control device to extend the telescopic door 6, preventing the radiator heads from entering further. After all the radiator heads entering the holding box 12 are restricted in the placement slot 16, the telescopic plate 7 retracts. The holding box 12 is transferred from above the slide rail 10 to the stacking bin 13 by the slider 11. The holding box 12 is removed from the slider 11 by the press-type buckle at the connection between the slider 11 and the holding box 12. The clip 15 of the holding box 12 is inserted into the clip 14 of the previous holding box 12 for stacking. The new holding box 12 is fixed to the slider 11 by the press-type buckle. The slider 11 moves to the top of the sorting chamber 5 and the above process continues. When in use, the holding box 12 can be placed on one side of the stacking bin 13 and the holding box 12 containing the radiator heads can be placed on the other side.

Claims

1. A finished product stacking device for a radiator fin head production line, characterized by Including the structure of the incoming, arrangement structure, transfer structure, one side of the incoming structure is provided with arrangement structure, one side of the arrangement structure is provided with transfer structure;The incoming structure is composed of incoming hopper, conveyor belt, baffle, push plate, one side of the incoming hopper is provided with conveyor belt, the incoming hopper and conveyor belt are connected through thread, nut, one side of the conveyor belt is provided with baffle, the conveyor belt and baffle are connected through welding, one side of the baffle is provided with push plate, the baffle and push plate are connected through welding;The arrangement structure is composed of arrangement room, telescopic door, telescopic plate, one side of the arrangement room is provided with telescopic door, the arrangement room and telescopic door are connected through thread, nut, the arrangement room is provided with telescopic plate, the arrangement room and telescopic plate are connected through welding;The transfer structure is composed of support column, connecting table, slide, sliding block, containing box, stacking warehouse, one side of the support column is provided with connecting table, the support column and connecting table are connected through welding, one side of the connecting table is provided with slide, the connecting table and slide are connected through welding, one side of the slide is provided with sliding block, one side of the sliding block is provided with containing box, the sliding block and containing box are connected through buckle, both ends of the connecting table are provided with stacking warehouse, the connecting table and stacking warehouse are connected through welding, the inside of the containing box is provided with a plurality of placing grooves, the edge of the placing groove is provided with long strip hole groove, the telescopic plate passes through long strip hole groove and divides the placing groove into a plurality of compartments, the containing box top is provided with clamping groove, the containing box bottom is provided with clamping head, the height of the four edges of the containing box is higher than the height of the head of the heating radiator.

2. The finished product stacking device for a radiator header production line according to claim 1, characterized in that, The incoming structure and arrangement structure are connected through welding, the arrangement structure and transfer structure are connected through welding.

Citation Information

Patent Citations

  • Finished product stacking device for thermal insulation wallboard production line

    CN115231326A