Radiator turnover mechanism

By designing a radiator flip mechanism including an inclined sliding rail and an arc rail, the low automation problem of manual flip fin in the prior art is solved, and the automatic flip and batch conveying of the radiator are realized, thereby reducing labor costs.

CN222845989UActive Publication Date: 2025-05-09WEIFANG XINLONGSHENG ELECTRONIC RADIATOR CO LTD
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Patent Information

Application Number
CN202421655612.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-05-09
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

When performing double-sided holes on the heat sink, the heat sink needs to be manually flipped, which has low automation and increases labor costs.

Method used

A radiator flip mechanism is designed, and by providing an inclined first sliding rail and a second sliding rail, combined with an arc-shaped rail, the radiator is automatically flipped and conveyed under the action of gravity.

Benefits of technology

The automatic flip and batch conveying of the radiator are realized, reducing the cost of manual flip and improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model is applicable to the technical field of turnover equipment, and provides a heat radiator turnover mechanism, which comprises a conveying track, the conveying track comprises a first sliding track and a second sliding track which are obliquely arranged, the first sliding track is connected with the second sliding track through an arc-shaped track, the inclination direction of the second sliding track is opposite to that of the first sliding track, and the arc-shaped track is arranged on the conveying track. The outer wall of the conveying rail is provided with a limiting convex edge for limiting rotation of the radiator, the front face of the radiator faces upwards when the radiator passes through the first sliding rail, and the back face of the radiator faces upwards when the radiator passes through the second sliding rail. Batch conveying and overturning of the radiators are achieved, it is guaranteed that the radiators are automatically overturned, and the manual overturning cost is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of flipping equipment, in particular to a radiator flipping mechanism. Background Art

[0002] A heat sink is a device that dissipates heat from heat-prone electronic components in electrical appliances. It is usually made of aluminum alloy, brass or bronze in the form of plates, sheets, or multiple sheets.

[0003] Existing heat sinks need to be integrated onto a plate body to form a heat dissipation structure that is perpendicular to the plate body. The heat dissipation structure needs to be punched during the processing. Many heat sinks need to be punched on both sides. In the prior art, when punching holes on both sides of the heat sink, the heat sink needs to be manually flipped over and then the punching process is performed. The degree of automation is low, which increases labor costs.

[0004] In summary, the existing technology obviously has inconveniences and defects in practical use, so it is necessary to improve it. Utility Model Content

[0005] In view of the above-mentioned defects, the purpose of the utility model is to provide a radiator flipping mechanism, which can realize batch transportation and flipping of radiators by setting a conveying track for conveying radiators, ensure automatic flipping of radiators, and reduce the cost of manual flipping.

[0006] In order to achieve the above-mentioned purpose, the utility model provides a radiator flipping mechanism, comprising: a conveying track, which includes a first sliding rail and a second sliding rail arranged obliquely, the first sliding rail and the second sliding rail are connected by an arc rail, the second sliding rail is inclined in the opposite direction to the first sliding rail, and the outer wall of the conveying track is provided with a limiting convex edge for limiting the rotation of the radiator, the front side of the radiator faces upward when passing through the first sliding rail, and the back side of the radiator faces upward when passing through the second sliding rail.

[0007] According to the radiator flipping mechanism of the utility model, the initial end of the first sliding rail and the end of the second sliding rail are respectively provided with a feed port and a discharge port, and the interior of the first sliding rail is provided with three parallel sliding areas, and each of the sliding areas is formed by a combination of the first sliding rail, the second sliding rail and the arc rail.

[0008] According to the radiator flipping mechanism of the utility model, a cleaning component for cleaning the fins of the radiator is provided on the outside of the conveying track at one side of the opening of the arc track. The cleaning component is rotatably connected to the conveying track, and a driving motor for driving the cleaning component to rotate is provided on the conveying track.

[0009] According to the radiator flipping mechanism of the utility model, the cleaning component includes: a rotating roller, which is rotatably connected to the conveying track and fixedly arranged on the output shaft of the driving motor; a cleaning sleeve, which is slidably connected to the rotating roller and slides to a position corresponding to the gap between the fins on the radiator during cleaning, and a cleaning head is rotatably connected to the cleaning sleeve.

[0010] According to the radiator flipping mechanism of the utility model, the outer wall of the cleaning sleeve is provided with a plurality of evenly arranged hinged seats, the cleaning head is rotatably connected to the hinged seats through a rotating sleeve, a limiting portion for limiting the rotation angle of the cleaning head is provided on the cleaning head, and at least one cleaning head is connected to each of the hinged seats.

[0011] According to the radiator turning mechanism of the utility model, the outer wall of the rotating roller is provided with a T-shaped groove, and the inner wall of the cleaning sleeve is provided with a protrusion matched with the T-shaped groove.

[0012] The utility model provides a radiator flipping mechanism, comprising: a conveying track, which comprises a first sliding rail and a second sliding rail which are arranged obliquely, and the oblique arrangement of the first sliding rail and the second sliding rail ensures that the radiator can be conveyed under the action of gravity when in use, and the flipping process is completed at the same time, the first sliding rail and the second sliding rail are connected by an arc rail, and when the radiator passes through the arc cabinet, the radiator is flipped and continued to be conveyed through the action of the arc cabinet, and the second sliding rail is tilted in the opposite direction to the first sliding rail, ensuring that the radiator can be normally conveyed after the flipping is completed, and the conveying The outer wall of the conveying track is provided with a limiting convex edge for limiting the rotation of the radiator. By setting the limiting convex edge, the radiator is prevented from being separated from the conveying track when the radiator is conveyed and flipped, and the position of the radiator is limited. The front side of the radiator faces upward when passing through the first sliding rail, and the back side of the radiator faces upward when passing through the second sliding rail, thereby ensuring subsequent processing of the front and back sides of the radiator. In summary, the technical effect produced by the utility model is that a conveying track for conveying the radiator is provided, so as to realize batch conveying and flipping of the radiators, ensure automatic flipping of the radiators, and reduce the cost of manual flipping. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a three-dimensional structural schematic diagram of the utility model;

[0014] Figure 2 This is a three-dimensional structural schematic diagram of the cleaning sleeve of the utility model;

[0015] Figure 3 This is a schematic diagram of the three-dimensional structure of the cleaning head of the utility model;

[0016] Figure 4This is a schematic diagram of the three-dimensional structure of the rotating roller of the utility model;

[0017] In the figure, 1-first sliding rail, 2-limiting convex edge, 3-radiator, 4-sliding area, 5-cleaning component, 51-cleaning sleeve, 52-protrusion, 53-hinge seat, 54-cleaning head, 55-limiting part, 56-rotating sleeve, 6-driving motor, 7-second sliding rail, 8-arc rail, 9-rotating roller, 91-T-slot. DETAILED DESCRIPTION

[0018] In order to make the purpose, technical solutions and advantages of the utility model more clearly understood, the utility model is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the utility model and are not used to limit the utility model.

[0019] See also Figure 1 The utility model provides a radiator flipping mechanism, which comprises a conveying track, which comprises a first sliding rail 1 and a second sliding rail 7 which are arranged obliquely. The oblique arrangement of the first sliding rail 1 and the second sliding rail 7 ensures that the radiator 3 can be conveyed under the action of gravity when in use, and the flipping process is completed at the same time. The first sliding rail 1 and the second sliding rail 7 are connected by an arc rail 8. When the radiator 3 passes through the arc cabinet, the radiator 3 is flipped and continued to be conveyed by the arc cabinet. The inclination direction of the second sliding rail 7 is opposite to that of the first sliding rail 1, so as to ensure that the radiator 3 can be normally conveyed after the flipping is completed. The outer wall of the conveying track is provided with a limiting convex edge 2 for limiting the rotation of the radiator 3. By setting the limiting convex edge 2, when the radiator 3 is conveyed and flipped, the radiator 3 is prevented from being separated from the conveying track, and the position of the radiator 3 is limited. When the radiator 3 passes through the first sliding rail 1, the front side faces up, and when the radiator 3 passes through the second sliding rail 7, the back side faces up, so as to ensure that the front and back sides of the radiator 3 are processed subsequently.

[0020] Preferably, the initial end of the first sliding rail 1 and the end of the second sliding rail of the utility model are respectively provided with a feed port and a discharge port to ensure normal loading and unloading of the radiator 3. The interior of the first sliding rail is provided with three sliding areas 4 arranged in parallel, and the normal sliding transportation of the radiator 3 is ensured by the sliding areas 4. Each of the sliding areas 4 is formed by a combination of the first sliding rail 1, the second sliding rail 7 and the arc rail 8. The outside of the conveying rail is located on the opening side of the arc rail 8 and is provided with a cleaning component 5 for cleaning the fins of the radiator 3. The radiator 3 is cleaned during the conveying process by the cleaning component 5, and it is ensured that when the radiator 3 is stuck in the arc rail 8, the cleaning component 5 is rotated in the opposite direction to push the radiator 3 into the interior of the second sliding rail 7. The cleaning component 5 is rotatably connected to the conveying rail, and a driving motor 6 for driving the cleaning component 5 to rotate is provided on the conveying rail, thereby realizing the cleaning and pushing of the radiator 3.

[0021] In addition, combined Figure 2 and Figure 3 The cleaning assembly 5 of the utility model includes: a rotating roller 9, which is rotatably connected to the conveying track, and the rotating roller 9 is fixed on the output shaft of the driving motor 6; a cleaning sleeve 51, which is slidably connected to the rotating roller 9. The cleaning sleeve 51 slides to a position corresponding to the gap between the fins on the radiator 3 during cleaning. A cleaning head 54 is rotatably connected to the cleaning sleeve 51. When the driving motor 6 drives the rotating roller 9 to rotate, the cleaning head 54 cleans the radiator 3. When rotating in the opposite direction, the cleaning head 54 no longer rotates when it rotates to a certain angle, and the radiator 3 moves toward the outlet of the arc track 8 under the pushing force of the cleaning head 54.

[0022] Furthermore, the outer wall of the cleaning sleeve 51 of the utility model is provided with a plurality of evenly arranged articulated seats 53, the cleaning head 54 is rotatably connected to the articulated seat 53 through a rotating sleeve 56, the cleaning head 54 is provided with a limiting portion 55 for limiting the rotation angle of the cleaning head 54, each of the articulated seats 53 is connected with at least one cleaning head 54, and by arranging a plurality of cleaning heads 54 to cooperate, the radiator 3 can be fully cleaned, the outer wall of the rotating roller 9 is provided with a T-slot 91, and the inner wall of the cleaning sleeve 51 is provided with a protrusion 52 that cooperates with the T-slot 91, to ensure that when cleaning radiators 3 of different sizes, the cleaning member can be adjusted in position to adapt to radiators 3 of different sizes.

[0023] In this embodiment, combined with Figure 1 to Figure 4When in use, the radiator 3 to be processed is brought from the feed port into the interior of the sliding area 4 through the conveyor belt. Under the action of gravity, the radiator 3 slides downward. When it slides to the arc rail 8, the drive motor 6 rotates at this time, driving the cleaning component 5 to rotate. At this time, the rotation direction of the cleaning component 5 is opposite to the sliding direction of the radiator 3, ensuring that the cleaning head 54 can clean the radiator 3. When the radiator 3 is stuck on the arc rail 8, the cleaning component 5 rotates in the opposite direction. At this time, the cleaning head 54 cannot rotate under the action of the limit part 55, so that the radiator 3 is pushed to slide under the thrust of the cleaning head 54, completing the flipping of the radiator 3 inside the arc rail 8, and then entering the interior of the second sliding rail 7 to complete the flipping process.

[0024] In summary, the utility model provides a radiator flipping mechanism, including: a conveying track, which includes a first sliding rail and a second sliding rail that are inclined. The inclined setting of the first sliding rail and the second sliding rail ensures that the radiator can be conveyed under the action of gravity during use, and the flipping process is completed at the same time. The first sliding rail and the second sliding rail are connected by an arc rail. When the radiator passes through the arc cabinet, the radiator is flipped by the action of the arc cabinet and then continued to be conveyed. The second sliding rail is inclined in the opposite direction to the first sliding rail, ensuring that the radiator can be normally conveyed after the flipping is completed. The outer wall of the conveying track is provided with a limiting convex edge for limiting the rotation of the radiator. By setting the limiting convex edge, the radiator is prevented from being separated from the conveying track when the radiator is conveyed and flipped, and the position of the radiator is limited. The front side of the radiator faces upward when passing through the first sliding rail, and the back side of the radiator faces upward when passing through the second sliding rail, thereby ensuring subsequent processing of the front and back sides of the radiator. In summary, the technical effect produced by the utility model is that a conveying track for conveying the radiator is provided to realize batch conveying and flipping of the radiators, thereby ensuring automatic flipping of the radiators and reducing the cost of manual flipping.

[0025] Of course, the present invention may have many other embodiments. Without departing from the spirit and essence of the present invention, technicians familiar with the field can make various corresponding changes and deformations based on the present invention, but these corresponding changes and deformations should all fall within the scope of protection of the claims attached to the present invention.

[0026] In the description of the present utility model, it should be understood that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present utility model. In addition, the terms "first", "second", etc. are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, features defined as "first", "second", etc. may explicitly or implicitly include one or more of the features. In the description of the present utility model, unless otherwise specified, "multiple" means two or more.

Claims

1. A radiator flipping mechanism, characterized in that: include: The conveying track comprises a first sliding rail and a second sliding rail which are arranged obliquely, wherein the first sliding rail and the second sliding rail are connected by an arc-shaped rail, the second sliding rail is inclined in the opposite direction to the first sliding rail, and the outer wall of the conveying track is provided with a limiting convex edge for limiting the rotation of the radiator, the front side of the radiator faces upward when passing through the first sliding rail, and the reverse side of the radiator faces upward when passing through the second sliding rail.

2. The heat sink flipping mechanism according to claim 1, characterized in that: The initial end of the first sliding rail and the end of the second sliding rail are respectively provided with a feed port and a discharge port, and the interior of the first sliding rail is provided with three parallel sliding areas, and each of the sliding areas is formed by a combination of the first sliding rail, the second sliding rail and the arc rail.

3. The radiator turning mechanism according to claim 1 or 2, characterized in that: A cleaning assembly for cleaning the fins of the radiator is provided outside the conveying track at one side of the opening of the arc track. The cleaning assembly is rotatably connected to the conveying track, and a driving motor for driving the cleaning assembly to rotate is provided on the conveying track.

4. The heat sink flipping mechanism according to claim 3, characterized in that: The cleaning component comprises: A rotating roller, which is rotatably connected to the conveying track, and the rotating roller is fixed on the output shaft of the driving motor; A cleaning sleeve is slidably connected to the rotating roller. When cleaning, the cleaning sleeve slides to a position corresponding to the gap between the fins on the radiator. A cleaning head is rotatably connected to the cleaning sleeve.

5. The heat sink turning mechanism according to claim 4, characterized in that: The outer wall of the cleaning sleeve is provided with a plurality of evenly arranged hinged seats, the cleaning head is rotatably connected to the hinged seats via a rotating sleeve, a limiting portion for limiting the rotation angle of the cleaning head is provided on the cleaning head, and at least one cleaning head is connected to each of the hinged seats.

6. The radiator turning mechanism according to claim 4 or 5, characterized in that: The outer wall of the rotating roller is provided with a T-shaped groove, and the inner wall of the cleaning sleeve is provided with a protrusion matched with the T-shaped groove.