Rubber-covered wire lamp patch cooling structure
By setting a cooling mechanism on the side of the pick-and-place machine, the problem of adjusting the airflow direction and volume in the prior art is solved, as is the problem of the fixed position of the exhaust fan in the prior art. This allows for adjustment based on the location of heat generation, thus achieving a heat dissipation and cooling effect.
Patent Information
- Application Number
- CN202423190601.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-23
AI Technical Summary
In existing surface mount technology (SMT) machines, the exhaust fan is positioned in a fixed location, making it difficult to adjust according to the location of heat generation, which affects the heat dissipation and cooling effect.
A cooling mechanism is installed on the side of the pick-and-place machine, which includes an airflow adjustment component and an airflow adjustment component. By using a fan to deliver air and combining the airflow direction and airflow adjustment components, the airflow direction and airflow volume can be adjusted to adapt to the location of heat generation.
It achieves precise heat dissipation based on the location of heat generation, solves the problem of airflow adjustment in existing technologies, and realizes the heat dissipation and cooling effect.
Smart Images

Figure CN223741094U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cooling structure technology, specifically to a cooling structure for a lamp patch. Background Technology
[0002] Pick and place machines, also known as "placement machines," are used in the production of cord lamps. In the production line, they are located after the dispensing machine or screen printer and are devices that place components by moving the placement head. A pick and place machine mainly includes a main unit, a working head assembly, a vision system, a feeding platform, a shaft structure, transport rail components, a nozzle station, an air supply component, and input and operating components. The feeding platform includes a stepping feeder and a tray receiving bracket.
[0003] To reduce the internal temperature of a pick-and-place machine, a cooling device is usually installed. The exhaust fan in the cooling device dissipates the heat inside the pick-and-place machine. However, in actual use, the location of heat generation in the pick-and-place machine is usually determined by the workload of the internal working components. When the workload of a certain working component is high, it generates more heat. However, the position of the exhaust fan is fixed and it is difficult to adjust it according to the location of heat generation, which affects the heat dissipation and cooling effect.
[0004] Based on this, a cooling structure for lamp pads is now provided, which can eliminate the drawbacks of existing devices. Utility Model Content
[0005] The purpose of this invention is to provide a cooling structure for a lamp patch to solve the problems in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] The cooling structure for LED patch panels includes a cooling mechanism located on the side of the LED patch panel machine. The cooling mechanism includes a housing, which is a door-shaped structure. The housing has mounting slots on both sides, each mounting slot has a fan assembly, and the upper end of the mounting slot has a ventilation pipe. The ventilation pipe has an air outlet on the side closest to the LED patch panel machine, and the air outlet has an air direction adjustment component and an air volume adjustment component inside the air outlet.
[0008] Based on the above technical solutions, this utility model also provides the following optional technical solutions:
[0009] In one alternative: the ventilation duct has a total of six air outlets, four of which are located above the LED patch panel machine, and the other two are symmetrically arranged on both sides of the LED patch panel machine.
[0010] In one alternative: a baffle is provided at the corner of the ventilation duct, the baffle is fixed obliquely to the side wall of the ventilation duct, a partition is provided in the middle of the ventilation duct, a first sealing plate is provided on the outside of the mounting groove, and a second sealing plate is provided on one side of the ventilation duct.
[0011] In one alternative: the fan assembly includes a fan mounted on the top plate of the mounting slot, the top plate of the mounting slot having an air outlet slot and one side of the mounting slot having an air inlet slot.
[0012] In one alternative embodiment: the airflow adjustment component includes a mounting frame disposed within the air outlet, movable plates evenly distributed within the mounting frame, a fixed shaft at the upper end of each movable plate being rotatably connected to the mounting frame, a connecting shaft at the lower end of each movable plate, and a drive component mounted on each movable plate.
[0013] In one alternative embodiment: the drive assembly includes a first motor and a connecting rod, the connecting rod being disposed on a connecting shaft, the connecting rod having a mounting hole, the connecting rod being installed in the mounting hole, the first motor being fixed to the outside of the housing, the output end of the first motor having a connecting rod, the connecting rod being connected to the fixed shaft.
[0014] In one alternative embodiment: the air volume regulating component includes a movable plate and a control component, the movable plate is located on one side of the air outlet, one end of the movable plate is hinged to the inner wall of the ventilation duct, and the control component is located on one side of the movable plate.
[0015] In one alternative embodiment: the control assembly includes a telescopic rod disposed between the movable plate and the inner wall of the ventilation duct, the fixed end of the telescopic rod being hinged to the inner wall of the ventilation duct, and the output end of the telescopic rod being hinged to the movable plate.
[0016] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0017] This invention solves the problem that the exhaust fan in existing pick-and-place machine cooling devices is fixed in position and difficult to adjust according to the location of heat generation, thus affecting the heat dissipation and cooling effect, by setting a cooling mechanism on the side of the LED pick-and-place machine and by cooperating with the air direction adjustment component and the air volume adjustment component. Attached Figure Description
[0018] Figure 1 This is a structural schematic diagram of one side of the present invention.
[0019] Figure 2 This is a schematic diagram of the structure on the other side of this utility model.
[0020] Figure 3 This is a schematic diagram of the cooling mechanism in this utility model.
[0021] Figure 4 This is a schematic diagram of the wind direction adjustment component in this utility model.
[0022] Figure reference numerals: 100, LED strip mounting machine; 200, cooling mechanism; 201, housing; 202, mounting slot; 203, ventilation duct; 204, air outlet; 205, baffle; 206, partition; 207, first sealing plate; 208, second sealing plate; 300, fan assembly; 301, fan; 302, air outlet slot; 303, air inlet slot; 400, air direction adjustment assembly; 401, mounting frame; 402, movable plate; 403, fixed shaft; 404, connecting shaft; 405, connecting rod; 406, mounting hole; 407, first motor; 408, connecting rod; 500, air volume adjustment assembly; 501, movable plate; 502, telescopic rod. Detailed Implementation
[0023] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments.
[0024] In one embodiment, such as Figures 1-3 As shown, the cooling structure for the LED patch panel includes a cooling mechanism 200 located on the side of the LED patch panel machine 100. The cooling mechanism 200 includes a housing 201, which is a door-shaped structure. Mounting slots 202 are provided on both sides of the housing 201. A fan assembly 300 is provided in each mounting slot 202. A ventilation pipe 203 is provided at the upper end of the mounting slot 202. An air outlet 204 is provided on the side of the ventilation pipe 203 closest to the LED patch panel machine 100. An air direction adjustment component 400 is provided at the air outlet 204, and an air volume adjustment component 500 is provided inside the air outlet 204. In use, the fan assembly 300 is activated to send air into the ventilation pipe 203, which then blows through the air outlet 204 towards the LED patch panel machine 100. The air direction adjustment component 400 can adjust the air direction at the air outlet 204, and the air volume adjustment component 500 can adjust the air volume of each air outlet 204.
[0025] In one embodiment, such as Figure 3 As shown, the ventilation duct 203 has a total of six air outlets 204. Four of the air outlets 204 are located above the LED chip mounter 100, and the other two air outlets 204 are symmetrically arranged on both sides of the LED chip mounter 100. When in use, the fan assembly 300 is started to send air into the ventilation duct 203, and then the air is blown through the six air outlets 204 onto the LED chip mounter 100 to cool it down.
[0026] In one embodiment, such as Figure 3As shown, a baffle 205 is provided at the corner of the ventilation duct 203. The baffle 205 is fixed at an angle to the side wall of the ventilation duct 203. A partition 206 is provided in the middle of the ventilation duct 203. A first sealing plate 207 is provided on the outside of the mounting groove 202. A second sealing plate 208 is provided on one side of the ventilation duct 203. The ventilation duct 203 is divided into two sections by the partition 206. Each fan assembly 300 provides airflow to one section of the ventilation duct 203.
[0027] In one embodiment, such as Figure 3 As shown, the fan assembly 300 includes a fan 301, which is mounted on the top plate of the mounting slot 202. The top plate of the mounting slot 202 is provided with an air outlet slot 302, and an air inlet slot 303 is provided on one side of the mounting slot 202. In use, the fan 301 sends air into the ventilation duct 203, and then blows it through the air outlet 204 to the LED patch machine 100.
[0028] In one embodiment, such as Figure 4 As shown, the wind direction adjustment component 400 includes a mounting frame 401, which is located inside the air outlet 204. Movable plates 402 are evenly distributed inside the mounting frame 401. A fixed shaft 403 is provided at the upper end of the movable plate 402, and the fixed shaft 403 is rotatably connected to the mounting frame 401. A connecting shaft 404 is provided at the lower end of the movable plate 402. A drive component is provided on the movable plate 402. In use, when the air generated by the fan 301 passes through the air outlet 204, it is blown out along the movable plate 402. The tilt angle of the movable plate 402 is adjusted by the drive component, thereby changing the wind direction.
[0029] In one embodiment, such as Figure 4 As shown, the drive assembly includes a first motor 407 and a connecting rod 405. The connecting rod 405 is mounted on the connecting shaft 404 and has a mounting hole 406. The connecting rod 405 is installed in the mounting hole 406. The first motor 407 is fixed to the outside of the housing 201. The output end of the first motor 407 has a connecting rod 408, which is connected to the fixed shaft 403. In use, the first motor 407 drives the connecting rod 408 to rotate, which in turn drives a movable plate 402 to rotate. Then, the connecting rod 405 drives other movable plates 402 to rotate synchronously, thereby achieving the effect of adjusting the wind direction.
[0030] In one embodiment, such as Figure 3 As shown, the air volume regulating component 500 includes a movable plate 501 and a control component. The movable plate 501 is located on one side of the air outlet 204, and one end of the movable plate 501 is hinged to the inner wall of the ventilation pipe 203. The control component is located on one side of the movable plate 501. In use, the air volume of the air outlet 204 is adjusted by controlling the size of the opening between the movable plate 501 and the ventilation pipe 203 through the control component.
[0031] In one embodiment, such as Figure 3As shown, the control component includes a telescopic rod 502, which is located between the movable plate 501 and the inner wall of the ventilation duct 203. The fixed end of the telescopic rod 502 is hinged to the inner wall of the ventilation duct 203, and the output end of the telescopic rod 502 is hinged to the movable plate 501. In use, by controlling the extension and retraction of the telescopic rod 502, the movable plate 501 is rotated, thereby adjusting the air volume of the air outlet 204 by adjusting the size of the opening between the movable plate 501 and the ventilation duct 203.
[0032] The above embodiment discloses a cooling structure for LED patch panels. In use, the fan 301 sends air into the ventilation duct 203, which then blows through six air outlets 204 onto the LED patch panel machine 100 to cool it down. When the LED patch panel machine 100 experiences localized overheating, the extension and retraction of the telescopic rod 502 is controlled to rotate the movable plate 501. This adjusts the airflow of the corresponding air outlet 204 by adjusting the size of the opening between the movable plate 501 and the ventilation duct 203. Then, the first motor 407 drives the connecting rod 408 to rotate, causing one movable plate 402 to rotate. The connecting rod 405 then drives other movable plates 402 to rotate synchronously, thereby adjusting the airflow direction and ensuring that the air is accurately directed to the overheated area.
[0033] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A cooling structure of a flexible light sheet patch, comprising a cooling mechanism (200) arranged at the side of a flexible light sheet patch machine (100), characterized in that, The cooling mechanism (200) includes a box (201), the box (201) is a door-shaped structure, both sides of the box (201) are provided with mounting grooves (202), the mounting grooves (202) are provided with fan assemblies (300), the upper end of the mounting groove (202) is provided with a ventilation pipe (203), the ventilation pipe (203) is provided with an air outlet (204) on the side of the vinyl lamp patch machine (100), the air outlet (204) is provided with a wind direction adjusting assembly (400), and the air outlet (204) is provided with a wind volume adjusting assembly (500) on the inner side.
2. The flat cable lamp patch cooling structure according to claim 1, characterized in that, Six air outlets (204) are arranged in the ventilation pipe (203), four of which are located above the vinyl lamp patch machine (100), and the other two are symmetrically arranged on both sides of the vinyl lamp patch machine (100).
3. The flat cable lamp patch cooling structure according to claim 1, wherein, The ventilation pipe (203) is provided with a baffle (205) at the corner, the baffle (205) is inclinedly fixed on the side wall of the ventilation pipe (203), the middle position of the ventilation pipe (203) is provided with a partition (206), the outer side of the mounting groove (202) is provided with a first sealing plate (207), and the side of the ventilation pipe (203) is provided with a second sealing plate (208).
4. The flat cable lamp patch cooling structure according to claim 1, characterized in that, The fan assembly (300) includes a fan (301), the fan (301) is installed on the top plate of the mounting groove (202), the top plate of the mounting groove (202) is provided with an air outlet groove (302), and the side of the mounting groove (202) is provided with an air inlet groove (303).
5. The flat cord lamp tile cooling structure of claim 1, wherein, The wind direction adjusting assembly (400) includes a mounting frame (401), the mounting frame (401) is arranged in the air outlet (204), the mounting frame (401) is uniformly provided with movable pieces (402), the upper end of the movable piece (402) is provided with a fixed shaft (403), the fixed shaft (403) is rotatably connected with the mounting frame (401), the lower end of the movable piece (402) is provided with a connecting shaft (404), and the movable piece (402) is provided with a driving assembly.
6. The flat cable lamp patch cooling structure according to claim 5, characterized in that, The driving assembly includes a first motor (407) and a connecting rod (405), the connecting rod (405) is arranged on the connecting shaft (404), the connecting rod (405) is provided with a mounting hole (406), the connecting rod (405) is arranged in the mounting hole (406), the first motor (407) is fixed on the outer side of the box (201), the output end of the first motor (407) is provided with a connecting rod (408), and the connecting rod (408) is connected with the fixed shaft (403).
7. The flat cord lamp tile cooling structure of claim 1, wherein, The wind volume adjusting assembly (500) includes a movable plate (501) and a control assembly, the movable plate (501) is arranged on one side of the air outlet (204), one end of the movable plate (501) is hingedly connected with the inner wall of the ventilation pipe (203), and the control assembly is arranged on one side of the movable plate (501).
8. The flat cable lamp patch cooling structure according to claim 7, characterized in that, The control assembly comprises a telescopic rod (502), which is arranged between the movable plate (501) and the inner wall of the ventilation pipe (203), the fixed end of the telescopic rod (502) is hinged to the inner wall of the ventilation pipe (203), and the output end of the telescopic rod (502) is hinged to the movable plate (501).