High-uniformity module with stable temperature control aging

By designing a high uniformity module with stable temperature control aging, the uniform heating and real-time temperature control of plasma substrates are achieved by using temperature sensors and electric heating tubes, the problems of easy aging and uneven temperature control of heating mechanisms in the prior art are solved, and production efficiency and product quality are improved.

CN223014150UActive Publication Date: 2025-06-24NEW OPTICS (HUIZHOU) ELECTRONIC LTD
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Patent Information

Application Number
CN202421752038.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-24
Publication Date
2025-06-24
Estimated Expiration
2034-07-24

AI Technical Summary

Technical Problem

In the manufacture of existing display plasma substrates, the heating mechanism is prone to aging during drying, resulting in inconvenient maintenance and uneven temperature control.

Method used

A high uniformity module with stable temperature control and aging is designed. Through the structural design of the lower case and the upper case, real-time temperature control and uniform heating are achieved using temperature sensors and electric heating pipes, and the combination of hydraulic rods and connecting blocks is facilitated to disassemble and replace the electric heating pipes.

Benefits of technology

The stable uniform heating and real-time temperature control of the plasma substrate are achieved, which avoids maintenance inconvenience caused by aging of the heating mechanism and improves production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of display processing, in particular to a high-uniformity module capable of stably controlling temperature aging. According to the technical scheme, the device comprises a lower shell, an upper shell and a box body, a control panel is installed on the front end face of the lower shell in an attached mode, and a temperature sensor is fixedly embedded into the front end face of the lower shell; a driving motor is installed on the rear end face of the lower shell, a rotating shaft is arranged on an output shaft of the driving motor, and a conveying belt is arranged on the rotating shaft. A second hydraulic rod and a limiting rod are installed on the rear end face of the lower shell. A box body and a hydraulic rod I are mounted on the top end surface of the upper shell; an air pump is mounted on the rear end surface of the box body and is in gas communication with the box body through a connecting pipe; a connecting plate is arranged on an output shaft of the first hydraulic rod, and a mounting block is mounted on the bottom end face of the connecting plate through a second bolt. And an electric heating tube is sleeved in the mounting block. According to the utility model, the display can be processed and dried, and the temperature control aging equipment can be independently disassembled and replaced after being dried.
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Description

Technical Field

[0001] The utility model relates to the technical field of display processing, in particular to a high-uniformity module with stable temperature control and aging. Background Technique

[0002] A display is an I / O device of a computer, that is, an output device. It is a display tool that displays a certain electronic file on the screen through a specific transmission device. It can be divided into a cathode ray tube display, a plasma display, and a liquid crystal display.

[0003] Currently, the commonly used AC gas discharge display screens all adopt a surface discharge type structure, which includes a front substrate and a rear substrate sealed together. When the display housing is manufactured, a variety of materials and components are required for connection processing. In the preparation process adopted in the current manufacture of display plasma substrates, black stripe patterns, bus electrode patterns, addressing electrode patterns, and barrier rib patterns are all dried after printing, and then exposed, developed, sintered and other processes are carried out after drying.

[0004] However, during drying, a heating mechanism is mostly used for drying treatment. The drying mechanism is mostly inside the equipment. After long-term use and heating, aging will occur. After aging, the whole needs to be disassembled and overhauled, which causes great inconvenience to personnel maintenance. Therefore, it still needs to be improved. Content of the Utility Model

[0005] The purpose of the utility model is to provide a high-uniformity module with stable temperature control and aging to solve the problems raised in the above background technique.

[0006] To achieve the above purpose, the utility model provides the following technical solution: A high-uniformity module with stable temperature control and aging, including a lower housing, an upper housing, and a box body,

[0007] A control panel is fitted and installed on the front end face of the lower housing, and a temperature sensor is embedded and fixed on the front end face of the lower housing;

[0008] A driving motor is installed on the rear end face of the lower housing, and a rotating shaft is arranged on the output shaft of the driving motor, and a conveyor belt is arranged on the rotating shaft;

[0009] A hydraulic rod two and a limiting rod are installed on the rear end face of the lower housing;

[0010] A box body and a hydraulic rod one are installed on the top end face of the upper housing;

[0011] An air pump is installed on the rear end face of the box body, and the air pump is gas-connected to the box body through a connecting pipe;

[0012] A connecting plate is arranged on the output shaft of the hydraulic rod one, and a mounting block is installed on the bottom end face of the connecting plate through a bolt two;

[0013] An electric heating pipe is sleeved in the mounting block.

[0014] Preferably, a bracket is welded to the bottom end surface of the lower shell, and a bearing base is welded to the bottom end surface of the bracket. The lower shell can be supported and installed by the cooperation of the bracket and the bearing base.

[0015] Preferably, the top surface of the box body is provided with a cover plate, and the cover plate is mounted on the box body by bolts. The top surface of the box body is provided with a cover plate, so that when installing the cover plate, the personnel can use bolts to thread the cover plate on the box body, and after installation, the bolts can be reversed to remove the cover plate.

[0016] Preferably, a second connecting block is installed on the rear end surface of the upper shell, and the second connecting block is sleeved on the limiting rod. The second connecting block is sleeved on the limiting rod, so that the middle position of the upper shell is limited when it is pushed to move up and down.

[0017] Preferably, the rear end face of the upper shell is welded with a connecting block 1, and the bottom end face of the connecting block 1 is arranged on the output shaft of the hydraulic rod 2. By setting the bottom end face of the connecting block 1 on the output shaft of the hydraulic rod 2, the hydraulic rod 2 can push the upper shell through the connecting block 1 when it is opened.

[0018] Preferably, both ends of the box body are embedded with an air outlet pipe, and the end of the air outlet pipe away from the box body is embedded and fixed in the upper shell. By embedding and fixing the end of the air outlet pipe away from the box body in the upper shell, the gas entering the box body is discharged into the upper shell through the air outlet pipe.

[0019] Preferably, a guide rod is welded on the top surface of the connecting plate, and the guide rod is sleeved in the upper shell. The guide rod is sleeved in the upper shell, so that the middle position of the connecting plate is limited and guided when it is pushed up and down.

[0020] Compared with the prior art, the beneficial effects of the utility model are as follows:

[0021] 1. The utility model sets a lower shell body. When personnel need to heat and dry the plasma substrate of the display screen during manufacturing, the personnel can place the plasma substrate on the conveyor belt. After placing it, the personnel can turn on the driving motor to drive the conveyor belt to rotate through the rotating shaft. When the conveyor belt rotates, it drives the plasma substrate to be transported in the lower shell body. During the transportation process, the personnel can turn on the air pump to intake air into the box body. During the intake process, the gas can be filtered through the filter element filter screen and other filtering mechanisms arranged in the box body and then discharged into the upper shell body through the outlet pipe. When discharged, the gas can be heated by turning on the electric heating tube to reach the preset specified drying temperature. The heated gas can dry the plasma substrate, and the temperature during drying can be monitored by the temperature sensor, so that the personnel can perform real-time monitoring and high and low temperature homogenization control, thereby forming a stable temperature control module.

[0022] 2. In the present utility model, by providing an upper housing, after the personnel need to heat and dry the plasma substrate during the manufacture of the display screen, when maintaining the components for temperature control and aging, the personnel can open the second hydraulic rod and push the upper housing upward through the first connecting block, so as to unfold the upper housing. When unfolding, the personnel can open the first hydraulic rod and push the connecting plate downward. When the connecting plate moves downward, the electric heating tube is unfolded. When the electric heating tube is unfolded, the second bolt can be reversely disassembled, so as to disassemble and replace the single aged electric heating tube, thereby avoiding the inconvenience of overall disassembly and probing for maintenance after aging. Through the cooperation of various components, a highly uniform module is formed. Description of the Drawings

[0023] Figure 1 It is the front view structural schematic diagram of the present utility model;

[0024] Figure 2 It is the rear view structural schematic diagram of the present utility model;

[0025] Figure 3 It is the top view structural schematic diagram of the lower housing of the present utility model;

[0026] Figure 4 It is the bottom view structural schematic diagram of the upper housing of the present utility model.

[0027] In the figure: 1. Bracket; 2. Lower housing; 3. Bearing base; 4. Temperature sensor; 5. Conveyor belt; 6. Upper housing; 7. First hydraulic rod; 8. Air outlet pipe; 9. Guide rod; 10. Cover plate; 11. Box body; 12. First bolt; 13. Control panel; 14. Driving motor; 15. Second hydraulic rod; 16. First connecting block; 17. Second connecting block; 18. Air pump; 19. Connecting pipe; 20. Rotating shaft; 21. Connecting plate; 22. Second bolt; 23. Electric heating tube; 24. Mounting block; 25. Limiting rod. Detailed Embodiments

[0028] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0029] Embodiment 1

[0030] As Figures 1 - 4 shown, a highly uniform module for stable temperature control and aging proposed by the present utility model includes a lower housing 2, an upper housing 6, and a box body 11.

[0031] The front end face of the lower housing 2 is fitted with a control panel 13, and a temperature sensor 4 is embedded and fixed on the front end face of the lower housing 2;

[0032] The rear end face of the lower housing 2 is equipped with a driving motor 14, and a rotating shaft 20 is arranged on the output shaft of the driving motor 14. A conveyor belt 5 is arranged on the rotating shaft 20;

[0033] The rear end face of the lower housing 2 is equipped with a second hydraulic rod 15 and a limiting rod 25;

[0034] The top end face of the upper housing 6 is equipped with a box body 11 and a first hydraulic rod 7;

[0035] The rear end face of the box body 11 is equipped with an air pump 18, and the air pump 18 is in gas communication with the box body 11 through a connecting pipe 19;

[0036] A connecting plate 21 is arranged on the output shaft of the first hydraulic rod 7, and an installation block 24 is installed on the bottom end face of the connecting plate 21 through a second bolt 22;

[0037] An electric heating tube 23 is sleeved inside the installation block 24.

[0038] The bottom end face of the lower housing 2 is welded with a bracket 1, and the bottom end face of the bracket 1 is welded with a bearing base 3. The lower housing 2 can be supported and installed through the cooperation of the bracket 1 and the bearing base 3.

[0039] A second connecting block 17 is installed on the rear end face of the upper housing 6, and the second connecting block 17 is sleeved on the limiting rod 25. By sleeving the second connecting block 17 on the limiting rod 25, the middle position of the upper housing 6 is limited when it is pushed to move up and down.

[0040] Air outlet pipes 8 are embedded and fixed at both ends of the box body 11, and the ends of the air outlet pipes 8 facing away from the box body 11 are embedded and fixed inside the upper housing 6. By embedding and fixing the ends of the air outlet pipes 8 facing away from the box body 11 inside the upper housing 6, the gas entering the box body 11 can be discharged into the upper housing 6 through the air outlet pipes 8.

[0041] Based on Embodiment 1: When heating and drying the plasma substrate of the display screen, the operator can place the plasma substrate on the conveyor belt 5. After placement, the operator can turn on the drive motor 14 to drive the conveyor belt 5 to rotate through the rotating shaft 20. When the conveyor belt 5 rotates, it drives the plasma substrate to be conveyed in the lower housing 2. During the conveying process, the operator can turn on the air pump 18 to introduce air into the box body 11. During the air intake process, the gas can be filtered by the filtering mechanism such as the filter screen in the box body 11 and then discharged into the upper housing 6 through the air outlet pipe 8. When discharging, the gas can reach the preset specified drying temperature through the electric heating tube 23 to be heated. The heated gas can dry the plasma substrate, and the temperature during drying can be monitored by the temperature sensor 4, so that the operator can perform real-time monitoring and high and low temperature equalization control, and then heat and dry the plasma substrate of the display screen during conveying.

[0042] Embodiment Two

[0043] As Figures 1 - 4 shown, a highly uniform module with stable temperature control and aging proposed by the present utility model further includes, compared with Embodiment 1: a lower housing 2, an upper housing 6 and a box body 11.

[0044] A control panel 13 is fitted and installed on the front end face of the lower housing 2, and a temperature sensor 4 is embedded and fixed on the front end face of the lower housing 2.

[0045] A drive motor 14 is installed on the rear end face of the lower housing 2, and a rotating shaft 20 is provided on the output shaft of the drive motor 14, and a conveyor belt 5 is provided on the rotating shaft 20.

[0046] A hydraulic rod two 15 and a limiting rod 25 are installed on the rear end face of the lower housing 2.

[0047] A box body 11 and a hydraulic rod one 7 are installed on the top end face of the upper housing 6.

[0048] An air pump 18 is installed on the rear end face of the box body 11, and the air pump 18 is in gas communication with the box body 11 through a connecting pipe 19.

[0049] A connecting plate 21 is provided on the output shaft of the hydraulic rod one 7, and a mounting block 24 is installed on the bottom end face of the connecting plate 21 through a bolt two 22.

[0050] An electric heating tube 23 is sleeved inside the mounting block 24.

[0051] And as is well known to those skilled in the art, the provision of the control panel 13, the temperature sensor 4, the first hydraulic rod 7, the second hydraulic rod 15, the drive motor 14, the air pump 18, and the electric heating tube 23 is common. The control panel 13 can use wires and be externally connected to a power source to control the strokes of the first hydraulic rod 7, the second hydraulic rod 15, the drive motor 14, and the air pump 18, and control the heating temperature of the electric heating tube 23. And a display screen can be installed on the control panel 13 to display the monitored temperature of the temperature sensor 4. All of these belong to conventional means or common general knowledge and will not be elaborated here. Those skilled in the art can make any selection according to their needs or convenience. The drive motor 14 drives the rotation shaft 20 to rotate.

[0052] A cover plate 10 is provided on the top end surface of the box body 11, and the cover plate 10 is installed on the box body 11 through the first bolt 12. By providing the cover plate 10 on the top end surface of the box body 11, when installing the cover plate 10, the first bolt 12 can be screwed onto the box body 11, and after installation, the first bolt 12 can be reversed to disassemble the cover plate 10. And a filter screen and a filter element can be installed in the box body 11 respectively to filter the incoming gas.

[0053] A first connecting block 16 is welded to the rear end surface of the upper shell 6, and the bottom end surface of the first connecting block 16 is arranged on the output shaft of the second hydraulic rod 15. By arranging the bottom end surface of the first connecting block 16 on the output shaft of the second hydraulic rod 15, when the second hydraulic rod 15 is opened, the upper shell 6 can be pushed through the first connecting block 16.

[0054] A guide rod 9 is welded to the top end surface of the connecting plate 21, and the guide rod 9 is sleeved inside the upper shell 6. By sleeving the guide rod 9 inside the upper shell 6, when the connecting plate 21 is pushed to move up and down, the middle position is limited and guided.

[0055] Based on Embodiment 2: After the personnel need to heat and dry the plasma substrate during the manufacture of the display screen and in order to maintain the temperature-controlled and aged components, the personnel can open the second hydraulic rod 15 and push the upper shell 6 to move upward through the first connecting block 16, so that the upper shell 6 can be unfolded. When unfolding, the personnel can open the first hydraulic rod 7 and push the connecting plate 21 to move downward. When the connecting plate 21 moves downward, the electric heating tube 23 is unfolded. When the electric heating tube 23 is unfolded, the second bolt 22 can be reversed and disassembled, so as to disassemble and replace the single-aged electric heating tube 23, thereby avoiding the inconvenience of overall disassembly and probing for maintenance after aging.

[0056] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-mentioned exemplary embodiments, and the present utility model can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present utility model. Any reference signs in the claims should not be construed as limiting the claims involved.

Claims

1. A high uniformity module with stable temperature-controlled aging, comprising a lower shell (2), an upper shell (6) and a box (11), characterized in that: A control panel (13) is fitted on the front end surface of the lower shell (2), and a temperature sensor (4) is embedded and fixed on the front end surface of the lower shell (2); A driving motor (14) is installed on the rear end surface of the lower shell (2), and a rotating shaft (20) is arranged on the output shaft of the driving motor (14), and a conveyor belt (5) is arranged on the rotating shaft (20); A hydraulic rod 2 (15) and a limiting rod (25) are installed on the rear end surface of the lower housing (2); The top end surface of the upper shell (6) is equipped with a box (11) and a hydraulic rod (7); An air pump (18) is installed on the rear end surface of the box body (11), and the air pump (18) is in gas communication with the box body (11) via a connecting pipe (19); A connecting plate (21) is provided on the output shaft of the hydraulic rod 1 (7), and a mounting block (24) is mounted on the bottom end surface of the connecting plate (21) via a second bolt (22); The installation block (24) is sleeved with an electric heating pipe (23).

2. A high uniformity module with stable temperature-controlled aging according to claim 1, characterized in that: A bracket (1) is welded to the bottom end surface of the lower shell (2), and a bearing base (3) is welded to the bottom end surface of the bracket (1).

3. A high uniformity module with stable temperature-controlled aging according to claim 1, characterized in that: A cover plate (10) is provided on the top end surface of the box body (11), and the cover plate (10) is mounted on the box body (11) by means of bolts (12).

4. A high uniformity module with stable temperature-controlled aging according to claim 1, characterized in that: A second connecting block (17) is installed on the rear end surface of the upper shell (6), and the second connecting block (17) is sleeved on the limiting rod (25).

5. A high uniformity module with stable temperature-controlled aging according to claim 4, characterized in that: A connecting block 1 (16) is welded to the rear end surface of the upper shell (6), and the bottom end surface of the connecting block 1 (16) is arranged on the output shaft of the hydraulic rod 2 (15).

6. A high uniformity module with stable temperature-controlled aging according to claim 1, characterized in that: An air outlet pipe (8) is embedded and fixed at both ends of the box body (11), and the end of the air outlet pipe (8) facing away from the box body (11) is embedded and fixed in the upper shell body (6).

7. The high uniformity module with stable temperature-controlled aging according to claim 1, characterized in that: A guide rod (9) is welded to the top end surface of the connecting plate (21), and the guide rod (9) is sleeved in the upper shell (6).