Adsorption mechanism for tempered glass processing

By incorporating a drive and release mechanism into the tempered glass processing adsorption mechanism, and utilizing ball bearings and brush plates to pre-clean the glass surface, the problem of impurities affecting adsorption is solved, thereby improving the reliability and adhesion of adsorption.

CN223962884UActive Publication Date: 2026-03-03JIANGSU ZHONGHONG PHOTOELECTRIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

Existing tempered glass processing equipment lacks a pre-cleaning mechanism, which causes impurities on the glass to affect the adhesion of the suction cup during adsorption.

Method used

The adsorption mechanism is equipped with a drive mechanism and a release mechanism. The glass surface is pre-cleaned by the ball bearings and brush plate, and the brush plate is released simultaneously before adsorption to ensure that the glass surface adsorbed by the nozzle is clean.

Benefits of technology

This technology enables effective cleaning of the glass surface before adsorption, improving the adhesion and reliability of adsorption and preventing impurities from affecting the adsorption effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a toughened glass processing adsorption mechanism, including ear plate, electric telescopic pole, ring plate, breather pipe and suction nozzle, electric telescopic pole is fixed in the ear plate, and the bottom of electric telescopic pole extension end is fixedly connected with the top of ring plate through support, breather pipe is fixed in the ring plate, and the suction nozzle is fixed in the ring plate. The suction nozzle is communicated with the bottom of a breather pipe, and the surface of the breather pipe is rotationally connected with a rotating frame. According to the tempered glass processing adsorption mechanism, balls and brush plates are arranged at the bottom and on the side face of an L-shaped sliding groove plate correspondingly, a driving mechanism is arranged between a rotating frame and an annular plate, and a separation mechanism is arranged between a suction nozzle and the L-shaped sliding groove plate, so that when the device adsorbs tempered glass, the glass adsorption face can be cleaned in advance, and the glass adsorption face can be cleaned in advance; and when the suction nozzle is about to suck, the brush plate is synchronously separated from the suction range of the suction nozzle.
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Description

Technical Field

[0001] This utility model relates to the field of glass adsorption technology, specifically to an adsorption mechanism for tempered glass processing. Background Technology

[0002] Adsorption structures are a widely used method in the handling of tempered glass. Adsorption structures are mostly vacuum suction cups, which are vacuumed by a vacuum generator to make the suction cup firmly adhere to the tempered glass.

[0003] While existing suction cups are convenient for adsorbing tempered glass, they inevitably have shortcomings in practical use. One such shortcoming is the lack of a pre-cleaning mechanism, which causes impurities on the glass to affect the adhesion of the suction cup during adsorption. Therefore, a tempered glass processing and adsorption mechanism is proposed to solve the existing problems. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a tempered glass processing adsorption mechanism, which solves the problem that the lack of a pre-cleaning mechanism in the device leads to impurities on the glass affecting the adsorption process during suction cup adsorption.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a tempered glass processing adsorption mechanism, comprising an ear plate, an electric telescopic rod, a ring plate, an air vent, and a suction nozzle. The electric telescopic rod is fixedly disposed inside the ear plate, and the bottom of the extended end of the electric telescopic rod is fixedly connected to the top of the ring plate via a bracket. The air vent is fixedly disposed inside the ring plate, and the suction nozzle is connected to the bottom of the air vent. A rotating frame is rotatably connected to the surface of the air vent. L-shaped sliding groove plates are slidably disposed on both sides of the inner cavity of the rotating frame. Several ball bearings are installed at the bottom of the L-shaped sliding groove plates. A brush plate is bolted to one side of the L-shaped sliding groove plates. A driving mechanism for use with the rotating frame is provided at the bottom of the ring plate, and a disengagement mechanism for use with the L-shaped sliding groove plates is provided on the surface of the suction nozzle.

[0006] Preferably, the driving mechanism includes a drive motor, which is fixedly mounted on the bottom of the ring plate. The output shaft of the drive motor is fixedly connected to a rotating shaft via a coupling. The bottom end of the rotating shaft and the top of the rotating frame are both fixedly connected to meshing gears.

[0007] Preferably, the disengagement mechanism includes a ring sleeve rotatably disposed on the surface of the suction nozzle. Limiting frames are fixedly connected to both sides of the ring sleeve. A limiting plate is slidably connected inside the limiting frame, and a return spring is fixedly connected between the limiting plate and the limiting frame. A slider is slidably connected inside the L-shaped slide plate, and the slider is fixedly connected to the end of the limiting plate. A pressure rod is rotatably connected to the surface of the limiting frame via a bracket. Diagonal rods are fixedly connected to the front and rear sides of one side of the L-shaped slide plate.

[0008] Preferably, a vacuum generator is installed at the top of the vent pipe.

[0009] Preferably, mounting holes are provided on both the front and rear sides of the top of the ear plate. Beneficial effects

[0010] This invention provides an adsorption mechanism for tempered glass processing. Compared with existing technologies, it has the following advantages: By setting ball bearings and brush plates at the bottom and sides of the L-shaped slide plate, respectively, and by setting a driving mechanism between the rotating frame and the ring plate and a disengagement mechanism between the suction nozzle and the L-shaped slide plate, this invention enables the device to pre-clean the glass adsorption surface when adsorbing tempered glass, and simultaneously disengage the brush plate from the adsorption range of the suction nozzle just before adsorption. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of the external structure of this utility model;

[0012] Figure 2 This is a cross-sectional view of the suction nozzle structure of this utility model;

[0013] Figure 3 This utility model Figure 2 A magnified view of a section at point A in the middle;

[0014] Figure 4 This utility model Figure 2 A magnified view of a section at point B in the middle.

[0015] In the diagram: 1. Ear plate; 2. Electric telescopic rod; 3. Ring plate; 4. Ventilation pipe; 5. Suction nozzle; 6. Rotating frame; 7. L-shaped slide plate; 8. Ball bearing; 9. Brush plate; 10. Drive mechanism; 101. Drive motor; 102. Rotating shaft; 103. Gear; 11. Disengagement mechanism; 111. Limiting frame; 112. Limiting plate; 113. Return spring; 114. Slider; 115. Pressure rod; 116. Diagonal rod; 117. Ring sleeve; 12. Vacuum generator; 13. Mounting hole. Detailed Implementation

[0016] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0017] Please see Figure 1-4 This utility model provides a technical solution: a tempered glass processing adsorption mechanism, including an ear plate 1, an electric telescopic rod 2, a ring plate 3, a vent pipe 4, and a suction nozzle 5. The electric telescopic rod 2 is fixedly installed inside the ear plate 1, and the bottom of the extended end of the electric telescopic rod 2 is fixedly connected to the top of the ring plate 3 through a bracket. The vent pipe 4 is fixedly installed inside the ring plate 3. The suction nozzle 5 is connected to the bottom of the vent pipe 4. A vacuum generator 12 is installed on the top of the vent pipe 4. Mounting holes 13 are opened on the front and rear sides of the top of the ear plate 1. As a detailed explanation: the suction nozzle 5 is composed of a metal cover and a rubber suction cup, and a rotating frame 6 is rotatably installed on the surface of the metal cover.

[0018] Furthermore, to facilitate pre-cleaning of the adsorption surface in contact between the suction nozzle 5 and the tempered glass, a rotating frame 6 is rotatably connected to the surface of the air pipe 4. L-shaped sliding plates 7 are slidably arranged on both sides of the inner cavity of the rotating frame 6. Several ball bearings 8 are installed at the bottom of the L-shaped sliding plate 7. A brush plate 9 is bolted to one side of the L-shaped sliding plate 7. A drive mechanism 10 for use with the rotating frame 6 is provided at the bottom of the ring plate 3. The drive mechanism 10 includes a drive motor 101. The drive motor 101 is fixedly arranged at the bottom of the ring plate 3. The output shaft of the drive motor 101 is fixedly connected to a rotating shaft 102 through a coupling. The bottom end of the rotating shaft 102 and the top of the rotating frame 6 are fixedly connected to meshing gears 103. For detailed explanation: the ball bearings 8 are made of polyethylene.

[0019] To facilitate the detachment of the brush plate 9 for switching between cleaning and adsorption, the surface of the suction nozzle 5 is provided with a detachment mechanism 11 that works in conjunction with the L-shaped chute plate 7. The detachment mechanism 11 includes a ring 117, which is rotatably mounted on the surface of the suction nozzle 5. Limiting frames 111 are fixedly connected to both sides of the ring 117. A limiting plate 112 is slidably connected inside the limiting frame 111, and a return spring 113 is fixedly connected between the limiting plate 112 and the limiting frame 111. A slider 114 is slidably connected inside the L-shaped chute plate 7, and the slider 114 is fixedly connected to the end of the limiting plate 112. A pressure rod 115 is rotatably connected to the surface of the limiting frame 111 via a bracket. Diagonal rods 116 are fixedly connected to the front and rear sides of one side of the L-shaped chute plate 7.

[0020] Before use, the ear plate 1 should be installed on the field device in advance;

[0021] When in use, start the electric telescopic rod 2, which causes the extended end of the electric telescopic rod 2 to drive the suction nozzle 5 to fit against the top of the tempered glass through the ring plate 3 and the air pipe 4. When the suction nozzle 5 descends, it simultaneously drives the rotating frame 6, the L-shaped slide plate 7, the ball bearing 8 and the brush plate 9 to descend. The brush plate 9 and the ball bearing 8 are in contact with the glass beforehand. During the descent process, the drive motor 101 is started simultaneously, which drives the two gears 103 to mesh, thereby causing the rotating frame 6 to drive the L-shaped slide plate 7 to clean the glass, leaving a clean adsorption surface for the suction nozzle 5.

[0022] As the brush plate 9 and the ball bearing 8 come into contact with the glass, and the suction nozzle 5 continues to descend, the suction nozzle 5 will drive the pressure rod 115 to squeeze the inclined rod 116 through the limiting frame 111. When the suction nozzle 5 adsorbs the glass, the inclined rod 116 is forced to drive the brush plate 9 out of the circular range of the suction nozzle 5 through the L-shaped sliding plate 7. After the suction nozzle 5 is squeezed and adhered to the glass, the vacuum generator 12 can be activated to vacuum it.

Claims

1. A tempered glass processing adsorption mechanism, comprising an ear plate (1), an electric telescopic rod (2), a ring plate (3), a vent pipe (4), and a suction nozzle (5), wherein the electric telescopic rod (2) is fixedly disposed inside the ear plate (1), and the bottom of the extended end of the electric telescopic rod (2) is fixedly connected to the top of the ring plate (3) via a bracket; the vent pipe (4) is fixedly disposed inside the ring plate (3); and the suction nozzle (5) is connected to the bottom of the vent pipe (4), characterized in that: The surface of the vent pipe (4) is rotatably connected to a rotating frame (6). Both sides of the inner cavity of the rotating frame (6) are slidably provided with L-shaped sliding plates (7). Several balls (8) are installed at the bottom of the L-shaped sliding plates (7). A brush plate (9) is installed on one side of the L-shaped sliding plates (7) by bolts. The bottom of the ring plate (3) is provided with a drive mechanism (10) that is used in conjunction with the rotating frame (6). The surface of the suction nozzle (5) is provided with a release mechanism (11) that is used in conjunction with the L-shaped sliding plates (7).

2. The tempered glass processing adsorption mechanism according to claim 1, characterized in that: The drive mechanism (10) includes a drive motor (101), which is fixedly installed at the bottom of the ring plate (3). The output shaft of the drive motor (101) is fixedly connected to a rotating shaft (102) via a coupling. The bottom end of the rotating shaft (102) and the top of the rotating frame (6) are both fixedly connected to meshing gears (103).

3. The tempered glass processing adsorption mechanism according to claim 1, characterized in that: The disengagement mechanism (11) includes a ring (117), which is rotatably disposed on the surface of the suction nozzle (5). Limiting frames (111) are fixedly connected to both sides of the ring (117). A limiting plate (112) is slidably connected inside the limiting frame (111), and a return spring (113) is fixedly connected between the limiting plate (112) and the limiting frame (111). A slider (114) is slidably connected inside the L-shaped slide plate (7), and the slider (114) is fixedly connected to the end of the limiting plate (112). A pressure rod (115) is rotatably connected to the surface of the limiting frame (111) through a bracket. An inclined rod (116) is fixedly connected to the front and rear sides of one side of the L-shaped slide plate (7).

4. The tempered glass processing adsorption mechanism according to claim 1, characterized in that: A vacuum generator (12) is installed on the top of the vent pipe (4).

5. The tempered glass processing adsorption mechanism according to claim 1, characterized in that: Mounting holes (13) are provided on the front and rear sides of the top of the ear plate (1).