Small-sized multi-linkage packaging device

By designing a small-size multi-linked packaging device, the synergistic effect of the lifting driver and the lateral movement driver is used to realize automatic adsorption of the optical device cover and tight adhesion of the tape, solving the problems of low packaging quality and tape running in the prior art, and improving the quality and efficiency of the packaging.

CN113090626BActive Publication Date: 2025-06-13SHANGHAI BRANCH FUZHOU GAOYI COMM CO LTD
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Patent Information

Application Number
CN202110501839.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-05-08
Publication Date
2025-06-13
Estimated Expiration
2041-05-08

AI Technical Summary

Technical Problem

The packaging of existing optical devices mainly relies on labor, resulting in high labor intensity and tape is easily disengaged under pressure, affecting the packaging quality.

Method used

A small-size multi-linked packaging device is designed, including bottom plate, bracket, vertical guide rail, lift seat, outer frame, inner frame, suction nozzle and pressure rod. Through the synergy between the lifting and lateral movement driver, the automatic adsorption of the cover plate and the tight adhesion of the tape is achieved to avoid the tape running.

Benefits of technology

It improves the quality and efficiency of optical device packaging, reduces the labor intensity of manual operation, and ensures that the tape does not run during the packaging process, improving the accuracy and consistency of the packaging.

✦ Generated by Eureka AI based on patent content.

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    Figure CN113090626B_ABST
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Abstract

The present invention discloses a small-sized multi-linkage packaging device, which includes a bottom plate. A bracket is provided on the bottom plate, and a vertically arranged vertical guide rail is fixed on the bracket. A lifting seat is slidably connected to the vertical guide rail. The top of the lifting seat is fixed with an outer frame, an inner frame is slidably connected inside the outer frame, and a suction nozzle is slidably connected inside the inner frame. Pressing rods are respectively provided on two opposite sides of the outer frame. The middle parts of the two pressing rods are respectively hinged to the side wall of the outer frame. A third compression spring is connected between the upper parts of the two pressing rods and the side wall of the outer frame. The lower parts of the two pressing rods respectively have pressing heads. A horizontal guide rail located in front of the bracket is fixed on the bottom plate. A horizontal sliding seat is slidably connected to the horizontal guide rail. A positioning block is fixed on the horizontal sliding seat, and a positioning groove for positioning the device to be packaged is provided on the positioning block. The present invention can effectively improve the packaging quality of the device.
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Description

Technical Field

[0001] The present invention relates to the field of packaging machinery, and particularly to a small-sized multi-linkage packaging device. Background Art

[0002] The packaging of existing optical devices is mainly completed manually. Manual packaging has a high labor intensity. In addition, during the packaging process, the tape used to connect the cover plate and the housing is prone to displacement under pressure, which easily affects the packaging quality. Summary of the Invention

[0003] The purpose of the present invention is to provide a small-sized multi-linkage packaging device that can improve the packaging quality.

[0004] To achieve the above purpose, the present invention adopts the following technical solutions:

[0005] A small-sized multi-linkage packaging device, which includes a bottom plate. A bracket is provided on the bottom plate, and a vertically arranged vertical guide rail is fixed on the bracket. A lifting seat is slidably connected to the vertical guide rail, and the lifting seat is driven by a lifting driver to move up and down on the vertical guide rail. The top of the lifting seat is fixed with an outer frame, and an inner frame is slidably connected inside the outer frame. A first compression spring is connected between the top of the inner frame and the inner wall of the top of the outer frame. A suction nozzle is slidably connected inside the inner frame, and a second compression spring is connected between the top of the suction nozzle and the inner wall of the top of the inner frame. The interface at the top of the suction nozzle is connected to a vacuum generator through a pipeline. Pressing rods are respectively provided on two opposite sides of the outer frame. The middle parts of the two pressing rods are respectively hinged to the side wall of the outer frame. A third compression spring is connected between the upper parts of the two pressing rods and the side wall of the outer frame. The lower parts of the two pressing rods respectively have pressing heads, and the two pressing heads are respectively located on both sides of the suction nozzle and are both arranged towards the suction nozzle; A horizontal guide rail is fixed on the bottom plate in front of the bracket. A horizontal sliding seat is slidably connected to the horizontal guide rail, and the horizontal sliding seat is driven by a transverse movement driver to move back and forth on the horizontal guide rail. A positioning block is fixed on the horizontal sliding seat, and a positioning groove for positioning the device to be packaged is provided on the positioning block.

[0006] Further, a manual sliding table is provided on the bottom plate, and the bracket is fixed on the manual sliding table, and the front-back position of the bracket is adjusted by the manual sliding table.

[0007] Further, the lifting driver includes a handle, a driving rod, a guide sleeve, a connecting plate and a connecting rod. The guide sleeve is fixed vertically on the upper part of the bracket. The driving rod is slidably sleeved on the guide sleeve. The lower end of the driving rod is fixedly connected to the lifting seat. The upper end of the driving rod is hinged to the lower end of the connecting rod. The upper end of the connecting rod is hinged to the connecting plate. One side of the connecting plate is hinged to the upper part of the bracket, and the other side of the connecting plate is fixedly connected to the handle.

[0008] Further, the transverse movement driver is a cylinder.

[0009] Further, a first guiding groove arranged in the vertical direction is provided on the side wall of the outer frame, and a first limiting pin is fixed on the side wall of the inner frame. The first limiting pin is slidably connected in the first guiding groove.

[0010] Further, a second guiding groove arranged in the vertical direction is provided on the side wall of the inner frame, and a second limiting pin is fixed on the side wall of the suction nozzle. The second limiting pin is slidably connected in the second guiding groove.

[0011] Further, a reflective lens for observing the encapsulation situation is provided on the bottom plate.

[0012] With the above technical solutions of the present invention, the housing of the optical device is placed in the positioning groove of the positioning block, the cover plate of the optical device is adsorbed on the suction nozzle, the positioning block is moved directly below the suction nozzle, and the lifting driver drives the suction nozzle to move downward to cover the cover plate on the housing. During the process of the suction nozzle continuing to move downward, the tape is tightly pasted between the housing and the cover plate. At the same time, the pressing heads of the two pressing rods respectively press tightly on both sides of the tape to prevent the tape from shifting under pressure, thereby ensuring the quality of the encapsulation. Description of the Drawings

[0013] The following further describes the present invention in detail with reference to the drawings and specific embodiments;

[0014] Figure 1 is a perspective view of the present invention;

[0015] Figure 2 is Figure 1 a partial structural schematic diagram of

[0016] Figure 3 is Figure 2 a cross-sectional view of the structure. Specific Embodiments

[0017] As Figures 1-3As shown in the figure, the small-sized multi-link packaging device of the present invention includes a bottom plate 1, a bracket 2 is provided on the bottom plate 1, a vertical guide rail 3 arranged vertically is fixed on the bracket 2, a lifting seat 4 is slidably connected to the vertical guide rail 3, and the lifting seat 4 is driven by a lifting driver 5 to move up and down on the vertical guide rail 3. A frame 6 is fixed on the top of the lifting seat 4, an inner frame 7 is slidably connected inside the frame 6, a first compression spring (not shown in the figure) is connected between the top of the inner frame 7 and the inner wall of the top of the frame 6, a suction nozzle 8 is slidably connected inside the inner frame 7, and a second compression spring (not shown in the figure) is connected between the top of the suction nozzle 8 and the inner wall of the top of the inner frame 7. The interface at the top of the suction nozzle 8 is connected to a vacuum generator through a pipeline. Pressing rods 9 are respectively provided on two opposite sides of the frame 6, the middle parts of the two pressing rods 9 are respectively hinged to the side wall of the frame 6, a third compression spring (not shown in the figure) is connected between the upper parts of the two pressing rods 9 and the side wall of the frame 6, the lower parts of the two pressing rods 9 respectively have pressing heads, and the two pressing heads are respectively located on both sides of the suction nozzle 8 and are both arranged towards the suction nozzle 8; A horizontal guide rail 10 is fixed on the bottom plate 1 in front of the bracket 2, a horizontal sliding seat 11 is slidably connected to the horizontal guide rail 10, and the horizontal sliding seat 11 is driven by a transverse movement driver 12 to move back and forth on the horizontal guide rail 10. A positioning block 13 is fixed on the horizontal sliding seat 11, and a positioning groove for positioning the device to be packaged is provided on the positioning block 13.

[0018] A manual sliding table 15 is provided on the bottom plate 1, the bracket 2 is fixed on the manual sliding table 15, and the front and rear positions of the bracket 2 are adjusted by the manual sliding table 15. Guide rods arranged front and rear are provided on the manual sliding table 15, the bottom of the bracket 2 is slidably connected to the guide rods, and an adjusting screw rod is threadedly connected to the rear end of the manual sliding table 15. The root of the adjusting screw rod abuts against the bracket 2, and the front and rear positions of the bracket 2 can be adjusted by rotating the adjusting screw rod to adapt to different production conditions.

[0019] As an implementation manner, the lifting driver 5 includes a handle 51, a driving rod 52, a guide sleeve 53, a connecting plate 54 and a connecting rod 55. The guide sleeve 53 is fixed on the upper part of the bracket 2 in the vertical direction, the driving rod 52 is slidably sleeved on the guide sleeve 53, the lower end of the driving rod 52 is fixedly connected to the lifting seat 4, the upper end of the driving rod 52 is hinged to the lower end of the connecting rod 55, the upper end of the connecting rod 55 is hinged to the connecting plate 54, one side of the connecting plate 54 is hinged to the upper part of the bracket 2, and the other side of the connecting plate 54 is fixedly connected to the handle 51. Of course, the lifting driver 5 can also adopt a cylinder or an electric push rod, etc.

[0020] As an implementation manner, the transverse movement driver 12 is a cylinder.

[0021] A first guiding groove 61 arranged in the vertical direction is provided on the side wall of the outer frame 6. A first limiting pin 71 is fixed on the side wall of the inner frame 7, and the first limiting pin 71 is slidably connected in the first guiding groove 61. A second guiding groove 72 arranged in the vertical direction is provided on the side wall of the inner frame 7. A second limiting pin 81 is fixed on the side wall of the suction nozzle 8, and the second limiting pin 81 is slidably connected in the second guiding groove 72. Through the above process, two-stage pressing down of the suction nozzle 8 can be realized. In the first-stage pressing down stroke, the cover plate of the optical device is covered on the housing. In the second-stage pressing down stroke, the tape is tightly pasted between the housing and the cover plate.

[0022] In order to facilitate observing the encapsulation situation, a reflecting lens 14 is provided on the bottom plate 1.

[0023] The working principle of the present invention: Place the housing of the optical device in the positioning groove of the positioning block 13. The cover plate of the optical device is adsorbed on the suction nozzle 8. Move the positioning block 13 to directly below the suction nozzle 8. The lifting driver 5 drives the suction nozzle 8 to move downwards to cover the cover plate on the housing. During the process of the suction nozzle 8 continuing to move downwards, the tape is tightly pasted between the housing and the cover plate. At the same time, the pressing heads of the two pressing rods 9 respectively press tightly on both sides of the tape to prevent the tape from shifting under pressure, thereby ensuring the quality of the encapsulation.

[0024] The above describes the implementation of the present invention in conjunction with the drawings, but the present invention is not limited to the above specific implementation manners. The above specific implementation manners are illustrative rather than restrictive of the present invention. Those of ordinary skill in the art should understand that: They can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present invention, and they should all be covered within the scope of the claims and the description of the present invention.

Claims

1. Small-sized multi-linkage encapsulation device, Characterized in that: It includes a bottom plate, a bracket is provided on the bottom plate, a vertical guide rail arranged vertically is fixed on the bracket, a lifting seat is slidably connected to the vertical guide rail, and the lifting seat is driven by a lifting driver to move up and down on the vertical guide rail. An outer frame is fixed on the top of the lifting seat, an inner frame is slidably connected inside the outer frame, a first compression spring is connected between the top of the inner frame and the inner wall of the top of the outer frame, a suction nozzle is slidably connected inside the inner frame, and a second compression spring is connected between the top of the suction nozzle and the inner wall of the top of the inner frame. The interface at the top of the suction nozzle is connected to a vacuum generator through a pipeline. Pressure rods are respectively provided on two opposite sides of the outer frame, the middle parts of the two pressure rods are respectively hinged to the side wall of the outer frame, a third compression spring is connected between the upper parts of the two pressure rods and the side wall of the outer frame, the lower parts of the two pressure rods respectively have pressing heads, and the two pressing heads are respectively located on both sides of the suction nozzle and are both arranged towards the suction nozzle; A horizontal guide rail is fixed on the bottom plate in front of the bracket, a horizontal sliding seat is slidably connected to the horizontal guide rail, and the horizontal sliding seat is driven by a transverse movement driver to move back and forth on the horizontal guide rail. A positioning block is fixed on the horizontal sliding seat, and a positioning groove for positioning the device to be encapsulated is provided on the positioning block.

2. The small-sized multi-linkage encapsulation device according to claim 1, Characterized in that: A manual sliding table is provided on the bottom plate, and the bracket is fixed on the manual sliding table, and the front and rear positions of the bracket are adjusted by the manual sliding table.

3. The small-sized multi-linkage encapsulation device according to claim 1, Characterized in that: The lifting driver includes a handle, a driving rod, a guide sleeve, a connecting plate and a connecting rod. The guide sleeve is fixed vertically on the upper part of the bracket, the driving rod is slidably sleeved on the guide sleeve, the lower end of the driving rod is fixedly connected to the lifting seat, the upper end of the driving rod is hinged to the lower end of the connecting rod, the upper end of the connecting rod is hinged to the connecting plate, one side of the connecting plate is hinged to the upper part of the bracket, and the other side of the connecting plate is fixedly connected to the handle.

4. The small-sized multi-linkage encapsulation device according to claim 1, Characterized in that: The transverse movement driver is a cylinder.

5. The small-sized multi-linkage encapsulation device according to claim 1, Characterized in that: A first guide groove arranged vertically is provided on the side wall of the outer frame, and a first limit pin is fixed on the side wall of the inner frame, and the first limit pin is slidably connected in the first guide groove.

6. The small-sized multi-linkage encapsulation device according to claim 1, Characterized in that: A second guide groove arranged vertically is provided on the side wall of the inner frame, and a second limit pin is fixed on the side wall of the suction nozzle, and the second limit pin is slidably connected in the second guide groove.

7. The small-sized multi-linkage encapsulation device according to claim 1, Characterized in that: A reflective lens for observing the encapsulation situation is provided on the bottom plate.

Citation Information

Patent Citations

  • Small-size multi-linkage packaging device

    CN214742568U