CN216857239U - Camera lens encapsulation rubber coating device is used in camera module production - Google Patents

Camera lens encapsulation rubber coating device is used in camera module production Download PDF

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Publication number
CN216857239U
CN216857239U CN202123147341.6U CN202123147341U CN216857239U CN 216857239 U CN216857239 U CN 216857239U CN 202123147341 U CN202123147341 U CN 202123147341U CN 216857239 U CN216857239 U CN 216857239U
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CN
China
Prior art keywords
ball screw
servo motor
glue
base
connection
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Expired - Fee Related
Application number
CN202123147341.6U
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Chinese (zh)
Inventor
王道凡
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Shenzhen Xujiasheng Technology Co ltd
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Shenzhen Xujiasheng Technology Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Priority to CN202123147341.6U priority Critical patent/CN216857239U/en
Application granted granted Critical
Publication of CN216857239U publication Critical patent/CN216857239U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model belongs to the field of lenses, and particularly relates to a lens packaging and gluing device for camera module production, which comprises a moving mechanism, a gluing mechanism and a gluing mechanism, wherein the gluing mechanism is arranged below the moving mechanism; the moving mechanism comprises a processing platform, a guide rail, a first servo motor, a first ball screw, a portal column, a second servo motor, a second ball screw and a first optical axis, wherein the gluing mechanism is arranged below the processing platform, the processing platform is arranged above and on two sides of the processing platform and is provided with the guide rail and the first ball screw respectively, the front portion of the first ball screw is provided with the first servo motor, the upper portion of the first ball screw is provided with the portal column, the moving mechanism and the gluing mechanism are adopted, the first servo motor is utilized to drive the first ball screw to rotate, so that the portal column can move back and forth, the second servo motor drives the second ball screw to rotate, the work efficiency is improved, the processing quality is improved, and the labor force is reduced.

Description

Camera lens encapsulation rubber coating device is used in camera module production
Technical Field
The utility model belongs to the field of lenses, and particularly relates to a lens packaging and gluing device for camera module production.
Background
The camera comprises a lens, an optical filter, a voice coil motor, a photosensitive chip and an integrated circuit, the camera lens needs to be subjected to gluing and packaging in the production process, the traditional gluing method easily causes uneven glue coating in gluing, glue extruding amount is not easy to control in gluing, the surface of a part can not be uniformly glued easily, glue overflowing occurs, and the part processing quality is poor and the working efficiency is low.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a lens packaging and gluing device for camera module production.
The technical scheme adopted by the utility model is as follows:
a lens packaging and gluing device for camera module production comprises a moving mechanism and a gluing mechanism, wherein the gluing mechanism is arranged below the moving mechanism; moving mechanism includes processing platform, guide rail, first servo motor, first ball screw, portal column, second servo motor, second ball screw, first optical axis, the rubber coating mechanism below is provided with processing platform, the processing platform top is located both sides and is provided with respectively the guide rail with first ball screw, first ball screw front portion is provided with first servo motor, first ball screw top is provided with the portal column, portal column inside is provided with second ball screw, second ball screw one side is provided with second servo motor, portal column top is provided with first optical axis.
Preferably: the gluing mechanism comprises a base, a glue storage box, a glue outlet valve, a glue leading pipe, an electric push rod, a scraper and a mold, wherein the mold is arranged above the processing platform, the scraper is arranged above the mold, the electric push rod is arranged above the scraper, the base is arranged at the rear part of the electric push rod, the glue storage box is arranged at the rear part of the base, the glue outlet valve is arranged at the front part of the glue storage box, and the glue leading pipe is arranged below the glue outlet valve.
So set up, electric push rod drives the scraper blade reciprocates.
Preferably: the gluing mechanism comprises a base, a glue storage box, a glue outlet valve, a glue leading pipe, a scraper plate, a mold, a third servo motor, a third ball screw, a second optical axis and a mobile platform, wherein the mold is arranged above the processing platform, the scraper plate is arranged above the mold, the mobile platform is arranged above the scraper plate, the third ball screw and the second optical axis are respectively arranged inside the mobile platform, the third ball screw is arranged above the third servo motor, the rear part of the third ball screw is arranged on the base, the rear part of the base is arranged on the glue storage box, the front part of the glue storage box is provided with the glue outlet valve, and the glue leading pipe is arranged below the glue outlet valve.
According to the arrangement, the third servo motor drives the third ball screw to rotate, and the mobile platform drives the scraper to move up and down.
Preferably: the guide rail with processing platform bolted connection, first ball screw with processing platform bearing is connected, first servo motor with first ball screw coupling joint, first ball screw with portal column threaded connection, and the second ball screw with portal column bearing is connected, the guide rail with portal column sliding connection, second servo motor with second ball screw coupling joint, the second servo motor with portal column bolted connection, first optical axis with portal column welded connection.
According to the arrangement, the first ball screw is driven by the first servo motor to rotate, so that the portal column moves back and forth, and the second ball screw is driven by the second servo motor to rotate.
Preferably: the mould with the processing platform buckle is connected, the scraper blade with electricity push rod threaded connection, electricity push rod with base bolted connection, store up gluey case with base screwed connection, go out gluey valve with store up gluey case bolted connection, draw the rubber tube with go out gluey valve threaded connection.
So set up, electric putter convenient to detach and be convenient for the scraper blade with the change of mould.
Preferably: the mould with the processing platform buckle is connected, the scraper blade with the mobile station screw connection, the mobile station with third ball screw threaded connection, the mobile station with second optical axis sliding connection, the second optical axis with base welded connection, the third ball screw with base bearing is connected, the third ball screw with third servo motor coupling joint, store up gluey case with base screw connection, go out gluey valve with store up gluey case bolted connection, draw the rubber tube with go out gluey valve threaded connection.
So set up, third servo motor convenient to detach changes.
The utility model has the beneficial effects that: adopt moving mechanism and rubber coating mechanism, utilize first servo motor to drive first ball screw rotatory to make the portal column back-and-forth movement, second servo motor drives the rotation of second ball screw, is favorable to improving work efficiency, improves processingquality, alleviates the labour.
Drawings
The accompanying drawings, which are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate embodiments of the utility model and together with the description serve to explain the principles of the utility model and not to limit the utility model. In the drawings:
fig. 1 is a schematic structural diagram of a lens packaging and gluing device for producing a camera module according to embodiment 1 of the present invention;
fig. 2 is a schematic diagram of a moving mechanism of a lens packaging and gluing device for camera module production according to embodiment 1 of the utility model;
fig. 3 is a schematic view of a gluing mechanism of the lens packaging and gluing device for camera module production according to embodiment 1 of the utility model;
fig. 4 is a schematic view of a gluing mechanism in embodiment 2 of a lens packaging and gluing device for camera module production according to the present invention.
The reference numerals are explained below:
1. a moving mechanism; 2. a gluing mechanism; 11. a processing platform; 12. a guide rail; 13. a first servo motor; 14. a first ball screw; 15. a gantry column; 16. a second servo motor; 17. a second ball screw; 18. a first optical axis; 21. a base; 22. a glue storage box; 23. a glue outlet valve; 24. a rubber drainage pipe; 25. an electric push rod; 26. a squeegee; 27. a mold; 201. a third servo motor; 202. a third ball screw; 203. a second optical axis; 204. a mobile station.
Detailed Description
The utility model is further illustrated by the following examples in conjunction with the accompanying drawings.
Example 1
As shown in fig. 1, 2 and 3, a lens packaging and gluing device for camera module production comprises a moving mechanism 1 and a gluing mechanism 2, wherein the gluing mechanism 2 is arranged below the moving mechanism 1; the moving mechanism 1 comprises a processing platform 11, a guide rail 12, a first servo motor 13, a first ball screw 14, a portal column 15, a second servo motor 16, a second ball screw 17 and a first optical axis 18, the processing platform 11 is arranged below the gluing mechanism 2, the guide rail 12 and the first ball screw 14 are respectively arranged above and at two sides of the processing platform 11, the first servo motor 13 is arranged at the front part of the first ball screw 14, the portal column 15 is arranged above the first ball screw 14, the second ball screw 17 is arranged inside the portal column 15, the second servo motor 16 is arranged at one side of the second ball screw 17, the first optical axis 18 gluing mechanism 2 arranged above the portal column 15 comprises a base 21, a glue storage box 22, a glue outlet valve 23, a glue guide tube 24, an electric push rod 25, a scraper 26 and a mould 27, the mould 27 is arranged above the processing platform 11, the scraper 26 is arranged above the mould 27, an electric push rod 25 is arranged above the scraper 26, a base 21 is arranged at the rear part of the electric push rod 25, a glue storage box 22 is arranged at the rear part of the base 21, a glue outlet valve 23 is arranged at the front part of the glue storage box 22, and a glue guiding pipe 24 is arranged below the glue outlet valve 23.
Preferably: the guide rail 12 is connected with the processing platform 11 through a bolt, the first ball screw 14 is connected with the processing platform 11 through a bearing, the first servo motor 13 is connected with a first ball screw 14 coupler, the first ball screw 14 is connected with a portal column 15 through a thread, the second ball screw 17 is connected with a portal column 15 through a bearing, the guide rail 12 is connected with the portal column 15 in a sliding mode, the second servo motor 16 is connected with a second ball screw 17 coupler, the second servo motor 16 is connected with the portal column 15 through a bolt, the first optical axis 18 is connected with the portal column 15 in a welding mode, the mold 27 is connected with the processing platform 11 through a buckle, the scraper 26 is connected with the electric push rod 25 through a thread, the electric push rod 25 is connected with the base 21 through a bolt, the glue storage box 22 is connected with the base 21 through a screw, the glue outlet valve 23 is connected with the glue storage box 22 through a bolt, and the glue outlet valve 24 is connected with the glue outlet valve 23 through a thread.
Example 2
As shown in fig. 4, the present embodiment is different from embodiment 1 in that: the glue spreading mechanism 2 comprises a base 21, a glue storage box 22, a glue outlet valve 23, a glue leading tube 24, a scraper 26, a mould 27, a third servo motor 201, a third ball screw 202, a second optical axis 203 and a mobile platform 204, wherein the mould 27 is arranged above the processing platform 11, the scraper 26 is arranged above the mould 27, the mobile platform 204 is arranged above the scraper 26, the third ball screw 202 and the second optical axis 203 are respectively arranged in the mobile platform 204, the third servo motor 201 is arranged above the third ball screw 202, the base 21 is arranged at the rear part of the third ball screw 202, the glue storage box 22 is arranged at the rear part of the base 21, the glue outlet valve 23 is arranged at the front part of the glue storage box 22, the glue leading tube 24 is arranged below the glue outlet valve 23, the mould 27 is connected with the processing platform 11 in a buckling manner, the scraper 26 is connected with the mobile platform 204 through screws, the mobile platform 204 is connected with the third ball screw 202 in a threaded manner, the mobile platform 204 is connected with the second optical axis 203 in a sliding manner, the second optical axis 203 is connected with the base 21 in a welding mode, the third ball screw 202 is connected with the base 21 in a bearing mode, the third ball screw 202 is connected with the third servo motor 201 in a coupling mode, the glue storage box 22 is connected with the base 21 through screws, the glue outlet valve 23 is connected with the glue storage box 22 through bolts, and the glue guiding pipe 24 is connected with the glue outlet valve 23 through threads.
The working principle is as follows: firstly, a part to be processed is placed into a mold, a first servo motor 13 is started, a first ball screw 14 is driven to rotate, a portal column 15 is driven to move to a proper position, a second servo motor 16 is started to drive a second ball screw 17 to rotate, a base 21 is driven to move to a proper position, an electric push rod 25 is started to enable a scraper 26 to move to the position above the mold 27, a glue outlet valve 23 is started to discharge glue, the second servo motor 16 is started to drive the base 21 to move, the scraper 26 is driven to scrape the glue on the mold, or a third servo motor 201 is started to drive a third ball screw 202 to rotate, so that a moving table 204 is driven to move up and down, and the scraper 26 is driven to move up and down.
While the preferred embodiments of the present invention have been described in detail with reference to the accompanying drawings, the present invention is not limited to the above embodiments, and various changes can be made within the knowledge of those skilled in the art without departing from the spirit of the present invention.

Claims (6)

1. The utility model provides a camera module production is with camera lens encapsulation rubber coating device which characterized in that: the glue spreading device comprises a moving mechanism (1) and a glue spreading mechanism (2), wherein the glue spreading mechanism (2) is arranged below the moving mechanism (1);
the moving mechanism (1) comprises a processing platform (11), a guide rail (12), a first servo motor (13), a first ball screw (14), a portal column (15), a second servo motor (16), a second ball screw (17) and a first optical axis (18), the processing platform (11) is arranged below the glue coating mechanism (2), the guide rail (12) and the first ball screw (14) are respectively arranged above and at two sides of the processing platform (11), the front part of the first ball screw (14) is provided with the first servo motor (13), the portal column (15) is arranged above the first ball screw (14), the second ball screw (17) is arranged in the portal column (15), and one side of the second ball screw (17) is provided with the second servo motor (16), and the first optical axis (18) is arranged above the portal column (15).
2. The lens packaging and gluing device for camera module production according to claim 1, wherein: gluing mechanism (2) include base (21), store up gluey case (22), go out gluey valve (23), draw rubber tube (24), electric putter (25), scraper blade (26), mould (27), processing platform (11) top is provided with mould (27), mould (27) top is provided with scraper blade (26), scraper blade (26) top is provided with electric putter (25), electric putter (25) rear portion is provided with base (21), base (21) rear portion is provided with store up gluey case (22), it is provided with to store up gluey case (22) front portion go out gluey valve (23), it is provided with to go out gluey valve (23) below draw rubber tube (24).
3. The lens packaging and gluing device for camera module production according to claim 1, wherein: the glue spreading mechanism (2) comprises a base (21), a glue storage box (22), a glue outlet valve (23), a glue leading tube (24), a scraper (26), a mold (27), a third servo motor (201), a third ball screw (202), a second optical axis (203) and a mobile platform (204), wherein the mold (27) is arranged above the processing platform (11), the scraper (26) is arranged above the mold (27), the mobile platform (204) is arranged above the scraper (26), the third ball screw (202) and the second optical axis (203) are respectively arranged inside the mobile platform (204), the third servo motor (201) is arranged above the third ball screw (202), the base (21) is arranged at the rear part of the third ball screw (202), the glue storage box (22) is arranged at the rear part of the base (21), the front part of the glue storage box (22) is provided with the glue outlet valve (23), and the glue guide pipe (24) is arranged below the glue outlet valve (23).
4. The lens packaging and gluing device for camera module production according to claim 1, wherein: guide rail (12) with machining platform (11) bolted connection, first ball screw (14) with machining platform (11) bearing connection, first servo motor (13) with first ball screw (14) coupling joint, first ball screw (14) with portal column (15) threaded connection, second ball screw (17) with portal column (15) bearing connection, guide rail (12) with portal column (15) sliding connection, second servo motor (16) with second ball screw (17) coupling joint, second servo motor (16) with portal column (15) bolted connection, first optical axis (18) with portal column (15) welded connection.
5. The lens packaging and gluing device for camera module production according to claim 2, wherein: mould (27) with processing platform (11) buckle is connected, scraper blade (26) with electric push rod (25) threaded connection, electric push rod (25) with base (21) bolted connection, store up gluey case (22) with base (21) screwed connection, go out gluey valve (23) with store up gluey case (22) bolted connection, draw rubber tube (24) with go out gluey valve (23) threaded connection.
6. A lens packaging and gluing device for camera module production according to claim 3, wherein: mould (27) with machining platform (11) buckle is connected, scraper blade (26) with mobile station (204) screwed connection, mobile station (204) with third ball screw (202) threaded connection, mobile station (204) with second optical axis (203) sliding connection, second optical axis (203) with base (21) welded connection, third ball screw (202) with base (21) bearing connection, third ball screw (202) with third servo motor (201) coupling joint, store up gluey case (22) with base (21) screwed connection, go out gluey valve (23) with store up gluey case (22) bolted connection, draw gluey pipe (24) with go out gluey valve (23) threaded connection.
CN202123147341.6U 2021-12-15 2021-12-15 Camera lens encapsulation rubber coating device is used in camera module production Expired - Fee Related CN216857239U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123147341.6U CN216857239U (en) 2021-12-15 2021-12-15 Camera lens encapsulation rubber coating device is used in camera module production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123147341.6U CN216857239U (en) 2021-12-15 2021-12-15 Camera lens encapsulation rubber coating device is used in camera module production

Publications (1)

Publication Number Publication Date
CN216857239U true CN216857239U (en) 2022-07-01

Family

ID=82145954

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123147341.6U Expired - Fee Related CN216857239U (en) 2021-12-15 2021-12-15 Camera lens encapsulation rubber coating device is used in camera module production

Country Status (1)

Country Link
CN (1) CN216857239U (en)

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20220701