Optical fiber splice assembly apparatus for 5G

By designing 5G fiber optic connector assembly equipment, an automated assembly system for fiber optic connectors was realized, solving the problems of low assembly efficiency and accuracy in existing technologies, and achieving automated assembly of fiber optic connectors, thereby improving assembly accuracy and efficiency.

CN116430523BActive Publication Date: 2026-01-06DONGGUAN ZHENLIANG PRECISION TECH CO LTD
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Patent Information

Application Number
CN202310246689.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-15
Publication Date
2026-01-06
Estimated Expiration
2043-03-15

AI Technical Summary

Technical Problem

The existing 5G fiber optic connectors have low assembly efficiency and accuracy. The manual assembly method is not suitable for mass production. The assembly line has poor continuity and lacks positioning requirements for the workpiece, which can easily cause docking collisions.

Method used

A 5G fiber optic connector assembly device was designed, including a mating and pressing station, a screwing station, and a snap-fit ​​station. Through a movable sleeve injection molding device, a plug body supply device, an extension sleeve supply device, a protective sleeve supply device, and a turntable device, the device realizes the mating and pressing of the movable sleeve and the plug body, the screwing assembly of the extension sleeve, and the snap-fit ​​fixing of the protective sleeve.

Benefits of technology

It enables automated assembly of fiber optic connectors, improving assembly accuracy and efficiency, and is suitable for mass production.

✦ Generated by Eureka AI based on patent content.

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    Figure CN116430523B_ABST
Patent Text Reader

Abstract

The application discloses a 5G optical fiber joint assembling equipment, which comprises a butt joint pressing station, a screwing station and a clamping station; further comprises a movable sleeve injection molding device arranged in the butt joint pressing station; a plug body supply device arranged in the butt joint pressing station; a butt joint pressing device arranged in the butt joint pressing station corresponding to the movable sleeve injection molding device and the plug body supply device; an extension sleeve supply device arranged in the clamping station; a screwing device arranged in the screwing station corresponding to the extension sleeve supply device; a protective sleeve supply device arranged in the clamping station; a clamping device arranged in the clamping station corresponding to the protective sleeve supply device; and a turntable device. According to the structure of the 5G optical fiber joint, the assembling process is reasonably set, and the distribution positions of the devices are sequentially arranged, so that the butt joint pressing of the movable sleeve and the plug body, the screwing assembling of the extension sleeve, the clamping fixing of the protective sleeve and other operations are realized in the limited space, and the assembling automation degree is high, and the assembling precision and efficiency are high.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of optical fiber joint assembly for 5G, in particular to an optical fiber joint assembly equipment for 5G. BACKGROUND

[0002] The existing optical fiber joint for 5G includes plug body, movable sleeve, extension sleeve and protective sleeve arranged in sequence, wherein the movable sleeve is fixed and assembled with the plug body by constructing a fixed disc, the movable sleeve and the extension sleeve are connected by thread locking, and the extension sleeve and the protective sleeve are assembled; since the optical fiber joint for 5G has high isolation and anti-environmental influence requirements for the plug body, on the one hand, it is necessary to ensure that the plug body achieves good assembly stability, and on the other hand, it is necessary to require assembly precision and effect of each structure. At present, manual assembly method is generally used, and the assembly efficiency and precision are low, which cannot be applied to mass assembly production, and the assembly line continuity of the existing assembly equipment is poor, the assembly process is complicated, and the positioning requirement of the workpiece is lacked, which is easy to cause butt collision and affect the assembly effect. SUMMARY

[0003] In order to overcome the above technical problems, the present application discloses an optical fiber joint assembly equipment for 5G.

[0004] The technical scheme adopted by the present application to achieve the above purpose is:

[0005] An optical fiber joint assembly equipment for 5G, comprising a butt pressing station, a screwing station and a clamping station arranged in sequence;

[0006] It further comprises:

[0007] A movable sleeve injection molding device is arranged in the butt pressing station for obtaining a movable sleeve by injection molding;

[0008] A plug body supply device is arranged in the butt pressing station for feeding plug body;

[0009] A butt pressing device is arranged in the butt pressing station corresponding to the movable sleeve injection molding device and the plug body supply device, for pressing and fixing the movable sleeve on the plug body;

[0010] An extension sleeve supply device is arranged in the clamping station for feeding extension sleeve;

[0011] A screwing device is arranged in the screwing station corresponding to the extension sleeve supply device, for screwing and locking the extension sleeve on the movable sleeve;

[0012] A protective sleeve supply device is arranged in the clamping station for feeding protective sleeve;

[0013] A clamping device is arranged at the clamping station corresponding to the protective sleeve supply device, used for clamping the protective sleeve on the extension sleeve to obtain an optical fiber joint;

[0014] A rotating disc device is used for sequentially flowing through the butt joint pressing device, the screwing device and the clamping device.

[0015] The 5G optical fiber joint assembly equipment, wherein the rotating disc device comprises a rotating disc base, a first motor, and a load rotating disc driven to rotate by the first motor and arranged on the rotating disc base, a plurality of sets of product fixing mechanisms are arranged on the load rotating disc at interval distances;

[0016] The product fixing mechanism comprises a first clamping seat, a second clamping seat, and a first air cylinder used for driving the first clamping seat to approach or move away from the second clamping seat, and a plug body positioning cavity is formed between the first clamping seat and the second clamping seat.

[0017] The first clamping seat and the second clamping seat are respectively provided with a first avoiding groove and a second avoiding groove used for fixing and pressing the movable sleeve.

[0018] The 5G optical fiber joint assembly equipment, wherein the movable sleeve injection molding device comprises an injection molding mechanism, a movable sleeve pickup mechanism, and a first transfer mechanism used for driving the movable sleeve pickup mechanism to reciprocate between the injection molding mechanism and the rotating disc device;

[0019] The movable sleeve pickup mechanism comprises a first hollow rotating platform, a second air cylinder arranged on the first hollow rotating platform, a third clamping seat and a fourth clamping seat driven by the second air cylinder, a guide member arranged between the third clamping seat and the fourth clamping seat, an outer surface of the guide member is provided with a plurality of sets of abutting protrusions used for point contact with the movable sleeve, a movable sleeve pickup cavity is formed between the third clamping seat, the fourth clamping seat and the guide column, and the movable sleeve pickup cavity is arranged corresponding to the plug body positioning cavity.

[0020] A third avoiding groove is arranged longitudinally through the guide member to avoid the plug body.

[0021] The 5G optical fiber joint assembly equipment, wherein the plug body supply device comprises a first conveying mechanism, a plug body pickup mechanism, and a second transfer mechanism used for driving the plug body pickup mechanism to reciprocate between the first conveying mechanism and the rotating disc device;

[0022] The plug body pickup mechanism comprises a first pickup base, a third air cylinder arranged on the first pickup base, and a fifth clamping seat and a sixth clamping seat driven by the third air cylinder, a plug body pickup cavity is formed between the fifth clamping seat and the sixth clamping seat, and the plug body pickup cavity is arranged corresponding to the plug body positioning cavity.

[0023] A first CCD camera is arranged on the pickup base corresponding to the plug body pickup cavity.

[0024] The abovementioned 5G optical fiber joint assembly equipment, wherein the docking pressing device comprises an upper fixing mechanism and a lower pressing mechanism arranged above and below the product fixing mechanism correspondingly;

[0025] The upper fixing mechanism comprises a fixing base, a fourth cylinder arranged longitudinally on the fixing base, and a fixing member driven by the fourth cylinder, wherein the fixing member comprises an outer fixing cover and an inner fixing cover arranged in a sleeved manner, a plug body fixing cavity for fixing the plug body is arranged through the inner fixing cover, and an activity sleeve fixing cavity for fixing the wall surface of the activity sleeve is arranged between the outer fixing cover and the inner fixing cover.

[0026] The abovementioned 5G optical fiber joint assembly equipment, wherein the lower pressing mechanism comprises a pressing base, a fifth cylinder arranged longitudinally on the pressing base, and a pressing forming member driven by the fifth cylinder, and a fourth avoiding groove for the product fixing mechanism to pass through is arranged through the pressing forming member;

[0027] The pressing forming member comprises a fixing disc forming seat for fixing the plug body by means of the fixing disc structure of the activity sleeve, and the fixing disc forming seat is arranged around the fourth avoiding groove corresponding to the activity sleeve fixing cavity.

[0028] The abovementioned 5G optical fiber joint assembly equipment, wherein the extension sleeve supply device comprises a second conveying mechanism, an extension sleeve pickup mechanism, and a third transfer mechanism for driving the extension sleeve pickup mechanism to and from the second conveying mechanism and the turntable device;

[0029] The extension sleeve pickup mechanism comprises a second pickup base, a sixth cylinder arranged on the second pickup base, and a seventh clamping seat and an eighth clamping seat driven by the sixth cylinder, wherein an extension sleeve pickup cavity is formed between the seventh clamping seat and the eighth clamping seat, and the plug body pickup cavity is arranged corresponding to the plug body positioning cavity.

[0030] The abovementioned 5G optical fiber joint assembly equipment, wherein the screwing device comprises a screwing base, a second motor arranged on the screwing base, and a screwing head driven by the second motor, wherein the screwing head is arranged corresponding to the extension sleeve pickup cavity, and an extension sleeve grabbing seat for fixing the extension sleeve is arranged on the screwing head.

[0031] A second CCD camera is arranged on the screwing base corresponding to the extension sleeve pickup cavity.

[0032] The 5G optical fiber joint assembly equipment, wherein the protective sleeve supply device comprises a third conveying mechanism, a protective sleeve pickup mechanism, and a fourth transfer mechanism for driving the protective sleeve pickup mechanism to and from the third conveying mechanism and the turntable device.

[0033] The protective sleeve pickup mechanism comprises a third pickup base, a seventh cylinder arranged on the third pickup base, and a ninth clamp base and a tenth clamp base driven by the seventh cylinder, a protective sleeve pickup cavity being formed between the ninth clamp base and the tenth clamp base, and the protective sleeve pickup cavity corresponding to the plug body positioning cavity.

[0034] The 5G optical fiber joint assembly equipment, wherein the clamping device comprises an upper clamping mechanism and a lower fixing mechanism corresponding to the upper and lower sides of the product fixing mechanism.

[0035] The lower fixing mechanism comprises an eighth cylinder transversely arranged on the turntable base, and an eleventh clamp base and a twelfth clamp base driven by the eighth cylinder, an extension sleeve fixing cavity being formed between the eleventh clamp base and the twelfth clamp base.

[0036] The upper clamping mechanism comprises a clamping base, a second hollow rotating platform arranged on the clamping base, and a clamping head arranged on the second hollow rotating platform, the clamping head corresponding to the extension sleeve fixing cavity, and a protective sleeve grabbing seat for fixing the protective sleeve being arranged on the clamping head.

[0037] A third CCD camera is arranged on the clamping base corresponding to the extension sleeve fixing cavity.

[0038] The beneficial effects of the present application are: according to the structure of the 5G optical fiber joint, the assembly sequence and process are reasonably set, and the distribution positions of each device are arranged in sequence, so that the butt joint pressing of the movable sleeve and the plug body, the screwing assembly of the extension sleeve, the clamping and fixing of the protective sleeve, etc. are completed in a limited space, the assembly automation degree is high, and the assembly precision and efficiency are high. BRIEF DESCRIPTION OF DRAWINGS

[0039] The present application will be further described below in conjunction with the drawings and examples.

[0040] Fig. 1 It is a top view schematic diagram of the structure of the present application.

[0041] Fig. 2 It is a three-dimensional schematic diagram of the butt joint pressing device, the screwing device, the clamping device, and the turntable device in the present application. DETAILED DESCRIPTION

[0042] The present application will be further described below in conjunction with the drawings and examples.

[0043] Embodiment: see Figs. 1-2 The embodiment provides a 5G optical fiber joint assembling device, which comprises a butt joint and pressing station, a screwing station and a clamping station arranged in sequence.

[0044] It also comprises:

[0045] A movable sleeve injection device 1 is arranged in the butt joint and pressing station and is used for injection molding a movable sleeve;

[0046] A plug body supply device 2 is arranged in the butt joint and pressing station and is used for feeding a plug body;

[0047] A butt joint and pressing device 3 is arranged in the butt joint and pressing station and corresponds to the movable sleeve injection device 1 and the plug body supply device 2, and is used for pressing and fixing the movable sleeve on the plug body;

[0048] An extension sleeve supply device 4 is arranged in the clamping station and is used for feeding an extension sleeve;

[0049] A screwing device 5 is arranged in the screwing station and corresponds to the extension sleeve supply device 4, and is used for screwing and locking the extension sleeve on the movable sleeve;

[0050] A protective sleeve supply device 6 is arranged in the clamping station and is used for feeding a protective sleeve;

[0051] A clamping device 7 is arranged in the clamping station and corresponds to the protective sleeve supply device 6, and is used for clamping the protective sleeve on the extension sleeve to obtain an optical fiber joint;

[0052] A turntable device 8 is used for sequentially flowing through the butt joint and pressing device 3, the screwing device 5 and the clamping device 7.

[0053] Specifically, according to the structure of the 5G optical fiber joint, the assembling sequence and process are reasonably set, and the distribution positions of the devices are arranged in sequence, so that the butt joint and pressing of the movable sleeve and the plug body, the screwing assembly of the extension sleeve and the clamping and fixing of the protective sleeve and the like can be realized in a limited space, and the assembling automation degree is high, and the assembling precision and efficiency are high.

[0054] Preferably, the turntable device 8 comprises a turntable base, a first motor and a load turntable driven and rotated by the first motor and arranged on the turntable base, and a plurality of groups of product fixing mechanisms are arranged on the load turntable at interval distances; the first motor drives the load turntable to rotate at a constant speed, so that the product fixing mechanisms sequentially flow through the butt joint and pressing device 3, the screwing device 5 and the clamping device 7;

[0055] The product fixing mechanism comprises a first clamping seat, a second clamping seat, and a first air cylinder for driving the first clamping seat to move close to or away from the second clamping seat, and a plug body positioning cavity is formed between the first clamping seat and the second clamping seat; specifically, when the plug body is placed in the plug body positioning cavity, the first air cylinder drives the first clamping seat to move close to the second clamping seat to fix the plug body; and the first air cylinder drives the first clamping seat to move away from the second clamping seat to release the plug body.

[0056] The first clamping seat and the second clamping seat are respectively provided with a first avoiding groove and a second avoiding groove for pressing and fixing the movable sleeve; when the lower pressing mechanism is used to press and form the movable sleeve, the first avoiding groove and the second avoiding groove provide space for the lower pressing mechanism to avoid affecting the effect of butt joint pressing.

[0057] Preferably, the plug body supply device 2 comprises a first conveying mechanism, a plug body picking mechanism, and a second transfer mechanism for driving the plug body picking mechanism to move back and forth between the first conveying mechanism and the turntable device 8; the first conveying mechanism is used to convey the plug body to be assembled, and the second transfer mechanism preferably adopts a mechanism capable of driving movement in the X direction, the Y direction, and / or the Z direction;

[0058] The plug body picking mechanism comprises a first picking base, a third air cylinder arranged on the first picking base, and a fifth clamping seat and a sixth clamping seat driven by the third air cylinder, a plug body picking cavity is formed between the fifth clamping seat and the sixth clamping seat, and the plug body picking cavity corresponds to the plug body positioning cavity; when the plug body is placed in the plug body picking cavity, the third air cylinder drives the fifth clamping seat and the sixth clamping seat to open and close to release or pick the plug body;

[0059] A first CCD camera is arranged on the picking base corresponding to the plug body picking cavity, and the first CCD camera is used to identify the position of the plug body positioning cavity, thereby adjusting the position of the fifth clamping seat and the sixth clamping seat to accurately place the plug body in the plug body positioning cavity, effectively improving the assembly accuracy.

[0060] Preferably, the movable sleeve injection molding device 1 comprises an injection molding mechanism, a movable sleeve picking mechanism, and a first transfer mechanism for driving the movable sleeve picking mechanism to move back and forth between the injection molding mechanism and the turntable device 8; specifically, the first transfer mechanism preferably adopts a mechanism capable of driving movement in the X direction, the Y direction, and / or the Z direction; the injection molding mechanism is used to obtain a movable sleeve by injection molding, the movable sleeve picking mechanism is used to pick the movable sleeve, and under the action of the first transfer mechanism, the movable sleeve is moved to the product fixing mechanism for feeding;

[0061] The movable sleeve pickup mechanism comprises a first hollow rotating platform, a second cylinder arranged on the first hollow rotating platform, a third clamping seat and a fourth clamping seat driven by the second cylinder, a guide arranged between the third clamping seat and the fourth clamping seat, and a plurality of groups of abutting protrusions arranged on the outer surface of the guide for point contact with the movable sleeve. An movable sleeve pickup cavity is formed between the third clamping seat, the fourth clamping seat and the guide column, and the movable sleeve pickup cavity corresponds to the plug body positioning cavity. Specifically, the first hollow rotating platform drives the second cylinder to rotate, so that the third clamping seat and the fourth clamping seat pick up the movable sleeve, and then the movable sleeve is placed on the plug body in a rotating manner to improve the assembly accuracy. The guide is used to facilitate the directional insertion of the plug body into the movable sleeve, thereby improving the assembly accuracy.

[0062] A third avoiding groove for avoiding the plug body is arranged longitudinally through the guide.

[0063] Preferably, the docking pressing device 3 comprises an upper fixing mechanism and a lower pressing mechanism arranged correspondingly above and below the product fixing mechanism.

[0064] The upper fixing mechanism comprises a fixing base, a fourth cylinder arranged longitudinally on the fixing base, and a fixing member driven by the fourth cylinder. The fixing member comprises an outer fixing cover and an inner fixing cover arranged in a sleeved manner. A plug body fixing cavity for fixing the plug body is arranged through the inner fixing cover. An movable sleeve fixing cavity for fixing the movable sleeve is arranged between the outer fixing cover and the inner fixing cover. Specifically, the fourth cylinder drives the fixing member to approach the lower pressing mechanism. The fixing member fixes the movable sleeve and the plug body. At this time, the movable sleeve is fixed in the movable sleeve fixing cavity, and the plug body is fixed in the plug body fixing cavity, thereby improving the docking pressing effect.

[0065] The lower pressing mechanism comprises a pressing base, a fifth cylinder arranged longitudinally on the pressing base, and a pressing forming member driven by the fifth cylinder. A fourth avoiding groove for the product fixing mechanism is arranged through the pressing forming member. When the upper fixing mechanism fixes the movable sleeve and the plug body, the fifth cylinder drives the pressing forming member to press the movable sleeve, so that the movable sleeve is assembled on the plug body.

[0066] The pressing and forming part comprises a fixing disc forming seat for fixing the movable sleeve to the plug body, the fixing disc forming seat is arranged corresponding to the movable sleeve fixing cavity around the fourth avoiding groove; when the pressing and forming part presses the movable sleeve, the fixing disc forming seat is pressed and formed to obtain a fixing disc, so that the movable sleeve is assembled on the plug body, and the assembly stability of the movable sleeve and the plug body is improved.

[0067] Preferably, the extension sleeve supply device 4 comprises a second conveying mechanism, an extension sleeve picking mechanism, and a third transfer mechanism for driving the extension sleeve picking mechanism to and from the second conveying mechanism and the turntable device 8; the second conveying mechanism is used for conveying the extension sleeve to be assembled; the third transfer mechanism preferably adopts a mechanism capable of driving movement in the X direction, Y direction and / or Z direction; the extension sleeve picking mechanism picks up the extension sleeve and moves to the product fixing mechanism for feeding under the action of the third transfer mechanism;

[0068] The extension sleeve picking mechanism comprises a second picking base, a sixth cylinder arranged on the second picking base, and a seventh clamping seat and an eighth clamping seat driven by the sixth cylinder, the seventh clamping seat and the eighth clamping seat form an extension sleeve picking cavity therebetween, and the plug body picking cavity is arranged corresponding to the plug body positioning cavity; the sixth cylinder drives the seventh clamping seat and the eighth clamping seat to open and close, so as to realize loosening or fixing of the extension sleeve and improve the picking automation of the extension sleeve.

[0069] Preferably, the screwing device 5 comprises a screwing base, a second motor arranged on the screwing base, and a screwing head driven by the second motor, the screwing head is arranged corresponding to the extension sleeve picking cavity, and an extension sleeve grabbing seat for fixing the extension sleeve is arranged on the screwing head; the second motor drives the screwing head to rotate by a certain angle, so as to drive the extension sleeve to be screwed and fixed in the movable sleeve;

[0070] A second CCD camera is arranged on the screwing base corresponding to the extension sleeve picking cavity, the second CCD camera is used for identifying the position of the movable sleeve, and then adjusting the position of the screwing head, so as to accurately screw the extension head into the movable sleeve under the fixing action of the extension sleeve picking mechanism, and effectively improve the assembly accuracy.

[0071] Preferably, the protective sleeve supply device 6 comprises a third conveying mechanism, a protective sleeve picking mechanism, and a fourth transfer mechanism for driving the protective sleeve picking mechanism to and from the third conveying mechanism and the turntable device 8; the third conveying mechanism is used for conveying the protective sleeve to be assembled; the fourth transfer mechanism preferably adopts a mechanism capable of driving movement in the X direction, Y direction and / or Z direction; the protective sleeve picking mechanism picks up the protective sleeve and moves to the product fixing mechanism under the action of the fourth transfer mechanism for feeding;

[0072] The protective sleeve picking mechanism comprises a third picking base, a seventh cylinder arranged on the third picking base, and a ninth clamping seat and a tenth clamping seat driven by the seventh cylinder, a protective sleeve picking cavity is formed between the ninth clamping seat and the tenth clamping seat, and the protective sleeve picking cavity corresponds to the plug body positioning cavity; the seventh cylinder drives the ninth clamping seat and the tenth clamping seat to open and close, so as to realize loosening or fixing of the protective sleeve and improve the picking automation of the protective sleeve.

[0073] Preferably, the clamping device 7 comprises an upper clamping mechanism and a lower fixing mechanism correspondingly arranged above and below the product fixing mechanism.

[0074] The lower fixing mechanism comprises an eighth cylinder transversely arranged on the turntable base, and an eleventh clamping seat and a twelfth clamping seat driven by the eighth cylinder, an extension sleeve fixing cavity is formed between the eleventh clamping seat and the twelfth clamping seat; specifically, the eighth cylinder drives the eleventh clamping seat and the twelfth clamping seat to open and close, so as to realize loosening or fixing of the extension sleeve, and at this time, the extension sleeve is fixed in the extension sleeve fixing cavity, so as to improve the clamping and fixing effect.

[0075] The upper clamping mechanism comprises a clamping base, a second hollow rotating platform arranged on the clamping base, and a clamping head arranged on the second hollow rotating platform, the clamping head corresponds to the extension sleeve fixing cavity, and a protective sleeve grabbing seat for fixing the protective sleeve is arranged on the clamping head; the second hollow rotating platform drives the clamping head to rotate, so as to realize clamping of the protective sleeve in the extension sleeve in a rotating manner;

[0076] A third CCD camera is arranged on the clamping base corresponding to the extension sleeve fixing cavity; the third CCD camera is used for identifying the position of the extension sleeve, and then adjusting the position of the clamping head, so as to realize accurate clamping of the protective sleeve in the extension sleeve under the fixing action of the upper clamping mechanism, and effectively improve the assembly accuracy.

[0077] In the working process of the present application, the following steps are included:

[0078] (1) the plug body supply device 2 supplies plug bodies and moves the plug bodies to the rotating disc device 8;

[0079] The movable sleeve injection molding device 1 injects movable sleeves and moves the movable sleeves to be placed on the plug bodies;

[0080] (2) the butt pressing device 3 fixes the plug bodies and movable sleeves and presses and builds the fixed disc to make the movable sleeves assembled on the plug bodies;

[0081] (3) the extension sleeve supply device 4 supplies extension sleeves and moves the extension sleeves to the movable sleeves;

[0082] (4) the screwing device 5 screws the extension sleeves to the movable sleeves;

[0083] (5) the protective sleeve supply device 6 supplies protective sleeves and moves the protective sleeves to the extension sleeves;

[0084] (6) the clamping device 7 rotates and clamps the protective sleeves on the extension sleeves to make the 5G optical fiber joint movable.

[0085] According to the structure of the 5G optical fiber joint, the assembling sequence and process are reasonably set, and the distribution positions of each device are sequentially arranged, so that the butt pressing of the movable sleeve and the plug body, the screwing assembly of the extension sleeve, the clamping fixation of the protective sleeve and other operations are completed in a limited space, the assembling automation degree is high, and the assembling precision and efficiency are high.

[0086] The above is only a preferred embodiment of the present application, and does not limit the present application in any form. Any person skilled in the art can make many possible changes and modifications to the technical solution of the present application by using the disclosed technical means and technical content without departing from the scope of the technical solution of the present application, or modify it into equivalent embodiments. Therefore, any equivalent changes made according to the shape, structure and principle of the present application, which do not deviate from the technical solution of the present application, should be covered by the protection scope of the present application.

Claims

1. An optical fiber splice assembly apparatus for 5G, characterized by, It comprises a docking and pressing station, a screwing station and a clamping station arranged in sequence; It also comprises: A movable sleeve injection device arranged in the docking and pressing station for obtaining a movable sleeve by injection; A plug body supply device arranged in the docking and pressing station for feeding plug bodies; A docking and pressing device arranged in the docking and pressing station corresponding to the movable sleeve injection device and the plug body supply device for pressing and fixing the movable sleeve on the plug body; An extension sleeve supply device arranged in the clamping station for feeding extension sleeves; A screwing device arranged in the screwing station corresponding to the extension sleeve supply device for screwing and locking the extension sleeve on the movable sleeve; A protective sleeve supply device arranged in the clamping station for feeding protective sleeves; A clamping device arranged in the clamping station corresponding to the protective sleeve supply device for clamping the protective sleeve on the extension sleeve to obtain an optical fiber joint; A turntable device for sequentially flowing through the docking and pressing device, the screwing device and the clamping device; The turntable device comprises a turntable base, a first motor, and a load turntable driven and rotated by the first motor and arranged on the turntable base, and a plurality of groups of product fixing mechanisms are arranged on the load turntable at interval distances; The docking and pressing device comprises an upper fixing mechanism and a lower pressing mechanism arranged above and below the product fixing mechanism correspondingly; The upper fixing mechanism comprises a fixing base, a fourth air cylinder arranged longitudinally on the fixing base, and a fixing member driven by the fourth air cylinder, the fixing member comprises an outer fixing cover and an inner fixing cover arranged in a sleeved manner, a plug body fixing cavity for fixing the plug body is arranged through the inner fixing cover, and an movable sleeve fixing cavity for fixing the movable sleeve is arranged between the outer fixing cover and the inner fixing cover; The lower pressing mechanism comprises a pressing base, a fifth air cylinder arranged longitudinally on the pressing base, and a pressing and shaping member driven by the fifth air cylinder, and a fourth avoiding slot for the product fixing mechanism is arranged through the pressing and shaping member; The pressing and shaping member comprises a fixing disc forming seat for making the movable sleeve into a fixing disc to fix the plug body, and the fixing disc forming seat is arranged around the fourth avoiding slot corresponding to the movable sleeve fixing cavity.

2. The optical fiber joint assembly equipment for 5G according to claim 1, characterized in that: The product fixing mechanism comprises a first clamping seat, a second clamping seat, and a first air cylinder for driving the first clamping seat to approach or move away from the second clamping seat, and a plug body positioning cavity is formed between the first clamping seat and the second clamping seat; The first clamping seat and the second clamping seat are respectively provided with a first avoiding slot and a second avoiding slot for pressing and fixing the movable sleeve.

3. The fiber optic splice assembly apparatus for 5G of claim 2, wherein, The movable sleeve injection device comprises an injection mechanism, a movable sleeve picking mechanism, and a first transfer mechanism for driving the movable sleeve picking mechanism to move back and forth between the injection mechanism and the turntable device; The movable sleeve pickup mechanism comprises a first hollow rotating platform, a second cylinder arranged on the first hollow rotating platform, and a third clamping seat and a fourth clamping seat driven by the second cylinder, a guide is arranged between the third clamping seat and the fourth clamping seat, the outer surface of the guide is provided with a plurality of groups of abutting protrusions for point contact with the movable sleeve, the third clamping seat, the fourth clamping seat and the guide column form a movable sleeve pickup cavity, and the movable sleeve pickup cavity corresponds to the plug body positioning cavity; A third avoiding groove is arranged longitudinally through the guide to avoid the plug body.

4. The fiber optic splice assembly apparatus for 5G of claim 3, wherein, The plug body supply device comprises a first conveying mechanism, a plug body pickup mechanism, and a second transfer mechanism for driving the plug body pickup mechanism to and from the first conveying mechanism and the turntable device; The plug body pickup mechanism comprises a first pickup base, a third cylinder arranged on the first pickup base, and a fifth clamping seat and a sixth clamping seat driven by the third cylinder, a plug body pickup cavity is formed between the fifth clamping seat and the sixth clamping seat, and the plug body pickup cavity corresponds to the plug body positioning cavity; A first CCD camera is arranged on the pickup base corresponding to the plug body pickup cavity.

5. The fiber splice assembly apparatus for 5G of claim 4, wherein, The extension sleeve supply device comprises a second conveying mechanism, an extension sleeve pickup mechanism, and a third transfer mechanism for driving the extension sleeve pickup mechanism to and from the second conveying mechanism and the turntable device; The extension sleeve pickup mechanism comprises a second pickup base, a sixth cylinder arranged on the second pickup base, and a seventh clamping seat and an eighth clamping seat driven by the sixth cylinder, an extension sleeve pickup cavity is formed between the seventh clamping seat and the eighth clamping seat, and the plug body pickup cavity corresponds to the plug body positioning cavity.

6. The fiber optic splice assembly apparatus for 5G of claim 5, wherein, The screwing device comprises a screwing base, a second motor arranged on the screwing base, and a screwing head driven by the second motor, the screwing head corresponds to the extension sleeve pickup cavity, and an extension sleeve grabbing seat for fixing the extension sleeve is arranged on the screwing head; A second CCD camera is arranged on the screwing base corresponding to the extension sleeve pickup cavity.

7. The fiber optic splice assembly apparatus for 5G of claim 6, wherein, The protection sleeve supply device comprises a third conveying mechanism, a protection sleeve pickup mechanism, and a fourth transfer mechanism for driving the protection sleeve pickup mechanism to and from the third conveying mechanism and the turntable device; The protection sleeve pickup mechanism comprises a third pickup base, a seventh cylinder arranged on the third pickup base, and a ninth clamping seat and a tenth clamping seat driven by the seventh cylinder, a protection sleeve pickup cavity is formed between the ninth clamping seat and the tenth clamping seat, and the protection sleeve pickup cavity corresponds to the plug body positioning cavity.

8. The fiber optic splice assembly apparatus for 5G of claim 7, wherein, The clamping device comprises an upper clamping mechanism and a lower fixing mechanism arranged correspondingly above and below the product fixing mechanism; The lower fixing mechanism comprises an eighth cylinder arranged transversely on the turntable base, and an eleventh clamping seat and a twelfth clamping seat driven by the eighth cylinder, and an extension sleeve fixing cavity is formed between the eleventh clamping seat and the tenth clamping seat. The upper engaging mechanism comprises an engaging base, a second hollow rotating platform arranged on the engaging base, and an engaging head arranged on the second hollow rotating platform, the engaging head is arranged corresponding to the extending sleeve fixing cavity, and a protective sleeve grabbing seat for fixing the protective sleeve is arranged on the engaging head. A third CCD camera is arranged on the engaging base corresponding to the extending sleeve fixing cavity.

Citation Information

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