CN219649680U - Cell-phone center CG face location frock - Google Patents

Cell-phone center CG face location frock Download PDF

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Publication number
CN219649680U
CN219649680U CN202320715790.6U CN202320715790U CN219649680U CN 219649680 U CN219649680 U CN 219649680U CN 202320715790 U CN202320715790 U CN 202320715790U CN 219649680 U CN219649680 U CN 219649680U
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China
Prior art keywords
mobile phone
suction head
bottom plate
surface suction
plate
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Active
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CN202320715790.6U
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Chinese (zh)
Inventor
王孟哲
梁正南
赖勉力
李恩全
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Ningbo Jiuzong Intelligent Technology Co ltd
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Ningbo Jiuzong Intelligent Technology Co ltd
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Abstract

The utility model relates to the technical field of mobile phone middle frame positioning tools, in particular to a mobile phone middle frame CG (g) surface positioning tool. The mobile phone middle frame comprises a CG surface positioning bottom plate used for arranging an air path, a CG surface suction head arranging plate is arranged at the upper end face of the CG surface positioning bottom plate in a laminating mode, a CG surface suction head adsorbing position is formed at the upper end face of the CG surface suction head arranging plate, a plurality of CG surface suction heads connected with the air path are arranged at the CG surface suction head arranging plate, and the CG surface suction heads are matched with each other to adsorb a mobile phone middle frame at the CG surface suction position. According to the utility model, the plurality of CG-surface suction nozzles are matched together to adsorb and position the middle frame of the mobile phone, and the CG-surface suction nozzles can be controlled conveniently through the air circuit, so that a user can conveniently adsorb and loosen the mobile phone through the CG-surface positioning tool, namely, the mobile phone can absorb and discharge materials.

Description

Cell-phone center CG face location frock
Technical Field
The utility model relates to the technical field of mobile phone middle frame positioning tools, in particular to a mobile phone middle frame CG (g) surface positioning tool.
Background
With the increasing development of electronic technology, electronic products are becoming an integral part of daily life, especially smart products such as smart phones and tablet computers.
The production and consumption demands of the products such as the smart phones and the tablet personal computers are all on the rise, and the quality of the middle frame of the products directly influences the quality of the products because the products belong to the electronic products assembled and formed based on the middle frame.
The middle frame of the product is divided into a BG surface for installing a screen and a CG surface for installing a battery; the mobile phone middle frame clamp is often required to be positioned and placed through the clamp in the process of processing and detecting; because the BG surface of the mobile phone middle frame is required to be kept outwards sometimes, fixing is required to be achieved through the CG surface of the mobile phone middle frame, and the clamp in the prior art is difficult to be preferably suitable for clamping the CG surface of the mobile phone middle frame.
Disclosure of Invention
The utility model provides a mobile phone middle frame CG surface positioning tool, which comprises a CG surface positioning bottom plate for arranging an air path, wherein a CG surface suction head arranging plate is arranged on the upper end surface of the CG surface positioning bottom plate in a fitting way, a CG surface adsorption position is formed on the upper end surface of the CG surface suction head arranging plate, a plurality of CG surface suction nozzles connected with the air path are arranged on the CG surface suction head arranging plate, and the plurality of CG surface suction nozzles are matched with each other to adsorb a mobile phone middle frame at the CG surface adsorption position.
Specifically, the utility model is matched with the plurality of CG surface suction nozzles together to adsorb and position the middle frame of the mobile phone, and the CG surface suction nozzles can be controlled conveniently through the air path, so that a user can conveniently adsorb and loosen the mobile phone through the CG surface positioning tool, namely, the mobile phone can absorb and discharge materials. Therefore, the CG surface positioning tool can be used as a stable placing unit positioned through the CG surface in visual detection equipment of a mobile phone middle frame to be matched with other detection components or transplanting components.
Preferably, a CG surface mounting groove is formed at the side wall of the long side of the CG surface suction head arrangement plate, a CG surface proximity sensor is mounted in the CG surface mounting groove, and the induction direction of the CG surface proximity sensor faces towards the CG surface adsorption position for induction identification.
Specifically, when the CG surface proximity sensor senses that the middle frame of the mobile phone is close, a control signal is sent and the gas circuit is used for controlling so as to realize adsorption positioning.
Preferably, a wiring groove is formed at the corner of the CG surface positioning bottom plate, which is close to the outer wall of one side of the CG surface proximity sensor.
It will be appreciated that routing is preferably facilitated by the routing slots and the screws can be avoided.
Preferably, the wire groove extends to the CG surface mounting groove where the proximity sensor is located along the corner and is communicated, and a fillet is formed in a connecting area of the wire groove and the CG surface mounting groove.
In particular, the line pipe can be preferably prevented from being worn by the corner through the round corners.
Preferably, two CG-surface air passage ports are respectively arranged at the centers of the side wall and the bottom wall of the CG-surface positioning bottom plate, and O-shaped rings for sealing are arranged at the CG-surface air passage ports at the center of the bottom wall of the CG-surface positioning bottom plate.
Preferably, the side wall of the CG-surface positioning bottom plate provided with the CG-surface air passage opening is provided with a CG-surface process hole for processing an internal air passage, the CG-surface process hole is plugged by a screw after processing and assembling, and the CG-surface air passage opening is communicated with the CG-surface suction nozzle by the internal air passage.
Preferably, the number of the suction nozzles at the CG surface suction head arrangement plate is four, and the four suction nozzles are respectively arranged at positions near the four corners with respect to the center position of the CG surface suction head arrangement plate.
Preferably, four corners of the CG surface positioning bottom plate and the CG surface suction head arrangement plate, which are attached, are provided with through screw holes, and the screw holes are used for screwing in screws to position and connect the CG surface positioning bottom plate and the CG surface suction head.
Drawings
Fig. 1 is a schematic structural diagram of a CG surface positioning tool in embodiment 1;
fig. 2 is a schematic structural diagram of another view angle of the CG surface positioning tool in embodiment 1;
fig. 3 is a schematic structural view of a jig main body in embodiment 2;
FIG. 4 is a schematic view of the structure of FIG. 3 from another perspective;
fig. 5 is a schematic structural diagram of a BG surface of a mobile phone middle frame;
fig. 6 is a schematic diagram of the CG surface of the mobile phone center.
Detailed Description
For a further understanding of the present utility model, the present utility model will be described in detail with reference to examples. It is to be understood that the examples are illustrative of the present utility model and are not intended to be limiting.
Example 1
The present embodiment provides the CG surface locating tool 200 for locating cooperation with the CG surface of the test object in embodiment 1.
The CG surface positioning tool 200 comprises a CG surface positioning bottom plate 210 for connecting and arranging an air path, a CG surface suction head arranging plate 220 is arranged at the upper end face of the CG surface positioning bottom plate 210 in a laminating way, a CG surface suction position is formed at the upper end face of the CG surface suction head arranging plate 220, a plurality of CG surface suction nozzles 221 connected with the air path are arranged at the CG surface suction head arranging plate 220, and the plurality of CG surface suction nozzles 221 cooperate together to adsorb a detection object at the CG surface suction position.
Specifically, the utility model is matched with the plurality of CG surface suction nozzles together to adsorb and position the middle frame of the mobile phone, and the CG surface suction nozzles can be controlled conveniently through the air path, so that a user can conveniently adsorb and loosen the mobile phone through the CG surface positioning tool, namely, the mobile phone can absorb and discharge materials. Therefore, the CG surface positioning tool can be used as a stable placing unit positioned through the CG surface in visual detection equipment of a mobile phone middle frame to be matched with other detection components or transplanting components.
CG surface mounting grooves 222 are formed in the long side walls of the CG surface suction head arrangement plate 220, CG surface proximity sensors 223 are mounted in the CG surface mounting grooves 222, and the induction direction of the CG surface proximity sensors 223 faces towards the CG surface adsorption position for induction identification.
Specifically, when the CG surface proximity sensor senses that the middle frame of the mobile phone is close, a control signal is sent and the gas circuit is used for controlling so as to realize adsorption positioning.
Two CG-surface air passage ports 211 are respectively arranged at the centers of the side wall and the bottom wall of the CG-surface positioning bottom plate 210, and an O-shaped ring 212 for sealing is arranged at the CG-surface air passage port 211 at the center of the bottom wall of the CG-surface positioning bottom plate 210;
the CG surface positioning bottom plate 210 is provided with a CG surface process hole 213 for processing an internal gas circuit at the side wall of the CG surface gas circuit through hole 211, the process hole is plugged by a screw after processing and assembling, and the CG surface gas circuit through hole 211 is communicated with the CG surface suction nozzle 221 by the internal gas circuit.
The number of the suction nozzles at the CG surface suction head arrangement plate 220 is four, the four suction nozzles are respectively arranged at positions close to four corners relative to the central position of the CG surface suction head arrangement plate 220, a wiring groove is formed at the corner of the CG surface positioning bottom plate 210, which is close to the outer wall of one side of the CG surface proximity sensor 223, the wiring groove extends to the CG surface mounting groove 222 where the proximity sensor is located along the corner and is communicated with the CG surface mounting groove, and a rounded corner is formed at the connection area of the wiring groove and the CG surface mounting groove 222.
Four corners of the CG surface locating base plate 210 and the CG surface suction head arrangement plate 220, which are attached, are formed with through screw holes 214, and the screw holes 214 are used for screwing in screws to connect the CG surface locating base plate 210 and the CG surface suction nozzle 221 in a locating manner.
Example 2
The embodiment provides a BG surface product positioning fixture for positioning and matching with the BG surface of a middle frame of a mobile phone; the BG surface product positioning fixture comprises a fixture body 400, wherein the fixture body 400 comprises a BG surface placing bottom plate 410 which is arranged at the bottom of the fixture body and horizontally, a BG surface placing frame 420 which is arranged along the vertical direction is arranged on the upper portion of the BG surface placing bottom plate 410, a BG surface placing position for placing a detection object is formed at the upper end face of the BG surface placing frame 420, and a BG surface adsorption component and a BG surface inner limiting component for positioning the detection object at the BG surface placing position are arranged at the BG surface placing frame 420.
Specifically, because the BG face of the mobile phone middle frame is of a concave structure, and the BG face of the mobile phone middle frame is composed of a bottom wall which is horizontally arranged and a side wall which is vertically formed, the whole mobile phone middle frame is difficult to stably position simply through the fixation of the bottom wall or the side wall. The BG surface adsorption component in the embodiment can form adsorption fit with the bottom wall of the BG surface of the middle frame of the mobile phone to be positioned, and in addition, the BG surface inner limit component can be matched with the side wall of the BG surface of the middle frame of the mobile phone to form inner limit; therefore, the whole mobile phone middle frame can be positioned by the relative coordination with the BG surface of the mobile phone middle frame through the BG surface adsorption component and the BG surface inner limit component.
The BG surface adsorption component is used for being matched with the bottom wall of the BG surface of the detection object to realize adsorption, and the BG surface inner limit component is used for being abutted against the side wall of the BG surface of the detection object to form inner limit matching; the BG surface placement frame 420 is in a four-leg stool shape; the BG in-plane limiting assembly comprises four-claw air cylinders 430 arranged in the middle of the lower side of the BG plane placing frame 420, and four claw bodies 431 of the four-claw air cylinders 430 are distributed in an annular shape relative to the center of the BG plane placing position; the four claw bodies 431 are respectively perpendicular to four side lines of the detection object corresponding to the BG surface placement position and are arranged in a moving way along the perpendicular direction, one side of the center of the BG surface placement position of the four claw bodies 431 is vertically provided with a BG surface positioning pin 4311, and the BG surface positioning pin 4311 at each claw body 431 is provided with two and symmetrically arranged at two sides of the middle part of the corresponding side line;
the BG surface positioning pins 4311 at the four claw bodies 431 are respectively used for propping against and cooperating with the corresponding BG surface side walls of the detection object to form inner stretching positioning in a cooperative mode; the side wall of the BG surface rack 420 is provided with an air source interface 421 for connecting an air source pipeline.
It can be understood that the BG surface of the middle frame of the mobile phone can be positioned and loosened preferably through the structure, namely, the material sucking and discharging are performed; thus, the clamp body can be used in a device for detecting the appearance of the middle frame of the mobile phone, and can be preferably used as a placement unit to be matched with a related detection component and a transplanting component in the detection process.
A BG surface suction head arrangement plate 440 is arranged in a region surrounded by four claw bodies 431 of the four-claw cylinder 430 at the BG surface placement position; four corner areas of the BG surface suction head arrangement plate 440 are respectively provided with a BG surface suction nozzle 441; the BG surface suction nozzles 441 at the four corner areas are used for being in adsorption fit with the bottom wall of the BG surface so as to realize adsorption and release of a detection object; a BG surface proximity sensor 442 for identifying the detection object is also mounted at the BG surface suction cup mounting plate at one of the corner areas.
The mobile phone center near the clamp body 400 can be identified by the BG surface proximity sensor 442, and adsorption is realized by air source control.
It is to be understood that, based on one or several embodiments provided in the present utility model, those skilled in the art may combine, split, reorganize, etc. the embodiments of the present utility model to obtain other embodiments, which do not exceed the protection scope of the present utility model.
The utility model and its embodiments have been described above by way of illustration and not limitation, and the examples are merely illustrative of embodiments of the utility model and the actual construction is not limited thereto. Therefore, if one of ordinary skill in the art is informed by this disclosure, the structural mode and the embodiments similar to the technical scheme are not creatively designed without departing from the gist of the present utility model.

Claims (8)

1. A mobile phone middle frame CG surface positioning tool is characterized in that: the gas circuit detecting device comprises a CG surface positioning bottom plate (210) for arranging a gas circuit, a CG surface suction head arranging plate (220) is arranged at the upper end face of the CG surface positioning bottom plate (210) in a laminating mode, a CG surface suction head adsorbing position is formed at the upper end face of the CG surface suction head arranging plate (220), a plurality of CG surface suction nozzles (221) connected with the gas circuit are arranged at the CG surface suction head arranging plate (220), and the plurality of CG surface suction nozzles (221) are matched together to adsorb a detecting object at the CG surface suction position.
2. The mobile phone center CG surface positioning tool of claim 1, wherein: CG surface mounting grooves (222) are formed in the long side walls of the CG surface suction head arrangement plates (220), CG surface proximity sensors (223) are mounted in the CG surface mounting grooves (222), and the induction directions of the CG surface proximity sensors (223) face towards the CG surface adsorption positions for induction identification.
3. The mobile phone center CG surface positioning tool of claim 2, wherein: a wiring groove is formed at the corner of the outer wall of one side of the CG surface positioning bottom plate (210) close to the CG surface proximity sensor (223).
4. The mobile phone center CG surface positioning tool of claim 3, wherein: the wire slot extends to the CG surface mounting groove (222) where the proximity sensor is located along the corners and is communicated, and a round corner is formed in a connecting area of the wire slot and the CG surface mounting groove (222).
5. The mobile phone center CG surface positioning tool of claim 1, wherein: two CG-surface air passage ports (211) are respectively arranged at the centers of the side wall and the bottom wall of the CG-surface positioning bottom plate (210), and an O-shaped ring (212) for sealing is arranged at the CG-surface air passage port (211) at the center of the bottom wall of the CG-surface positioning bottom plate (210).
6. The mobile phone center CG surface positioning tool of claim 5, wherein: the side wall of the CG surface positioning bottom plate (210) provided with the CG surface air passage opening (211) is provided with a CG surface process hole (213) for processing an internal air passage, the CG surface process hole (213) is plugged by a screw after processing and assembling, and the CG surface air passage opening (211) is communicated with the CG surface suction nozzle (221) by the internal air passage.
7. The mobile phone center CG surface positioning tool of claim 1, wherein: the number of the suction nozzles at the CG-surface suction head arrangement plate (220) is four, and the four suction nozzles are respectively arranged at positions close to four corners relative to the center position of the CG-surface suction head arrangement plate (220).
8. The mobile phone center CG surface positioning tool of claim 1, wherein: four corners of the CG surface positioning bottom plate (210) and the CG surface suction head arrangement plate (220) are attached with through screw holes (214), and the screw holes (214) are used for screwing in screws to position and connect the CG surface positioning bottom plate (210) and the CG surface suction nozzle (221).
CN202320715790.6U 2023-04-04 2023-04-04 Cell-phone center CG face location frock Active CN219649680U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320715790.6U CN219649680U (en) 2023-04-04 2023-04-04 Cell-phone center CG face location frock

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320715790.6U CN219649680U (en) 2023-04-04 2023-04-04 Cell-phone center CG face location frock

Publications (1)

Publication Number Publication Date
CN219649680U true CN219649680U (en) 2023-09-08

Family

ID=87877441

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320715790.6U Active CN219649680U (en) 2023-04-04 2023-04-04 Cell-phone center CG face location frock

Country Status (1)

Country Link
CN (1) CN219649680U (en)

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