CN213494639U - Automatic assembly magnet device - Google Patents

Automatic assembly magnet device Download PDF

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Publication number
CN213494639U
CN213494639U CN202021512737.9U CN202021512737U CN213494639U CN 213494639 U CN213494639 U CN 213494639U CN 202021512737 U CN202021512737 U CN 202021512737U CN 213494639 U CN213494639 U CN 213494639U
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magnet
magnetism
pushing
automatic assembly
magnetic
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CN202021512737.9U
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王宏伟
苏广成
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Minami Electroacoustic Co Ltd
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Minami Electroacoustic Co Ltd
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Abstract

The utility model discloses an automatic assembly magnet device, the device comprises a device body, be equipped with the smelting tool clamping part on the device body, be equipped with on the device body portable being close to or keeping away from the point gum machine that the smelting tool clamping part is used for the point to glue constructs and portable being close to or keeping away from the smelting tool clamping part is used for assembling the magnetism mechanism that joins in marriage of magnet. This structure has realized the mechanization and the automation of smelting tool distribution of magnetism, can improve production efficiency and reduction in production cost effectively, has overcome magnet assembly and has adopted manual operation in the current earphone box of charging production process, and the installation degree of difficulty is big, work efficiency is low, problem that manufacturing cost is high.

Description

Automatic assembly magnet device
[ technical field ] A method for producing a semiconductor device
The application relates to the field of mechanical automation, in particular to an automatic assembly magnet device.
[ background of the invention ]
With the increasing requirements of earphone production technology, the appearance and production efficiency need to be improved. The existing earphone charging box is usually opened and closed by magnetic attraction. In the production process, the magnet assembly adopts manual operation, the operation space in the box body and the box cover is limited, the installation positions are different in direction, the magnet is small in size, the installation difficulty is high, the working efficiency is low, and the production cost is high.
[ Utility model ] content
The utility model discloses magnet assembly adopts manual operation in the box production process that charges to current earphone, and the installation degree of difficulty is big, work efficiency is low, problem that manufacturing cost is high makes the improvement, provides automatic assembly magnet device, including the device body, be equipped with the smelting tool clamping part on the device body, be equipped with on the device body portable being close to or keeping away from the smelting tool clamping part is used for some glue the point gum machine structure of gluing and portable being close to or keeping away from the smelting tool clamping part is used for assembling the magnetism mechanism that joins in marriage of magnet.
As an improvement of above-mentioned automatic assembly magnet device, be equipped with on the device body and portable be close to or keep away from the base plate of smelting tool clamping part, point gum machine constructs including a plurality of settings sub-point gum machine on the base plate constructs, and is a plurality of be connected with on the output of sub-point gum machine and be used for the intercommunication a plurality of sub-point gum machine constructs's communicating pipe, the intercommunication has the rubber outlet pipe on communicating pipe.
As an improvement of the automatic assembly magnet device, the sub-glue dispensing mechanism comprises a glue outlet valve arranged on the substrate, a glue outlet power mechanism used for opening and closing the glue outlet valve is connected to the glue outlet valve, and the output end of the glue outlet valve is provided with the communicating pipe.
As an improvement of the above automatic assembly magnet device, the magnetic distribution mechanism comprises a magnetic storage mechanism arranged on the substrate and used for storing magnets, and a magnetic storage mechanism arranged on one side of the magnetic storage mechanism and used for pushing away the magnets, the first magnetic pushing mechanism of the magnetic storage mechanism and the magnetic storage mechanism arranged on the other side of the magnetic storage mechanism are used for pushing away the magnets of the magnetic storage mechanism to the second magnetic pushing mechanism of the fixture clamping part.
As an improvement of the above automatic assembly magnet device, the magnet storage mechanism includes a magnet storage body disposed on the substrate and a magnet storage cavity disposed in the magnet storage body and having an opening at an upper end of the magnet storage body, and the magnet storage cavity is used for storing a magnet.
As an improvement of the above automatic assembly magnet device, the first magnetic pushing mechanism includes a first magnetic pushing hole formed in the magnetic storage body, the first magnetic pushing hole penetrates through the magnetic storage cavity and opens at a side of the magnetic storage body, the first magnetic pushing mechanism further includes a first magnetic pushing mechanism formed on the substrate and a first magnetic pushing rod driven by the first magnetic pushing mechanism to move along the first magnetic pushing hole to push the magnet away from the magnetic storage cavity.
As an improvement of above-mentioned automatic assembly magnet device, the second pushes away magnetic mechanism including locating store up on the magnetism body with first second that pushes away the magnetic flux hole intercommunication pushes away the magnetic flux hole, the second pushes away the magnetic flux hole and from down run through store up the magnetism body, the second pushes away magnetic mechanism still including locating store up second on the magnetism body and push away magnetic mechanism and follow under the drive that the second pushed away magnetic power unit the second pushes away the magnetic flux hole and removes and push towards magnet to the second of smelting tool clamping part pushes away the magnetic pole.
As an improvement of the above automatic assembly magnet device, the device body includes the bed frame and is located the base of bed frame below, be equipped with on the bed frame the base plate, be equipped with on the base plate the point gum machine constructs with join in marriage magnetic mechanism, be equipped with on the bed frame and glue the bucket, go out to glue the valve with glue the bucket intercommunication, be equipped with on the base the smelting tool clamping part.
As an improvement of the above automatic assembly magnet device, a moving seat moving left and right along the base frame is arranged on the base frame, and the base plate moving up and down in the vertical direction is arranged on the moving seat.
As an improvement of above-mentioned automatic assembly magnet device, be equipped with the slide rail by preceding backward extension on the base, the slide rail can extend to the below of base plate, be equipped with the slide that moves along its extending direction on the slide rail, be equipped with on the slide the smelting tool clamping part.
Compared with the prior art, the utility model has the advantages of as follows:
the utility model provides an automatic assembly magnet device mainly by the smelting tool clamping part of centre gripping smelting tool, can move to the smelting tool and carry out the point gum machine that glues to the smelting tool and can move to the smelting tool and carry out the joining in marriage magnetism mechanism of magnet and constitute to the smelting tool. This structure has realized the mechanization and the automation of smelting tool distribution of magnetism, can improve production efficiency and reduction in production cost effectively, has overcome magnet assembly and has adopted manual operation in the current earphone box of charging production process, and the installation degree of difficulty is big, work efficiency is low, problem that manufacturing cost is high.
[ description of the drawings ]
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings used in the description of the embodiments will be briefly introduced below.
FIG. 1 is a perspective view of the self-assembling magnet apparatus of the present application;
FIG. 2 is an enlarged view of a portion of FIG. 1 at A;
FIG. 3 is an enlarged view of a portion of FIG. 1 at B;
FIG. 4 is a perspective view of a dispensing mechanism and a magnetic dispensing mechanism of the automatic magnet assembly apparatus of the present application;
FIG. 5 is a perspective view of a dispensing mechanism of the present application for automatically assembling a magnet assembly;
FIG. 6 is a perspective view of a magnetic mechanism of the present application for automatically assembling a magnet assembly;
FIG. 7 is a perspective view of a magnetic mechanism of the present application for automatically assembling a magnet assembly;
FIG. 8 is an enlarged view of a portion of FIG. 7 at C;
fig. 9 is a partial enlarged view of fig. 7 at D.
[ detailed description ] embodiments
In order to make the technical problems, technical solutions and advantageous effects solved by the present application more clear and obvious, the present application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present application and are not intended to limit the present application.
The automatic assembly magnet device shown in fig. 1-9 comprises a device body 1, the device body 1 comprises a pedestal 11 and a base 12 located below the pedestal 11, a smelting tool clamping part 2 used for clamping a smelting tool is arranged on the base 12, a moving seat 100 is arranged on the pedestal 11 in the horizontal direction in a left-right mode, the moving seat 100 is provided with a base plate 5 which is vertically moved up and down to be close to or far away from the smelting tool clamping part 2, a glue dispensing mechanism 3 used for dispensing and a magnetism distribution mechanism 4 used for assembling magnets are arranged on the base plate 5, the glue dispensing mechanism 3 and the magnetism distribution mechanism 4 follow the moving seat 100 and the base plate 5 move in the horizontal direction and the vertical direction to realize that the clamping is close to the smelting tool on the smelting tool clamping part 2, and the glue dispensing and the magnetism distribution of the smelting tool are realized. The specific operation is as follows: firstly, clamping a jig on the jig clamping part 2, and moving the moving seat 100 and the substrate 5 in the horizontal direction and the vertical direction respectively to move the glue dispensing mechanism 3 to a position of the jig requiring glue dispensing, wherein the glue dispensing mechanism 3 extrudes glue; remove seat 100 with base plate 5 continues to remove respectively in horizontal direction and vertical direction, makes on distribution magnetic mechanism 4 moves to the position that the smelting tool needs to distribute magnetism, distribution magnetic mechanism 4 pushes away magnet, the distribution magnetism of the final completion smelting tool. In conclusion, the structure realizes mechanization and automation of magnetic distribution of the smelting tool, improves the production efficiency and reduces the production cost.
Further, be equipped with the slide rail 200 that extends from the past backward on the horizontal plane on the base 12, slide rail 200 can extend to the below of base plate 5, be equipped with the slide 300 that moves along its extending direction on the slide rail 200, be equipped with on the slide 300 the smelting tool clamping part 2. As can be seen from the figure, the smelting tool clamping part 2 comprises a smelting tool supporting plate arranged on the sliding seat 300 and a limiting strip arranged at intervals on the periphery of the smelting tool supporting plate.
Further, a glue barrel 8 is arranged on the base frame 11, the glue dispensing mechanism 3 includes a plurality of sub-glue dispensing mechanisms 31 arranged on the substrate 5, each sub-glue dispensing mechanism 31 includes a glue outlet valve 311 arranged on the substrate 5 and communicated with the glue barrel 8, the glue outlet valve 311 is used for controlling the glue outlet amount of the output end of the glue outlet valve 311, a glue outlet power mechanism 312 used for opening and closing the glue outlet valve 311 is connected to the glue outlet valve 311, and the glue outlet power mechanism 312 is a cylinder; the output ends of the plurality of sub glue valves 311 are connected with a communication pipe 6 for communicating the plurality of sub glue valves 311, and the communication pipe 6 is communicated with a glue outlet pipe 7. Because the glue that is used for adhesion magnet is of a great variety, and the mixing proportion of various glue differs, the utility model discloses do further optimization on the basis of basic scheme to when realizing the mixture of multiple different grade type glue, when satisfying the production needs, further improved production efficiency and reduction in production cost.
Specifically, join in marriage magnetism mechanism 4 including locating store up magnetism mechanism 41, locate that are used for depositing magnet on the base plate 5 store up magnetism mechanism 41 one side and be used for pushing away magnet store up the first magnetism mechanism 42 that pushes away of magnetism mechanism 41 and locate store up magnetism mechanism 41 opposite side and be used for pushing towards magnet the second of smelting tool holder 2 pushes away magnetism mechanism 43.
The magnetic storage mechanism 41 comprises a magnetic storage body 411 arranged on the substrate 5 and a magnetic storage cavity 412 which is arranged in the magnetic storage body 411 and has an opening at the upper end of the magnetic storage body 411 for storing a magnet, and as can be seen from the figure, the magnetic storage body 411 extends along the vertical direction, and the magnetic storage cavity 412 adopts the structure, so that the magnet can move downwards under the action of gravity, and a power mechanism is not required to be additionally arranged to realize the downward movement of the magnet.
Wherein, first magnetism mechanism 42 of pushing away is including locating store up the first magnetic flux hole 421 that pushes away in the magnetism body 411, first magnetism hole 421 of pushing away runs through store up magnetism chamber 412 and opening in store up the side of magnetism body 411, first magnetism mechanism 42 of pushing away is still including locating first magnetism power mechanism 422 on the base plate 5 and be in the drive of first magnetism power mechanism 422 is followed first magnetism hole 421 of pushing away moves and is pushed away magnet store up the first magnetism pole 423 of magnetism chamber 412. As can be seen, the first flux pushing hole 421 extends in the horizontal direction and is perpendicular to the magnetic storage cavity 412. This structure is beneficial for the magnet moving to the bottom of the magnetic storage cavity 412 to smoothly separate from the magnetic storage cavity 412 under the action of the first magnetic pushing rod 42, and has simple overall structure and convenient implementation.
Wherein, the second pushes away magnetic mechanism 43 including locate store up on the magnetism body 411 with the first second that pushes away the magnetic flux hole 421 intercommunication pushes away the magnetic flux hole 431, the second pushes away the magnetic flux hole 431 from up down running through store up magnetism body 411, the second pushes away magnetic mechanism 43 still including locating second on storing the magnetism body 411 pushes away magnetic mechanism 432 and the second pushes away follows under the drive of magnetic mechanism 432 the second pushes away the magnetic flux hole 431 and removes and push towards magnet to the second of smelting tool clamping part 2 pushes away magnetic pole 433. As can be seen from the figure, the second flux pushing hole 431 extends in the vertical direction and is perpendicular to the first flux pushing through hole 421. This structure is favorable to the magnet to be in the first promotion of pushing away the magnetic pole 42 moves down to when the second pushed away magnetic through hole 431 upper end, the magnet can be smoothly in the second pushes away the promotion of magnetic pole 433 and moves down from top to bottom and pushes away in the smelting tool. And the whole structure is simple, and the implementation is convenient.
It should be understood that the terms "first", "second", etc. are used herein to describe various information, but the information should not be limited to these terms, and these terms are only used to distinguish one type of information from another. For example, "first" information may also be referred to as "second" information, and similarly, "second" information may also be referred to as "first" information, without departing from the scope of the present application. Furthermore, the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience in describing the present application and simplifying the description, but do not indicate or imply that the referred devices or elements must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present application.
The foregoing is illustrative of one or more embodiments provided in connection with the detailed description and is not intended to limit the disclosure to the particular forms disclosed. Similar or identical methods, structures, etc. as used herein, or several technical inferences or substitutions made on the concept of the present application should be considered as the scope of the present application.

Claims (10)

1. Automatic assembly magnet device, its characterized in that includes device body (1), be equipped with smelting tool clamping part (2) on device body (1), be equipped with on device body (1) portable being close to or keeping away from smelting tool clamping part (2) are used for some glue dispensing mechanism (3) and portable being close to or keeping away from smelting tool clamping part (2) are used for assembling joining in marriage magnetic mechanism (4) of magnet.
2. The automatic assembly magnet device according to claim 1, wherein a base plate (5) which is movable and close to or far away from the jig clamping part (2) is arranged on the device body (1), the dispensing mechanism (3) comprises a plurality of sub-dispensing mechanisms (31) arranged on the base plate (5), the output ends of the sub-dispensing mechanisms (31) are connected with communicating pipes (6) used for communicating the sub-dispensing mechanisms (31), and rubber outlet pipes (7) are communicated with the communicating pipes (6).
3. The automatic assembly magnet device according to claim 2, wherein the sub-dispensing mechanism (31) comprises a glue outlet valve (311) arranged on the substrate (5), the glue outlet valve (311) is connected with a glue outlet power mechanism (312) for opening and closing the glue outlet valve (311), and the output end of the glue outlet valve (311) is provided with the communication pipe (6).
4. The automatic assembly magnet device according to claim 2, wherein the magnet distribution mechanism (4) comprises a magnet storage mechanism (41) arranged on the substrate (5) for storing a magnet, a first magnet pushing mechanism (42) arranged on one side of the magnet storage mechanism (41) for pushing the magnet away from the magnet storage mechanism (41), and a second magnet pushing mechanism (43) arranged on the other side of the magnet storage mechanism (41) for pushing the magnet away from the magnet storage mechanism (41) toward the jig clamping part (2).
5. The automatic assembly magnet device according to claim 4, wherein the magnet storage mechanism (41) comprises a magnet storage body (411) arranged on the base plate (5) and a magnet storage cavity (412) arranged in the magnet storage body (411) and opened at the upper end of the magnet storage body (411), and the magnet storage cavity (412) is used for storing a magnet.
6. The automatic assembly magnet device according to claim 5, wherein the first magnetism pushing mechanism (42) comprises a first magnetism pushing flux hole (421) formed in the magnetism storage body (411), the first magnetism pushing flux hole (421) penetrates through the magnetism storage cavity (412) and opens at a side of the magnetism storage body (411), the first magnetism pushing mechanism (42) further comprises a first magnetism pushing power mechanism (422) formed on the substrate (5) and a first magnetism pushing rod (423) driven by the first magnetism pushing power mechanism (422) to move along the first magnetism pushing flux hole (421) to push the magnet away from the magnetism storage cavity (412).
7. The automatic assembly magnet device of claim 6, wherein the second pushes away magnetic mechanism (43) including locate store on the magnetism body (411) with first push away magnetic through hole (421) intercommunication second push away magnetic through hole (431), second push away magnetic through hole (431) from top to bottom run through store the magnetism body (411), second push away magnetic mechanism (43) still including locate store second push away magnetic power mechanism (432) on magnetism body (411) and push away magnetic power mechanism (432) drive down follow the second push away magnetic through hole (431) and remove to push away magnet to the second push away magnetic pole (433) of smelting tool clamping part (2).
8. The automatic assembly magnet device according to claim 3, wherein the device body (1) comprises a pedestal (11) and a base (12) located below the pedestal (11), the base plate (5) is arranged on the pedestal (11), the dispensing mechanism (3) and the magnetism distribution mechanism (4) are arranged on the base plate (5), the glue barrel (8) is arranged on the pedestal (11), the glue outlet valve (311) is communicated with the glue barrel (8), and the jig clamping part (2) is arranged on the base (12).
9. The automatic assembly magnet device according to claim 8, wherein the base frame (11) is provided with a moving base (100) moving left and right along the base frame (11), and the base plate (5) moving up and down in a vertical direction is provided on the moving base (100).
10. The automatic assembly magnet device according to claim 8, wherein the base (12) is provided with a slide rail (200) extending from front to back, the slide rail (200) can extend to the lower part of the base plate (5), the slide rail (200) is provided with a slide (300) moving along the extending direction of the slide rail, and the slide (300) is provided with the jig clamping portion (2).
CN202021512737.9U 2020-07-28 2020-07-28 Automatic assembly magnet device Active CN213494639U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021512737.9U CN213494639U (en) 2020-07-28 2020-07-28 Automatic assembly magnet device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021512737.9U CN213494639U (en) 2020-07-28 2020-07-28 Automatic assembly magnet device

Publications (1)

Publication Number Publication Date
CN213494639U true CN213494639U (en) 2021-06-22

Family

ID=76435493

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021512737.9U Active CN213494639U (en) 2020-07-28 2020-07-28 Automatic assembly magnet device

Country Status (1)

Country Link
CN (1) CN213494639U (en)

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