Magnet mounting device

By designing a magnet mounting device and utilizing a combination of a material suction unit and a load-bearing unit, the problem of orientation and positional deviation in the installation of Bluetooth headset magnets was solved, achieving precise installation and stability of the magnets, and improving production efficiency and product yield.

CN223600030UActive Publication Date: 2025-11-25JIANGXI LUXSHARE INTELLIGENT MFG CO LTD
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Patent Information

Application Number
CN202423186181.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-11-25
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

During the production of Bluetooth headsets, the magnetic poles of the magnets inside the headset unit are easily reversed, and the installation position is prone to deviation, affecting the product's functionality.

Method used

Design a magnet mounting device, including a suction unit and a support unit, which uses a first adsorption magnet to adsorb the product magnet, and ensures the correct installation direction and position of the magnet by a pushing component and an adsorption component.

Benefits of technology

This improved the accuracy and efficiency of magnet installation, reduced product defect rates, and ensured the correctness and stability of magnet installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of earphone assembly, and discloses a magnet mounting device. The magnet mounting device comprises a material suction unit and a bearing unit and comprises a mounting cylinder and an abutting and pushing assembly, the mounting cylinder is provided with a first containing groove, a first adsorption magnet is arranged in the first containing groove, when a product magnet is placed in the first containing groove, the first adsorption magnet adsorbs the product magnet, and the abutting and pushing assembly is arranged on the mounting cylinder; the abutting-pushing assembly can drive the product magnet to be separated from the first containing groove. The bearing unit comprises a bearing seat and an adsorption assembly, the bearing seat is provided with a second containing groove, when the first containing groove is buckled to the second containing groove in a right opposite mode, the abutting-pushing assembly can drive the product magnet in the first containing groove to move into the assembling groove of the product base in the second containing groove, and the adsorption assembly can adsorb the product magnet in the assembling groove. The magnet mounting device has a good fool-proof effect and can ensure the mounting accuracy of the product magnet, so that the production efficiency and the yield of the product are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to earphone assembly technical field especially relates to a magnet installation device. BACKGROUND

[0002] In order to facilitate the storage and charging of bluetooth headset, bluetooth headset is equipped with earphone box, and the earphone box has a storage bin, when not using earphone, earphone single body is put into the storage bin and can be stored and placed. In order to improve the protection of earphone box to earphone single body, and also can charge earphone single body, the storage bin and earphone single body are provided with magnets, and the magnet can adsorb earphone single body, so that earphone single body is pressed tightly to charge spring needle, to start the charging process.

[0003] At present, when producing bluetooth headset, the magnetic pole of the magnet in the earphone single body is easy to be installed reversely because the human eye cannot distinguish directly, and due to the small size of the magnet, the installation position is easy to deviate in the installation process, thereby affecting the product function.

[0004] Therefore, it is urgent to design an installation device to solve the above problems existing in the prior art. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a kind of magnet installation device, simple structure, easy operation, can guarantee the accuracy of product magnet installation, to improve product yield.

[0006] To achieve this purpose, the utility model adopts the following technical solutions:

[0007] The utility model provides a kind of magnet installation device, comprising:

[0008] Suction unit, including installation cylinder and push assembly, the installation cylinder is provided with first containing groove, the first containing groove is provided with first suction magnet, when product magnet is placed in the first containing groove, the first suction magnet adsorbs the product magnet, the push assembly is set in the installation cylinder;

[0009] Bearing unit, including bearing seat and suction assembly, the bearing seat is provided with second containing groove to place product base, when the first containing groove is opposite and buckled in the second containing groove, the push assembly can drive the product magnet in the first containing groove moves to the assembly groove of product base in the second containing groove, and the suction assembly can adsorb the product magnet in the assembly groove.

[0010] As preferably, the push assembly includes upper operating part, the upper operating part is slidably connected to the installation cylinder, when the upper operating part extends into the first containing groove, the product magnet can be driven to separate from the first containing groove.

[0011] As preferably, the pushing assembly further comprises an elastic member, the elastic member is clamped between the mounting cylinder and the upper operating member, and the elastic member is configured to drive the upper operating member to exit the first accommodating groove.

[0012] As preferably, the first accommodating groove is provided in plurality, and the upper operating member is provided with a plurality of top pins, and the plurality of top pins are provided in one-to-one correspondence with the plurality of first accommodating grooves.

[0013] As preferably, a guide pin is arranged on the mounting cylinder, a limiting hole is arranged on the bearing seat, and when the guide pin is inserted into the limiting hole, the first accommodating groove is directly buckled into the second accommodating groove.

[0014] As preferably, the adsorbing assembly comprises a lower operating member and a second adsorbing magnet, the lower operating member is slidably connected to the bearing seat, the second adsorbing magnet is arranged on the lower operating member, the lower operating member can move between an adsorbing position and a releasing position relative to the bearing seat, the second adsorbing magnet adsorbs the product magnet in the second accommodating groove when the lower operating member moves to the adsorbing position, and the second adsorbing magnet releases the product magnet in the second accommodating groove when the lower operating member moves to the releasing position.

[0015] As preferably, the adsorbing assembly further comprises a dial block, an upper adsorbing magnet is arranged on the dial block, the lower operating member is connected to the dial block, an upper magnet is arranged on the bearing seat, and the lower operating member moves to the adsorbing position when the upper adsorbing magnet is adsorbed on the upper magnet.

[0016] As preferably, the adsorbing assembly further comprises a dial block, a lower adsorbing magnet is arranged on the dial block, the lower operating member is connected to the dial block, a lower magnet is arranged on the bearing seat, and the lower operating member moves to the releasing position when the lower adsorbing magnet is adsorbed on the lower magnet.

[0017] As preferably, the magnet mounting device further comprises a gland assembly, the gland assembly is detachably connected to the bearing seat, and the gland assembly can press the product magnet against the groove bottom of the assembly groove.

[0018] As preferably, the gland assembly comprises a connecting plate and a pressing claw, the pressing claw is rotatably arranged on the connecting plate, the connecting plate is detachably connected to the bearing seat, and the pressing claw can press the product magnet in the assembly groove when the pressing claw rotates.

[0019] The utility model discloses the beneficial effect lies in:

[0020] 1. The magnet mounting device provided by the utility model comprises a material suction unit and a bearing unit, the material suction unit comprises a mounting cylinder, the mounting cylinder is provided with a first accommodating groove, and the first accommodating groove is provided with a first adsorbing magnet, therefore, the product magnet can be adsorbed by the first adsorbing magnet and stably placed in the first accommodating groove, and can be driven to move by the mounting cylinder.

[0021] 2. Since the first adsorbing magnet and the product magnet are both magnetic objects, the first adsorbing magnet and the product magnet both have magnetic poles, when the product magnet is not installed in the first accommodating groove according to the set direction, the product magnet cannot be placed in the first accommodating groove due to the repulsion of the first adsorbing magnet, thereby prompting the worker, and ensuring that the magnetic pole installation direction of the product magnet is correct.

[0022] 3. Since the bearing seat is provided with a second accommodating groove, the product base can be stably placed on the bearing seat; the product base is provided with an assembly groove, when the first accommodating groove is directly buckled in the second accommodating groove, the pushing assembly can drive the product magnet to separate from the first accommodating groove and move into the assembly groove of the product base, therefore, the material suction unit can accurately place the product magnet on the product base.

[0023] 4. Since the adsorbing assembly can adsorb the product magnet placed on the product base in the second accommodating groove, after the product magnet is placed in the assembly groove, the adsorbing assembly adsorbs the product magnet in the assembly groove, so as to prevent the product magnet from being adsorbed again by the first adsorbing magnet or being deviated due to the influence of the first adsorbing magnet after the placement is completed.

[0024] The magnet mounting device has the advantages of simple structure, convenient operation, good foolproof effect and high product production efficiency and product yield. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 is a structural schematic view of the magnet mounting device provided by the embodiment of the utility model;

[0026] Figure 2 is an exploded view of the material suction unit provided by the embodiment of the utility model;

[0027] Figure 3 is Figure 2 is a local enlarged view of A in the figure;

[0028] Figure 4 is a structural schematic view of the bearing unit provided by the embodiment of the utility model;

[0029] Figure 5 is a structural schematic view of the adsorbing assembly provided by the embodiment of the utility model;

[0030] Figure 6 is a split view of the bearing seat provided by the embodiment of the utility model.

[0031] In the drawings:

[0032] 100 - product magnet;

[0033] 200 - product base; 210 - assembly groove;

[0034] 1 - suction unit; 11 - mounting cylinder; 111 - first containing groove; 112 - first suction magnet; 12 - pushing assembly; 121 - upper operating member; 122 - elastic member; 123 - thimble; 13 - guide pin;

[0035] 2 - bearing unit; 21 - bearing seat; 211 - second containing groove; 212 - limiting hole; 213 - seat body; 214 - carrier; 215 - lower magnet; 22 - suction assembly; 221 - lower operating member; 222 - second suction magnet; 223 - shifting block; 2231 - upper suction magnet;

[0036] 3 - gland assembly; 31 - connecting plate; 32 - pressing claw. DETAILED DESCRIPTION

[0037] The utility model will be further described in detail below in combination with the drawings and examples. It can be understood that the specific examples described herein are only used to explain the utility model, and not limited to the utility model. In addition, it should be noted that, in order to facilitate the description, only the part related to the utility model is shown in the drawings, not all structures.

[0038] In the description of the utility model, unless otherwise explicitly specified and limited, the terms "connected", "connected", "fixed" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, it can be the communication or interaction of two elements inside two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0039] In the utility model, unless another definite provision and limitation, first feature is "on" or "under" second feature can include that first and second features are in direct contact, also can include that first and second features are not in direct contact but contact through other feature between them. Moreover, first feature "on", "above" and "upper surface of" second feature includes that first feature is directly above and obliquely above second feature, or only indicates that horizontal height of first feature is higher than second feature. First feature "under", "below" and "under surface of" second feature includes that first feature is directly below and obliquely below second feature, or only indicates that horizontal height of first feature is less than second feature.

[0040] In the description of the present embodiment, the terms "upper", "lower", "right", "left" and other orientation or position relationship are based on the orientation or position relationship shown in the drawings, only for the convenience of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model. In addition, the terms "first", "second" are only used to distinguish in the description, and have no special meaning.

[0041] As Figure 1 , Figure 3 , Figure 5 And Figure 6The utility model provides a magnet mounting device, the magnet mounting device includes suction unit 1 and bearing unit 2, suction unit 1 includes installation cylinder 11 and push assembly 12, installation cylinder 11 is provided with first containing groove 111, first containing groove 111 is provided with first adsorption magnet 112, product magnet 100 is placed in first containing groove 111, first adsorption magnet 112 adsorbs product magnet 100, push assembly 12 is arranged in installation cylinder 11, bearing unit 2 includes bearing seat 21 and adsorption assembly 22, bearing seat 21 is provided with second containing groove 211 to place product base 200, when first containing groove 111 is opposite buckling in second containing groove 211, push assembly 12 can drive product magnet 100 in first containing groove 111 moves to the assembly groove 210 of product base 200 in second containing groove 211, and adsorption assembly 22 can adsorb product magnet 100 in assembly groove 210, in this embodiment, because installation cylinder 11 is provided with first containing groove 111, and first containing groove 111 is provided with first adsorption magnet 112, therefore product magnet 100 can be adsorbed by first adsorption magnet 112 and stably placed in first containing groove 111, and can be driven and moved by installation cylinder 11, because first adsorption magnet 112 and product magnet 100 are all magnetic objects, therefore first adsorption magnet 112 and product magnet 100 all have magnetic pole, when the magnetic pole of product magnet 100 is opposite and installs in first containing groove 111, will not be put into first containing groove 111 due to the repulsive force of first adsorption magnet 112, thereby prompting the work staff, ensure that the magnetic pole installation direction of product magnet 100 is correct, bearing unit 2 includes adsorption assembly 22 and bearing seat 21, because bearing seat 21 is provided with second containing groove 211, therefore product base 200 can stably be placed on bearing seat 21, product base 200 has assembly groove 210, because first containing groove 111 is opposite buckling in second containing groove 211, push assembly 12 can drive product magnet 100 and move to the assembly groove 210 of product base 200 and separate first containing groove 111, therefore suction unit 1 can accurately place product magnet 100 on product base 200, because adsorption assembly 22 can adsorb product magnet 100 on product base 200 in second containing groove 211, therefore after product magnet 100 is put into assembly groove 210, adsorption assembly 22 firmly adsorbs product magnet 100 in assembly groove 210, to prevent product magnet 100 from being adsorbed and taken away again under the magnetic force action of first adsorption magnet 112 after placing completion, or the position is deviated by the influence of first adsorption magnet 112.

[0042] The magnet mounting device has simple structure and convenient operation, the first adsorption magnet 112 in the first accommodating groove 111 can play a good foolproof effect, and under the cooperation of the adsorption assembly 22, the product magnet 100 can be stably attached to the product base 200, thereby ensuring the accuracy of the installation of the product magnet 100 and improving the product production efficiency and product yield.

[0043] The structure of the pushing assembly 12 and the mounting cylinder 11 can be set according to actual needs, as long as the product magnet 100 in the first accommodating groove 111 can be driven by the pushing assembly 12 to move into the assembly groove 210 of the product base 200 when the first accommodating groove 111 is directly buckled to the second accommodating groove 211. Exemplarily, the pushing assembly 12 includes an upper operating member 121, the upper operating member 121 is slidingly connected to the mounting cylinder 11, and the upper operating member 121 can push the product magnet 100 away from the first accommodating groove 111 when the upper operating member 121 extends into the first accommodating groove 111. Specifically, the mounting cylinder 11 has a cylindrical structure, the upper operating member 121 is arranged inside the mounting cylinder 11 along the length direction of the mounting cylinder 11, the first accommodating groove 111 is arranged at the end of the mounting cylinder 11, a through hole is formed in the groove bottom of the first accommodating groove 111, the through hole is communicated with the inside of the mounting cylinder 11, and the upper operating member 121 can push the product magnet 100 away from the first accommodating groove 111 through the through hole, so as to overcome the adsorption force of the first adsorption magnet 112 on the product magnet 100 and push the product magnet 100 out of the first accommodating groove 111.

[0044] In order to ensure the stability of the product magnet 100 placed in the first accommodating groove 111 and improve the automation degree of the material suction unit 1, the pushing assembly 12 further includes an elastic member 122, the elastic member 122 is clamped between the mounting cylinder 11 and the upper operating member 121, and the elastic member 122 is configured to push the upper operating member 121 out of the first accommodating groove 111. Specifically, as shown in Figure 2 the elastic member 122 is arranged inside the mounting cylinder 11, one end of the elastic member 122 abuts against the end of the mounting cylinder 11, the other end of the elastic member 122 abuts against the upper operating member 121, the upper operating member 121 compresses the elastic member 122 when the upper operating member 121 is pressed into the first accommodating groove 111 to push the product magnet 100, and after the product magnet 100 falls into the assembly groove 210 of the product base 200 and is separated from the first accommodating groove 111, the pressing of the upper operating member 121 is stopped, and then the upper operating member 121 returns to the initial position under the elastic force of the elastic member 122, so as to facilitate the staff to put the product magnet 100 into the first accommodating groove 111 again.

[0045] In the actual production process, a plurality of product magnets 100 need to be installed on the product base 200, and therefore in order to improve the production efficiency, as shown in Figure 2As shown, the first accommodating grooves 111 are provided in plurality, the upper operating member 121 is provided with a plurality of ejector pins 123, and the plurality of ejector pins 123 are provided in one-to-one correspondence with the plurality of first accommodating grooves 111. It can be understood that the bottom of each first accommodating groove 111 is provided with a first adsorption magnet 112, and the shape of the first accommodating groove 111 matches the product magnet 100; the upper operating member 121 includes a plurality of ejector pins 123 provided on a rod body, when the rod body is pressed, the plurality of ejector pins 123 will respectively pass through the through holes of the plurality of first accommodating grooves 111 and simultaneously push the plurality of product magnets 100.

[0046] Further, as shown in Figure 1 and Figure 4 , the mounting cylinder 11 is provided with a guide pin 13, the bearing seat 21 is provided with a limiting hole 212, when the guide pin 13 is inserted into the limiting hole 212, the first accommodating groove 111 is directly buckled to the second accommodating groove 211; the insertion fit of the guide pin 13 and the limiting hole 212 plays a guiding role for the movement of the mounting cylinder 11, so that the first accommodating groove 111 can be directly buckled to the second accommodating groove 211, thereby ensuring that the product magnet 100 is accurately dropped into the assembly groove 210 of the product base 200 in the second accommodating groove 211.

[0047] Further, as shown in Figure 5 and Figure 6As shown, the adsorption assembly 22 comprises a lower operating member 221 and a second adsorption magnet 222, the lower operating member 221 is slidingly connected to the bearing seat 21, and the second adsorption magnet 222 is arranged on the lower operating member 221. The lower operating member 221 is movable relative to the bearing seat 21 between an adsorption position and a release position. When the lower operating member 221 moves to the adsorption position, the second adsorption magnet 222 adsorbs the product magnet 100 in the second containing groove 211. When the lower operating member 221 moves to the release position, the second adsorption magnet 222 releases the product magnet 100 in the second containing groove 211. Specifically, the lower operating member 221 is capable of sliding up and down on the bearing seat 21. When the lower operating member 221 slides upward to the topmost end, the lower operating member 221 moves to the adsorption position, and at this time, the second adsorption magnet 222 is close to the product base 200 in the second containing groove 211. When the lower operating member 221 slides downward to the lowest end, the lower operating member 221 moves to the release position, and at this time, the second adsorption magnet 222 is away from the product base 200 in the second containing groove 211. It can be understood that, under the guidance of the guide pin 13, the mounting cylinder 11 drives the first containing groove 111 to be buckled against the second containing groove 211, and then the upper operating member 121 is pressed. At this time, the product magnet 100 in the first containing groove 111 is pushed by the ejector pin 123 into the assembly groove 210 of the product base 200. Then, the lower operating member 221 is moved upward to the adsorption position. At this time, the second adsorption magnet 222 on the lower operating member 221 can adsorb the product magnet 100 in the assembly groove 210 of the product base 200, so that the product magnet 100 is adsorbed and stably retained on the product base 200, thereby facilitating subsequent dispensing work. Before the mounting cylinder 11 drives the first containing groove 111 to be buckled against the second containing groove 211, the lower operating member 221 needs to be moved to the release position. At this time, the lower operating member 221 is away from the product base 200 in the second containing groove 211, so as to prevent the magnetic force from interfering with the product magnet 100 in the first containing groove 111, and affecting the product magnet 100 into the assembly groove 210.

[0048] In order to further improve the operation convenience of the bearing unit 2, as shown in Figure 5 and Figure 6 As shown, the adsorption assembly 22 further comprises a dial block 223, the dial block 223 is provided with an upper adsorption magnet 2231, and the lower operating member 221 is connected to the dial block 223. The bearing seat 21 is provided with an upper magnet. When the upper adsorption magnet 2231 is adsorbed to the upper magnet, the lower operating member 221 moves to the adsorption position. Specifically, after the lower operating member 221 moves to the adsorption position, because the upper adsorption magnet 2231 adsorbs the upper magnet, at this time, the dial block 223 drives the lower operating member 221 to always remain in the adsorption position, without the need for a hand to hold all the time, thereby freeing the hands of the workers, and greatly facilitating subsequent work.

[0049] Further, as shown in Figure 1 andFigure 6 As shown, the adsorption assembly 22 further comprises a push block 223, a lower adsorption magnet is arranged on the push block 223, the lower operating member 221 is connected to the push block 223, and a lower position magnet 215 is arranged on the bearing seat 21; when the lower adsorption magnet is adsorbed to the lower position magnet 215, the lower operating member 221 moves to the release position; specifically, after the lower operating member 221 moves to the release position, because the lower adsorption magnet adsorbs the lower position magnet 215, at this time the push block 223 drives the lower operating member 221 to always remain in the release position, avoiding the lower operating member 221 from freely moving to approach the product magnet 100 on the mounting cylinder 11 under the influence of external force, thereby preventing the second adsorption magnet 222 from interfering with the product magnet 100 during moving to the assembly groove 210, and further ensuring the accuracy of the installation of the product magnet 100.

[0050] The specific structure of the push block 223 can be set according to actual needs, as long as it is fixedly connected with the lower operating member 221 and is convenient for hand pushing and pressing. Exemplarily, the push block 223 comprises a main body and a handle, the main body is fixedly connected with the lower operating member 221, the handle is integrally formed with the main body, the handle protrudes from the main body in the horizontal direction, and the handle is used for hand pushing and pressing or pushing; when starting the installation work of the product magnet 100, the worker pushes the handle upward, so that the push block 223 drives the lower operating member 221 to move from the release position to the adsorption position, and the push block 223 is temporarily fixed at the adsorption position through the adsorption of the upper position magnet and the upper adsorption magnet 2231; after the installation of the product magnet 100 is completed and the material suction unit 1 moves away from the product base 200, the worker presses the handle downward, so that the push block 223 drives the lower operating member 221 to move from the adsorption position to the release position, and the push block 223 is temporarily fixed at the release position through the adsorption of the lower position magnet 215 and the lower adsorption magnet.

[0051] Specifically, the bearing seat 21 comprises a seat body 213 and a carrier 214, the carrier 214 is placed on the seat body 213 and is bolted connected with the seat body 213, the second containing groove 211 and the limiting hole 212 are both arranged on the surface of the carrier 214 away from the seat body 213, the carrier 214 is used for carrying and placing the product base 200, the inside of the carrier 214 is provided with a movable passage, and the lower operating member 221 movably penetrates through the movable passage, so as to be able to slide between the release position and the adsorption position; the worker can replace the carrier 214 on the seat body 213 to carry and place product bases 200 of different specifications, so as to perform magnet installation work of different products.

[0052] Further, in order to ensure the relative stillness of the product magnet 100 and the product base 200 during subsequent dispensing work, the magnet installation device further comprises a gland assembly 3, the gland assembly 3 is detachably connected to the bearing seat 21, and the gland assembly 3 can press the product magnet 100 against the groove bottom of the assembly groove 210. Specifically, as shown in FIG. 6, the gland assembly 3 comprises a gland body 31 and a pressing member 32, the gland body 31 is arranged in the movable passage of the carrier 214, and the pressing member 32 is arranged on the carrier 214 and is connected with the gland body 31; when the product magnet 100 is installed in the assembly groove 210, the worker can press the pressing member 32, so that the pressing member 32 drives the gland body 31 to move downward, and the product magnet 100 is pressed against the groove bottom of the assembly groove 210 through the gland body 31. Figure 1As shown, the capping assembly 3 is capped on the carrier 214 of the bearing seat 21, and can apply pressure to the product magnet 100 in the assembly groove 210 in the vertical direction, wherein in the vertical direction, the capping assembly 3 does not completely cover the product magnet 100, so as to facilitate the later application of glue to the gap between the product magnet 100 and the product base 200.

[0053] It can be understood that the capping assembly 3 needs to be installed after the product magnet 100 is placed in the assembly groove 210 of the product base 200, and then the lower operating member 221 is moved from the adsorption position to the release position after the capping assembly 3 is pressed against the product magnet 100.

[0054] The structure of the capping assembly 3 can be set according to actual needs, as long as it can ensure that the product magnet 100 is stably and firmly pressed in the assembly groove 210 of the product base 200; for example, Figure 1 As shown, the capping assembly 3 includes a connecting plate 31 and a pressing jaw 32, the pressing jaw 32 is rotationally arranged on the connecting plate 31, the connecting plate 31 is detachably connected to the carrier 214, and the pressing jaw 32 can press against the product magnet 100 in the assembly groove 210 when rotating; the number of the pressing jaw 32 is the same as and corresponds to the number of the product magnet 100, and after the pressing jaw 32 is pressed against the product magnet 100, the product magnet 100 and the product base 200 can be exposed in the vertical direction. Specifically, after the connecting plate 31 is connected to the carrier 214, rotating the pressing jaw 32 can make the end of the pressing jaw 32 press against the product magnet 100, and a screw rod is further arranged on the pressing jaw 32, which can be connected with the corresponding bolt hole on the connecting plate 31, so that the pressing jaw 32 always maintains the state of pressing the product magnet 100, thereby improving the stability and firmness of the pressing; wherein the connection mode of the connecting plate 31 and the carrier 214 includes but is not limited to bolt connection, buckle connection, etc.

[0055] The operation steps of the magnet mounting device provided in the embodiment are as follows:

[0056] Firstly, the worker puts a plurality of product magnets 100 into a plurality of first accommodating grooves 111 at the end of the mounting cylinder 11 one by one, and respectively adsorbs them through the first adsorption magnet 112; then the worker places the product base 200 in the second accommodating groove 211 of the carrier 214, aligns the guide pin 13 on the mounting cylinder 11 with the limiting hole 212 of the carrier 214, and places the mounting cylinder 11 on the carrier 214, at this time, each first accommodating groove 111 is aligned with a plurality of assembly grooves 210 on the product base 200 one by one.

[0057] Then the staff press the upper operating element 121, the top pin 123 of the upper operating element 121 pushes the plurality of product magnets 100 into the assembly groove 210 against the magnetic force of the first adsorption magnet 112, keeps the pushing state of the upper operating element 121 and the product magnet 100, moves the lower operating element 221 from the release position to the adsorption position by pulling the push block 223, at this time the second adsorption magnet 222 on the lower operating element 221 is close to the product base 200 and adsorbs the product magnet 100 in the assembly groove 210, and the lower operating element 221 keeps in the adsorption position under the adsorption of the upper adsorption magnet 2231 and the upper magnet.

[0058] Then the staff keeps the pushing state of the upper operating element 121 and removes the mounting cylinder 11, installs the connecting plate 31 of the pressing cap assembly 3 on the carrier 214, then rotates the pressing claw 32 on the connecting plate 31, makes the end of the pressing claw 32 press on the product magnet 100, and screws the screw rod on the pressing claw 32 into the connecting plate 31, so that the pressing claw 32 always keeps the state of pressing the product magnet 100.

[0059] After the above steps are completed, the staff can carry out the dispensing operation on the product magnet 100, so as to bond and fix the product magnet 100 and the product base 200.

[0060] Obviously, the above embodiments of the utility model are only examples for clearly explaining the utility model, and are not the limitation of the embodiments of the utility model. For ordinary skilled in the art, various obvious changes, re-adjustment and replacement can be carried out without departing from the protection scope of the utility model. Here, it is not necessary and impossible to enumerate all the embodiments. Any modification, equivalent replacement and improvement within the spirit and principle of the utility model should be included in the protection scope of the utility model claim.

Claims

1. A magnet mounting device, characterized in that, include: The suction unit (1) includes a mounting cylinder (11) and a pushing component (12). The mounting cylinder (11) is provided with a first receiving groove (111). A first adsorption magnet (112) is provided in the first receiving groove (111). When the product magnet (100) is placed in the first receiving groove (111), the first adsorption magnet (112) adsorbs the product magnet (100). The pushing component (12) is provided in the mounting cylinder (11). The support unit (2) includes a support base (21) and an adsorption component (22). The support base (21) is provided with a second receiving groove (211) for placing the product base (200). When the first receiving groove (111) is engaged with the second receiving groove (211), the pushing component (12) can drive the product magnet (100) in the first receiving groove (111) to move to the assembly groove (210) of the product base (200) in the second receiving groove (211). The adsorption component (22) can adsorb the product magnet (100) in the assembly groove (210).

2. The magnet mounting device according to claim 1, characterized in that, The pushing assembly (12) includes an upper operating member (121), which is slidably connected to the mounting cylinder (11). When the upper operating member (121) extends into the first receiving groove (111), it can push the product magnet (100) in a direction away from the first receiving groove (111).

3. The magnet mounting device according to claim 2, characterized in that, The pushing assembly (12) further includes an elastic element (122) sandwiched between the mounting cylinder (11) and the upper operating member (121), and the elastic element (122) is configured to push the upper operating member (121) out of the first receiving groove (111).

4. The magnet mounting device according to claim 2, characterized in that, The first receiving groove (111) is provided in multiple ways, and the upper operating member (121) is provided with multiple ejector pins (123), and the multiple ejector pins (123) are provided in a one-to-one correspondence with the multiple first receiving grooves (111).

5. The magnet mounting device according to claim 1, characterized in that, The mounting cylinder (11) is provided with a guide pin (13), and the bearing seat (21) is provided with a limiting hole (212). When the guide pin (13) is inserted into the limiting hole (212), the first receiving groove (111) is directly engaged with the second receiving groove (211).

6. The magnet mounting device according to claim 1, characterized in that, The adsorption assembly (22) includes a lower operating member (221) and a second adsorption magnet (222). The lower operating member (221) is slidably connected to the support base (21). The second adsorption magnet (222) is disposed on the lower operating member (221). The lower operating member (221) is movable relative to the support base (21) between an adsorption position and a release position. When the lower operating member (221) moves to the adsorption position, the second adsorption magnet (222) adsorbs the product magnet (100) in the second receiving groove (211). When the lower operating member (221) moves to the release position, the second adsorption magnet (222) releases the product magnet (100) in the second receiving groove (211).

7. The magnet mounting device according to claim 6, characterized in that, The adsorption assembly (22) further includes a lever (223), on which an upper magnet (2231) is provided. The lower operating member (221) is connected to the lever (223). An upper magnet is provided on the support base (21). When the upper magnet (2231) is adsorbed onto the upper magnet, the lower operating member (221) moves to the adsorption position.

8. The magnet mounting device according to claim 6, characterized in that, The adsorption assembly (22) further includes a lever (223), on which a lower magnet is provided. The lower operating member (221) is connected to the lever (223). The support base (21) is provided with a lower magnet (215). When the lower magnet is attracted to the lower magnet (215), the lower operating member (221) moves to the release position.

9. The magnet mounting device according to any one of claims 1-8, characterized in that, The magnet mounting device further includes a cover assembly (3), which is detachably connected to the support base (21) and can press the product magnet (100) against the bottom of the assembly groove (210).

10. The magnet mounting device according to claim 9, characterized in that, The pressure cap assembly (3) includes a connecting plate (31) and a pressure claw (32). The pressure claw (32) is rotatably disposed on the connecting plate (31). The connecting plate (31) is detachably connected to the support seat (21). When the pressure claw (32) rotates, it can press against the product magnet (100) located in the assembly groove (210).