An electronic product bottom shell inner magnet assembly equipment

By positioning the bottom shell on the positioning fixture and using a conveyor and feeding mechanism to assemble the magnet onto the bottom shell, and then using a pressure holding mechanism to fix the pressure, the problems of high labor costs, complex equipment, and reduced positioning accuracy in the existing technology are solved, and efficient and stable magnet assembly is achieved.

CN121245443BActive Publication Date: 2026-02-17SHENZHEN JINGERMEI TECH CO LTD
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Patent Information

Application Number
CN202511813431.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-12-04
Publication Date
2026-02-17
Estimated Expiration
2045-12-04

AI Technical Summary

Technical Problem

The existing magnet and housing assembly process suffers from high labor costs, high labor intensity, low assembly efficiency, complex equipment structure, long movement path, and reduced positioning accuracy.

Method used

The bottom shell is placed in the positioning slot on the positioning fixture, and the magnets on the magnet feeding rack are assembled onto the bottom shell through the cooperation of the conveyor and the feeding mechanism. The magnets are then fixed onto the bottom shell by the pressure holding mechanism. The modular assembly structure design simplifies the overall structure and improves assembly accuracy and efficiency.

Benefits of technology

This results in a compact equipment structure, short movement path, stable operation, high assembly precision, easy maintenance and debugging, and improved assembly efficiency.

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Abstract

The application discloses an electronic product bottom shell inner magnet assembling equipment and relates to the field of electronic product assembling.The equipment comprises a work platform, a positioning jig, a conveyor, an assembling platform, a feeding mechanism, a pushing mechanism, a pressing mechanism and a pressure maintaining mechanism.A positioning groove for placing the bottom shell is arranged on the positioning jig.The conveyor conveys the positioning jig.One side of the assembling platform is provided with a magnet feeding rack.The magnet feeding rack is stacked with magnets to be assembled.A guide rail of the positioning jig is arranged on the assembling platform.The feeding mechanism drives the positioning jig to slide along the guide rail.The pushing mechanism is used for pushing the magnets to be assembled above the bottom shell.The pressing mechanism presses the magnets to be assembled into the bottom shell.The pressure maintaining mechanism is arranged at the end of the guide rail.The equipment adopts an assembling type modular structure design, is compact in structure, simplifies the overall structure, is short in motion path, is stable in operation, is high in assembling precision, is convenient for later maintenance and debugging, and improves the assembling efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electronic product assembly, in particular to an electronic product bottom shell inner magnet assembly equipment. BACKGROUND

[0002] The existing magnet and shell assembly process is mostly applied to the assembly link of small electronic products such as smart watches and smart bracelets. The traditional scheme usually puts the magnet into the shell bonding site by manual work, and then the pressure maintaining device is used for pressure bonding. This scheme has high labor cost, high labor intensity and low assembly efficiency.

[0003] Patent application No. CN202510685545.9 discloses a magnet and shell assembly equipment and assembly method, which comprises a rack, a plurality of carriers, a pressure maintaining cover plate cooperating with the carriers, a carrier conveying mechanism arranged on the rack along the X direction, a magnet feeding mechanism arranged on the rack, an assembly mechanism arranged on the rack, and a pressure maintaining mechanism. The carrier conveying mechanism is used for conveying the carrier, the magnet feeding mechanism is used for providing the magnet to be assembled, the assembly mechanism is used for adsorbing the magnet in the magnet feeding mechanism and assembling the magnet with the shell in the carrier in the carrier conveying mechanism, and the pressure maintaining mechanism is used for pressure maintaining the shell after assembling the magnet. The assembly equipment is composed of multiple linear modules, a rotating platform, a CCD positioning mechanism and a pressure maintaining mechanism. Although the automatic adsorption and pressure bonding of the magnet can be realized, the overall structure is complex, the movement path is long, the assembly efficiency is affected, the equipment debugging and maintenance cost is high, the positioning between the execution mechanisms relies on magnetic attraction and vacuum adsorption, lacks mechanical limiting and attitude correction, and the positioning accuracy decreases after long-term operation. Therefore, the present application discloses an electronic product bottom shell inner magnet assembly equipment to solve the above problems. SUMMARY

[0004] Therefore, it is necessary to provide an electronic product bottom shell inner magnet assembly equipment aiming at the above technical problems. The positioning groove on the positioning jig holds the bottom shell to be assembled, and the positioning jig slides along the guide rail under the cooperation of the conveyor and the feeding mechanism. The magnet on the magnet feeding rack is assembled onto the bottom shell under the cooperation of the pushing mechanism and the pressing mechanism, and the magnet is fixed and pressed on the bottom shell by the pressure maintaining mechanism. The assembly type modular structure design has compact structure, simplifies the overall structure, shortens the movement path, stabilizes the operation, improves the assembly precision, facilitates the later maintenance and debugging, and improves the assembly efficiency.

[0005] In order to solve the above technical problems, the present application adopts the following technical scheme:

[0006] An electronic product bottom shell inner magnet assembly equipment comprises:

[0007] a workbench;

[0008] The positioning jig is provided with a positioning groove for placing the bottom shell, and the positioning groove is used for positioning the placed bottom shell.

[0009] The conveyor is arranged on the working platform and is used for conveying the positioning jig.

[0010] The assembly platform is arranged on the working platform, one side of the assembly platform is provided with a magnet supply rack, the magnet supply rack is stacked with magnets to be assembled, and the assembly platform is provided with a guide rail of the positioning jig.

[0011] The feeding mechanism is arranged on one side of the guide rail and is used for driving the positioning jig to slide along the guide rail.

[0012] The pushing mechanism is used for pushing the magnet to be assembled above the bottom shell.

[0013] The pressing mechanism is used for pressing the magnet to be assembled into the bottom shell.

[0014] The pressure maintaining mechanism is arranged at the end of the guide rail and is used for maintaining the pressure of the bottom shell with the assembled magnet.

[0015] As a preferred embodiment of the magnet assembling equipment in the bottom shell of the electronic product provided by the application, the magnet supply rack is slidably arranged on the stand, the first linear motion cylinder is fixed on the stand, the output end of the first linear motion cylinder is fixedly connected with the magnet supply rack, and the first linear motion cylinder is used for driving the magnet supply rack to move transversely along the stand.

[0016] As a preferred embodiment of the magnet assembling equipment in the bottom shell of the electronic product provided by the application, the magnet supply rack comprises a vertical plate, a plurality of vertical grooves are arranged on the side surface of the vertical plate, vertical bars corresponding to the vertical grooves are fixed on the vertical plate, the magnets to be assembled are stacked in the vertical grooves, the bottom of the stand is provided with a horizontal plate, and the horizontal plate and the vertical plate form a horizontal groove in communication with the bottom of the vertical groove.

[0017] As a preferred embodiment of the magnet assembling equipment in the bottom shell of the electronic product provided by the application, the pushing mechanism comprises a pushing cylinder, a pushing frame is fixed on the output end of the pushing cylinder, a pushing rod is fixed on the pushing frame, the pushing rod is matched with the horizontal groove, and the pushing rod is pushed out of the horizontal groove under the driving of the pushing cylinder.

[0018] As a preferred embodiment of the magnet assembling equipment in the bottom shell of the electronic product provided by the application, the feeding mechanism comprises a second linear motion cylinder fixed on the assembly platform, a translation frame is fixed on the telescopic end of the second linear motion cylinder, a feeding cylinder is fixed on the translation frame, a feeding frame is fixed on the feeding cylinder, and the feeding frame is inserted with the positioning jig.

[0019] As a preferred embodiment of the electronic product bottom shell inner magnet assembly equipment provided by the application, the pressing mechanism comprises a pressing cylinder and a horizontal bar, the telescopic end of the pressing cylinder is fixed with a pressing frame, the pressing frame is fixed with a pressing rod, the horizontal bar is provided with a feeding channel and a pressing channel which are communicated with each other, the feeding channel is matched with the horizontal groove, the pressing channel is matched with the pressing rod, and the pressing channel is located directly above the position where the magnet to be assembled is located on the bottom shell.

[0020] As a preferred embodiment of the electronic product bottom shell inner magnet assembly equipment provided by the application, the pressing mechanism further comprises a U-shaped frame and a guide cylinder, the U-shaped frame is fixed on the vertical frame, the guide cylinder is fixed on the U-shaped frame, the output end of the guide cylinder is fixed with a guide frame, the side surface of the guide frame is provided with a guide groove, the guide groove is in one-to-one correspondence with the horizontal groove, the magnet to be assembled is pushed into the guide groove from the horizontal groove, and the magnet is sent into the bottom shell along the guide groove under the pushing of the pressing rod.

[0021] As a preferred embodiment of the electronic product bottom shell inner magnet assembly equipment provided by the application, one side of the guide rail is slidably provided with a stop block, the stop block is fixed on the output end of the material blocking cylinder, and the stop block is located in the area of the guide rail where the magnet is assembled.

[0022] As a preferred embodiment of the electronic product bottom shell inner magnet assembly equipment provided by the application, the pressing mechanism comprises a pressing cylinder and a horizontal bar, the telescopic end of the pressing cylinder is fixed with a pressing frame, the pressing frame is fixed with a pressing rod, the horizontal bar is provided with a feeding channel and a pressing channel which are communicated with each other, the feeding channel is matched with the horizontal groove, the pressing channel is matched with the pressing rod, and the pressing channel is located directly above the position where the magnet to be assembled is located on the bottom shell.

[0023] As a preferred embodiment of the electronic product bottom shell inner magnet assembly equipment provided by the application, the pressing mechanism further comprises an ejection cylinder, the output end of the ejection cylinder is fixed with a pushing rod, and the end of the pushing rod away from the guide rail is provided with a limiting strip.

[0024] Compared with the prior art, the application has the following beneficial effects:

[0025] The electronic product bottom shell inner magnet assembly equipment provided by the application uses the positioning groove on the positioning jig to hold the bottom shell to be assembled, and the positioning jig is slid along the guide rail under the cooperation of the conveyor and the feeding mechanism. The magnet on the magnet feeding frame is assembled onto the bottom shell under the cooperation of the pushing mechanism and the pressing mechanism, and the magnet is fixed on the bottom shell by using the pressing mechanism. The modular structure design is adopted, the structure is compact, the overall structure is simplified, the movement path is short, the operation is stable, the assembly precision is high, the post-maintenance and debugging are facilitated, and the assembly efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0026] In order to make the scheme in the present application more clear, the drawings used in the following embodiment description will be simply introduced. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort.

[0027] Figure 1 Fig. 1 is a perspective view of the overall structure of the present application from one angle;

[0028] Figure 2 Fig. 2 is a perspective view of the overall structure of the present application from another angle;

[0029] Figure 3 Fig. 3 is a schematic view of the structure of the magnet and the bottom shell assembly area in the present application;

[0030] Figure 4 Fig. 4 is a schematic view of the connection between the pressing mechanism and the stand in the present application;

[0031] Figure 5 Fig. 5 is a perspective view of the pressing mechanism from one angle in the present application;

[0032] Figure 6 Fig. 6 is a perspective view of the pressing mechanism from another angle in the present application;

[0033] Figure 7 Fig. 7 is a perspective view of the crossbar of the pressing mechanism in the present application;

[0034] Figure 8 Fig. 8 is a perspective view of the guide frame of the pressing mechanism in the present application;

[0035] Figure 9 Fig. 9 is a perspective view of the connection between the magnet feeding rack and the stand in the present application;

[0036] Figure 10 Fig. 10 is a perspective view of the magnet feeding rack in the present application;

[0037] Figure 11 Fig. 11 is a perspective view of the pressure maintaining mechanism in the present application.

[0038] The marks in the figures are explained as follows:

[0039] 1, work platform; 2, conveyor; 3, assembly platform; 4, feeding mechanism; 41, second linear motion cylinder; 42, translation frame; 43, feeding frame; 44, feeding cylinder; 5, pushing mechanism; 51, pushing cylinder; 52, pushing frame; 53, pushing rod; 6, pressing mechanism; 61, pressing cylinder; 62, pressing frame; 63, pressing rod; 64, horizontal bar; 65, feeding channel; 66, pressing channel; 67, U-shaped frame; 68, guide cylinder; 69, guide frame; 610, guide groove; 7, pressure maintaining mechanism; 71, pressure maintaining frame; 72, pressure maintaining cylinder; 73, pressure maintaining jig; 74, pressure maintaining column; 75, discharging cylinder; 76, pushing rod; 77, limiting bar; 8, positioning jig; 81, positioning groove; 9, magnet feeding frame; 91, vertical plate; 92, sliding block; 93, sliding rail; 94, vertical groove; 95, vertical bar; 96, horizontal plate; 97, horizontal groove; 10, guide rail; 11, vertical column; 12, electric control box; 13, vertical frame; 14, first linear motion cylinder; 15, stop block; 16, material blocking cylinder. DETAILED DESCRIPTION

[0040] In order to make the personnel in the technical field better understand the present application scheme, the technical scheme in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor should belong to the scope of protection of the present application.

[0041] In order to make the personnel in the technical field better understand the present application scheme, the technical scheme in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application.

[0042] It should be noted that the embodiments in the present application and the features and technical solutions in the embodiments can be combined with each other without conflict.

[0043] It should be noted that: similar labels and letters represent similar items in the following drawings, so once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.

[0044] Please refer to Figures 1-11The utility model provides an electronic product bottom shell inner magnet assembly equipment, it includes work platform 1, conveyer 2, assembly platform 3, feeding mechanism 4, push mechanism 5, lower pressure mechanism 6 and pressure maintaining mechanism 7, the top of assembly platform 3 is fixed with electric cabinet 12 through stand 11, electric cabinet 12 is used to control the electrical system of whole assembly equipment, conveyer 2 and assembly platform 3 are fixed on work platform 1, and conveyer 2 is conveyed with positioning fixture 8, and positioning fixture 8 is equipped with the positioning groove 81 for placing bottom shell, and the positioning groove 81 is used for positioning and placing bottom shell, and the bottom shell is electronic product bottom shell, the positioning groove 81 in positioning fixture 8 is three in the embodiment, and three bottom shells can be assembled magnet every time, and after the position of magnet on bottom shell is glued, bottom shell is placed into positioning groove 81, and is conveyed to assembly platform 3 through conveyer 2, and the one side of assembly platform 3 is equipped with magnet supply rack 9, and the magnet of assembly is stacked on magnet supply rack 9, and the stacked magnet is at least three groups and is the integer multiple of the number of positioning groove 81 in positioning fixture 8, and the stacked magnet is six groups in the embodiment, and each group of magnet has two rows of N pole and S pole, and the one side of assembly platform 3 is equipped with the guide rail 10 of positioning fixture 8 in magnet supply rack 9, and feeding mechanism 4 is located in the side of guide rail 10 away from magnet supply rack 9, and feeding mechanism 4 drives positioning fixture 8 to slide along guide rail 10, and feeding mechanism 4 drives positioning fixture 8 to be below lower pressure mechanism 6, and push mechanism 5 is located in the side of magnet supply rack 9 away from guide rail 10, and lower pressure mechanism 6 is located in the side of magnet supply rack 9 close to guide rail 10, and push mechanism 5 pushes the magnet of assembly to above bottom shell, and lower pressure mechanism 6 presses the magnet of assembly to bottom shell, and pressure maintaining mechanism 7 is located in the end of guide rail 10, and the bottom shell of assembly magnet is pressure maintained.

[0045] As Figure 3 , Figure 9 , Figure 10As shown, further, the guide rail 10 is provided with a stand 13 on one side along the sliding direction of the positioning jig 8, the magnet supply rack 9 is slidably arranged on the stand 13, the stand 13 is fixed with a first linear motion cylinder 14, the output end of the first linear motion cylinder 14 is fixedly connected with the magnet supply rack 9, and the first linear motion cylinder 14 is used to drive the magnet supply rack 9 to move transversely along the stand 13. The six groups of magnets on the magnet supply rack 9 are divided into two groups. After the pushing of one group of magnets is completed, the first linear motion cylinder 14 drives the magnet supply rack 9 to slide along the stand 13, and the pushing mechanism 5 pushes the other group of magnets. The magnet supply rack 9 and the stand 13 are connected in a sliding structure of a sliding block 92 and a sliding rail 93. Specifically, the magnet supply rack 9 comprises a vertical plate 91, the back side of the vertical plate 91 is fixed with the sliding block 92, the stand 13 is fixed with the sliding rail 93 matched with the sliding block 92, the side surface of the vertical plate 91 is provided with a plurality of vertical grooves 94, two vertical grooves 94 form a group, and the N-pole and S-pole magnets are respectively stacked in the two vertical grooves 94. There are a total of six groups. The vertical plate 91 is fixed with vertical bars 95 corresponding to the vertical grooves 94. The vertical grooves 94 are stacked with magnets to be assembled. The vertical bars 95 limit and block the vertical grooves 94 to ensure that the magnets can be vertically stacked. The stand 13 is fixed on the guide rail 10 on one side. The bottom of the stand 13 is provided with a horizontal plate 96. The horizontal plate 96 and the vertical plate 91 form horizontal grooves 97 communicating with the bottom of the vertical grooves 94. The horizontal grooves 97 are used for transversely outputting the magnets.

[0046] As shown in Figure 10 , further, the pushing mechanism 5 comprises a pushing cylinder 51, the output end of the pushing cylinder 51 is fixed with a pushing frame 52, the pushing frame 52 is fixed with a pushing rod 53, the pushing rod 53 is matched with the horizontal grooves 97, there are three pushing rods 53 fixed on the pushing frame 52, and the middle part of the pushing rod 53 has a recessed groove, so that the pushing rod 53 can push the vertical grooves 94 each time. The pushing rod 53 is pushed out of the horizontal grooves 97 under the drive of the pushing cylinder 51. Each time the magnets are pushed, three groups of magnets can be pushed at a time, so as to assemble the magnets on the three bottom shells of the positioning jig 8.

[0047] As shown in Figure 3 , the feeding mechanism 4 comprises a second linear motion cylinder 41 fixed on the assembly platform 3, the extension direction of the second linear motion cylinder 41 is consistent with the length direction of the guide rail 10, the extension end of the second linear motion cylinder 41 is fixed with a translation frame 42, the translation frame 42 is fixed with a feeding cylinder 44, the feeding cylinder 44 is fixed with a feeding frame 43, the feeding frame 43 is a two-insert structure, and the feeding frame 43 is inserted with the positioning jig 8. When the feeding mechanism 4 pushes the positioning jig 8, the feeding frame 43 is inserted with the outer periphery of one of the positioning grooves 81 in the positioning jig 8, so as to push the positioning jig 8 to the lower side of the pressing mechanism 6.

[0048] As shown in Figures 4-9As shown, the pressing mechanism 6 includes a pressing cylinder 61 fixedly connected with the stand 13, an extension end of the pressing cylinder 61 is fixed with a pressing frame 62, the pressing frame 62 is fixed with a pressing rod 63, a cross strip 64 is provided with a feeding channel 65 and a pressing channel 66 which are in communication with each other, the feeding channel 65 is matched with the transverse groove 97, the pressing channel 66 is matched with the pressing rod 63, and the pressing channel 66 is located directly above the magnet assembling position on the bottom shell, a U-shaped frame 67 is fixed on the side of the stand 13, the U-shaped frame 67 is fixed with a guide cylinder 68, an output end of the guide cylinder 68 is fixed with a guide frame 69, a guide groove 610 is provided on the side of the guide frame 69, the guide groove 610 is in one-to-one correspondence with the transverse groove 97, the magnet to be assembled is pushed into the guide groove 610 from the transverse groove 97, and the magnet is sent into the bottom shell under the pushing of the pressing rod 63, when the magnet is assembled, the S-pole and N-pole magnets are pushed out of the transverse groove 97 under the pushing of the pushing mechanism 5 and then enter the feeding channel 65, then the pressing cylinder 61 drives the pressing frame 62 to move downward, the pressing rod 63 pushes the magnet downward from the feeding channel 65, at the same time, the guide cylinder 68 drives the guide frame 69 to also move downward, the magnet enters the guide groove 610 of the guide frame 69 in the process of being pushed downward, the guide frame 69 is close to the magnet assembling position of the bottom shell, the pressing rod 63 pushes the magnet to the magnet assembling position of the bottom shell, and the magnet is fixed by the glue in the bottom shell.

[0049] As shown in Figure 5 , Figure 10 Further, the block 15 is slidably arranged on one side of the guide rail 10, the block 15 is fixed on an output end of the blocking cylinder 16, and the block 15 is arranged in the magnet assembling area of the guide rail 10, after the positioning jig 8 is pushed to the magnet assembling area by the feeding mechanism 4, the pressing cylinder drives the block 15 to extend into the guide rail 10 to block the pressure maintaining jig 73 conveyed by the subsequent conveyor 2, so as to avoid that the pressure maintaining jig 73 conveyed by the conveyor 2 pushes the pressure maintaining jig 73 in the magnet assembling area to affect the assembling precision.

[0050] As shown in Figure 11As shown, further, the pressure maintaining mechanism 7 comprises a pressure maintaining frame 71 fixed on the assembly platform 3, a pressure maintaining cylinder 72 fixed on the pressure maintaining frame 71, a pressure maintaining jig 73 fixed at the output end of the pressure maintaining cylinder 72, a pressure maintaining column 74 arranged on the pressure maintaining jig 73, and a heating rod (not shown in the figure) embedded in the pressure maintaining jig 73. After the feeding mechanism 4 pushes the positioning jig 8 to the magnet assembly area, the rear positioning jig 8 is pushed to the lower side of the pressure maintaining jig 73 along the guide rail 10. Under the driving of the pressure maintaining cylinder 72, the pressure maintaining column 74 on the pressure maintaining jig 73 presses the magnet assembled in the bottom shell, at the same time, the heating rod can heat the pressure maintaining jig 73 and conduct heat to the pressure maintaining column 74, so as to heat melt the glue on the bottom shell, avoid the glue solidification, and strengthen the connection strength of the magnet and the bottom shell. The discharge cylinder 75 is further fixed on one side of the assembly platform 3, the output end of the discharge cylinder 75 is fixed with a pushing rod 76, and the end of the pushing rod 76 away from the guide rail 10 is provided with a limiting strip 77. Under the driving of the discharge cylinder 75, the pushing rod 76 pushes the positioning jig 8 after the bottom shell is pressed from the assembly platform 3.

[0051] It is worth noting that the assembly equipment of the present application also comprises several proximity switches arranged at positions requiring sensing positioning, such as the translation position of the positioning jig 8, the pressing position of the pressing rod 63, etc. The arrangement position of the proximity switch can be designed independently according to actual needs. This part is a conventional technology and will not be described in detail.

[0052] The working principle of the magnet assembly equipment for the bottom shell of the electronic product provided by the present application is as follows: the bottom shell is placed in the positioning groove 81 of the positioning jig 8 after glue dispensing, and the positioning jig 8 enters the guide rail 10 under the conveying of the conveyor 2. The pushing mechanism pushes the positioning jig 8 to the magnet assembly area of the assembly platform 3. The pushing mechanism 5 pushes the magnet out of the magnet feeding frame 9. The pressing mechanism 6 pushes the magnet downward to assemble the magnet into the bottom shell. Then the positioning jig 8 moves along the guide rail 10 to the pressure maintaining mechanism 7. The pressure maintaining mechanism 7 presses the magnet to fix the magnet on the bottom shell. The assembly type modular structure design is compact, which simplifies the overall structure, shortens the movement path, stabilizes the operation, improves the assembly precision, facilitates the later maintenance and debugging, and improves the assembly efficiency.

[0053] In the present application, unless otherwise clearly specified and limited, the terms "mounting", "connecting", "connecting", "fixing" and the like should be understood in a broad sense, for example, it can be fixed connection, or detachable connection, or integrated; it can be mechanical connection, or electrical connection or communication with each other; it can be directly connected, or indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements, unless otherwise clearly limited. For ordinary skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0054] Obviously, the above-described embodiments are only some embodiments but not all of the present application, the preferred embodiments of the present application are shown in the drawings, but do not limit the patent scope of the present application. The present application can be implemented in many different forms, and conversely, the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing specific embodiments, or make equivalent replacements to some technical features therein. Any equivalent structure made by using the content of the present application specification and drawings, directly or indirectly applied to other related technical fields, is also within the patent protection scope of the present application.

Claims

1. An apparatus for assembling a magnet in an electronic product bottom case, characterized in that, The utility model relates to a magnet assembling device, which comprises the following components: a work platform; a positioning jig, which is provided with a positioning groove for placing a bottom shell and is used for positioning the bottom shell; a conveyor, which is arranged on the work platform and is used for conveying the positioning jig; an assembling platform, which is arranged on the work platform and is provided with a magnet supply rack on one side, the magnet supply rack is stacked with magnets to be assembled, and the assembling platform is provided with a guide rail of the positioning jig; a feeding mechanism, which is arranged on one side of the guide rail and is used for driving the positioning jig to slide along the guide rail; a pushing mechanism, which is used for pushing the magnets to be assembled above the bottom shell; a pressing mechanism, which is used for pressing the magnets to be assembled into the bottom shell; a pressure maintaining mechanism, which is arranged at the end of the guide rail and is used for maintaining the pressure of the bottom shell with the assembled magnets; the pressing mechanism comprises a pressing cylinder and a cross strip, the telescopic end of the pressing cylinder is fixed with a pressing frame, the pressing frame is fixed with a pressing rod, the cross strip is provided with a feeding channel and a pressing channel which are in communication with each other, the feeding channel is matched with the transverse groove, the pressing channel is matched with the pressing rod, and the pressing channel is located directly above the position where the magnet is to be assembled on the bottom shell; the pressing mechanism further comprises a U-shaped frame and a guide cylinder, the U-shaped frame is fixed on the stand, the guide cylinder is fixed on the U-shaped frame, the output end of the guide cylinder is fixed with a guide frame, the side surface of the guide frame is provided with a guide groove, the guide groove is matched with the transverse groove one by one, the magnet to be assembled is pushed into the guide groove from the transverse groove, and the magnet is sent into the bottom shell along the guide groove under the pushing of the pressing rod.

2. The equipment for assembling the magnet in the bottom shell of an electronic product according to claim 1, characterized in that, further comprising a stand, the magnet supply rack is slidably arranged on the stand, the stand is fixed with a first linear motion cylinder, the output end of the first linear motion cylinder is fixedly connected with the magnet supply rack, and the first linear motion cylinder is used for driving the magnet supply rack to move transversely along the stand.

3. The equipment for assembling the magnet in the bottom shell of an electronic product according to claim 2, characterized in that, the magnet supply rack comprises a vertical plate, the side surface of the vertical plate is provided with a plurality of vertical grooves, the vertical plate is fixed with a vertical strip corresponding to the vertical grooves, the magnets to be assembled are stacked in the vertical grooves, the bottom of the stand is provided with a horizontal plate, and the horizontal plate and the vertical plate form a transverse groove which is in communication with the bottom of the vertical groove.

4. The apparatus according to claim 3, wherein the apparatus further comprises a magnet moving device. the pushing mechanism comprises a pushing cylinder, the output end of the pushing cylinder is fixed with a pushing frame, the pushing frame is fixed with a pushing rod, the pushing rod is matched with the transverse groove, and the pushing rod is pushed out of the transverse groove under the driving of the pushing cylinder.

5. The apparatus of claim 1, wherein the apparatus further comprises a magnet assembly device for assembling the magnet inside the bottom case of the electronic product. the feeding mechanism comprises a second linear motion cylinder fixed on the assembling platform, the telescopic end of the second linear motion cylinder is fixed with a translation frame, the translation frame is fixed with a feeding cylinder, the feeding cylinder is fixed with a feeding frame, and the feeding frame is inserted with the positioning jig.

6. The apparatus of claim 1, wherein the apparatus further comprises a magnet assembly device for assembling the magnet inside the bottom case of the electronic product. one side of the guide rail is slidably provided with a stop block, the stop block is fixed on the output end of a blocking cylinder, and the stop block is arranged in the area of the guide rail where the magnet is assembled.

7. The apparatus of claim 1, wherein the apparatus further comprises a magnet assembly device for assembling the magnet inside the bottom case of the electronic product. the pressure maintaining mechanism comprises a pressure maintaining frame fixed on the assembling platform, the pressure maintaining frame is fixed with a pressure maintaining cylinder, the output end of the pressure maintaining cylinder is fixed with a pressure maintaining jig, the pressure maintaining jig is provided with a pressure maintaining column, and the pressure maintaining jig is embedded with a heating rod.

8. The electronic product bottom shell inner magnet assembly equipment according to claim 7, characterized in that, The pressure maintaining mechanism further comprises a discharging air cylinder, an output end of the discharging air cylinder is fixed with a pushing rod, and an end of the pushing rod away from the guide rail is provided with a limiting strip.

Citation Information

Patent Citations

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