Folding mobile phone magnet feeding and clamping equipment

By designing a folding mobile phone magnet loading and clamping device including vibrating disc, jaws, push components and fixture components, the problem of the long manual operation of magnet loading and clamping in the prior art is solved, and automatic clamping is realized and efficiency is improved.

CN120057590APending Publication Date: 2025-05-30ZHEJIANG IND POLYTECHNIC COLLEGE
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Patent Information

Application Number
CN202510331460.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

In the prior art, the loading and clamping of folding screen mobile phone magnets requires manual operation, which results in a long time and troublesome operation.

Method used

A folding mobile phone magnet loading and clamping device is designed, including vibrating discs, jaws, push components and fixture components. The vibrating disc sends the magnet to the push assembly, and the push assembly pushes the magnet one by one, and the jaws clamp the magnet to the fixing assembly. The fixing assembly fixes the magnet through fixing grooves and push strips to achieve automatic clamping.

Benefits of technology

Through the automated loading and clamping process, the clamping efficiency of magnets is significantly improved, the time and difficulty of manual operation are reduced, and faster magnet loading and clamping is achieved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses folding mobile phone magnet feeding and clamping equipment which comprises a vibration disc, a clamping jaw, a pushing assembly and a clamp assembly, the vibration disc sends magnets to the pushing assembly, the pushing assembly pushes the magnets out one by one, the clamping jaw clamps the magnets one by one and sends the magnets to the clamp assembly, the clamp assembly comprises a base and a pushing strip, and the base is provided with a mounting groove and a plurality of fixing grooves. The multiple fixing grooves are located in the upper end face of the base and communicated with the mounting groove, the multiple fixing grooves are distributed in the length direction of the mounting groove, the pushing strips are mounted in the mounting groove and can be close to or away from the fixing grooves, the clamping jaws place the magnets in the fixing grooves, and at least one part of the magnets is higher than the upper end face of the base. According to the magnet feeding and clamping device, the magnets are clamped and conveyed to the clamp assembly one by one through the clamping jaw to be fixed, the multiple magnets are fixed through the clamp assembly, the clamp assembly can be integrally taken down and conveyed out to be machined, and magnet feeding and clamping are more convenient and faster.
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Description

Technical Field

[0001] The present invention relates to the technical field of clamping and loading equipment, and more specifically, to a folding mobile phone magnet loading and clamping equipment. Background Art

[0002] In the prior art, with the increasing market share of folding screen mobile phones, the production demand for folding screen mobile phones is also getting higher and higher. One of the important components of a folding screen mobile phone is a magnet, which is used for adsorption and fixation between two folding screens. For example Figure 1 As shown, the magnet 101 is L-shaped. Since the installation position of the magnet 101 in the mobile phone and the internal components of the mobile phone need to be avoided to prevent interference, the magnet 101 needs to be processed. A groove 102 needs to be machined on the magnet 101. Before processing the magnet 101, the magnet 101 needs to be clamped to a fixture. The existing clamping is all carried out manually. Since the volume of the magnet 101 is small, it is relatively troublesome to place and pick up the magnet 101 on the fixture, and the working time is relatively long. Therefore, a technical solution is needed to solve the above problems. Summary of the Invention

[0003] An object of the present invention is to overcome the above-mentioned deficiencies of the prior art, and to provide a folding mobile phone magnet loading and clamping equipment that can facilitate the loading and clamping of magnets.

[0004] To achieve the above object, the present invention adopts the following technical solutions:

[0005] The present invention discloses a folding mobile phone magnet loading and clamping equipment, which includes a vibrating bowl, a clamping jaw, a pushing component, and a fixture component. The vibrating bowl sends the magnets to the pushing component, the pushing component pushes out the magnets one by one, the clamping jaw picks up the magnets one by one and sends them to the fixture component. The fixture component includes a base and a pushing bar. The base is provided with an installation groove and a plurality of fixing grooves. The plurality of fixing grooves are located on the upper end surface of the base. The fixing grooves communicate with the installation groove. The plurality of fixing grooves are arranged along the length direction of the installation groove. The pushing bar is installed in the installation groove. The pushing bar can approach or move away from the fixing grooves. The clamping jaw places the magnet in the fixing groove. At least a part of the magnet is higher than the upper end surface of the base. The pushing bar can press against the magnet to fix the magnet in the fixing groove.

[0006] Further, the fixture assembly includes a push block and a pressing block. The installation groove is provided with a first guiding groove. The push block is installed in the first guiding groove and can slide along the first guiding groove. The push block abuts against one side of the push bar away from the fixing groove. The pressing block is installed on the base by bolts, and the rotation of the bolts drives the pressing block to move up and down. The push block is provided with a third inclined surface, and the pressing block is provided with a fourth inclined surface. The third inclined surface abuts against the fourth inclined surface, and the up and down movement of the pressing block drives the push block to slide.

[0007] Further, the push block is provided with a second guiding groove, which is located on the third inclined surface and extends along the third inclined surface. The second guiding groove communicates with the third inclined surface. At least a part of the pressing block is located in the second guiding groove. The pressing block is provided with a guiding bar, which is located on the fourth inclined surface and extends along the fourth inclined surface. The guiding bar is located in the second guiding groove and slides along the second guiding groove.

[0008] Further, the push bar is provided with a plurality of top blocks, which are arranged along the length direction of the push bar and extend towards the fixing groove. The top blocks can extend into the fixing groove and can abut against the magnet located in the fixing groove.

[0009] Further, the fixing groove includes a first side wall, a second side wall and a first inclined surface. The top block includes a second inclined surface and a third side wall. The magnet includes a first end face, a second end face, a third end face and a fourth end face. The first side wall abuts against the first end face, the second side wall abuts against the second end face, the first inclined surface abuts against the second inclined surface, and the third side wall abuts against the third end face and / or the push bar abuts against the fourth end face.

[0010] Further, the fixture assembly includes a spring. At least one first spring groove is formed on the side wall of the installation groove, and at least one second spring groove is formed on the side face of the push bar facing the side wall of the installation groove. The spring is installed in the first spring groove and the second spring groove.

[0011] Further, the number of the push bars is two. A plurality of the fixing grooves are arranged on both sides of the installation groove in the length direction. Two corresponding push blocks are provided. The pressing block is provided with two fourth inclined surfaces. The two push blocks are located between the pressing block and the two push bars. The two push bars can approach or move away from each other.

[0012] Further, it includes a rotating assembly, and the rotating assembly includes a rotating cylinder, a rotating seat, a mounting seat, and a connecting plate. The connecting plate is fixedly connected to the base. The cylinder drives the rotating seat to rotate. The mounting seat is fixedly installed on the rotating seat. The connecting plate is detachably connected to the rotating seat. The upper end surface of the mounting seat is provided with a plug, and the lower end surface of the connecting plate is provided with a slot, and the plug is correspondingly inserted into the slot.

[0013] Further, the pushing assembly includes a flat pushing device, a sensing device, and a receiving plate. The vibrating disk is provided with a conveying channel, and the conveying channel is connected to the receiving plate. The conveying channel sends the magnets to one end of the receiving plate. The flat pushing device is located at one end of the receiving plate connected to the conveying channel. The flat pushing device includes a push head that can be telescoped, and the push head can push the magnets from one end of the receiving plate to the other end one by one. The sensing device is located at one end of the receiving plate close to the flat pushing device.

[0014] Further, a push groove is provided at one end of the push head facing the magnet, and a part of the magnet is located in the push groove. The upper end surface of the receiving plate is provided with a receiving groove, and the inner bottom surface of the receiving groove is flush with the inner bottom surface of the conveying channel.

[0015] The beneficial effects of the present invention are as follows:

[0016] 1. The present invention grabs the magnets one by one through the clamping jaws and sends them to the fixture assembly for fixation. The fixture assembly fixes multiple magnets, and the fixture assembly can be taken off as a whole and sent out for processing, making the magnet loading and clamping more convenient and fast.

[0017] 2. The base of the fixture assembly in the present invention is provided with a plurality of fixing grooves. The push plate can clamp the magnets in the fixing grooves. The push bar is provided with a plurality of top blocks, and the top blocks will apply a force to the third end face of the magnet towards the first side wall and the second side wall of the fixing groove to clamp the magnet in the fixing groove. There are three states in which the push bar fixes the magnet in the fixing groove. The first is that the third side wall abuts against the third end face, the second is that the push bar abuts against the fourth end face, and the third is that the third side wall abuts against the third end face while the push bar abuts against the fourth end face, ensuring that at least three end faces of the magnet receive the pressing force, and all the magnets can be fixed in the corresponding fixing grooves, avoiding the situation of loose clamping caused by errors of the magnets. Description of the Drawings

[0018] Figure 1 It is a schematic diagram of a magnet in the background art

[0019] Figure 2 It is a schematic diagram of this embodiment.

[0020] Figure 3 It is a schematic diagram of the pushing assembly in this embodiment.

[0021] Figure 4 This is a cross-sectional view of the rotating component and the fixture component in this embodiment.

[0022] Figure 5 This is a schematic diagram of the fixture component in this embodiment.

[0023] Figure 6 This is a top view of the fixture component in this embodiment.

[0024] Figure 7 It is Figure 6 a cross-sectional view in the A direction in

[0025] Figure 8 It is Figure 6 a cross-sectional view in the B direction in

[0026] Figure 9 It is Figure 6 an enlarged view at C in

[0027] Reference numerals: 1, vibrating bowl; 11, conveying channel; 2, jaw; 3, pushing component; 31, flat pushing device; 311, push head; 3111, push groove; 32, sensing device; 33, receiving plate; 331, receiving groove; 4, rotating component; 41, rotating cylinder; 42, rotating seat; 43, mounting seat; 431, jack; 432, plug; 44, connecting plate; 441, inserting rod; 442, slot; 5, fixture component; 51, base; 511, mounting groove; 5111, first guiding groove; 512, fixing groove; 5121, first side wall; 5122, second side wall; 5123, first inclined surface; 513, first spring groove; 52, pushing bar; 521, top block; 5211, second inclined surface; 5212, third side wall; 522, second spring groove; 53, pushing block; 531, second guiding groove; 532, third inclined surface; 54, pressing block; 541, guiding bar; 542, fourth inclined surface; 55, bolt; 56, spring; 101, magnet; 1011, first end face; 1012, second end face; 1013, third end face; 1014, fourth end face. Detailed implementation manners

[0028] Next, the technical solutions in this embodiment will be clearly and completely described in conjunction with the accompanying drawings in this embodiment. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0029] As Figures 2 to 9As shown in the figure, this embodiment discloses a folding mobile phone magnet feeding and clamping device, which is used to automatically clamp the magnet 101 on the fixture. The magnet 101 has no magnetic force during processing, and the magnet 101 will be magnetized only after being clamped and processed. During the clamping process, the magnets will not attract each other, such as Figure 2 , Figure 3 As shown, a folding mobile phone magnet feeding and clamping device includes a vibrating bowl 1, a clamping jaw 2, a pushing component 3, a rotating component 4, and a fixture component 5. The vibrating bowl 1 sends the magnet 101 to the pushing component 3, and the pushing component 3 pushes out the magnet 101 one by one. The pushing component 3 includes a flat pushing device 31, a sensing device 32, and a receiving plate 33. The vibrating bowl 1 is provided with a conveying channel 11, and the conveying channel 11 is connected to the receiving plate 33. The conveying channel 11 arranges the magnets 101 along the conveying channel 11 through vibration and transports them to one end of the receiving plate 33. The flat pushing device 31 is located at the end of the receiving plate 33 connected to the conveying channel 11, and the sensing device 32 is located at the end of the receiving plate 33 close to the flat pushing device 31. The sensing device 32 can sense that there is a magnet 101 at the end of the receiving plate 33 close to the flat pushing device 31. The flat pushing device 31 includes a retractable push head 311, and the push head 311 is driven by a cylinder to retract and extend. The push head 311 can push the magnet 101 from one end of the receiving plate 33 to the other end one by one. The clamping jaw 2 is set to clamp the end of the receiving plate 33 away from the flat pushing device 31, and the clamping jaw 2 realizes displacement in three axial directions through a driving device.

[0030] Such as Figure 3 As shown, a push groove 3111 is provided at the end of the push head 311 facing the magnet 101. A part of the magnet 101 is located in the push groove 3111, and the upper top surface of the push groove 3111 is located above a part of the magnet 101, which can play a role in stable pushing. A receiving groove 331 is provided on the upper end surface of the receiving plate 33, and the inner bottom surface of the receiving groove 331 is flush with the inner bottom surface of the conveying channel 11. The receiving groove 331 can prevent the magnet 101 from falling out of the receiving plate 33, so that the magnet 101 can be stably located at the outer end of the receiving groove 331, and the depth of the receiving groove 331 should not be too deep, and it is necessary to facilitate the clamping jaw 2 to clamp.

[0031] Such as Figures 5 to 8As shown, the gripper 2 picks up the magnets 101 one by one and sends them to the fixture assembly 5. The fixture assembly 5 includes a base 51, a push bar 52, a push block 53, and a pressing block 54. The base 51 is provided with a mounting groove 511 and a plurality of fixing grooves 512. The number of push bars 52 is two. The plurality of fixing grooves 512 are located on the upper end surface of the base 51. The fixing grooves 512 communicate with the mounting groove 511. The plurality of fixing grooves 512 are arranged along the length direction of the mounting groove 511. The gripper 2 places the magnets 101 in the fixing grooves 512. Each fixing groove 512 can accommodate one magnet 101. At least a part of the magnet 101 is higher than the upper end surface of the base 51, facilitating subsequent processing of the magnet 101. The plurality of fixing grooves 512 are arranged on both sides of the length direction of the mounting groove 511. The push bar 52 is installed in the mounting groove 511. There are two corresponding push blocks 53. The mounting groove 511 is provided with a first guiding groove 5111. The push block 53 is installed in the first guiding groove 5111. The push block 53 can slide along the first guiding groove 5111. The push block 53 abuts against the side of the push bar 52 away from the fixing groove 512. The pressing block 54 is installed on the base 51 through a bolt 55. Rotating the bolt 55 drives the pressing block 54 to move up and down. The push block 53 is provided with a third inclined surface 532, and the pressing block 54 is provided with a fourth inclined surface 542. The pressing block 54 is provided with two fourth inclined surfaces 542. The third inclined surface 532 abuts against the fourth inclined surface 542. Moving the pressing block 54 up and down drives the two push blocks 53 to slide closer to or away from each other. The two push blocks 53 are located between the pressing block 54 and the two push bars 52. The push bar 52 can approach or move away from the fixing groove 512. The two push bars 52 can approach or move away from each other, enabling the push bar 52 to clamp and fix the magnet 101 in the fixing groove 512.

[0032] The push block 53 is provided with a second guiding groove 531. The second guiding groove 531 is located on the third inclined surface 532. The second guiding groove 531 extends along the third inclined surface 532. The second guiding groove 531 communicates with the third inclined surface 532. At least a part of the pressing block 54 is located in the second guiding groove 531. The pressing block 54 is provided with a guiding bar 541. The guiding bar 541 is located on the fourth inclined surface 542. The guiding bar 541 extends along the fourth inclined surface 542. The guiding bar 541 is located in the second guiding groove 531. The guiding bar 541 slides along the second guiding groove 531. The guiding bar 541 and the second guiding groove 531 correspondingly form a sliding guide, enabling the up and down movement of the pressing block 54 to drive the two push blocks 53 to approach or move away from each other, and also limiting the lateral movement of the push block 53 and the pressing block 54 to prevent lateral displacement of the push block 53 and the pressing block 54. When the bolt 55 drives the pressing block 54 to move, the two push blocks 53 move away from each other, and the push bar 52 loses the force pressing the magnet 101, enabling the magnet 101 to be removed from the fixture assembly 5. The bolt 55 can be manually screwed by a worker or fixed by an electric screwdriver. After all the fixing grooves 512 are filled with magnets 101, the bolt 55 is tightened to make the push bar 52 press against the magnet 101 to fix it.

[0033] like Figure 6 , Figure 7 As shown, the clamp assembly 5 includes a spring 56, at least one first spring groove 513 is formed on the side wall of the mounting groove 511, and at least one second spring groove 522 is formed on the side of the push bar 52 facing the side wall of the mounting groove 511. The spring 56 is installed in the first spring groove 513 and the second spring groove 522. The spring 56 can always apply a force to the push bar 52 away from the fixed groove 512, so that the push bar 52 is always in contact with the push block 53, so that the two push bars 52 are close to each other, and help the push bar 52 to reset.

[0034] like Figure 6 , Figure 9 As shown, the magnet 101 is in an L-shaped structure, and the fixing groove 512 is also in a corresponding L-shaped groove. Since there may be errors in the processing of the magnet 101, the push bar 52 alone cannot clamp all the magnets 101 well, and the magnets 101 with smaller sizes may be loose. The push bar 52 is provided with a plurality of top blocks 521, and the top blocks 521 are arranged in the length direction of the push bar 52, and the top blocks 521 extend toward the fixing groove 512, and the top blocks 521 can extend into the fixing groove 5 12, the top block 521 can support the magnet 101 located in the fixed groove 512, the fixed groove 512 includes a first side wall 5121, a second side wall 5122, and a first inclined surface 5123, the top block 521 includes a second inclined surface 5211 and a third side wall 5212, the magnet 101 includes a first end face 1011, a second end face 1012, a third end face 1013, and a fourth end face 1014, the first side wall 5121 is against the first end face 1011, and the second side wall 5122 is against the first end face 1013. 122 abuts against the second end face 1012, and the first inclined surface 5123 abuts against the second inclined surface 5211. When the push bar 52 gradually approaches the fixing groove 512, the top block 521 enters along with the first inclined surface 5123, and the third side wall 5212 of the top block 521 gradually approaches the third end face 1013 of the magnet 101. The top block 521 applies a force toward the first side wall 5121 and the second side wall 5122 to the third end face 1013, thereby clamping the magnet 101 in the fixing groove 51 2, there are three states in which the push bar 52 fixes the magnet 101 in the fixing groove 512. The first state is that the third side wall 5212 presses against the third end face 1013, the second state is that the push bar 52 presses against the fourth end face 1014, and the third state is that the third side wall 5212 presses against the third end face 1013 and the push bar 52 presses against the fourth end face 1014 at the same time, ensuring that at least three end faces of the magnet 101 receive the pressing force, so that all the magnets 101 can be fixed in the corresponding fixing grooves 512.

[0035] like Figure 2 , Figure 4As shown in the figure, since there are two rows of fixing grooves 512 on the base 51, when one row of fixing grooves 512 is filled with magnets 101, it is necessary to rotate 180 degrees to change the positions of the two rows of fixing grooves 512. The structure adopted in this embodiment is a rotary cylinder 41 and a zero-point quick-change structure. The rotating assembly 4 includes a rotary cylinder 41, a rotating seat 42, a mounting seat 43, and a connecting plate 44. The connecting plate 44 is fixedly connected to the base 51. The cylinder drives the rotating seat 42 to rotate. The mounting seat 43 is fixedly installed on the rotating seat 42. The connecting plate 44 is detachably connected to the rotating seat 42. The connecting plate 44 is provided with a plug rod 441, and the mounting seat 43 is provided with a jack 431 corresponding to the plug rod 441. The fixture assembly 5 and the connecting plate 44 can be disassembled together. The mounting seat 43 corresponding to the connecting plate 44 is also provided at the place where the magnet 101 is processed, so that it can be quickly disassembled and assembled. The upper end surface of the mounting seat 43 is provided with a plug block 432, and the lower end surface of the connecting plate 44 is provided with a slot 442. The plug block 432 is correspondingly inserted into the slot 442 to form a limit in the rotating direction between the mounting seat 43 and the connecting plate 44, and fix the connecting plate 44 and the mounting seat 43 together.

[0036] The above are only the preferred embodiments of the present invention. The protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the idea of the present invention belong to the protection scope of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements should also be regarded as the protection scope of the present invention.

Claims

1. A folding mobile phone magnet loading and clamping device, characterized in that: The invention comprises a vibration plate (1), a clamping claw (2), a pushing assembly (3), and a clamping assembly (5); the vibration plate (1) sends the magnets (101) to the pushing assembly (3); the pushing assembly (3) pushes out the magnets (101) one by one; the clamping claw (2) clamps the magnets (101) one by one and sends them to the clamping assembly (5); the clamping assembly (5) comprises a base (51) and a pushing bar (52); the base (51) is provided with a mounting groove (511) and a plurality of fixing grooves (512); the plurality of fixing grooves (512) are located on the upper end surface of the base (51); the fixing grooves (512) are provided on the upper end surface of the base (51); The fixed groove (512) is connected to the installation groove (511), and the plurality of fixed grooves (512) are arranged along the length direction of the installation groove (511). The push bar (52) is installed in the installation groove (511), and the push bar (52) can be close to or away from the fixed groove (512). The clamp (2) places the magnet (101) in the fixed groove (512), and at least a part of the magnet (101) is higher than the upper end surface of the base (51), and the push bar (52) can resist the magnet (101) to fix the magnet (101) in the fixed groove (512).

2. According to claim 1, a folding mobile phone magnet loading and clamping device is characterized in that: The clamp assembly (5) includes a push block (53) and a pressure block (54). The mounting groove (511) is provided with a first guide groove (5111). The push block (53) is installed in the first guide groove (5111). The push block (53) can slide along the first guide groove (5111). The push block (53) abuts against the side of the push bar (52) away from the fixing groove (512). The pressure block (54) is installed on the base (51) by a bolt (55). The bolt (55) rotates to drive the pressure block (54) to move up and down. The push block (53) is provided with a third inclined surface (532). The pressure block (54) is provided with a fourth inclined surface (542). The third inclined surface (532) abuts against the fourth inclined surface (542). The pressure block (54) moves up and down to drive the push block (53) to slide.

3. According to claim 2, a folding mobile phone magnet loading and clamping device is characterized in that: The push block (53) is provided with a second guide groove (531), the second guide groove (531) is located on the third inclined surface (532), the second guide groove (531) extends along the third inclined surface (532), the second guide groove (531) is connected to the third inclined surface (532), the pressing block (54) is at least partially located in the second guide groove (531), the pressing block (54) is provided with a guide bar (541), the guide bar (541) is located on the fourth inclined surface (542), the guide bar (541) extends along the fourth inclined surface (542), the guide bar (541) is located in the second guide groove (531), and the guide bar (541) slides along the second guide groove (531).

4. According to claim 1, a folding mobile phone magnet loading and clamping device is characterized in that: The push bar (52) is provided with a plurality of top blocks (521), the top blocks (521) are arranged in the length direction of the push bar (52), the top blocks (521) extend toward the fixing groove (512), the top blocks (521) can extend into the fixing groove (512), and the top blocks (521) can support the magnet (101) located in the fixing groove (512).

5. According to claim 4, a folding mobile phone magnet loading and clamping device is characterized in that: The fixing groove (512) comprises a first side wall (5121), a second side wall (5122), and a first inclined surface (5123); the top block (521) comprises a second inclined surface (5211) and a third side wall (5212); the magnet (101) comprises a first end surface (1011), a second end surface (1012), a third end surface (1013), and a fourth end surface (1014); the first side wall (5121) abuts against the first end surface (1011); the second side wall (5122) abuts against the second end surface (1012); the first inclined surface (5123) abuts against the second inclined surface (5211); the third side wall (5212) abuts against the third end surface (1013) and / or the push bar (52) abuts against the fourth end surface (1014).

6. A foldable mobile phone magnet loading and clamping device according to claim 1, characterized in that: The clamp assembly (5) includes a spring (56), the side wall of the installation groove (511) is provided with at least one first spring groove (513), the push bar (52) is provided with at least one second spring groove (522) on the side surface facing the side wall of the installation groove (511), and the spring (56) is installed in the first spring groove (513) and the second spring groove (522).

7. A foldable mobile phone magnet loading and clamping device according to claim 2, characterized in that: The number of the push strips (52) is two, the plurality of fixing grooves (512) are arranged on both sides of the length direction of the installation groove (511), two push blocks (53) are correspondingly provided, the pressing block (54) is provided with two fourth inclined surfaces (542), the two push blocks (53) are located between the pressing block (54) and the two push strips (52), and the two push strips (52) can be close to or away from each other.

8. According to claim 1, a foldable mobile phone magnet loading and clamping device is characterized in that: The rotating assembly (4) comprises a rotating cylinder (41), a rotating seat (42), a mounting seat (43), and a connecting plate (44); the connecting plate (44) is fixedly connected to the base (51); the cylinder drives the rotating seat (42) to rotate; the mounting seat (43) is fixedly mounted on the rotating seat (42); the connecting plate (44) is detachably connected to the rotating seat (42); an insert block (432) is provided on the upper end surface of the mounting seat (43); a slot (442) is provided on the lower end surface of the connecting plate (44); and the insert block (432) is correspondingly inserted into the slot (442).

9. A foldable mobile phone magnet loading and clamping device according to claim 1, characterized in that: The pushing assembly (3) comprises a horizontal pushing device (31), a sensing device (32), and a receiving plate (33); the vibrating plate (1) is provided with a conveying channel (11); the conveying channel (11) is connected to the receiving plate (33); the conveying channel (11) conveys the magnet (101) to one end of the receiving plate (33); the horizontal pushing device (31) is located at one end of the receiving plate (33) connected to the conveying channel (11); the horizontal pushing device (31) comprises a retractable pushing head (311); the pushing head (311) can push the magnets (101) one by one from one end of the receiving plate (33) to the other end; the sensing device (32) is located at one end of the receiving plate (33) close to the horizontal pushing device (31).

10. A foldable mobile phone magnet loading and clamping device according to claim 9, characterized in that: A push groove (3111) is provided at one end of the push head (311) facing the magnet (101), a portion of the magnet (101) is located in the push groove (3111), and a receiving groove (331) is provided on the upper end surface of the receiving plate (33), and the inner bottom surface of the receiving groove (331) is flush with the inner bottom surface of the conveying channel (11).