Foxing bar magnet machine with pressing magnet

By designing a strip magnet machine with pressed magnets, the problem of magnets not sticking firmly and easily falling in the prior art is solved, and a higher quality strip magnet is used to attach more efficient production processes.

CN222905024UActive Publication Date: 2025-05-27DONGGUAN ZHONGHU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202421873971.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-05-27
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

During the existing strip production process, the magnets are not sticky firmly and are prone to fall off, resulting in a high defect rate and affecting the production process.

Method used

Design a strip magnet machine with pressed magnets, including a work surface, a punching mechanism, a magnet feeding mechanism and a pressing magnet mechanism. By automatically conveying the strips, punching, dispensing and magnet sticking are performed, and the pressing magnet action is added at the end to ensure that the magnet is firmly attached.

Benefits of technology

提高了围条贴磁铁的质量,减少了不良率,提升了生产效率,确保了磁铁不会松动和掉落。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a foxing magnet machine with a pressure magnet. The foxing magnet machine comprises a working table, a punching mechanism, a magnet discharging mechanism and a pressure magnet mechanism, the punching mechanism comprises a punching supporting frame, a punching supporting plate, a punching vertical moving linear module and a punching drill bit. The magnet discharging mechanism comprises a discharging transverse plate, a discharging mounting plate and a magnet mold, and the upper end of the magnet mold is connected with a magnet storage pipe; the piezomagnetic mechanism comprises a piezomagnetic supporting frame, an air cylinder installation plate and a piezomagnetic block, a piezomagnetic air cylinder is fixed to the air cylinder installation plate, a lead screw is locked on the piezomagnetic supporting frame, and the lower end of the lead screw is connected with a limiting profile. According to the foxing magnet machine with the pressing magnets, stacked foxing strips are pushed forwards one by one, the foxing strips are punched and then glued, then the magnets are placed, and finally the magnets are firmly pressed in the holes to be formed through the pressing magnets, so that the quality of attaching the foxing strips to the magnets is improved, the production efficiency is improved, and the reject ratio is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of strip processing, in particular to a strip magnet machine with a pressing magnet. Background Technique

[0002] In the production process of many gift box strips such as cigarette box strips, magnets need to be pasted to perform the closing operation of the gift box by using magnetism. In the existing strip production process, the magnets are not firmly adhered and are easy to fall off, resulting in a high defective rate in batches, affecting the process when producing gift boxes later, and being unfavorable for production and manufacturing. Content of the Utility Model

[0003] An object of the utility model is to provide a strip magnet machine with a pressing magnet, which automatically conveys the strip and performs operations such as processing, dispensing glue and pasting magnets, and finally adds a magnet pressing action to ensure that the magnets will not loosen and fall off.

[0004] To achieve this purpose, the utility model adopts the following technical solutions:

[0005] A strip magnet machine with a pressing magnet includes a workbench surface, a punching mechanism, a magnet feeding mechanism and a magnet pressing mechanism;

[0006] The punching mechanism includes a punching support frame, a punching support plate, a punching vertical movement linear module and a punching drill bit. The punching support frame is located on both sides of the workbench surface. The punching support plate is erected on the punching support frame. The punching vertical movement linear module is installed on the punching support plate, and the punching drill bit is installed on the driving end of the punching vertical movement linear module;

[0007] The magnet feeding mechanism includes a feeding cross plate, a feeding mounting plate and a magnet mold. The feeding mounting plate is installed on the feeding cross plate. The magnet mold is fixed on the feeding mounting plate, and a magnet storage pipe is connected to the upper end of the magnet mold;

[0008] The magnet pressing mechanism includes a magnet pressing support frame, a cylinder mounting plate and a magnet pressing block. The magnet pressing support frame is fixed on the workbench surface. The cylinder mounting plate is fixed in the middle of the magnet pressing support frame. A magnet pressing cylinder is fixed on the cylinder mounting plate. The magnet pressing block is connected to the driving end of the magnet pressing cylinder. A lead screw is locked on the magnet pressing support frame, and a limiting profile is connected to the lower end of the lead screw.

[0009] As a preferred technical solution, a front-pushing mechanism is provided at the front end of the workbench surface. The front-pushing mechanism includes a front-pushing plate, a cutter-pushing support plate, and a bottom-pushing plate. A front-pushing slider is fixed on the bottom-pushing plate, and a front-pushing slide rail is fixed at the lower end of the workbench surface. The front-pushing slider slides on the front-pushing slide rail. The cutter-pushing support plate is connected between the front-pushing plate and the bottom-pushing plate and passes through the workbench surface, and the front-pushing plate moves on the workbench surface.

[0010] As a preferred technical solution, a material storage mechanism is provided between the front-pushing mechanism and the punching mechanism. The material storage mechanism includes a material storage adjustment frame, a rear baffle, side baffles, and a front baffle. A movable adjustment member is installed at the upper end of the material storage adjustment frame. The movable end of the movable adjustment member is connected to the rear baffle. A product through-hole is formed between the lower end of the rear baffle and the workbench surface. The side baffles are located on both sides of the rear baffle and are fixed on the workbench surface. The front baffle is located in front of the side baffles. The upper end of the front baffle is inclined outward, and a pressure paper strip is connected to the rear end of the material storage adjustment frame.

[0011] As a preferred technical solution, a first slide rail is arranged along the front-rear direction on the punching support frame, and a first slider is fixed on the punching support plate. The first slider slides on the first slide rail.

[0012] As a preferred technical solution, a punching lower slide plate slides along the left-right direction on the punching support plate, and a punching upper slide plate slides along the front-rear direction on the punching lower slide plate. The punching vertical movement linear module is fixed on the punching upper slide plate.

[0013] As a preferred technical solution, a second slide rail is arranged along the left-right direction on the punching support plate, and a second slider is fixed on the punching lower slide plate. The second slider slides on the first slide rail. A third slide rail is arranged along the front-rear direction on the punching lower slide plate, and a third slider is fixed on the punching upper slide plate. The third slider slides on the third slide rail.

[0014] As a preferred technical solution, a first adjustment plate is arranged on one side of the punching support plate. A first handle is rotatably connected to the first adjustment plate, and a first rectangular spring is sleeved on the first handle. A first adjustment rod is connected to the punching upper slide plate. The first adjustment rod passes through the first rectangular spring and is threadedly connected to one end of the first adjustment rod.

[0015] As a preferred technical solution, fourth slide rails are fixed along the front-rear direction on both sides of the workbench surface, and fourth sliders are fixed on the material feeding cross plate. The fourth sliders slide on the fourth slide rails.

[0016] As a preferred technical solution, a fifth slide rail is installed on the discharging cross plate along the left - right direction, a fifth slider is fixed on the discharging mounting plate, and the fifth slider slides on the fifth slide rail.

[0017] As a preferred technical solution, a second adjusting plate is arranged on one side of the discharging mounting plate. A second handle is rotatably connected to the second adjusting plate, a second rectangular spring is sleeved on the second handle, a second adjusting rod is connected to the discharging mounting plate, and the second adjusting rod passes through the second rectangular spring and is threadedly connected to one end of the second adjusting rod.

[0018] The beneficial effects of the present utility model are as follows: A strip magnet machine with a pressure magnet is provided. This strip magnet machine with a pressure magnet pushes the stacked strips forward one by one, punches holes, glues, then places magnets, and finally the pressure magnet block firmly presses the magnets into the holes to form, improving the quality of strip magnet pasting, increasing production efficiency, and reducing the defective rate. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The following further describes the present utility model in detail according to the drawings and embodiments.

[0020] Figure 1 It is a schematic diagram of the overall structure of a strip magnet machine with a pressure magnet according to the embodiment;

[0021] Figure 2 It is a first schematic diagram of the forward - pushing mechanism according to the embodiment;

[0022] Figure 3 It is a second schematic diagram of the forward - pushing mechanism according to the embodiment;

[0023] Figure 4 It is a first schematic diagram of the material - storing mechanism according to the embodiment;

[0024] Figure 5 It is a second schematic diagram of the material - storing mechanism according to the embodiment;

[0025] Figure 6 It is a first schematic diagram of the punching mechanism according to the embodiment;

[0026] Figure 7 It is a second schematic diagram of the punching mechanism according to the embodiment;

[0027] Figure 8 It is a schematic diagram of the magnet feeding mechanism according to the embodiment;

[0028] Figure 9 It is a schematic diagram of the pressure magnet mechanism according to the embodiment.

[0029] Figures 1 to 9 Wherein:

[0030] 1. Workbench surface

[0031] 2. Punching mechanism; 201. Punching support frame; 202. Punching support plate; 203. Punching vertical translation linear module; 204. Punching drill bit; 205. First slide rail; 206. Punching lower slide plate; 207. Punching upper slide plate; 208. Second slide rail; 209. Third slide rail; 210. First adjusting plate; 211. First handle; 212. First rectangular spring; 213. First adjusting rod

[0032] 3. Magnet feeding mechanism; 301. Feeding cross plate; 302. Feeding mounting plate; 303. Magnet mold; 304. Magnet storage pipe; 305. Fourth slide rail; 306. Fifth slide rail; 307. Second adjusting plate; 308. Second handle; 309. Second rectangular spring; 310. Second adjusting rod

[0033] 4. Magnet pressing mechanism; 401. Magnet pressing support frame; 402. Cylinder mounting plate; 403. Magnet pressing block; 404. Magnet pressing cylinder; 405. Lead screw; 406. Limit profile

[0034] 5. Front pushing mechanism; 501. Front pushing plate; 502. Knife pushing support plate; 503. Bottom pushing plate; 504. Front pushing slide rail

[0035] 6. Storage mechanism; 601. Storage adjusting frame; 602. Rear baffle; 603. Side baffle; 604. Front baffle; 605. Movable adjusting part; 606. Pressure strip Specific embodiments

[0036] The technical solution of the present invention will be further described below with reference to the accompanying drawings and through specific embodiments.

[0037] As Figures 1 to 9 shown, in this embodiment, a strip magnet machine with a pressed magnet includes a workbench surface 1, a punching mechanism 2, a magnet feeding mechanism 3 and a magnet pressing mechanism 4. A front pushing mechanism 5 is arranged at the front end of the workbench surface 1, and a storage mechanism 6 is arranged between the front pushing mechanism 5 and the punching mechanism 2.

[0038] Specifically, the front pushing mechanism 5 includes a front pushing plate 501, a knife pushing support plate 502 and a bottom pushing plate 503. A front pushing slider is fixed on the bottom pushing plate 503, a front pushing slide rail 504 is fixed at the lower end of the workbench surface 1, the front pushing slider slides on the front pushing slide rail 504, the knife pushing support plate 502 is connected between the front pushing plate 501 and the bottom pushing plate 503 and passes through the workbench surface 1, and the front pushing plate 501 moves on the workbench surface 1.

[0039] A motor or a cylinder can be installed below the workbench surface 1 to control the forward and backward movement of the bottom push plate 503. Under the guidance of the forward push slide rail 504, during the movement of the bottom push plate 503, the forward push plate 501 is driven back and forth through the push knife support plate 502, and the strip at the lower end of the material storage mechanism 6 is pushed forward one by one.

[0040] The material storage mechanism 6 includes a material storage adjustment frame 601, a rear baffle 602, side baffles 603 and a front baffle 604. An activity adjustment part 605 is installed at the upper end of the material storage adjustment frame 601. The activity end of the activity adjustment part 605 is connected to the rear baffle 602. A product through hole is formed between the lower end of the rear baffle 602 and the workbench surface 1. The side baffles 603 are located on both sides of the rear baffle 602 and are fixed on the workbench surface 1. The front baffle 604 is located in front of the side baffles 603. The upper end of the front baffle 604 is inclined outward. A pressure strip 606 is connected to the rear end of the material storage adjustment frame 601.

[0041] The stacked strips are placed from top to bottom between the front baffle 604 and the rear baffle 602. Due to the inclination of the upper end of the front baffle 604, it is easier to feed the material. The positions on both sides are restricted by the side baffles 603. And according to the different thicknesses of the strips, the activity adjustment part 605 controls the lifting of the rear baffle 602, and the height of the product through hole formed between the lower end of the rear baffle 602 and the workbench surface 1 can be adjusted.

[0042] The punching mechanism 2 includes a punching support frame 201, a punching support plate 202, a punching vertical translation linear module 203 and a punching drill bit 204. The punching support frame 201 is located on both sides of the workbench surface 1. The punching support plate 202 is erected on the punching support frame 201. The punching vertical translation linear module 203 is installed on the punching support plate 202. The punching drill bit 204 is installed on the driving end of the punching vertical translation linear module 203. A first slide rail 205 is arranged on the punching support frame 201 in the front-back direction. A first slider is fixed on the punching support plate 202, and the first slider slides on the first slide rail 205. A punching lower slide plate 206 slides on the punching support plate 202 in the left-right direction. A punching upper slide plate 207 slides on the punching lower slide plate 206 in the front-back direction. The punching vertical translation linear module 203 is fixed on the punching upper slide plate 207. A second slide rail 208 is arranged on the punching support plate 202 in the left-right direction. A second slider is fixed on the punching lower slide plate 206, and the second slider slides on the first slide rail 205. A third slide rail 209 is arranged on the punching lower slide plate 206 in the front-back direction. A third slider is fixed on the punching upper slide plate 207, and the third slider slides on the third slide rail 209. A first adjusting plate 210 is arranged on one side of the punching support plate 202. A first handle 211 is rotatably connected to the first adjusting plate 210. A first rectangular spring 212 is sleeved on the first handle 211. A first adjusting rod 213 is connected to the punching upper slide plate 207. The first adjusting rod 213 passes through the first rectangular spring 212 and is threadedly connected to one end of the first adjusting rod 213.

[0043] Adjust the X-axis and Y-axis positions of the punching vertical translation linear module 203 by using the first slide rail 205 and the second slide rail 208 according to the position where punching is required. Rotate the first handle 211 to finely adjust the left-right position, and the front-back fine adjustment is performed by the sliding adjustment of the third slider and the third slide rail 209. Above the specified position, the punching vertical translation linear module 203 controls the punching drill bit 204 to move downward to perform punching operations on the current strip.

[0044] The magnet feeding mechanism 3 includes a feeding cross plate 301, a feeding mounting plate 302 and a magnet mold 303. The feeding mounting plate 302 is installed on the feeding cross plate 301, the magnet mold 303 is fixed on the feeding mounting plate 302, a magnet storage pipe 304 is connected to the upper end of the magnet mold 303. On both sides of the workbench surface 1, fourth slide rails 305 are fixed along the front-back direction. A fourth slider is fixed on the feeding cross plate 301, and the fourth slider slides on the fourth slide rail 305. A fifth slide rail 306 is installed on the feeding cross plate 301 along the left-right direction. A fifth slider is fixed on the feeding mounting plate 302, and the fifth slider slides on the fifth slide rail 306. A second adjusting plate 307 is arranged on one side of the feeding mounting plate 302. A second handle 308 is rotatably connected to the second adjusting plate 307. A second rectangular spring 309 is sleeved on the second handle 308. A second adjusting rod 310 is connected to the feeding mounting plate 302. The second adjusting rod 310 passes through the second rectangular spring 309 and is threadedly connected to one end of the second adjusting rod 310.

[0045] After punching, the hole positions are dispensed with glue by the dispensing structure. Then, according to the hole positions on the current bead, the fourth slide rail 305 guides the front-back position of the magnet mold 303, and the fifth slide rail 306 guides the left-right position of the magnet mold 303. Fine adjustment is performed by rotating the second handle 308. The stacked magnets are placed into the magnet storage pipe 304 and drop one by one from the magnet mold 303 into the current hole positions and are adhered and fixed by the adhesive.

[0046] The magnet pressing mechanism 4 includes a magnet pressing support frame 401, a cylinder mounting plate 402 and a magnet pressing block 403. The magnet pressing support frame 401 is fixed on the workbench surface 1, the cylinder mounting plate 402 is fixed in the middle of the magnet pressing support frame 401, a magnet pressing cylinder 404 is fixed on the cylinder mounting plate 402, and the magnet pressing block 403 is connected to the driving end of the magnet pressing cylinder 404. A lead screw 405 is locked on the magnet pressing support frame 401, and a limiting profile 406 is connected to the lower end of the lead screw 405.

[0047] In order to ensure that the magnets are firmly adhered in the hole positions, the limiting profile 406 restricts the positions of both sides of the bead, and the magnet pressing cylinder 404 controls the magnet pressing block 403 to move downwards to further press the magnets in the hole positions onto the adhesive.

[0048] It should be noted that the above specific embodiments are only the preferred embodiments of the present invention and the applied technical principles. Any changes or substitutions that are easily conceivable by those skilled in the art within the technical scope disclosed by the present invention should be covered by the protection scope of the present invention.

Claims

1. A strip magnet machine with pressed magnets, characterized in that: It includes a working table, a punching mechanism, a magnet unloading mechanism and a magnet pressing mechanism; The punching mechanism comprises a punching support frame, a punching support plate, a punching vertical linear module and a punching drill, wherein the punching support frame is located on both sides of the work table, the punching support plate is mounted on the punching support frame, the punching vertical linear module is mounted on the punching support plate, and the punching drill is mounted on the driving end of the punching vertical linear module; The magnet unloading mechanism comprises an unloading transverse plate, an unloading mounting plate and a magnet mold, wherein the unloading mounting plate is mounted on the unloading transverse plate, the magnet mold is fixed on the unloading mounting plate, and the upper end of the magnet mold is connected to a magnet storage tube; The piezo-magnetic mechanism includes a piezo-magnetic support frame, a cylinder mounting plate and a piezo-magnetic block. The piezo-magnetic support frame is fixed on the work surface, the cylinder mounting plate is fixed to the middle part of the piezo-magnetic support frame, a piezo-magnetic cylinder is fixed on the cylinder mounting plate, the piezo-magnetic block is connected to the driving end of the piezo-magnetic cylinder, a screw rod is locked on the piezo-magnetic support frame, and the lower end of the screw rod is connected to a limiting profile.

2. A strip magnet machine with pressed magnets according to claim 1, characterized in that: A forward pushing mechanism is provided at the front end of the work table, and the forward pushing mechanism includes a forward pushing plate, a push knife support plate and a bottom pushing plate. A forward pushing slider is fixed on the bottom pushing plate, and a forward pushing rail is fixed on the lower end of the work table. The forward pushing slider slides on the forward pushing rail, the push knife support plate is connected between the front pushing plate and the bottom pushing plate and passes through the work table, and the front pushing plate moves on the work table.

3. A strip magnet machine with pressed magnets according to claim 2, characterized in that: A material storage mechanism is arranged between the forward pushing mechanism and the punching mechanism, and the material storage mechanism includes a material storage adjustment frame, a rear baffle, a side baffle and a front baffle. A movable adjusting part is installed at the upper end of the material storage adjustment frame, and the movable end of the movable adjusting part is connected to the rear baffle. A product through hole is formed between the lower end of the rear baffle and the work surface. The side baffles are located on both sides of the rear baffle and are fixed on the work surface. The front baffle is located in front of the side baffles, and the upper end of the front baffle is inclined outward. A paper pressing strip is connected to the rear end of the material storage adjustment frame.

4. A strip magnet machine with pressed magnets according to claim 1, characterized in that: A first slide rail is arranged on the punching support frame along the front-rear direction, a first slider is fixed on the punching support plate, and the first slider slides on the first slide rail.

5. A strip magnet machine with pressed magnets according to claim 4, characterized in that: The punching support plate is provided with a punching lower slide plate sliding along the left-right direction, the punching lower slide plate is provided with a punching upper slide plate sliding along the front-back direction, and the punching vertical linear module is fixed on the punching upper slide plate.

6. A strip magnet machine with pressed magnets according to claim 5, characterized in that: A second slide rail is arranged on the punching support plate along the left-right direction, a second slider is fixed on the punching lower slide plate, the second slider slides on the first slide rail, a third slide rail is arranged on the punching lower slide plate along the front-back direction, a third slider is fixed on the punching upper slide plate, and the third slider slides on the third slide rail.

7. A strip magnet machine with pressed magnets according to claim 5, characterized in that: A first adjusting plate is provided on one side of the punching support plate, a first handle is rotatably connected to the first adjusting plate, a first rectangular spring is sleeved on the first handle, a first adjusting rod is connected to the punching upper slide plate, and the first adjusting rod passes through the first rectangular spring and is threadedly connected to one end of the first adjusting rod.

8. The strip magnet machine with pressed magnets according to claim 1, characterized in that: Fourth slide rails are fixed on both sides of the work surface along the front-rear direction, and a fourth slider is fixed on the material discharge horizontal plate, and the fourth slider slides on the fourth slide rails.

9. A strip magnet machine with pressed magnets according to claim 1, characterized in that: A fifth slide rail is installed on the material discharge transverse plate along the left-right direction, a fifth slider is fixed on the material discharge mounting plate, and the fifth slider slides on the fifth slide rail.

10. A strip magnet machine with pressed magnets according to claim 1, characterized in that: A second adjusting plate is provided on one side of the material discharge mounting plate, a second handle is rotatably connected to the second adjusting plate, a second rectangular spring is sleeved on the second handle, a second adjusting rod is connected to the material discharge mounting plate, and the second adjusting rod passes through the second rectangular spring and is threadedly connected to one end of the second adjusting rod.