Conveyor belt magnetic attraction machine and processing method thereof

The conveyor belt magnetizer system addresses the issue of gap-free magnetization in traditional wear nail processing by using adjustable positioning and UV LED curing to enhance production efficiency and reduce defects.

CN120308529AInactive Publication Date: 2025-07-15GUANGDONG BOMINGRUI INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202510392321.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2025-07-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional wearable armor magnetic absorption devices cannot achieve magnetization of wearable armor without intervals, resulting in problems such as slow production speed, high operational complexity and high defect rate.

Method used

The conveyor belt magnetic suction machine is adopted, including the conveyor belt, limiting mechanism, lifting mechanism, magnetic suction setting mechanism and curing mechanism. The continuous non-spaced magnetic suction and curing treatment of the wearable armor is achieved through the continuous conveyor belt. The hollow shaft motor is used to drive the magnetic parts to rotate and generate a continuous magnetic field, and cure it through the UV LED curing lamp source.

Benefits of technology

The continuous and non-spaced magnetic absorption and curing treatment of wearable armor is realized, which improves production efficiency and economic benefits, reduces defective rates, and enhances the versatility and adaptability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of wearable armor processing equipment, and provides a conveyor belt magnetic attraction machine and a processing method thereof.The conveyor belt magnetic attraction machine comprises a workbench, a conveying mechanism is installed on the workbench, the conveying mechanism comprises a conveyor belt, at least one limiting mechanism is installed on each of the two sides of the conveyor belt, and a lifting mechanism is installed at the bottom of the conveyor belt; the lifting mechanism is used for lifting the conveying belt, and a magnetic attraction shaping mechanism is arranged above the conveying mechanism. By applying the device, the magnetic attraction mechanism utilizes the hollow shaft motor to drive the magnetic part to rotate to generate a continuously-changing magnetic field, magnetic nail polish on the surface of the wearable nail is accurately attracted, needed patterns or effects are formed, the curing mechanism conducts efficient curing treatment on the magnetically-attracted wearable nail through the light-transmitting part on the light shielding plate, and it is ensured that the effect is lasting and stable. The whole process is completed in continuous conveying of the conveying belt, continuous non-interval magnetic attraction and curing treatment of the wearable armor are achieved, and the production efficiency and economic benefits are greatly improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of wearable armor processing equipment, and in particular to a conveyor belt magnetic attraction machine and a processing method thereof. Background Art

[0002] After people apply cat's eye glue on the surface of their fingernails or wear nails, they wave the magnetic rod to use magnetic force to attract the cat's eye glue to produce a cat's eye effect, and then solidify it with a phototherapy lamp to achieve the cat's eye effect. This is the origin of manual wear nails, but due to its manual operation characteristics, the production efficiency is low and it is difficult to meet the needs of large-scale production.

[0003] Later, after mechanized production, the whole wearable nail strip was sprayed or printed, and then placed on a cat's eye machine to absorb magnetism, and the cat's eye effect was also produced. Although this process is very mature, it has always had a disadvantage, that is, the speed is too slow. Traditional equipment needs to stop frequently during the magnetic absorption process to ensure that each piece of wearable nail can obtain sufficient magnetic absorption effect. This intermittent operation not only reduces the production speed, but also increases the complexity of the operation and the defective rate. There is no way to satisfy users to absorb a strong cat's eye effect and produce quickly.

[0004] The purpose of the present invention is to solve the problem that the traditional wearable armor magnetic attraction device cannot attract the wearable armor without intervals. Summary of the invention

[0005] The purpose of the present invention is to solve the problem that the conventional wearable armor magnetic attraction device cannot attract the wearable armor without intervals. The present invention adopts the following technical solutions:

[0006] A conveyor belt magnetic attraction machine comprises a workbench, a conveying mechanism is installed on the workbench, the conveying mechanism comprises a conveyor belt, at least one limiting mechanism is installed on both sides of the conveyor belt, and a lifting mechanism is installed at the bottom of the conveyor belt, and the lifting mechanism is used to lift the conveyor belt;

[0007] A magnetic attraction and shaping mechanism is arranged above the conveying mechanism, and the magnetic attraction and shaping mechanism comprises a box body, a shading plate is installed at the bottom of the box body, and the shading plate is provided with a light-transmitting portion. An actuator is installed in the box body, and the actuator comprises a magnetic attraction mechanism and a curing mechanism.

[0008] A conveyor belt magnetic attraction machine as described above, the magnetic attraction mechanism includes a hollow shaft motor, the rotor of the hollow shaft motor is installed with a cylinder, one end of the cylinder is open design, a magnetic part is installed at one end of the cylinder, the curing mechanism is arranged in the cylinder, the inner cavity of the cylinder does not contact the curing mechanism, the curing mechanism is fixedly connected with a connecting rod, one end of the connecting rod passes through the rotor of the hollow shaft motor and is fixedly connected to the box.

[0009] A conveyor belt magnetic attraction machine as described above, wherein the magnetic member is one or a combination of a permanent magnet and an electromagnet.

[0010] A conveyor belt magnetic attraction machine as described above, wherein the curing mechanism is one or a combination of an LED UV curing light source, a thermal energy radiation curing source, and an electron beam curing source.

[0011] A conveyor belt magnetic attraction machine as described above, wherein the limiting mechanism includes a first L-shaped plate, at least one through groove is provided in the first L-shaped plate, a first bolt is slidably arranged in the through groove, a second L-shaped plate is installed at the bottom of the first L-shaped plate, the second L-shaped plate is threadedly connected to the first bolt, a slider is arranged on one side of the second L-shaped plate, a second bolt is sleeved in the slider, and sliding grooves for installing the slider are provided on both sides of the conveyor belt.

[0012] A conveyor belt magnetic attraction machine as described above, wherein the lifting mechanism includes a base, the base is fixedly connected with a bottom plate, a lead screw is sleeved in the bottom plate, the lead screw is threadedly connected to the bottom plate, one end of the lead screw is rotatably connected with a cross bar, at least one positioning rod is sleeved in the bottom plate, the positioning rod is slidably connected to the bottom plate, and one end of the positioning rod is fixedly connected to the cross bar.

[0013] A conveyor belt magnetic attraction machine as described above, wherein a support is installed at the bottom of the magnetic attraction shaping mechanism, and the height of the top of the support is higher than the height of the limiting mechanism.

[0014] A processing method of a conveyor belt magnetic attraction machine includes the following processes:

[0015] The first process: feeding. The whole plate of artificial nails obtained by spraying and printing is placed on the conveyor belt, and the conveyor belt conveys the artificial nails to the lower part of the magnetic attraction shaping mechanism.

[0016] The second process: magnetic attraction. The magnetic member attracts the magnetic nail polish on the surface of the artificial nails, so that the nail polish on the surface of the artificial nails forms the required effect.

[0017] The third process: curing. The artificial nails subjected to magnetic attraction continue to be conveyed forward, and the curing mechanism cures the effect of the artificial nails with the formed effect through the light-transmitting part of the light-shielding plate.

[0018] The fourth process: discharging. The conveyor belt conveys the artificial nails that have been cured out of the workbench or conveys them to the next process.

[0019] A processing method of a conveyor belt magnetic attraction machine, the second process further includes the following steps:

[0020] The hollow shaft motor drives the magnetic part to rotate, thereby forming a continuous magnetic field, so as to realize the magnetic attraction of the false nails. This continuously changing magnetic field can affect the cat's eye glue coated on the surface of the false nails, also known as magnetic nail polish, so that the tiny magnetic particles contained in it are arranged according to the direction of the magnetic field, forming a unique visual effect. The length of the magnetic attraction time is proportional to the conveying speed of the conveyor belt.

[0021] A processing method of a conveyor belt magnetic attraction machine, the third process further includes the following steps:

[0022] When the second process is completed, that is, after the required visual effect has been formed on the surface of the false nails, the curing mechanism cures the visual effect of the false nails. The curing mechanism preferably uses a UV LED curing light source, and the state is always on. Specifically, the conveyor belt drives the false nails to continue to move forward. When the false nails pass through the light-transmitting part, the light of the UV LED curing light source irradiates the false nails through the light-transmitting part. The length of the irradiation time is proportional to the conveying speed of the conveyor belt. During this period, the light of the UV LED curing light source triggers the photoinitiator in the cat's eye glue, prompting the material to quickly undergo a cross-linking reaction and cure, finally fixing the unique pattern previously shaped by the magnetic field. After the pattern is cured, it will not be affected by the magnetic field, avoiding the change of the pattern caused by the magnetic field of the magnetic attraction shaping mechanism after the false nails pass through the magnetic attraction shaping mechanism.

[0023] Implementing the embodiments of the present invention has the following beneficial effects:

[0024] 1. In the present invention, the limiting mechanism ensures that the false nails maintain the correct position and direction during the conveying process, avoiding deviation, and effectively reducing the defective rate caused by deviation. The lifting mechanism can flexibly adjust the height of the conveyor belt, so that the distance between the false nails and the magnetic attraction shaping mechanism reaches the optimal state, adapting to false nails of different thicknesses and sizes, and improving the versatility and adaptability of the equipment. The magnetic attraction mechanism uses the continuously changing magnetic field generated by the hollow shaft motor driving the magnetic part to rotate to precisely magnetically attract the magnetic nail polish on the surface of the false nails, forming the required pattern or effect. The curing mechanism performs efficient curing treatment on the magnetically attracted false nails through the light-transmitting part on the light-shielding plate, ensuring that the effect is lasting and stable. The whole process is completed during the continuous conveying of the conveyor belt, realizing the continuous and non-stop magnetic attraction and curing treatment of the false nails, and greatly improving the production efficiency and economic benefits.

[0025] In summary, the present invention solves the problem that the traditional false nail magnetic attraction device cannot magnetically attract the false nails without interruption. Brief Description of the Drawings

[0026] To more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0027] Figure 1 It is a schematic diagram of the overall structure of a conveyor belt magnetic suction machine and its processing method of the present invention.

[0028] Figure 2 It is a schematic diagram of the structure of the conveying mechanism of a conveyor belt magnetic suction machine and its processing method of the present invention.

[0029] Figure 3 It is a schematic diagram of the structure of the conveyor belt of a conveyor belt magnetic suction machine and its processing method of the present invention.

[0030] Figure 4 It is a schematic diagram of the structure of the limiting mechanism of a conveyor belt magnetic suction machine and its processing method of the present invention.

[0031] Figure 5 It is an exploded view of the magnetic suction shaping mechanism of a conveyor belt magnetic suction machine and its processing method of the present invention.

[0032] Figure 6 It is an exploded view of the actuating mechanism of a conveyor belt magnetic suction machine and its processing method of the present invention.

[0033] Figure 7 It is a schematic diagram of the structure of the light-shielding plate of the second embodiment.

[0034] As shown in the figure:

[0035] 1. Workbench; 2. Conveying mechanism; 21. Conveyor belt; 22. Limiting mechanism; 221. First L-shaped plate; 222. Through groove; 223. First bolt; 224. Second L-shaped plate; 225. Second bolt; 226. Slide block; 23. Lifting mechanism; 231. Bottom plate; 232. Lead screw; 233. Base; 234. Cross bar; 235. Positioning rod; 3. Magnetic suction shaping mechanism; 31. Box body; 32. Actuating mechanism; 321. Hollow shaft motor; 322. Connecting rod; 323. Curing mechanism; 324. Cylinder body; 325. Magnetic part; 33. Light-shielding plate; 331. Light-transmitting part; 332. Through hole; 333. Slot; 334. Baffle; 4. Support. Detailed implementation manners

[0036] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without making creative efforts belong to the scope of protection of the present invention.

[0037] As Figures 1 to 6 shown, the present invention provides a conveyor belt magnetic suction machine, including a workbench 1, characterized in that a conveying mechanism 2 is installed on the workbench 1. The conveying mechanism 2 includes a conveyor belt 21, at least one limiting mechanism 22 is installed on both sides of the conveyor belt 21, and a lifting mechanism 23 is installed at the bottom of the conveyor belt 21. The lifting mechanism 23 is used to lift the conveyor belt 21.

[0038] Above the conveying mechanism 2, a magnetic suction shaping mechanism 3 is provided. The magnetic suction shaping mechanism 3 includes a box body 31. A light-shielding plate 33 is installed at the bottom of the box body 31. The light-shielding plate 33 is provided with a light-transmitting part 331. An actuating mechanism 32 is installed in the box body 31. The actuating mechanism 32 includes a magnetic suction mechanism and a curing mechanism 323. A support 4 is installed at the bottom of the magnetic suction shaping mechanism 3. The height of the top of the support 4 is higher than the height of the limiting mechanism 22.

[0039] The conveyor belt magnetic suction machine aims to achieve continuous and non-stop magnetic suction treatment of artificial nails. During operation, a whole plate of artificial nails prepared by spraying or printing processes is placed on the conveyor belt 21. The limiting mechanism 22 ensures that it maintains the correct position and direction during transportation, preventing the artificial nails from shifting, effectively reducing the defective rate caused by shifting. The lifting mechanism 23 can lift the conveyor belt 21 to adjust the distance between the artificial nails and the magnetic suction shaping mechanism 3 to achieve the best magnetic suction effect. The flexibility of the lifting mechanism 23 enables the device to adapt to artificial nails of different thicknesses and sizes, improving the versatility and adaptability of the device. When the artificial nails are transported under the magnetic suction shaping mechanism 3, the magnetic suction mechanism performs magnetic suction on the magnetic nail polish on the surface of the artificial nails to form the required pattern or effect. Subsequently, the curing mechanism 323 cures the magnetized artificial nails through the light-transmitting part 331 on the light-shielding plate 33 to ensure that the effect is lasting and stable. Finally, the cured artificial nails are continuously transported forward by the conveyor belt 21 and leave the workbench 1. The whole process is completed during the transportation of the conveyor belt 21, thus solving the problem that the traditional artificial nail magnetic suction device cannot achieve continuous and non-stop treatment, and at the same time greatly improving the production efficiency and economic benefits.

[0040] Further, as a preferred embodiment of the present invention rather than a limitation, the magnetic attracting mechanism includes a hollow shaft motor 321. A cylinder 324 is installed on the rotor of the hollow shaft motor 321. One end of the cylinder 324 is designed to be open. A magnetic member 325 is installed at one end of the cylinder 324. The curing mechanism 323 is arranged inside the cylinder 324. The inner cavity of the cylinder 324 does not contact the curing mechanism 323. The curing mechanism 323 is fixedly connected to a connecting rod 322. One end of the connecting rod 322 passes through the rotor of the hollow shaft motor 321 and is fixedly connected to the box body 31. When the nail tips are conveyed to the lower part of the magnetic attracting and shaping mechanism 3, the hollow shaft motor 321 is started. The hollow shaft motor 321 drives the cylinder 324 installed on its rotor to rotate. A magnetic member 325 is installed at one end of the cylinder 324. The magnetic member 325 rotates to generate a continuously changing magnetic field, and this magnetic field acts on the cat's eye glue (i.e., magnetic nail polish) coated on the surface of the nail tips. The tiny magnetic particles in the cat's eye glue are arranged in the direction of the magnetic field under the action of the magnetic field, forming a unique visual effect. The magnetic attracting time is automatically adjusted according to the conveying speed of the conveyor belt 21 to ensure that each nail tip can obtain sufficient magnetic attracting treatment. After the magnetic attracting is completed, the curing mechanism 323 immediately cures the magnetically attracted nail tips. The curing mechanism 323 is fixedly connected to the connecting rod 322. The connecting rod 322 passes through the rotor of the hollow shaft motor 321 and is fixedly connected to the box body 31, ensuring stable operation during the rotation of the cylinder. The curing mechanism uniformly irradiates the nail tips through the light-transmitting part 331 on the light-shielding plate 331 to ensure that the formed pattern and effect are durable and stable.

[0041] Optionally, in some embodiments, the magnetic member 325 is one or a combination of a permanent magnet and an electromagnet. Using a permanent magnet can simplify the design of the device. The permanent magnet can provide a stable and continuous magnetic field, reducing power consumption. The electromagnet provides greater flexibility because its magnetic field strength can be dynamically adjusted by adjusting the magnitude of the current. Combining the permanent magnet and the electromagnet can, while maintaining the magnetic field stability, achieve dynamic adjustment of the local magnetic field through the electromagnet, further enhancing the versatility and adaptability of the device.

[0042] Optionally, the curing mechanism 323 is one or a combination of an LED UV curing light source, a thermal energy radiation curing source, and an electron beam curing source.

[0043] Further, as a preferred embodiment of the present invention rather than a limitation, the limiting mechanism 22 includes a first L-shaped plate 221. The first L-shaped plate 221 is provided with at least one through groove 222. A first bolt 223 is slidably arranged in the through groove 222. A second L-shaped plate 224 is installed at the bottom of the first L-shaped plate 221. The second L-shaped plate 224 is threadedly connected to the first bolt 223. A slider 226 is arranged on one side of the second L-shaped plate 224. A second bolt 225 is sleeved in the slider 226. Chutes for installing the slider 226 are provided on both sides of the conveyor belt 21. The slider 226 can freely slide in the chutes on both sides of the conveyor belt 21. By rotating the second bolt 225, the second bolt 225 presses the chute to limit the position of the slider 226 in the chute, further limiting the position of the limiting mechanism 22 relative to the conveyor belt 21, thereby enhancing the flexibility and adjustability of the limiting mechanism 22. The position of the first L-shaped plate 221 can be adjusted relative to the second L-shaped plate 224. By tightening the first bolt 223, the position of the first L-shaped plate 221 relative to the second L-shaped plate 224 can be limited, so that the limiting mechanism can be precisely adjusted according to different sizes of nail tips.

[0044] Further, as a preferred embodiment of the present invention rather than a limitation, the lifting mechanism 23 includes a base 233. The base 233 is fixedly connected to a bottom plate 231. A lead screw 232 is sleeved in the bottom plate 231. The lead screw 232 is threadedly connected to the bottom plate 231. One end of the lead screw 232 is rotatably connected to a cross bar 234. At least one positioning rod 235 is sleeved in the bottom plate 231. The positioning rod 235 is slidably connected to the bottom plate 231. One end of the positioning rod 235 is fixedly connected to the cross bar 234. The threaded connection between the lead screw 232 and the bottom plate 231 enables the lifting mechanism to adjust the height of the conveyor belt 21 by rotating the lead screw 232, so as to achieve the best distance between the nail tip and the magnetic adsorption shaping mechanism 3, thereby achieving the best magnetic adsorption effect. The slidable connection between the positioning rod 235 and the bottom plate 231 ensures that the cross bar 234 will not shift or tilt during the up and down movement, maintaining a stable lifting action.

[0045] The present invention also provides a method for using a conveyor belt magnetic adsorption machine, including the following processes:

[0046] The first process: loading, placing the whole version of the wearable armor obtained by spraying and printing on the conveyor belt 21, and the conveyor belt 21 conveys the wearable armor to the bottom of the magnetic shaping mechanism 3. Specifically, according to the size and shape of the wearable armor, adjust the limiting mechanism 22. The specific operation is as follows: adjust the position of the first L-shaped plate 221 so that it is aligned with the edge of the wearable armor. Slide the first bolt 223 in the through groove 222 and tighten it to ensure that the first L-shaped plate 221 is firmly fixed in the required position. The limiting mechanism 22 can effectively limit the lateral movement of the wearable armor during the conveying process. According to the process requirements, adjust the height of the lifting mechanism 23 so that the conveyor belt 21 is at a suitable initial height. The specific operation is as follows: rotate the screw 232 to move the crossbar 234 up and down along the positioning rod 235 until the conveyor belt 21 reaches the required starting height. The whole version of the wearable armor prepared by spraying or printing process is carefully placed on the conveyor belt 21 to ensure that it is located between the limiting mechanisms 22 to avoid deviation. The conveyor belt 21 is started to smoothly convey the wearable armor to the bottom of the magnetic suction shaping mechanism 3.

[0047] The second process: magnetization. The magnetic component 325 magnetizes the magnetic nail polish on the surface of the worn nail, so that the nail polish on the surface of the worn nail forms the desired effect. Specifically, the hollow shaft motor 321 drives the magnetic component 325 to rotate, thereby forming a continuous magnetic field, thereby realizing magnetization of the worn nail. This continuously changing magnetic field can affect the cat's eye glue coated on the surface of the worn nail, also known as magnetic nail polish, so that the tiny magnetic particles contained therein are arranged in the direction of the magnetic field to form a unique visual effect. The length of the magnetization time is proportional to the conveying speed of the conveyor belt 21. The control system can automatically adjust the magnetization time according to the set speed to ensure that each piece of worn nail can obtain sufficient magnetization treatment.

[0048] The third step: curing. The wearable armor continues to be transported forward by magnetic attraction. The curing mechanism 323 cures the wearable armor through the light-transmitting portion 331 of the shading plate 33. When the second step is completed, that is, the desired visual effect has been formed on the surface of the wearable armor, the curing mechanism 323 cures the visual effect of the wearable armor. The curing mechanism 323 preferably uses a UV LED curing light source, which is always on. Specifically, the conveyor belt 21 drives the wearable armor to continue to move forward. When the wearable armor passes through the light-transmitting portion 331, the light of the UV LED curing light source irradiates the wearable armor through the light-transmitting portion 331. The length of the irradiation time is proportional to the conveying speed of the conveyor belt 21. During this period, the light of the UV LED curing light source triggers the photoinitiator in the cat's eye glue, prompting the material to undergo a rapid cross-linking reaction and solidify, and finally fixes the unique pattern previously shaped by the magnetic field. After the pattern is cured, it will not be affected by the magnetic field, so as to avoid the wearable armor passing through the magnetic attraction shaping mechanism 3 and being affected by the magnetic field of the magnetic attraction shaping mechanism 3, resulting in changes in the pattern.

[0049] The fourth step: unloading, the conveyor belt 21 conveys the cured wear armor out of the workbench 1 or to the next step.

[0050] Embodiment 1:

[0051] The present invention proposes a conveyor belt magnetic attraction machine, comprising a workbench 1, characterized in that a conveying mechanism 2 is installed on the workbench 1, the conveying mechanism 2 comprises a conveyor belt 21, at least one limiting mechanism 22 is installed on both sides of the conveyor belt 21, and a lifting mechanism 23 is installed at the bottom of the conveyor belt 21, and the lifting mechanism 23 is used to lift the conveyor belt 21;

[0052] A magnetic attraction shaping mechanism 3 is arranged above the conveying mechanism 2, and the magnetic attraction shaping mechanism 3 includes a box body 31, a shading plate 33 is installed at the bottom of the box body 31, and the shading plate 33 is provided with a light-transmitting portion 331. An actuator 32 is installed in the box body 31, and the actuator 32 includes a magnetic attraction mechanism and a curing mechanism 323. A support 4 is installed at the bottom of the magnetic attraction shaping mechanism 3, and the top height of the support 4 is higher than the height of the limiting mechanism 22.

[0053] The conveyor belt magnetic absorption machine is designed to achieve continuous and non-interval magnetic absorption treatment of the wearable nails. During operation, the whole version of the wearable nails prepared by spraying or printing process is placed on the conveyor belt 21, and the limiting mechanism 22 ensures that it maintains the correct position and direction during the conveying process to avoid the wearable nails from being offset, effectively reducing the defective rate caused by offset. The lifting mechanism 23 can lift the conveyor belt 21 and adjust the distance between the wearable nails and the magnetic absorption shaping mechanism 3 to achieve the best magnetic absorption effect. The flexibility of the lifting mechanism 23 enables the equipment to adapt to the wearable nails of different thicknesses and sizes, thereby improving the versatility and adaptability of the equipment. When the wearable nails are conveyed to the bottom of the magnetic absorption shaping mechanism 3, the magnetic absorption mechanism absorbs the magnetic nail polish on the surface of the wearable nails to form the desired pattern or effect. Subsequently, the curing mechanism 323 solidifies the wearable nails that have been magnetized through the light-transmitting portion 331 on the shading plate 33 to ensure that the effect is long-lasting and stable. Finally, the solidified wearable armor is further transported forward by the conveyor belt 21 and leaves the workbench 1. The entire process is completed during the transportation of the conveyor belt 21, thereby solving the problem that the traditional wearable armor magnetic absorption device cannot achieve continuous and uninterrupted processing, and at the same time greatly improves production efficiency and economic benefits.

[0054] The magnetic attraction mechanism includes a hollow shaft motor 321. A cylinder 324 is installed on the rotor of the hollow shaft motor 321. One end of the cylinder 324 is designed to be open. A magnetic part 325 is installed at one end of the cylinder 324. The curing mechanism 323 is arranged inside the cylinder 324, and the inner cavity of the cylinder 324 does not contact the curing mechanism 323. The curing mechanism 323 is fixedly connected to a connecting rod 322. One end of the connecting rod 322 passes through the rotor of the hollow shaft motor 321 and is fixedly connected to the box body 31. When the nail sticker is conveyed to the lower part of the magnetic attraction and shaping mechanism 3, the hollow shaft motor 321 is started. The hollow shaft motor 321 drives the cylinder 324 installed on its rotor to rotate. A magnetic part 325 is installed at one end of the cylinder 324. The magnetic part 325 rotates to generate a continuously changing magnetic field, and this magnetic field acts on the cat's eye glue (i.e., magnetic nail polish) coated on the surface of the nail sticker. The tiny magnetic particles in the cat's eye glue are arranged in the direction of the magnetic field under the action of the magnetic field, forming a unique visual effect. The magnetic attraction time is automatically adjusted according to the conveying speed of the conveyor belt 21 to ensure that each nail sticker can obtain sufficient magnetic attraction treatment. After the magnetic attraction is completed, the curing mechanism 323 immediately cures the magnetized nail sticker. The curing mechanism 323 is fixedly connected to the connecting rod 322. The connecting rod 322 passes through the rotor of the hollow shaft motor 321 and is fixedly connected to the box body 31, ensuring stable operation during the rotation of the cylinder. The curing mechanism uniformly irradiates the nail sticker through the light-transmitting part 331 on the light-shielding plate 33 to ensure that the formed pattern and effect are durable and stable. The magnetic part 325 is a permanent magnet or an electromagnet. Using a permanent magnet can simplify the design of the equipment. The permanent magnet can provide a stable and continuous magnetic field, reducing power consumption. The curing mechanism 323 is an LED UV curing light source.

[0055] The limiting mechanism 22 includes a first L-shaped plate 221. At least one through groove 222 is formed in the first L-shaped plate 221. A first bolt 223 is slidably arranged in the through groove 222. A second L-shaped plate 224 is installed at the bottom of the first L-shaped plate 221. The second L-shaped plate 224 is threadedly connected to the first bolt 223. A slider 226 is arranged on one side of the second L-shaped plate 224. A second bolt 225 is sleeved inside the slider 226. Chutes for installing the slider 226 are formed on both sides of the conveyor belt 21. The slider 226 can freely slide in the chutes on both sides of the conveyor belt 21. By rotating the second bolt 225, the second bolt 225 presses the chute to limit the position of the slider 226 in the chute, further limiting the position of the limiting mechanism 22 relative to the conveyor belt 21, thereby enhancing the flexibility and adjustability of the limiting mechanism 22. The position of the first L-shaped plate 221 can be adjusted relative to the second L-shaped plate 224. By tightening the first bolt 223, the position of the first L-shaped plate 221 relative to the second L-shaped plate 224 can be limited, enabling the limiting mechanism to be precisely adjusted according to nail stickers of different sizes.

[0056] The lifting mechanism 23 includes a base 233. The base 233 is fixedly connected to a bottom plate 231. A lead screw 232 is sleeved inside the bottom plate 231. The lead screw 232 is threadedly connected to the bottom plate 231. One end of the lead screw 232 is rotatably connected to a cross bar 234. At least one positioning rod 235 is sleeved inside the bottom plate 231. The positioning rod 235 is slidably connected to the bottom plate 231. One end of the positioning rod 235 is fixedly connected to the cross bar 234. The threaded connection between the lead screw 232 and the bottom plate 231 enables the lifting mechanism to adjust the height of the conveyor belt 21 by rotating the lead screw 232, so as to achieve the optimal distance between the nail wear and the magnetic adsorption shaping mechanism 3, thereby achieving the optimal magnetic adsorption effect. The slidable connection between the positioning rod 235 and the bottom plate 231 ensures that the cross bar 234 will not shift or tilt during the up and down movement, maintaining a stable lifting action.

[0057] In addition, this embodiment also provides a method for using a conveyor belt magnetic adsorption machine, including the following processes:

[0058] The first process: Loading. Place the whole plate of nail wears obtained by spraying or printing onto the conveyor belt 21. The conveyor belt 21 transports the nail wears to the lower part of the magnetic adsorption shaping mechanism 3. Specifically, according to the size and shape of the nail wears, adjust the limiting mechanism 22. The specific operation is as follows: Adjust the position of the first L-shaped plate 221 to align it with the edge of the nail wear. Move the first bolt 223 through the through slot 222 and tighten it to ensure that the first L-shaped plate 221 is firmly fixed at the required position. The limiting mechanism 22 can effectively limit the lateral movement of the nail wears during transportation. According to the process requirements, adjust the height of the lifting mechanism 23 to make the conveyor belt 21 at a suitable initial height. The specific operation is as follows: Rotate the lead screw 232 to move the cross bar 234 up and down along the positioning rod 235 until the conveyor belt 21 reaches the required starting height. Carefully place the whole plate of nail wears prepared by spraying or printing process on the conveyor belt 21, ensure that it is located between the limiting mechanisms 22 and avoid deviation. Start the conveyor belt 21 to smoothly transport the nail wears to the lower part of the magnetic adsorption shaping mechanism 3.

[0059] Second process: Magnetic attraction. The magnetic part 325 attracts the magnetic nail polish on the surface of the artificial nail, enabling the nail polish on the surface of the artificial nail to form the desired effect. Specifically, the hollow shaft motor 321 drives the magnetic part 325 to rotate, thereby generating a continuous magnetic field, and thus realizing the magnetic attraction of the artificial nail. This continuously changing magnetic field can affect the cat's eye glue coated on the surface of the artificial nail, also known as magnetic nail polish, causing the tiny magnetic particles contained therein to align in the direction of the magnetic field, forming a unique visual effect. The length of the magnetic attraction time is proportional to the conveying speed of the conveyor belt 21. The control system can automatically adjust the magnetic attraction time according to the set speed to ensure that each artificial nail can obtain sufficient magnetic attraction treatment.

[0060] Third process: Curing. The artificial nail after magnetic attraction continues to be conveyed forward. The curing mechanism 323 cures the effect of the artificial nail with the desired effect through the light-transmitting part 331 of the light-shielding plate 33. When the second process is completed, that is, after the desired visual effect has been formed on the surface of the artificial nail, the curing mechanism 323 cures the visual effect of the artificial nail. The curing mechanism 323 preferably uses a UV LED curing light source, which is in a constantly lit state. Specifically, the conveyor belt 21 drives the artificial nail to continue moving forward. When the artificial nail passes through the light-transmitting part 331, the light of the UV LED curing light source irradiates the artificial nail through the light-transmitting part 331. The length of the irradiation time is proportional to the conveying speed of the conveyor belt 21. During this period, the light of the UV LED curing light source triggers the photoinitiator in the cat's eye glue, prompting the material to quickly undergo a cross-linking reaction and cure, finally fixing the unique pattern previously shaped by the magnetic field. After the pattern is cured, it will not be affected by the magnetic field, avoiding the pattern from changing due to the influence of the magnetic field of the magnetic shaping mechanism 3 after the artificial nail passes through the magnetic shaping mechanism 3.

[0061] Fourth process: Unloading. The conveyor belt 21 conveys the artificial nail that has been cured out of the workbench 1 or conveys it to the next process.

[0062] The implementation manner of the second embodiment is as follows:

[0063] The difference between the second embodiment and the first embodiment is that the light-shielding plate 33 is provided with a through hole 332, the side wall of the light-shielding plate 33 is provided with a slot 333, and a baffle 334 is arranged in the slot 333. The baffle 334 is slidably connected to the slot 333. According to the specific design requirements of the artificial nail, the operator or the automated system adjusts the position of the baffle 334 on the light-shielding plate 33. The baffle 334 slides in the slot 333 until the desired light-shielding position is reached. By adjusting the position of the baffle 334, the irradiation area of the curing light source can be precisely controlled to ensure that the light only acts on the part that needs to be cured, avoiding unnecessary influence on other areas.

[0064] Specifically, the working principle of the present invention is as follows:

[0065] At the beginning of the work, the whole plate of nail tips prepared by spraying or printing process is placed on the conveyor belt 21. The limiting mechanism 22 ensures that the nail tips maintain the correct position and orientation during transportation to avoid deviation. In specific operations, the first L-shaped plate 221 is finely adjusted by the first bolt 223 in the through slot 222, and its position is fixed by the second L-shaped plate 224. The slider 226 is installed in the sliding grooves on both sides of the conveyor belt 21, and the position of the slider 226 is limited by pressing the sliding groove with the second bolt 225, further enhancing the flexibility and adjustability of the limiting mechanism 22. This can ensure that each nail tip can accurately enter the magnetic attraction area, effectively reducing the defective rate caused by deviation. The lifting mechanism 23 adjusts the height of the conveyor belt 21 as needed to make the distance between the nail tips and the magnetic attraction and shaping mechanism 3 reach the best effect. The lifting mechanism 23 realizes the height adjustment of the bottom plate 231 by rotating the lead screw 232. The lead screw 232 is threadedly connected to the bottom plate 231, making the lifting action accurate and stable. The positioning rod 235 is slidably connected to the bottom plate 231 to ensure that the cross bar 234 does not deviate or tilt during the up and down movement, maintaining a stable lifting action.

[0066] When the nail tips are transported to the lower part of the magnetic attraction and shaping mechanism 3, the hollow shaft motor 321 drives the cylinder body 324 and the magnetic parts 325 thereon to rotate, generating a continuously changing magnetic field. This magnetic field acts on the cat's eye glue (i.e., magnetic nail polish) coated on the surface of the nail tips, causing the tiny magnetic particles therein to be arranged in the direction of the magnetic field, forming a unique visual effect. The magnetic attraction time is automatically adjusted according to the conveying speed of the conveyor belt 21 to ensure that each nail tip can obtain sufficient magnetic attraction treatment.

[0067] After the magnetic attraction is completed, the curing mechanism 323 immediately cures the magnetized nail tips. The curing mechanism 323 is an LED UV curing light source, fixedly connected to the connecting rod 322. The connecting rod 322 passes through the rotor of the hollow shaft motor 321 and is fixedly connected to the box body 31, ensuring stable operation during the rotation of the cylinder body. The light-transmitting part 331 on the light-shielding plate 33 allows the curing light source to evenly irradiate the surface of the nail tips, ensuring that the formed pattern and effect are lasting and stable. The cured nail tips continue to be transported forward by the conveyor belt 21 and finally leave the workbench 1, completing the entire processing process. The whole process is completed during the continuous transportation of the conveyor belt 21, thus solving the problem that the traditional nail tip magnetic attraction device cannot achieve continuous and non-stop processing, and greatly improving the production efficiency and economic benefits.

[0068] In summary, the present invention solves the problem that the traditional nail tip magnetic attraction device cannot magnetize the nail tips without interruption.

[0069] It should be understood that in the present invention, terms such as "first" and "second" are used to describe various information, but such information should not be limited to these terms. These terms are only used to distinguish information of the same type from each other. For example, without departing from the scope of the present invention, "first" information may also be referred to as "second" information, and similarly, "second" information may also be referred to as "first" information. In addition, the orientation or positional relationship indicated by terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the present invention.

[0070] The above is the preferred embodiment 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 modifications can be made, and these improvements and modifications are also regarded as the protection scope of the present invention.

Claims

1. A conveyor belt magnetic suction machine method, comprising a workbench (1), characterized in that, A conveying mechanism (2) is installed on the workbench (1). The conveying mechanism (2) includes a conveyor belt (21). At least one limiting mechanism (22) is installed on both sides of the conveyor belt (21). A lifting mechanism (23) is installed at the bottom of the conveyor belt (21), and the lifting mechanism (23) is used to lift the conveyor belt (21). A magnetic absorption and shaping mechanism (3) is arranged above the conveying mechanism (2). The magnetic absorption and shaping mechanism (3) includes a box body (31). A light shielding plate (33) is installed at the bottom of the box body (31). The light shielding plate (33) is provided with a light transmission part (331). An execution mechanism (32) is installed in the box body (31). The execution mechanism (32) includes a magnetic absorption mechanism and a curing mechanism (323).

2. The magnetic conveyor according to claim 1, characterized in that, The magnetic absorption mechanism includes a hollow shaft motor (321). A cylinder body (324) is installed on the rotor of the hollow shaft motor (321). One end of the cylinder body (324) is designed to be open. A magnetic part (325) is installed at one end of the cylinder body (324). The curing mechanism (323) is arranged in the cylinder body (324). The inner cavity of the cylinder body (324) does not contact the curing mechanism (323). The curing mechanism (323) is fixedly connected with a connecting rod (322). One end of the connecting rod (322) passes through the rotor of the hollow shaft motor (321) and is fixedly connected with the box body (31).

3. The magnetic conveyor according to claim 1, characterized in that, The magnetic part (325) is one or a combination of a permanent magnet and an electromagnet.

4. A conveyor belt magnetic absorber according to claim 1, wherein, The curing mechanism (323) is one or a combination of an LEDUV curing light source, a thermal energy radiation curing source, and an electron beam curing source.

5. The magnetic conveyor according to claim 1, characterized in that, The limiting mechanism (22) includes a first L-shaped plate (221). At least one through groove (222) is formed in the first L-shaped plate (221). A first bolt (223) is slidably arranged in the through groove (222). A second L-shaped plate (224) is installed at the bottom of the first L-shaped plate (221). The second L-shaped plate (224) is threadedly connected with the first bolt (223). A slider (226) is arranged on one side of the second L-shaped plate (224). A second bolt (225) is sleeved in the slider (226). Chutes for installing the sliders (226) are formed on both sides of the conveyor belt (21).

6. The magnetic conveyor according to claim 1, characterized in that, The lifting mechanism (23) includes a base (233). The base (233) is fixedly connected with a bottom plate (231). A lead screw (232) is sleeved in the bottom plate (231). The lead screw (232) is threadedly connected with the bottom plate (231). One end of the lead screw (232) is rotatably connected with a cross bar (234). At least one positioning rod (235) is sleeved in the bottom plate (231). The positioning rod (235) is slidably connected with the bottom plate (231). One end of the positioning rod (235) is fixedly connected with the cross bar (234).

7. The magnetic conveyor according to claim 1, wherein A support (4) is installed at the bottom of the magnetic absorption and shaping mechanism (3). The height of the top of the support (4) is higher than the height of the limiting mechanism (22).

8. A processing method of a conveyor magnet absorber according to any one of claims 1-7, characterized in that: Including the following processes: The first step: loading the material, placing the whole plate of wearable armor obtained by spraying and printing on the conveyor belt (21), and the conveyor belt (21) transports the wearable armor to the bottom of the magnetic suction shaping mechanism (3); The second step: magnetization, the magnetic element (325) magnetizes the magnetic nail polish on the surface of the worn nail, so that the nail polish on the surface of the worn nail forms a desired effect; The third step: curing, the wearable armor that is magnetically attracted is continuously transported forward, and the curing mechanism (323) cures the wearable armor that has formed the effect through the light-transmitting portion (331) of the light shielding plate (33); The fourth step: unloading, the conveyor belt (21) conveys the cured wear armor out of the workbench (1) or to the next step.

9. A conveyor belt magnetic absorber and its processing method according to claim 8, characterized in that, The second process also includes the following steps: The hollow shaft motor (321) drives the magnetic part (325) to rotate, thereby forming a continuous magnetic field, thereby achieving magnetization of the worn nails. This continuously changing magnetic field can affect the cat's eye glue, also known as magnetic nail polish, coated on the surface of the worn nails, so that the tiny magnetic particles contained therein are arranged in the direction of the magnetic field, forming a unique visual effect. The length of the magnetization time is proportional to the conveying speed of the conveyor belt (21).

10. A conveyor belt magnetic absorber and its processing method according to claim 8, characterized in that, The third process also includes the following steps: When the second process is completed, that is, the desired visual effect has been formed on the surface of the wearable armor, the curing mechanism (323) cures the visual effect of the wearable armor. The curing mechanism (323) is preferably a UV LED curing light source, which is always on. Specifically, the conveyor belt (21) drives the wearable armor to continue to move forward. When the wearable armor passes through the light-transmitting portion (331), the light of the UV LED curing light source is irradiated on the wearable armor through the light-transmitting portion (331). The length of the irradiation time is proportional to the conveying speed of the conveyor belt (21). During this period, the light of the UV LED curing light source triggers the photoinitiator in the cat's eye glue, prompting the material to undergo a rapid cross-linking reaction and solidify, and finally fixes the unique pattern previously formed by the magnetic field. After the pattern is cured, it will not be affected by the magnetic field, thereby avoiding the wearable armor being affected by the magnetic field of the magnetic shaping mechanism (3) after passing through the magnetic shaping mechanism (3), resulting in changes in the pattern.