Wearable armor magnetic attraction mechanism
By designing a wearable magnetic attraction mechanism, the hollow shaft and magnet mechanism are used to precisely control the magnetic field and curing energy, solving the problems of traditional magnetic attraction machines being unable to be customized individually and uneven curing. This enables personalized customization and uniform curing, improving production flexibility and product quality.
Patent Information
- Application Number
- CN202423173055.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-20
AI Technical Summary
Traditional magnetic magnets cannot be customized, have uneven curing, and lack flexibility, making it difficult to meet consumers' needs for different locations, styles, or special designs.
A wearable armor magnetic attraction mechanism is adopted, including a hollow shaft and a magnet mechanism and a curing mechanism installed at its end. By precisely controlling the concentrated use of the magnetic field and curing energy, personalized customization and uniform curing can be achieved.
It achieves precise and efficient personalized customization and uniform curing effect, improves production flexibility, reduces material waste, and enhances the product's special magnetic effect and advanced anti-counterfeiting features.
Smart Images

Figure CN223667471U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wear and tear nail processing technical field especially, a kind of wear and tear nail magnetic attraction mechanism. BACKGROUND
[0002] People on the nail or wear and tear nail piece surface after applying cat eye glue, swing magnet rod can use magnetic force to cat eye glue magnetic attraction, produce cat eye effect, and solidify through phototherapy lamp, realize cat eye effect production, this is the origin of hand-made cat eye wear and tear nail.
[0003] After mechanization production, cat eye magnetic attraction machine is gradually appeared through the spraying or printing of whole wear and tear nail strip, and is placed to be magnetized, and cat eye effect also comes out, this process is already very mature, but there is a shortcoming, wear and tear nail is 4-50 not equal to spray, there are multiple wear and tear nails on a wear and tear nail strip, the existing magnetic attraction machine usually simultaneously carries out magnetic attraction operation to all single wear and tear nails on whole wear and tear nail, which means that the effect of each wear and tear nail is consistent, it is difficult to meet the needs of consumers for different positions, different styles or special design;Since whole wear and tear nail is simultaneously solidified, it can cause the solidification effect of some areas to be not as good as other areas, especially at wear and tear nail strip edge or corner, which can affect the final appearance quality and service life;Once whole wear and tear nail is fixed, if the position of a wear and tear nail needs to be adjusted or the effect of a wear and tear nail needs to be re-produced, the whole process must be started again, which increases cost and time consumption.
[0004] The utility model aims at solving the problems of traditional magnetic attraction machine, such as unable to customize individually, uneven solidification and poor flexibility. UTILITY MODEL CONTENTS
[0005] The utility model discloses a kind of wear and tear nail magnetic attraction mechanisms, which aims at solving the problems of traditional magnetic attraction machine, such as unable to customize individually, uneven solidification and poor flexibility, and adopts the following technical solutions:
[0006] A wear and tear nail magnetic attraction mechanism includes a hollow shaft, one end of the hollow shaft is provided with a matching part, and the matching part is provided with at least one magnet mechanism.
[0007] As described above, the wear and tear nail magnetic attraction mechanism includes a hollow shaft, one end of the hollow shaft is provided with a matching part, and the matching part is provided with at least one magnet mechanism.
[0008] The shielding piece is provided with a through hole for allowing the energy emitted by the solidifying mechanism to pass through.
[0009] The magnet mechanism comprises a magnet block, one side of the magnet block is provided with a positioning hole, a sidewall of the fitting piece is provided with a first threaded hole, when the magnet mechanism is installed in the magnet installation slot, the first threaded hole is in communication with the positioning hole, a limiting bolt is sleeved in the first threaded hole, and the limiting bolt is in threaded connection with the first threaded hole.
[0010] The magnet block is provided with a clamping block, one side of the magnet installation slot is provided with a clamping groove matched with the clamping block, and the other side of the magnet installation slot is provided with a groove.
[0011] The hollow shaft is sleeved with a hollow shaft motor, the hollow shaft is a rotating shaft of the hollow shaft motor, and the solidifying mechanism is sleeved with a bearing.
[0012] The hollow shaft motor is sleeved with a shell, the shell is provided with a positioning block, and one side of the positioning block is fixedly installed with the solidifying mechanism.
[0013] The fitting piece is provided with a limiting groove, a top view shape of the limiting groove is matched with a top view shape of the shielding piece, and the shielding piece is installed in the limiting groove.
[0014] The solidifying mechanism is one or a combination of UV LED solidifying lamp sources, thermal energy radiation solidifying sources and electron beam solidifying sources.
[0015] The magnet block is one or a combination of electromagnets, rare earth magnets, ferrite, rubber magnets and neodymium iron boron magnets.
[0016] The embodiment of the present application has the following beneficial effects:
[0017] 1. In the utility model, the magnet mechanism is installed at one end of the hollow shaft, the generated magnetic field mainly acts on the wearing armor which is aligned at one end of the hollow shaft, and the magnet mechanism and the solidification mechanism installed in the hollow shaft are used in cooperation to enable the high concentration of the magnetic field and the solidification energy, and other wearing armors are not affected, so that the precise and efficient personalized customization and uniform solidification effect are realized, and the magnetic attraction mechanism is also used in the printing, spraying and other industries, so that the processed products have special magnetic effect and high anti-counterfeiting property.
[0018] 2. In the utility model, the replacement process of the magnet block is simple and convenient, and the limiting or releasing of the magnet block in the magnet installation groove is realized through the elastic limiting bolt.
[0019] In summary, the utility model solves the problems of the traditional magnetic attraction machine, such as being unable to be customized alone, uneven solidification and poor flexibility. ACCURACY
[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiment description will be briefly introduced, and obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0021] Figure 1 is an explosion view of the wearing armor magnetic attraction mechanism of the utility model.
[0022] Figure 2 is a whole structure schematic view of the wearing armor magnetic attraction mechanism of the utility model.
[0023] Figure 3 is a structure schematic view of another angle of the wearing armor magnetic attraction mechanism of the utility model.
[0024] Figure 4 is a structure schematic view of the cooperating piece of the wearing armor magnetic attraction mechanism of the utility model.
[0025] Figure 5 is a structure schematic view of another angle of the cooperating piece of the wearing armor magnetic attraction mechanism of the utility model.
[0026] Figure 6 is a structure schematic view of the magnet mechanism of the wearing armor magnetic attraction mechanism of the utility model.
[0027] Figure 7 is a structure schematic view of the cooperating piece in the second embodiment.
[0028] Figure 8 is an installation relationship schematic view of the cooperating piece and the long strip light shielding sheet in the second embodiment.
[0029] As shown in the drawing:
[0030] 1, hollow shaft; 2, hollow shaft motor; 3, connecting piece; 4, shielding piece; 41, through hole; 5, fitting piece; 51, limiting groove; 52, first threaded hole; 53, through groove; 54, clamping groove; 55, magnet mounting groove; 56, recess; 6, magnet mechanism; 61, magnet block; 62, clamping block; 63, positioning hole; 7, limiting bolt; 8, bearing; 9, solidification mechanism; 10, positioning block; 11, shell; 12, long shielding piece; 13, insertion slot; 14, second threaded hole. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0032] For example, Figures 1 to 8As shown, the utility model provides a kind of wear shell magnetism suction mechanism, including hollow shaft 1, the one end of hollow shaft 1 is equipped with cooperation piece 5, cooperation piece 5 is equipped with at least one magnet mechanism 6, the magnet mechanism 6 is used to exert the magnetic field of forming effect to wear shell, solidification mechanism 9 is installed in the hollow shaft 1, the effect of wear shell is solidified by solidification mechanism 9, and the solidification mechanism 9 is the combination of one or more of UV LED solidification lamp source, thermal energy radiation solidification source, electron beam solidification source, preferably the solidification mechanism 9 is the combination of one or more of UV LED solidification lamp source, thermal energy radiation solidification source, electron beam solidification source.Hollow shaft 1 is the basic frame of entire structure, it not only provides support effect, and its internal space is used to accommodate solidification mechanism 9, to save installation space while making the energy emitted by solidification mechanism 9 can only be emitted from the one end of hollow shaft 1, cannot energy diffusion to other places, ensure the concentrated use of energy, will not affect the wear shell except the wear shell of hollow shaft 1 to live.The magnetic field generated by magnet mechanism 6 acts on cat eye glue on wear shell, and magnetic particles are arranged according to predetermined direction, form unique cat eye effect, after the completion of the magnetism suction operation of wear shell by magnet mechanism 6, solidification mechanism 9 installed in the inside of hollow shaft 1 is started to the wear shell of the completion of the magnetism suction and effect solidification, magnet mechanism 6 is installed in the one end of hollow shaft 1, and the magnetic field generated is mainly used to the wear shell of the alignment of the one end of hollow shaft 1, and the solidification mechanism 9 is used to enable the high concentration of magnetic field and solidification energy, to realize accurate and efficient personalized customization and uniform solidification effect.Specifically, the magnetism suction mechanism is installed on multi-shaft sliding table, further to be handled wear shell is placed in suitable position, ensure that the surface of each wear shell has been coated with cat eye glue containing magnetic particles.The magnetism suction mechanism is installed on multi-shaft sliding table, can be moved by programming or manually control sliding table, and hollow shaft 1 is accurately moved to the first wear shell to be handled, and the magnetic field generated by magnet mechanism 6 acts on cat eye glue on wear shell, and magnetic particles are arranged according to predetermined direction, form unique cat eye effect.After the completion of the magnetism suction operation of wear shell by magnet mechanism 6, solidification mechanism 9 installed in the inside of hollow shaft 1 is started, for example, when solidification mechanism 9 is UV LED solidification lamp source, the light emitted by UV LED solidification lamp source is irradiated to wear shell through the one end of hollow shaft 1 to make the effect of its surface solidification.After the completion of the magnetism and solidification of the first wear shell, hollow shaft 1 is moved to the next wear shell position by multi-shaft sliding table, and the above steps are repeated.The position of magnetism suction mechanism can be adjusted as required to meet the customization needs of different positions and styles.If the effect of a certain wear shell is not ideal during the process, it will not affect other wear shells, improve the flexibility of production while reducing unnecessary material waste.The concentrated use of the energy of solidification mechanism 9 improves the solidification efficiency and uniformity of single wear shell.
[0033] Further, as the preferred embodiment of the present application but not limited, one end of the hollow shaft 1 is provided with a connecting piece 3 matched with a fitting piece 5, the connecting piece 3 is an inner core, the fitting piece 5 is an outer sleeve, the fitting piece 5 is sleeved outside the connecting piece 3, the fitting piece 5 and the connecting piece 3 are both provided with a through slot 53, the magnet mechanism 6 includes at least one magnet block 61, the fitting piece 5 is installed with a shielding piece 4 for light shielding. The shielding piece 4 is provided with a through hole 41 for allowing the energy emitted by the curing mechanism 9 to pass through. The connecting piece 3 is an inner core structure, which provides a stable connection basis and ensures that the fitting piece 5 can be firmly sleeved outside. The fitting piece 5 is an outer sleeve structure, which is sleeved outside the connecting piece 3. Through this inner and outer sleeving mode, the stability and compactness of the structure are ensured. The through slot 53 is used for allowing the energy emitted by the curing mechanism 9 to pass through. The magnet block 61 is used for generating a magnetic field to perform magnetic attraction treatment on the cat eye glue on the wearing nail. The shielding piece 4 is provided with a through hole 41, the position and size of the through hole 41 correspond to the direction of the energy emitted by the curing mechanism 9, which ensures that the energy can directly act on the wearing nail through the through hole 41, prevents the energy emitted by the curing mechanism 9 from diffusing to other areas, and further makes the energy highly concentrated and achieves uniform curing effect.
[0034] Optionally, in some embodiments, the connecting piece 3 is an outer sleeve, and the fitting piece 5 is an inner core.
[0035] Further, as the preferred embodiment of the present application but not limited, the bottom of the fitting piece 5 is provided with at least one magnet installation slot 55, the magnet mechanism 6 is installed in the magnet installation slot 55, the magnet mechanism 6 includes a magnet block 61, one side of the magnet block 61 is provided with a positioning hole 63, the sidewall of the fitting piece 5 is provided with a first threaded hole 52, when the magnet mechanism 6 is installed in the magnet installation slot 55, the first threaded hole 52 is in communication with the positioning hole 63, a limiting bolt 7 is sleeved in the first threaded hole 52, and the limiting bolt 7 is in threaded connection with the first threaded hole 52. The magnet mechanism 6 is installed in the magnet installation slot 55, which can further save installation space. By tightening the limiting bolt 7, the magnet block 61 can be firmly fixed in the magnet installation slot 55, preventing it from moving or loosening during operation. Specifically, the limiting bolt 7 is moved in the direction of the positioning hole 63 until it enters the positioning hole 63 and presses the magnet block 61, so as to limit the magnet block 61 in the magnet installation slot 55, avoiding the magnet block 61 from being taken out of the magnet installation slot 55 during work. When it is necessary to replace the magnet block 61, the limiting bolt 7 is loosened, the old magnet block 61 is taken out, then the new magnet block 61 is put into the magnet installation slot 55, re-aligned with the positioning hole 63, and the limiting bolt 7 is tightened again to complete the replacement. The replacement process is simple and convenient.
[0036] Further, as a preferred embodiment of the present application but not limited, the magnet block 61 is one or a combination of electromagnet, rare earth magnet, ferrite, rubber magnet, and neodymium iron boron magnet
[0037] Optionally, in some embodiments, the magnet block 61 is an electromagnet. By adjusting the current size flowing through the electromagnet, the strength of the magnetic field can be accurately controlled, so that the magnetic field strength can be flexibly adjusted according to the needs and design of different wearing nails, thereby realizing more diversified cat-eye effects. The direction of the magnetic field of the electromagnet can be adjusted by changing the direction of the current, which provides the possibility of creating more complex and unique patterns. The electromagnet can be controlled by an electric circuit to turn on or off the magnetic field, with the ability to control instantly, which can improve the accurate control of the magnetic absorption time of the wearing nail.
[0038] Further, as a preferred embodiment of the present application but not limited, one side of the magnet block 61 is provided with a clamping block 62, one side of the magnet mounting groove 55 is provided with a clamping groove 54 matched with the clamping block 62, and the other side of the magnet mounting groove 55 is provided with a recess 56. The cooperation of the clamping block 62 and the clamping groove 54 can provide the installation direction guidance for the magnet block 61, and at the same time, the cooperation of the clamping block 62 and the clamping groove 54 can provide additional mechanical locking to ensure that the electromagnet 61 will not loosen or shift during operation. By inserting the clamping block 62 into the clamping groove 54, the preliminary positioning of the electromagnet 61 can be quickly completed. Subsequently, only the limiting bolt 7 needs to be tightened to complete the final fixation, greatly shortening the installation time. The recess 56 can provide a force point for the worker when removing the magnet block 61, thereby facilitating the worker to remove the magnet block 61 from the magnet mounting groove 55.
[0039] Optionally, in some embodiments, the side wall of the matching piece 5 is provided with a insertion slot 13, the insertion slot 13 is in communication with the through slot 53 of the matching piece 5, a matched long strip shielding piece 12 is arranged in the insertion slot 13, the long strip shielding piece 12 is in sliding connection with the insertion slot 13, and a second threaded hole 14 is formed in the bottom of the matching piece 5 and in communication with the insertion slot 13. The plug-in and pull-out design of the long strip shielding piece 12 and the insertion slot 13 can realize the installation and removal of the long strip shielding piece 12. Specifically, when it is necessary to install the long strip shielding piece 12, the long strip shielding piece 12 is aligned with the insertion slot 13 and inserted until resistance is received, and then a bolt of corresponding specification is screwed into the second threaded hole 14, one end of the bolt approaches the long strip shielding piece 12, until the long strip shielding piece 12 is pressed, at this time the long strip shielding piece 12 cannot be easily taken out from the insertion slot 13, when it is necessary to remove the long strip shielding piece 12, the bolt previously screwed into the second threaded hole 14 is loosened and taken out, so as to release the pressing force of the bolt on the long strip shielding piece 12, so that the long strip shielding piece 12 is no longer fixed in the insertion slot 13, at this time only appropriate pulling force is needed to easily pull out the long strip shielding piece 12 from the insertion slot 13.
[0040] Further, as a preferred embodiment of the present application but not limited, the hollow shaft 1 is sleeved with a hollow shaft motor 2, the hollow shaft 1 is the rotating shaft of the hollow shaft motor 2, the solidification mechanism 9 is sleeved with a bearing 8, the bearing 8 is installed in the hollow shaft 1. The hollow shaft motor 2 drives the hollow shaft 1 to rotate, so as to drive the cooperating part 5 and the electromagnet 61 thereon to rotate, thereby generating a continuous and uniform magnetic field. The bearing 8 can improve the stability and reliability of the solidification mechanism 9 when the hollow shaft 1 rotates. Due to the presence of the bearing 8, the solidification mechanism 9 will not rotate when the hollow shaft 1 rotates.
[0041] Further, as a preferred embodiment of the present application but not limited, the hollow shaft motor 2 is sleeved with a shell 11, the shell 11 is installed with a positioning block 10, one side of the positioning block 10 is fixedly installed with the solidification mechanism 9. The shell 11 can provide physical protection for the internal hollow shaft motor 2 and other components, prevent dust, moisture and other external factors from affecting the internal components, prolong the service life of the equipment, and also play a certain sound insulation effect to reduce the noise generated when the motor operates. The positioning block 10 is installed on the shell 11, and one side of the positioning block 10 is fixedly installed with the solidification mechanism 9, so as to prevent the solidification mechanism 9 from rotating.
[0042] Further, as a preferred embodiment of the present application but not limited, the cooperating part 5 is provided with a limiting groove 51, the limiting groove 51 has a top view shape matched with that of the shielding piece 4, and the shielding piece 4 is installed in the limiting groove 51. The shielding piece 4 is installed in the limiting groove 51, which can improve the stability of the shielding piece 4 and ensure its accurate positioning during operation, avoiding the shielding piece 4 from deviating.
[0043] The embodiment of the present application is as follows:
[0044] A wearing shell magnetism mechanism, comprising a hollow shaft 1, one end of the hollow shaft 1 is provided with a matching part 5, the matching part 5 is provided with at least one magnet mechanism 6, the magnet mechanism 6 is used for applying a magnetic field to the wearing shell to form an effect, a curing mechanism 9 is installed in the hollow shaft 1, the curing mechanism 9 is used for curing the effect of the wearing shell, the curing mechanism 9 is a combination of one or more of UV LED curing lamp source, thermal energy radiation curing source, electron beam curing source, preferably the curing mechanism 9 is a combination of one or more of UV LED curing lamp source, thermal energy radiation curing source, electron beam curing source. The hollow shaft 1 is the basic frame of the whole structure, which not only provides support, but also uses the internal space to accommodate the curing mechanism 9, thereby saving installation space, at the same time, the energy emitted by the curing mechanism 9 can only be emitted from one end of the hollow shaft 1, and cannot be diffused to other places, thereby ensuring the concentrated use of energy and not affecting the wearing shell except the wearing shell on the hollow shaft 1. The magnetic field generated by the magnet mechanism 6 acts on the cat eye glue on the wearing shell, so that the magnetic particles are arranged in a predetermined direction to form a unique cat eye effect. After the magnet mechanism 6 completes the magnetism operation on the wearing shell, the curing mechanism 9 installed in the hollow shaft 1 is started to cure the wearing shell after the magnetism operation. The magnet mechanism 6 is installed at one end of the hollow shaft 1, and the generated magnetic field mainly acts on the wearing shell aligned at one end of the hollow shaft 1. The cooperation with the curing mechanism 9 can make the magnetic field and the curing energy highly concentrated, thereby realizing precise and efficient personalized customization and uniform curing effect. Specifically, the magnetism mechanism is installed on a multi-axis sliding table, and the wearing shell to be processed is further placed in a suitable position to ensure that the surface of each wearing shell has been coated with cat eye glue containing magnetic particles. The magnetism mechanism is installed on the multi-axis sliding table, and the movement of the sliding table can be controlled by programming or manually. The hollow shaft 1 is accurately moved above the first wearing shell to be processed, and the magnetic field generated by the magnet mechanism 6 acts on the cat eye glue on the wearing shell to arrange the magnetic particles in a predetermined direction to form a unique cat eye effect. After the magnet mechanism 6 completes the magnetism operation on the wearing shell, the curing mechanism 9 installed in the hollow shaft 1 is started, and when the curing mechanism 9 is a UV LED curing lamp source, the light emitted by the UV LED curing lamp source will irradiate the wearing shell through one end of the hollow shaft 1 to cure the effect on the surface of the wearing shell. After completing the magnetism and curing of the first wearing shell, the hollow shaft 1 is moved to the position of the next wearing shell by the multi-axis sliding table, and the above steps are repeated. The position of the magnetism mechanism can be adjusted as needed to meet the customization requirements of different positions and styles. If the effect of a wearing shell is not ideal during the process, it will not affect other wearing shells, thereby improving the flexibility of production and reducing unnecessary material waste. The concentrated use of the energy of the curing mechanism 9 improves the curing efficiency and uniformity of a single wearing shell.
[0045] The hollow shaft 1 is provided with a connecting piece 3 matched with a matching piece 5 at one end, the connecting piece 3 is an inner core, the matching piece 5 is an outer sleeve, the matching piece 5 is sleeved outside the connecting piece 3, the matching piece 5 and the connecting piece 3 are both provided with a through slot 53, the magnet mechanism 6 includes at least one magnet block 61, the matching piece 5 is provided with a shielding piece 4 for light shielding. The shielding piece 4 is provided with a through hole 41, and the through hole 41 is used for allowing the energy emitted by the curing mechanism 9 to pass through. The connecting piece 3 is an inner core structure, which provides a stable connection basis and ensures that the matching piece 5 can be firmly sleeved outside. The matching piece 5 is an outer sleeve structure, which is sleeved outside the connecting piece 3. Through this inner and outer sleeving mode, the stability and compactness of the structure are ensured. The through slot 53 is used for allowing the energy emitted by the curing mechanism 9 to pass through. The magnet block 61 is used for generating a magnetic field to perform magnetic attraction treatment on the cat eye glue on the wearing nail. The shielding piece 4 is provided with a through hole 41, and the position and size of the through hole 41 correspond to the direction of the energy emitted by the curing mechanism 9, which ensures that the energy can pass through the through hole 41 and directly act on the wearing nail, prevents the energy emitted by the curing mechanism 9 from diffusing to other areas, and further concentrates the energy and achieves uniform curing effect. The matching piece 5 is provided with a limiting slot 51, the top view shape of the limiting slot 51 matches the top view shape of the shielding piece 4, and the shielding piece 4 is installed in the limiting slot 51. The shielding piece 4 is installed in the limiting slot 51, which can improve the stability of the shielding piece 4 and ensure accurate positioning during operation, avoiding the shielding piece 4 from deviating.
[0046] The bottom of the matching piece 5 is provided with at least one magnet mounting slot 55, the magnet mechanism 6 is installed in the magnet mounting slot 55, the magnet mechanism 6 includes a magnet block 61, one side of the magnet block 61 is provided with a positioning hole 63, the sidewall of the matching piece 5 is provided with a first threaded hole 52, when the magnet mechanism 6 is installed in the magnet mounting slot 55, the first threaded hole 52 is in communication with the positioning hole 63, a limiting bolt 7 is sleeved in the first threaded hole 52, and the limiting bolt 7 is in threaded connection with the first threaded hole 52. The magnet mechanism 6 is installed in the magnet mounting slot 55, which can further save installation space, and the magnet block 61 can be firmly fixed in the magnet mounting slot 55 by tightening the limiting bolt 7, preventing it from moving or loosening during operation. Specifically, rotating the limiting bolt 7 moves one end of the limiting bolt 7 to the direction of the positioning hole 63 until the limiting bolt 7 enters the positioning hole 63 and presses the magnet block 61, thereby limiting the magnet block 61 in the magnet mounting slot 55, avoiding the magnet block 61 from being taken out of the magnet mounting slot 55 during work. When the magnet block 61 needs to be replaced, only the limiting bolt 7 needs to be loosened, the old magnet block 61 is taken out, then the new magnet block 61 is put into the magnet mounting slot 55, the positioning hole 63 is aligned again, and the limiting bolt 7 is tightened to complete the replacement. The replacement process is simple and convenient.
[0047] The magnet block 61 is an electromagnet. By adjusting the current flowing through the electromagnet, the strength of the magnetic field can be precisely controlled, allowing for flexible adjustment of the magnetic field strength according to different nail wear needs and designs, thereby achieving more diverse cat-eye effects. The direction of the magnetic field of the electromagnet can be adjusted by changing the direction of the current, which provides the possibility of creating more complex and unique patterns. The electromagnet can be controlled by an electric circuit to turn on or off the magnetic field, with the ability to control in real time, which can improve the precise control of the time of the nail wear to be attracted by the magnet.
[0048] One side of the magnet block 61 is provided with a clamping block 62, and one side of the magnet mounting groove 55 is provided with a clamping groove 54 matched with the clamping block 62. The other side of the magnet mounting groove 55 is provided with a groove 56. The cooperation of the clamping block 62 and the clamping groove 54 can provide the installation direction guidance for the magnet block 61, and at the same time, the cooperation of the clamping block 62 and the clamping groove 54 can provide additional mechanical locking to ensure that the electromagnet 61 will not loosen or shift during operation. By inserting the clamping block 62 into the clamping groove 54, the initial positioning of the electromagnet 61 can be quickly completed. Subsequently, only the limiting bolt 7 needs to be tightened to complete the final fixation, greatly shortening the installation time. The groove 56 can provide a force point for the worker when removing the magnet block 61, thereby facilitating the worker to remove the magnet block 61 from the magnet mounting groove 55.
[0049] The hollow shaft 1 is sleeved with a hollow shaft motor 2, the hollow shaft 1 is the rotating shaft of the hollow shaft motor 2, the curing mechanism 9 is sleeved with a bearing 8, and the bearing 8 is installed in the hollow shaft 1. The hollow shaft motor 2 drives the hollow shaft 1 to rotate, thereby driving the cooperating part 5 and the electromagnet 61 thereon to rotate, thereby generating a continuous and uniform magnetic field. The bearing 8 can improve the stability and reliability of the curing mechanism 9 when the hollow shaft 1 rotates. Due to the existence of the bearing 8, the curing mechanism 9 will not rotate when the hollow shaft 1 rotates.
[0050] The hollow shaft motor 2 is sleeved with a shell 11, the shell 11 is installed with a positioning block 10, one side of the positioning block 10 is fixedly installed with the curing mechanism 9. The shell 11 can provide physical protection for the internal hollow shaft motor 2 and other components, prevent dust, moisture and other external factors from affecting the internal components, prolong the service life of the equipment, and also play a certain sound insulation role to reduce the noise generated when the motor operates. The positioning block 10 is installed on the shell 11, and one side of the positioning block 10 is fixedly installed with the curing mechanism 9, thereby preventing the curing mechanism 9 from rotating.
[0051] The implementation of Example Two is as follows:
[0052] The difference between the embodiment two and the embodiment one is that the sidewall of the fitting part 5 is provided with a slot 13, the slot 13 is communicated with the through slot 53 of the fitting part 5, a matched long strip shielding piece 12 is arranged in the slot 13, the long strip shielding piece 12 is slidably connected with the slot 13, and the bottom of the fitting part 5 is provided with a second threaded hole 14, the second threaded hole 14 is communicated with the slot 13. The plug-in and pull-out design of the long strip shielding piece 12 and the slot 13 can realize the installation and removal of the long strip shielding piece 12. Specifically, when the long strip shielding piece 12 needs to be installed, the long strip shielding piece 12 is inserted into the slot 13 in alignment until the resistance is received, and then the bolt of the corresponding specification is screwed into the second threaded hole 14, one end of the bolt approaches the long strip shielding piece 12, until the long strip shielding piece 12 is pressed, at this time, the long strip shielding piece 12 cannot be easily taken out from the slot 13, when the long strip shielding piece 12 needs to be removed, the bolt screwed into the second threaded hole 14 is loosened and taken out, so that the pressing force of the bolt on the long strip shielding piece 12 is released, so that the long strip shielding piece 12 is no longer fixed in the slot 13, at this time, the long strip shielding piece 12 can be easily pulled out of the slot 13 by applying appropriate pulling force.
[0053] Specifically, the working principle of the present application is as follows:
[0054] Firstly, the to-be-processed wearings are placed in appropriate positions, and the magnet suction mechanism moves above the first wearing. The hollow shaft motor 2 is started to rotate the magnet mechanism 6 driven by the hollow shaft 1, so as to generate a continuously changing magnetic field, and the magnetic particles on the wearing are arranged in a predetermined direction to form a unique cat-eye effect.
[0055] After the magnet suction operation on the wearing is completed, the curing mechanism 9 installed in the hollow shaft 1 is started. The curing mechanism 9 is preferably a UV LED curing lamp source, and the light emitted by the curing mechanism 9 directly irradiates the wearing through the through hole 41 of the shielding piece 4, so that the effect on the surface of the wearing is quickly cured. After the magnet suction and curing of the first wearing are completed, the hollow shaft 1 is moved to the position of the next wearing, and the above steps are repeated. The position of the magnet suction mechanism can be adjusted as needed to meet the customization requirements of different positions and styles, and the energy emitted by the curing mechanism 9 can only be emitted from one end of the hollow shaft 1 and cannot be diffused to other places, so that the concentrated use of energy is ensured, and the wearings other than the wearing located on the hollow shaft 1 are not affected, thereby improving the curing efficiency and uniformity of a single wearing.
[0056] In summary, the present application solves the problems of the traditional magnet suction machine, such as being unable to be customized alone, curing unevenly and poor flexibility.
[0057] It should be understood that the terms "first", "second" and the like in the present application are used to describe various information, but these information should not be limited to these terms, and these terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of the present application, the "first" information can also be referred to as "second" information, and similarly, the "second" information can also be referred to as "first" information. In addition, the orientation or position relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0058] The above is the preferred embodiment of the present application, and it should be pointed out that for ordinary skilled in the art, without departing from the principles of the present application, a number of improvements and modifications can be made, and these improvements and modifications are also considered within the scope of protection of the present application.
Claims
1. A magnetic attraction mechanism for a wearable glove comprising a hollow shaft (1), characterized in that, The hollow shaft (1) is provided with a matching part (5) at one end, and the matching part (5) is provided with at least one magnet mechanism (6) for applying a magnetic field to the wearing gloves to form an effect, and the hollow shaft (1) is provided with a curing mechanism (9) for curing the effect of the wearing gloves.
2. The magnetic attraction mechanism of a wearable shell according to claim 1, wherein, The hollow shaft (1) is provided with a connecting part (3) matched with the matching part (5) at one end, the connecting part (3) is an inner core, the matching part (5) is an outer sleeve, the matching part (5) is sleeved outside the connecting part (3), the matching part (5) and the connecting part (3) are both provided with a through slot (53), the magnet mechanism (6) comprises at least one magnet block (61), and the matching part (5) is provided with a shielding piece (4) for shielding light.
3. The magnetic attraction mechanism of a wearable shell according to claim 2, wherein, The shielding piece (4) is provided with a through hole (41) for allowing the energy emitted by the curing mechanism (9) to pass through.
4. The magnetic attraction mechanism of claim 2, wherein, The bottom of the matching part (5) is provided with at least one magnet mounting groove (55), the magnet mechanism (6) is mounted in the magnet mounting groove (55), the magnet mechanism (6) comprises a magnet block (61), one side of the magnet block (61) is provided with a positioning hole (63), a side wall of the matching part (5) is provided with a first threaded hole (52), when the magnet mechanism (6) is mounted in the magnet mounting groove (55), the first threaded hole (52) is in communication with the positioning hole (63), and a limiting bolt (7) is sleeved in the first threaded hole (52), and the limiting bolt (7) is in threaded connection with the first threaded hole (52).
5. The magnetic attraction mechanism of a wearable shell according to claim 4, wherein, One side of the magnet block (61) is provided with a clamping block (62), one side of the magnet mounting groove (55) is provided with a clamping groove (54) matched with the clamping block (62), and the other side of the magnet mounting groove (55) is provided with a groove (56).
6. The magnetic attraction mechanism of a wearable shell according to claim 1, wherein, The hollow shaft (1) is sleeved with a hollow shaft motor (2), the hollow shaft (1) is a rotating shaft of the hollow shaft motor (2), the curing mechanism (9) is sleeved with a bearing (8), and the bearing (8) is mounted in the hollow shaft (1).
7. The magnetic attraction mechanism of a wearable glove according to claim 6, wherein The hollow shaft motor (2) is sleeved with a shell (11), the shell (11) is provided with a positioning block (10), and one side of the positioning block (10) is fixedly installed with the curing mechanism (9).
8. The magnetic attraction mechanism of claim 2, wherein, The matching part (5) is provided with a limiting groove (51), the limiting groove (51) has a top view shape matched with that of the shielding piece (4), and the shielding piece (4) is mounted in the limiting groove (51).
9. The magnetic attraction mechanism of a wearable shell of claim 1, wherein, The curing mechanism (9) is one or a combination of UV LED curing lamp, thermal energy radiation curing source and electron beam curing source.
10. The magnetic attraction mechanism of claim 5, wherein, The magnet block (61) is one or a combination of electromagnet, rare earth magnet, ferrite, rubber magnet and neodymium iron boron magnet.