Wearing article with negative magnetic device
By incorporating a negative magnetic device into the wearable device and utilizing motor vibration to enhance the magnetic field's penetrating power, the limitations of existing magnetic therapy devices in terms of area and intensity are solved, achieving a convenient and efficient negative magnetic therapy effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2026-03-17
AI Technical Summary
Existing magnetic therapy devices require large areas of high-strength natural magnets to effectively penetrate the skin, but they are inconvenient to use and limit their application scenarios.
Design a wearable device with a built-in negative magnetic device that uses motor vibration to make the internal permanent magnet elements vibrate, thereby enhancing the penetrating power of the negative magnetic field.
By using vibrating magnetic elements, the negative magnetic field is enhanced to penetrate deeper into the skin and muscles, providing a convenient method of magnetic therapy while avoiding the adverse effects of electromagnetic waves on the human body.
Smart Images

Figure CN223995254U_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a wearable device with a negative magnetic device, and more particularly to a wearable device incorporating a negative magnetic device, which, when worn, can enhance the effect of the negative magnetic field penetrating deep into the skin and muscles through motor vibration. Background Technology
[0002] American biophysicist Dr. Albert Roy Davis discovered that cosmic magnetic poles have two distinct effects on living organisms. The positive magnetic field effect is positively charged and has effects such as oxidation, acidification, activation, excitation, and increased stress, while the negative magnetic field effect is negatively charged and has effects such as reduction, alkalization, relaxation, calming, and stress resistance.
[0003] The use of magnetic waves for health maintenance has been recorded as early as the Spring and Autumn Period. Bian Que, a famous physician, used magnets as pillows for the health and wellness purposes of Duke Mu of Qin and his concubines. Galen of ancient Greece, and Avicenna, a renowned Arab physician of the 11th century, also used magnets for their patients' health and wellness. However, the practice of magnetic medicine primarily relied on natural magnets until the late 19th century when artificially manufactured magnetic therapy devices appeared in the West, marking the beginning of in-depth and systematic research into magnetic medicine. In 1956, Japan commercialized magnets for health maintenance and wellness purposes, with significant results.
[0004] According to Biot-Savart's law, the biomagnetic field of the human body can only maintain the normal physiology of tissues and organs when it adapts to the large magnetic field of the universe; otherwise, abnormal reactions or illness will occur. Whenever a part of the body suffers different kinds of trauma, the electric and magnetic fields of that part remain positively polarized. Through the mechanisms of meridians and the nervous system, the body concentrates its negative magnetic energy to reach the affected area for healing. Because oxygen cannot be obtained in an acidic environment, the healing process is most effective in an alkaline environment.
[0005] For magnets to be used for health preservation, the area of the magnets must be larger than the area of the part of the body that needs health care in order to have a better effect. In addition, there must be enough magnets and the intensity of the negative magnetic energy must be strong enough to keep the user continuously exposed to the magnetic wave range. Only then can the effect be strong enough to penetrate the skin and activate the body's own repair and maintenance mechanism to restore health and achieve the health preservation effect.
[0006] However, if you want to use this type of magnet, the area is often too large or you wear too many. Utility Model Content
[0007] The present invention relates to a wearable device with a negative magnetic device, comprising a wearable body, wherein at least one inner pocket is attached; at least one negative magnetic device is placed inside the inner pocket, the negative magnetic device having a plurality of arrayed receiving pouches, the receiving pouches holding at least one magnetic element having an S pole surface and an N pole surface; and a motor component in contact with the wearable body or the negative magnetic device, the motor component being used to vibrate the magnetic element.
[0008] More specifically, the inner pocket is fixed or adhered to the inner side of the wearable body.
[0009] More specifically, the wearable body is clothing or other wearable items.
[0010] More specifically, the S-pole surface of the magnetic element inside the negative magnetic device faces the skin of a human body part.
[0011] More specifically, the negative magnetic device is made of plastic, cloth, or leather.
[0012] More specifically, the container bag is either sealed or open.
[0013] More specifically, the wearable device with a negative magnetic device has a rib between every two accommodating pouches to separate magnetic elements at different locations.
[0014] More specifically, the plurality of containment bags are arranged in a grid pattern inside the negative magnetic device.
[0015] More specifically, the magnetic element is a permanent magnet.
[0016] More specifically, the magnetic element is circular or square.
[0017] More specifically, the motor component contacts the wearable body or the negative magnetic device via a connector, which can be a magnetic element, a button element, or a Velcro.
[0018] More specifically, the motor component is an electric motor, a pneumatic motor, or a hydraulic motor.
[0019] More specifically, the motor component is also connected to a power supply component.
[0020] This invention relates to a wearable garment with a negative magnetic device, comprising a wearable body with at least one inner pocket fixed or adhered to the inner side of the wearable body, the wearable body being clothing or an adornment; at least one negative magnetic device, made of plastic, fabric, or leather, placed inside the inner pocket; the negative magnetic device having multiple arrayed pockets containing at least one magnetic element, which is a circular or square permanent magnet, having an S pole surface and an N pole surface, with the S pole surface facing the body of a person. The device includes the skin of the affected area; and a motor component, which is an electric motor, a pneumatic motor, or a hydraulic motor, in contact with the wearable body or the negative magnetic device. The motor component is used to vibrate the magnetic element and is in contact with the wearable body or the negative magnetic device through a connector, which is a magnetic element, a button element, or Velcro. The motor component is also connected to a power supply component. The storage pouch is either sealed or open. A rib is provided between every two storage pouches to separate the magnetic elements in different locations. Multiple storage pouches are arranged in a grid pattern inside the negative magnetic device.
[0021] In another embodiment of this utility model, a wearable device with a negative magnetic device includes:
[0022] A wearable body, which is combined with at least one inner pocket, the inner pocket being fixed or glued to the inner side of the wearable body, and the wearable body being clothing or an item of clothing.
[0023] At least one negative magnetic device is placed inside the inner pocket. The negative magnetic device has multiple arrayed storage pouches, each containing at least one magnetic element, which is a permanent magnet. The magnetic element has an S-pole surface and an N-pole surface, with the S-pole surface facing the skin of a human body part.
[0024] A motor component is in contact with the wearable body or the negative magnetic device, and the motor component is used to cause the magnetic element to vibrate;
[0025] The container bag can be either sealed or open.
[0026] Each pair of containment bags has a rib to separate magnetic components in different locations;
[0027] Multiple containment bags are arranged in a grid pattern inside the negative magnetic device.
[0028] The beneficial effects of this utility model are as follows: This utility model combines a negative magnetic device with a wearable device, and then combines a motor component with the surface of the negative magnetic device containing a permanent magnet inside, so that the magnetic element is vibrated. Therefore, by vibrating and striking the negative magnetic device, the negative magnetic field of the magnetic element can be strengthened and penetrate into the skin and muscles. Attached Figure Description
[0029] Figure 1 : A schematic diagram of the wearable body structure of the first embodiment of the wearable with a negative magnetic device of this utility model.
[0030] Figure 2A : A schematic diagram of the negative magnetic device structure of the first embodiment of the wearable device with negative magnetic device of this utility model.
[0031] Figure 2B : A schematic diagram of the surface magnetism of the magnetic element of the negative magnetic device in the first embodiment of the wearable with a negative magnetic device of this utility model.
[0032] Figure 3 : A schematic diagram of the combination of the negative magnetic device and the motor component in the first embodiment of the wearable device with the negative magnetic device of this utility model.
[0033] Figure 4 : A schematic diagram of the structure of the first embodiment of the wearable body of the present invention, which houses the negative magnetic device.
[0034] Figure 5 : A schematic diagram of the first embodiment of the wearable device with a negative magnetic device of this utility model.
[0035] Figure 6 : A schematic diagram of the wearable body structure of the second embodiment of the wearable with a negative magnetic device of this utility model.
[0036] Figure 7A : A schematic diagram of the negative magnetic device structure of the second embodiment of the wearable device with negative magnetic device of this utility model.
[0037] Figure 7B : A schematic diagram of the surface magnetism of the magnetic element of the negative magnetic device in the second embodiment of the wearable with the negative magnetic device of this utility model.
[0038] Figure 8 : A schematic diagram of the structure of the second embodiment of the wearable body of the present invention, which houses the negative magnetic device.
[0039] Figure 9 : A schematic diagram of the combination of the wearable body housing and the motor component in the second embodiment of the wearable device with a negative magnetic device according to this utility model.
[0040] Explanation of reference numerals in the attached figures
[0041] 1: Wear the main body;
[0042] 10: Inner side;
[0043] 11: Place the inner bag;
[0044] 2: Negative magnetic device;
[0045] 21: Container bag;
[0046] 211: Magnetic components;
[0047] 2111: N-pole surface;
[0048] 2112: S-pole surface;
[0049] 22: Ribs;
[0050] 31: Motor components;
[0051] 32: Power supply components;
[0052] 4: Wear the main body;
[0053] 40: Inner side surface;
[0054] 41: Place the inner bag;
[0055] 5: Negative magnetic device;
[0056] 51: Container bag;
[0057] 511: Magnetic components;
[0058] 5111: N-pole surface;
[0059] 5112: S-pole surface;
[0060] 52: Ribs;
[0061] 61: Motor components;
[0062] 62: Power supply components;
[0063] 7: Users. Detailed Implementation
[0064] Other technical contents, features and effects of this utility model will be clearly presented in the following detailed description of the preferred embodiments with reference to the accompanying drawings.
[0065] Please see Figure 1The figure shows a schematic diagram of the first embodiment of the wearable body structure of the wearable with a negative magnetic device of the present invention. As shown in the figure, the wearable body 1 is a top (the wearable body is clothing or a wearable item), and the inner side 10 of the wearable body 1 is combined with at least one inner pocket 11. The inner pocket 11 is provided with an opening, and a negative magnetic device 2 can be inserted into the inner pocket 11 through the opening.
[0066] The inner pocket 11 is fixed or glued to the inner side 10 of the wearable body 1.
[0067] like Figure 2A As shown, the negative magnetic device 2 has multiple arrayed storage bags 21 inside, each containing at least one magnetic element 211, such as... Figure 2B As shown, the magnetic element 211 has an N pole surface 2111 and an S pole surface 2112, with the S pole surface 2112 facing the skin of a human body part.
[0068] Each pair of containment bags 21 has a rib 22 between them. The rib 22 is used to separate the magnetic elements 211 at different positions to prevent multiple magnetic elements 211 from attracting each other into a cluster. The multiple ribs 22 enable the multiple containment bags 21 to be arranged in a grid pattern inside the negative magnetic device 2.
[0069] The container bag 21 can be sealed or open. If it is sealed, the magnetic components cannot be replaced. If it is open, for example, with a bag opening, the magnetic components inside the container bag 21 can be freely replaced by opening the bag opening. Alternatively, if the container bag 21 is open, the magnetic components inside the container bag 21 can be arranged freely to enhance the negative magnetic strength of specific areas.
[0070] The negative magnetic device 2 is made of plastic, cloth, or leather.
[0071] The magnetic element 211 is a permanent magnet, and the magnetic element 211 is either circular or square.
[0072] like Figure 3 As shown, the motor component 31 is in contact with the wearable body 1 or the negative magnetic device 2, and the operation of the motor component 31 will cause the magnetic element 211 to vibrate, and the motor component 31 is also connected to a power supply component 32.
[0073] The power supply component 32 is an external power source, which can connect the motor component 31 to a power cable, and the other end of the cable is connected to the external power source.
[0074] The power supply component 32 is a built-in power source (any type of battery in the battery box, such as dry cell batteries, lithium batteries, solar cells, lead-acid batteries), which can be directly connected to the motor component 31 or connected to the built-in power source through a power cable; the built-in power source can also be connected to a circuit board, which is used to control the power supply mechanism of the built-in power source, and to adjust the vibration time and / or vibration intensity of the motor component 31 by adjusting the power supply time and / or power supply current.
[0075] The motor component 31 is connected to the wearable body 1 or the negative magnetic device 2 via a connector, which can be a magnetic element, a button element, or a Velcro.
[0076] The motor component 31 is an electric motor, a pneumatic motor, or a hydraulic motor.
[0077] like Figure 4 As shown, the negative magnetic device 2 is placed in the inner bag 11. At the same time, the negative magnetic devices 2 in certain positions in the inner bag 11 are combined with the motor component 31 and the power supply component 32. The motor component 31 is used to amplify the magnetic field function. By tapping or / and vibrating the magnetic element 211 inside the negative magnetic device 2, the magnetic field is strengthened to penetrate deep into the skin and muscles.
[0078] like Figure 5 As shown, user 7 is wearing... Figure 4 The wearable body 1 has the S-pole surface 2112 facing the skin of the user 7, and when the motor 31 vibrates the magnetic element 211, it can further strengthen the magnetic field and penetrate deep into the skin and muscles.
[0079] This invention can also be applied to wearable devices, such as... Figure 6 As shown, the wearable body 4 is a hat, and the inner side 40 of the wearable body 4 is connected to at least one inner pocket 41, which is used to hold at least one negative magnetic device.
[0080] like Figure 7A and Figure 7B As shown, the negative magnetic device 5 has multiple arrayed storage bags 51 inside, each storage bag 51 containing at least one magnetic element 511, such as... Figure 7B As shown, the magnetic element 511 has an N pole surface 5111 and an S pole surface 5112, with the S pole surface 5112 facing the skin of a human body part.
[0081] Each pair of containment bags 51 has a rib 52 between them. The rib 52 is used to separate the magnetic elements 511 at different positions to prevent multiple magnetic elements 511 from attracting each other into a cluster. The multiple ribs 52 enable the multiple containment bags 51 to be arranged in a grid pattern inside the negative magnetic device 5.
[0082] like Figure 8 As shown, the negative magnetic device 5 is placed inside the inner bag 41, with the S-pole surface 5112 facing the skin of the body part. Furthermore, to enhance the effect of the negative magnetic field and for wearing comfort, such as... Figure 9 As shown, the motor component 61 is not attached to the inside, but to the outside of the wearable body 4. Since the vibration of the motor component 61 can still affect the magnetic element 211, it can also further strengthen the magnetic field to penetrate the skin and muscles.
[0083] The motor component 61 is also connected to a power supply component 62, which is an external power source. The motor component 61 can be connected to a power cable, and the other end of the cable is connected to the external power source.
[0084] In addition, both the containing bag and the inner bag can have at least one opening, which allows a portion of the surface of the magnetic element to come into direct contact with the skin of the human body. The opening can be on the N-pole surface or the S-pole surface.
[0085] The wearable device with a negative magnetic device provided by this invention has the following advantages compared with other existing technologies:
[0086] (1) In order to facilitate wearing, the present invention combines a negative magnetic device with a wearable device and then combines a motor component with the surface of the negative magnetic device having a permanent magnet inside, so as to make the magnetic element vibrate, thereby strengthening the negative magnetic field of the magnetic element to penetrate into the skin and muscles.
[0087] (2) This utility model uses a motor in conjunction with a permanent magnet. The motor is attached to the surface of a negative magnetic device with a permanent magnet inside, so that the magnetic element is vibrated. Therefore, by vibrating and striking the negative magnetic device, the negative magnetic field of the magnetic element can be strengthened to penetrate deep into the skin and muscles.
[0088] (3) This utility model does not generate an electromagnetic field by driving a magnet with a power source, so it does not generate electromagnetic waves and therefore will not have any adverse effects on the human body.
[0089] This utility model has been disclosed above through the above embodiments, but it is not intended to limit this utility model. Any person skilled in the art can make some modifications and refinements after understanding the foregoing technical features and embodiments of this utility model, without departing from the spirit and scope of this utility model. Therefore, the patent protection scope of this utility model shall be determined by the claims appended to this specification.
Claims
1. A wearable having a negative magnetic device, characterized by, Comprising: a wearing body combined with at least one placement inner bag; at least one negative magnetic device disposed inside the placement inner bag, the negative magnetic device having a plurality of arrayed accommodation bags, the accommodation bags being disposed with at least one magnetic element, the magnetic element having an S-pole surface and an N-pole surface; and a motor member in contact with the wearing body or the negative magnetic device.
2. The garment with negative magnetic device as claimed in claim 1, wherein, The placement inner bag is fixed or adhered to the inner side of the wearing body.
3. The garment with negative magnetic device as claimed in claim 1, wherein, The wearing body is a garment or a wearing article.
4. The garment with negative magnetic device as claimed in claim 1, wherein, The S-pole surface of the magnetic element inside the negative magnetic device faces the skin of a body part of a human body.
5. The garment with negative magnetic device as claimed in claim 1, wherein, The material of the negative magnetic device is plastic, cloth or leather.
6. The article of claim 1, wherein the magnetic device is a negative magnetic device. The accommodation bag is closed or open.
7. The garment with a negative magnetic device of claim 1, wherein, The accommodation bag is a plurality of, and each two accommodation bags have a rib separating the magnetic elements at different positions.
8. The garment with negative magnetic device as claimed in claim 1, wherein, The accommodation bag is a plurality of, and the plurality of accommodation bags are arranged in a grid inside the negative magnetic device.
9. The garment with a negative magnetic device of claim 1, wherein, The magnetic element is a permanent magnet.
10. The garment with a negative magnetic device of claim 1, wherein, The magnetic element is circular or square.
11. The garment with a negative magnetic device of claim 1, wherein, The motor member is in contact with the wearing body or the negative magnetic device through a combination member, which is a magnetic element, a button element or a devil felt.
12. The garment with a negative magnetic device of claim 1, wherein, The motor member is an electric motor, a pneumatic motor or a hydraulic motor.
13. The garment with a negative magnetic device of claim 1, wherein, The motor member is also connected to a power member.
14. A wearable having a negative magnetic device, characterized by, Comprising: a wearing body combined with at least one placement inner bag, the placement inner bag being fixed or adhered to the inner side of the wearing body, and the wearing body being a garment or a wearing article; at least one negative magnetic device disposed inside the placement inner bag, the negative magnetic device having a plurality of arrayed accommodation bags, the accommodation bags being disposed with at least one magnetic element, the magnetic element being a permanent magnet, the magnetic element having an S-pole surface and an N-pole surface, and the S-pole surface of the magnetic element facing the skin of a body part of a human body; and a motor member in contact with the wearing body or the negative magnetic device, the motor member being used to vibrate the magnetic element; wherein the accommodation bag is closed or open; wherein each two accommodation bags have a rib separating the magnetic elements at different positions; wherein a plurality of accommodation bags are arranged in a grid inside the negative magnetic device.