Magnetic field vibration wave exercise device
The magnetic field vibration wave exercise device addresses the limitations of existing devices by combining physical and magnetic vibrations for enhanced exercise and health benefits, offering stimulation and therapeutic effects.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- GO YOUNG JU
- Filing Date
- 2025-11-24
- Publication Date
- 2026-06-04
AI Technical Summary
Existing exercise devices like the waist-hugging hula hoop (Korean Registered Utility Model No. 20-0442512) are limited in their exercise functionality and do not provide additional health benefits beyond physical vibrations, necessitating a device that combines magnetic field vibration waves with physical vibrations for enhanced exercise effects.
A magnetic field vibration wave exercise device comprising a corrugated tube with beads and magnets, allowing users to hold and shake it, generating both physical vibrations and magnetic field waves for improved health benefits.
The device stimulates users through physical vibrations and heat, enhances exercise effects, and provides therapeutic benefits from magnetic field waves, making it versatile for various activities like standing, walking, or running.
Smart Images

Figure KR2025019540_04062026_PF_FP_ABST
Abstract
Description
Magnetic field vibration wave exercise equipment
[0001] The present invention relates to a magnetic field vibration wave exercise device, and more specifically, to an exercise device that can help improve health by generating magnetic field vibration waves along with physical vibrations in response to the exercise of shaking the device held in the user's hand.
[0002] Various exercise equipment capable of contributing to human health has been developed and is in use, and among them are devices that aid health by stimulating the body through vibrations generated in response to the user's exercise.
[0003] As an example of such exercise equipment, Korean Registered Utility Model No. 20-0442512 discloses a waist-hugging hula hoop that can be adjusted in size to fit the waist circumference and generates vibrations when the hoop rolls along the wrinkles formed on its inner surface, thereby providing a massage effect to the user. This hula hoop can be adjusted in size to fit the user's body size and used in a close fit to the user's body, allowing it to be used in various postures such as in narrow spaces or while sitting.
[0004] However, even though the above-mentioned registered utility model No. 20-0442512 can be used by adjusting its size to fit the body size, since it is ultimately a hula hoop, it cannot function as a simple exercise device, such as one that the user holds in their hand and shakes while exercising.
[0005] In addition, the above-mentioned registered utility model No. 20-0442512 can only produce a massage effect by simply generating physical vibrations, but in order to further enhance the exercise effect, it is necessary to generate other effects along with physical vibrations.
[0006] [Prior Art Literature]
[0007] [Patent Literature]
[0008] (1) Korean Registered Utility Model No. 20-0442512 (Title: Waist-tight Hula Hoop, Date of Announcement: Nov. 13, 2008)
[0009] Accordingly, the present invention has been devised to meet the aforementioned needs, and its purpose is to provide a magnetic field vibration exercise device capable of producing an enhanced exercise effect by generating magnetic field vibration waves along with physical vibrations as the user holds and shakes it.
[0010] To achieve the above objective, the magnetic field vibration wave motion device according to the present invention may comprise: a main body part including a corrugated tube of a predetermined shape having a plurality of corrugations formed on its inner surface and a covering member covering the outside of the corrugated tube; a plurality of beads disposed in the internal space of the corrugated tube; and a plurality of magnets disposed on the outside of the corrugated tube. In this case, the diameter of the beads is configured to be a size capable of moving within the internal space of the corrugated tube.
[0011] The above-mentioned predetermined shape may include one or more of annular, straight, banana-shaped, semicircular, elliptical, and arc-shaped shapes.
[0012] The above main body may be configured in an assembled manner so that it can be separated into two parts and reassembled while maintaining the above-mentioned predetermined shape.
[0013] On one side of the main body part separated into the two parts above, a plurality of fastening protrusions and fastening grooves may be alternately formed along the cross-section of the covering member, and on the other side, a plurality of fastening protrusions and fastening grooves may also be alternately formed along the cross-section of the covering member.
[0014] In addition, a plurality of magnet receiving grooves are formed along the cross-section of the covering member on one or both sides of the main body part separated into the two parts, and a magnet can be received in each of the plurality of magnet receiving grooves.
[0015] The corrugated tube may be made of aluminum, and the covering member may be made of silicone. Additionally, the bead may be made of metal, and at least a portion of the outer surface of the covering member may be formed in a curved shape.
[0016] The magnetic field vibration wave exercise device of the present invention is configured so that the user can hold it in their hand and shake it, so it can be used while standing, walking, or running, making it easy to use anytime and anywhere.
[0017] The physical vibrations and micro-heat generated as the beads inside the corrugated tube collide with the internal folds stimulate the user, which can help improve health and provide not only exercise effects but also enjoyment and fun.
[0018] In addition, the magnetic field vibration waves generated as metal beads move between magnets fuse with physical vibrations, which can provide even greater benefits to the user's health.
[0019] FIGS. 1 and FIGS. 2 are an embodiment of a magnetic field vibration wave exercise device according to the present invention.
[0020] Figure 3 is an example illustrating a bead being accommodated inside a corrugated tube.
[0021] FIG. 4 is an example showing the separated state of a magnetic field vibration wave motion mechanism,
[0022] FIG. 5 is an enlarged view of the detachable structure of a magnetic field vibration wave motion mechanism.
[0023] FIG. 6 is an example of an assembly reference mark indicating an assembly position,
[0024] Figure 7 is a specific example regarding the size of a magnetic field vibration wave motion mechanism.
[0025] The present invention is capable of various modifications and may have various embodiments, and specific embodiments are illustrated in the drawings and described in detail in the detailed description. However, this is not intended to limit the present invention to specific embodiments, and it should be understood that it includes all modifications, equivalents, and substitutions that fall within the spirit and scope of the present invention.
[0026] In describing the present invention, if it is determined that a detailed description of related prior art could obscure the essence of the present invention, such detailed description is omitted.
[0027] The terms used in this application are used merely to describe specific embodiments and are not intended to limit the invention. The singular expression includes the plural expression unless the context clearly indicates otherwise.
[0028] In this application, terms such as "comprising" or "having" are intended to specify the existence of the features, numbers, steps, actions, components, parts, or combinations thereof described in the specification, and should be understood as not precluding the existence or addition of one or more other features, numbers, steps, actions, components, parts, or combinations thereof.
[0029] Terms such as "first," "second," etc., may be used to describe various components, but said components should not be limited by said terms. These terms are used solely for the purpose of distinguishing one component from another.
[0030] The exterior of the magnetic field vibration wave exercise device according to the present invention may be configured in the form of an annular, straight, banana, semicircular, elliptical, or arc-shaped shapes, but is not limited thereto. For example, it may be configured in various forms considering design elements, exercise functionality, and user preferences, and may also be configured in a combined form of such various shapes.
[0031] Hereinafter, the magnetic field vibration wave exercise device according to the present invention will be described through an embodiment in which the exterior is configured in a ring shape.
[0032] FIGS. 1 and 2 are examples of the external appearance of a magnetic field vibration wave exercise device according to the present invention, FIG. 3 is an example showing a bead being accommodated inside a corrugated tube, and FIG. 4 is an example showing the separated state of a magnetic field vibration wave exercise device, showing an example having an overall ring-shaped external appearance.
[0033] The magnetic field vibration wave exercise device (100) comprises a main body (105) including an annular corrugated tube (110) and a covering member (120) covering the outside of the corrugated tube (110), a plurality of beads (130) disposed in the internal space of the corrugated tube (110), and a plurality of magnets (140) disposed on the outside of the corrugated tube (110).
[0034] If the exterior of the magnetic field vibration wave motion device is configured in a straight or semi-circular shape, the main body may be formed to include a straight or semi-circular corrugated tube and a covering member that covers the outside of the corrugated tube.
[0035] A number of folds may be formed on the inner and outer surfaces of the corrugated tube (110) configured in an annular shape, and accordingly, the diameter of the internal space of the corrugated tube (110) alternately appears as a narrow part and a wider part.
[0036] The material of the corrugated tube (110) can be configured in various ways. As a specific example, the corrugated tube (110) may be composed of aluminum, but is not limited thereto.
[0037] The exterior of the corrugated tube (110) is entirely covered with a covering member (120).
[0038] The material and shape of the covering member (120) can be configured in various ways as needed.
[0039] As a specific example, the covering member (120) may be constructed using an insulating material such as silicone, and at least a portion of the outer surface of the covering member (120) may be constructed in a curved shape so as to increase the grip when a user holds it with their hand and also to allow for body massage using that part.
[0040] FIG. 3 is an example showing a state in which beads (130) are accommodated inside a corrugated tube (110), and multiple beads (130) are arranged in the internal space of the corrugated tube (110).
[0041] The material and size of the beads (130) can be varied. As a specific example, the beads (130) may be made of a metal material, but are not limited thereto.
[0042] Since the bead (130) must move within the internal space of the corrugated tube (110) as the user holds and shakes the magnetic field vibration wave exercise device (100) with their hand, the diameter of the bead (130) is configured to be a size that can move within the internal space of the corrugated tube (110).
[0043] As the user holds and shakes the magnetic field vibration wave exercise device (100) with their hand, the bead (130) moves through the internal space of the corrugated tube (110) and collides with the uneven structure created by the corrugation, thereby generating physical vibration and heat.
[0044] Since these physical vibrations and heat stimulate the user, they can provide various desirable effects that may occur due to physical vibrations and heat.
[0045] In addition, a plurality of magnets are placed on the outside of the corrugated tube (110).
[0046] When the bead (130) is made of a metal material, as the user holds and shakes the magnetic field vibration wave exercise device (100) with their hand, the bead (130) moves through the internal space of the corrugated tube (110) and passes through the magnet (140), causing a change in magnetism and generating a magnetic field wave, and the magnetic field wave can provide a more desirable effect to the user.
[0047] For example, magnetism is known to have therapeutic effects on blood circulation and is also helpful in treating neurological diseases such as Parkinson's disease.
[0048] The magnetic field vibration wave exercise device (100) can be configured with an assembly or detachable structure for various purposes such as easy manufacturing, bead exchange, and maintenance / repair.
[0049] Referring to FIGS. 4 and 5, the main body (105) can be assembled so that it can be separated into two parts and reassembled while maintaining an annular shape.
[0050] That is, the main body (105) can be separated into a shape that is cut horizontally parallel to the floor while lying horizontally on a flat floor.
[0051] On one side of the main body (105) separated into two parts, a plurality of fastening protrusions (121) and fastening grooves (123) may be formed alternately at regular intervals along the cross-section of the covering member (120), and on the other side separated, fastening protrusions (121) and fastening grooves (123) may also be formed alternately at regular intervals along the cross-section of the covering member (120).
[0052] At this time, a fastening groove (123) and a fastening projection (121) are formed at the other side corresponding to the fastening projection (121) and the fastening groove (123) formed on one side of the separated main body (105), respectively, and after aligning the fastening projection (121) on one side to correspond to the fastening groove (123) on the other side, they can be joined together by fitting.
[0053] FIG. 6 shows an example of an assembly reference mark (129) indicating an assembly position. The assembly reference mark (129) helps to position the fastening projection (121) and the fastening groove (123) in correspondence with each other when joining two parts of the separated main body (105), thereby enabling the user to easily assemble the two parts.
[0054] That is, when the assembly reference markings (129) marked on each of the two parts of the separated main body (105) are aligned so that they match each other, the fastening projections (121) and fastening grooves (123) of the two parts are positioned facing each other.
[0055] FIGS. 4 and FIGS. 5 show an embodiment in which fastening protrusions (121) and fastening grooves (123) are alternately formed on both parts of the separated main body (105), but it can be configured in various variations, such as forming only fastening protrusions (121) on one side and only fastening grooves (123) on the other side.
[0056] Meanwhile, on one or both sides of the main body (105) separated into two parts, a plurality of magnet receiving grooves (125) may be formed along the cross-section of the covering member (120).
[0057] The magnet (140) may be received in a permanently fixed state in the magnet receiving groove (125), or the magnet (140) may be configured to be detachable.
[0058] At this time, the shape of the magnet receiving groove (125) can be configured in various ways so that the magnet (140) can be received according to the shape of the magnet (140).
[0059] In the embodiment illustrated in FIG. 5, the magnet (140) is configured in a cylindrical shape, and the magnet receiving groove (125) is also shown as being carved in a cylindrical shape of a certain depth to accommodate the magnet (140).
[0060] However, the magnet (140) can be configured in various shapes such as square, polygonal, or sphere, and the magnet receiving groove (125) can also be configured in various shapes so that the magnet (140) can be received accordingly.
[0061] The position where the magnet (140) is placed can be configured in various ways as needed.
[0062] FIGS. 4 and 5 show an embodiment in which fastening protrusions (121), fastening grooves (123), and magnet receiving grooves (125) are formed alternately along the cross-section of a covering member (120) on both sides of a separated main body (105), but this is not limited thereto.
[0063] Now, with reference to FIGS. 4 and FIGS. 7, specific embodiments regarding the preferred size and shape of the magnetic field vibration wave motion device (100) will be described.
[0064] The magnetic field vibration wave exercise device (100) is used by holding and shaking it with the hand while the user is standing, walking, or running, and can be configured according to various conditions such as the user's age, gender, and health condition.
[0065] Referring to FIG. 4, the longest outer diameter (r1) of the main body (105) of the magnetic field vibration wave exercise device (100) may be 180 mm or more and 190 mm or less, and the shortest inner diameter (r2) of the main body (105) may be 120 mm or more and 136 mm or less.
[0066] In particular, more preferably, the longest outer diameter (r1) of the main body (105) may be 184 mm, and the shortest inner diameter (r2) of the main body (105) may be 126 mm.
[0067] The diameter (r5) of the main body (105) based on the center of the internal space of the corrugated tube (110) can be configured to be 150 mm or more and 160 mm or less.
[0068] In addition, the diameter (r3) of the smallest part of the radius in the internal space of the corrugated tube (110) can be configured to be 16 mm or more and 20 mm or less, particularly preferably 17 mm, and the step of the corrugation can be configured to be 0.5 mm.
[0069] The diameter (r7) of the bead (130) can be configured to be smaller than the minimum diameter (r3) of the internal space of the corrugated tube (110) by more than 1 mm and less than 1.4 mm.
[0070] This is because if the size of the bead (130) is too small, the sound of the bead (130) colliding while moving inside the corrugated tube (110) is too loud and the magnetic, thermal, and vibration effects are insufficient, and if the size of the bead (130) is too large, it is difficult to move within the internal space of the corrugated tube (110).
[0071] Under these conditions, if the diameter (r3) of the smallest part of the radius in the internal space of the corrugated tube (110) is configured to be about 17 mm, it is preferable to configure the diameter (r7) of the bead (130) to be about 15.8 mm.
[0072] The number of beads (130) accommodated in the internal space of the corrugated tube (110) can be configured in various ways, but can be appropriately set considering weight and movement.
[0073] As an example, if the weight of one metal ball is about 15g, you can accommodate about 4 to 8 of them, and if the weight is about 60g to 120g, you can use it for exercise while feeling an appropriate weight.
[0074] The fastening projection (121) can be formed with a diameter of 2 mm and a height of about 1 mm, and the fastening groove (123) can be formed with a diameter of 2 mm and a depth of about 1.5 mm.
[0075] The magnet receiving groove (125) can be configured with a diameter of 2 mm and a depth of about 3.1 mm, and the magnet (140) can be configured with a diameter of 2 mm and a length of about 3 mm.
[0076] Although the present invention has been illustrated and described above in relation to specific preferred embodiments, it is obvious to those skilled in the art that the present invention can be modified and changed in various ways without departing from the technical features or scope of the present invention as defined by the following claims.
[0077] [Explanation of the symbol]
[0078] 100: Magnetic field vibration wave exercise machine
[0079] 105: Main body
[0080] 110: Corrugated tube
[0081] 120: Covering member
[0082] 121: Fastening projection
[0083] 123: Signing Home
[0084] 125: Magnet receiving groove
[0085] 129: Assembly Standard Mark
[0086] 130: Bead
[0087] 140: Magnet
Claims
1. A corrugated tube of a predetermined shape having a plurality of corrugations formed on its inner surface, and A main body comprising a covering member covering the outside of the corrugated tube; A plurality of beads disposed in the internal space of the above corrugated tube; and It includes a plurality of magnets disposed on the outside of the corrugated tube, and A magnetic field vibration wave motion device in which the diameter of the above bead is configured to be a size capable of moving within the internal space of the above corrugated tube.
2. In Paragraph 1, The above-mentioned predetermined shape includes one or more of annular, straight, banana-shaped, semicircular, elliptical, and arc-shaped shapes, and A magnetic field vibration wave exercise device, wherein the main body is configured in an assembled manner so that it can be separated into two parts and reassembled while maintaining the aforementioned predetermined shape.
3. In Paragraph 2, On one side of the main body part separated into the two parts above, a plurality of fastening protrusions and fastening grooves are alternately formed along the cross-section of the covering member, and A magnetic field vibration wave motion mechanism having a plurality of fastening protrusions and fastening grooves alternately formed along the cross-section of the covering member on the other side as well.
4. In Paragraph 2, On one or both sides of the main body part separated into the two parts above, a plurality of magnet receiving grooves are formed along the cross-section of the covering member, and A magnetic field vibration wave motion device characterized by each of the above-mentioned plurality of magnet receiving grooves having a magnet received therein.
5. In Paragraph 1, The above corrugated tube is made of aluminum material, and The above-mentioned coating member is composed of a silicone material, and The above bead is made of a metal material, and A magnetic field vibration wave motion device characterized in that at least a portion of the outer surface of the above-mentioned covering member is configured in a curved shape.
6. In Paragraph 1, The above-mentioned predetermined shape is annular, and The outer diameter of the above main body is 180mm or more and 190mm or less, and The inner diameter of the above main body is 120mm or more and 136mm or less, and The diameter of the main body portion based on the center of the internal space of the corrugated tube is 150mm or more and 160mm or less, and The minimum diameter of the internal space of the above corrugated tube is 16 mm or more and 20 mm or less, and A magnetic field vibration wave motion device characterized in that the diameter of the bead is smaller than the minimum diameter of the internal space of the corrugated tube by 1 mm or more and 1.4 mm or less.