A method for adjusting gyromagnetic magnetic lines
By adding elastic elements and friction rods to the rotating device, and utilizing centrifugal force and spring force, the magnet can achieve three-dimensional motion in the magnetizing device, solving the problem of single adjustment of magnetic field lines, simplifying the structure, and reducing the failure rate and maintenance costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-31
- Publication Date
- 2026-03-27
AI Technical Summary
Existing magnetic rotation devices have a single, unadjustable magnetic field line, cannot fully utilize permanent magnets, and have a complex structure.
By adding a first elastic element between the magnet connected to the rotating device and the rotating rod, centrifugal force is used to change the distance and angle between the magnet and the axis. Combined with the friction rod driving the elastic element and the magnet to rotate, the three-dimensional movement and automatic adjustment of the magnetic field lines are realized.
It achieves three-dimensional adjustment of magnetic field lines, has a simple structure, low failure rate, low maintenance cost, and uses fewer magnets.
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Figure CN115671559B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of magnetic therapy technology, and in particular relates to a method for adjusting the magnetic field lines of rotation. Background Technology
[0002] Currently, there are many relatively mature technologies for gyromagnetic devices on the market. For example, CN201910560499 discloses a composite gyromagnetic mechanism and gyromagnetic device. Figure 1 As shown, it includes at least one primary rotating shaft 11, at least one gyromagnetic unit 2 disposed on the primary rotating shaft 11 along the axial direction of the primary rotating shaft 11, and at least one primary driving member 12 for driving the primary rotating shaft 11 to rotate. Each gyromagnetic unit 2 includes a tray 21 and a secondary driving member 22 disposed on the corresponding primary rotating shaft 11 for driving the tray 21 to rotate. The central axis of the rotation direction of the tray 21 is set at an angle to the central axis of the rotation direction of the primary rotating shaft 11. The surface of the tray 21 is provided with multiple permanent magnets 23. This gyromagnetic device requires the use of multiple permanent magnets, and each permanent magnet only moves in one plane. The magnetic field lines are singular and cannot be adjusted, which cannot fully utilize the permanent magnets, and the structure is relatively complex.
[0003] To address this issue, a method for adjusting the magnetic field lines of rotation is proposed. Summary of the Invention
[0004] The purpose of this invention is to provide a method for adjusting the magnetic field lines of a rotating magnet, aiming to solve the problems of existing rotating magnet devices having a single, unadjustable magnetic field line, failing to fully utilize permanent magnets, and having a complex structure. To achieve this objective, the technical solution adopted by this invention is: a method for adjusting the magnetic field lines of a rotating magnet, which connects a rotating device to a rotating rod, and adds a first elastic element between the end of the rotating rod and the magnet. By adjusting the rotational speed of the rotating device, the centrifugal force of the magnet is changed, causing a change in the length of the first elastic element, thereby changing the distance between the magnet and the axis, and thus realizing the change of the area of the magnetic field lines by adjusting the rotational speed.
[0005] Based on the aforementioned scheme, a rotating plate and a second elastic member are designed at the end of the first elastic member. The rotating plate is rotatably connected to the first elastic member, and the magnet is installed on the rotating plate. One end of the second elastic member is connected to the magnet, and the other end is connected to the first elastic member. Under the action of centrifugal force, the magnet moves away from the axis of rotation and changes its angle, so that the magnetic field lines move in three dimensions.
[0006] Based on the aforementioned scheme, in order to enable the magnetic field lines to be automatically adjusted again, the first elastic element is rotatably connected to the rotating rod. A friction rod is provided at one end of the first elastic element near the axis. When the rotating rod revolves, the friction rod rubs against the friction disc at the bottom of the rotating rod, causing the first elastic element, as well as the second elastic element, magnet, and rotating plate installed on the first elastic element, to rotate.
[0007] Compared with the prior art, the application adopts a single rotating device and few magnets, and through the interaction of centrifugal force and spring force, the magnets can change the distance from the axis and the angle of inclination according to the rotating speed while revolving, and after the friction rod is added, the magnets have additional rotation movement, so that the magnetic lines of the magnets can be automatically adjusted and spread throughout the three-dimensional space. The overall structure is simple, the rotating device and the magnets are few, the failure rate is low, and the maintenance cost is low. BRIEF DESCRIPTION OF DRAWINGS
[0008] Figure 1 A schematic diagram provided for Chinese invention patent CN201910560499;
[0009] Figure 2 An overall schematic diagram provided for an embodiment of the application;
[0010] Figure 3 Another overall schematic diagram provided for an embodiment of the application;
[0011] Figure 4 A rotating rod end schematic diagram provided for an embodiment of the application;
[0012] Figure 5 A magnet operation schematic diagram provided for an embodiment of the application.
[0013] In the drawings, various reference signs represent:
[0014] 10, rotating device; 20, friction disc; 30, rotating rod; 40, friction rod; 50, first elastic member; 60, magnet; 70, rotating plate; 80, second elastic member. DETAILED DESCRIPTION
[0015] In order to facilitate understanding of the application, the application will be described more fully below with reference to the accompanying drawings. The preferred embodiments of the application are shown in the drawings. However, the application can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the application more thorough and comprehensive.
[0016] The technical solutions of the patent will be further described in detail below in combination with specific embodiments.
[0017] As shown in Figure 2 , the rotating device 10 is connected with the rotating rod 30, the magnets 60 are installed at both ends of the rotating rod 30, the rotating device 10 drives the rotating rod 30 to make the magnets 60 move in a circle, and the operation schematic diagram of the magnets 60 is shown as A of Figure 5 . Then the first elastic member 50 is added between the end of the rotating rod 30 and the magnet 60, the distance between the magnet 60 and the axis is changed through the action of centrifugal force, and the operation schematic diagram of the magnet 60 is shown as Figure 5As shown in B of Fig. 1, the magnetic action area can be adjusted by controlling the rotating speed of the rotating device 10.
[0018] As shown in Fig. 1, the rotating device 10 comprises a rotating rod 30, a friction disc 20, a friction rod 40, a first elastic member 50, a rotating plate 70, a second elastic member 80 and a magnet 60. Figure 3 、 4 As shown in Fig. 1, the rotating device 10 comprises a rotating rod 30, a friction disc 20, a friction rod 40, a first elastic member 50, a rotating plate 70, a second elastic member 80 and a magnet 60.
[0019] In order to make the magnetic force lines automatically adjust again, the first elastic member 50 is rotatably connected with the rotating rod 30, and the first elastic member 50 is provided with the friction rod 40 close to the axis. When the rotating rod 30 revolves, the friction rod 40 rubs against the friction disc 20 at the bottom of the rotating rod 30, thereby driving the first elastic member 50, the second elastic member 80, the magnet 60 and the rotating plate 70 to rotate. At this time, the running schematic diagram of the magnet 60 is shown in C of Fig. 1. Figure 5
[0020] As described above, the single power mechanism is adopted in the present application, so that the magnet 60 generates four kinds of movements, i.e. the magnet 60 revolves around the axis, the magnet 60 translates on the plane, the magnet 60 inclines and the magnet 60 rotates. The four kinds of movements are simple and controllable, and excellent magnetic force can be obtained by using few magnets 60 and power devices. The magnetic therapy device has better use effect.
[0021] It should be noted that when an element is referred to as being "on" another element, it can be directly on the other element or intervening elements can also be present. In addition, when an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements can also be present. In contrast, when an element is referred to as being "directly on" another element, there are no intervening elements present. The terms "vertical", "horizontal", "left", "right", and the like as used herein are used for explanation purposes only, and are not intended to be limiting. The terms "upper", "lower", "left", "right", "front", "rear", and the like as used herein are used for explanation purposes only, and are not intended to be limiting.
[0022] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description of the application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used in this description, the singular forms "a", "an" and "the" include plural references unless the context clearly dictates otherwise.
[0023] The above embodiments are only used for illustrating the present application, but not for limiting the present application. Those skilled in the art can make various changes and modifications without departing from the spirit and scope of the present application. Therefore, all equivalent technical solutions belong to the scope of the present application, and the patent protection scope of the present application should be defined by the claims.
Claims
1. A method for adjusting magnetic field lines of rotation, characterized in that: Connect the rotating device (10) to the rotating rod (30), and rotate... A first elastic element (50) is added between the end of the rotating rod (30) and the magnet (60), and the rotation speed of the rotating device (10) is adjusted to change the position of the rotating rod (30). The centrifugal force of the magnet (60) causes a change in the length of the first elastic element (50), which in turn changes the distance between the magnet (60) and the axis. The area of the magnetic field lines can be changed by adjusting the rotation speed; a rotating piece (70) is designed at the end of the first elastic element (50) and the second elastic element. The first elastic element (50) is rotatably connected to the rotating plate (70), and the magnet (60) is mounted on the rotating plate (70). One end of the component (80) is connected to the magnet (60), and the other end is connected to the first elastic component (50). The rotation device (10) is adjusted... The rotational speed changes the centrifugal force of the magnet (60), causing the magnet (60) to move away from the axis of rotation and simultaneously changing the length of the second elastic element (80). This achieves the change of the angle between the magnet (60) and the axis; the first elastic element (50) is rotatably connected to the rotating rod (30), and in the first elastic element... The end of the component (50) near the axis is designed with a friction rod (40). When the rotating rod (30) revolves, the friction rod (40) interacts with the rotating rod (30). The friction of the bottom friction disc (20) drives the first elastic element (50) and the second elastic element mounted on the first elastic element (50). (80), magnet (60), rotating plate (70) rotate.
Citation Information
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