Portable moxibustion magnetic therapy seat
The portable moxibustion magnetic therapy seat with integrated rotating magnetic module and static magnetic module solves the problems of poor magnetic therapy effect and unsatisfactory moxibustion thermal effect in existing devices, achieves the combined therapeutic effect of magnetic therapy and moxibustion, and improves portability and comfort of use.
Patent Information
- Application Number
- CN202422261755.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-04-01
- Filing Date
- 2024-09-14
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-09-14
AI Technical Summary
Existing moxibustion magnetic therapy devices have problems such as poor magnetic therapy effect, unsatisfactory moxibustion thermal effect and poor portability. In particular, the magnetic field strength is insufficient and unevenly distributed. The device is bulky and inconvenient to carry and use.
A convenient moxibustion magnetic therapy seat was designed, which combined the rotating magnetic module, static magnetic module, moxibustion fumigation module and control module. By precisely controlling the magnetic field intensity and temperature, the rotating magnetic field and the static magnetic field were integrated to optimize the magnetic field distribution, and uniform temperature distribution was achieved through the heating plate, moxibustion heat dissipation component and fan.
It achieves the combined therapeutic effect of magnetic therapy and moxibustion, improves the convenience and comfort of use, is applicable to a wide range of people, has significant and long-lasting magnetic field effects, the moxibustion fumigation process is simple and safe, and has a compact and portable structure.
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Figure CN223323772U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of physical therapy and health care, and in particular to a convenient moxibustion and magnetic therapy seat. Background Art
[0002] With the accelerating pace of life and increasing work pressure, modern people are increasingly emphasizing their health. This is especially true for those who suffer from sedentary lifestyles, sub-health conditions, and chronic illnesses, who are increasingly seeking relief from pain and improved quality of life. They are actively seeking non-drug, natural therapies to prevent disease and improve their physical condition. Medical research has found that microcirculatory disturbances are the root cause of all illnesses. Traditional Chinese Medicine (TCM) believes that the body's self-regulatory mechanisms are the best treatment. Therefore, promoting microcirculation and strengthening these mechanisms are inevitable trends in future healthcare.
[0003] As a green and side-effect-free therapy, moxibustion and magnetic therapy have become an important choice for modern people's supplementary treatment and health care due to their unique advantages. Moxibustion and magnetic therapy devices combine the thermal effect of moxibustion and the biological effect of magnetic therapy, aiming to improve health through dual effects. However, since integrating moxibustion and magnetic therapy into one device requires overcoming technical challenges, specifically, it is necessary to design a device that can stably generate the temperature required for moxa combustion and accurately control the magnetic field intensity. This is technically complex, so there are still few integrated moxibustion and magnetic therapy devices on the market. Moreover, existing moxibustion and magnetic therapy devices still have the following technical problems:
[0004] 1. The effect of magnetic therapy cannot meet the demand. Specifically, the effect of magnetic therapy is related to the intensity, gradient and distribution of the magnetic field. The magnetic field generated by existing moxibustion magnetic therapy devices still has technical defects such as insufficient intensity or uneven distribution, which may not achieve the expected magnetic therapy effect. Moreover, existing magnetic therapy devices are either single static magnetic therapy structures or single gyromagnetic magnetic therapy structures. The effect and mechanism of the combined use of static and gyromagnetic magnets have not been studied.
[0005] 2. The thermal effect of moxibustion is not ideal. Specifically, the design of existing moxibustion magnetic therapy devices or moxibustion devices does not fully consider the convenience and comfort of use, resulting in the device being too large and inconvenient to carry and use. Moreover, the bulky moxibustion device reduces the heating efficiency to a certain extent, and it is difficult to achieve uniform temperature distribution, resulting in an unsatisfactory thermal effect of moxibustion. Utility Model Content
[0006] In response to the above technical problems, the utility model proposes a convenient moxibustion and magnetic therapy seat, which aims to cleverly design an integrated device of moxibustion and magnetic therapy, greatly improving the portability of the moxibustion and magnetic therapy seat while achieving good moxibustion thermal effect and magnetic therapy effect, promoting human microcirculation more comprehensively, and helping to enhance the body's self-regulation mechanism.
[0007] In the first aspect, the present application provides a portable moxibustion magnetic therapy seat, including a gyromagnetic module, several static magnetic modules, a moxibustion fumigation module, a control module, a power supply module and a shell. The gyromagnetic module, several static magnetic modules, moxibustion fumigation modules, the control module and the power supply module are all fixedly installed in the shell, and the upper surface of the shell is provided with through holes matching the several static magnetic modules and the moxibustion fumigation modules. The gyromagnetic module is used to provide a rotating magnetic field. The gyromagnetic module and the moxibustion fumigation module are both located in the middle of the shell, and several static magnetic modules are distributed at both ends of the shell. The gyromagnetic module and the moxibustion fumigation module are both connected to the control module, and the power supply module supplies power to the gyromagnetic module, the moxibustion fumigation module and the control module.
[0008] In some embodiments, the gyromagnetic module is parallel to the lower surface of the shell, and several of the static magnetic modules are symmetrically distributed at both ends of the shell with the center line of the shell as the axis, and several of the static magnetic modules are perpendicular to the lower surface of the shell.
[0009] In some embodiments, the gyromagnetic module is arranged along the center line of the shell, the magnetic field direction of the gyromagnetic module rotates around the center line of the shell, the polarity of the same end of several static magnetic modules is the same, and the magnetic field direction of the static magnetic module is from bottom to top.
[0010] In some embodiments, the gyromagnetic module includes a dual-shaft motor and two magnets. The dual-shaft motor is arranged in a direction perpendicular to the center line of the shell. A rotating shaft is provided at both ends of the dual-shaft motor. The two magnets are respectively connected to the two rotating shaft keys. The two poles of the magnet are distributed on both sides of the magnet along the direction of the rotating shaft. The dual-shaft motor is connected to the control module, and the dual-shaft motor is used to drive the rotation of the rotating shaft to drive the magnet to rotate.
[0011] In some embodiments, the gyromagnetic module is arranged in a direction perpendicular to the center line of the shell, the magnetic field direction of the gyromagnetic module rotates around the perpendicular line of the center line of the shell, the polarity of the same end of several static magnetic modules is the same, and the magnetic field direction of the static magnetic module is from bottom to top.
[0012] In some embodiments, the gyromagnetic module includes a dual-shaft motor and two magnets. The dual-shaft motor is arranged in a direction perpendicular to the center line of the shell. A rotating shaft is provided at both ends of the dual-shaft motor. The two magnets are respectively connected to the two rotating shaft keys. The two poles of the magnet are distributed on both sides of the magnet along the direction of the rotating shaft. The micro brushless motor is connected to the control module, and the micro brushless motor is used to drive the rotation of the rotating shaft to drive the magnet to rotate.
[0013] In some embodiments, the moxibustion fumigation module includes a heating plate, a moxibustion warehouse heat dissipation component and a fan. The heating plate is installed inside the moxibustion warehouse heat dissipation component. The moxibustion warehouse heat dissipation component is used to place the moxibustion material and provide a volatilization channel. The fan is used to provide wind power to promote air flow inside the moxibustion warehouse heat dissipation component. The heating plate and the fan are both connected to the control module.
[0014] In some embodiments, the Ai Cang heat dissipation assembly includes an Ai Cang grille, an Ai Cang heat dissipation trough body and an Ai Cang cover. The heating plate is installed inside the Ai Cang grille. The Ai Cang grille is used to place moxibustion materials. The Ai Cang grille is installed inside the Ai Cang heat dissipation trough body. The upper end of the Ai Cang heat dissipation trough body is provided with an inwardly protruding heat dissipation air duct. The Ai Cang cover matches the central hollow formed by the heat dissipation air duct at the upper end of the Ai Cang heat dissipation trough body.
[0015] In some embodiments, the Ai Cang heat dissipation assembly includes an extended heat dissipation channel, which is fixedly installed in the middle of the shell and connected to one side of the Ai Cang heat dissipation trough body. A heat dissipation air duct is provided on the upper surface of the extended heat dissipation channel.
[0016] In some embodiments, the portable moxibustion magnetic therapy seat includes a far-infrared module, the extended heat dissipation channel is arranged along the center line of the shell between the rotating magnetic module and the moxa warehouse heat dissipation trough, and a through hole is provided in the middle of the heat dissipation duct on the upper surface of the extended heat dissipation channel. The far-infrared module is located in the through hole in the middle of the heat dissipation duct, and the far-infrared module is connected to the control module.
[0017] In some embodiments, a connecting ring is provided under the Ai Cang cover, the upper end of the connecting ring is connected to the Ai Cang cover, the upper end of the connecting ring is provided with an L-shaped suspension handle, the short handle of the L-shaped suspension handle is fixedly connected to the connecting ring, and the front end of the long handle of the L-shaped suspension handle is provided with a hook, and the heat dissipation duct at the upper end of the Ai Cang heat dissipation trough body is provided with a downwardly protruding clamping cantilever, and a clamping channel is formed between the clamping cantilever and the Ai Cang grille, and the clamping hook matches the clamping channel.
[0018] In some embodiments, the moxibustion magnetic therapy seat includes a remote control, which is communicatively connected to the control module. A cover plate and a storage slot for storing the remote control are provided on the side of the shell. The cover plate is hinged to the storage slot, and the cover plate is snap-connected to the shell.
[0019] The beneficial technical effects of the present utility model include at least:
[0020] 1. A portable moxibustion magnetic therapy seat is adopted. The rotating magnetic module and the moxibustion fumigation module are both located in the middle of the shell, and several static magnetic modules are distributed at both ends of the shell. The rotating magnetic module and the moxibustion fumigation module are both connected to the control module. The precise control of the magnetic field intensity and temperature in the moxibustion magnetic therapy seat is fully considered, so that the user can adjust the magnetic field intensity and the temperature of the moxibustion according to their own needs, thereby increasing the user's customized experience. At the same time, the portable moxibustion magnetic therapy seat designed in this application integrates moxibustion and magnetic therapy, and can directly provide a combined treatment effect without the user having to purchase multiple devices. It can meet the different needs of users and provide more use value. At the same time, the structure is more compact and portable, the use process is simplified, the convenience and comfort of use are improved, and it is suitable for a wide range of people.
[0021] 2. By placing the gyromagnetic module parallel to the lower surface of the shell, and distributing the static magnetic modules symmetrically at both ends of the shell with the shell midline as the axis, and making the static magnetic modules perpendicular to the lower surface of the shell, and combining the magnetic field direction design of the static magnetic module and the gyromagnetic module, the magnetic field strength of the moxibustion magnetic therapy seat is greatly optimized. The combination of static magnetic field and dynamic magnetic field produces a synergistic effect, making the effect of the magnetic field applied to the human meridians and acupuncture points more significant and lasting. This helps to reduce the interference of the dynamic magnetic field of the gyromagnetic module on the static magnetic module, and also reduces the influence of the magnetic field of the static magnetic module on the gyromagnetic module. At the same time, it realizes the effective layout of the dynamic magnetic field and the static magnetic field in a limited space, and improves the compactness of the moxibustion magnetic therapy seat.
[0022] 3. The dual-shaft motor drives the rotation of the two magnets, which greatly increases the range of the gyromagnetic effect and fits the position of the human legs. Compared with the gyromagnetic module arranged perpendicular to the center line of the shell, it is more ergonomic and can provide a more uniform and comprehensive magnetic therapy effect.
[0023] 4. Through the joint design of the heating plate, moxa warehouse heat dissipation component and fan in the moxibustion fumigation module, the temperature required for moxa combustion can be stably generated, which helps to guide the volatile components in the moxibustion material to be better distributed, adjust the volatilization rate of the moxibustion material, improve the fumigation effect, and make the moxibustion fumigation process simpler. Users can achieve effective moxibustion therapy without directly operating high-temperature moxibustion materials. The convenience and comfort of use are fully taken into consideration. At the same time, the volume of the moxibustion fumigation module is greatly reduced, the heating efficiency is improved to a certain extent, and it helps to achieve uniform temperature distribution in the moxibustion warehouse heat dissipation component to achieve a good moxibustion thermal effect.
[0024] Other features and advantages of the present invention will be disclosed in detail in the following specific embodiments and drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] The present invention will be further described below with reference to the accompanying drawings:
[0026] Figure 1 This is a structural schematic diagram of the convenient moxibustion magnetic therapy seat provided in Example 1 of the present utility model.
[0027] Figure 2 These are six structural views of the portable moxibustion and magnetic therapy seat provided in Example 1 of the present utility model.
[0028] Figure 3 This is an exploded view of the structure of the portable moxibustion and magnetic therapy seat provided in Example 1 of the present utility model.
[0029] Figure 4 This is a schematic structural diagram of the connecting ring of the Ai Cang cover provided in Example 1 of the present utility model.
[0030] Figure 5 This is a cross-sectional view of the installation structure of the connecting ring of the moxa chamber cover provided in Example 1 of the present utility model in the moxa fumigation module.
[0031] Figure 6 This is an exploded view of the structure of the portable moxibustion and magnetic therapy seat provided in Example 2 of the present utility model.
[0032] Figure 7 This is a cross-sectional view of the gyromagnetic module provided in Example 2 of the present utility model.
[0033] Figure 8 This is a schematic diagram of the storage slot structure of the shell provided in Example 3 of the present utility model.
[0034] Figure 9 The third embodiment of the present invention provides Figure 8 Schematic diagram of the storage slot structure of the shell after the remote control is placed.
[0035] Among them: 1. Static magnetic module, 2. Rotary magnetic module, 20. Rotary magnetic pressure plate, 21. Double-output shaft motor, 3. Moxibustion fumigation module, 30. Ai Cang heat dissipation component, 301. Ai Cang grille, 302. Ai Cang heat dissipation trough, 303. Ai Cang cover, 304. Connecting ring, 3041. L-shaped suspension handle, 3042. Hook, 3043. Snap-on cantilever, 305. Extended heat dissipation channel, 31. Heating plate, 32. Fan, 4. Far infrared module, 5. Power supply module, 6. Shell, 61. Cover, 62. Storage slot, 621. Elastic buffer, 622. Support, 7. Function mode button, 8. Time and temperature display panel, 9. Remote control. DETAILED DESCRIPTION
[0036] The following is an explanation and description of the technical solutions of the embodiments of the present invention in conjunction with the drawings of the embodiments of the present invention, but the following embodiments are only preferred embodiments of the present invention and are not exhaustive. Based on the embodiments in the embodiments, other embodiments obtained by those skilled in the art without creative work are all within the scope of protection of the present invention.
[0037] In the following description, terms such as "inside", "outside", "up", "down", "left", "right", etc. that indicate directions or positional relationships are only used to facilitate the description of the embodiments and simplify the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operate in a specific direction. Therefore, they should not be understood as limiting the present invention.
[0038] Example 1:
[0039] The present application embodiment provides a convenient moxibustion magnetic therapy seat. Figure 1 To the attached Figure 3 , including a gyromagnetic module 2, several static magnetic modules 1, moxibustion fumigation modules 3, a control module, a power supply module 5 and a shell 6. The gyromagnetic module 2, several static magnetic modules 1, moxibustion fumigation modules 3, the control module and the power supply module 5 are all fixedly installed in the shell 6. The upper surface of the shell 6 is provided with through holes matching the several static magnetic modules 1 and the moxibustion fumigation modules 3. The gyromagnetic module 2 is used to provide a rotating magnetic field. The gyromagnetic module 2 and the moxibustion fumigation module 3 are both located in the middle of the shell 6. Several static magnetic modules 1 are distributed at both ends of the shell 6. The gyromagnetic module 2 and the moxibustion fumigation module 3 are both connected to the control module. The power supply module 5 supplies power to the gyromagnetic module 2, the moxibustion fumigation module 3 and the control module.
[0040] It can be understood that the static magnetic module 1 is used to provide a stable static magnetic field. In this embodiment, the magnetic field strength of the magnet surface of the static magnetic module 1 can reach 5500GS, which continuously acts on the human body to help relax muscles, relieve fatigue, and have a certain effect on sedation. It also acts on local blood vessels through the magnetic field to promote blood flow.
[0041] It will be appreciated that in this embodiment, there is no limitation on the number of static magnetomodules 1 or their specific locations at both ends of the housing 6; they can be distributed within reach of the human buttocks. This embodiment, through the distributed design of the static magnetomodules 1, helps expand the distribution area and surface of the magnetic field, making the magnetic field more widespread. Preferably, the static magnetomodules 1 can be distributed at both ends of the housing 6 according to the acupuncture points on the human body.
[0042] It can be understood that the gyromagnetic module 2 provides a dynamic magnetic field and combines the control module to adjust the dynamic magnetic field. The magnetic field strength of the magnet surface can reach at least 6500GS, effectively exerting the high-intensity and high-penetration effect of gyromagnetic magnetic therapy, thereby stimulating blood vessel dilation and muscle relaxation, helping to promote blood circulation, and relieving muscle tension caused by maintaining the same posture for a long time. It has a positive effect on improving poor blood circulation in the lower limbs caused by sitting.
[0043] It is understood that in this embodiment, the gyromagnetic module 2 can be located at any position in the middle of the housing 6. Preferably, the gyromagnetic module 2 can be located at the location of the perineum of the human body. By designing the static magnetic module 1 and the gyromagnetic module 2 according to the distribution of acupuncture points on the human body, it can better meet the structural and functional requirements of the human body and improve treatment efficiency.
[0044] The power supply module 5 may be powered by a lithium battery pack, an external power supply, or other power supply implementation forms, which are not limited in this embodiment.
[0045] In this embodiment, the gyromagnetic module 2 and the moxibustion fumigation module 3 are both located in the middle of the shell 6, and a number of static magnetic modules 1 are distributed at both ends of the shell 6. The gyromagnetic module 2 and the moxibustion fumigation module 3 are both connected to the control module. This fully considers the precise control of the magnetic field strength and temperature in the moxibustion magnetic therapy seat, allowing users to adjust the magnetic field strength and the temperature of the moxibustion according to their own needs, thereby increasing the user's customized experience. Traditional large-scale moxibustion equipment is not easy to carry and use, while the portable moxibustion magnetic therapy seat designed in this embodiment integrates moxibustion and magnetic therapy, and can directly provide a combined treatment effect without the user having to purchase multiple devices. It can meet the different needs of users and provide more use value. At the same time, the structure is more compact and portable, the use process is simplified, the convenience and comfort of use are improved, and it is suitable for a wide range of people.
[0046] Furthermore, in this embodiment, the gyromagnetic module 2 is parallel to the lower surface of the shell 6 , and the static magnetomodules 1 are symmetrically distributed at both ends of the shell 6 with the center line of the shell 6 as the axis, and the static magnetomodules 1 are all perpendicular to the lower surface of the shell 6 .
[0047] It can be understood that when the portable moxibustion magnetic therapy seat is placed on a chair, the gyromagnetic module 2 is parallel to the lower surface of the shell 6, which means that the gyromagnetic module 2 is parallel to the chair surface, and several static magnetic modules 1 are perpendicular to the lower surface of the shell 6, which means that the static magnetic modules 1 are perpendicular to the chair surface.
[0048] Furthermore, in this embodiment, the gyromagnetic module 2 is arranged along the center line of the shell 6, the magnetic field direction of the gyromagnetic module 2 rotates around the center line of the shell, the polarity of the same end of several static magnetic modules 1 is the same, and the magnetic field direction of the static magnetic module 1 is from bottom to top.
[0049] It can be understood that the magnetic field direction of the gyromagnetic module 2 rotates around the centerline of the shell, with the north and south poles alternating. The polarity of the same end of the static magnetic module 1 is the same, which means that the north pole or south pole of the static magnetic module 1 is uniformly upward, and the magnetic field direction of the static magnetic module 1 is from bottom to top. The combination of the static magnetic field and the dynamic magnetic field produces a synergistic effect, making the effect of the magnetic field applied to the meridians and acupuncture points of the human body more significant and lasting.
[0050] In this embodiment, the gyromagnetic module 2 is parallel to the lower surface of the shell 6, and the static magnetic module 1 is symmetrically distributed at both ends of the shell 6 with the center line of the shell 6 as the axis, and the static magnetic modules 1 are perpendicular to the lower surface of the shell 6. Combined with the magnetic design of the static magnetic module 1 and the gyromagnetic module 2, the magnetic field strength of the moxibustion magnetic therapy seat is greatly optimized, and the combination of the static magnetic field and the dynamic magnetic field is used to produce a synergistic effect, so that the effect of the magnetic field applied to the meridians and acupoints of the human body is more significant and lasting, which helps to reduce the interference of the dynamic magnetic field of the gyromagnetic module 2 on the static magnetic module 1, and also reduces the influence of the magnetic field of the static magnetic module 1 on the gyromagnetic module 2. At the same time, it realizes the effective layout of the dynamic magnetic field and the static magnetic field in a limited space, thereby improving the compactness of the moxibustion magnetic therapy seat.
[0051] Further, in this embodiment, please refer to the attached Figure 3 The gyromagnetic module 2 includes a micro brushless motor, a rotating shaft and a magnet. The micro brushless motor is arranged along the center line direction of the shell 6. The rotating shaft is fixedly connected to the micro brushless motor. The magnet is key-connected to the rotating shaft. The two poles of the magnet are distributed on both sides of the magnet along the direction of the rotating shaft. The micro brushless motor is connected to the control module. The micro brushless motor is used to drive the rotation of the rotating shaft to drive the magnet to rotate to generate a rotating magnetic field.
[0052] The miniature brushless motor is small and lightweight, making it easy to integrate into the gyromagnetic module 2 and particularly suitable for portable or space-constrained applications. A key connection is a method of connecting mechanical parts, primarily used to transmit torque and axial force. In this embodiment, other connection methods can be used between the magnet and the rotating shaft, as long as the rotating shaft can transmit torque to the magnet. This embodiment does not limit this.
[0053] It is understood that the two poles of the magnet are distributed on both sides of the magnet along the direction of the rotation axis, that is, this embodiment does not specifically specify which side of the magnet is the S pole or the N pole. The direction of the magnetic field line is from the N pole to the S pole. Under the action of the micro brushless motor driving the rotation of the rotating shaft to drive the rotation of the magnet, the N pole and the S pole appear alternately, forming a magnetic field direction that rotates around the center line of the shell 6. For example, Figure 3 The figure shows the direction of the magnetic field generated by the gyromagnetic module when the micro brushless motor drives the magnet to rotate.
[0054] Specifically, the gyromagnetic module 2 is implemented by using a micro brushless motor to drive a rotating shaft. The magnets on the rotating shaft then generate a rotating magnetic field that rotates around the centerline of the housing 6. The strength of this rotating magnetic field is determined by the speed of the micro brushless motor. The micro brushless motor is connected to a control module, which can control the speed of the micro brushless motor to adjust the magnetic field strength of the gyromagnetic module 2. The method of using a control module to control the speed of the micro brushless motor to adjust the magnetic field strength of the gyromagnetic module 2 is conventional technology.
[0055] Furthermore, in this embodiment, a gyromagnetic pressure plate 20 is provided below the gyromagnetic module 2. The gyromagnetic pressure plate 20 is used to fix and stabilize the gyromagnetic module 2, thereby preventing the gyromagnetic module 2 from moving unnecessarily during operation. At the same time, the gyromagnetic pressure plate 20 provides additional structural support for the gyromagnetic module 2, thereby enhancing the stability of the gyromagnetic module 2.
[0056] Furthermore, in this embodiment, the gyromagnetic module 2 includes a gyromagnetic display unit connected to the control module, and the gyromagnetic display unit is used to display the operating state of the gyromagnetic module 2. For example, the gyromagnetic display unit can be an LED light board and a visual window.
[0057] Through the structural design of the gyromagnetic module 2, this embodiment can easily realize the adjustment of the operating state of the micro brushless motor, thereby ensuring the stability of the rotating magnetic field and the precise adjustment of the magnetic field strength, which helps to improve the treatment effect and allows users to adjust the intensity of magnetic therapy according to their own needs, thereby increasing the user's customized experience.
[0058] On the other hand, in this embodiment, please refer to the attached Figure 3 The moxibustion fumigation module 3 includes a heating plate 31, a moxibustion warehouse heat dissipation component 30 and a fan 32. The heating plate 31 is installed inside the moxibustion warehouse heat dissipation component 30. The moxibustion warehouse heat dissipation component 30 is used to place moxibustion materials and provide a volatilization channel. The fan 32 is used to provide wind power to promote air flow inside the moxibustion warehouse heat dissipation component 30. The heating plate 31 and the fan 32 are both connected to the control module.
[0059] The heating element 31 is an electric heating element that is heated by resistance heat generated when current passes through a conductor.
[0060] It is understandable that this embodiment does not limit the installation relationship of the fan 32, as long as it can provide wind power to promote the air flow inside the Ai Cang heat dissipation component 30.
[0061] Furthermore, in this embodiment, the moxibustion fumigation module 3 also includes an overheat protection unit to prevent damage to the moxibustion fumigation module 3 or the portable moxibustion magnetic therapy seat due to excessive temperatures or to prevent burns to the user. The overheat protection unit can be provided in the connection path between the heating plate 31 and the controller. When the temperature is too high, the overheat protection unit automatically disconnects the heating plate 31 from the controller, thereby stopping heating of the heating plate 31. The overheat protection unit includes, but is not limited to, a temperature fuse, a temperature controller, a thermal circuit breaker, a PTC thermistor, and the like, and is not limited to this embodiment.
[0062] In this embodiment, the combined design of the heating plate 31, the moxa chamber heat dissipation component 30, and the fan 32 in the moxibustion fumigation module 3 helps to improve the therapeutic effect and safety of the moxibustion fumigation module 3. Specifically:
[0063] 1. Since the heating sheet 31 is connected to the control module, the control module can control the heating power of the heating sheet 31 by adjusting the current flowing through the heating sheet 31, thereby controlling the output temperature of the heating sheet 31, achieving a stable temperature required for moxa combustion, while ensuring that the heating temperature of the moxibustion material is used within a safe range, and ensuring the safety of the moxibustion fumigation process. Among them, the control module controls the heating power of the heating sheet 31 by adjusting the current flowing through the heating sheet 31, which is an existing technology.
[0064] 2. The moxa storage heat dissipation component 30 provides a volatilization channel, which helps to guide the volatile components (such as moxa smoke) in the moxibustion material to be better distributed and improve the fumigation effect. At the same time, the moxa storage heat dissipation component 30 can effectively isolate the human body from the high-temperature moxibustion material to avoid burns.
[0065] 3. The connection between the fan 32 and the control module allows the user to adjust the wind speed as needed to control the surface air flow of the moxibustion material (such as moxa cakes) inside the moxibustion heat dissipation assembly 30, thereby accelerating its volatilization and achieving a more comfortable moxibustion fumigation experience. This is beneficial for moxibustion treatments that require higher concentrations of volatile components, as it can release the active ingredients more quickly.
[0066] 4. Fan 32 also helps control the temperature within the moxa chamber heat dissipation assembly 30 to a certain extent. By regulating the air volume of fan 32 through the control module, overheating can be avoided to a certain extent, reducing the risk of burns and ensuring the safety of the moxibustion fumigation process. The control module regulating the air volume of fan 32 is conventional technology.
[0067] 5. The combined design of the heating plate 31, the moxa chamber heat dissipation component 30 and the fan 32 makes the moxibustion fumigation process simpler. Users can achieve effective moxibustion therapy without directly operating high-temperature moxibustion materials. This fully takes into account the convenience and comfort of use. At the same time, it also greatly reduces the volume of the moxibustion fumigation module 3, improves the heating efficiency to a certain extent, and helps to achieve uniform temperature distribution in the moxibustion chamber heat dissipation component 30, thereby achieving a good moxibustion thermal effect.
[0068] Further, in this embodiment, please refer to the attached Figure 3 The Ai Cang heat dissipation assembly 30 includes an Ai Cang grille 301, an Ai Cang heat dissipation trough body 302 and an Ai Cang cover 303. The heating plate 31 is installed inside the Ai Cang grille 301. The Ai Cang grille 301 is used to place moxibustion materials. The Ai Cang grille 301 is installed inside the Ai Cang heat dissipation trough body 302. The upper end of the Ai Cang heat dissipation trough body 302 is provided with an inwardly protruding heat dissipation air duct. The Ai Cang cover 303 matches the middle hollow formed by the heat dissipation air duct at the upper end of the Ai Cang heat dissipation trough body 302.
[0069] Among them, grid structure is an architectural or engineering design element widely used in multiple industries, especially in buildings, bridges, automobiles, furniture and many other fields. It is usually composed of a series of vertical and horizontal strip elements.
[0070] Furthermore, in this embodiment, the Ai Cang heat dissipation assembly 30 includes an extended heat dissipation channel 305, which is fixedly installed in the middle of the shell 6 and connected to one side of the Ai Cang heat dissipation slot 302, and a heat dissipation air duct is provided on the upper surface of the extended heat dissipation channel 305.
[0071] In this embodiment, through the design of the moxa warehouse heat dissipation component 30, the moxa warehouse cover 303 directly above the moxa material is not hollowed out, but the heat dissipation channel set at the upper end of the moxa warehouse heat dissipation groove 302 and the upper surface of the extended heat dissipation channel 305 serves as a volatilization channel for the moxa material, which helps to evenly disperse heat and avoid local overheating, thereby effectively isolating the human body from the high-temperature moxa material, reducing the risk of direct contact between the user and high-temperature substances, and thus reducing the possibility of burns. At the same time, the design of the moxa warehouse heat dissipation component 30 helps to guide the volatile components (such as moxa smoke) in the moxa material to be better distributed, thereby improving the fumigation effect.
[0072] On the other hand, in this embodiment, please refer to the attached Figure 3 The convenient moxibustion magnetic therapy seat includes a far-infrared module 4, an extended heat dissipation channel 305 is arranged along the center line of the shell 6 between the gyromagnetic module 2 and the moxa warehouse heat dissipation tank 302, and a through hole is provided in the middle of the heat dissipation duct on the upper surface of the extended heat dissipation channel 305. The far-infrared module 4 is located in the through hole in the middle of the heat dissipation duct, and the far-infrared module 4 is connected to the control module.
[0073] Furthermore, in this embodiment, the far infrared module 4 includes a far infrared unit and a red light unit, both of which are connected to the control module, and the red light unit is used to display that the far infrared unit is in operation.
[0074] Far infrared (FIR) and red light have different wavelengths and physiological effects. Far infrared is a type of electromagnetic radiation with a wavelength longer than visible light, but it cannot be directly seen by the naked eye. It can penetrate objects, including human tissue, and be absorbed deeply. In the health and medical fields, it can promote blood circulation, relieve pain, and enhance immunity. Red light, on the other hand, has a longer wavelength and is also a type of electromagnetic radiation that can be absorbed by human tissue, helping to produce anti-inflammatory effects and promote blood circulation.
[0075] On the other hand, in this embodiment, please refer to the attached Figure 4 and attached Figure 5 A connecting ring 304 is provided under the Ai Cang cover 303, and the upper end of the connecting ring 304 is connected to the Ai Cang cover 303. An L-shaped hanging handle 3041 is provided at the upper end of the connecting ring 304. The short handle of the L-shaped hanging handle 3041 is fixedly connected to the connecting ring 304, and a hook 3042 is provided at the front end of the long handle of the L-shaped hanging handle 3041. The heat dissipation duct at the upper end of the Ai Cang heat dissipation slot 302 is provided with a downwardly protruding clipping cantilever 3043, and a clipping channel is formed between the clipping cantilever 3043 and the Ai Cang grille 301, and the clipping hook 3042 matches the clipping channel.
[0076] Furthermore, in this embodiment, the material of the connecting ring 304 can also be high-temperature resistant silicone material. The upper end of the connecting ring 304 is placed under the Ai Cang cover 303, ensuring the tightness of the connection between the Ai Cang cover 303 and the Ai Cang heat dissipation slot 302 while realizing the detachable and cleanable connecting ring 304.
[0077] The design of the connecting ring 304 below the Ai Cang cover 303 of this embodiment can ensure that the Ai Cang cover 303 and the Ai Cang heat dissipation trough body 302 are firmly connected together, making the connection between the Ai Cang cover 303 and the heat dissipation trough body more compact, which is conducive to saving space and reducing the overall volume of the moxibustion magnetic therapy seat. Moreover, the structure of the L-shaped hanging handle 3041 allows the Ai Cang cover 303 to be easily disassembled and replaced. At the same time, when the user gently pulls the hook 3042 to partially open the Ai Cang cover 303 to place or replace the moxibustion material, due to the snapping effect of the snapping channel on the hook 3042, the Ai Cang cover 303 still remains connected to the Ai Cang heat dissipation trough body 302, so that the user does not need an extra place to place the Ai Cang cover 303 during operation, avoiding the problem of not being able to find or lose the Ai Cang cover 303, and improving convenience.
[0078] On the other hand, in this embodiment, the portable moxibustion and magnetic therapy seat may include a function mode button 7 and a time and temperature display panel 8, and both the function mode button 7 and the time and temperature display panel 8 are connected to the control module.
[0079] On the other hand, in this embodiment, a detachable soft pad can be provided on the upper surface of the shell of the portable moxibustion magnetic therapy seat. The detachable soft pad is located at both ends of the shell with the center line of the shell as the axis. The detachable soft pad is provided with a through hole matching the static magnetic module, which is used to improve the comfort of the portable moxibustion magnetic therapy seat and facilitate the cleaning of the cushion without affecting the static magnetic effect.
[0080] Example 2:
[0081] This embodiment provides a portable moxibustion magnetic therapy seat, which partially improves the structure of a portable moxibustion magnetic therapy seat provided in Example 1. Therefore, this embodiment only describes the differences from Example 1. Other undescribed parts can refer to the contents of Example 1, and this embodiment will not be repeated here.
[0082] In this embodiment, please refer to the attached Figure 6 The gyromagnetic module 2 is arranged in a direction perpendicular to the center line of the shell 6. The magnetic field direction of the gyromagnetic module 2 rotates around the perpendicular line of the center line of the shell 6. The polarity of the same end of several static magnetic modules 1 is the same, and the magnetic field direction of the static magnetic module 1 is from bottom to top.
[0083] Further, in this embodiment, please refer to the attached Figure 7 The gyromagnetic module 2 includes a double-shaft motor 21 and two magnets. The double-shaft motor 21 is arranged in a direction perpendicular to the center line of the shell 6. A rotating shaft is provided at both ends of the double-shaft motor 21. The two rotating shafts are fixedly connected to the two ends of the double-shaft motor 21 respectively. The two magnets are keyed to the two rotating shafts respectively. The two poles of the magnet are distributed on both sides of the magnet along the direction of the rotating shaft. The double-shaft motor 21 is connected to the control module. The double-shaft motor 21 is used to drive the rotation of the rotating shaft to drive the magnet to rotate to generate a rotating magnetic field.
[0084] It can be understood that since the dual-shaft motor 21 is arranged in a direction perpendicular to the center line of the housing, both ends of the dual-shaft motor 21 are connected to magnets, and the two poles of the magnets are distributed on both sides of the magnets along the direction of the rotation axis. Figure 7 The shaded part and the blank part in the figure represent the two poles of the magnet respectively. This embodiment does not specifically stipulate which side of the magnet is the S pole or the N pole. The direction of the magnetic field line is from the N pole to the S pole. Under the action of the dual-output shaft motor 21 driving the rotation of the rotating shaft to drive the rotation of the magnet, the N pole and the S pole appear alternately. Under normal circumstances, when the current of the motor changes for one cycle, the axis of the magnetic field rotates through a pair of poles in space, forming a magnetic field direction rotating around the perpendicular line of the center line of the shell 6. Figure 7FIG. 2 shows the direction of the magnetic field generated by the gyromagnetic module 2 when the dual-shaft motor 21 drives the magnet to rotate.
[0085] It can be understood that the dual-shaft motor 21 used in this embodiment can drive the rotation of two magnets compared to the micro brushless motor in Example 1, so that the range of the gyromagnetic effect is greatly increased, which fits the position of the human legs. Compared with the gyromagnetic module 2 in Example 1 arranged in a direction perpendicular to the center line of the shell 6, it is more ergonomic and can provide a more uniform and comprehensive magnetic therapy effect.
[0086] Furthermore, in this embodiment, due to the increase in the range of action of the gyromagnetic module 2, in order to avoid adverse effects on the gyromagnetism (such as the gyromagnetic motor being unable to rotate, etc.), it is necessary to remove the static magnetomodule 1 that is close to the gyromagnetic module 2, that is, adaptively adjust the distribution of the static magnetomodule 1.
[0087] On the other hand, in this embodiment, since the motor volume of the gyromagnetic module becomes larger, the position of the gyromagnetic module 2 is far away from the visual window, and it is difficult for the user to directly see the rotation of the gyromagnet through the visual window. For this reason, this embodiment adds a reflective channel between the visual window and the gyromagnetic module 2 to form a reflective visual window.
[0088] Specifically, the reflection channel is a trough body that is closed on four sides (two side surfaces, the bottom surface, and the front surface facing and away from the gyromagnetic module). The reflection channel and the shell (serving as the top surface of the trough body) form a semi-enclosed space, and only the back surface facing and close to the gyromagnetic module is not closed. A reflector is provided in the reflection channel. The reflector is located at the angle formed by the bottom surface and the front surface of the reflection channel. The reflector forms a 45-degree angle with the center line of the visual window. When the gyromagnetism is working, the LED light is turned on. The light is set toward the gyromagnetic module to illuminate the gyromagnetic module, making the rotational working state of the gyromagnetic module clearer. The working state of the gyromagnet is reflected by the mirror surface of the reflector, so that the working state of the gyromagnet can be seen from the translucent mirror cover.
[0089] Furthermore, a light-shielding mat may be laid on the bottom surface of the reflection channel to prevent scattering of the light source in the reflection channel and improve the clarity of the display of the rotating working state.
[0090] On the other hand, in this embodiment, a heat insulating sheet is provided between the heating sheet 31 and the mugwort grille 301 to prevent the heating of the mugwort from adversely affecting the circuit below.
[0091] Example 3:
[0092] It is understandable that when the user uses the function mode button 7 while sitting on the portable moxibustion and magnetic therapy seat provided by the aforementioned embodiment, the button position may be difficult to reach because it is blocked by the legs, causing the user to adjust their posture during use, which is inconvenient. Moreover, since the button is easily touched by the legs, it may cause accidental button operation, thereby triggering unwanted functions and even causing the moxibustion and magnetic therapy seat to work abnormally, posing a potential safety risk. For this reason, compared with the aforementioned embodiment, the technical solution of this embodiment is that the portable moxibustion and magnetic therapy seat provided in this embodiment uses a remote control 9 to replace the function mode button 7, and designs a hidden storage structure for the remote control 9 in the portable moxibustion and magnetic therapy seat.
[0093] In this embodiment, please refer to the attached Figure 8 and attached Figure 9 The moxibustion magnetic therapy seat includes a remote control 9, which is communicatively connected to the control module. A cover plate 61 and a storage slot 62 for storing the remote control 9 are provided on the side of the shell 6. The cover plate 61 is hinged to the storage slot 62, and the cover plate 61 is snap-connected to the shell 6.
[0094] Furthermore, in this embodiment, an elastic buffer 621 is provided on the side of the storage slot 62 away from the cover 61. The elastic buffer 621 abuts against the remote control 9 during the process of placing the remote control 9 into the storage slot 62 and provides a buffering force for the remote control 9 to be placed into the storage slot 62, thereby protecting the remote control 9 from impact or wear during the storage process.
[0095] Furthermore, in this embodiment, a support member 622 is provided on the cover 61. The support member 622 is located at the hinge between the cover 61 and the storage slot 62 and is fixedly connected to the cover 61. When the remote control 9 is placed in the storage slot 62, the support member 622 abuts against the bottom surface of the remote control 9. Therefore, the support member 622 can push the remote control 9 into the storage slot 62 as the cover 61 is flipped up, so that the remote control 9 abuts against the elastic buffer member 621, ensuring that the remote control 9 stably enters the storage slot 62 during the flipping of the cover 61, and preventing the remote control 9 from slipping or falling out.
[0096] This embodiment uses a remote control 9 to replace the button structure in the prior application to avoid the inconvenience of button operation due to leg obstruction, and provides a storage slot 62 and a cover 61 for storing the remote control 9 on the side of the shell 6 to achieve hidden storage of the remote control 9. The design of the remote control 9 can reduce the misoperation of buttons caused by accidental touch and improve the accuracy of the use of the cushion. At the same time, storing the remote control 9 inside or on the side of the cushion can protect the remote control 9 from damage from the external environment, and also makes the appearance of the convenient moxibustion and magnetic therapy seat more neat, without abrupt buttons, and the overall design is smoother.
[0097] The above description is merely a description of the preferred embodiments disclosed in this application and the technical principles employed. Those skilled in the art should understand that the scope of protection provided by this disclosure is not limited to technical solutions formed by a specific combination of the aforementioned technical features, but also encompasses other technical solutions formed by any combination of the aforementioned technical features or their equivalents without departing from the scope of the disclosure. For example, a technical solution formed by replacing the aforementioned features with (but not limited to) technical features with similar functions disclosed in this disclosure.
[0098] In addition, although each operation is described in a specific order, this should not be understood as requiring these operations to be performed in the specific order shown or in a sequential order. Under certain circumstances, multitasking and parallel processing may be advantageous. Similarly, although some specific implementation details have been included in the above discussion, these should not be interpreted as limiting the scope of the present disclosure. Some features described in the context of a separate embodiment can also be implemented in a single embodiment in combination. On the contrary, the various features described in the context of a single embodiment can also be implemented in multiple embodiments individually or in any suitable sub-combination mode.
Claims
1. A portable moxibustion magnetic therapy seat, characterized in that: It includes a gyromagnetic module, several static magnetic modules, a moxibustion fumigation module, a control module, a power supply module and a shell. The gyromagnetic module, several static magnetic modules, moxibustion fumigation module, the control module and the power supply module are all fixedly installed in the shell. The upper surface of the shell is provided with through holes matching the several static magnetic modules and the moxibustion fumigation module. The gyromagnetic module is used to provide a rotating magnetic field. The gyromagnetic module and the moxibustion fumigation module are both located in the middle of the shell. Several static magnetic modules are distributed at both ends of the shell. The gyromagnetic module and the moxibustion fumigation module are both connected to the control module. The power supply module supplies power to the gyromagnetic module, the moxibustion fumigation module and the control module.
2. A portable moxibustion magnetic therapy seat according to claim 1, characterized in that: The gyromagnetic module is parallel to the lower surface of the shell, and the static magnetic modules are symmetrically distributed at both ends of the shell with the shell center line as the axis, and the static magnetic modules are all perpendicular to the lower surface of the shell.
3. A portable moxibustion magnetic therapy seat according to claim 2, characterized in that: The gyromagnetic module is arranged along the center line of the shell, and the magnetic field direction of the gyromagnetic module rotates around the center line of the shell. The polarity of the same end of several static magnetic modules is the same, and the magnetic field direction of the static magnetic module is from bottom to top.
4. A portable moxibustion magnetic therapy seat according to claim 3, characterized in that: The gyromagnetic module includes a micro brushless motor, a rotating shaft and a magnet. The micro brushless motor is arranged along the center line direction of the shell. The rotating shaft is fixedly connected to the micro brushless motor. The magnet is keyed to the rotating shaft. The two poles of the magnet are distributed on both sides of the magnet along the rotating shaft direction. The micro brushless motor is connected to the control module. The micro brushless motor is used to drive the rotation of the rotating shaft to drive the magnet to rotate.
5. The portable moxibustion magnetic therapy seat according to claim 2, characterized in that: The gyromagnetic module is arranged in a direction perpendicular to the center line of the shell, and the magnetic field direction of the gyromagnetic module rotates around the perpendicular line of the center line of the shell. The polarity of the same end of several static magnetic modules is the same, and the magnetic field direction of the static magnetic module is from bottom to top.
6. The portable moxibustion magnetic therapy seat according to claim 5, characterized in that: The gyromagnetic module includes a double-shaft motor and two magnets. The double-shaft motor is arranged in a direction perpendicular to the center line of the shell. A rotating shaft is provided at both ends of the double-shaft motor. The two magnets are respectively connected to the two rotating shaft keys. The two poles of the magnet are distributed on both sides of the magnet along the direction of the rotating shaft. The double-shaft motor is connected to the control module. The double-shaft motor is used to drive the rotation of the rotating shaft to drive the magnet to rotate.
7. The portable moxibustion magnetic therapy seat according to claim 1, characterized in that: The moxibustion fumigation module includes a heating plate, a moxibustion warehouse heat dissipation component and a fan. The heating plate is installed inside the moxibustion warehouse heat dissipation component. The moxibustion warehouse heat dissipation component is used to place moxibustion materials and provide a volatilization channel. The fan is used to provide wind power to promote air flow inside the moxibustion warehouse heat dissipation component. The heating plate and the fan are both connected to the control module.
8. The portable moxibustion magnetic therapy seat according to claim 7, characterized in that: The Ai Cang heat dissipation assembly includes an Ai Cang grille, an Ai Cang heat dissipation trough body and an Ai Cang cover. The heating plate is installed inside the Ai Cang grille. The Ai Cang grille is used to place moxibustion materials. The Ai Cang grille is installed inside the Ai Cang heat dissipation trough body. The upper end of the Ai Cang heat dissipation trough body is provided with an inwardly protruding heat dissipation duct. The Ai Cang cover matches the central hollow formed by the heat dissipation duct at the upper end of the Ai Cang heat dissipation trough body.
9. The portable moxibustion magnetic therapy seat according to claim 8, characterized in that: The Ai Cang heat dissipation assembly includes an extended heat dissipation channel, which is fixedly installed in the middle of the shell and connected to one side of the Ai Cang heat dissipation tank body. A heat dissipation air duct is provided on the upper surface of the extended heat dissipation channel.
10. The portable moxibustion magnetic therapy seat according to claim 9, characterized in that: The portable moxibustion magnetic therapy seat includes a far-infrared module. The extended heat dissipation channel is arranged along the center line of the shell between the gyromagnetic module and the moxa warehouse heat dissipation tank. A through hole is provided in the middle of the heat dissipation duct on the upper surface of the extended heat dissipation channel. The far-infrared module is located in the through hole in the middle of the heat dissipation duct. The far-infrared module is connected to the control module.
11. The portable moxibustion magnetic therapy seat according to claim 8, characterized in that: A connecting ring is provided under the Ai Cang cover, and the upper end of the connecting ring is connected to the Ai Cang cover. An L-shaped hanging handle is provided at the upper end of the connecting ring. The short handle of the L-shaped hanging handle is fixedly connected to the connecting ring, and a hook is provided at the front end of the long handle of the L-shaped hanging handle. The heat dissipation duct at the upper end of the Ai Cang heat dissipation trough body is provided with a downwardly protruding clamping cantilever, and a clamping channel is formed between the clamping cantilever and the Ai Cang grille, and the clamping hook matches the clamping channel.
12. The portable moxibustion magnetic therapy seat according to claim 1, characterized in that: The moxibustion magnetic therapy seat includes a remote control, which is communicatively connected to the control module. A cover plate and a storage slot for storing the remote control are provided on the side of the shell. The cover plate is hinged to the storage slot and is snap-connected to the shell.