Moving cup

By adding moisturizing cream to electric cupping and utilizing the liquefaction of heating pads and the microcurrent of pulsed metal plates, the problem of poor lubrication effect is solved, improving sliding comfort and user experience, and promoting local blood circulation.

CN223995212UActive Publication Date: 2026-03-17HEFEI HEZHENG MEDICAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

Existing electric cupping methods suffer from poor lubrication during the sliding process, especially in areas with skin folds where rolling resistance is easily generated. Furthermore, when combined with electronic pulses, it is necessary to apply a moisturizing cream to reduce discomfort.

Method used

The method involves adding moisturizing cream into the placement tank and liquefying it through a heating element to form a uniform lubricating film. Combined with a pulsed metal plate generating a microcurrent, the moisturizing cream is evenly distributed through symmetrically arranged placement tanks, preventing local accumulation. At the same time, the heating element enhances blood circulation and the diffusion of the moisturizing cream.

Benefits of technology

It significantly improves lubrication, reduces the jerking sensation during cupping, enhances the user experience, and promotes local blood circulation and comfort through the deep diffusion of the moisturizing cream and microcurrent stimulation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of physiotherapy equipment, and discloses a wandering cup which comprises a main shell, a lower shell and a physiotherapy assembly arranged at the bottom end of the lower shell, and the main shell is internally provided with an electric power assembly. The physiotherapy assembly comprises two pulse metal sheets symmetrically fixed to the bottom end of the lower shell, placing grooves symmetrically formed in the bottom faces of the pulse metal sheets, and heating sheets located at the upper ends of the pulse metal sheets. The skin moistening cream is added into the containing grooves, the heating pieces are matched to enable the skin moistening cream to be heated and liquefied, a uniform lubricating film is formed, skin moistening cream molecules diffuse to the deep layer of the skin along with the temperature gradient, the skin moistening cream is distributed more evenly through the symmetrically-arranged containing grooves, the lubricating effect is improved, and unstable cupping adsorption caused by local accumulation is prevented.
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Description

Technical Field

[0001] This utility model relates to the field of physiotherapy equipment technology, and in particular to a mobile cupping method. Background Technology

[0002] Cupping, also known as horn cupping or fire cupping therapy, uses cups as tools. Burning the cups expels air, creating negative pressure that causes the cups to adhere to acupoints or other areas on the skin, stimulating the skin and causing congestion and bruising to prevent and treat diseases. Electric cupping is a modern upgrade of traditional cupping therapy. It uses electric devices to achieve negative pressure suction and combines technology to optimize the user experience and therapeutic effects. Its core features include precise pressure control, convenient operation, and multi-functional modes, making it suitable for both home healthcare and professional medical settings.

[0003] Current electric cupping devices achieve their sliding effect on the body by making the contact parts relatively smooth. However, in actual use, due to interference from skin texture and sweat secretion, the difference between the static and dynamic friction coefficients is insufficient, resulting in noticeable jerking during the starting and stopping phases. Some devices add small beads to the contact parts to aid sliding. Although ceramic or steel micro-balls are arranged in a dot matrix, limitations in the machining precision of the raceway and the amount of lubricant can easily cause rolling resistance in skin folds, resulting in generally poor lubrication in existing products. Furthermore, if existing cupping devices are to be combined with electronic pulses, it is also necessary to apply a moisturizing cream evenly to the skin beforehand to reduce discomfort from the electronic pulses.

[0004] The information disclosed above in this background section is only intended to enhance the understanding of the background section of this utility model, and therefore may include prior art that is not known to those skilled in the art. Utility Model Content

[0005] To address the problem of poor lubrication in existing electric cupping devices, this invention provides a mobile cupping method.

[0006] The mobile cupping method provided by this utility model adopts the following technical solution:

[0007] The mobile cupping device includes a main shell and a lower shell. The main shell contains an electrical component, and the lower shell also includes a physiotherapy component located at the bottom. The physiotherapy component includes two symmetrically fixed pulse metal plates at the bottom of the lower shell, symmetrically opened placement slots on the bottom surface of the pulse metal plates, and a heating plate located on the upper end of the pulse metal plates. The heating plate heats the moisturizing cream in the placement slots, causing it to liquefy and form a uniform lubricating film. The moisturizing cream gradually diffuses into the deep layers of the skin as the temperature gradient changes. The symmetrical placement slots ensure even distribution of the moisturizing cream and increase the lubricating effect, preventing local accumulation.

[0008] Furthermore, the physiotherapy component also includes a silicone nozzle, a silicone nozzle mounted on the upper end of the heating element, the heating element being located between the pulse metal plate and the lower housing, and a filter sponge being installed inside the silicone nozzle.

[0009] Furthermore, an adjustment component is located on the upper half of the main housing. The adjustment component is electrically connected to the power component. Two sets of pulse metal plates are electrically connected to the adjustment component and can act as positive and negative electrodes to conduct electricity. When the positive and negative electrodes come into contact with the skin after being energized, a microcurrent will be generated, which will produce a tingling sensation. The pulse metal plates can conduct the EMS electric pulse current generated by the motherboard into the human body through the electrode plates. The moisturizing cream has conductive properties and can more effectively contact the human body. Contact with oily skin will reduce the stinging sensation of the electric pulse. At the same time, the cream remaining in the groove can be slowly released onto the skin surface.

[0010] Furthermore, the contact surface between the heating element and the pulse metal plate is provided with a groove that matches the placement slot. The heating element enhances local blood circulation through heat conduction and causes the moisturizing cream to liquefy upon heating.

[0011] Furthermore, a display component is provided at the upper end of the main housing, the bottom of the power component is fixedly connected to the lower housing, and the silicone nozzle is located inside the power component.

[0012] Furthermore, the placement slot located at the bottom of the same pulse metal sheet can be provided with multiple slots.

[0013] In summary, this utility model has the following beneficial technical effects:

[0014] This invention relates to a mobile cupping method. By adding a moisturizing cream to the placement slots and using a heating element to liquefy it, a uniform lubricating film is formed. The cream molecules diffuse into the deeper layers of the skin along the temperature gradient. The symmetrically arranged placement slots ensure a more even distribution of the cream, increasing lubrication and preventing localized accumulation that could lead to unstable cupping. Simultaneously, a pulse metal plate, when energized, generates an EMS electrical pulse current that is introduced into the body through skin contact, simultaneously raising the temperature and promoting capillary dilation. The liquefaction rate of the cream is further accelerated as the temperature continues to rise. Furthermore, a set of placement slots can be configured with two slots, allowing users to freely choose and combine different moisturizing creams, further enhancing the user experience and providing diverse options. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the main structure of this utility model;

[0016] Figure 2 This is a schematic diagram of the bottom structure of the main body of this utility model;

[0017] Figure 3 This is an exploded view of the internal structure of the main body of this utility model;

[0018] Figure 4 This is a schematic diagram of the display component and adjustment component of this utility model;

[0019] Figure 5 This is a schematic diagram of the structure of the power component of this utility model;

[0020] Figure 6 This is a schematic diagram of the structure of the physiotherapy component of this utility model;

[0021] Figure 7 This is a schematic diagram of the storage component structure of this utility model.

[0022] Explanation of reference numerals in the attached drawings: 1. Main housing; 2. Lower housing; 3. Display component; 4. Adjustment component; 5. Physiotherapy component; 51. Pulse metal plate; 52. Placement slot; 53. Heating plate; 54. Air nozzle silicone part; 55. Filter sponge; 6. Power component; 7. Storage component. Detailed Implementation

[0023] To make the technical means, technical features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0024] Example 1: As Figure 1-6 As shown, this utility model embodiment provides a mobile cupping therapy, including a main shell 1 and a lower shell 2. The main shell 1 is equipped with an electrical component 6, and the lower shell 2 is equipped with a physiotherapy component 5 at the bottom. The physiotherapy component 5 includes two symmetrically fixed pulse metal plates 51 at the bottom of the lower shell 2, placement grooves 52 symmetrically opened on the bottom surface of the pulse metal plates 51, and a heating plate 53 located at the upper end of the pulse metal plates 51. The heating plate 53 heats the moisturizing cream in the placement groove 52 to liquefy it and form a uniform lubricating film. The moisturizing cream gradually diffuses into the deep layer of the skin with the change of temperature gradient. By symmetrically arranging the placement grooves 52, the moisturizing cream is evenly distributed and the lubrication effect is increased to avoid local accumulation.

[0025] Specifically, the main housing 1 is used to install the various internal components and is easy for staff to operate by hand during use. The lower housing 2 works with the main housing 1 to form a seal, which helps to protect the internal components and is also used to install the physiotherapy component 5. The display component 3 is used to display the parameters of pressure, duration, and mode. The adjustment component 4 is used to adjust the actual parameters of pressure, duration, and mode. As a component that comes into contact with the body, the physiotherapy component 5 improves the user experience through its internal structural design combined with lubrication, heat therapy, and electrical pulses.

[0026] In this embodiment, as Figure 4As shown, the main housing 1 has a display component 3 on its upper end and an adjustment component 4 on one side of the main housing 1. The internal structure of the display component 3, from top to bottom, includes a display screen cover, a top button, a top electroplated part, and a PCB button. The internal structure of the adjustment component 4, from left to right, includes a knob, a TYPE-C silicone decorative plug, a racetrack-shaped exterior part, a PCB fixing conversion part, and a speaker.

[0027] In this embodiment, the physiotherapy component 5 also includes a nozzle silicone part 54. The nozzle silicone part 54 is provided on the upper end of the heating element 53. The heating element 53 is located between the pulse metal piece 51 and the lower housing 2. A filter sponge 55 is provided inside the nozzle silicone part 54. An adjustment component 4 is provided on one side of the main housing 1, located in the upper half of the main housing 1. The adjustment component 4 is electrically connected to the power component 6. The contact surface between the heating element 53 and the pulse metal piece 51 is provided with a groove that matches the placement groove 52.

[0028] Specifically, the placement groove 52 is arranged in an arc shape, and two sets of pulse metal plates 51 are electrically connected to the adjustment component 4 and can act as positive and negative electrodes for conduction. When energized, the positive and negative electrodes generate a microcurrent after contacting the skin, producing a tingling sensation. The pulse metal plates 51 can conduct the EMS electrical pulse current generated by the motherboard into the human body through the electrode plates. The moisturizing cream has conductive properties, which allows the pulse metal plates 51 to contact the human body more effectively and improves the conductivity of both. Contact with oily skin reduces the stinging sensation of the electrical pulse, and the cream remaining in the groove can be slowly released into the skin. On the surface, the placement groove 52 prevents the moisturizing cream from staining clothing, and the moisturizing cream molecules diffuse into the deep layers of the skin with the temperature gradient, achieving the dual effects of moisturizing and transdermal absorption. The symmetrical arrangement of the placement groove 52 makes the moisturizing cream more evenly distributed and increases the lubrication effect, preventing local accumulation that could lead to unstable cupping adsorption. The heating element 53 enhances local blood circulation through heat conduction and slowly liquefies the moisturizing cream. The silicone nozzle part 54 maintains airtightness to prevent the negative pressure adsorption force from being too large or too small. The filter sponge 55 filters impurities carried during negative pressure adsorption, preventing them from being sucked into the equipment and causing blockages or other problems.

[0029] In this embodiment, as Figure 5 As shown, the bottom of the power assembly 6 is fixedly connected to the lower housing 2, and the air nozzle silicone part 54 is located inside the power assembly 6. The power assembly 6 includes a battery, an air pump, a solenoid valve and a bottom electroplated part from top to bottom.

[0030] Example 2: It is basically the same as Example 1, except that the placement groove 52 located at the bottom of the same pulse metal sheet 51 can also be provided with multiple slots, each slot can hold different kinds of moisturizing cream, allowing users to freely combine multiple moisturizing creams to further improve the user experience and provide users with diversified choices.

[0031] Example 3: Figure 7As shown, based on Embodiment 1 or Embodiment 2, it also includes a storage component 7. The storage component 7 includes, from top to bottom, a transparent jar, a transparent silicone stopper, and a transparent lid. The storage component 7 is used to store the electric cupping device after use, so as to prevent the precision components inside the electric cupping device from being corroded by environmental humidity and dust.

[0032] Working principle: First, the staff places the desired moisturizing cream into the placement slot 52 at the bottom of the electric cupping jar. Parameters are set according to the user's selection via the adjustment component 4, and displayed in real-time via the display component 3. Next, a stable negative pressure is generated by activating the air pump, and the negative pressure is adjusted in real-time via a solenoid valve to maintain a stable value. Then, the heating element 53 enhances local blood circulation through heat conduction, causing the moisturizing cream to slowly liquefy. Simultaneously, when the pulse metal plate 51 is energized, the positive and negative electrodes generate a microcurrent upon contact with the skin, producing a tingling sensation. Simultaneous heating promotes capillary dilation, and the liquefaction rate of the moisturizing cream is further accelerated as the temperature rises. The moisturizing cream molecules diffuse into the deeper layers of the skin along the temperature gradient, achieving both moisturizing and transdermal absorption effects. The symmetrical placement slots 52 ensure a more even distribution of the moisturizing cream, preventing local accumulation that could lead to unstable cupping adhesion. Afterwards, the staff performs subsequent procedures. Once the cupping therapy is complete, the electric cupping jar can be stored using the storage component 7 to prevent the delicate components from being corroded by environmental humidity and dust.

[0033] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A walking cup, comprising a main shell (1) and a lower shell (2), the main shell (1) is internally provided with an electric power assembly (6), characterized in that: The physiotherapy assembly (5) is arranged at the bottom end of the lower shell (2); The physiotherapy assembly (5) comprises two symmetrical pulse metal sheets (51) fixed at the bottom end of the lower shell (2), symmetrical placing grooves (52) arranged at the bottom surface of the pulse metal sheets (51), and heating sheets (53) arranged at the upper end of the pulse metal sheets (51). The placing grooves (52) are heated by the heating sheets (53) to liquefy the skin cream, form a uniform lubricating film, and diffuse to the deep layer of the skin along with the change of the temperature gradient. The symmetrical arrangement of the placing grooves (52) can uniformly distribute the skin cream and increase the lubricating effect to avoid local accumulation.

2. The ambulatory cupping device of claim 1, wherein: The physiotherapy assembly (5) further comprises an air nozzle silica gel part (54), and the air nozzle silica gel part (54) is arranged at the upper end of the heating sheet (53). The heating sheet (53) is arranged between the pulse metal sheet (51) and the lower shell (2), and the air nozzle silica gel part (54) is internally provided with a filter sponge (55).

3. The ambulatory cupping device of claim 1, wherein: The main shell (1) is provided with an adjusting assembly (4) arranged at the upper half of the main shell (1). The adjusting assembly (4) is electrically connected to the power assembly (6), and the two groups of pulse metal sheets (51) are electrically connected to the adjusting assembly (4) and can be used as positive and negative electrodes for conduction. When the pulse metal sheets (51) are electrified, the ems electric pulse current is generated and introduced into the human body through the skin contact.

4. The ambulatory cupping device of claim 2, wherein: The contact surface of the heating sheet (53) and the pulse metal sheet (51) is provided with a groove matched with the placing groove (52). The heating sheet (53) enhances the local blood circulation through heat conduction and liquefies the skin cream.

5. The ambulatory cupping device of claim 3, wherein: The main shell (1) is provided with a display assembly (3) at the upper end. The bottom of the power assembly (6) is fixedly connected to the lower shell (2), and the air nozzle silica gel part (54) is arranged in the power assembly (6).

6. The ambulatory cupping device of claim 1, wherein: The placing grooves (52) arranged at the bottom of the same pulse metal sheet (51) can be provided with a plurality of groove chambers.