Cupping tools

CN224628255UActive Publication Date: 2026-08-14FOSHAN RUICHU TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

由于燃火具有安全隐患,目前常见的拔罐器具一般采用抽气产生负压的方式,抽气式拔罐器具在抽气时需调节拔罐杯内的气压,一般都设置有泄气阀,对于泄气阀管路的设计业内较常见采用三通阀结构,增加了阀体与连接管路,使得整体结构较为复杂;且目前的拔罐器具仅用于拔罐功能,理疗功能较为单一

Benefits of technology

[0015]相较于现有技术,本实用新型拔罐器具,既可作为拔罐器具,又可作为按摩器具,整体结构简单,通过将抽气管、泄压管连接至抽气室,管路连接结构的结构简单,在抽气时对抽气室内的气压控制方便。

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model provides a cupping device, including a shell, a massage component, a cupping unit, and a suction assembly. The shell has a bottom shell, and a suction chamber is formed on the lower surface of the bottom shell. The suction assembly includes a suction pipe, an air pump, a pressure relief pipe, and a pressure relief valve. The suction pipe and the pressure relief pipe are installed on the upper surface of the bottom shell and communicate with the suction chamber. The air pump and the pressure relief valve are installed inside the shell. The air pump is connected to the suction pipe, and the pressure relief valve is connected to the pressure relief pipe. The massage component is installed on the lower surface of the bottom shell and surrounds the suction chamber. The cupping unit includes a cupping cup and a one-way air guide component installed opposite to the cup opening. One end of the one-way air guide component is sealed and detachably connected to the suction chamber. The cupping device provided by this utility model can be used as both a cupping device and a massage device. The overall structure is simple, and the pressure during suction can be detected in real time, and the air pressure in the suction chamber can be easily controlled during suction.
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Description

Technical Field

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

[0002] Cupping is a common physiotherapy method. It is a traditional Chinese medicine therapy that uses cups as tools and employs methods such as burning or suction to create negative pressure, causing the cups to adhere to the body surface and create local blood stasis. This is believed to achieve effects such as clearing the meridians, promoting blood circulation, reducing swelling and pain, and dispelling wind and cold. Due to the safety hazards of burning, most common cupping devices currently use suction to create negative pressure. Suction-type cupping devices require adjusting the air pressure inside the cup during suction, and are generally equipped with a vent valve. The industry commonly uses a three-way valve structure for the vent valve pipeline design, which increases the complexity of the overall structure due to the added valve body and connecting pipeline. Furthermore, current cupping devices are only used for cupping, and their physiotherapy function is relatively limited. Utility Model Content

[0003] In view of the above, this utility model provides a multifunctional cupping device with simplified pipeline design and convenient air pressure regulation.

[0004] The technical solution involved in this utility model is:

[0005] A cupping device includes a shell, a massage component, a cupping unit, and a suction assembly. The shell has a bottom shell with a suction chamber formed on its lower surface. The suction assembly includes a suction pipe, an air pump, a pressure relief pipe, and a pressure relief valve. The suction pipe and the pressure relief pipe are installed on the upper surface of the bottom shell and communicate with the suction chamber. The air pump and the pressure relief valve are installed inside the shell. The air pump is connected to the suction pipe, and the pressure relief valve is connected to the pressure relief pipe. The massage component is installed on the lower surface of the bottom shell. The cupping unit includes a cupping cup and a one-way air guide assembly installed at the bottom of the cupping cup. The one-way air guide assembly of the cupping unit passes through the massage component and is pluggably connected to the suction chamber. The air pump draws air to create a negative pressure inside the cupping cup, causing the cupping cup to adhere to the surface of the object. The one-way air guide assembly prevents gas backflow. The pressure relief valve is used to regulate the air pressure in the suction chamber.

[0006] Furthermore, the air extraction assembly includes a detection tube and a pressure measuring device. The detection tube is installed on the upper surface of the bottom shell and communicates with the air extraction chamber. The detection tube is connected to the pressure measuring device to detect the air pressure in the air extraction chamber.

[0007] Furthermore, the cupping device includes a circuit board and a support base. The support base is fixedly mounted on the bottom shell and supports the circuit board. An air pump, a pressure relief valve, and a pressure measuring device are mounted on the circuit board.

[0008] Furthermore, the cupping device includes a light wave therapy structure, which includes a light therapy lamp. The light therapy lamp is positioned above the bottom shell corresponding to the outer periphery of the massage piece. The light emitted by the light therapy lamp passes through the bottom shell to achieve light wave therapy.

[0009] Furthermore, the cupping device includes an electrotherapy structure, which includes a microelectric element embedded in the massage element.

[0010] Furthermore, the cupping device includes a heating structure, which includes a heating element installed at the connection between the massage element and the bottom shell for heating the massage element.

[0011] Furthermore, the massage element is a ring-shaped body made of Bian stone.

[0012] Furthermore, the air pump is equipped with a drain pipe, and a drain pipe head is provided on the periphery of the bottom shell. The drain pipe head is connected to the drain pipe, and one end of the drain pipe head is connected to the outside of the bottom shell.

[0013] Furthermore, the cupping device includes a primary filter structure, which is installed in the suction chamber so that the airflow from the unidirectional air guide assembly can pass through it during suction.

[0014] Furthermore, the primary filter structure includes an elastic sleeve and a primary filter element. The elastic sleeve is installed in elastic abutment against the wall of the extraction chamber. An air-permeable carrier plate is provided inside the elastic sleeve, dividing the elastic sleeve into upper and lower ends. The primary filter element is installed at the upper end, and the one-way air guide assembly is connected to the lower end.

[0015] Compared with the existing technology, the cupping device of this utility model can be used as both a cupping device and a massage device. The overall structure is simple. By connecting the air suction pipe and the pressure relief pipe to the air suction chamber, the pipe connection structure is simple and the air pressure in the air suction chamber is easy to control during air suction. Attached Figure Description

[0016] Figure 1 This is a perspective view of the multifunctional physiotherapy device of this utility model;

[0017] Figure 2 Exploded view of a multifunctional physiotherapy device;

[0018] Figure 3 Cross-sectional view of a multifunctional physiotherapy device;

[0019] Figure 4 This is a three-dimensional view of the bottom shell;

[0020] Figure 5 This is a three-dimensional view of the tank unit;

[0021] Figure 6 This is an exploded view (including partial section view) of the tank unit;

[0022] Figure 7 This is a cross-sectional view of the tank unit;

[0023] Figure 8 A three-dimensional view of the layout of components on the upper surface of the bottom shell;

[0024] Figure 9 A three-dimensional view of the layout of components on the lower surface of the bottom shell;

[0025] Figure 10 A partial sectional view of the bottom shell on which the cupping unit is installed;

[0026] In the diagram: 10 housing, 20 massage component, 30 cupping unit, 11 bottom shell, 111 suction chamber, 31 cupping cup, 32 one-way air guide assembly, 321 insertion pipe, 322 sliding plug, 3221 hollow channel, 3211 inner wall ring, 3212 gap groove, 41 suction pipe, 411 connecting chamber pipe section, 412 connecting pump pipe section, 42 air pump, 43 pressure relief pipe, 44 detection pipe, 45 pressure relief valve, 46 pressure measuring device, 47 drain pipe, 48 drain pipe head, 51 primary filter structure, 52 fine filter structure, 511 elastic sleeve, 512 primary filter element, 5111 lug, 61 circuit board, 62 support base, 71 phototherapy lamp, 621 light guide ring groove, 81 micro-electrode, 91 heating element, 92 temperature sensing element, 12 main housing, 121 battery, 122 function button, 13 top shell, 521 fine filter main body. Detailed Implementation

[0027] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and are not intended to limit the scope of protection of the present invention.

[0028] Please see Figure 1 This utility model provides a cupping device, including a housing 10, a massage component 20, a cupping unit 30, and a suction assembly. The massage component 20 is disposed at the bottom end of the housing 10. One end of the cupping unit 30 passes through the massage component 20 and is detachably inserted into the bottom surface of the housing 10. The suction assembly is installed inside the housing 10 to evacuate air from the cupping unit 30, creating a negative pressure inside the cupping unit 30 and adhering it to the surface of an object. By detachably inserting the cupping unit 30 into the bottom surface of the housing 10, multiple cups can be applied simultaneously on the body surface, allowing for simultaneous cupping therapy with multiple cups adhered to the body. After removing the cupping unit 30, it can be used as both a cupping tool and a massage device.

[0029] Please see Figures 2-4The housing 10 has a bottom shell 11, and an air extraction chamber 111 is formed on the lower surface of the bottom shell 11. In this embodiment, the lower surface of the bottom shell 11 is recessed upward to form the air extraction chamber 111, which is a cylindrical shape with the opening facing downward and the top closed. Correspondingly, the upper surface of the bottom shell 11 is raised to form a cylindrical body with the top closed.

[0030] The massage element 20 is fixedly installed on the lower surface of the bottom shell 11. The massage element 20 has a perforation that corresponds to the opening end of the air extraction chamber 111, so that the tank unit 30 can pass through the perforation of the massage element 20 and connect to the air extraction chamber 111. The massage element 20 is preferably made of Bian stone. In this embodiment, the massage element 20 is ring-shaped. Understandably, the massage element 20 can also be an elliptical, square, polygonal or other regular or irregular shapes, as long as it is convenient for massage.

[0031] Please see Figures 5-7 The cupping unit 30 includes a cupping cup 31 and a one-way air guide assembly 32 installed at the bottom of the cupping cup 31. The cupping cup 31 is connected to the suction chamber 111 in a sealed and pluggable manner through the one-way air guide assembly 32. By suctioning air through the suction assembly, the gas inside the cupping cup 31 flows out through the one-way air guide assembly 32, creating a negative pressure inside the cup, thereby causing the cupping cup 31 to adhere to the surface of the object. The one-way air guide assembly 32 also prevents the gas from flowing back.

[0032] In this invention, the one-way air guide assembly 32 includes a connector 321 and a slide plug 322. The connector 321 is integrally erected on the bottom surface of the cupping cup 31 and penetrates the bottom wall of the cupping cup 31. An inner wall ring 3211 is integrally formed on the inner wall of the connector 321. The end face of the inner wall ring 3211 facing the cup opening has a plurality of gap grooves 3212. Each gap groove 3212 extends axially for a predetermined length.

[0033] The slide plug 322 is made of an elastic material, preferably silicone, and includes a column and end caps formed at the upper and lower ends of the column. The diameter of the column is slightly smaller than the diameter of the annular hole of the inner wall ring 3211, the distance between the two end caps is slightly larger than the axial thickness of the inner wall ring 3211, and the radial dimension of the two end caps is larger than the diameter of the annular hole of the inner wall ring 3211 but smaller than the inner diameter of the insertion tube 321. By applying external force, the lower end cap of the slide plug 322 (the end facing the cup opening) is pressed through the annular hole of the inner wall ring 3211, so that the two end caps of the slide plug 322 are located at both ends of the inner wall ring 3211. The upper end cap abuts against the end face of the inner wall ring 3211, and a predetermined distance is formed between the lower end cap and the end face of the inner wall ring 3211 with the gap groove. When the suction assembly is drawing air, the slide plug 322 will slide towards the end away from the cupping cup. The lower cap of the slide plug 322 will abut against the opening end of the gap groove of the inner wall ring 3211. The diameter of the lower cap is smaller than the inner diameter of the insertion tube 321, so it will not completely cover the gap groove 3211. The upper cap of the slide plug 322 slides away from the upper end of the inner wall ring 3211, and will have a certain gap with the surface of the inner wall ring 3211. In this way, the airflow in the cupping cup passes through the gap groove 3212, through the gap between the ring hole and the column, and through the gap between the upper cap and the insertion tube 321, and can flow to the top of the suction chamber 111 and out.

[0034] After the vacuum inside the cupping cup is evacuated to a preset level, the shell 10 is detached from the cupping unit 30. The external atmospheric pressure will act on the upper cap, causing the upper cap to abut against the end face of the inner wall ring 3211, thereby sealing the cupping cup 31 and forming a stable negative pressure inside the cupping cup 31, which can stably adhere to the surface of the object.

[0035] Furthermore, in order to facilitate the lower cap of the slide plug 322 passing through the annular hole of the inner wall ring 3211, the cap size of the lower cap of the slide plug 322 is smaller than that of the upper cap, and a hollow channel 3221 of a certain length is opened on the top surface of the lower cap to facilitate the lower cap to be squeezed and reduced and pass through the annular hole of the inner wall ring 3211.

[0036] Furthermore, both the upper and lower caps are conical, and the upper opening of the annular hole of the inner wall ring 3211 is large, while the lower opening is small, which facilitates guiding the lower cap through.

[0037] Please see Figures 8-10 The air extraction assembly includes an air extraction pipe 41 and an air pump 42. The air extraction pipe 41 is disposed on the upper surface of the bottom shell 11 and extends downward through the bottom shell 11 to communicate with the air extraction chamber 111. The air pump 42 is installed inside the housing 10 and is connected to the air extraction pipe 41 to extract air from the air extraction chamber 111.

[0038] Furthermore, the air extraction assembly includes a pressure relief pipe 43, a detection pipe 44, a pressure relief valve 45, and a pressure measuring device 46. Both the pressure relief pipe 43 and the detection pipe 44 are disposed on the upper surface of the bottom shell 11 and both penetrate downwards through the bottom shell 11 to communicate with the air extraction chamber 111. In this embodiment, the air extraction pipe 41, the pressure relief pipe 42, and the detection pipe 43 are all disposed on the protruding top surface of the cylinder on the upper surface of the bottom shell 11. The pressure relief valve 45 and the pressure measuring device 46 are installed inside the shell 10. The pressure relief pipe 43 is connected to the pressure relief valve 45 to relieve pressure in the air extraction chamber 111 to regulate the pressure. The detection pipe 44 is connected to the pressure measuring device 46 to detect the pressure inside the air extraction chamber 111 in real time.

[0039] Furthermore, the air pump 44 is connected to a drain pipe 47 at its outlet. The drain pipe 47 is used to discharge dirt and prevent it from flowing into the housing 10 and affecting the durability of components such as the circuit board 61. A drain pipe head 48 is provided on the periphery of the bottom housing 11. One end of the drain pipe head 48 is connected to the outside of the bottom housing 11, and the other end is connected to the drain pipe 47 through a pipe (not shown).

[0040] The cupping device includes an oil filtering mechanism to filter the essential oil drawn into the cupping cup by the suction component. The oil filtering mechanism includes a primary filter structure 51 and a fine filter structure 52. The primary filter structure 51 is installed in the suction chamber 111 to perform primary filtration on the gas drawn from the cupping cup and remove large particles from the gas.

[0041] In this embodiment, the primary filter structure 51 includes an elastic sleeve 511 and a primary filter element 512. The elastic sleeve 511 is cylindrical and matches the suction chamber 111. The elastic sleeve 511 is installed elastically against the wall of the suction chamber 111 to ensure airtightness of the connection with the suction chamber 111. The primary filter element 512 is installed at the upper end of the elastic sleeve 511, and the lower end is connected to the one-way air guide assembly 32 to ensure that the airflow from the one-way air guide assembly 32 passes through the primary filter element 512 and then enters the suction pipe 41. The primary filter element 512 is preferably made of filter foam material.

[0042] Furthermore, a carrier plate is provided inside the elastic sleeve 511 to facilitate the support and fixation of the primary filter element and to separate the primary filter element 512 from the one-way air guide assembly 32. Airflow holes are provided on the carrier plate to allow airflow from the one-way air guide assembly 32 to enter the primary filter element 512.

[0043] Understandably, the elastic sleeve 511 can also be omitted, and the primary filter element can be installed in the extraction chamber 111, with the one-way air guide assembly 32 pluggably and airtightly connected to the extraction chamber 111.

[0044] Furthermore, the perforation of the massage element 20 can be airtightly connected to the opening end of the air extraction chamber 111, and the one-way air guide assembly 32 can be plugged in and airtightly connected to the perforation of the massage element 20.

[0045] Furthermore, the bottom of the outer periphery of the elastic sleeve 511 is provided with a lug 5111 that extends downward and outward. It is made of soft and elastic material and can be bent under the push of the bottom surface of the cupping cup 31. After the cupping cup 31 is removed, it returns to its original shape. The lug 5111 is used to pull down the primary filter structure 51 when it is necessary to pull it out from the suction chamber 111, making it easy to remove the primary filter structure 51 and facilitate the replacement of the primary filter element 512.

[0046] The fine filter structure 52 is located at the top of the housing 10 and is used for fine filtration of the airflow after the primary filter. Its filtration principle is roughly the same as that of the primary filter structure, so that the airflow enters the air pump 42 after passing through the fine filter valve core. The specific structure is not described in this utility model. The air extraction pipe 41 includes two sections: a chamber connection pipe section 411 and a pump connection pipe section 412. One end of the chamber connection pipe section 411 is connected to the air extraction chamber 111, and the other end is connected upward to the inlet of the fine filter structure 52. One end of the pump connection pipe section 412 is connected to the outlet of the fine filter structure 52, and the other end is connected downward to the air pump 42.

[0047] The cupping device includes a circuit board 61 and a support base 62 for fixing the circuit board 61. The circuit board 61 is electrically connected to and controls the operation of an air pump 42, a pressure relief valve 45, and a pressure measuring device 46. The support base 62 is fixedly mounted on the base shell 11 and supports the circuit board 61. Understandably, the air pump 42, the pressure relief valve 45, and the pressure measuring device 46 are directly mounted on the circuit board 61.

[0048] The cupping device includes a light wave therapy structure, which includes a light therapy lamp 71. The outer periphery of the massage piece 20 along the bottom shell 11 is made of a light-transmitting material. The light therapy lamp 71 is positioned above the bottom shell 11 corresponding to the outer periphery of the massage piece 20, allowing the light emitted by the light therapy lamp 71 to pass through the bottom shell 11 and achieve light wave therapy. Understandably, the light therapy lamp 71 can be a red light or a blue light.

[0049] In a preferred embodiment of this utility model, a light guide groove 621 is recessed on the support base 62 near the outer periphery. The bottom wall of the light guide groove 621 is light-transmitting. The phototherapy lamp 71 is fixed on the circuit board 61 and extends into the light guide groove 621. Several phototherapy lamps 71 are distributed at equal intervals along the light guide groove 621. In this way, the light emitted by the phototherapy lamp 71 is projected through the bottom wall of the light guide groove 621 and the bottom shell 11.

[0050] Understandably, when the outer periphery of the bottom shell 11 and the outer periphery of the support 62 are made of non-light-guiding materials, light-transmitting holes can be opened, and the light therapy lamp 71 is set above the bottom shell corresponding to the light-transmitting hole so that it can be projected through the light-transmitting hole onto the bottom surface of the bottom shell for light wave therapy.

[0051] The cupping device includes an electrotherapy structure, which comprises a micro-electrode 81. The micro-electrode 81 is embedded in the massage element 20 and electrically connected to the circuit board 61 for electrostimulation therapy. Specifically, the massage element 20 has an embedding hole. One end of the micro-electrode 81 is embedded in the embedding hole, and the other end extends out of the massage element 20, passes through the bottom shell 11 and the support base 62, and is electrically connected to the circuit board 61. Understandably, the massage element 20 can be fixed to the bottom surface of the bottom shell 11 by fixing the micro-electrode 81 to the circuit board 61, thus eliminating the need for further fixing of the massage element 20 by other means. In this embodiment, several micro-electrodes 81 are evenly distributed on the massage element 20, and the surface of the micro-electrodes 81 is approximately flush with the surface of the massage element 20, so as not to interfere with the massage function of the massage element 20.

[0052] The cupping device includes a heating structure for heating the massage element 20. The heating structure includes a heating element 91, which is installed at the connection between the massage element 20 and the base shell 11. Specifically, an annular groove is formed on the bottom surface of the base shell 11 corresponding to the connection point with the massage element 20, and the heating element 91 is installed within the annular groove, tightly adhering to the massage element 20. Thus, the heating element 91 generates heat to heat the massage element 20. It is understood that the annular groove can be insulated with heat-insulating material to prevent heat transfer between the heating element 91 and the base shell 11. The heating element 91 is connected to a circuit board 61 via positive and negative terminals. It is also understood that the heating element 91 is connected to a temperature sensor 92 to monitor its heating temperature. When the temperature exceeds a preset value, the heating element 91 stops heating to prevent burns from excessive heat.

[0053] Furthermore, the housing 10 also includes a main housing 12 and a top housing 13. The main housing 12 is connected above the bottom housing 11, is gripped, and houses the circuit board 61, the air extraction assembly, and the oil filtration mechanism. A battery 121 is installed inside the main housing 12, and several function buttons 122 are provided on the surface of the main housing 12. The top housing 13 is installed on top of the main housing 12, sealing the top of the main housing 12, and a fine filter main body 521 is inserted into the top housing 13. The fine filter main body 521 contains a fine filter element, which is inserted for easy replacement of the fine filter element.

[0054] When using the multifunctional cupping device, the corresponding therapeutic function can be selected as needed. When cupping is required, simply install the cup unit 30 in the suction chamber 111, start the air pump 42 to draw air, and the cupping cup 31 will adhere. After the cupping cup 31 adheres, remove the cup unit 30 from the suction chamber 111, and the cup unit 30 will adhere to the skin. Then, another cup unit 30 can be installed in the suction chamber 111. In this way, multiple cupping cups 31 can be used for cupping therapy using the same cupping device. It can be understood that after removing the cup unit 30, the therapeutic device can be used as an independent massage device, massaging the body through the massage ring 20, or as a standalone cupping device when combined with relevant accessories or using specific operating methods. When massage is needed, remove the cup unit 30, and massage can be performed using the massage element 20. By pushing the multifunctional cupping device to slide, the massage element can be moved to perform a sliding massage, mainly using Bian stone for sliding massage. When phototherapy is needed, turn on the phototherapy lamp 71 to irradiate the corresponding body surface area, thus achieving the effect of phototherapy. When electrotherapy is needed, activate the micro-electric conductor 81 to conduct electricity, which will then provide micro-electric stimulation to the corresponding body surface area. When heat therapy or heat application is needed, turn on the heating pad 91 to generate heat. In addition, except for cupping and massage, one or more therapy functions can be activated simultaneously.

[0055] In summary, this utility model of cupping device can be used as both a cupping device and a massage device. The overall structure is simple. By connecting the suction pipe and the pressure relief pipe to the suction chamber, the pipe connection structure is simple and the air pressure in the suction chamber can be easily adjusted during suction.

[0056] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A cupping device comprising a housing (10), a massage member (20), a cup body unit (30), and a suction assembly, the housing (10) having a bottom shell (11), a lower surface of the bottom shell (11) being formed with a suction chamber (111), characterized in that: The air extraction assembly comprises an air extraction pipe (41), an air pump (42), a pressure relief pipe (43) and a pressure relief valve (45), the air extraction pipe (41) and the pressure relief pipe (43) are installed on the upper surface of the bottom shell (11) and are in communication with the air extraction chamber (111), the air pump (42) and the pressure relief valve (45) are installed in the shell (10), the air pump (42) is connected with the air extraction pipe (41), the pressure relief valve (45) is connected with the pressure relief pipe (43), the massage member (20) is installed on the lower surface of the bottom shell (11), the cup unit (30) comprises a cupping cup (31) and a one-way air guide assembly (32) installed at the bottom end of the cupping cup (31), the one-way air guide assembly (32) of the cup unit (30) penetrates through the massage member (20) and is connected to the air extraction chamber (111) in a plug-in manner, the air pump (42) extracts air to generate negative pressure in the cupping cup (31) so that the cupping cup (31) is adsorbed to the surface of an external object, and the backflow of gas is prevented through the one-way air guide assembly (32), and the pressure relief valve (45) is used for adjusting the air pressure of the air extraction chamber (111).

2. The cupping instrument according to claim 1, wherein The air extraction assembly comprises a detection pipe (44) and a pressure measuring device (46), the detection pipe (44) is installed on the upper surface of the bottom shell (11) and is in communication with the air extraction chamber (111), and the detection pipe (44) is connected with the pressure measuring device (46) to detect the air pressure in the air extraction chamber (111).

3. The cupping instrument according to claim 2, wherein The circuit board (61) and the support seat (62) are included, the support seat (62) is fixedly installed on the bottom shell (11) and carries the circuit board (61), and the air pump (42), the pressure relief valve (45) and the pressure measuring device (46) are installed on the circuit board (61).

4. The cupping device of claim 1, wherein, The light wave therapy structure is included, the light wave therapy structure comprises a light therapy lamp (71), the light therapy lamp (71) is arranged on the bottom shell (11) above the outer peripheral side corresponding to the massage member (20), and the light emitted by the light therapy lamp (71) is emitted through the bottom shell (11), so that light wave therapy is realized.

5. The cupping device of claim 1, wherein, The electrotherapy structure is included, the electrotherapy structure comprises a micro electric body (81), and the micro electric body (81) is embedded on the massage member (20).

6. The cupping instrument of claim 1, wherein The heating structure is included, the heating structure comprises a heating sheet (91), and the heating sheet (91) is installed at the connection between the massage member (20) and the bottom shell (11) and is used for heating the massage member (20).

7. The cupping device of claim 1, wherein, The massage member (20) is an annular body made of a stone.

8. The cupping device of claim 1, wherein, The air pump (42) is provided with a blow-off pipe (47), a blow-off pipe head (48) is arranged on the peripheral side of the bottom shell (11), the blow-off pipe head (48) is connected with the blow-off pipe (47), and one end of the blow-off pipe head (48) is communicated to the outside of the bottom shell (11).

9. The cupping device of claim 1, wherein, The primary filtration structure (51) is included, the primary filtration structure (51) is installed in the air extraction chamber (111) so that the airflow flowing out of the one-way air guide assembly (32) passes through the primary filtration structure (51) during air extraction.

10. The cupping instrument according to claim 9, characterized in that The primary filtration structure (51) comprises an elastic sleeve (511) and a primary filtration filter element (512), the elastic sleeve (511) is elastically installed against the chamber wall of the air extraction chamber (111), a gas-permeable carrier plate is arranged in the elastic sleeve (511), the elastic sleeve (511) is divided into upper and lower ends, the primary filtration filter element is installed at the upper end, and the one-way air guide assembly (32) is connected at the lower end.