Electric stimulation medical device for acupoint electric massage recovery

By rotating the operating shaft to drive the threaded connection between the rotary nut and the fixed screw, the vertical movement of the electrode block is achieved, and electrical stimulation and massage therapy are performed alternately, solving the problems of muscle soreness and skin heating in existing devices and improving treatment comfort.

CN120732685AInactive Publication Date: 2025-10-03DAZHOU VOCATIONAL COLLEGE OF TRADITIONAL CHINESE MEDICINE
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Patent Information

Application Number
CN202510944339.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-09
Publication Date
2025-10-03
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When the existing acupoint electric massage recovery treatment device is used for a long time, the patient's muscles are prone to soreness, and the electrodes cause the skin to heat up, requiring frequent repositioning for heat dissipation and massage.

Method used

A device for acupoint electro-stimulation massage and recovery has been designed. Rotating an operating shaft drives the threaded connection between a rotating nut and a fixed solenoid, enabling vertical movement of the electrode block, alternating between electrical stimulation and massage therapy. The device comprises a positioning cap, an electrical stimulation assembly, a lifting ring, and a massage assembly. The massage assembly achieves cyclical compression of the massage column through the rotation of the rotating ring and the reciprocating sliding of the sliding wedge.

Benefits of technology

The detachable connection between the electrode block and the skin is achieved, which reduces muscle soreness, relieves the discomfort caused by electrical stimulation through the periodic squeezing of the massage component, and improves the comfort of treatment.

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Abstract

The invention relates to the technical field of electrical stimulation treatment, in particular to an electrical stimulation medical device for acupoint electric massage recovery, which comprises a positioning cover, an electrical stimulation assembly, a lifting ring, a rotary ring and a plurality of groups of massage assemblies, the massage device comprises a rotary nut, an electrode block and an operation shaft, the lifting ring is arranged in the positioning cover, the rotary ring is rotationally installed on the lifting ring, and the multiple massage assemblies are evenly arranged along the circumferential side of the rotary ring and comprise positioning frames, sliding wedge blocks and massage columns. When the electrode blocks in the electrical stimulation assembly are driven by the rotation of the operation shaft to be separated from the skin of the patient, the multiple massage assemblies can be driven to make contact with the skin of the patient at the moment, and muscles, subjected to electrical stimulation, at acupuncture points are massaged and relaxed.
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Description

Technical Field

[0001] The present invention relates to the technical field of electrical stimulation therapy, in particular to an electrical stimulation medical device for acupoint electrical massage recovery. Background Art

[0002] When using existing electric stimulation devices for acupoint electric massage recovery treatment, most of them directly stick the electric stimulation electrode to the patient's skin at the stimulation acupoint, and then perform electric stimulation treatment on the acupoint part of the patient's adhered area by energizing it.

[0003] Although the above treatment method can achieve the quality of electrical stimulation, the electrically stimulated muscles of the person will often become sore during the long treatment process, and the person needs to massage the muscles at the stimulation position to relieve the person's discomfort. At the same time, the electrode will cause the patient's skin to heat up during the electrical stimulation process, and the person needs to remove the electrode to allow the skin to dissipate heat and then reposition and paste it. The positioning step needs to be fully operated. Summary of the Invention

[0004] The purpose of the present invention is to provide an electric stimulation medical device for acupoint electromassage recovery, which is used to solve the above technical problems.

[0005] To achieve the above-mentioned object, the present invention provides an electrical stimulation medical device for acupoint electromassage recovery, comprising:

[0006] A positioning cover, which is fixedly attached to the patient's acupuncture point skin;

[0007] The electrical stimulation assembly is mounted in the center of the positioning cover and includes a rotary nut, an electrode block, and an operating shaft. The rotary nut is rotatably mounted in an insertion hole provided on the end face of the positioning cover and is screwed to a fixed solenoid coaxially mounted in the positioning cover. The electrode block is fixedly mounted on the bottom of the rotary nut. The operating shaft is coaxially fixedly mounted on the upper end of the rotary nut and is transmission-connected to the rotary tube mounted on the upper end face of the positioning cover via a first transmission assembly.

[0008] The lifting ring is arranged in the positioning cover, and two sets of lifting studs are fixed on its upper end. The upper ends of the two sets of lifting studs extend through the connecting holes opened at both ends of the positioning cover and are threadedly connected to the two sets of transmission nuts rotatably installed on both sides of the end surface of the positioning cover. The two sets of transmission nuts are connected to the rotary tube through transmission members.

[0009] The slewing ring is rotatably mounted on the lifting ring and is driven to rotate by the slewing assembly provided on the positioning cover;

[0010] The massage components are divided into multiple groups, which are evenly arranged along the circumference of the rotating ring. They include a positioning frame, a sliding wedge and a massage column. The positioning frame is elastically installed at the bottom of the rotating ring in the vertical direction. The sliding wedge is slidably installed in the positioning frame and elastically connected to the tail end of the positioning frame. The massage column is fixedly installed at the bottom of the sliding wedge and faces the center side of the rotating ring.

[0011] As a further solution of the present invention, two sets of auxiliary plates are fixedly provided at both ends of the positioning cover, and fixing glue is adhered to the bottoms of the two sets of auxiliary plates.

[0012] As a further solution of the present invention, the first transmission assembly includes a transmission disc, a return spring, a positioning block and a limiting ring;

[0013] The transmission disc is slidingly installed on the operating shaft and is elastically connected to the upper end of the rotary nut through a reset spring. The limiting ring is coaxially installed in the rotary tube, and the bottom of the transmission disc is supported by the limiting ring. The positioning block is fixedly installed on the limiting ring, and a positioning socket for clamping the positioning block is provided on the transmission disc.

[0014] As a further solution of the present invention, the transmission member includes a first transmission belt, both ends of which are respectively wrapped around two sets of transmission nuts, and the middle part of the transmission belt is frictionally connected to the rotary tube.

[0015] As a further solution of the present invention, the rotary assembly includes a rotary motor, a transmission shaft, a rotary sleeve and a second transmission belt;

[0016] The rotary motor is fixedly mounted on the positioning cover, and its output shaft is inserted into the positioning cover and fixedly connected coaxially with the transmission shaft. The rotary sleeve is rotatably mounted on the lifting ring and can be slidably mounted on the transmission shaft along the central axis of the transmission shaft. The rotary sleeve is driven to rotate by the transmission shaft, and the rotary sleeve is rotatably connected to the rotary ring through a first transmission belt.

[0017] As a further solution of the present invention, multiple groups of guide columns are fixedly installed on the top of the positioning frame. The guide columns are slidably connected to the guide holes opened on the slewing ring. At the same time, the upper ends of the guide columns are elastically connected to the upper end surface of the slewing ring through support springs.

[0018] As a further solution of the present invention, the lower end surface of the fixed coil is a wavy structure, and the top of the sliding wedge is provided with an arc-shaped convex strip that can slide and abut against the lower end surface of the fixed coil.

[0019] As a further solution of the present invention, the rotary nut and the operating shaft are hollow structures, and the internal cavity is used for routing the power supply wires of the electrode block.

[0020] Compared with the prior art, the advantages of the present invention are:

[0021] 1. By rotating the operating shaft to drive the rotary nut to connect with the thread in the fixed screw to install the electrode block, the electrode block can be driven to move vertically, so that the electrode block can contact the patient's skin for electrical stimulation or break away from the patient's skin;

[0022] 2. During the electrical stimulation treatment, if the patient's electrically stimulated area experiences muscle soreness and discomfort due to prolonged electric shock, the electrical stimulation treatment can be suspended. The operator can reversely rotate the operating shaft to drive the rotary nut and the electrode block to retract into the positioning cover, so that the electrode block is separated from the patient's skin. At the same time, the lifting ring is driven downward by the transmission to make the massage column in the massage component contact the patient's skin. The rotary ring rotates, driving the massage column in the massage component to rotate and squeeze the patient's skin to massage the patient's electrically stimulated area.

[0023] 2.1. When the rotary ring drives multiple massage components to rotate together, the sliding wedge and the lower end surface of the fixed spiral wave-breaking zigzag structure cause the sliding wedge to slide back and forth along the limited sliding direction of the positioning frame, thereby driving the massage column to perform periodic reciprocating sliding along the radial direction of the rotary ring while rotating, ensuring that the patient's skin in the massage area, which is electrically stimulated by the electrode block, can be squeezed and massaged.

[0024] Of course, any product implementing the present invention does not necessarily need to achieve all of the advantages described above at the same time. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 This is a schematic structural diagram of an electrical stimulation medical device for acupoint electromassage recovery according to the present invention.

[0026] Figure 2 It is a structural schematic diagram of the rotary component in the present invention.

[0027] Figure 3 This is a bottom schematic diagram of an electrical stimulation medical device for acupoint electromassage recovery according to the present invention.

[0028] Figure 4 For the present invention Figure 1 sectional view of .

[0029] Figure 5 For the present invention Figure 4 Enlarged schematic diagram of point A in the middle.

[0030] In the accompanying drawings: 1. Positioning cover; 101. Fixed screw; 2. Auxiliary plate; 3. Electric stimulation component; 301. Operating shaft; 302. Rotating nut; 303. Electrode block; 4. First transmission component; 401. Transmission disk; 402. Return spring; 403. Positioning block; 404. Limiting ring; 5. First transmission belt; 6. Massage component; 601. Positioning frame; 602. Connecting spring; 603. Sliding wedge; 604. Massage column; 605. Support spring; 606. Guide column; 7. Rotating tube; 8. Transmission nut; 9. Lifting stud; 10. Lifting ring; 11. Rotating ring; 12. Rotating component; 1201. Rotating motor; 1202. Transmission shaft; 1203. Rotating sleeve; 1204. Second transmission belt. DETAILED DESCRIPTION

[0031] The technical solution of the present invention will be further described in detail below in conjunction with specific implementation methods.

[0032] like Figure 1 、 Figure 3 as well as Figure 4 As shown, in an embodiment of the present invention, an electric stimulation medical device for acupoint electric massage recovery includes a positioning cover 1, which is fixedly attached to the patient's acupoint skin; an electric stimulation component 3, which is installed in the center of the positioning cover 1, and includes a rotary nut 302, an electrode block 303 and an operating shaft 301, the rotary nut 302 is rotatably installed in an insertion hole opened on the end face of the positioning cover 1, and is spirally connected to a fixed screw 101 coaxially installed in the positioning cover 1, the electrode block 303 is fixedly installed at the bottom of the rotary nut 302, the operating shaft 301 is coaxially fixedly installed on the upper end of the rotary nut 302, and is transmission-connected to a rotary tube 7 installed on the upper end face of the positioning cover 1 through a first transmission component 4; a lifting ring 10, which is arranged in the positioning cover 1, and has two groups of lifting studs 9 fixed on its upper end, and the two groups of lifting studs 9 are screwed on the upper end face of the positioning cover 1. The ends extend through the communicating holes opened at both ends of the positioning cover 1 and are threadedly connected to the two sets of transmission nuts 8 rotatably installed on both sides of the end surface of the positioning cover 1. The two sets of transmission nuts 8 are transmission-connected to the rotary tube 7 through transmission members; the rotary ring 11 is rotatably installed on the lifting ring 10 and is driven to rotate by the rotary assembly 12 provided on the positioning cover 1; the massage components 6 are in multiple groups, and the multiple groups of massage components 6 are evenly arranged along the circumference of the rotary ring 11, which include a positioning frame 601, a sliding wedge 603 and a massage column 604. The positioning frame 601 is elastically installed at the bottom of the rotary ring 11 in the vertical direction, and the sliding wedge 603 is slidably installed in the positioning frame 601 and elastically connected to the tail end of the positioning frame 601. The massage column 604 is fixedly installed at the bottom of the sliding wedge 603 and faces the center side of the rotary ring 11;

[0033] The electrical stimulation component 3 and the massage component 6 of the present invention can alternately perform electrical stimulation therapy and massage therapy on the patient's acupuncture points and muscles according to different treatment time periods;

[0034] When electrical stimulation treatment is required for the acupuncture point massage area of ​​the patient, the operator can apply electrical stimulation gel on the electrode block 303, and insert the electromagnetic assembly into the insertion hole of the positioning cover 1, and rotate the operating shaft 301 to drive the rotary nut 302 and the electrode block 303 to rotate. When the rotary nut 302 is threaded with the thread in the fixed screw 101, it drives the electrode block 303 to move in the direction close to the patient's skin until the electrode block 303 contacts the patient's skin. At this time, the installation of the electrical stimulation component 3 is completed. When installing the electrical stimulation component 3, the lifting ring 10 drives the rotary ring 11 to move upward, so that the multiple groups of massage components 6 are out of contact with the patient's skin and move upward synchronously. In the process of moving upward, the sliding wedge 603 in the massage component 6 contacts the lower end surface of the fixed screw 101, and is squeezed and retracted into the positioning frame 601. The multiple groups of sliding wedges 603 slide outward synchronously to make room for the electrical block of the power stimulation component 3 to move downward;

[0035] When the electrical stimulation treatment is in effect, the patient's muscles in the electrical stimulation area will ache due to the long-term electric shock, causing discomfort to the patient. At this time, the electrical stimulation treatment can be suspended, and the operator can drive the rotary nut 302 and the electrode block 303 to rotate in the opposite direction by rotating the operating shaft 301 in the reverse direction, and drive the rotary nut 302 and the electrode block 303 to retract into the positioning cover 1 through the threaded transmission, and the electrode block 303 is separated from the patient's skin. At the same time, the lifting ring 10 is driven downward by the first transmission component 4 and the first transmission component 4, so that the rotary ring 11 and the multiple massage components 6 move downward synchronously. The massage column 604 in the massage component 6 contacts the patient's skin, and during the downward movement of the massage component 6, the upper end of the sliding wedge 603 in the massage component 6 is pressed into contact with the bottom of the fixed screw 101, so that when the sliding wedge 603 moves downward, it can move toward the center of the rotary tube 7 through the elastic support of the elastic member, and drive the massage column 604 installed at the bottom thereof to contact the upper layer of the patient's muscle skin that is being treated with electrical stimulation. At this time, the rotary ring 11 can be driven to rotate by the rotary component 12, driving multiple groups of massage columns 604 to perform rotary massage on the stimulated skin area.

[0036] like Figure 1 As shown, in an embodiment of the present invention, two sets of auxiliary plates 2 are fixed at both ends of the positioning cover 1, and fixing glue is adhered to the bottom of the two sets of auxiliary plates 2. In the present invention, the positioning cover 1 is fixed to the patient's skin by a two-point fixing method. Of course, when actually installing the positioning cover 1, other fixing methods such as cable ties can also be used. The present invention does not impose rigid requirements on the fixing method of the positioning cover 1.

[0037] like Figure 1 and Figure 4As shown, in an embodiment of the present invention, the first transmission component 4 includes a transmission disc 401, a return spring 402, a positioning block 403 and a limiting ring 404. The transmission disc 401 is slidingly installed on the operating shaft 301 and is elastically connected to the upper end of the rotary nut 302 through the return spring 402. The limiting ring 404 is coaxially installed in the rotary tube 7, and the limiting ring 404 supports the bottom of the transmission disc 401. The positioning block 403 is fixedly installed on the limiting ring 404. The transmission disc 401 is provided with a positioning socket for clamping the positioning block 403. In the present invention, when the electric stimulation component 3 is not installed with the positioning cover 1, the transmission disc 401 is pressed against one end of the rotary nut 302 by the contraction of the return spring 402. When the electric stimulation component 3 is inserted and installed through the insertion hole on the positioning cover 1, the rotary nut 302 is fixed with the fixed screw. The upper edge of 101 is threadedly connected, and the transmission disk 401 is fixedly pressed on the limiting ring 404. The positioning notch on the transmission disk 401 is locked with the limiting block on the limiting ring 404. When the operator rotates the operating shaft 301 to achieve contact between the electrode block 303 and the patient's skin, the operating shaft 301 drives the rotary nut 302 to be screwed along the fixed screw tube 101, driving the operating shaft 301, the rotary nut 302 and the electrode block 303 to move downward synchronously in the vertical direction. However, since the transmission disk 401 is limited by the limiting ring 404, the transmission disk 401 cannot move downward synchronously with the operating shaft 301, and always maintains its state of being pressed on the limiting ring 404. At this time, the reset spring 402 is in a stretched state, and when the operating shaft 301 rotates the transmission disk 401, the limiting block 403 drives the limiting ring 404 and the rotary tube 7 to rotate synchronously.

[0038] Furthermore, the transmission member includes a first transmission belt 5, the ends of which are respectively wound around two sets of transmission nuts 8, and the middle portion is frictionally connected with the rotary tube 7. When the rotary tube 7 is driven by the operating shaft 301 to rotate synchronously, the two sets of transmission nuts 8 are driven to rotate synchronously through the first transmission belt 5.

[0039] Of course, in actual design, the transmission member can also be selected from other components with synchronous rotation transmission capabilities, and how to select a gear structure for replacement, such as fixing two sets of transmission gears to two sets of rotary nuts 302, and synchronously connecting the transmission ring with the fixed solenoid 101. Through the meshing of the two sets of transmission gears and the transmission ring, the transmission connection between the fixed solenoid 101 and the two sets of rotary nuts 302 is realized. The rotation of the rotary nut 302 drives the two sets of lifting studs 9 to perform linear lifting, thereby driving the lifting ring 10 to lift in the positioning cover 1, and the lifting ring The height of the rotating ring 11 at the bottom of 10 and the massage component 6 can be adjusted. The present invention cooperates with the first transmission component 4 and the transmission member to achieve that when the electric stimulation component 3 is installed, the electrode block 303 is driven by the rotating operating shaft 301 to move downward and contact the patient's skin. At this time, a series of transmissions of the transmission parts can be used to drive the lifting ring 10 to move upward, and drive the rotating ring 11 set at the bottom of the lifting ring 10 and the massage component 6 at the bottom of the rotating ring 11 to separate from the patient's skin, thereby realizing the alternating switching between electric stimulation state treatment and massage treatment.

[0040] like Figure 2 As shown, in the embodiment of the present invention, the rotary assembly 12 includes a rotary motor 1201, a transmission shaft 1202, a rotary sleeve 1203 and a second transmission belt 1204. The rotary motor 1201 is fixedly mounted on the positioning cover 1, and its output shaft is inserted into the positioning cover 1 and fixedly connected to the transmission shaft 1202 coaxially. The rotary sleeve 1203 is rotatably mounted on the lifting ring 10, and can be slidably mounted on the transmission shaft 1202 along the central axis direction of the transmission shaft 1202. The rotary sleeve 1203 is driven to rotate by the transmission shaft 1202. The rotary sleeve 1203 is rotatably connected to the rotary ring 11 through the first transmission belt 5. Specifically, a fixed member is fixedly mounted on the center of the rotary ring 11. Ring, the fixed ring is connected to the rotary sleeve through the second transmission component. In the present invention, when the electrode block 303 is driven to break away from the patient's skin by the reverse rotation of the operating shaft 301, and at the same time the lifting ring 10 descends to drive the multiple massage components 6 to contact the patient's skin, the rotary motor 1201 can be started to drive the transmission shaft 1202 and the rotary sleeve to rotate synchronously. At the same time, the second transmission belt 1204 is used to drive the rotary ring 11 to rotate when the rotary sleeve rotates, so that the massage components 6 at the bottom thereof can rotate around the center of the positioning cover 1. At the same time, the mounting column at the bottom of the massage component 6 can contact the patient's skin along a circular trajectory to press and massage the patient's skin.

[0041] Furthermore, in the present invention, the transmission shaft 1202 and the rotary sleeve 1203 can be slidably displaced along their axial directions, so that when the lifting ring 10 is lifting, the rotary sleeve 1203 and the transmission shaft 1202 are always kept in rotational engagement.

[0042] like Figure 4 and Figure 5 As shown, in the embodiment of the present invention, multiple groups of guide posts 606 are fixedly installed on the top of the positioning frame 601. The guide posts 606 are slidably connected to the guide holes opened on the slewing ring 11. At the same time, the upper ends of the guide posts 606 are elastically connected to the upper end surface of the slewing ring 11 through the support springs 605. In the present invention, when the lifting ring 10 moves to the lowest position, the elastic force of the multiple groups of support springs 605 on the upper end of the positioning frame 601 drives the upper edge of the sliding wedge 603 to maintain a pressed state with the lower end surface of the fixed screw 101;

[0043] Furthermore, the lower end surface of the fixed screw 101 is a wavy structure, and the top of the sliding wedge 603 is provided with an arc-shaped convex strip that can slide and abut against the lower end surface of the fixed screw 101. Specifically, in the present invention, when the lifting ring 10 is driven by the two sets of lifting studs 9 to move downward in the initial stage, the vertical side surface of the sliding wedge 603 abuts against the side surface of the fixed screw 101. At this time, the sliding wedge 603 is always stored in the positioning frame 601 during the descent process. When the lifting ring 10 descends to the preset height, the inclined side of the sliding wedge 603 replaces its vertical side surface to contact the lower end surface of the fixed screw 101. When the lifting ring 10 further descends, driving the sliding wedge When 603 descends, the inclined side of the sliding wedge 603 can contact the lower end surface of the fixed coil 101, and the sliding wedge 603 extends out of the positioning frame 601 toward the center of the positioning cover 1. At this time, the connecting spring 602 in the positioning frame 601 for elastically connecting the sliding wedge 603 is in a pulled-up state, and the sliding wedge 603 slides to drive the massage column 604 to move to the lower side of the fixed coil 101, and the further movement of the lifting ring 10 drives the massage column 604 to finally contact the muscle in the electrical stimulation area of ​​the electrode block 303. At this time, the rotary shaft is driven to rotate by the rotary assembly 12, driving multiple groups of massage columns 604 to squeeze and massage the patient's electrically stimulated muscles and skin along a circular trajectory.

[0044] In the present invention, the lower end surface of the fixed coil 101 is set to a wavy and tortuous structure, so that when the rotating ring 11 drives multiple groups of massage components 6 to rotate together, when the sliding wedge 603 contacts the lower end surface of the fixed coil 101, it can move back and forth in the vertical direction, while making the sliding wedge 603 slide back and forth along the limited sliding direction of the positioning frame 601, thereby driving the massage column 604 located at the bottom of the sliding wedge 603 to slide back and forth periodically along the radial direction of the rotating ring 11, so that the massage column 604 is continuously adjusted in the massage area, ensuring that the skin of the patient in the massage area that is electrically stimulated by the electrode block 303 can be squeezed and massaged.

[0045] like Figure 1As shown, in the embodiment of the present invention, the rotary nut 302 and the operating shaft 301 are hollow structures, and the internal cavity thereof is used for routing the power supply wires of the electrode block 303.

[0046] In summary, the present invention provides an electrical stimulation component 3 and a massage component 6 on the positioning cover 1, and simultaneously arranges the electrical stimulation component 3 in a rotatable manner for the operating shaft 301, so that the operator can operate the electrical stimulation component 3 and the massage component 6 to alternately perform electrical stimulation therapy and massage therapy on the patient's acupuncture points and muscles according to different treatment time periods;

[0047] By rotating the operating shaft 301 to drive the rotary nut 302 to connect with the thread in the fixed screw 101 to install the electrode block 303, the electrode block 303 can be driven to move in the vertical direction, so that the electrode block 303 can contact the patient's skin for electrical stimulation or break away from the patient's skin;

[0048] If the patient's electrically stimulated area experiences muscle soreness and discomfort due to prolonged electric shock during the electrical stimulation treatment, the electrical stimulation treatment can be suspended. The operator can reversely rotate the operating shaft 301 to drive the rotary nut 302 and the electrode block 303 to retract into the positioning cover 1, so that the electrode block 303 is separated from the patient's skin. At the same time, the lifting ring 10 is driven downward by the transmission to make the massage column 604 in the massage component 6 contact the patient's skin. The rotary ring 11 rotates, driving the massage column 604 in the massage component 6 to rotate and squeeze the patient's skin, thereby massaging the electrically stimulated area of ​​the patient.

[0049] And when the rotating ring 11 drives multiple groups of massage components 6 to rotate together, the sliding wedge 603 and the lower end surface of the wave-breaking zigzag structure of the fixed screw 101 make the sliding wedge 603 slide back and forth along the limited sliding direction of the positioning frame 601, thereby driving the massage column 604 to perform periodic reciprocating sliding along the radial direction of the rotating ring 11 while rotating, ensuring that the patient's skin in the massage area that is electrically stimulated by the electrode block 303 can be squeezed and massaged.

[0050] The preferred embodiments of the present invention are described in detail above, but the present invention is not limited to the above embodiments. Various changes can be made within the knowledge of ordinary technicians in this field without departing from the purpose of the present invention.

Claims

1. An electrical stimulation medical device for acupoint electric massage recovery, characterized in that: include: A positioning cover, which is fixedly attached to the patient's acupuncture point skin; The electrical stimulation assembly is mounted in the center of the positioning cover and includes a rotary nut, an electrode block, and an operating shaft. The rotary nut is rotatably mounted in an insertion hole provided on the end face of the positioning cover and is screwed to a fixed solenoid coaxially mounted in the positioning cover. The electrode block is fixedly mounted on the bottom of the rotary nut. The operating shaft is coaxially fixedly mounted on the upper end of the rotary nut and is transmission-connected to the rotary tube mounted on the upper end face of the positioning cover via a first transmission assembly. The lifting ring is arranged in the positioning cover, and two sets of lifting studs are fixed on its upper end. The upper ends of the two sets of lifting studs extend through the connecting holes opened at both ends of the positioning cover and are threadedly connected to the two sets of transmission nuts rotatably installed on both sides of the end surface of the positioning cover. The two sets of transmission nuts are connected to the rotary tube through transmission members. The slewing ring is rotatably mounted on the lifting ring and is driven to rotate by the slewing assembly provided on the positioning cover; The massage components are divided into multiple groups, which are evenly arranged along the circumference of the rotating ring. They include a positioning frame, a sliding wedge and a massage column. The positioning frame is elastically installed at the bottom of the rotating ring in the vertical direction. The sliding wedge is slidably installed in the positioning frame and elastically connected to the tail end of the positioning frame. The massage column is fixedly installed at the bottom of the sliding wedge and faces the center side of the rotating ring.

2. The electrical stimulation medical device for acupoint electric massage recovery according to claim 1, characterized in that: Two sets of auxiliary plates are fixedly provided at both ends of the positioning cover, and fixing glue is adhered to the bottoms of the two sets of auxiliary plates.

3. The electrical stimulation medical device for acupoint electric massage recovery according to claim 1, characterized in that: The first transmission assembly includes a transmission disc, a return spring, a positioning block and a limiting ring; The transmission disc is slidingly installed on the operating shaft and is elastically connected to the upper end of the rotary nut through a reset spring. The limiting ring is coaxially installed in the rotary tube, and the bottom of the transmission disc is supported by the limiting ring. The positioning block is fixedly installed on the limiting ring, and a positioning socket for clamping the positioning block is provided on the transmission disc.

4. The electrical stimulation medical device for acupoint electric massage recovery according to claim 1, characterized in that: The transmission member comprises a first transmission belt, both ends of which are respectively wound around two sets of transmission nuts, and the middle portion of the transmission belt is frictionally connected with the rotary tube.

5. The electrical stimulation medical device for acupoint electric massage recovery according to claim 1, characterized in that: The rotary assembly includes a rotary motor, a transmission shaft, a rotary sleeve and a second transmission belt; The rotary motor is fixedly mounted on the positioning cover, and its output shaft is inserted into the positioning cover and fixedly connected coaxially with the transmission shaft. The rotary sleeve is rotatably mounted on the lifting ring and can be slidably mounted on the transmission shaft along the central axis of the transmission shaft. The rotary sleeve is driven to rotate by the transmission shaft, and the rotary sleeve is rotatably connected to the rotary ring through a first transmission belt.

6. The electrical stimulation medical device for acupoint electric massage recovery according to claim 1, characterized in that: A plurality of guide columns are fixedly installed on the top of the positioning frame. The guide columns are slidably connected to the guide holes provided on the slewing ring. At the same time, the upper ends of the guide columns are elastically connected to the upper end surface of the slewing ring through supporting springs.

7. The electrical stimulation medical device for acupoint electric massage recovery according to claim 1, characterized in that: The lower end surface of the fixed spiral tube is a wave-shaped structure, and the top of the sliding wedge block is provided with an arc-shaped convex strip that can slide and abut against the lower end surface of the fixed spiral tube.

8. The electrical stimulation medical device for acupoint electric massage recovery according to claim 1, characterized in that: The rotary nut and the operating shaft are hollow structures, and the internal cavity is used for routing the power supply wires of the electrode block.