Electronic pulse therapeutic apparatus

By adopting elastic adsorption assembly and elastic storage assembly in the electronic pulse therapy device, combining the ejection assembly and positioning and placement part, the problems of inconvenient use of conductive adhesives and poor storage of extreme sheets are solved, and a more stable and economical therapeutic effect is achieved.

CN120022529APending Publication Date: 2025-05-23SUZHOU HUIZE MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202510162890.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2025-05-23

AI Technical Summary

Technical Problem

During the use of existing electronic pulse therapy devices, the adhesion and cleaning of conductive adhesives are troublesome, and the conductive adhesive liquid increases the cost as a consumable; the storage and sealing properties of the pole sheet after use are poor, resulting in a reduced service life.

Method used

An electronic pulse therapy device is designed, using elastic adsorption assembly and elastic storage assembly. By spraying the assembly, it moistens the skin by atomizing saline, improving the contact and treatment effect between the pole tablet and the skin, and realizing self-cleaning and sealing storage of the pole tablet by positioning the placement part.

Benefits of technology

Improves the fixing stability of the pole tablet, avoids disengagement and offset, enhances treatment stability, and extends the service life of the pole tablet while simplifying operation and maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of pulse treatment, and discloses an electronic pulse therapeutic apparatus which comprises a machine body, a connecting line and a pole piece, one end of the connecting line is fixed in the machine body, the other end of the connecting line is electrically connected with the pole piece, and an elastic adsorption assembly and an elastic storage assembly are fixedly arranged on the front face of the pole piece. Before the pole piece is fixedly attached, the elastic adsorption assembly is extruded and then the elastic storage assembly is further compressed, so that the normal saline is instantaneously sprayed to the surface of the skin to be attached, the atomized normal saline is attached to the surface of the skin, and on one hand, the conductivity of the normal saline is utilized; on the other hand, skin adsorption is achieved through the compressed elastic air bag, liquid sealing is achieved through normal saline on the surface of the skin, the sealing performance and stability of adsorption of the pole piece and the skin are improved, the arrangement stability of the pole piece is comprehensively improved, separation and deviation are avoided, and the treatment stability is greatly improved.
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Description

Technical Field

[0001] The invention belongs to the technical field of pulse therapy, and in particular relates to an electronic pulse therapy device. Background Art

[0002] A pulse therapy device is a medical device that stimulates the human body's acupuncture points by outputting electric pulses of different waveforms, frequencies and widths to achieve therapeutic purposes. It is usually composed of a main unit and skin electrodes on the body surface. The electrodes are attached to the acupuncture points on the body surface to electrically stimulate the tissues and are used for auxiliary treatment of neurological diseases, etc.

[0003] The electronic pulse therapy device in the prior art usually needs to use conductive glue to adhere to the surface of the electrode and contact the skin during use to maintain relative stability and prevent the electrode from detaching or shifting from the treatment area. However, after actual adhesion, the glue on the user's skin needs to be cleaned, which is troublesome to operate. At the same time, the electrode and skin need to be subsequently cleaned. In addition, the conductive glue is a consumable, which increases the cost, and the stability and economy in actual use are not good.

[0004] In addition, the electronic pulse therapy device in the prior art usually needs to store the electrode after use. However, the current storage placement adopts a direct insertion method. On the one hand, the stability of the electrode after placement is poor. On the other hand, the sealing after placement is not good. The wet electrode is easily oxidized by the ambient air, which actually greatly reduces the service life and the use effect is not good. Summary of the invention

[0005] The purpose of the present invention is to provide an electronic pulse therapeutic apparatus to solve the problems raised in the above-mentioned background technology.

[0006] In order to achieve the above-mentioned purpose, the present invention provides the following technical solutions: an electronic pulse therapeutic apparatus, comprising a body, a connecting wire and a pole piece, one end of the connecting wire is fixed inside the body, and the other end is electrically connected to the pole piece, an elastic adsorption component and an elastic storage component are fixed on the front of the pole piece, respectively, the elastic adsorption component and the elastic storage component are provided with a positioning baffle, the positioning baffle is fixed on the top of the pole piece, a spraying component is provided at the bottom of the pole piece, the spraying component is connected to the elastic storage component, a suction port is opened at the bottom of the pole piece, and the suction port is connected to the elastic adsorption component,

[0007] The elastic adsorption component includes an elastic airbag, a bottom groove No. 1, an outer frame, a connecting rod and a push plate. The elastic airbag is fixed on the top of the pole piece and is connected to the adsorption port. The outer frame is fixedly connected to the side of the elastic airbag, and one surface of the outer frame is fixedly connected to the elastic airbag. The connecting rod is fixed to the end of the outer frame and is fixedly connected to the push plate. When the elastic adsorption component is compressed, it simultaneously squeezes the elastic storage component.

[0008] The machine body is a low-frequency therapeutic device with an operating frequency of 2HZ, 15HZ, 100HZ, 2 / 15HZ, 2 / 100HZ, and a pulse width of 2HZ-600us, 15HZ-400us, and 100HZ-200us. The pulse width corresponds to the operating frequency one by one and changes accordingly. The pulse wave generated by the low-frequency therapeutic device is a balanced bidirectional pulse square wave. The electrode is a skin electrode on the body surface. The low-frequency therapeutic device uses transcutaneous acupoint electrical stimulation therapy to regulate the human immune, endocrine, and nervous systems to dredge the meridians.

[0009] Preferably, the No. 1 bottom groove is symmetrically opened at the bottom of the elastic airbag, and the No. 1 bottom groove is symmetrically distributed on both sides of the suction port. The internal fixed sleeve of the suction port is connected with an internal ring, and the bottom surface of the elastic airbag is connected with the internal ring. By utilizing the setting of the No. 1 bottom groove, the bottom connection area is reduced, the compression space is increased, and air is directly inhaled through the connected internal ring to complete negative pressure adsorption and fixation.

[0010] Preferably, the elastic storage component includes an elastic storage bag, a No. 2 bottom groove and an injection tube, the elastic storage bag is fixed on the top of the pole piece, the No. 2 bottom groove is symmetrically opened on the bottom of the elastic storage bag, the injection tube is fixedly sleeved on the top of the elastic storage bag, the top of the injection tube is sleeved with a sealing plug, and the elastic storage bag is connected to the ejection component.

[0011] Preferably, the spray assembly includes a through hole, a fixed plug and an inclined hole, the through hole is opened at the top of the pole piece and passes through the pole piece, the through hole is communicated with the elastic storage bag, the fixed plug is fixedly sleeved in the through hole, and the inclined holes are distributed around the fixed plug. The elastic storage assembly is used to store physiological saline solution, and when further squeezed, active spraying is realized, and atomized spraying is realized in cooperation with the spray assembly, and atomized spraying at different angles is realized in cooperation with the inclined hole with an inclined angle, so as to moisten the skin surface to be fixed and attached, provide a certain water sealing effect for subsequent adsorption and fixation, and utilize the conductivity of physiological saline to maintain stable conductivity and treatment.

[0012] Preferably, the positioning baffle is located between the elastic airbag and the push plate, and the elastic adsorption components are symmetrically distributed on both sides of the elastic storage component.

[0013] Preferably, an assembly cavity is provided on the back side of the machine body, and a positioning and placing portion is fixedly nested inside the assembly cavity.

[0014] Preferably, the positioning and placement portion includes an elastic frame, a notch groove and a pad, the elastic frame is fixedly nested in the assembly cavity, the notch groove is opened in the elastic frame, the pad is fixedly connected to the notch groove and is located inside the assembly cavity, the size of the elastic frame is adapted to the size of the pole piece, the positioning and placement portion is utilized to realize elastic insertion and extrusion fixation of the pole piece to maintain the stability of the insertion, and the notch groove is utilized to realize repeated suction and blowing by continuing to repeatedly compress the elastic airbag when it is not fully inserted, and react to the surface of the pole piece in a limited space to realize self-cleaning, and after continuing to insert, the outer side of the pad is squeezed to fully seal the inner side of the pole piece to complete the damping nesting in a sealed state, and at the same time, when further extruded and inserted, the elastic airbag is compressed to reduce the air after insertion, further reduce oxidation, and improve service life.

[0015] Preferably, a processing component is provided on the back of the body, and the processing component includes an internal groove, a heating tube and an ultraviolet lamp. The internal groove is opened inside the body and is connected to the assembly cavity. The heating tube and the ultraviolet lamp are both fixed in the internal groove. The heating tube is used to achieve rapid preheating to avoid overcooling in winter, and the ultraviolet lamp can achieve sterilization treatment by inserting the electrode after use.

[0016] The beneficial effects of the present invention are as follows:

[0017] (1) The present invention utilizes the elastic adsorption components and elastic storage components on both sides to cooperate. Before the electrode is fixedly attached, the elastic adsorption components are squeezed and then further compressed to achieve instantaneous spraying of saline solution on the skin surface to be attached, so that the atomized saline solution adheres to the skin surface. On the one hand, the conductivity of the saline solution is utilized to improve the contact and treatment effect between the electrode and the skin. On the other hand, the compressed elastic airbag is utilized to achieve adsorption on the skin, and the saline solution on the skin surface is utilized to achieve liquid sealing, thereby improving the sealing and stability of the electrode and skin adsorption, comprehensively improving the arrangement stability of the electrode, avoiding detachment and deviation, and greatly improving the treatment stability.

[0018] (2) The present invention achieves the adaptation of the electrode size by utilizing the positioning and placement part. After the treatment is completed, the electrode is sleeved in the positioning and placement part. After half of the sleeve is inserted, the notch is opened and the pressurized air in the elastic adsorption component is repeatedly squeezed to repeatedly blow air into the assembly cavity in a limited space. The reaction airflow is then used to blow and clean the inner side of the electrode to complete self-cleaning. When continuing to insert, the elastic adsorption component is squeezed and the elastic seal of the pad is used to fully seal the outer side of the electrode. At the same time, the negative pressure adsorption of the electrode is ensured in the elastic frame, thereby realizing the dual fixation of external elastic clamping and internal negative pressure adsorption. The actual electrode fixing operation is simple and quick, and after fixation, the inner side maintains negative pressure while being isolated from the external environment, thereby realizing the sealed preservation of the electrode while reducing the oxidation of the inner attachment surface, thereby improving the service life.

[0019] (3) The present invention utilizes the cooperation of the positioning placement part and the processing component. While the electrode is sealed and clamped, the electrode attachment surface can be heated and sterilized by ultraviolet irradiation. While improving sterile use, the electrode can be heated to prevent the electrode from being too cold and irritating the skin. Especially in winter, the comfort of use is greatly improved. In addition, the electrode is heated quickly in a negative pressure sealed environment, with high heat utilization rate, and rapid preheating treatment can be achieved. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a structural schematic diagram of the present invention;

[0021] Figure 2 It is a back schematic diagram of the present invention;

[0022] Figure 3 It is a top schematic diagram of the pole piece of the present invention;

[0023] Figure 4 is a cross-sectional schematic diagram of a pole piece of the present invention;

[0024] Figure 5 for Figure 4 A schematic diagram of the structure enlargement at the center A;

[0025] Figure 6 It is an exploded schematic diagram of the elastic adsorption component of the present invention;

[0026] Figure 7 is a cross-sectional schematic diagram of the elastic storage assembly of the present invention;

[0027] Figure 8 A schematic diagram of a positioning and placing portion and a processing assembly of the present invention;

[0028] Fig. 9 It is a schematic diagram of the back side of the machine body of the present invention.

[0029] In the figure: 1. body; 2. connecting line; 3. pole piece; 4. elastic adsorption component; 41. elastic airbag; 42. bottom groove No. 1; 43. outer frame; 44. connecting rod; 45. push plate; 5. elastic storage component; 51. elastic storage bag; 52. bottom groove No. 2; 53. injection pipe; 6. positioning baffle; 7. adsorption port; 8. inner ring; 9. ejection component; 91. through hole; 92. fixing plug; 93. inclined hole; 10. positioning and placement part; 101. elastic frame; 102. notch groove; 103. pad; 11. processing component; 111. inner groove; 112. heating tube; 113. ultraviolet lamp tube; 12. assembly cavity. DETAILED DESCRIPTION

[0030] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0031] like Figures 1 to 9 As shown, an embodiment of the present invention provides an electronic pulse therapeutic device, including a body 1, a connecting line 2 and a pole piece 3, one end of the connecting line 2 is fixed inside the body 1, and the other end is electrically connected to the pole piece 3, an elastic adsorption component 4 and an elastic storage component 5 are fixedly provided on the front of the pole piece 3, the elastic adsorption component 4 and the elastic storage component 5 are provided with a positioning baffle 6, the positioning baffle 6 is fixed on the top of the pole piece 3, a spray component 9 is provided at the bottom of the pole piece 3, the spray component 9 is connected to the elastic storage component 5, a suction port 7 is provided at the bottom of the pole piece 3, the suction port 7 is connected to the elastic adsorption component 4, the elastic adsorption component 4 includes an elastic airbag 41, a bottom groove 42, an outer frame 43, a connecting rod 44 and a push plate 45, the elastic airbag 41 is fixed on the top of the pole piece 3 and is connected to the suction port 7, the outer frame 43 is fixedly connected to the side of the elastic airbag 41, and one surface of the outer frame 43 is fixedly connected to the elastic airbag 41, the connecting rod 44 is fixed to the end of the outer frame 43, and is fixedly connected to the push plate 45. The elastic adsorption component 4 synchronously squeezes the elastic storage component 5 when it is compressed. The body 1 is a low-frequency therapeutic device with an operating frequency of 2HZ, 15HZ, 100HZ, 2 / 15HZ, 2 / 100HZ, and a pulse width of 2HZ-600us, 15HZ-400us, 100HZ-200us. The pulse width corresponds to the operating frequency one by one and changes with the change. The pulse wave generated by the low-frequency therapeutic device is a balanced bidirectional pulse square wave. The electrode 3 is a skin electrode on the body surface. The low-frequency therapeutic device adopts transcutaneous acupoint electrical stimulation therapy to regulate the human immune, endocrine, and nervous systems to dredge the meridians.

[0032] The method of applying low-frequency pulse current to the human body to treat diseases is called low-frequency electrotherapy. The through-hole controls the above-mentioned working frequency and pulse width, regulates the human body's immunity, endocrine, and nervous systems to dredge meridians and improve microcirculation; transcutaneous acupoint electrical stimulation therapy is a non-destructive treatment method that uses electrical stimulation of traditional Chinese medicine acupoints to treat diseases. It is used to excite neuromuscular tissue, regulate the human body's immunity, endocrine, and nervous systems to dredge meridians, improve microcirculation, relieve pain, reduce inflammation, promote local blood circulation, etc., and uses the instrument to generate specific, continuous, balanced bidirectional pulse waves. The current passes through the electrodes, flows into the skin, stimulates the acupoint nerve pathways, and achieves the therapeutic effect.

[0033] Embodiment 1: During use, before treatment, the electrode 3 is taken out of the body 1 and directed toward the top of the skin to be placed. The elastic adsorption components 4 on both sides of the electrode 3 are squeezed by hand. As the outer frame 43 moves, the elastic airbag 41 is squeezed from one side. The elastic airbag 41 is squeezed between the outer frame 43 and the positioning baffle 6, and the gas in the elastic airbag 41 is released through the adsorption port 7. As the squeezing process progresses, the outer frame 43 synchronously drives the connecting rod 44 and the push plate 45 to move, and the push plates 45 on both sides simultaneously move and compress the elastic storage component 5, so that the physiological saline solution stored in the elastic storage bag 51 is dispersedly sprayed out through the inclined hole 93 in the spraying component 9 and atomized on the surface of the skin to be placed. Then, the squeezing state is maintained, and the electrode 3 is placed and fitted along the sprayed skin surface. The electrode 3 is slightly pressed down while canceling the squeezing of the elastic adsorption component 4. As the elastic airbag 41 elastically resets and deforms, it is adsorbed on the skin surface through the adsorption port 7 by the negative pressure effect, and relative fixation is completed. The body 1 is started, and subsequent treatment operations are performed by controlling the button function.

[0034] Firstly, by utilizing the elastic adsorption components 4 and the elastic storage components 5 on both sides, before the electrode 3 is fixedly attached, the elastic adsorption component 4 is squeezed and then the elastic storage component 5 is further compressed to realize instantaneous spraying of saline solution on the skin surface to be attached, so that the atomized saline solution adheres to the skin surface. On the one hand, the conductivity of the saline solution is utilized to improve the contact and treatment effect between the electrode 3 and the skin. On the other hand, the compressed elastic airbag 41 is utilized to realize adsorption on the skin, and the saline solution on the skin surface is utilized to realize liquid sealing, thereby improving the sealing and stability of the adsorption between the electrode 3 and the skin, comprehensively improving the arrangement stability of the electrode 3, avoiding detachment and deviation, and greatly improving the treatment stability.

[0035] Embodiment 2: After use, hold the electrode 3 and insert it along the positioning and placing part 10 on the back of the body 1, and the electrode 3 is pressed against the front of the elastic frame 101 and inserted into it. After inserting, the elastic adsorption components 4 on both sides of the top of the electrode 3 are repeatedly squeezed to repeatedly compress the air in the elastic airbag 41 and spray it into the elastic frame 101 through the adsorption port 7, and in the state where only the notch groove 102 is open and deflated, the gas sprayed in and reacting to flow is used to purge and self-clean the surface of the electrode 3, and in After self-cleaning is completed, by continuing to push the electrode 3, as the electrode 3 continues to move and insert, the electrode 3 is inserted between the elastic frame 101 and the pad 103, the elastic pressure makes the outer side of the electrode 3 sealed, and the elastic pressure completes the elastic clamping of the electrode 3 after it is inserted, completing the fixed storage; when using, when taking out the electrode 3, first start the processing component 11, and the heating tube 112 and the ultraviolet lamp tube 113 are started synchronously to preheat and disinfect the electrode 3. After completion, the electrode 3 can be pulled out for use.

[0036] Firstly, the size of the electrode 3 is adapted by utilizing the positioning and placement portion 10. After the treatment is completed, the electrode 3 is sleeved in the positioning and placement portion 10, and after being sleeved half the distance, the notch groove 102 is opened, and the pressurized air in the elastic adsorption component 4 is repeatedly squeezed again. In a limited space, air is repeatedly blown into the assembly cavity 12, and the reaction airflow is used to blow and clean the inner side surface of the electrode 3 to complete self-cleaning. When continuing to insert, the elastic adsorption component 4 is squeezed, and the elastic seal of the pad 103 is cooperated to fully seal the outer side surface of the electrode 3. At the same time, it is ensured that the electrode 3 is negatively pressure adsorbed in the elastic frame 101, and the dual fixation of external elastic clamping and internal negative pressure adsorption is realized. The actual fixing operation of the electrode 3 is simple and quick, and after fixation, the inner side maintains negative pressure while being isolated from the external environment, so that the electrode 3 is sealed and preserved while reducing oxidation of the inner attachment surface, thereby improving the service life.

[0037] In addition, by utilizing the cooperation of the positioning placement part 10 and the processing component 11, the attached surface of the electrode 3 can be heated and sterilized by ultraviolet irradiation while the electrode 3 is sealed and clamped. While improving sterile use, the electrode 3 can be heated to prevent the electrode 3 from being too cold and irritating the skin. Especially in winter, the comfort of use is greatly improved, and the electrode 3 heats quickly in a negative pressure sealed environment, with high heat utilization rate, and can achieve rapid preheating treatment.

[0038] The No. 1 bottom groove 42 is symmetrically arranged at the bottom of the elastic airbag 41 , and is symmetrically distributed on both sides of the suction port 7 . An internal ring 8 is fixedly sleeved inside the suction port 7 , and the bottom surface of the elastic airbag 41 is connected to the internal ring 8 .

[0039] By utilizing the setting of the No. 1 bottom groove 42, the bottom connection area is reduced, the compression space is increased, and air is directly inhaled through the connected internal ring 8 to complete negative pressure adsorption fixation.

[0040] Among them, the elastic storage component 5 includes an elastic storage bag 51, a No. 2 bottom groove 52 and an injection tube 53. The elastic storage bag 51 is fixed on the top of the pole piece 3. The No. 2 bottom groove 52 is symmetrically opened at the bottom of the elastic storage bag 51. The injection tube 53 is fixedly sleeved on the top of the elastic storage bag 51. A sealing plug is sleeved on the top of the injection tube 53. The elastic storage bag 51 is connected to the ejection component 9. The ejection component 9 includes a through hole 91, a fixed plug 92 and an inclined hole 93. The through hole 91 is opened at the top of the pole piece 3 and passes through the pole piece 3. The through hole 91 is connected to the elastic storage bag 51. The fixed plug 92 is fixedly sleeved in the through hole 91, and the inclined holes 93 are distributed around the fixed plug 92.

[0041] The elastic storage component 5 is used to store physiological saline solution. When further squeezed, it realizes active spraying, and cooperates with the spray component 9 to realize atomized spraying, and cooperates with the inclined hole 93 with an inclined angle to realize atomized spraying at different angles, so as to moisten the skin surface to be fixed and attached, provide a certain water sealing effect for subsequent adsorption and fixation, and utilize the conductivity of physiological saline to maintain stable conductivity and treatment.

[0042] The positioning baffle 6 is located between the elastic airbag 41 and the push plate 45 , and the elastic adsorption components 4 are symmetrically distributed on both sides of the elastic storage component 5 .

[0043] The positioning baffle 6 is used to realize positioning support, and the compressed elastic airbag 41 and the push plate 45 are cooperated to realize sufficient compression under the action of rigidity. The elastic airbag 41 is made of high elastic material, and the elastic restoring force is used to further improve the fixing strength of negative pressure adsorption.

[0044] Among them, an assembly cavity 12 is opened on the back side of the body 1, and a positioning and placement part 10 is fixedly nested inside the assembly cavity 12. The positioning and placement part 10 includes an elastic frame 101, a notch groove 102 and a cushion block 103. The elastic frame 101 is fixedly nested in the assembly cavity 12, the notch groove 102 is opened in the elastic frame 101, the cushion block 103 is fixedly connected in the notch groove 102 and is located inside the assembly cavity 12. The size of the elastic frame 101 is adapted to the size of the pole piece 3.

[0045] The positioning and placement portion 10 is used to realize the elastic insertion and extrusion fixation of the pole piece 3 to maintain the stability of the insertion, and the notch groove 102 is used to realize repeated suction and blowing by continuing to compress the elastic airbag 41 when it is not completely inserted, and react to the surface of the pole piece 3 in a limited space to achieve self-cleaning, and after continuing to insert, the outer side of the pad 103 is squeezed to fully seal the inner side of the pole piece 3 to complete the damping nesting in a sealed state, and at the same time, when further squeezed and inserted, the elastic airbag 41 is compressed to reduce the air after insertion, further reduce oxidation, and increase the service life.

[0046] Among them, a processing component 11 is provided on the back of the body 1, and the processing component 11 includes an internal groove 111, a heating tube 112 and an ultraviolet lamp tube 113. The internal groove 111 is opened inside the body 1 and is connected to the assembly cavity 12. The heating tube 112 and the ultraviolet lamp tube 113 are both fixed in the internal groove 111.

[0047] The heating tube 112 is used to achieve rapid preheating to avoid overcooling in winter, and the ultraviolet lamp tube 113 is used to sterilize the electrode after use.

[0048] The working principle and use process of the present invention are as follows: during use, before treatment, the electrode 3 is taken out of the body 1 and directed toward the top of the skin to be placed, and the elastic adsorption components 4 on both sides of the electrode 3 are squeezed by hand. As the outer frame 43 moves, the elastic airbag 41 is squeezed from one side, and the elastic airbag 41 is squeezed between the outer frame 43 and the positioning baffle 6, and the gas in the elastic airbag 41 is released through the adsorption port 7. As the squeezing process progresses, the outer frame 43 synchronously drives the connecting rod 44 and the push plate 45 to move, and the push plates 45 on both sides move and compress the elastic storage component 5 at the same time, so that the physiological saline solution stored in the elastic storage bag 51 is dispersed and sprayed out through the inclined hole 93 in the spraying component 9, and atomized on the surface of the skin to be placed. Then, the squeezing state is maintained, and the electrode 3 is placed and fitted along the sprayed skin surface, and the squeezing of the elastic adsorption component 4 is cancelled while slightly pressing down. As the elastic airbag 41 elastically resets and deforms, it is adsorbed on the skin surface through the adsorption port 7 by the negative pressure effect, and relative fixation is completed. The body 1 is started, and the control After the use, the electrode 3 is held and inserted along the positioning and placing part 10 on the back of the body 1. The electrode 3 presses the front of the elastic frame 101 and inserts it. After inserting, the elastic adsorption components 4 on both sides of the top of the electrode 3 are repeatedly squeezed to repeatedly compress the air in the elastic airbag 41 and spray it into the elastic frame 101 through the adsorption port 7. In the state where only the notch groove 102 is opened and deflated, the gas sprayed in and reacting to flow is used to purge the surface of the electrode 3. Clean, and after self-cleaning is completed, by continuing to push the electrode 3, as the electrode 3 continues to move and insert, the electrode 3 is inserted between the elastic frame 101 and the pad 103, the elastic pressure makes the outer side of the electrode 3 sealed, and the elastic pressure completes the elastic clamping of the electrode 3 after it is inserted, and completes the fixed storage; when in use, when taking out the electrode 3, first start the processing component 11, the heating tube 112 and the ultraviolet lamp tube 113 are started synchronously, and the electrode 3 is preheated and disinfected. After completion, the electrode 3 is pulled out for use.

[0049] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An electronic pulse therapeutic device, comprising a body (1), a connecting wire (2) and a pole piece (3), wherein one end of the connecting wire (2) is fixed inside the body (1), and the other end is electrically connected to the pole piece (3), characterized in that: An elastic adsorption component (4) and an elastic storage component (5) are fixedly provided on the front side of the pole piece (3), respectively; the elastic adsorption component (4) and the elastic storage component (5) are provided with a positioning baffle (6), the positioning baffle (6) is fixed on the top of the pole piece (3); a spray component (9) is provided at the bottom of the pole piece (3), the spray component (9) is communicated with the elastic storage component (5); a suction port (7) is provided at the bottom of the pole piece (3), the suction port (7) is communicated with the elastic adsorption component (4); The elastic adsorption component (4) comprises an elastic airbag (41), a No. 1 bottom groove (42), an outer frame (43), a connecting rod (44) and a push plate (45); the elastic airbag (41) is fixed to the top of the pole piece (3) and communicates with the adsorption port (7); the outer frame (43) is fixedly connected to the side of the elastic airbag (41), and one surface of the outer frame (43) is fixedly connected to the elastic airbag (41); the connecting rod (44) is fixed to the end of the outer frame (43) and is fixedly connected to the push plate (45); when the elastic adsorption component (4) is compressed, it simultaneously squeezes the elastic storage component (5); The machine body (1) is a low-frequency therapeutic device, the working frequency is 2HZ, 15HZ, 100HZ, 2 / 15HZ, 2 / 100HZ, the pulse width is 2HZ-600us, 15HZ-400us, 100HZ-200us, the pulse width corresponds to the working frequency one by one and changes accordingly, the pulse wave generated by the low-frequency therapeutic device is a balanced bidirectional pulse square wave, the electrode (3) is a skin electrode on the body surface, and the low-frequency therapeutic device adopts transcutaneous acupoint electrical stimulation therapy to regulate the human body's immunity, endocrine system, and nervous system to dredge the meridians.

2. An electronic pulse therapeutic apparatus according to claim 1, characterized in that: The number one bottom groove (42) is symmetrically arranged at the bottom of the elastic airbag (41), and the number one bottom groove (42) is symmetrically distributed on both sides of the adsorption port (7). An internal ring (8) is fixedly sleeved inside the adsorption port (7), and the bottom surface of the elastic airbag (41) is connected to the internal ring (8).

3. An electronic pulse therapeutic apparatus according to claim 2, characterized in that: The elastic storage component (5) comprises an elastic storage bag (51), a second bottom groove (52) and an injection pipe (53); the elastic storage bag (51) is fixed on the top of the pole piece (3); the second bottom groove (52) is symmetrically arranged at the bottom of the elastic storage bag (51); the injection pipe (53) is fixedly sleeved on the top of the elastic storage bag (51); a sealing plug is sleeved on the top of the injection pipe (53); and the elastic storage bag (51) is connected to the ejection component (9).

4. An electronic pulse therapeutic apparatus according to claim 3, characterized in that: The ejection assembly (9) comprises a through hole (91), a fixed plug (92) and an inclined hole (93); the through hole (91) is opened at the top of the pole piece (3) and passes through the pole piece (3); the through hole (91) is communicated with the elastic storage bag (51); the fixed plug (92) is fixedly sleeved in the through hole (91); and the inclined holes (93) are distributed around the fixed plug (92).

5. The electronic pulse therapeutic apparatus according to claim 4, characterized in that: The positioning baffle (6) is located between the elastic airbag (41) and the push plate (45), and the elastic adsorption components (4) are symmetrically distributed on both sides of the elastic storage component (5).

6. An electronic pulse therapeutic apparatus according to claim 5, characterized in that: An assembly cavity (12) is provided on the back of the machine body (1), and a positioning and placing portion (10) is fixedly nested inside the assembly cavity (12).

7. An electronic pulse therapeutic apparatus according to claim 6, characterized in that: The positioning and placing portion (10) comprises an elastic frame (101), a notch groove (102) and a cushion block (103); the elastic frame (101) is fixedly nested in the assembly cavity (12); the notch groove (102) is arranged in the elastic frame (101); the cushion block (103) is fixedly connected to the notch groove (102) and is located inside the assembly cavity (12); the size of the elastic frame (101) is adapted to the size of the pole piece (3).

8. An electronic pulse therapeutic apparatus according to claim 7, characterized in that: A processing assembly (11) is provided on the back of the machine body (1), and the processing assembly (11) comprises an internal groove (111), a heating tube (112) and an ultraviolet lamp tube (113); the internal groove (111) is opened inside the machine body (1) and communicates with the assembly cavity (12); the heating tube (112) and the ultraviolet lamp tube (113) are both fixed in the internal groove (111).