Abdominal massage device provided with acoustic vibration module
By using a sound wave vibration module and anti-transmission hole structure in the abdominal massage device, the problem of large size and poor massage effect is solved, and miniaturization and comfortable use are achieved.
Patent Information
- Application Number
- CN202380077814.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2022-11-08
- Filing Date
- 2023-10-06
- Publication Date
- 2025-07-11
AI Technical Summary
The existing abdominal massage devices are large in size, difficult to store, and have poor massage effects. The sound wave vibration is easily transmitted to the grip part, affecting the user experience.
A sound wave vibration module is adopted, including magnets, coils and elastic members, which transmit sound wave vibration through the vibrating plate, and combines anti-transmission holes and damping members to ensure that sound wave vibration is only transmitted to the abdomen and massaged through the acupressure part.
The device is miniaturized, easy to store, improves the abdominal massage effect, and enhances the comfort of use, reducing the impact of noise and vibration transmitted to the grip part.
Smart Images

Figure CN120302950A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a massage device, and more particularly, to an abdominal massage device. Background Art
[0002] Generally, with the rapid development of industrial society, due to lack of exercise, overwork, irregular diet, etc., the metabolism of the human body cannot proceed smoothly, resulting in an increasing number of various digestive system diseases including visceral diseases and abdominal obesity.
[0003] In addition, due to the nature of people sitting at work for a long time, the amount of physical activity of the body relatively decreases, and there is insufficient appropriate exercise during free time. Therefore, the phenomenon of abdominal obesity increases. To eliminate this abdominal obesity, people used to exercise in places such as fitness clubs, but due to the current environment such as "Coronavirus Disease 2019 (COVID-19)", it is difficult to use fitness facilities, and some people exercise with exercise equipment at home alone, but the effect is not as expected.
[0004] To solve problems such as the decline in the function of internal organs caused by this abdominal obesity, various abdominal massage devices have been proposed. As an example, Korean Patent Publication No. 2017-0052453 discloses a conventional abdominal massage device. The conventional abdominal massage device is configured to massage the user's abdomen by the rotation of a spherical massage part, but when configured in the above-described manner, there are problems such as its large volume, difficulty in storage, and reduced abdominal massage effect.
[0005] Therefore, there is a need for improvement.
[0006] Patent Document 1: Korean Patent Publication No. 2017-0052453 Summary of the Invention
[0007] Technical Problems to be Solved by the Invention
[0008] The present invention aims to solve the above-described problems, and an object of the present invention is to provide an abdominal massage device that can massage the user's abdomen by using sound wave vibration.
[0009] Another object of the present invention is to provide an abdominal massage device that can transmit sound wave vibration only to the user's abdomen and minimize the transmission of sound wave vibration to other parts holding the abdominal massage device.
[0010] The technical problems of the present invention are not limited to the above-described problems, and other problems not mentioned can be clearly understood by those of ordinary skill in the technical field to which the present invention pertains through the following description.
[0011] Solution for Solving Technical Problems
[0012] According to one aspect of the present invention, there is provided an abdominal massage device having a sonic vibration module, the device comprising: a lower cover portion disposed in contact with a user's abdomen; a finger pressure portion supported by the lower cover portion; a vibration generating portion disposed in contact with the finger pressure portion and provided with a sonic vibration module for generating sonic vibrations; and an upper cover portion disposed opposite to the lower cover portion to surround an upper portion of the vibration generating portion. The sonic vibration module includes: a magnet elastically supported by a first elastic member; and a coil disposed so as to surround the periphery of the magnet so that the magnet vibrates when an electric current is applied.
[0013] At this time, the sonic vibration module may further include a housing disposed so as to surround the magnet, the first elastic member, and the coil, and provided with a vibration plate for transmitting the vibration of the magnet. The vibration generating portion may further include a second elastic member for elastically supporting the housing.
[0014] At this time, the second elastic member may include: a main body surrounding the periphery of the housing; and legs extending in the circumferential direction of the main body and formed with slits at a predetermined length spaced apart from the main body.
[0015] At this time, the device may further include a plate portion fixedly disposed on the upper cover portion and provided with fixing rods for fixing the legs. An anti-transmission hole for preventing contact between the sonic vibration module and the plate portion may be provided in the plate portion.
[0016] At this time, the anti-transmission hole may be disposed at a position overlapping the sonic vibration module in the height direction.
[0017] At this time, a fixing member may be provided in the plate portion. The fixing member is inserted and fixed in a fastening hole formed in the fixing rod in a state of passing through a through hole formed in the leg. A blocking member for preventing sonic vibration transmission may be provided on an inner circumferential surface of the through hole.
[0018] At this time, the finger pressure portion may include: a finger pressure ball disposed in contact with a user's abdomen; and a fixing foam for fixing the position of the finger pressure ball.
[0019] At this time, a damping member for preventing noise generated by impact may be provided between the sonic vibration module and the finger pressure portion.
[0020] At this time, guide ribs extending in the height direction may be provided on an inner circumferential surface of the anti-transmission hole. The damping member may be disposed inside the guide ribs, and the damping member and the guide ribs may be spaced apart from each other in the width direction.
[0021] At this time, a heating member for heating the finger pressure portion may be provided between the plate portion and the finger pressure portion.
[0022] At this time, a separation space may be provided between the acoustic vibration module and the upper cover portion.
[0023] At this time, an anti-vibration foam member for preventing resonance between the upper cover portion and the acoustic vibration module may be provided in the separation space.
[0024] At this time, the lower cover portion may be disposed along the periphery of the finger pressure portion such that the finger pressure portion is exposed toward the user's abdomen.
[0025] Advantages of the Invention
[0026] According to the above structure, in the abdominal massage device including an acoustic vibration module according to an embodiment of the present invention, since the abdomen of the user is massaged by using the acoustic vibration generated by the acoustic vibration module, it is possible to minimize its volume and facilitate storage, and thus effective abdominal massage can be performed through acoustic vibration.
[0027] In addition, in the abdominal massage device including an acoustic vibration module according to an embodiment of the present invention, only the acoustic vibration is transmitted to the finger pressure portion that presses the abdomen of the user, and in order to fix the position of the abdominal massage device, the acoustic vibration is minimized to be transmitted to the upper cover portion held by the user's hand. Therefore, it is possible to maximize the abdominal massage effect and make the user feel more comfortable when using it.
[0028] The effects of the present invention are not limited to the above effects, and it should be understood that all effects that can be inferred from the configuration of the invention described in the detailed description or claims of the present invention are included. Brief Description of the Drawings
[0029] Figure 1 FIG. is a perspective view showing an assembled state of an abdominal massage device according to an embodiment of the present invention.
[0030] Figure 2 FIG. is a perspective view showing a disassembled state of an abdominal massage device according to an embodiment of the present invention.
[0031] Figure 3 is Figure 1 a cross-sectional view taken along line I-I of
[0032] Figure 4 FIG. is a perspective view showing an assembled state of an acoustic vibration module of an abdominal massage device according to an embodiment of the present invention.
[0033] Figure 5 FIG. is a cross-sectional view of an acoustic vibration module of an abdominal massage device according to an embodiment of the present invention.
[0034] Figure 6 is an enlarged view showing Figure 3 part A.
[0035] Figure 7 is a cross-sectional view of an abdominal massage device according to another embodiment of the present invention. Detailed Description of the Invention
[0036] Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings so that those of ordinary skill in the art to which the present invention pertains can easily implement it. The present invention can be embodied in various different forms and is not limited to the embodiments described herein. To clearly illustrate the present invention, parts irrelevant to the description may be omitted in the drawings, and the same reference numerals are used throughout the specification for the same or similar components.
[0037] The words and terms used in this specification and claims are not limited to the ordinary or dictionary meanings, but should be interpreted as meanings and concepts conforming to the technical idea of the present invention according to the principle that the inventor can define terms and concepts to best explain his invention.
[0038] Figure 1 is a perspective view showing the assembled state of an abdominal massage device according to an embodiment of the present invention, Figure 2 is a perspective view showing the disassembled state of an abdominal massage device according to an embodiment of the present invention, Figure 3 is Figure 1 a cross-sectional view of section I-I of Figure 4 is a perspective view showing the assembled state of the acoustic vibration module of an abdominal massage device according to an embodiment of the present invention, Figure 5 is a cross-sectional view of the acoustic vibration module of an abdominal massage device according to an embodiment of the present invention. Here, the Z direction refers to the height direction of the abdominal massage device, and the W direction refers to the width direction of the abdominal massage device.
[0039] As Figures 1 to 3 shown, the abdominal massage device having an acoustic vibration module according to an embodiment of the present invention includes: a lower cover part 100 configured to contact the user's abdomen; a finger pressure part 200 supported by the lower cover part 100; a vibration generating part 300 configured to contact the finger pressure part 200 and provided with an acoustic vibration module 310 for generating acoustic vibrations; and an upper cover part 400 configured to face the lower cover part 100 to surround the upper part of the vibration generating part 300.
[0040] The lower cover portion 100 may have an opening area provided at its center to expose the pressing portion 200 to the outside. As an example, the lower cover portion 100 may be disposed around the pressing portion 200. The lower cover portion 100 may be provided with locking protrusions at multiple positions along its periphery. Such locking protrusions may be fitted into locking holes formed in the pressing portion 200.
[0041] The coupling structure between the lower cover portion 100 and the pressing portion 200 is not limited thereto and may be implemented in various forms. As an example, the lower cover portion 100 and the pressing portion 200 may also be coupled by means of bolt fastening, welding, adhesion, or press fitting.
[0042] A stepped surface may be provided around the pressing portion 200. The portion provided with the locking protrusions of the lower cover portion may be mounted on the stepped surface. Here, the thickness of the stepped surface may be smaller than the thickness at the center of the pressing portion 200. The above-mentioned locking holes may be provided in these stepped surfaces.
[0043] As described above, the upper cover portion 400 is disposed opposite to the upper side of the lower cover portion 100, and a space for disposing the pressing portion 200 and the acoustic vibration module 310 may be provided between the upper cover portion 400 and the lower cover portion 100. Here, the upper cover portion 400 may be coupled to the lower cover portion 100 in a fitting manner.
[0044] Since the abdominal massage device operates for a predetermined time while placed on the user's abdomen, it is preferably configured such that the user can hold the upper cover portion 400 by hand. Such an abdominal massage device may also be provided with a handle hole that the user can hold by hand or a waistband that can be worn around the user's waist.
[0045] At this time, as Figure 4 and Figure 5 shown, the acoustic vibration module 310 includes: a magnet 311 elastically supported by a first elastic member 312; and a coil 313 disposed so as to surround the magnet 311 so that the magnet 311 vibrates when an electric current is applied.
[0046] The first elastic member 312 elastically supports the magnet 311 in a state of being fixed inside a housing 314 to be described later. In order to wind the coil 313, a bobbin may be provided in which a coil groove is formed, and for this purpose, a space for placing the bobbin may be formed in the housing 314.
[0047] When an electric current is applied to the coil 313, the magnet 311 vibrates due to the force generated by the magnetic field formed in the magnet 311. The magnet 311 vibrates according to the frequency (acoustic wave) selected by the user, so that acoustic vibration can be output, and the output acoustic vibration is transmitted to the pressing portion 200 to perform abdominal massage.
[0048] That is, the abdominal massage device with a sonic vibration module according to an embodiment of the present invention can minimize its volume and be easily stored since it massages the user's abdomen using the sonic vibration generated by the sonic vibration module 310, thereby enabling effective abdominal massage through sonic vibration.
[0049] As Figures 3 to 5 shown, the sonic vibration module 310 further includes a housing 314 which is configured to surround the magnet 311, the first elastic member 312, and the coil 313, and is provided with a diaphragm 314a for transmitting the vibration of the magnet 311. The vibration generating unit 300 may further include a second elastic member 315 for elastically supporting the housing 314.
[0050] That is, as described above, when an electric current is applied to the coil 313, the magnet 311 vibrates and outputs sonic vibration, and this sonic vibration is output to the outside through the diaphragm 314a provided in the housing 314. The sonic vibration output to the outside can be transmitted to the user through the finger pressing unit 200.
[0051] In addition, since the housing 314 is elastically supported by the second elastic member 315, during the process of outputting sonic vibration to the outside through the diaphragm 314a, the housing 314 is configured to vibrate together, thereby increasing the output of sonic vibration and maximizing the abdominal massage effect.
[0052] When the vibration frequencies of the first elastic member 312 and the second elastic member 315 are set to be the same, the abdominal massage effect can be further increased through the resonance phenomenon.
[0053] As Figure 4 shown, the second elastic member 315 may include: a main body 315a surrounding the periphery of the housing 314; and legs 315b extending circumferentially along the main body 315a and forming a slit 315c at a predetermined length away from the main body 315a.
[0054] The second elastic member 315 may be formed of an elastic material and, as described below, may be fixed to the plate portion 500, and the plate portion 500 is fixedly disposed on the upper cover portion 400. The main body 315a may be provided with a coupling hole, and a coupling protrusion provided on the housing 314 passes through the coupling hole and is fixed. That is, it is configured to be fastened to each other during the process of passing the coupling protrusion of the housing 314 through the coupling hole.
[0055] The leg portion 315b is disposed to extend in the main body 315a of the fastening housing 314, and the second elastic member 315 is fixed to the plate portion 500 by such leg portion 315b. A slit 315c may be formed in the second elastic member 315 such that the leg portion 315b is disposed at a predetermined length spaced apart from the main body 315a. The leg portion 315b may be formed to extend a predetermined length in the circumferential direction of the main body 315a, and due to the formation of the slit 315c, the leg portion 315b may be spaced apart from the main body 315a, so that the acoustic wave vibration can be prevented from being transmitted to the plate portion 500.
[0056] As Figure 3 shown, it further includes a plate portion 500 which is fixedly disposed on the upper cover portion 400 and is provided with a fixing rod 510 for fixing the leg portion 315b. A transmission prevention hole 520 for preventing contact between the acoustic wave vibration module 310 and the plate portion 500 may be provided in the plate portion 500.
[0057] That is, the acoustic wave vibration module 310 is fixed to the fixing rod 510 of the plate portion 500 by the second elastic member 315, and is arranged such that due to the provision of the transmission prevention hole 520, the acoustic wave vibration released through the acoustic wave vibration module 310 is prevented from being transmitted to the plate portion 500, while allowing the acoustic wave vibration to be directly transmitted to the finger pressure portion 200.
[0058] According to the above structure, in the abdominal massage device having an acoustic wave vibration module according to an embodiment of the present invention, the acoustic wave vibration is only transmitted to the finger pressure portion 200 that performs finger pressure on the user's abdomen, and in order to fix the position of the abdominal massage device, the transmission of the acoustic wave vibration to the upper cover portion 400 held by the user's hand is minimized as much as possible. Therefore, the abdominal massage effect can be maximized while making it more comfortable for the user to use.
[0059] At this time, as Figure 3 shown, the transmission prevention hole 520 may be disposed at a position overlapping the acoustic wave vibration module 310 in the height direction Z, and the inner diameter ID of such transmission prevention hole 520 may be larger than the outer diameter OD of the acoustic wave vibration module 310.
[0060] Thereby, the acoustic wave vibration released to the outside after being generated in the acoustic wave vibration module 310 can be more effectively prevented from being transmitted to the plate portion 500, thereby improving the convenience for the user.
[0061] Figure 6 is an enlarged view showing Figure 3 part A.
[0062] As Figure 6As shown, a fixing member 530 is provided on the plate portion 500. In a state where a through-hole 315b' is formed in the through-leg portion 315b, the fixing member 530 is inserted and fixed in a fastening hole 511 formed in the fixing rod 510. A blocking member 315b'' for preventing the transmission of acoustic vibrations may be provided on the inner peripheral surface of the through-hole 315b'.
[0063] This blocking member 315b'' is disposed between the second elastic member 315 and the fixing rod 510, thereby preventing the acoustic vibrations transmitted through the second elastic member 315 from being transmitted to the plate portion 500 through the fixing rod 510.
[0064] The blocking member 315b'' may also be arranged to be inserted and disposed during the process of assembling the second elastic member 315 to the fixing rod 510 of the plate portion 500, as a separate structure, such as Figure 6 As shown, the blocking member 315b'' may also be arranged to be integrated with the second elastic member 315. That is, it is arranged to extend radially outward along the upper surface and the lower surface of the leg portion 315b in a state where the blocking member 315b'' is inserted and disposed in the through-hole 315b' formed in the leg portion 315b of the second elastic member 315, so as to surround a predetermined portion around the through-hole 315b'. As an example, the blocking member 315b'' may be integrally formed with the second elastic member 315 by insert molding.
[0065] Such a finger pressure portion 200 may include: a finger pressure ball 210 disposed in contact with the user's abdomen; and a fixing foam 220 for fixing the position of the finger pressure ball 210. The fixing foam 220 may be a self-skinning foam (Skin Foam) made of an elastic material. When the fixing foam 220 is formed of an elastic material, the noise generated due to the output of acoustic vibrations can be reduced. In addition, since the fixing foam 220 is the part directly in contact with the user's abdomen, when it is made of self-skinning foam, it can provide a soft feeling to the user, and since the part exposed to the outside is made of self-skinning foam, it provides a high-class appearance similar to leather, thereby improving the user's satisfaction.
[0066] A plurality of insertion holes for inserting and disposing the finger pressure ball 210 may be formed in the fixing foam 220. The plurality of insertion holes may be formed at positions corresponding to the acupoints on the abdomen. Such insertion holes may also be formed in the fixing foam 220 in a regular or irregular manner.
[0067] The finger pressure ball 210 may be made of a material capable of providing various functions such as far-infrared radiation, immunity improvement, or electromagnetic wave shielding. In addition, the finger pressure ball 210 may be made of a material with excellent thermal conductivity so as to be able to effectively transfer the heat of a later-described heating member 700 to the user's abdomen.
[0068] Here, the shape of the acupressure ball 210 is not particularly limited, but preferably, the lower end portion of the acupressure ball 210 is formed in a spherical shape so that the acoustic vibration released by the acoustic vibration module 310 is uniformly transmitted to the user's abdomen.
[0069] At this time, the acupressure ball 210 can be formed at a predetermined height to protrude outward from the fixed foam 220. Here, the predetermined height can be an appropriate height for acupressing the user's abdomen. That is, the acupressure ball 210 is a cylinder with a predetermined height, and the lower end portion of the acupressure ball 210 can be convexly formed in a dome shape.
[0070] Thereby, when the acupressure ball 210 contacts the user's abdomen, the acoustic vibration of the acoustic vibration module 310 can be more effectively transmitted.
[0071] A plurality of such acupressure balls 210 are provided so that they can be respectively inserted into a plurality of insertion holes arranged in the fixed foam 220.
[0072] Fixed ribs extending radially outward can be provided around the acupressure ball 210. Such fixed ribs can be installed and arranged in the installation grooves formed along the periphery of the insertion holes. Here, the inner diameter of the insertion hole can be the same as the outer diameter of the acupressure ball 210. Thereby, the acupressure ball 210 can be inserted and arranged in the insertion hole in an interference fit manner.
[0073] In addition, since the fixed ribs of the acupressure ball 210 are fixed by the installation grooves of the fixed foam 220, the acupressure ball 210 can operate stably without detaching from the fixed foam 220 even when acoustic vibration is released.
[0074] A hollow area that opens upward can be provided inside the acupressure ball 210. That is, a wall in a dome shape with a predetermined thickness and an empty interior can be arranged in the acupressure ball 210. Thereby, when heat is transferred from the heat generating member 700, the heat is transferred along the dome-shaped wall in a short time, so the thermal efficiency of the acupressure ball 210 can be improved. In addition, the acupressure ball 210 can prevent unnecessary material loss through the dome-shaped wall, thereby reducing the manufacturing cost.
[0075] As described above, since the lower cover portion 100, the fixed foam 220, and the acupressure ball 210 are respectively combined in a fitting manner, the manufacturing process is simplified, and the time required for curing the adhesive is not needed, so the manufacturing time can be shortened.
[0076] As Figure 3As shown, a damping member 600 may be provided between the acoustic vibration module 310 and the finger pressure portion 200 to prevent noise generated by impact. That is, during the process of acoustic vibration being released to the outside through the acoustic vibration module 310, when the acoustic vibration module 310 collides with the finger pressure ball 210, not only noise is generated due to the impact, but also the finger pressure ball 210 may be damaged, causing harm to the user. As described above, when the damping member 600 is provided, the collision between the acoustic vibration module 310 and the finger pressure ball 210 is prevented, and at the same time, the acoustic vibration can be gently transmitted.
[0077] On the inner peripheral surface of such an anti-transmission hole 520, a guide rib 540 extending in the height direction Z is provided, and the damping member 600 can be disposed inside the guide rib 540. When the guide rib 540 is formed in the above-described manner, the damping member 600 can be prevented from accidentally detaching due to acoustic vibration during abdominal massage.
[0078] At this time, the damping member 600 and the guide rib 540 can be disposed at intervals in the width direction W, whereby the released acoustic vibration can be prevented from being transmitted to the plate portion 500 through the damping member 600.
[0079] As Figure 3 shown, a heating member 700 for heating the finger pressure portion 200 may be provided between the plate portion 500 and the finger pressure portion 200. The heating member 700 may include a heating element and a support for fixedly supporting such a heating element. That is, the support has a function of supporting the heating element, and its material is not particularly limited.
[0080] Such a heating element can be disposed in a manner that directly contacts the upper surfaces of a plurality of finger pressure balls 210. As an example, the heating element can be a heating wire formed to extend integrally, and can be disposed in a zigzag shape so as to pass over the upper surfaces of the finger pressure balls 210. That is, the heating element can be disposed in a zigzag shape from one side in the width direction W of the finger pressure portion 200 to the other side.
[0081] The heating element is not limited to a linear shape, and can also be formed into a plate shape. Such a heating element can include an aluminum heating element, carbon non-woven fabric, cotton mesh heating element, and carbon fiber heating element.
[0082] A fixing groove for fixing the position of the heating member 700 may be formed in the fixing foam 220. In a state where the heating member 700 is inserted and disposed in such a fixing groove, the plate portion 500 presses and fixes the heating member 700.
[0083] As described above, when the heating member 700 is provided, finger pressure and heating through acoustic vibration can be provided simultaneously, so that the abdominal massage effect can be maximized.
[0084] As Figure 3As shown, a separation space K may be provided between the acoustic vibration module 310 and the upper cover portion 400. As described above, when the separation space K is provided, the acoustic vibration module 310 does not come into direct contact with the upper cover portion 400, so that direct transmission of acoustic vibration can be prevented.
[0085] Figure 7 It is a cross-sectional view of an abdominal massaging device according to another embodiment of the present invention.
[0086] As Figure 7 shown, a vibration-proof foam member 800 for preventing resonance between the upper cover portion 400 and the acoustic vibration module 310 may be provided in the separation space K. When acoustic vibration is released through the acoustic vibration module 310, the air inside the separation space K vibrates, which may cause unexpected vibration or noise of the abdominal massaging device. However, when the vibration-proof foam member 800 is provided, vibration of the air inside the separation space K can be prevented by the acoustic vibration module 310, so that the above-mentioned vibration or noise problem does not occur.
[0087] As Figure 3 shown, the lower cover portion 100 may be disposed along the periphery of the finger pressure portion 200 such that the finger pressure portion 200 is exposed toward the user's abdomen. Thereby, the finger pressure portion 200 can be effectively fixed, and effective abdominal massage can be performed through the finger pressure portion 200 exposed to the outside.
[0088] As described above, in the abdominal massaging device having an acoustic vibration module according to an embodiment of the present invention, acoustic vibration is only transmitted to the finger pressure portion 200 that presses the user's abdomen, and in order to fix the position of the abdominal massaging device, the transmission of acoustic vibration to the upper cover portion 400 held by the user's hand is minimized as much as possible. Therefore, the abdominal massage effect can be maximized while making the user feel more comfortable.
[0089] Although an embodiment of the present invention has been described above, the idea of the present invention is not limited to the embodiments presented in this specification. Those of ordinary skill in the art who understand the idea of the present invention can easily propose other embodiments within the same idea range by adding, changing, deleting, adding, etc. of the components, but this also falls within the idea range of the present invention.
Claims
1. An abdominal massage device with a sound wave vibration module, characterized in that it includes: a lower cover portion configured to contact the user's abdomen; a finger pressure portion supported by the lower cover portion; a vibration generating portion configured to contact the finger pressure portion and provided with a sound wave vibration module for generating sound wave vibration; and an upper cover portion oppositely configured to the lower cover portion to surround the upper part of the vibration generating portion, wherein the sound wave vibration module includes: a magnet elastically supported by a first elastic member; and a coil configured to surround the periphery of the magnet so that the magnet vibrates when an electric current is applied.
2. The abdominal massage device with a sound wave vibration module according to claim 1, characterized in that the sound wave vibration module further includes a housing configured to surround the magnet, the first elastic member, and the coil, and provided with a vibration plate for transmitting the vibration of the magnet, and the vibration generating portion further includes a second elastic member for elastically supporting the housing.
3. The abdominal massage device with a sound wave vibration module according to claim 2, characterized in that the second elastic member includes: a main body surrounding the periphery of the housing; and legs extending circumferentially along the main body and forming slits at a predetermined length spaced apart from the main body.
4. The abdominal massage device with a sound wave vibration module according to claim 3, characterized in that the device further includes a plate portion fixedly disposed on the upper cover portion and provided with a fixing rod for fixing the legs, and an anti-transfer hole for preventing contact between the sound wave vibration module and the plate portion is provided in the plate portion.
5. The abdominal massage device with a sound wave vibration module according to claim 4, characterized in that the anti-transfer hole is disposed at a position overlapping the sound wave vibration module in the height direction.
6. The abdominal massage device with a sound wave vibration module according to claim 4, characterized in that a fixing member is provided in the plate portion, and the fixing member is inserted and fixed in a fastening hole formed in the fixing rod in a state of passing through a through hole formed in the legs, and a blocking member for preventing sound wave vibration transmission is provided on the inner circumferential surface of the through hole.
7. The abdominal massage device with a sound wave vibration module according to claim 4, characterized in that the finger pressure portion includes: a finger pressure ball configured to contact the user's abdomen; and a fixing foam for fixing the position of the finger pressure ball.
8. The abdominal massage device with a sound wave vibration module according to claim 7, characterized in that a damping member for preventing noise generated by impact is provided between the sound wave vibration module and the finger pressure portion.
9. The abdominal massage device with a sound wave vibration module according to claim 8, characterized in that a guiding rib extending in the height direction is provided on the inner circumferential surface of the anti-transfer hole, the damping member is disposed inside the guiding rib, and the damping member and the guiding rib are spaced apart from each other in the width direction.
10. The abdominal massage device with a sound wave vibration module according to claim 4, characterized in that A heating member for heating the finger pressure part is provided between the plate part and the finger pressure part.
11. The abdominal massage device with a sonic vibration module according to claim 1, characterized in that A separation space is provided between the sonic vibration module and the upper cover part.
12. The abdominal massage device with a sonic vibration module according to claim 11, characterized in that An anti-vibration foam member for preventing resonance between the upper cover part and the sonic vibration module is provided in the separation space.
13. The abdominal massage device with a sonic vibration module according to claim 1, characterized in that The lower cover part is arranged along the periphery of the finger pressure part so that the finger pressure part is exposed toward the user's abdomen.