A water-cooled point vibration wave massage device
By introducing a water-cooled heat dissipation system into the massage equipment, the problems of insufficient power and poor massage experience caused by coil heating are solved, and effective temperature control and a comfortable massage experience are achieved.
Patent Information
- Application Number
- CN202311134097.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-04
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2043-09-04
AI Technical Summary
In the prior art, the coils of massage equipment are alternately energized to generate heat, resulting in insufficient power for the collision column, and the heat diffuses to the outer wall of the product, affecting the massage experience.
It adopts a water-cooling design. Cold water is transported into the heat dissipation cavity through the water inlet joint. The cold water flows in the heat dissipation cavity to take away the heat of the coil body and is discharged through the return water joint to form a circulating heat dissipation system to reduce the temperature of the coil body.
It effectively reduces the coil body temperature, improves the comfort and experience of using massage equipment, and ensures the massage effect.
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Figure CN117159360B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of massage equipment, in particular to a water-cooled point vibration wave massage equipment. Background Art
[0002] Massage is a method of using manual techniques to act on specific parts of the human body surface to regulate the body's physiological and pathological conditions and achieve the purpose of physical therapy. The massager uses mechanical rolling force and mechanical force squeezing to perform massage.
[0003] The impact of the massage head massages the human body. There is a coil skeleton inside the product, with two sections of coils on the coil skeleton. There is a cavity inside the skeleton, and a collision column is provided in the cavity. After the start-stop switch is turned on, the two coils are alternately energized to form an alternating magnetic field. The two magnetic fields alternately drive the collision column to do reciprocating motion in the cavity.
[0004] In the current existing technology, the coils are frequently energized alternately to generate heat. The magnetic field generated by the heating of the first coil is weakened, resulting in insufficient power for the collision column. The heat generated by the heating of the second coil diffuses to the outer wall of the product, affecting manual use, thereby reducing the massage experience. Here we provide a water-cooled point vibration wave massage device. Summary of the Invention
[0005] In order to solve the above problems, the present invention proposes a water-cooled point vibration wave massage device.
[0006] The technical solution adopted by the present invention to solve its technical problems is: the water-cooled point vibration wave massage device described in the present invention includes a massage shell; a coil skeleton is installed inside the massage shell; a coil body is installed inside the coil skeleton; a heat dissipation cavity is opened inside the massage shell; a water inlet joint is fixedly connected to the side end of the massage shell; a water inlet pipe is installed at the side end of the water inlet joint; and a return water joint is installed on one side of the water inlet joint.
[0007] Preferably, a water tank is provided on one side of the massage shell; a cold water device is fixedly connected to the inner wall of the bottom end of the water tank; a liquid pump is fixedly connected to the inside of the water tank; a No. 1 connecting pipe is connected to the top of the liquid pump, and one end of the No. 1 connecting pipe is connected to the water inlet joint; a No. 2 connecting pipe is fixedly connected to the inside of the water tank; one end of the No. 2 connecting pipe is connected to the return water joint.
[0008] Preferably, a limiting cylinder is installed at the bottom end of the liquid pump; the bottom end of the liquid pump is rotatably connected to rod No. 1; a turbine impeller is fixed on the rod No. 1; a No. 2 rotating rod is rotatably connected to the top inner wall of the water tank; a belt is rotatably connected between the No. 2 rotating rod and the No. 1 rod; and a stirring rod is fixed at the bottom end of the No. 2 rotating rod.
[0009] Preferably, a heat conducting plate is installed on the top of the cold water equipment; a through groove is provided inside the heat conducting plate; a delivery pipe is fixedly connected to the side end of the through groove, and one end of the delivery pipe is connected to the No. 2 connecting pipe; a No. 1 baffle is installed inside the heat conducting plate; a No. 1 through hole is provided inside the No. 1 baffle; a mixing tank is provided inside the No. 1 through hole; a No. 2 baffle is installed inside the heat conducting plate; a No. 2 through hole is provided inside the No. 2 baffle.
[0010] Preferably, a No. 2 heat dissipation ring is installed inside the massage housing; and a plurality of heat dissipation holes are provided inside the No. 2 heat dissipation ring.
[0011] Preferably, a connecting plate is fixedly connected to the interior of the water tank; a second temperature transfer plate is fixedly connected to the side end of the connecting plate; and a heat dissipation plate is fixedly connected to the side end of the second temperature transfer plate.
[0012] Preferably, one end of a No. 1 temperature transfer plate is installed on the side end of the connecting plate, and the other end of the No. 1 temperature transfer plate is connected to the heat conduction plate; a No. 1 heat dissipation ring is provided inside the massage shell, and one end of the No. 1 heat dissipation ring is connected to the heat dissipation plate.
[0013] Preferably, an upper sealing sleeve is installed inside the massage shell; a No. 1 sealing ring is installed inside the upper sealing sleeve; a No. 2 sealing ring is installed on the side end of the coil skeleton; a lower compression sleeve is installed inside the massage shell; and a No. 3 sealing ring is installed on one side of the lower compression sleeve.
[0014] The beneficial effects of the present invention are:
[0015] The present invention provides a water-cooled point vibration wave massage device, which transports cold water into the internal flow of the heat dissipation chamber through a water inlet joint. The water flows inside the heat dissipation chamber and can take away the heat generated by the coil body. The water is then discharged from the interior of the massage shell through a return water joint. The reciprocating cycle continuously takes out the heat generated by the coil body through the water circulation, so that its temperature is maintained within a suitable range, thereby completing the heat dissipation treatment of the coil body, reducing the impact of high temperature on manual use, and thus improving the massage experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of this application. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings:
[0017] Figure 1 A perspective view of the present invention;
[0018] Figure 2 This is a three-dimensional diagram of the massage housing structure of the present invention;
[0019] Figure 3This is a schematic diagram of the massage housing structure of the present invention;
[0020] Figure 4 It is a three-dimensional diagram of the water tank structure of the present invention;
[0021] Figure 5 It is a schematic diagram of the liquid pump structure of the present invention;
[0022] Figure 6 Schematic diagram of the heat conducting plate structure of the present invention;
[0023] Figure 7 A three-dimensional diagram of the heat dissipation plate structure of the present invention;
[0024] Legend:
[0025] 1. Massage shell; 11. Heat dissipation chamber; 12. No. 1 sealing ring; 13. No. 2 sealing ring; 14. No. 3 sealing ring; 15. Water inlet pipe; 16. Coil body; 17. Coil skeleton; 18. Lower compression sleeve; 19. Upper sealing sleeve; 20. Return water joint; 21. Water inlet joint; 22. Water tank; 23. Cold water equipment; 24. Liquid pump; 25. Limit cylinder; 26. Turbine impeller; 27. No. 1 rod; 28. Belt; 29. No. Rotating rod; 30. Stirring rod; 31. Connecting pipe No. 1; 32. Connecting pipe No. 2; 33. Delivery pipe; 34. Heat conducting plate; 35. Through slot; 36. Baffle No. 1; 37. Baffle No. 2; 38. Through hole No. 1; 39. Through hole No. 2; 40. Temperature transfer plate No. 1; 41. Connecting plate; 42. Heat dissipation plate; 43. Heat dissipation ring No. 1; 44. Heat dissipation ring No. 2; 45. Heat dissipation hole; 46. Temperature transfer plate No. 2; 47. Mixing tank. DETAILED DESCRIPTION
[0026] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. 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 making any creative efforts shall fall within the scope of protection of the present invention.
[0027] See also Figure 1-Figure 7 The present invention provides a water-cooled point vibration wave massage device, comprising a massage shell 1; a coil skeleton 17 is installed inside the massage shell 1; a coil body 16 is installed inside the coil skeleton 17; a heat dissipation cavity 11 is opened inside the massage shell 1; a water inlet joint 21 is fixedly connected to the side end of the massage shell 1; a water inlet pipe 15 is installed at the side end of the water inlet joint 21; and a return water joint 20 is installed on one side of the water inlet joint 21.
[0028] In order to realize the cold water conveyed by the water inlet joint 21 to flow inside the heat dissipation cavity 11, the heat generated by the coil body 16 can be taken away. The frequent operation of the coil body 16 during operation will generate heat. A sealed cavity heat dissipation cavity 11 is formed between the massage shell 1 and the coil skeleton 17. Cold water enters the heat dissipation cavity 11 through the water inlet joint 21 and flows inside the heat dissipation cavity 11. The water flows inside the heat dissipation cavity 11 and can take away the heat generated by the coil body 16. The water is then discharged from the interior of the massage shell 1 from the return water joint 20. After the water is cooled, it enters the heat dissipation cavity 11 through the water inlet joint 21 and flows inside. The reciprocating cycle continuously brings out the heat generated by the coil body 16 through the water circulation, so that its temperature is maintained in an appropriate range, thereby completing the heat dissipation treatment of the coil body 16, reducing the impact of high temperature on manual use, and thus improving the massage experience. During operation, the massage head at the bottom end of the massage shell 1 is used to massage the user's waist and back.
[0029] Further, such as Figure 5 As shown, a water tank 22 is provided on one side of the massage shell 1; a cold water device 23 is fixedly connected to the inner wall of the bottom end of the water tank 22; a liquid pump 24 is fixedly connected to the inside of the water tank 22; the top of the liquid pump 24 is connected to a No. 1 connecting pipe 31, one end of the No. 1 connecting pipe 31 is connected to the water inlet joint 21; a No. 2 connecting pipe 32 is fixedly connected to the inside of the water tank 22; one end of the No. 2 connecting pipe 32 is connected to the return water joint 20.
[0030] In order to realize the cooling treatment of water by the cold water device 23, the water can be circulated to cool the coil body 16 through the cooperation of the No. 1 connecting pipe 31 and the No. 2 connecting pipe 32. The interior of the water tank 22 is filled with water. The operation of the cold water device 23 can cool the water inside the water tank 22. The liquid pump 24 can transport the cooled water to the No. 1 connecting pipe 31. The water enters the water inlet joint 21 through the No. 1 connecting pipe 31, and then enters the interior of the massage shell 1 through the water inlet joint 21. The water then enters the No. 2 connecting pipe 32 through the return water joint 20, and then enters the interior of the water tank 22 through the No. 2 connecting pipe 32, so that the water can be recycled, thereby improving the heat dissipation effect of the coil body 16 and ensuring the operating environment of the coil body 16.
[0031] Further, such as Figure 5 As shown, a limiting cylinder 25 is installed at the bottom end of the liquid pump 24; the bottom end of the liquid pump 24 is rotatably connected to a No. 1 rod 27; a turbine impeller 26 is fixed to the No. 1 rod 27; a No. 2 rotating rod 29 is rotatably connected to the inner side wall of the top end of the water tank 22; a belt 28 is rotatably connected between the No. 2 rotating rod 29 and the No. 1 rod 27; and a stirring rod 30 is fixed to the bottom end of the No. 2 rotating rod 29.
[0032] In order to achieve the stirring of the stirring rod 30, the water in the upper and lower areas can be mixed and the water stratification in the upper and lower areas can be reduced. When the liquid pump 24 draws the water into the water tank 22, it will pass through the inside of the limiting cylinder 25. The water flows inside the limiting cylinder 25, causing the turbine impeller 26 to rotate. The rotation of the turbine impeller 26 then causes the No. 1 rod 27 to rotate. The rotation of the No. 1 rod 27 will cause the belt 28 to rotate. The rotation of the belt 28 will cause the No. 2 rotating rod 29 to rotate. The rotation of the No. 2 rotating rod 29 then causes the stirring rod 30 to rotate. The inside of the stirring rod 30 can stir and mix the water inside the water tank 22. The cold water equipment 23 can cool the water at the bottom of the water tank 22, resulting in a temperature difference in the upper and lower areas of the water tank 22. The stirring of the stirring rod 30 can mix the upper and lower water, reduce the water stratification in the upper and lower areas, improve water mixing, balance the water temperature, and improve the heat dissipation treatment effect of the coil body 16.
[0033] Further, such as Figure 6 As shown, a heat conducting plate 34 is installed at the top of the cold water equipment 23; a through groove 35 is provided inside the heat conducting plate 34; a delivery pipe 33 is fixedly connected to the side end of the through groove 35, and one end of the delivery pipe 33 is connected to the No. 2 connecting pipe 32; a No. 1 baffle 36 is installed inside the heat conducting plate 34; a No. 1 through hole 38 is provided inside the No. 1 through hole 38; a mixing tank 47 is provided inside the No. 1 through hole 38; a No. 2 baffle 37 is installed inside the heat conducting plate 34; a No. 2 through hole 39 is provided inside the No. 2 baffle 37.
[0034] In order to achieve a lower water temperature delivered by the water inlet joint 21, the bottom end of the heat conducting plate 34 is attached to the surface of the cold water device 23. The heat conducting plate 34 is made of a heat sink material and is attached to the top of the cold water device 23. The low temperature generated by the cold water device 23 is transferred to the heat conducting plate 34. The temperature inside the water tank 22 is lower than that of the massage shell 1. When the water inside the massage shell 1 enters the water tank 22, it will be mixed with the low-temperature water, thereby cooling the water.
[0035] The heat conducting plate 34 can absorb the heat of the cold water equipment 23. The No. 2 connecting pipe 32 is connected to the delivery pipe 33. The water delivered by the No. 2 connecting pipe 32 will be discharged from the delivery pipe 33 to the inside of the through groove 35. The water needs to flow through the No. 1 baffle 36 and the No. 2 baffle 37. The No. 1 baffle 36 and the No. 2 baffle 37 can absorb the heat of the heat conducting plate 34. The heat of the water will be reduced after contacting the No. 1 baffle 36 and the No. 2 baffle 37. The water can flow through the No. 1 through hole 38 and the No. 2 through hole 39. The cooperation of the No. 1 baffle 36 and the No. 2 baffle 37 can increase the speed of cooling the water. The water inside the No. 1 baffle 36 can flow in the mixing tank 47. The stirring of the stirring rod 30 will affect the water inside the mixing tank 47, so that the water can flow upward through the mixing tank 47, thereby improving the mixing of water in the upper and lower areas.
[0036] Further, such as Figure 7 As shown, a second heat dissipation ring 44 is installed inside the massage housing 1 ; a plurality of heat dissipation holes 45 are provided inside the second heat dissipation ring 44 .
[0037] In order to absorb and diffuse the heat generated by the coil body 16, thereby dissipating the heat of the coil body 16, the inner wall of the No. 2 heat dissipation ring 44 is in contact with the coil body 16, and the heat generated by the coil body 16 will be transferred to the No. 2 heat dissipation ring 44. The No. 2 heat dissipation ring 44 can absorb and diffuse the heat generated by the coil body 16, helping the coil body 16 to dissipate heat. The water inside the heat dissipation cavity 11 can flow through the heat dissipation holes 45. The water flowing in the heat dissipation holes 45 can take away the heat of the No. 2 heat dissipation ring 44, thereby improving the heat dissipation treatment of the coil body 16 by the No. 2 heat dissipation ring 44.
[0038] Further, such as Figure 7 As shown, a connecting plate 41 is fixedly connected to the interior of the water tank 22 ; a second temperature transfer plate 46 is fixedly connected to the side end of the connecting plate 41 ; and a heat dissipation plate 42 is fixedly connected to the side end of the second temperature transfer plate 46 .
[0039] In order to improve the heat dissipation of the massage shell 1, the heat generated by the coil body 16 will be transferred to the massage shell 1. The heat sink 42 is arranged on the outer wall of the massage shell 1. The heat sink 42 can absorb the heat of the massage shell 1. The connecting plate 41 is installed to the inside of the water tank 22. The heat of the heat sink 42 will be transferred to the connecting plate 41 through the second temperature transfer plate 46. The water inside the water tank 22 can cool the connecting plate 41. After the heat of the heat sink 42 is transferred to the connecting plate 41, it is mixed through the temperature of the connecting plate 41 itself, thereby dissipating the heat of the heat sink 42. The heat sink 42, the second temperature transfer plate 46 and the connecting plate 41 are all made of heat-absorbing materials. The cooperation of the heat sink 42 can improve the heat dissipation of the massage shell 1, thereby ensuring the operating ambient temperature of the coil body 16.
[0040] Further, such as Figure 5 As shown, one end of the No. 1 temperature transfer plate 40 is installed on the side end of the connecting plate 41, and the other end of the No. 1 temperature transfer plate 40 is connected to the heat conduction plate 34; a No. 1 heat dissipation ring 43 is provided inside the massage shell 1, and one end of the No. 1 heat dissipation ring 43 is connected to the heat dissipation plate 42.
[0041] In order to achieve the goal that the No. 1 temperature transfer plate 40 can improve the heat dissipation effect of the heat sink 42, the cold water equipment 23 can cool the water inside the water tank 22, and the heat conducting plate 34 can absorb the low temperature of the cold water equipment 23. The side end of the No. 1 temperature transfer plate 40 contacts the heat conducting plate 34, and the heat conducting plate 34 transfers the low temperature to the No. 1 temperature transfer plate 40. The No. 1 temperature transfer plate 40 then transfers the low temperature effect to the connecting plate 41. The heat sink 42 can be heat-dissipated through the connecting plate 41, and the heat dissipation effect of the heat sink 42 can be improved through the No. 1 temperature transfer plate 40. The No. 1 heat dissipation ring 43 is arranged inside the massage shell 1, and the water inside the heat dissipation cavity 11 will contact the No. 1 heat dissipation ring 43, causing the heat inside the heat dissipation cavity 11 to be absorbed by the No. 1 heat dissipation ring 43. Dissipating heat from the heat sink 42 can dissipate heat from the No. 1 heat dissipation ring 43, thereby improving the heat dissipation effect of the coil body 16.
[0042] Further, such as Figure 3 As shown, an upper sealing sleeve 19 is installed inside the massage shell 1; a No. 1 sealing ring 12 is installed inside the upper sealing sleeve 19; a No. 2 sealing ring 13 is installed on the side end of the coil skeleton 17; a lower compression sleeve 18 is installed inside the massage shell 1; and a No. 3 sealing ring 14 is installed on one side of the lower compression sleeve 18.
[0043] The coil skeleton 17 compresses the No. 3 sealing ring 14 to deform, so that the coil skeleton 17 is sealed with the massage shell 1, and the upper sealing sleeve 19 is threadedly connected and locked with the massage shell 1, compressing the No. 1 sealing ring 12 to deform, so that the upper sealing sleeve 19 is sealed with the massage shell 1. The coil skeleton 17 and the upper sealing sleeve 19 are axially sealed by two No. 2 sealing rings 13. The heating and cooling of the coil body 16 drive the coil skeleton 17 to deform slightly in the axial direction. The axial sealing can avoid water leakage due to deformation. The upper sealing sleeve 19 and the massage shell 1 are sealed by the No. 1 sealing ring 12. The water inlet joint 21 is connected to the upper sealing sleeve 19. The cold water flows into the heat dissipation cavity 11 through the water inlet joint 21, the upper sealing sleeve 19 and the water inlet pipe 15.
[0044] Working principle: When working, the coil body 16 frequently operates and generates heat. A sealed cavity heat dissipation cavity 11 is formed between the massage shell 1 and the coil skeleton 17. Cold water flows into the heat dissipation cavity 11 through the water inlet joint 21. The water flows inside the heat dissipation cavity 11 and can take away the heat generated by the coil body 16. The water is then discharged from the interior of the massage shell 1 from the return water joint 20. After the water is cooled, it enters the heat dissipation cavity 11 through the water inlet joint 21 and flows inside the heat dissipation cavity 11. The reciprocating cycle continuously takes out the heat generated by the coil body 16 through the water circulation, keeping its temperature within a suitable range, thereby completing the heat dissipation treatment of the coil body 16, reducing the impact of high temperature on manual use, and thus improving the massage experience; the water tank 22 The interior is filled with water, and the operation of the cold water device 23 can cool the water inside the water tank 22. The liquid pump 24 can transport the cooled water to the No. 1 connecting pipe 31. The water enters the water inlet joint 21 through the No. 1 connecting pipe 31, and then enters the interior of the massage shell 1 through the water inlet joint 21. The water then enters the No. 2 connecting pipe 32 through the return water joint 20, and then enters the interior of the water tank 22 through the No. 2 connecting pipe 32, so that the water can be recycled, thereby improving the heat dissipation effect of the coil body 16 and ensuring the operating environment of the coil body 16; when the liquid pump 24 draws the water into the water tank 22, it will pass through the inside of the limiting cylinder 25. The water flows inside the limiting cylinder 25 to rotate the turbine impeller 26, and the rotation of the turbine impeller 26 then The rotation of the belt 28 rotates the No. 2 rotating rod 29, and the rotation of the No. 2 rotating rod 29 rotates the stirring rod 30. The inside of the stirring rod 30 can stir and mix the water inside the water tank 22. The cold water device 23 can cool the water at the bottom of the water tank 22, resulting in a temperature difference between the upper and lower areas of the water tank 22. The stirring of the stirring rod 30 can mix the upper and lower water, thereby ensuring that the low-temperature water can enter the interior of the liquid pump 24 and enter the interior of the massage shell 1 to dissipate heat for the coil body 16; the bottom end of the heat conducting plate 34 is attached to the surface of the cold water device 23, and the heat conducting plate 34 can absorb the temperature of the cold water device 23. The connecting pipe 32 is connected to the delivery pipe 33. The water delivered by the No. 2 connecting pipe 32 will be discharged from the delivery pipe 33 to the inside of the through groove 35. The water needs to flow through the No. 1 baffle 36 and the No. 2 baffle 37. The No. 1 baffle 36 and the No. 2 baffle 37 can absorb the temperature of the heat conducting plate 34. The temperature of the water will be reduced after contacting the No. 1 baffle 36 and the No. 2 baffle 37. The water can flow through the No. 1 through hole 38 and the No. 2 through hole 39. The cooperation of the No. 1 baffle 36 and the No. 2 baffle 37 can increase the speed of cooling the water. The water inside the No. 1 baffle 36 can flow in the mixing tank 47. The stirring of the stirring rod 30 will affect the water inside the mixing tank 47, so that the water can flow upward through the mixing tank 47, thereby improving the mixing of water in the upper and lower areas.
[0045] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention, and such changes and modifications fall within the scope of the invention as claimed.
Claims
1. A water-cooled point vibration wave massage device, characterized in that: The massage shell (1) comprises a massage shell (1); a coil frame (17) is installed inside the massage shell (1); a coil body (16) is installed inside the coil frame (17); a heat dissipation cavity (11) is provided inside the massage shell (1); a water inlet joint (21) is fixedly connected to a side end of the massage shell (1); a water inlet pipe (15) is installed at a side end of the water inlet joint (21); a water return joint (20) is installed on one side of the water inlet joint (21); A water tank (22) is provided on one side of the massage housing (1); a cold water device (23) is fixedly connected to the inner side wall of the bottom end of the water tank (22); a liquid pump (24) is fixedly connected inside the water tank (22); a No. 1 connecting pipe (31) is connected to the top end of the liquid pump (24), and one end of the No. 1 connecting pipe (31) is connected to the water inlet joint (21); a No. 2 connecting pipe (32) is fixedly connected inside the water tank (22); one end of the No. 2 connecting pipe (32) is connected to the return water joint (20); The bottom end of the liquid pump (24) is provided with a limiting cylinder (25); the bottom end of the liquid pump (24) is rotatably connected to a No. 1 rod (27); a turbine impeller (26) is fixedly connected to the No. 1 rod (27); a No. 2 rotating rod (29) is rotatably connected to the inner side wall of the top end of the water tank (22); a belt (28) is rotatably connected between the No. 2 rotating rod (29) and the No. 1 rod (27); a stirring rod (30) is fixedly connected to the bottom end of the No. 2 rotating rod (29); A heat conducting plate (34) is installed at the top of the cold water device (23); a through groove (35) is provided inside the heat conducting plate (34); a delivery pipe (33) is fixed to the side end of the through groove (35), and one end of the delivery pipe (33) is connected to the second connecting pipe (32); a first baffle (36) is installed inside the heat conducting plate (34); a first through hole (38) is provided inside the first baffle (36); a mixing tank (47) is provided inside the first through hole (38); a second baffle (37) is installed inside the heat conducting plate (34); a second through hole (39) is provided inside the second baffle (37).
2. The water-cooled point vibration wave massage device according to claim 1, characterized in that: A second heat dissipation ring (44) is installed inside the massage housing (1); a plurality of heat dissipation holes (45) are provided inside the second heat dissipation ring (44).
3. The water-cooled point vibration wave massage device according to claim 2, characterized in that: A connecting plate (41) is fixedly connected to the interior of the water tank (22); a second temperature transfer plate (46) is fixedly connected to the side end of the connecting plate (41); and a heat dissipation plate (42) is fixedly connected to the side end of the second temperature transfer plate (46).
4. The water-cooled point vibration wave massage device according to claim 3, characterized in that: One end of a No. 1 temperature transfer plate (40) is mounted on the side end of the connecting plate (41), and the other end of the No. 1 temperature transfer plate (40) is connected to the heat conducting plate (34); a No. 1 heat dissipation ring (43) is provided inside the massage housing (1), and one end of the No. 1 heat dissipation ring (43) is connected to the heat dissipation plate (42).
5. The water-cooled point vibration wave massage device according to claim 4, characterized in that: An upper sealing sleeve (19) is installed inside the massage housing (1); a No. 1 sealing ring (12) is installed inside the upper sealing sleeve (19); a No. 2 sealing ring (13) is installed on the side end of the coil skeleton (17); a lower compression sleeve (18) is installed inside the massage housing (1); and a No. 3 sealing ring (14) is installed on one side of the lower compression sleeve (18).
Citation Information
Patent Citations
Sealed coil device
CN221206099U