Bidirectional reciprocating oscillating massager
20230201075 ยท 2023-06-29
Assignee
Inventors
Cpc classification
A61H2201/1669
HUMAN NECESSITIES
A61H1/00
HUMAN NECESSITIES
A61H2201/14
HUMAN NECESSITIES
International classification
Abstract
The present disclosure relates to a bidirectional reciprocating oscillating massager, including a peripheral component, wherein a first gear box fixing member and a second gear box fixing member are respectively arranged inside the peripheral component; the first gear box fixing member and the second gear box fixing member are connected through a bolt; rotating slots are formed in tops of both the first gear box fixing member and the second gear box fixing member; inner walls of the rotating slots are rotatably connected with driven shafts; outer walls of the driven shafts are sleeved with driven teeth; the same motor is fixedly connected inside the first gear box fixing member and the second gear box fixing member; an output shaft of the motor is connected with a driving tooth; and the driving tooth are meshed with the driven teeth.
Claims
1. A bidirectional reciprocating oscillating massager, comprising a peripheral component, wherein a first gear box fixing member (18) and a second gear box fixing member (19) are respectively arranged inside the peripheral component; the first gear box fixing member (18) and the second gear box fixing member (19) are connected through a bolt; rotating slots are formed in tops of both the first gear box fixing member (18) and the second gear box fixing member (19); inner walls of the rotating slots are rotatably connected with driven shafts (15); outer walls of the driven shafts (15) are sleeved with driven teeth (16); the same motor (20) is fixedly connected inside the first gear box fixing member (18) and the second gear box fixing member (19); an output shaft of the motor (20) is connected with a driving tooth (17); the driving tooth (17) is meshed with the driven teeth (16); an eccentric shaft (21) is arranged at a top of one side of each driven tooth (16) close to the driven shaft (15); the two eccentric shafts (21) are assembled in a diagonal manner; the two driven teeth (16) are assembled in the first gear box fixing member (18) and the second gear box fixing member (19); oscillating members (13) are arranged at tops of the eccentric shafts (21); tops of the oscillating members (13) are rotatably connected with fixing sleeves (23); and inner walls of the fixing sleeves (23) are fixedly connected with swing pillars (24).
2. The bidirectional reciprocating oscillating massager according to claim 1, wherein the oscillating members (13) and the fixing sleeves (23) are connected through rotating columns; buffer rings (22) are arranged on outer walls of the rotating columns; and the buffer rings (22) are made of rubber.
3. The bidirectional reciprocating oscillating massager according to claim 1, wherein the two driven teeth (16) are one kind of bevel gears, helical gears and worm gear straight teeth.
4. The bidirectional reciprocating oscillating massager according to claim 2, wherein top ends of the first gear box fixing member (18) and the second gear box fixing member (19) are provided with the same snap rings (14); and the snap rings (14) clamp the first gear box fixing member (18) to the second gear box fixing member (19) together.
5. The bidirectional reciprocating oscillating massager according to claim 1, wherein the peripheral component comprises a first shell (1); a massage head hood (2) is arranged on an outer wall of the first shell (1); the massage head hood (2) covers the swing pillars (24); a first tail cover (7) and a second tail cover (12) are respectively arranged inside a bottom end of the first shell (1); fixing slots are formed in outer walls of opposite sides of the first tail cover (7) and the second tail cover (12); inner walls of the fixing slots are embedded to a switch button (11); a connecting pipe (5) is arranged in a middle portion of the first shell (1); the connecting pipe (5) is of an arc-shaped structure; a first end cover (3) and a second end cover (6) are respectively arranged inside the top end of the first shell (1); and middle portions of the first end cover (3) and the second end cover (6) are connected with the same vibration motor (4).
6. The bidirectional reciprocating oscillating massager according to claim 5, wherein handheld slots penetrating through the first tail cover (7) and the second tail cover (12) are formed in outer walls of the first tail cover (7) and the second tail cover (12); and inner walls of the handheld slots are respectively fixedly connected with a first inbuilt cover (9) and a second inbuilt cover (10).
7. The bidirectional reciprocating oscillating massager according to claim 6, wherein a storage battery (8) is arranged inside the first tail cover (7) and the second tail cover (12); and the storage battery (8) is charged through a charging head.
8. The bidirectional reciprocating oscillating massager according to claim 1, wherein the peripheral component comprises a second shell (29); a massage head hood (2) is arranged at a top of the second shell (29); the massage head hood (2) covers the swing pillars (24); a first protective shell (30) and a second protective shell (31) are respectively arranged inside the second shell (29); the same outer sealing hood (28) is arranged at tops of the first protective shell (30) and the second protective shell (31); an outer sealing ring (26) is arranged at an edge of a top end of the outer sealing hood (28); an inner sealing hood (27) is arranged inside the outer sealing hood (28); and an inner sealing ring (25) is arranged at an edge of a top end of the inner sealing hood (27).
9. The bidirectional reciprocating oscillating massager according to claim 8, wherein a first connecting rod (32) is arranged at a bottom of the second shell (29); and a first massage head (33) is arranged at a bottom end of the first connecting rod (32).
10. The bidirectional reciprocating oscillating massager according to claim 8, wherein a second connecting rod (34) is arranged at a bottom of the second shell (29); and a second massage head (35) is arranged at a bottom end of the second connecting rod (34).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
[0039] In the drawings: 1: first shell; 2: massage head hood; 3: first end cover; 4: vibration motor; 5: connecting pipe; 6: second end cover; 7: first tail cover; 8: storage battery; 9: first inbuilt cover; 10: second inbuilt cover; 11: switch button; 12: second tail cover; 13: oscillating member; 14: snap ring; 15: driven shaft; 16: driven tooth; 17: driving tooth; 18: first gear box fixing member; 19: second gear box fixing member; 20: motor; 21: eccentric shaft; 22: buffer ring; 23: fixing sleeve; 24: swing pillar; 25: inner sealing ring; 26: outer sealing ring; 27: inner sealing hood; 28: outer sealing hood; 29: second shell; 30: first protective shell; 31: second protective shell; 32: first connecting rod; 33: first massage head; 34: second connecting rod; and 35: second massage head.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0040] The present disclosure is further described in detail below in combination with accompanying drawings.
[0041] Referring to
[0042] In this embodiment, the oscillating members 13 and the fixing sleeves 23 are connected by rotating columns, and buffer rings 22 are arranged on outer walls of the rotating columns When the oscillating members 13 oscillate, the fixing sleeves 23 can rotate along the rotating columns. When the fixing sleeves 23 rotate, the buffer rings 22 can achieve a good buffer effect, which can reduce wear between the oscillating members 13 and the fixing sleeves 23. The buffer rings 22 are made of rubber. The rubber buffer rings 22 have a better buffer effect, which further improves the wear resistance effect.
[0043] Top ends of the first gear box fixing member 18 and the second gear box fixing member 19 are provided with the same snap rings 14. The snap rings 14 clamp the first gear box fixing member 18 to the second gear box fixing member 19 together. The snap rings 14 can make the first gear box fixing member 18 and the second gear box fixing member 19 connected more tightly, which can avoid such a phenomenon that the first gear box fixing member 18 and the second gear box fixing member 19 are loosened.
[0044] Further, the peripheral component includes a first shell 1. A massage head hood 2 is arranged on an outer wall of the first shell 1. The massage head hood 2 covers the swing pillars 24. A first tail cover 7 and a second tail cover 12 are respectively arranged inside a bottom end of the first shell 1. Fixing slots are formed in outer walls of opposite sides of the first tail cover 7 and the second tail cover 12. Inner walls of the fixing slots are embedded to a switch button 11. A connecting pipe 5 is arranged in a middle portion of the first shell 1. The connecting pipe 5 is of an arc-shaped structure. A first end cover 3 and a second end cover 6 are respectively arranged inside the top end of the first shell 1. Middle portions of the first end cover 3 and the second end cover 6 are connected with the same vibration motor 4. The swing pillars 24 can swing to achieve massage through the massage head hood 2. In addition, the vibration motor 4 is controlled to work to transmit a vibration force to the first end cover 3 and the second end cover 6, so that massage can be also achieved by the top end of the first shell 1, and multiple parts can be massaged during use, which brings a user a stronger sense of comfort and increases the interest in use of the user.
[0045] It is worth mentioning that handheld slots penetrating through the first tail cover 7 and the second tail cover 12 are formed in outer walls of the first tail cover 7 and the second tail cover 12. Inner walls of the handheld slots are respectively fixedly connected with a first inbuilt cover 9 and a second inbuilt cover 10. Due to the handheld slots, it can be convenient for holding the massager with hands during use, so as to avoid a slip phenomenon, which improves the holding stability.
[0046] A storage battery 8 is arranged inside the first tail cover 7 and the second tail cover 12. The storage battery 8 is charged through a charging head. Due to the storage battery 8, it can be convenient for supplying power to the massager, which improves the convenience of use.
Embodiment 2
[0047] Referring to
Embodiment 3
[0048] Referring to
Embodiment 4
[0049] Referring to
[0050] The implementation principle of this embodiment is as follows: During use, the motor 20 is controlled to work, which can drive the driving tooth 17 to rotate. The driving tooth 17 rotates to drive the driven teeth 16 to rotate. The driven teeth 16 can rotate to drive the eccentric shafts 21 to rotate. The eccentric shafts 21 can rotate to drive the oscillating members 13 to oscillate. The oscillating members 13 can oscillate to drive the swing pillars 24 to swing. The swing pillars 24 cooperate with the peripheral component during swinging to complete massage. An oscillating motion in two directions is achieved by one motor 20. This structural principle is easy to implement, and the bidirectional reciprocating oscillating massager is easy to assemble, has smaller noise, extremely low loss of a force and high transmission efficiency, and has lower cost than that of the same motion manner.
[0051] The embodiments of this specific implementation are all preferred embodiments of the present disclosure, and are not intended to limit the protection scope of the present disclosure. Therefore, any equivalent changes made according to the structure, shape and principle of the present disclosure shall all fall within the protection scope of the present disclosure.