Hollow-structured vibration massager
12491130 ยท 2025-12-09
Inventors
Cpc classification
A61H2201/1669
HUMAN NECESSITIES
A61H19/44
HUMAN NECESSITIES
International classification
Abstract
A hollow-structured vibration massager includes a soft rubber sleeve, wherein a hard shell is sleeved inside the soft rubber sleeve; a first motor is fixed inside the hard shell, and a drive end of the first motor is connected to a main crankshaft; an auxiliary crankshaft is fixed outside the main crankshaft, and a plurality of serpentine plates are slidably connected outside the main crankshaft; a soft rubber tube is slidably connected to a top end of the soft rubber sleeve, and a hollow opening is provided inside the soft rubber tube; the first motor is configured to drive the main crankshaft and the auxiliary crankshaft to rotate, thereby propelling the serpentine plates into wave-like motion inside the hollow opening. The rotating disks drive the transmission columns to rotate, causing the reciprocating frame to perform arc-shaped reciprocating motion, thereby actuating multiple auxiliary heads to deliver varied tactile stimulation.
Claims
1. A hollow-structured vibration massager, comprising a soft rubber sleeve, wherein a hard shell is sleeved inside the soft rubber sleeve; a first motor is fixed to the hard shell inside the hard shell, and a drive end of the first motor is connected to a main crankshaft; an auxiliary crankshaft is fixed to the main crankshaft outside the main crankshaft, and a plurality of serpentine plates are connected to the main crankshaft; a soft rubber tube is slidably connected to a top end of the soft rubber sleeve, and a hollow opening is provided inside the soft rubber tube; the first motor is configured to drive the main crankshaft and the auxiliary crankshaft to rotate.
2. The hollow-structured vibration massager of claim 1, wherein rubber pads are fixed to a left end and a right end of the soft rubber tube, and a sleeve head is fixed to a top of the soft rubber tube; a vibration electric motor is fixed to an inner bottom of the sleeve head; a third motor is fixed to a left end of the hard shell, and a drive end of the third motor is connected to a crosshead; a plurality of rotating disks are fixed to the crosshead, and a transmission column is fixed to a left end of the rotating disk; a reciprocating frame is fixed to a left end of the transmission column, and a fixing frame is fixed to the reciprocating frame; a second vibration motor is fixed to the fixing frame, and an auxiliary head is fixed to a top of the second vibration motor.
3. The hollow-structured vibration massager of claim 1, wherein side plates are fixed to a left side and a right side of the soft rubber tube, and sliding plates are slidably connected to a left end and a right end of the soft rubber sleeve.
4. The hollow-structured vibration massager of claim 3, wherein fixing plates are fixed to a front side and a rear side of the sliding plates, and springs are fixed to far sides of the fixing plates.
5. The hollow-structured vibration massager of claim 4, wherein two through holes are provided inside the serpentine plates, and the main crankshaft and the auxiliary crankshaft are slidably connected inside the through holes.
6. The hollow-structured vibration massager of claim 4, wherein limit openings are provided at a left end and a right end of a top of the soft rubber sleeve, and the side plates are slidably connected inside the limit openings.
7. The hollow-structured vibration massager of claim 6, wherein a bottom side of the sliding plates are slidably connected to a top side of the side plates, and far ends of the second springs are respectively fixed to the left and right ends of the top of the soft rubber sleeve.
8. The hollow-structured vibration massager of claim 1, wherein a battery pack is fixed to an inner bottom end of the hard shell, and a cover plate is fixed to a left end of the soft rubber sleeve.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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(7) In the figures: 1 refers to the soft rubber sleeve; 2 refers to the hard shell; 3 refers to the first motor; 4 refers to the main crankshaft; 5 refers to the auxiliary crankshaft; 6 refers to the serpentine plate; 7 refers to the through hole; 8 refers to the soft rubber tube; 9 refers to the hollow opening; 10 refers to the rubber pad; 11 refers to the sleeve head; 12 refers to the vibration electric motor; 13 refers to the auxiliary head; 14 refers to the side plate; 15 refers to the limit opening; 16 refers to the sliding plate; 17 refers to the fixing plate; 18 refers to the second spring; 19 refers to the battery pack; 20 refers to the cover plate; 21 refers to the third motor; 22 refers to the crosshead; 23 refers to the rotating disk; 24 refers to the transmission column; 25 refers to the reciprocating frame; 26 refers to the fixing frame; 27 refers to the vibration motor.
SPECIFIC EMBODIMENT OF THE INVENTION
(8) The technical solutions in the embodiments of the invention will be clearly and completely described hereinafter with reference to the drawings in the embodiments of the invention. Obviously, the described embodiments are only a part of the embodiments of the invention, rather than all the embodiments. Based on the embodiments of the invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the invention.
(9) With reference to
(10) With reference to
(11) With reference to
(12) Although the embodiments of the invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, and substitutions can be made to these embodiments without departing from the principle and spirit of the invention. The protection scope of the invention is defined by the appended claims and the equivalents thereof.