Openwork vibration massage device
The perforated vibration massage device addresses the limitations of existing devices by using a soft rubber shell and multiple motors to create adjustable massage techniques, ensuring deep relaxation and safety through easy maintenance.
Patent Information
- Application Number
- DE202025102322
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2025-07-03
- Estimated Expiration
- 2035-04-30
AI Technical Summary
Existing massage devices lack flexibility in adapting to real-time changes in user body conditions and cannot provide diverse therapeutic effects such as deep relaxation and regulation.
A perforated vibration massage device with a soft rubber shell, hard casing, and multiple motors that drive spiral plates and auxiliary heads to perform wave-like and vibrating tapping motions, allowing for adjustable massage techniques.
The device provides adaptable massage experiences with deep relaxation and regulation, enhancing user comfort and safety by allowing easy cleaning and replacement of parts.
Smart Images

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Abstract
Description
Technical FieldThe present invention relates to the technical field of massagers and relates in particular to a perforated vibration massage device.Prior ArtMassagers are a new generation of health care devices developed on the principles of physics, bionics, bioelectrity, traditional Chinese medicine, and many years of clinical practice. They stimulate the body by mechanical or high frequency vibrations, promote blood circulation, accelerate metabolism, alleviate muscle fatigue and pain, and at the same time improve the functioning of the nervous system. Safety massage devices allow simple maintenance, whereby their useful life can be extended.When using a neck massager, the exterior and component connections are first checked and the device is placed in a stable position. The user assumes an upright seating or reclining position and relaxes, easily adjusts the head to ensure optimum contact. After the switch-on, intensity and mode are set according to individual comfort. The massage device is positioned and fixed on the neck. By pressing the start button, the massage is started, wherein a simulation of professional massage techniques is perceived.In the current state of the art, although some massage devices can achieve basic massage effects during use, they are limited to simple muscle relaxation. They are unable to flexibly adapt to the real-time changes of the body condition of the user or to achieve a variety of therapeutic effects such as depth-effective relaxation and regulation. For these reasons, a perforated vibration massage device is proposed to remedy the above-mentioned deficiencies.Content of the Utility ModelIn order to overcome the deficiencies of the prior art, the present invention provides a perforated vibration massage device which aims to improve the problem that some prior art massage devices achieve only one-sided effect during use and cannot be flexibly adjusted.To achieve the above objects, the present invention is implemented by the following technical solutions. A perforated vibration massager comprises a soft rubber sheath. Inside the soft rubber sheath, a hard casing is disposed. A first motor is fixedly connected in the hard housing. A drive end of the first engine is fixedly connected to a main crankshaft. An outer side of the main crankshaft is fixedly connected to a sub-crankshaft. The outer side of the main crankshaft is slidably connected to a plurality of convoluted plates. An upper end of the soft rubber sheath is slidably connected to a soft rubber pipe. A perforated opening is formed inside the soft rubber tube. The first engine is configured to rotate the main crankshaft and the sub-crankshaft and thereby drive the convoluted plates to undulating motion in the perforated opening.Preferably, both left and right ends of the soft rubber tube are fixedly connected to a rubber pad, respectively. An upper side of the soft rubber tube is fixedly connected to a cap head. An inner underside of the attachment head is fixedly connected to a vibration motor. A left end of the hard housing is fixedly connected to a third motor. A driving end of the third motor is fixedly connected to a crosshead. An outer side of the cross head is fixedly connected to a plurality of rotating disks. A left end of each rotary disk is fixedly connected to a drive column. A left end of each drive column is slidably connected to a reciprocating frame. An outer side of each reciprocation frame is fixedly connected to a fixed frame. Inside each fixed frame, a vibration motor is fixedly connected. An upper end of each vibration motor is fixedly connected to an auxiliary head.Preferably, both left and right sides of the soft rubber pipe are fixedly connected to a side plate, respectively. Both left and right ends of the soft rubber cover are slidably connected to a slide plate, respectively.Preferably, both front and rear sides of each slide plate are fixedly connected to a hard disk, respectively. The mutually remote sides of the plurality of hard disks are each fixedly connected to a second spring.Preferably, two through holes are formed in each wound plate. Outer sides of the main crankshaft and the sub-crankshaft are slidably connected within the plurality of through holes.Preferably, an inner bottom surface of the hard case is fixedly connected to a battery pack. A left end of the soft rubber cover is fixedly connected to a cover plate.Preferably, a restriction hole is formed in each of both upper left and right ends of the soft rubber cover. An outer side of each side plate is slidably connected within the respective restriction opening.Preferably, a bottom surface of each slide plate is slidably connected to a top surface of the respective side plate. The opposite ends of the plurality of second springs are fixedly connected to the upper left and right ends of the soft rubber cover, respectively.The operation is as follows. By activation of the first engine, the main crankshaft and the sub-crankshaft are synchronously rotated. Subsequently, the twisted plates utilize the through holes formed in their interior, whereby the rotating main crankshaft and sub-crankshaft drive the twisted plates to reciprocate to produce knocking skin stimulation. This movement is transmitted to the rubber pads which exert rhythmic knocking impulses on the skin of the user.At the same time, the third motor drives the crosshead, which in turn rotates the turntables. The number of the rotating disks may be set to two or more as needed. The rotation of the rotating disks is transmitted to the driving columns that drive the reciprocating frame to an arcuate rotational reciprocating motion. This drives the plurality of auxiliary heads to reciprocate and to perform different stimulating movements on the skin. By activating the vibration motors, vibrations are transmitted to the auxiliary heads, which leads to a vibrating knocking massage.In addition, the two slide plates are pulled against each other in the opposite direction to slide. This displaces the hard disks and compresses the second springs, whereby the second springs store elastic potential energy. The restoring force acts on the sliding plates via the hard disks and generates a restoring force in the opposite direction. In this state, the slide plates are separated from the surfaces of the side plates, whereby the soft rubber pipe can be quickly removed for cleaning or replacement. This prevents damage which would lead to inconvenience in massage and enhances safety. Then, the side plates are snapped along the limiting openings. By releasing the pulling force on the sliding plates, the restoring force of the second springs transmits a return movement via the hard disks to the sliding plates, which then slide back and re-engage on the surfaces of the side plates. The positioning is effected at least on a rod and at least one handle.The present invention provides a perforated vibration massager and has the following advantages. 1. in the present utility model, the drive column is driven to rotate, which drives the reciprocating frame to an arc-shaped rotational reciprocating motion. This drives the plurality of auxiliary heads to reciprocate and to perform different stimulating movements on the skin. The activation of the vibration motors transmits vibrations to the auxiliary heads for a vibrating knocking massage. 2. in the present invention, a displacement is carried out by the movement of the hard disks and at the same time the second springs are compressed, whereby the second springs store elastic potential energy. The restoring force acts on the sliding plates via the hard disks and generates a restoring force in the opposite direction. In this state, the slide plates are separated from the surfaces of the side plates, whereby the soft rubber pipe can be quickly removed for cleaning or replacement. This prevents damage which would lead to inconvenience in massage and enhances safety.DESCRIPTION OF THE ACCOMPANYING DRAWINGSFIG. 1 is a perspective view of a perforated vibration massager according to the present invention; FIG. 2 is a schematic diagram showing the structure of auxiliary heads of the perforated vibration massager according to the present invention; FIG. 3 is a schematic view showing the structure of a hard case of the perforated vibration massager according to the present invention; FIG. 4 is a schematic view showing the structure of a soft rubber tube of the perforated vibration massager according to the present invention; FIG. 5 is a schematic view showing the structure of a cap head of the perforated vibration massager according to the present invention; and FIG. 6 is an enlarged view of the region B in FIG. 2.Names: 1-soft rubber shell; 2-hard case; 3-first motor; 4-main crankshaft; 5-sub-crankshaft; 6-wound plate; 7-through hole; 8-soft rubber tube; 9-perforated hole; 10-rubber pad; 11-cap head; 12-vibration motor; 13-auxiliary head; 14-side plate; 15-restriction hole; 16-slide plate; 17-hard disk; 18-second spring; 19-battery pack; 20-cover plate; 21-third motor; 22-crosshead; 23-rotary disk; 24-drive column; 25-to-and-fro frame; 26-fixed frame; and 27-vibration motor.Exemplary EmbodimentsHereinafter, referring to the accompanying drawings of the description of the present invention, the technical solutions in the embodiments of the present invention will be clearly and fully described. Obviously, the described embodiments are only a part of the embodiments of the present invention and not the entire embodiments. Based on the embodiments of the present invention, all other embodiments obtained by a person skilled in the art without any fatigue fall within the scope of the present invention.Referring to FIGS. 1 to 3, the present invention provides an embodiment of a perforated vibration massager. It comprises a soft rubber sheath 1. the soft rubber sheath 1 enables a comfortable grip and prevents slipping off. A hard housing 2 is arranged in the interior of the soft rubber sheath 1, wherein the elastic soft rubber sheath 1 encloses the hard housing 2. A first motor 3 is fixedly connected in the hard housing 2. The first motor 3 serves as a driving source. A driving end of the first engine 3 is fixedly connected to a main crankshaft 4. The main crankshaft 4 is rotated by the first motor 3. An outer side of the main crankshaft 4 is fixedly connected to a sub-crankshaft 5, the main crankshaft 4 driving the sub-crankshaft 5 to rotate synchronously. The outside of the main crankshaft 4 is slidably connected to a plurality of convoluted plates 6. By the rotational movement of the main crank shaft 4, the twisted plates 6 are caused to reciprocate, thereby providing a knocking massage effect on the skin. Besides a convoluted shape, the convoluted plates 6 can also be designed to be wavy, serrated, circular, oval, flower-shaped, diamond-shaped, triangular, cruciform or trapezoidal, it being possible for a change in shape to take place according to the application requirements. An upper end of the soft rubber sheath 1 is slidably connected to a soft rubber pipe 8. By limiting the soft rubber cover 1, the soft rubber pipe 8 can be stably slidably mounted. A perforated hole 9 is formed inside the soft rubber tube 8. The perforated opening 9 is formed as an elongated slot, whereby the twisted plates 6 can be moved back and forth beyond the outer area of the soft rubber sheath 1 in order to avoid blocking of movement. Both left and right ends of the soft rubber tube 8 are fixedly connected to a rubber pad 10, respectively. The rubber pads 10 act as a stopper for the twisted plates 6, thereby preventing direct skin contact of the twisted plates 6, thereby performing a protection function. At the same time, the rubber material of the rubber cushions 10 ensures increased flexibility to the skin and thus improves the wearing comfort. The first engine 3 is adapted to rotate the main crankshaft 4 and the sub-crankshaft 5 and thereby drive the convoluted plates 6 to a wavy motion in the perforated opening 9.Referring to Figs. 4 and 5, an upper surface of the soft rubber pipe 8 is fixedly connected to a cap head 11 fixed by bonding method to give stability to the cap head 11. An inner bottom surface of the attachment head 11 is fixedly connected to a vibration motor 12. The vibration motor 12 is used to generate vibration movements and transmits the vibration forces to the attachment head 11, as a result of which these are passed on to the skin, in order thus to achieve a differentiated massage sensation. Two through holes 7 are formed in each twisted plate 6, thereby forming a moving space inside the twisted plates 6. Outer sides of the main crankshaft 4 and the sub crankshaft 5 are slidably connected within the plurality of through holes 7, so that the rotational forces of the main crankshaft 4 and the sub crankshaft 5 are transmitted to the twisted plates 6 and put the twisted plates 6 in a reciprocating motion.Referring to Figs. 2, 3 and 5, both left and right sides of the soft rubber pipe 8 are fixedly connected to a side plate 14, respectively, and are fixed by bonding or welding methods to provide a load bearing function to the side plates 14. Both left and right ends of the soft rubber cover 1 are slidably connected to a slide plate 16, respectively. By limiting the soft rubber cover 1, the slide plates 16 can slide stably. Both front and rear sides of each slide plate 16 are fixedly connected to a hard disk 17, respectively. The sliding plates 16 drive the hard disks 17 to slide synchronously. The mutually remote sides of the plurality of hard disks 17 are each fixedly connected to a second spring 18. During the sliding operation, the hard disks 17 compress the second springs 18, whereby the second springs 18 store elastic energy and subsequently exert a restoring force on the hard disks 17 in the opposite direction. In both upper left and right ends of the soft rubber cover 1, a restriction hole 15 is formed, respectively. The restriction openings 15 are rectangular. An outer side of each side plate 14 is slidably connected within the respective restriction opening 15. By limiting the limiting openings 15, the side plates 14 can slide stably.Referring to FIGS. 1 and 6, an inner bottom surface of the hard case 2 is fixedly connected to a battery pack 19. The battery pack 19 serves as a power source. A left end of the soft rubber cover 1 is fixedly connected to a cover plate 20. A left end of the hard housing 2 is fixedly connected to a third motor 21. The third motor 21 serves as a driving source. A driving end of the third motor 21 is fixedly connected to a crosshead 22. The crosshead 22 is rotated by the third motor 21. An outer side of the cross head 22 is fixedly connected to a plurality of rotating disks 23. The rotating disks 23 are formed as two or more overlapping elements. A left end of each rotary disk 23 is fixedly connected to a drive column 24, and the rotary disks 23 transmit the rotational forces to the drive columns 24. A left end of each drive column 24 is slidably connected to a reciprocating frame 25, the drive columns 24 causing the reciprocating motion of the reciprocating frames 25, the reciprocating frames 25 transmitting the forces to the fixed frames 26. An outer side of each reciprocation frame 25 is fixedly connected to a fixed frame 26. Inside each fixed frame 26, a vibration motor 27 is fixedly connected. The vibration motors 27 serve to provide vibration forces. An upper end of each vibration motor 27 is fixedly connected to an auxiliary head 13, and the vibration motor 27 transmits the vibration forces to the auxiliary heads 13. The auxiliary heads 13 press against the skin and thereby generate vibratory knocking impulses.Although the embodiments of the present invention have been already shown and described, it will be understood by those skilled in the art that various variations, modifications, substitutions and variations can be made in these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
A perforated vibration massager comprising a soft rubber shell (1), characterized in that a hard casing (2) is disposed inside the soft rubber shell (1), a first motor (3) is fixedly connected in the hard casing (2), a driving end of the first motor (3) is fixedly connected to a main crankshaft (4), an outer side of the main crankshaft (4) is fixedly connected to a sub-crankshaft (5), the outer side of the main crankshaft (4) is slidably connected to a plurality of twisted plates (6), an upper end of the soft rubber shell (1) is slidably connected to a soft rubber pipe (8), a perforated opening (9) is formed inside the soft rubber pipe (8), and the first motor (3) is configured, In order to rotate the main crankshaft (4) and the secondary crankshaft (5) and thereby drive the twisted plates (6) to a wavy motion in the perforated opening (9).The perforated vibration massager according to claim 1, characterized in that both left and right ends of the soft rubber pipe (8) are respectively fixedly connected to a rubber pad (10), an upper side of the soft rubber pipe (8) is fixedly connected to a cap head (11), an inner lower side of the cap head (11) is fixedly connected to a vibration motor (12), a left end of the hard case (2) is fixedly connected to a third motor (21), a driving end of the third motor (21) is fixedly connected to a crosshead (22), an outer side of the crosshead (22) is fixedly connected to a plurality of rotary disks (23), a left end of each rotary disk (23) is fixedly connected to a driving column (24), a left end of each driving column (24) is slidably connected to a reciprocating frame (25), an outer side of each reciprocating frame (25) is fixedly connected to a fixed frame (26), a vibration motor (27) is fixedly connected inside each fixed frame (26), and an upper end of each vibration motor (27) is fixedly connected to an auxiliary head (13).The perforated vibration massager according to claim 1, characterized in that both left and right sides of the soft rubber pipe (8) are fixedly connected to a side plate (14), respectively, and both left and right ends of the soft rubber shell (1) are slidably connected to a slide plate (16), respectively.The perforated vibration massage device according to claim 3, characterized in that both front and rear sides of each sliding plate (16) are each fixedly connected to a hard disk (17), and the mutually opposite sides of the plurality of hard disks (17) are each fixedly connected to a second spring (18).The perforated vibration massager according to claim 4, characterized in that two through holes (7) are formed in each wound plate (6), and outer sides of the main crankshaft (4) and the sub-crankshaft (5) are slidably connected within the plurality of through holes (7).The perforated vibration massager according to claim 1, characterized in that an inner bottom of the hard case (2) is fixedly connected to a battery pack (19), and a left end of the soft rubber shell (1) is fixedly connected to a cover plate (20).The perforated vibration massager according to claim 4, characterized in that a restriction hole (15) is formed in each of both upper left and right ends of the soft rubber sheath (1), and an outer side of each side plate (14) is slidably connected within the respective restriction hole (15).The perforated vibration massager according to claim 7, characterized in that a lower surface of each slide plate (16) is slidably connected to an upper surface of the respective side plate (14), and the opposite ends of the plurality of second springs (18) are fixedly connected to the upper left and right ends of the soft rubber sheath (1), respectively.