This document relates to a massage device, and more particularly to an electrically powered massage device having a massage actuator with a spiral wave form action.
In an embodiment, a massage device may include a driving unit operatively engaged to a rotatable output shaft having a distal end portion with a handle having a power source in operative association with the driving unit. The handle may have a control panel for controlling the operation of said driving unit and an actuation unit operatively engaged to the output shaft of the driving unit. In addition, the actuation unit includes an arrangement of bearing plates engaged to one another and mounted along the output shaft with each bearing plate being engaged to a rotary ring, wherein each rotary ring defines a center hole and a plurality of segments circumferentially defined about the center of the rotary ring. Each of the bearing plates defines a plurality of holes and pegs circumferentially spaced about an eccentric through-hole, wherein each rotary ring is adapted to be engaged within the center hole of one of the bearing plates such that the arrangement of bearing plates will rotate upon rotation of the output shaft while each rotary ring will have a slipping action relative to the output shaft in order to produce a spiral wave form action by the actuation unit.
In another embodiment, a massage device for providing a spiral wave form action may include a driving unit operatively engaged to a rotatable output shaft having a distal end portion. A handle may have a power source in operative association with the driving unit with the handle having a control panel for controlling the operation of the driving unit. An actuation unit may be operatively engaged to the output shaft of the driving unit with the actuation unit having an arrangement of bearing plates mounted to the output shaft. Each of the bearing plates may be engaged to a rotary ring with an anti-friction material being interposed between the bearing plates and a respective rotary ring, wherein actuation of the output shaft causes the plurality of bearing plates to have a rotating action and the respective rotary ring to have a slipping action relative to the output shaft in a manner that causes the actuation unit to have a spiral wave form action.
In yet another embodiment, a massage actuator may include a driving unit operatively engaged to a rotatable output shaft having a distal end portion and a handle having a power source in operative association with the driving unit with the handle having a control panel for controlling the operation of the driving unit. In addition, an actuation unit may be operatively engaged to the output shaft of the driving unit having an arrangement of bearing plates mounted to the output shaft. Each of the bearing plates may be engaged to a rotary ring with an anti-friction material being interposed between the bearing plates and a respective rotary ring, wherein actuation of the output shaft causes the plurality of bearing plates to have a rotating action and the respective rotary ring to have a slipping action relative to the output shaft in a manner that causes the actuation unit to have a spiral wave form action.
Implementation of the above embodiments may include one or more of the following features:
The bearing plates are engaged to one another by engaging the plurality of pegs of one of the bearing plates to the plurality of holes of another one of the bearing plates.
The plurality of segments on each rotary ring prevents the rotating action of the rotary rings relative to the bearing plates.
The massage device further includes a resilient outermost sleeve defining a hollow chamber with the massage actuator being adapted to be disposed within the hollow chamber of the outermost sleeve such that a spiral wave form action is imparted to the outermost sleeve by the massage actuator.
The operation of the driving unit causes the outermost sleeve to move in the spiral wave form action as the bearing plates are made to rotate and the rotary rings are prevented from having a rotating action relative to the output shaft.
Mounting the bearing plates to the output shaft requires the output shaft to be inserted through the eccentric through-hole of each of the bearing plates.
The eccentric through-hole defines a pair of slots and the output shaft defines a pair of opposing protrusions, wherein the opposing protrusions are adapted to engage the opposing slots when mounting one of the bearing plates to the output shaft.
The arrangement of bearing plates mounted to the output shaft has a generally sinusoidal configuration.
At least one protrusion is engaged to one of the bearing plates mounted to the output shaft.
The massage device further includes a control panel having one or more actuators for controlling the operation of the massage actuator.
One of the one or more actuators controls the spiral wave form action of the massage actuator.
The output shaft defines a pair of opposing protrusions and the eccentric through-hole defines a pair of slots adapted to engage the pair of opposing protrusions.
A gap is defined when one of the bearing plates is engaged to a respective one of the rotary rings with an anti-friction material being disposed in the gap.
The massage device further includes a hollow resilient outermost sleeve adapted to engage the massage actuator such that the outermost sleeve has a spiral wave form action imparted by the actuator generation unit during operation of the massage actuator.
The anti-friction material may be a lubricant or a material having a low friction coefficient.
The power source is one or more batteries.
The massage device further includes a control panel having a plurality of actuators for controlling the various operations of the massage device.
The eccentric through-hole is defined off-center relative to the bearing plate.
Additional objectives, advantages and novel features will be set forth in the description which follows or will become apparent to those skilled in the art upon examination of the drawings and detailed description which follows
Corresponding reference characters indicate corresponding elements among the view of the drawings. The headings used in the figures should not be interpreted to limit the scope of the claims.
Referring to the drawings, an embodiment of the massage device having a spiral wave form action is illustrated and generally indicated as 10 in
Referring to
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The driving unit 18 includes a gearbox (not shown) encased inside a housing 58 that is operatively engaged to a rotatable output shaft 20 extending axially from the driving unit 18. Referring to
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Further, each bearing plate 24 also defines a pair of holes 28 and a pair of pegs 29 concentrically spaced about the center of the eccentric through-hole 25. In one embodiment, the holes 28 and pegs 29 are circumferentially and alternatively spaced about the center of the eccentric through-hole 25 at equal angular positions. The bearing plate 24 also includes a circular rim 27 defined around an outer circumferential surface portion 26. After the actuation unit 16 is assembled with a respective bearing plate 24 engaged to a respective rotary ring 21, the circular rim 27 provides an axial restriction on the rotary ring 21 to prevent the rotary ring 21 from moving along the axis of the output shaft 20 after the bearing plates 24 and rotary rings 21 are assembled upon the output shaft 20.
As shown in
This sequence is repeated for every bearing plate 24 until a sufficient number of bearing plates 24 have been mounted to the output shaft 20. The engagement of pegs 29 of the bearing plate 24A to holes 28 of the adjacent bearing plate 24B causes the bearing plate 24A to have a relative angular position about the center of eccentric through-hole 25, thereby preventing the bearing plates 24 from rotating relative to the output shaft 20 after the bearing plates 24 are assembled thereon as shall be discussed in greater detail below.
As noted above, prior to assembling the bearing plates 24 to the output shaft 20, each of the bearing plates 24 are engaged to a respective rotary ring 21. Once a rotary ring 21 is engaged to a respective bearing plate 24, the bearing plates 24 are engaged to one another in sequence as described above and mounted to the output shaft 20 as shown in
When engaging the bearing plate 24 to the rotary ring 21 the circumference surface 26 of each bearing plate 24 is engaged with a respective center hole 22 of a rotary ring 21 such that the step hole 36 of each rotary ring 21 provides sufficient clearance to the rim 27 of the bearing plate 24 in order to define a gap 40 (
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As shown in
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In one embodiment, the actuation unit 16 generates the spiral wave action in a longitudinal direction with the assembled bearing plates 24 and rotary rings 21 having a small cross-sectional shape. In another embodiment, the actuation unit 16 may have a plurality of cross-sectional shapes that provide massage action in directions perpendicular to the longitudinal axis of the massage device 10.
It should be understood from the foregoing that, while particular embodiments have been illustrated and described, various modifications can be made thereto without departing from the spirit and scope of the invention as will be apparent to those skilled in the art. Such changes and modifications are within the scope and teachings of this invention as defined in the claims appended hereto.