This invention relates to the field of back massagers and in particular to a back massaging table having individual articulating massaging heads providing orbital-motion kneading on a bed of individually corresponding springs so as to knead the user's back while the bed is simultaneously translated back and forth along the user's back.
In the prior art applicant is aware of various back massage devices, including chairs and beds that vibrate. However, in applicant's view there exists the need for a massage table that simultaneously combines orbital kneading motions of kneading heads mounted on resiliently articulating, vertically spring supported massaging heads in a two-dimensional array of massaging heads mounted on a bed, with reciprocating motion of the bed longitudinally along and underneath the body of a user lying prone on the massage table.
In the prior art, applicant is also aware of granted Chinese utility model number CN 205083949U, which was granted on Mar. 16, 2016, for a Massage Table, and granted Chinese utility model, number CN 2297122Y, which was granted on Nov. 18, 1998, for a Massage Vibration Bed.
The reciprocating massage table according to the present specification may include a base frame, and a reciprocating frame slidably mounted on the base frame for horizontal sliding there over. A plurality of independent, articulating massage heads are resiliently mounted in spaced apart two dimensional array across the reciprocating frame so as to extend upwardly therefrom. A reciprocating actuator is coupled between the base frame and the reciprocating frame to cycle the reciprocating frame back and forth over the base frame. Each massage head may include a massage head actuator driving at least one orbitally reciprocating kneading head.
The reciprocating actuator may cycle the reciprocating frame along a substantially linear slide path.
The massage heads may each be mounted on springs interleaved between the massage heads and the reciprocating frame. For example, one spring may be mounted under each massage head. Advantageously the massage heads are free to articulate on the springs, for example by a pivotable mounting of the massage heads on supports extending journaled up through the springs.
In advantageous embodiments, the orbital reciprocating of each massage head is accomplished by crank-reciprocated orbital motion of the kneading head by a crank actuated by the massage head actuator. For example, each massage head may include a pair of crank-reciprocated orbital kneading heads, which may be a mirror image pair on opposite sides of the massage head actuator, wherein the massage head actuator operates to rotate a pair of the cranks so as to drive the orbital motion of the pairs of crank-reciprocated kneading heads.
Further advantageously, the pair of cranks may be a pair of crank wheels, wherein the crank wheels drive orbital oscillation of the kneading heads to replicate a substantially circular kneading motion in at least a substantially horizontal plane, and in some embodiments in both horizontal and vertical planes simultaneously, when the massage head is also substantially horizontal. Thus, when a user is lying prone, facing upwards, on top of the two dimensional array of massage heads so that the back of the user is supported by the array of massage heads, and the corresponding springs provide resilient conforming tilting and height adjustment of the massage heads supporting the back of the user, and wherein the reciprocating actuator moves the reciprocating frame and array of massage heads back and forth along the back of the user while simultaneously, the kneading heads provide kneading of the user's back by the orbital motion of the kneading heads under and pressing against the back of the user, whereby the back of the user is provided with at least a deep muscle massage and a release of the corresponding fascia.
In aspects of the disclosure, first and second kneading heads are rigidly mounted to the slide, adjacent the crank. In some embodiments the first kneading head upstands a greater vertical distance, orthogonal to the base of the massage head, than the second kneading head. The first and second kneading heads may be dome shaped and positioned so that corresponding vertices of the domes are oriented upwardly.
In one embodiment the slide is a slide bar mounted in a corresponding pivoting cradle mounted to the base of the massage head. In another embodiment the slide is a conformal cap, having a concave lower surface, slidably and snugly mounted on a dome, not to be confused with the dome-shaped kneading heads, rigidly mounted on the base of the massage head, wherein the crank is mounted on the dome and coupled to the slide for eccentric sliding rotation of the slide over the dome.
Yet further advantageously, for each massage head a sliding telescopically mounted guide post is slidably mounted at a base end thereof to the reciprocating frame and pivotably mounted at an opposite upper end thereof to the massage head. This provides for substantially vertical sliding of the guide post relative to the reciprocating frame. Thus, with the spring rigidly mounted at its upper and lower ends to the base of the massage head and the reciprocating frame respectively, the guide post cooperates with its corresponding spring to stabilize the spring during resilient tilting, collapse, or extension of the spring.
As seen in the accompanying drawing figures, wherein like reference numerals depict corresponding parts in each view, as seen in
In a preferred embodiment, a lifting frame 12a and loading platform 12b are mounted to base frame 12. Lifting frame 12a and loading platform 12b assist a user in mounting and dismounting from massage table 10.
As seen in
As seen in
Advantageously the plurality of independent massage heads 18 are each mounted on the springs 28. Springs 28 are stabilized and guided by guide posts 30 extending orthogonally between the massage heads 18 and the reciprocating frame 16. In particular, in the depicted embodiment base plate 24 of
In the illustrated example, guide posts 30 provide the alignment for the two dimensional array of massage heads 18. The two dimensional array may include, without intending to be limiting, twelve rows of three massage heads 18 per row as depicted, for a total of thirty-six massage heads 18. An array of springs 28 are thus provided in sufficient number and having sufficient compressive strength, bearing on reciprocating table 16 so that collectively the two dimensional array of springs 28 will support the weight of a user lying prone on the two dimensional massage heads 18. Meanwhile, guide posts 30 hold lateral and longitudinal alignment of the base 24 and massage heads 18 attached thereto. Guide posts 30 slide up and down, and the springs 28 resiliently tilt (by pivoting on their guide post), collapse or expand correspondingly, to provide a body contoured, articulating alignment of the array of massage heads 18, thereby giving comfort to the user.
Advantageously, ball joints 30a may be provided on the upper end of support posts 30 provide limited tilting articulation in direction B so that the massage heads 18 are tiltable relative to guide posts 30 against the return resilient biasing force of springs 28 which bias the massage heads 18 back to level. For example, ball joint 30a may permit a tilt angle of up to approximately 20 degrees relative to reciprocating table 16.
In the embodiment of
The pairs of crank-reciprocated kneading heads 26 may, in the example of
The kneading heads 26 of
The kneading motion lies in a substantially horizontal or level plane when the massage head is also substantially horizontal or level, keeping in mind that the massage heads will tilt on their springs 28 and the ball joints 30a on support posts 30 when the user is lying on the massage table in order to conform the tilt of the massage heads 18 to the shape of the user's body, and in particular the contours of the user's back. Thus, when a user 34 is lying prone, facing upwards, on top of the two dimensional array of massage heads 18 so that the back of the user 34 is supported by the array of massage heads 18 (with sheets 40 and 42 between the user and the massage heads), the reciprocating actuator 20 moves the reciprocating frame 16 and array of massage heads 18 back and forth along the back of the user 34 and the massage heads 18 tilt to conform to the user's back as the reciprocating frame 16 is traversed longitudinally under the user 34. This is complimented by the depression of springs 28 moving up and down vertically on guide posts 30.
Simultaneously, as the reciprocating frame 16 is traversed under the user's back, the massage head actuators 22 oscillate the kneading heads 26 in their orbital kneading motion D under, and pressing upwardly against, the back of the user 34.
As mentioned above, in a preferred embodiment a sheet or sheets 40 of flexible cushioning material, such as for example an elastomer or Nylon™ mat, and a Nylon™ meshed material, or for example a foam-rubber sheet, is or are overlaid on the massage heads 18 so as to provide a flexible resilient cushioning sheet 40 supported by Nylon™ sheet 42, which is preferably rip-stop, between the kneading heads 26 and the back of the user 34. As used herein, Nylon™ refers to the family of synthetic polymers based on aliphatic or semi-aromatic polyamides. Sheet 42 may in one embodiment be tensioned around shaft 46 by ratcheting tensioners 44 seen in
In the embodiment of
The slide arms 36 are mounted in corresponding pivoting slide cradles 38 which are pivotally mounted to the base 24 of the massage head 18.
The first or forward kneading head 26a upstands a first distance orthogonal to the base 24 of the massage head 18, and the second or rear kneading head 26b upstands a second distance orthogonal to the base 24 of the massage head 18. In the depicted embodiment, not intended to be limiting, the second distance is greater than the first distance. Further, and again not intended to be limiting, the first kneading head 26a has a first diameter and the second kneading head 26b has a second diameter, and the second diameter is greater than the first diameter. The first and second kneading heads 26a, 26b may be for example have a ball or domed or spherical or frusto-conical shape (collectively referred to herein as being domes) and are positioned on the slide arms so that the corresponding tips or vertices of the domes are oriented upwardly. Again, the rear or second domes may be larger than the forward or first domes.
The stroke of the reciprocating actuator 20 may for example be in the range of six to twelve inches, and again by way of example may preferably be in the range of substantially 10 inches, and in one embodiment 8.5 inches. In these examples the reciprocating actuator 20 may be adapted to actuate the timing of the actuator's stroke, in one direction, in the range of 15 to 60 seconds, and adapted to actuate different timing for each of the forward and back strokes. Thus if the reciprocating actuator 20 is a screw drive having a stroke of about 10 inches, then, if the reciprocating actuator actuates the length of its stroke in substantially 20 seconds in a first direction, for example forward, and substantially 20 seconds in an opposite second direction, the actuator's direct current step motor need only move the reciprocating frame at a constant rate of about 0.5 inches per second.
In a further embodiment of the massage heads 18, and not intended to be limiting, massage heads 18′ are seen in
As seen in
Number | Date | Country | Kind |
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3063455 | Nov 2019 | CA | national |
This application is a divisional patent application of U.S. patent application Ser. No. 17/106,796 filed on Nov. 30, 2020, and entitled “Reciprocating Massage Table”, which application claims priority to U.S. Provisional patent application No. 62/941,947 and Canadian patent application no. 3,063,455, both filed on Nov. 29, 2019, and both entitled “Reciprocating Massage Table”, all of which are incorporated herein in their entirety.
Number | Date | Country | |
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62941947 | Nov 2019 | US |
Number | Date | Country | |
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Parent | 17106796 | Nov 2020 | US |
Child | 18461273 | US |