Adjustable face rest

Information

  • Patent Grant
  • 6397414
  • Patent Number
    6,397,414
  • Date Filed
    Wednesday, June 21, 2000
    24 years ago
  • Date Issued
    Tuesday, June 4, 2002
    22 years ago
  • Inventors
  • Examiners
    • Trettel; Michael F.
    Agents
    • Kolisch, Hartwell, Dickinson, McCormack & Heuser
Abstract
An adjustable face rest for use with massage equipment such as tables and chairs includes at least one handle for locking or unlocking adjustability of the face rest. A cross support member is bent or curved to avoid encroaching a person's chin.
Description




FIELD OF THE INVENTION




The invention relates to face rests that are mounted on a chair or a table. In particular, the invention involves a face rest that is adjustable for supporting a person's head in different orientations.




BACKGROUND OF THE INVENTION




Adjustable face rests are commonly used on tables and chairs that are designed to support a person's body while the person receives a massage or other type of body-working therapy. Examples of portable massage tables that use adjustable face rests are shown in U.S. Pat. Nos. 5,676,062 and 5,913,271. Examples of adjustable face rests are shown in U.S. Pat. Nos. 5,427,436 and 5,177,823. Each of the patents listed above is incorporated herein by reference.




Face rest designs such as those shown in U.S. Pat. Nos. 5,427,436 and 5,177,823 are popular because freedom to adjust the face rest can be controlled using a minimal number of toggles or levers. However, a problem with these face rest designs is that they require a rigid cross support in a location that may interfere with a person's chin. Accordingly, there is a need for an adjustable face rest design that provides autonomous lock control from one or two handles, with comfortable facial support that does not hit or encumber a person's chin.




SUMMARY OF THE INVENTION




Problems with the prior art are solved by the present invention which provides an adjustable device for supporting a person's head. A facial support member has a proximal end. A linkage device is configured to secure the support member to a furniture item such as a chair or a table. The support member is free to rotate around a rotational axis located near the proximal end of the support member. Plural cooperative clamping devices are laterally spaced from each other along the rotational axis. The clamping devices are connected by a cross-member that is angled or curved to avoid interfering with a person's chin. A single handle or lever is provided for operating plural clamping devices simultaneously.











DESCRIPTION OF THE FIGURES





FIGS. 1A-1C

are side views of an adjustable face rest in a preferred embodiment of the invention, showing different orientations of the face rest relative to a table.





FIG. 2

is a bottom view of the adjustable face rest shown in FIG.


1


.





FIG. 3

is a perspective view of an alternative embodiment of the invention.





FIG. 4

is a perspective view of an adjustable face rest mounted on a collapsible massage table.





FIG. 5

is a perspective view of an adjustable face rest mounted on a collapsible chair.





FIG. 6

is a perspective view of an adjustable face rest mounted on a chest support platform designed for mounting on an edge of a table or desk.











DESCRIPTION OF PREFERRED EMBODIMENTS OF THE INVENTION




The invention provides apparatus for supporting a person's body, particularly including adjustable face rest support that avoids encumbering a person's chin.





FIGS. 1A

,


1


B and


1


C illustrate a face rest, in accordance with a preferred embodiment of the present invention, in three orientations relative to a massage table. In

FIG. 1A

, the face rest


20


includes base plate


22


which supports a pad or cushion


24


. It is not necessary for the base to be in a plate form. A satisfactory “base” may take many different forms, i.e., practically any rigid frame structure which is capable of supporting a person's head. Base plate


22


is supported on its bottom side by triangular support structure


26




a


, also referred to as an arm assembly. Arm assembly


26




a


consists of long arm


28




a


pivotally connected to distal junction


30




a


, and short arm


32




a


pivotally connected to proximal junction


34




a


. Distal and proximal junctions


30




a


and


34




a


define a line that is approximately parallel to the plane of the paper that the figure is drawn on. Proximal and distal junctions


30




a


and


34




a


should be positioned in a fixed orientation near and relative to the bottom side of base plate


22


. Distal and proximal junctions


30




a


and


34




a


are defined by holes in elongated flange


36




a


attached to the bottom side of base plate


22


.




Arms


28




a


and


32




a


are commonly and pivotally attached to cross support member


38


. Cross support member


38


includes a bent cover tube portion


39


that is designed to avoid interference with a person's chin.




Each of arms


28




a


and


32




a


have an effective length relative to the triangle formed by the two arms and the portion of the base plate between the junctions. At least one of the arms, for example, short arm


32




a


in

FIG. 1A

, has a slot


40




a


through which cross support member


38


passes. A clamp, operated by cam lever


42


is manipulable between a lock-position and a release-position. When the clamp is in the release-position, the arms are free to pivot around cross support member


38


, and the effective length of short arm


32




a


is adjustable by moving slot


40




a


relative to cross support member


38


. When cam lever


42


moves to set the clamp in its lock-position, all pivotal movement of arms


28




a


and


32




a


about cross support member


38


, and effective length adjustment of short arm


32




a


, is prevented.




Pivoting movement of the arms around cross support member


38


is alternately prevented then allowed by, respectively, engaging then disengaging corresponding serrated faces on opposing discs. The disc structures will be described in more detail below. In contrast, adjustment of the effective length of short arm


32




a


is controlled by alternating between two degrees of friction applied to arm


32




a


in the vicinity of slot


40




a


. When the clamp is in the lock-position, as more clearly illustrated in

FIG. 2

, short arms


32




a


and


32




b


are frictionally sandwiched between washers, thereby preventing effective length adjustment of the short arm. When the clamp is in the release-position, the degree of friction exerted on the short arms by their respective pairs of washers, is lessened to an appropriate degree so that adjustment of the effective lengths of the short arms is permitted, however, a small degree of residual friction remains so that the face rest does not “flop”. In other words, even when the clamp is in the release-position, the geometry of the triangular support structure will not change unless manual pressure is exerted on the face rest by the user.




A post


44




a


is also connected to cross support member


38


and is free to pivot relative to cross support member


38


when the clamp is in the release-position. Table


46


has a hole


48




a


through which post


44




a


can be inserted, thereby securely attaching the face rest


20


to the table


46


.





FIGS. 1B and 1C

show the same parts as

FIG. 1A

, however, the relative positions of the parts have been altered in order to illustrate the adjustability of face rest


20


. In

FIG. 1A

base plate


22


and pad


24


of face rest


20


are elevated and substantially parallel to table


46


. In

FIG. 1B

the average height of face rest


20


is approximately the same as table


46


, however, the angle of face rest


20


has been adjusted substantially. The geometry of triangular support structure


26




a


in

FIGS. 1A and 1B

is substantially unchanged, however, the orientation of triangular support structure


26




a


relative to table


46


has been rotated around cross support member


38


. It is also apparent in

FIGS. 1A

,


1


B and


1


C that the height and angular orientation of face rest


20


directly tracks the orientation of a line including the proximal junction


34




a


and the distal junction


30




a


.

FIG. 1C

shows the orientation of face rest


20


when triangular support structure


26




a


is essentiially collapsed. This allows face rest


20


to be placed in a substantially level and parallel orientation relative to table


46


.





FIGS. 1A

,


1


B and


1


C illustrate an important structural feature of the invention, namely, the reinforced coupling arrangement of long arm


28




a


and short arm


32




a


between table


46


and face rest


20


. By cooperatively employing two coupling arms in connection with proximal and distal junctions, respectively, particularly when tandem triangular support structures are used under opposing lateral portions of the face rest, a greater degree of strength and sturdiness of the face rest relative to the table is achieved in comparison to prior face rests.





FIG. 2

shows two triangular support structures


26




a


and


26




b


. Each of lateral portions


23




a


and


23




b


of base plate


22


have a triangular support structure attached to the bottom side. Triangular support structures


26




a


and


26




b


are practically the same. Elements of triangular support structure


26




b


are generally the same as elements of triangular support structure


26




a


. Unless otherwise indicated, everything discussed and illustrated in the application relative to one of the triangular support structures, applies to both triangular support structures.




Each triangular support structure has a clamp


50




a


or


50




b


, both of which are engaged and disengaged concertedly between lock-positions and release-positions, respectively, by movement of cam lever


42


. Clamp


50




a


includes two discs


52




a


and


54




a


with serrated faces juxtaposed with each other. The rotational position of disc


52




a


relative to cross support member


38


is at all times linked with the orientation of post


44




a


. The rotational position of disc


54




a


relative to cross support member


38


is at all times linked to the rotational position of triangular support structure


20




a


, so that when cam lever


42


is in the release-position, triangular support structure


26




a


may freely rotate relative to post


44




a


. However, when cam lever


42


is moved to the lock-position, the serrated faces of discs


52




a


and


54




a


engage, thereby preventing relative movement between the angular orientation of triangular support structure


26




a


and post


44




a


. All of the discussion concerning clamp


26




a


is equally descriptive of clamp


26




b.






Bent cover tube portion


39


of cross support member


38


conceals cable


100


. One end of cable


100


is secured to rod end piece


102




a


. Rod end piece


102




a


is connected to cam lever


42


. Rod end piece


102




a


moves longitudinally relative to discs


52




a


,


54




a


, and bent cover tube portion


39


when cam lever


42


is manipulated. Similarly, the other end of cable


100


is secured to rod end piece


102




b


. Rod end piece


102




b


passes through discs


42




b


,


54




b


, and bolt


104


. Collectively, cable


100


, rod end pieces


1024




a


,


102




b


, and bent cover tube portion


39


function to force engagement of each pair of discs when cam lever


42


is positioned, as shown in

FIG. 2

, retracting rod end piece


102




a


. When cam lever


42


is flipped to the other side, rod end piece


102




a


moves inward, decreasing tension on cable


100


and allowing each pair of discs to disengage.




Bent cover tube portion


39


may be substituted with other similarly-shaped rigid structures. For example, a rod may be used with a groove to hold and guide cable


100


. In essence, any type of rigid angled or curved structure that is capable of holding and guiding cable


100


may be used instead of bent cover tube portion


39


.




Other details of the adjustment mechanisms employed in the face rests shown in

FIGS. 1A-C

and

FIG. 2

, are explained and illustrated in U.S. Pat. No. 5,427,436.





FIG. 3

illustrates an alternative adjustable face rest


200


. Details of the adjustment mechanisms employed in face rest


200


are described and illustrated in U.S. Pat. No. 5,177,823. Rigid frame member


202


supports U-shaped pad


14


. Cam lever


204


alternately locks and unlocks freedom of rotational movement of frame structure


202


around axis A


1


. Cam lever


206


alternately locks and unlocks freedom of rotational movement of frame structure


202


around axis A


2


. Posts


208




a


and


208




b


fit into holes in a table or chair


210


. In accordance with principles discussed above with reference to

FIGS. 1A-C

and

FIG. 2

, bent cross member


212


is curved to avoid interference with a person's chin.





FIGS. 4-6

illustrate face rests, as described and illustrated in

FIGS. 1A-C

, and

FIG. 2

, mounted on equipment for massage and body working.

FIG. 4

shows face rest


20


mounted on collapsible massage table


230


.

FIG. 5

shows face rest


20


mounted on chair


240


.

FIG. 6

shows face rest


20


mounted on desk top chest pad


250


. Bent cross support member


252


can be seen in

FIGS. 5 and 6

.




Although the invention has been disclosed in its preferred forms, the specific embodiments thereof as disclosed and illustrated herein are not to be considered in a limiting sense, because numerous variations are possible. Singular terms used herein do not preclude the use of more than one of the associated element, and embodiments utilizing more than one of a particular element are within the spirit and scope of the invention. Applicant regards the subject matter of his invention to include all novel and nonobvious combinations and subcombinations of the various elements, features, functions, and/or properties disclosed herein. No single feature, function, element or property of the disclosed embodiments is essential. The following claims define certain combinations and subcombinations of features, functions, elements, and/or properties that are regarded as novel and nonobvious. Other combinations and subcombinations may be claimed through amendment of the present claims or presentation of new claims in this or a related application. Such claims, whether they are broader, narrower, equal, or different in scope to the original claims, also are regarded as included within the subject matter of applicant's invention.



Claims
  • 1. A device for supporting a person's head comprisinga facial support member having a proximal end, a linkage device configured to secure the support member to a furniture item so that the support member can be free to rotate around a rotational axis located near the proximal end of the support member, plural cooperative clamping devices laterally spaced from each other along the rotational axis, the clamping devices being connected by a cross-member that is angled or curved to avoid interfering with a person's chin.
  • 2. The device of claim 1, wherein the furniture item is a table.
  • 3. The device of claim 1, wherein the furniture item is a chair.
  • 4. The device of claim 1, wherein the furniture item is a chest support device designed for mounting on a table top.
  • 5. The device of claim 1, wherein the support member includes a platform.
  • 6. The device of claim 5, wherein the platform is open in a central region.
  • 7. The device of claim 5, wherein the platform has a cushion for contacting a person's face.
  • 8. The device of claim 1, wherein the support member is contoured to accommodate a person's face.
  • 9. The device of claim 1, wherein the linkage device includes a pair of lateral post members designed to engage a table or a chair.
  • 10. The device of claim 1 further comprising a single handle that coordinates the clamping devices simultaneously.
  • 11. The device of claim 1, wherein each clamping device has a pair of locking disks, rotational freedom of the support member around the rotational axis being locked when the respective pairs of disks are forced together, and rotational freedom of the support member around the rotational axis being permitted when each pair of disks is forced apart.
  • 12. The device of claim 11, wherein the cross-member includes a bent cover tube.
  • 13. The device of claim 12 further comprising a cable connecting the clamping devices and running through the cover tube, whereby tightening of the cable causes the clamping devices to lock and prohibit rotational freedom of the support member around the rotational axis.
  • 14. A device for supporting a person's head comprisinga facial support member having a proximal end, a linkage device configured to secure the support member to a furniture item so that the support member can be free to rotate around a rotational axis located near the proximal end of the support member, plural cooperative clamping devices laterally spaced from each other along the rotational axis, a cable connecting the clamping devices, a guide member that holds the cable in a non-linear path to avoid interfering with a person's chin, and a handle that can be manipulated to increase tension in the cable, thereby causing the clamping devices to lock and prohibit freedom of the support member to rotate around the rotational axis.
  • 15. The device of claim 14, wherein the guide member is a bent tube.
  • 16. The device of claim 14, wherein the guide member is a rigid rod member having a groove for seating the cable.
  • 17. The device of claim 14, wherein the furniture item is a table, or a chair, or a chest support member designed to be secured on the edge of a table top.
  • 18. The device of claim 14, wherein the support member includes a platform.
  • 19. The device of claim 18, wherein the platform is open in a central region.
  • 20. The device of claim 18, wherein the platform has a cushion for contacting a person's face.
  • 21. The device of claim 14, wherein the support member is contoured to accommodate a person's face.
  • 22. The device of claim 14, wherein each clamping device has a pair of locking disks, whereby an increase in tension of the cable causes each pair of locking disks to engage and lock.
  • 23. A device for supporting a person's head comprisinga facial support member having a proximal end, a linkage device configured to secure the support member to a furniture item so that the support member can be free to rotate around first and second rotational axes located near the proximal end of the support member, a first handle that can be manipulated alternately to lock and unlock rotation of the facial support member around the first rotational axis, and a second handle that can be manipulated alternately to lock and unlock rotation of the facial support member around the second rotational axis, and a non-linear cross support member having ends aligned with the first rotational axis.
US Referenced Citations (23)
Number Name Date Kind
1009417 John Nov 1911 A
1629306 Reeder May 1927 A
1728025 Weber Sep 1929 A
2461434 Moyers Feb 1949 A
2463410 Morris Mar 1949 A
2568417 Steinbacher Sep 1951 A
2661050 Felter Dec 1953 A
3477761 Krantz Nov 1969 A
3572835 Kees et al. Mar 1971 A
3603642 Laessker Sep 1971 A
3761128 Schenk et al. Sep 1973 A
3858937 Norris Jan 1975 A
4139093 Holmes Feb 1979 A
4779297 Sturges Oct 1988 A
5127823 Bonner Jul 1992 A
5177823 Riach Jan 1993 A
5233713 Murphy et al. Aug 1993 A
5276927 Day Jan 1994 A
5347668 Manning Sep 1994 A
5427436 Lloyd Jun 1995 A
5970546 Danis Oct 1999 A
6151734 Lawrie Nov 2000 A
6276012 Borders Aug 2001 B2
Foreign Referenced Citations (2)
Number Date Country
935969 Sep 1963 GB
2161702 Jan 1986 GB