This application claims an invention which was disclosed in a provisional application filed Jul. 17, 2013, Ser. No. 61/847,540, entitled “Adjustable Backrest/Headrest System”. The benefit under 35 USC § 119(e) of this United States provisional application is hereby claimed, and the aforementioned application is hereby incorporated herein by reference.
This invention pertains generally to adjustable headrests and backrests. More particularly, the invention pertains to a headrest/backrest mechanism offering a broad range of motion via simple and convenient dual hand-turned knobs. A variety of adjustable headrests and backrests are extant in prior art. However, there is a continuing need for devices providing new and improved features in the field of the invention. Further, there are no prior art devices possessing the unique features and advantages inherent in our invention.
The instant invention teaches an adjustment mechanism that includes a series of parts connected by a threaded rod with a knob on each end. The parts are arranged such that they sandwich two support members so that when the knobs are loosened the unit can easily slide up and down, changing the elevation of the backrest/headrest pad unit. Further, when the knobs are loose the upper member and its attached pad can be pivoted fore and aft. Tightening the two knobs locks the entire unit in place. It also provides numerous other advantages, which will be more fully understood after review of the drawings and detailed description that follows.
Turning first to
Focusing now on
First, it loosens the connections between the paired components that grip and frictionally hold the two arms 10A and 10B of U-Rod 10 in place in juncture 100. These are outer rod gripping members 3 and 6 which connect (respectively) with inner rod gripping members 4 and 5 to firmly frictionally hold the arms 10A, 10B or U-Rod 10 and the pad 12 connected thereto in fixed position relative to junction 100 at interfaces 34 and 56. Likewise, when loosened, they allow sliding motion towards/away from junction 100 as illustrated by “movement” arrows 25 in
Second, it loosens the connections between the paired components that grip and frictionally hold lower connecting member 9 in place in juncture 100 at interface 78. These are connecting member gripping elements 7 and 8 which connect to firmly frictionally hold juncture 100 in fixed position relative to lower connecting member 9. Likewise, when loosened, they allow sliding motion of juncture 100 and the pad 12 connected thereto towards/away from lower body support 300 as illustrated by “movement” arrows 30 in
Third, it loosens the connections between the paired components that grip and hold the two arms 10A and 10B of U-Rod 10 (and the pad 12 connected thereto) at a particular angle with respect to juncture 100 and lower connecting member 9. These are inner rod gripping members 4 and 5 which interface (respectively) with connecting member gripping elements 7 (at interface 47) and 8 (at interface 85) to firmly hold U-Rod 10 and the pad 12 connected thereto in fixed angular position relative to junction 100 and lower connecting member 9. Likewise, when loosened, they allow rotational motion around the axis formed by rod 13 of junction 100 to different angles such as those shown in
In order to facilitate the locking of the aforesaid components in a fixed angular position at interface 47, member 4 and element 7 are provided with facing (and interfacing) rotational interference structures 4B and 7C in the form of matching radially symmetrically arranged V-shaped teeth that, when squeezed together when the structure is tightened, prevent rotational movements of member 4 with respect to element 7 and thereby prevent change in the angle discussed above. The same is true of the interference structures 5B, 8C of (and interface 85 between) member 5 and element 8. A variety of interference structures known in the mechanical arts could be used for this purpose so long as they are radially symmetrically arranged around the axis provided by rod 13 (and apertures 21). Such structures need not be identical as in the preferred embodiment, so long as they will mesh and lock at different angular/rotational positions in the same manner as the structures used in the preferred embodiment illustrated and discussed.
Finally, pad mount 11 may be free rotating (as illustrated by movement arrows 40) or locking depending on use requirements. Thus, as in this case and in view of the foregoing, it should be clear that numerous changes and variations can be made without exceeding the scope of the inventive concept outlined. Accordingly, it is to be understood that the embodiment(s) of the invention herein described is/are merely illustrative of the application of the principles of the invention. Reference herein to details of the illustrated embodiment(s) is not intended to limit the scope of the claims, which themselves recite those features regarded as essential to the invention.
Number | Name | Date | Kind |
---|---|---|---|
526071 | Cushing | Sep 1894 | A |
1685599 | Fletcher | Sep 1928 | A |
2282109 | Angell | May 1942 | A |
2558143 | Lauterbach | Jun 1951 | A |
2702072 | Schuessler | Feb 1955 | A |
3822917 | George | Jul 1974 | A |
4313639 | Ware | Feb 1982 | A |
5427436 | Lloyd | Jun 1995 | A |
6206399 | Schnitzenbaumer | Mar 2001 | B1 |
6983992 | Oomori | Jan 2006 | B2 |
7549704 | Chou | Jun 2009 | B1 |
7604292 | Reading | Oct 2009 | B1 |
8371652 | Revell | Feb 2013 | B2 |
8662591 | Lin | Mar 2014 | B2 |
8905474 | Parvey | Dec 2014 | B2 |
10597102 | Cheng | Mar 2020 | B2 |
20080084097 | Botting | Apr 2008 | A1 |
Number | Date | Country | |
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20200138194 A1 | May 2020 | US |