This invention relates to reclining furniture and more particularly to zero gravity recliners. In accordance with this invention, the recliner includes one or more improvements directed to different features of the recliner.
In accordance with one aspect of the invention, the recliner is motor drive. In accordance with other aspects of the invention, the recliner is a wall-hugger allowing it to be placed close to the wall when in the upright position and without moving it away from the wall when reclined, has a zero gravity configuration when reclined supporting the legs of the occupant above the heart, and when the recliner is upright the leg rest retracts under the plan of the seat.
The accompanying drawings are not intended to be drawn to scale. In the drawings, each identical or nearly identical component that is illustrated in various figures is represented by a like numeral. For purposes of clarity, not every component may be labeled in every drawing. In the drawings:
This invention is not limited in its application to the details of construction and the arrangement of components set forth in the following description or illustrated in the drawings. The invention is capable of other embodiments and of being practiced or of being carried out in various ways. Also, the phraseology and terminology used herein is for the purpose of description and should not be regarded as limiting. The use of “including,” “comprising,” or “having,” “containing,” “involving,” and variations thereof herein, is meant to encompass the items listed thereafter and equivalents thereof as well as additional items.
The Zero Gravity Recliner of the present invention in the embodiment illustrated includes in its general organization a base 10 that carries the chair assembly 12 having a seat 14, backrest 16 and leg rest 18, the frame of the seat and backrest are identified as 14a and 16a. The chair assembly 12 is supported on the base by a motion assembly 20 that enables the chair assembly to move between zero gravity reclined and upright positions shown respectively in
The base 10 in the embodiment illustrated includes a pair of side support panels 30, one on each side of the chair that extend fore and aft inside the frame sides 32 that define the chair arm rests 34. The side panels 32 are connected together by front and rear spreaders 36 and 36a to form a rigid frame, and each of the panels 30 mounted on the side walls 32 carries an essentially horizontal track 40 that extends front-to-back over a substantial portion of the length of the supports. While the tracks 40 shown are horizontal, in other embodiments they may be inclined and/or non-linear in shape.
The chair assembly 12 is supported on the base 10 by a roller trolley 46 that may be generally U-shaped having a bottom plate 48 and side plates 50 (see
As shown in
Each of the side plates 50 of the roller trolley 46 carries a motion bracket 64. The motion brackets 64 are pivotally connected to the side members 50 by pivot pins 66. The motion brackets 64 carry the seat frame 14a and backrest frame 16a on the bracket flanges 68 and 70 respectively, that are rigidly connected to the seat and backrest frames. In that fashion the frames of the seat and backrest are in a fixed angular relationship to one another that does not change when the two pivot as a rigid assembly with the motion brackets 46. By virtue of the attachment of the motion brackets to the roller trolley 46, the chair assembly 12 moves to and fro on the stationary base frame 10 (compare
The leg rest 18 as part of the chair assembly moves with the seat 14 and backrest 16, but its angular position is not fixed with respect to those chair parts. Rather, the leg rest 18 is pivotally mounted at the front end of the seat, and as explained in detail below, it pivots with respect to the seat by the action imparted to it by the leg rest control bars 80.
As shown in
Pivotal motion of the unitized seat 14 and backrest 16 on the motion bracket 64 is imparted by actuating levers 92 pivotally mounted on each side of the seat at their lower ends 94 to fixed side supports 30 and at their upper ends 96 to the sides of the seat frame 14a. The connections of the ends 94 and 96 of the actuating levers 92 are provided by pivots 98 and 100. The side supports 30 establish fixed pivots 98 at the lower ends of actuating levers 92, and the upper pivots 100 move as the seat 14 moves with the trolley 46 and motion bracket 64. When the trolley moves in a forward direction on the tracks 40 (to the left as viewed in
Footrest control bars 80 that control the motion of the footrest with respect to the seat, are connected at one end 104 to the actuating levers 92 at pivot 106, and the other ends 108 of the control bars 80 are connected at pivot 110 to the end 112 of the footrest 18. When the actuating levers 92 move toward the vertical position as the trolley 46 moves forward on the tracks 40, the control bars 80 pivot the leg rest 18 about its pivots 90 on the brackets 86 causing the footrest to rise from the down or retracted position under the front edge of the seat 14 (see
From the foregoing description it will be appreciated that the combination of the moving trolley 46, actuating levers 92 and control bars 80 direct the recliner to its upright and reclined positions and simultaneously the leg rest to its retracted (
Having thus described several aspects of at least one embodiment of this invention, it is to be appreciated various alterations, modifications, and improvements will readily occur to those skilled in the art. Such alterations, modifications, and improvements are intended to be part of this disclosure, and are intended to be within the spirit and scope of the invention. Accordingly, the foregoing description and drawings are by way of example only.