1. Field of the Invention
The present invention relates generally to a rotating seat for suspension from a play set structure. More specifically, the present invention concerns a rotating seat that includes a seat body rotatable about a generally vertical axis with an upper seating surface configured to support a user, an elongated suspending element configured to support the seat body from suitable structure, and a handle assembly operably coupled with the suspending element to cause rotation of the seat body relative to the axis upon actuation by the user.
2. Discussion of the Prior Art
Those of ordinary skill in the art will appreciate that conventional play sets typically include a frame or other support structure, and a number of known play accessories (e.g., swings, slides, climbing walls, etc.) supported on or suspended from the support structure. A distinct category of recreational devices, play accessories that are designed to stand alone, are known in the art to require dedicated ground space upon which to be placed. For example, conventional rotating devices (e.g., carousels, merry-go-rounds, etc.) have been separate from any other play set structure and have required placement on level ground, most commonly a hard surface, where injury may occur if a user falls off of the rotating device.
The present invention provides a rotating seat for suspension from a play set structure or other suitable structure, including a rotatable seat body coupled with an elongated suspending element. A handle assembly is operably coupled with the suspending element to allow a user to selectively cause rotation of the seat body upon actuation thereof.
More particularly, according to one aspect of the present invention, a rotating seat is provided for suspension from a play set structure. The rotating seat includes a seat body with an upper seating surface configured to support a user. The seat body is rotatable about a generally vertical axis of rotation. The rotating seat also includes an elongated suspending element configured to support the seat body from the play set structure. The suspending element extends substantially vertically and presents opposite upper and lower end margins. The suspending element is configured to operably couple with the play set structure along the upper end margin, and is operably coupled with the seat body at a location spaced from the upper end margin. The rotating seat further includes a handle assembly operably coupled with the suspending element and configured to cause rotation of the seat body relative to the axis upon actuation thereof.
Embodiments of the present invention may also include a damped pivot connection assembly for securing the suspending element to the play set structure and allowing restrained pivoting movement of the suspending element relative to a fixed bracket of the connection assembly. It is believed that the damped pivot connection may, among other things, prevent bending or other damage to a rigid suspending element during repeated use of the rotating seat.
This summary is provided to introduce a selection of concepts in a simplified form that are further described below in the detailed description of the preferred embodiments. This summary is not intended to identify key features or essential features of the claimed subject matter, nor is it intended to be used to limit the scope of the claimed subject matter.
Various other aspects and advantages of the present invention will be apparent from the following detailed description of the preferred embodiments and the accompanying drawing figures.
A preferred embodiment of the present invention is described in detail below with reference to the attached drawing figures, wherein:
a is an enlarged, exploded, partial sectional view of a portion of the rotating seat shown in
b is an isometric view the portion of the rotating seat shown in
The drawing figures do not limit the present invention to the specific embodiments disclosed and described herein. The drawings are not necessarily to scale, emphasis instead being placed upon clearly illustrating the principles of the preferred embodiments.
The present invention is susceptible of embodiment in many different forms. While the drawings illustrate, and the specification describes, certain preferred embodiments of the invention, it is to be understood that such disclosure is by way of example only. There is no intent to limit the principles of the present invention to the particular disclosed embodiments.
With initial reference to
Additionally, while the illustrated play set structure 22 supports only the suspended rotating seat 20 described in detail herein, it will be readily appreciated that a number of known play accessories (e.g., swings, slides, climbing walls, etc.) may also be included with alternatively constructed play set structure (not shown). Furthermore, the rotating seat 20 may also be suspended from suitable structure other than the conventional play set structure 22 (such as from joists on the underneath side of a suspended deck; not shown) without departing from the teachings of the present invention.
With continued reference particularly to
With attention still on
Returning now to structural details of the depicted seat body 30, the seat body 30 is unitarily molded from a synthetic resin material to present a substantially circular outer circumferential periphery 44. In one embodiment, the seat body 30 is substantially hollow and may be formed of blow-molded plastic. The illustrated seat body 30 is generally annular in shape and is devoid of any sharp corners about the outer circumferential periphery 44 thereof. As shown, the upper seating surface 38 of the seat body 30 is substantially flat, such that a user may comfortably sit anywhere along the seating surface 38.
Returning briefly now to
In the embodiment shown, the suspending element 32 is configured such that the lower end margin 48 thereof is spaced from the ground. In more detail, the seat body 30 of the illustrated embodiment is operably coupled with the suspending element 32 through the low friction bearing mechanism 42 along the lower end margin 48 of the suspending element 32 for relative rotation thereabout. In this way, the seat body 30 of the rotating seat 20 is disposed above the surface of the ground, as will be readily appreciated by one of ordinary skill in the art.
In more detail, the suspending element 32 shown in
Turning specifically now to
The upper bearing 54 is disposed radially between the suspending element 32 and the outer sleeve element 52 along an upper margin of the tubular portion 58 of the outer sleeve element 52 to provide low friction relative rotation therebetween. The outer sleeve element 52 is coupled with and rotationally fixed relative to the seat body 30. Fasteners in the form of screws 62 pass through the flange portion 60 of the outer sleeve element 52 and into corresponding locations within the seat body 30. In this way, the seat body 30 and the protective outer sleeve element 52 are rotationally fixed relative to one another and therefore rotate together about the suspending element 32 (see
A washer 64 is axially fixed to the lower end margin 48 of the suspending element 32. In the illustrated embodiment, a bolt 66 secures the washer 64 to the lower end margin 48 of the suspending element 32 via an adapter sleeve 68, as will be readily appreciated by one of ordinary skill in the art upon review of this disclosure. The lower bearing 56 is disposed axially between the flange portion 60 of the outer sleeve element 52 (which is rotationally fixed relative to the seat body 30) and the washer 64 (which is axially fixed relative to the suspending element 32). In this way, the seat body 30 is configured to rotate freely relative to the suspending element 32.
An end cap 70 is secured to the flange portion 60 of the outer sleeve element 52 (which is rotationally fixed relative to the seat body 30) with fasteners in the form of screws 72 to cover the axial recess 51. In this way, the rotatable interconnection between the seat body 30 and the suspending element 32 is covered so as to be protected from the elements and to provide a safeguard against injury to the user.
It will be readily appreciated by one of ordinary skill in the art that the rotational connection between the seat body 30 and the suspending element 32 depicted and described in detail herein may be varied without departing from the spirit of the present invention. For example, the bearing mechanism design may be changed, or other suitable means may be provided for rotatably coupling these components, while remaining within the ambit of the present invention.
Returning briefly now to
In the embodiment depicted in
In even more detail, the handle body 74 is unitarily molded from a synthetic resin material to present a substantially circular outer circumferential periphery 78. The illustrated handle body 74 is generally annular in shape and is devoid of any sharp corners about the outer circumferential periphery 78 thereof. As shown, the diameter of the handle body 74 is smaller than the diameter of the seat body 30.
During operation of the rotating seat 20 shown in
Turning specifically now to
In one embodiment, the pivot connection assembly 36 includes a ball joint 82 including a ball 84 fixed relative to the suspending element 32. The ball 84 is disposed within a socket 86 fixed relative to the bracket 80 (as depicted, the socket 86 and the bracket 80 are formed as a single piece). In the illustrated embodiment, the ball 84 includes an axial projection 88 protruding out from the socket 86. The axial projection 88 of the ball 84 includes a protective sleeve 90 disposed around at least a portion thereof, with the axial projection 88 being secured to the upper end margin 46 of the suspending element 32 via an adapter sleeve 92, as will be readily appreciated by one of ordinary skill in the art upon review of this disclosure.
The pivot connection assembly 36 further includes a damping element preferably in the form of an elastomeric sleeve 94 operable to restrain pivoting movement of the suspending element 32 relative to the fixed bracket 80 due to lateral forces applied to either the suspending element 32, the seat body 30, or the combination thereof. In one embodiment, the elastomeric sleeve 94 is disposed around at least a part of the ball joint 82. In more detail, the illustrated embodiment includes the elastomeric sleeve 94 being disposed around at least a portion of the socket 86 and around at least a portion of the upper end margin 46 of the suspending element 32 (see
It will be readily appreciated by one of ordinary skill in the art that, if desired, the specific construction of the depicted elastomeric sleeve 94 described in detail herein may be varied without departing from the spirit of the present invention. For example, the damping element design may be changed, such as being disposed only around the axial projection of the ball 84 and being configured to restrain pivoting movement by working against a portion of the socket, while remaining within the ambit of the present invention.
As shown in the phantom lines of
With reference now to
With continued reference particularly to
One of ordinary skill in the art will readily appreciate that many of the components of the rotating seat 120 shown in
For the sake of brevity, the description of the embodiment of the rotating seat 120 will focus on distinctions between components (e.g., the nature of a preferred embodiment of the handle assembly 134 and construction details of the suspending element 132), with an understanding of the corresponding or similar components being readily apparent to one of ordinary skill in the art from the descriptions above.
With attention still on
Returning briefly now to
In the embodiment shown, the suspending element 132 is configured such that the lower end margin 148 thereof is spaced from the ground. In more detail, the seat body 130 of the illustrated embodiment is rotatably coupled with the suspending element 132 through the low friction bearing mechanism 142 along the lower end margin 148 of the suspending element 132. In this way, the seat body 130 of the rotating seat 120 is disposed above the surface of the ground.
In more detail, the suspending element 132 shown in
The first metal body 200 and the second metal body 202 are operably secured to one another via an adapter sleeve 204, as will be readily appreciated by one of ordinary skill in the art upon review of this disclosure. The secured combination of the first metal body 200 and the second metal body 202 collectively extends substantially continuously between the upper end margin 146 and the lower end margin 148 of the suspending element 132.
As shown particularly in
Turning specifically now to
A second washer 164 is axially fixed to the lower end margin 148 of the second metal body 202. In the illustrated embodiment, a nut 208 secures the washer 164 to a threaded portion 210 of the lower end margin 148 of the second metal body 202, as will be readily appreciated by one of ordinary skill in the art upon review of this disclosure. The lower bearing 156 is disposed axially between the first triangular washer 206 (which is rotationally fixed relative to the seat body 130) and the second washer 164 (which is axially fixed relative to the suspending element 132). In this way, the seat body 130 is configured to rotate freely relative to the suspending element 132.
A bottom end cap 170 is secured to the seat body 130 with fasteners in the form of screws 172 to cover the axial recess 151. Additionally, a top end cap 212 is secured to the seat body 130 with fasteners in the form of screws 214 (see
Returning briefly now to
In the embodiment depicted in
In even more detail, with attention particularly to
In the illustrated embodiment, the handle assembly 134 further includes a one-way clutch device 236. The one-way clutch device 236 is configured to engage with the suspending element 132 and thereby cause rotation of the handle assembly 134 thereabout upon rotation of the crank arms 226, 228 in the first crank direction. In addition, the one-way clutch device 236 is further configured to disengage from the suspending element 132 and thereby provide “freewheel” rotation of the crank mechanism 224 when the crank arms 226, 228 are rotated in a second crank direction opposite the first crank direction. Thus, rotation of the crank arms 226, 228 in the second crank direction simply freewheels the crank mechanism 224 without causing rotation of the handle assembly 134 about the suspending element 132.
It will be readily appreciated by one of ordinary skill in the art that, if desired, the specific construction details of the depicted crank mechanism 224 described in detail herein may be varied without departing from the spirit of the present invention. For example, the depicted gear configurations may be altered, or the freewheel feature provided by the one-way clutch device 236 may be changed or removed (e.g., such that an alternatively constructed crank mechanism may cause rotation of the handle assembly about the suspending element upon rotation of the crank in either direction). These illustrative types of incidental design changes are contemplated herein and would of course remain fully within the ambit of the present invention.
In even more detail, the depicted one-way clutch device 236 includes a generally annular body 238 with a pair of angularly eccentric slots 240 and pins 242 received within the eccentric slots 240. The annular clutch body 238 is secured to and configured to rotate with the spur gear 234. Therefore, as shown particularly in
Additionally, it is noted that the protective outer sleeve element 152 comprises a lower tubular portion 158 and a supporting structure portion 244 for the crank mechanism 224. The outer sleeve element 152 is disposed generally coaxially about at least a portion of the suspending element 132, with the lower tubular portion 158 extending axially at least substantially between the upper seating surface 138 of the seat body 130 and the rotatable handle assembly 134. In this way, the rotatable handle assembly 134 and the protective outer sleeve element 152 are rotationally fixed relative to one another and therefore rotate together about the suspending element 132 (see
During operation of the rotating seat 120 shown in
As will be readily appreciated, the user can continue to rotate the crank mechanism 224 in the first crank direction in order to maintain rotation or increase rotational speed, as will be readily appreciated by one of ordinary skill in the art. Since the seat body 130 rotates freely relative to the suspending element 132 as described above (and the crank mechanism 224 is designed to freewheel), it is noted that the user can generate rotational speed by rotating the crank mechanism 224 in the first crank direction and then stop rotating the crank mechanism 224 while continuing to rotate.
Turning specifically now to
In more detail, the pivot connection assembly 136 shown in
The preferred forms of the invention described above are to be used as illustration only, and should not be utilized in a limiting sense in interpreting the scope of the present invention. Obvious modifications to the exemplary embodiments, as hereinabove set forth, could be readily made by those skilled in the art without departing from the spirit of the present invention.
The inventors hereby state their intent to rely on the Doctrine of Equivalents to determine and access the reasonably fair scope of the present invention as pertains to any apparatus not materially departing from but outside the literal scope of the invention set forth in the following claims.
The present application claims the benefit of and priority from U.S. Provisional Patent Application Ser. No. 61/319,069, filed Mar. 30, 2010, the entire disclosure of which is hereby incorporated by reference herein.
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Number | Date | Country |
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Entry |
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PCT Search Report and Written Opinion from PCT Application No. PCT/US2011/030602 entitled Rotating Seat (Dated Dec. 9, 2011). |
Number | Date | Country | |
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20110241398 A1 | Oct 2011 | US |
Number | Date | Country | |
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61319069 | Mar 2010 | US |