The present invention relates generally to the field of child strollers. More particularly, the present invention relates to a foldable stroller that includes an improved latch and mechanism for properly positioning swivel front wheels to increase compactness of the stroller when folded and increase the ease with which the stroller may be deployed and folded for stowage.
Even though foldable strollers have been in production for quite some time, efforts to improve the ease with which they may be folded for stowage and increase the compactness of the folded stroller constantly continues. Mechanisms to coordinate folding movement of the legs and handle extensions as the stroller is folded and easily-releasable latches allowing the folding operation to commence have dramatically improved the ease of use over the years. One area of focus has been in mechanisms that allow the stroller to be collapsed for stowage requiring only one hand to operate. Another area of focus involves optimizing stroller frame configuration, especially swivel wheel position, so that a folded stroller frame is as compact as is possible.
It would be advantageous to provide a foldable stroller that can be folded using a simple, one-handed operation which releases the latch, folds the stroller frame in a coordinated manner, and positions swivel wheels for maximum compactness while allowing the folder stroller to stand upright in the folded condition.
According to one embodiment of the present invention, a stroller having forwardly extending right and left side front wheel supports with at least one forwardly disposed wheel connector, rearwardly extending right and left side rear wheel supports with rearwardly disposed wheel connectors, and upwardly extending right and left side handle supports terminating in one or more handles at the upper end are interconnected by right and left side folding mechanisms to form a collapsible frame. The folding mechanisms synchronize movement of respective front wheel supports, rear wheel supports, and handle supports as the stroller frame is moved between collapsed and deployed positions. Right and left side latchable, articulated links interconnect respective front and rear wheel supports; the articulated links maintain the stroller in a deployed position when latched, and allow the stroller to be folded when unlatched. A handle disposed between the right and left side articulated links and pivotal about a transverse axis connects to right and left side latch pins. The handle is moveable between first and second positions, movement from the first to the second position causes the latch pins to move from engaged to disengaged positions thereby unlatch the articulated links. The latch pins are biased toward the engaged positions such that when the handle is returned to the first position, the latch pins will be released and the biasing element will move the latch pins toward the engaged position to engage when the articulated link is positioned as when the stroller is deployed. Grasping the handle by a user moves the handle so that the latch pins are disengaged, allowing the stroller frame to fold as the user continues to lift the handle upwardly.
Another embodiment of the present invention provides a stroller having forwardly extending right and left side front wheel supports with at least one forwardly disposed wheel connector, rearwardly extending right and left side rear wheel supports with rearwardly disposed wheel connectors, and upwardly extending right and left side handle supports terminating in one or more handles at the upper end. Left and right side folding mechanisms are provided at the forward end of the rear wheel supports. The front wheel and handle supports are each pivotally connected to respective folding mechanisms to form a collapsible frame. The folding mechanisms synchronize movement of respective front wheel supports, rear wheel supports, and handle supports as the stroller frame is moved between collapsed and deployed positions. Each folding mechanism comprises a slider that moves between opposing first and second positions with one or more links connecting the slider to ends of the respective front wheel and handle supports to synchronize support movement allowing collapse of the stroller. The front wheel is provided with a generally vertically oriented swivel connection allowing the wheel to be steered. A ramped cam symmetrically oriented around the swivel connection is connected to the front wheel for swivel motion therewith. A spring-load plunger interacting with the cam orients the direction of the front wheel to a desired swivel (angular) position when engaged. A pull link connecting the plunger and the slider is tensioned when the stroller is deployed, preventing the plunger from contacting the cam, thereby allowing the front wheel to swivel freely. Folding the stroller causes movement of the slider which allows the pull link to release tension on the plunger so that it interacts with the cam, forcing the front wheel to the desired position. The front wheel position mechanism can be used on a single front wheel or on strollers having right and left side front wheels.
Additional advantages and objectives of various aspects and embodiments of the present invention are discussed below.
The advantages of this invention will be apparent upon consideration of the following detailed disclosure of the invention, especially when taken in conjunction with the accompanying drawings wherein:
Many of the fastening, connection, processes and other means and components utilized in this invention are widely known and used in the field of the invention described, and their exact nature or type is not necessary for an understanding and use of the invention by a person skilled in the art, and they will not therefore be discussed in significant detail. Also, any reference herein to the terms “forward” or “rearward,” “up” or “down,” “right” or “left,” or “top” or “bottom” are used as a matter of mere convenience, and are determined as the stroller would normally be pushed by a user across the floor or a similarly level surface while in an operating position. Furthermore, the various components shown or described herein for any specific application of this invention can be varied or altered as anticipated by this invention and the practice of a specific application of any element may already be widely known or used in the art by persons skilled in the art and each will likewise not therefore be discussed in significant detail.
Furthermore, when referring to the figures, like parts are numbered the same in all of the figures. Inclusion of an “R” or an “L” designation in conjunction with a reference number signifies an item shown on the right or left side of the stroller, respectively. Use of the reference number sans “R” or an “L” designation refers to the item generically without regard to a particular orientation.
Referring to
The folding mechanisms 20R, 20L synchronize movement of respective front legs 12, rear legs 14, and handle supports 16 as the stroller frame 10 is moved between the collapsed position (see
A second embodiment of the folding mechanism 20 is illustrated in
Referring to
A releasable latch 40, shown in
The sequence of stroller folding is illustrated in
Referring to
Referring to
When the stroller is in the deployed position, the actuator 71 is tensioned, preferably by movement of the folding mechanism 20, which withdraws the plunger 322 from contact with the ramped surface. In this configuration the front wheels 3 may rotate freely about the swivel axis 200. As the stroller is folded, the tension in actuator 71 is released allowing the plunger 322 to extend and contact the ramp surface 324. The force of the plunger 322 against the ramp surface 324 causes the swivel portion 312 to rotate until the plunger 322 is positioned in the low point 327 of the ramp surface. In the present embodiment, the low point 327 is angularly positioned so that the front wheels are swiveled 180 degrees from the generally forward orientation, though the apparatus could be used to position the front wheels to any desired orientation for folding through the position of the low point 327.
In
Naturally, the invention is not limited to the foregoing embodiments, but it can also be modified in many ways without departing from the basic concepts. It will be understood that changes in the details, materials, steps and arrangements of parts which have been described and illustrated to explain the nature of the invention will occur to and may be made by those skilled in the art upon a reading of this disclosure within the principles and scope of the invention. The foregoing description illustrates the preferred embodiment of the invention; however, concepts, as based upon the description, may be employed in other embodiments without departing from the scope of the invention.
This application claims the benefit of priority of U.S. Provisional Application 61/818,609, filed May 2, 2013.
Number | Name | Date | Kind |
---|---|---|---|
4637093 | Kassai | Jan 1987 | A |
4649596 | Kassai | Mar 1987 | A |
4706986 | Kassai | Nov 1987 | A |
4732406 | Kassai | Mar 1988 | A |
4746140 | Kassai | May 1988 | A |
4779304 | Kassai | Oct 1988 | A |
4805259 | Kassai | Feb 1989 | A |
4845805 | Kassai | Jul 1989 | A |
5517718 | Eichhorn | May 1996 | A |
6682090 | Chen | Jan 2004 | B2 |
6910708 | Sack et al. | Jun 2005 | B2 |
6964083 | Nagai et al. | Nov 2005 | B2 |
7213818 | Chang | May 2007 | B2 |
7258353 | Liao | Aug 2007 | B2 |
7422230 | Chuan | Sep 2008 | B2 |
8297643 | Funakura | Oct 2012 | B2 |
8328226 | Xu-Hui et al. | Dec 2012 | B2 |
8448976 | Funakura | May 2013 | B2 |
8807587 | Funakura | Aug 2014 | B2 |
20060237949 | Hou et al. | Oct 2006 | A1 |
20070164538 | Yeh | Jul 2007 | A1 |
20110074124 | Schnarr et al. | Mar 2011 | A1 |
20130240577 | Li et al. | Sep 2013 | A1 |
Number | Date | Country | |
---|---|---|---|
20140327233 A1 | Nov 2014 | US |
Number | Date | Country | |
---|---|---|---|
61818609 | May 2013 | US |