1. Field of the Invention
The invention relates to a bouncer and, more particularly, to a bouncer equipped with a reversible support member, such that the bouncer can rock on a plane or stand on the plane in static state.
2. Description of the Prior Art
For a parent or other care giver, a bouncer is a practical tool for securing infants. In general, the bouncer can be operated by the parent or care giver to safely bounce, rock and play.
A conventional bouncer usually has a bottom leg frame with single function. The bottom leg frame can only support the conventional bouncer on a plane in static state but cannot be operated to rock. Currently there are bouncers capable of rocking or bouncing on the market using kickstand that lock in place to maintain a stationary position. If a user wants to rock the bouncer, he or she has to release or detach the kickstand from the bouncer. The user operations therefore become inconvenient and the structure and assembly of the bouncer are complicated. Thus, it is necessary to design a bouncer that can rock, as well as bounce, and that is easy to operate.
An objective of the invention is to provide a bouncer equipped with a reversible support member, such that the bouncer can rock on a plane or stand on the plane in static state.
According to an embodiment, the bouncer of the invention comprises a seat, a first connecting member, a support member, and an engaging member. The first connecting member has a first end and a second end. The first end of the first connecting member is connected to the seat. The support member is rotatably connected to the second end of the first connecting member. The engaging member is movably disposed in the support member and capable of moving between a locked position and an unlocked position so as to selectively restrain the support member from rotating.
In this embodiment, the bouncer can comprise a driving member movably disposed on the support member. The driving member is capable of driving the engaging member to move from the locked position to the unlocked position. The bouncer can further comprise a second connecting member connecting the driving member and the engaging member. The bouncer can further comprise an axle member disposed in the support member and connected to the second end of the first connecting member. The engaging member is engaged with the axle member at the locked position so as to restrain the support member from rotating with respect to the axle member. The axle member has an engaging groove and the engaging member has an engaging portion. The engaging portion of the engaging member is engaged with the engaging groove of the axle member while the engaging member is located at the locked position. The bouncer can further comprise a sleeve disposed in the support member. The axle member is disposed in the sleeve, the sleeve is capable of rotating with respect to the axle member, and the engaging member is movably disposed in the sleeve. The bouncer can further comprise a resilient member disposed between the engaging member and an inner end of the sleeve. The resilient member provides an elastic force for forcing the engaging member to move toward the locked position. The bouncer can further comprise a cover disposed on one end of the support member. The second end of the first connecting member passes through the cover and is connected to the axle member. Furthermore, the support member has a flat surface and a cambered surface opposite to the flat surface. The bouncer can further comprise a skidproof member disposed on the flat surface of the support member. The cambered surface of the support member has a block portion formed thereon.
According to another embodiment, the bouncer of the invention comprises a seat, a connecting member, an axle member, and a support member. The connecting member has a first end and a second end. The first end of the connecting member is connected to the seat. The axle member is connected to the second end of the connecting member The axle member is movably disposed in the support member. The support member is capable of rotating with respect to the axle member. The axle member is capable of moving between a locked position and an unlocked position so as to restrain the support member from rotating.
In this embodiment, the bouncer can comprise a sleeve disposed in the support member. The axle member is movably disposed in the sleeve and engaged with the sleeve at the locked position so as to restrain the support member from rotating with respect to the axle member. The bouncer can further comprise a driving member rotatably disposed on the support member. The axle member has a first engaging groove and the driving member has a first engaging portion. The first engaging portion of the driving member is engaged with the first engaging groove of the axle member while the axle member is located at the locked position. The bouncer can further comprise a first resilient member disposed between the driving member and the sleeve. The sleeve has a second engaging groove and the axle member has a second engaging portion. The second engaging portion of the axle member is engaged with the second engaging groove of the sleeve while the axle member is located at the locked position. The bouncer can further comprise a second resilient member disposed between the axle member and the cover. The second resilient member provides an elastic force for forcing the axle member to move toward the locked position. The bouncer can further comprise a cover disposed on one end of the support member. The second end of the connecting member passes through the cover and is connected to the axle member. Furthermore, the support member has a flat surface and a cambered surface opposite to the flat surface. The bouncer can further comprise a skidproof member disposed on the flat surface of the support member.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
As shown in
The first connecting member 12 has a first end 120 and a second end 122. The first end 120 of the first connecting member 12 is connected to the seat 10, and the second end 122 is connected to the axle member 16, which is disposed in the support member 14. The first connecting member 12 has a bending portion 124 adjacent to the second end 122. Once the seat 10 is forced, the bending portion 124 of the first connecting member 12 will deform and then generate an elastic force to rebound the seat 10 upwardly, so that the seat 10 will bounce up and down.
The support member 14 has a flat surface 140 and a cambered surface 142 opposite to the flat surface 140. When the support member 14 is situated at the using state as shown in
As shown in
In this embodiment, there is an engaging groove 160 on the other end of the axle member 16, and the engaging member 18 has an engaging portion 180. When the engaging member 18 is located at the locked position as shown in
There is a sliding groove 144 on both sides of the support member 14. Each of the two driving members 20 is movably disposed in the sliding groove 144 of the support member 14 correspondingly. The driving member 20 can be operated by a user to slide within the sliding groove 144. Furthermore, the second connecting member 22 connects the two driving members 20 and the engaging member 18. When the user slides the driving members 20 disposed on both sides of the support member 14, the driving members 20 will drive the engaging member 18 through the second connecting member 22 to move from the locked position (as shown in
The resilient member 26 is disposed between the engaging member 18 and an inner end 240 of the sleeve 24. As shown in
As shown in
As shown in
The connecting member 52 has a first end 520 and a second end 522. The first end 520 of the connecting member 52 is connected to the seat 50, and the second end 522 is connected to the axle member 56, which is disposed in the support member 54. The connecting member 52 has a bending portion 524 adjacent to the second end 522. Once the seat 50 is forced, the bending portion 524 of the connecting member 52 will deform and then generate an elastic force to rebound the seat 50 upwardly, so that the seat 50 will bounce.
The support member 54 has a flat surface 540 and a cambered surface 542 opposite to the flat surface 540. When the support member 54 is situated at the using state as shown in
As shown in
In this embodiment, there is an engaging groove 544 formed on one side of the support member 54, and the engaging/sliding groove 58 is disposed in the engaging groove 544. The driving member 60 is pivotally connected to the engaging/sliding groove 58 at a pivot 600. A user can press a press portion 602 of the driving member 60 to make the driving member 60 rotate with respect to the engaging/sliding groove 58. Furthermore, the axle member 56 has a first engaging groove 560, and the driving member 60 has a first engaging portion 604. When the axle member 56 is located at the locked position as shown in
There is a second engaging groove 640 inside the sleeve 64, and the axle member 56 has a second engaging portion 562. When the axle member 56 is located at the locked position as shown in
The second resilient member 66 is disposed between the axle member 56 and the cover 70. As shown in
As shown in
Since the sleeve 64 is fixed in the support member 54, the support member 54 will rotate together with the sleeve 64, the engaging/sliding groove 58, the driving member 60, the first resilient member 62, the second resilient member 66, the skidproof member 68, and the cover 70. In other words, during the rotation of the support member 54, the axle member 56, the connecting member 52, and the fixing/connecting member 72 will stay in static state. After rotating the support member 54 with 180 degree, the second resilient member 66, which has been compressed early, will provide an elastic force for forcing the second engaging portion 562 of the axle member 56 into the second engaging groove 640 of the sleeve 64 while the user release the connecting member 52. Afterward, the first resilient member 62, which has been compressed early, will provide an elastic force for forcing the first engaging portion 604 of the driving member 60 into the first engaging groove 560 of the axle member 56 while the user release the driving member 60. Consequently, the support member 54 is locked. Since the support member 54 has the flat surface 540 and the cambered surface 542, the bouncer 5 can stand on the plane by the flat surface 540 or the cambered surface 542 after rotating the support member 54 so as to be situated at different using states (as shown in
Compared with the prior art, since the bouncer of the invention is equipped with a reversible support member, the bouncer can rock on a plane or stand on the plane in static state. Furthermore, the operation of changing the using state of the bouncer is very easy for the user.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
This application claims the benefits of U.S. Provisional Applications No. 61/127,935, which was filed on May 16, 2008 and No. 61/083,511, which was filed on Jul. 24, 2008, and are incorporated herein by reference.
Number | Date | Country | |
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61083511 | Jul 2008 | US | |
61127935 | May 2008 | US |