The present invention relates toys, specifically to launchable toys and systems for launching them.
There are several hand launched toys in existence today. Some are launched with an elastic launcher, by attaching the elastic launcher to the toy with a hook, pulling back the toy to strain the elastic launcher, then releasing the toy. All of the existing toys are made of solid shaft construction usually either plastic or foam with some sort of soft nose cone on the end. All of these toys share the same problems:
A need therefore exists for larger toys that can be hand thrown or launched with both great performance and inherent safety.
An inflatable launchable toy system comprising an inflatable launchable toy and a launcher. The inflatable launchable toy comprises an outer fabric layer with an internal cavity that houses an inflatable bladder and a foam nose cone. The outer fabric layer establishes the geometry for the launchable toy and the added inflatable bladder when inflated, gives shape to the launchable toy. The fabric outer layer combined with the inflatable bladder and the foam nose cone makes the launchable toy incredibly safe. Because the inflatable bladder gives shape to the launchable toy, the launchable toy can be made very light. This reduces the force when the inflatable launchable toy impacts objects, making the launchable toy very safe. Additionally, the construction of the launchable toy allows for larger embodiments which allows the launchable toy to have a larger leading-edge which will easily meet the leading-edge diameter restrictions as established by the CPSC. Additionally, the inflatable bladder inside the fabric outer layer absorbs shock and softens the impact of the device.
The launchable toy can be either hand thrown or launched with a standard handheld launcher using a launching strap system integrated into the inflatable launchable toy. The inflatable launchable toy has a launching strap system coupled to the outer fabric layer, the launching strap system including a launching strap and a launching hook. The launching strap having a first end portion at one end, a second end portion at an opposite end and a middle portion, where the launching hook is coupled to the first end portion of the launching strap, where the second end portion of the launching strap has a strap handle. This unique launching system provides the ability to apply an incredible amount of force to the device without harming the integrity of the device.
The accompanying drawings, which are incorporated into and constitute a part of this specification, illustrate one or more embodiments of the inventive subject matter and, together with the detailed description, serve to explain the principles and implementations thereof. Like reference numbers and characters are used to designate identical, corresponding, or similar components in different figures. The figures associated with this disclosure typically are not drawn with dimensional accuracy to scale, i.e., such drawings have been drafted with a focus on clarity of viewing and understanding rather than dimensional accuracy.
In describing the one or more representative embodiments of the inventive subject matter, use of directional terms such as “upper,” “lower,” “above,” “below”, “in front of” “behind,” etc., unless otherwise stated, are intended to describe the positions and/or orientations of various components relative to one another as shown in the various Figures and are not intended to impose limitations on any position and/or orientation of any component relative to any reference point external to the Figures.
In the interest of clarity, not all of the routine features of representative embodiments of the inventive subject matter described herein are shown and described. It will, of course, be appreciated that in the development of any such actual implementation, numerous implementation-specific decisions must be made in order to achieve specific goals, such as compliance with application and business-related constraints, and that these specific goals will vary from one implementation to another and from one developer to another. Those skilled in the art will recognize that numerous modifications and changes may be made to the representative embodiment(s) without departing from the scope of the claims. It will, of course, be understood that modifications of the representative embodiments will be apparent to those skilled in the art, some being apparent only after study, others being matters of routine mechanical, chemical and electronic design. No single feature, function or property of the representative embodiments is essential. In addition to the embodiments described, other embodiments of the inventive subject matter are possible, their specific designs depending upon the particular application. Any embodiment described as “comprising” includes the case of “consisting only of.” The scope of the inventive subject matter should not be limited by the particular embodiments herein described but should be defined only by the appended claims and equivalents thereof.
The inflatable bladder 106 is heat sealed polyurethane (PU) or similar material that is flexible and durable. This material will stretch and return to shape. The inflatable bladder 106 is constructed by combining two thin sheets of polyurethane plastic and heat sealing into the shape desired. A hole is then cut and the valve 108 is glued in. The inflatable bladder 106 can be a general shape such as a square or rectangle. The inflatable bladder 106 can be larger than the internal cavity 112 of the outer fabric layer 110. When the inflatable bladder 106 is inflated, the inflatable bladder 106 will expand to fill the entire internal cavity 112 of the outer fabric layer 110 and give the inflatable launchable toy 102 a shape intended by its designer. In the embodiment of a rocket, the inflatable bladder 106 fills the shaft. In the case of a plane, the inflatable bladder 106 may fill the wings and plane body. In the case of a figure (such as a superhero), the inflatable bladder 106 would fill the body of the figure. The inflatable bladder 106 is independent of the outer fabric layer 110 and can be easily and separately replaced.
The foam nose cone 116 comprises foam or a soft foam like material. The foam nose cone 116 acts as both a weighted front end for flight and a soft leading edge for safety. The foam nose cone 116 is positioned inside the internal cavity 112 of the outer fabric layer 110 in front of the inflatable bladder 106. In some alternative embodiments, the foam nose cone 116 may be on the outside of the outer fabric layer 110. In either case the foam nose cone 116 is attached to the outer fabric layer 110.
Furthermore, a weight 118 can be added in or under the foam nose cone 116 to provide additional weight for improved flight stability and performance. This weight 118 is typically either metal or some sort of rubber material.
The representative embodiment inflatable launchable toy 102 also has a plurality of fins 120. These fins 120 are typically light, stiff material that is either sewn into the outer fabric layer 110 or attached to the outer fabric layer 110. In either case, the fins 102 become part of the outer fabric layer 110.
The launching strap system 122 is attached to the outer fabric layer 110 of the device, typically by sewing or gluing. Most of the launching strap 126 is attached to the outer fabric layer 110, which distributes the launching forces transmitted from the launching strap system 122 to the outer fabric layer 110 during launch. At least a portion of the launching hook 124 is covered by a hood 114. The hood 114 is attached to the outer fabric layer 110 forward of the launching hook 124. The launching hook 124 is on the exact opposite side of the representative embodiment inflatable launchable toy 102 from the valve 108, as are the hoods 114 covering them. This arrangement provides weight balance and aerodynamic symmetry to the representative embodiment inflatable launchable toy 102.
The intended use has a user grabbing the launcher handle 132 with one hand and attaches the launching elastic 134 to the launching hook 124. The user then pulls from the strap handle 128 of the launching strap system 122, applying tension to the launching elastic 134 and the launching strap 126. After the launching hook 124 becomes stiff and secure, further tension cause the launching elastic 134 to stretch and store elastic energy. All of the tension force applied to the launching elastic 134 is transmitted through the launching strap system 122 rather than the outer fabric layer 110 or inflatable bladder 106. The optimal length of the launching elastic 134 at full strain is the distance between the hands of a typical user where one hand is grabbing the strap handle 128 of the launching strap system 122 and the other hand is grabbing the launcher 130.
The length of the launching strap system 122 is independent of the size of the inflatable launchable toy 102. This allows a large inflatable launchable toy 102 (e.g. a 3-foot-tall rocket) to be hand launched with ease.
This application claims the benefit of U.S. Provisional Application No. 62/660,762, filed 2018 Apr. 20, incorporated herein by reference.
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Number | Date | Country | |
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62660762 | Apr 2018 | US |