MULTI-SPORT INFLATABLE CAGE/STRUCTURE
The disclosure generally relates to a system for providing a structure for multi-sport practice and/or training activities. The system can include one or more modules comprising a series of inflatable sections and one or more netting panels releasably coupled to the sections of the one or more inflatable modules. Upon inflation of the inflatable sections, the one or more modules can be erected into a substantially self-supporting structure, which can define an interior practice space configured for performing selected sports practice and/or other training activities therein.
The present patent application is a formalization of previously filed, co-pending U.S. Provisional Patent Application Ser. No. 61/990,279, filed May 8, 2014 by the inventors named in the present application. This patent application claims the benefit of the filing date of this cited Provisional Patent Application according to the statutes and rules governing provisional patent applications, particularly 35 U.S.C. §119(e), and 37 C.F.R. §§1.78(a)(3) and 1.78(a)(4). The specification and drawings of the Provisional Patent Application referenced above are specifically incorporated herein by reference as if set forth in their entirety.
FIELD OF DISCLOSUREThe present disclosure generally relates to an air-sealed, multi-sport practice system, and more specifically, to an inflatable enclosure system for use in practice of multiple, different sports or other activities.
BACKGROUND OF INVENTIONWith the emphasis on fitness and sports today, more and more children and adults are playing sports such as baseball, softball, tennis, golf, lacrosse, soccer, etc. However, with such increased participation has come an increased demand and usage for parks, and practice spaces and structures, which often are limited in their availability. Also, due to size and use constraints, many practice facilities generally are formed as substantially permanent structures that typically cannot be moved and/or easily reconfigured for uses other than their intended purpose. Such permanent structures further typically occupy large amounts of space and are frequently subjected to vandalism when unattended. In addition, in places such as inner city public schools with limited playground/gym space, having multiple, large permanent practice structures are not practical or economical to maintain, thus offering few options for kids to practice different sports. Currently there do exist portable cages, including metal frame cages which, however, generally are very heavy and can be difficult to transport and assemble; and inflatable practice structures that, while potentially easier to erect, generally lack stability and are too small for multi-sport use.
Consequently, there exists a need for a practice enclosure or system that is highly configurable for multi-sport uses, which is portable and requires minimal storage space, and which further addresses the foregoing and other related and unrelated problems in the art.
SUMMARY OF DISCLOSUREIn one embodiment, the present disclosure generally relates to an enclosure system utilizing one or more air-sealed, inflatable modules or practice structures supporting and/or enabling practice of numerous different sports including, but not limited to: baseball, softball, lacrosse, golf, hockey, field hockey, soccer, football, tennis and cricket. The modules can be of several different sizes and configured for a desired use/sport, including being fitted with adjustable and reconfigurable interior netting structures and/or other accessory panels, as well as allowing for netting or accessory panels to be mounted at various locations. Furthermore, each module can be interconnected with additional modules to create a variable length structure accommodating multiple applications, including enabling use by multiple users practicing different sports. Modules can be inflated and put to use preferably within about 5-10 minutes, depending on size requirements, and then can be deflated and stored in a generally similar timeframe. The compact nature of the deflated modules allows users to transport and store the modules with minimal footprint and storage requirements.
The module structures typically can be constructed of a high strength material that can be substantially sealed to prevent air leakage, and which can be substantially resistant to impact, puncture, heat and UV-rays. For example, a heavy duty PVC impregnated material is one type of material that can be used, although other materials also can be used, with the modules being fabricated with a series of cylindrical beams, which can be connected or affixed together to form the module structures themselves. The joints within the structure can be formed using heat-welded or other durable but flexible seams, which form a strong, durable and substantially air tight bond that allows use in both indoor and outdoor environments. The modules thus generally are substantially completely airtight and sealed so that when inflated, they will be provided with an inherent rigidity and structural integrity, and a desired weight balance as needed to support the netting and accessories within the system without necessarily requiring additional, separate supports. However the modules also can be provided with connector straps for tie downs and/or weighted bags or containers for added security during certain weather conditions. As such, each module can be inflated, put to use, and stored, with minimal configuration and assembly.
Additional features, advantages, and embodiments of the disclosure may be set forth or apparent from consideration of the following detailed description, drawings, and claims. Moreover, it is to be understood that both the foregoing summary of the disclosure and the following detailed description are exemplary and intended to provide further explanation without limiting the scope of the disclosure as claimed.
The accompanying drawings, which are included to provide a further understanding of the invention, are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the detailed description, serve to explain the principles of the invention. No attempt is made to show structural details of the invention in more detail than may be necessary for a fundamental understanding of the invention and the various ways in which it may be practiced. In addition, it will be understood by those skilled in the art that the embodiments of the invention and the various features thereof discussed below are explained in detail with reference to non-limiting embodiments and examples that are described and/or illustrated in the accompanying drawings. It should be noted that the features illustrated in the drawings are not necessarily drawn to scale, and features of one embodiment may be employed with other embodiments as the skilled artisan would recognize, even if not explicitly stated herein. Descriptions of certain components and processing techniques further may be omitted so as to not unnecessarily obscure the embodiments of the invention.
Referring now to the drawings in which like numerals indicate like parts throughout the several views,
In one illustrative embodiment, the module 5 can include a top section 6, a front section 7, a rear section 9, a first side 8, a second side 10 defined by tubular module structures (e.g., beams) 11, and generally defining, for example, a three dimensional horseshow, semicircular, square, oval, and/or rectangular shape and/or any other shape suitable for use in a multi-sport practice system and/or cage/structure. Each of the module structures 11 generally will be constructed of a heavy duty, substantially air-tight material, which can be highly durable, as well as substantially puncture and weather resistant. For example, each of the module structures 11 can be constructed from a PVC impregnated material fabricated into cylindrical beams.
As shown in FIGS. 1 and 2A-2C, in one embodiment the front section 7 of the module may comprise five beams 13a, 15a, 17a, 19a, 21a. Beams 13a and 21a can be parallel and extend vertically from the ground; and beams 15a and 19a can be connected to 13a and 21a at joints 23a, 25a, respectively, and angled 135 degrees from beams 13a and 21a; beam 17a generally can be parallel to the ground and connected to beams 15a and 19a at joints 27a, 29a. In the illustrated embodiment, the features of the rear section 9 of the module can include beams 13b, 15b, 17b, 19b, 21b and the joints 23b, 25b, 27b, 29b that can generally be a mirror-image of the corresponding beams and joints of the front section 7. Corresponding components (e.g., beams, joints, attachment features, etc.) have been designated by corresponding reference numbers that differ by the “a” or “b” suffix, with the “a” components corresponding to the front section 7 and the “b” components corresponding to the rear section 9 of the module 5.
In addition, the front section 7 and rear section 9 may have a width “w” of about 204 in. and a height “h” of about 144 in. The height “h” and width “w” of the front section 7 may correspond to the overall height “h” and width “w” of the module 5. Further, the beams 13a/b, 15a/b, 17a/b, 19a/b, 21a/b may each have a length between about 60 in. to about 100 in., which, for example, may include between about 80 in. to about 90 in. In the illustrated embodiment the length of beams 13a/b and 21a/b can be about 82 in. and beams 17a/b can be about 88 in. The beams further can have a radius of about 6 in. However, the radius, length, angle, size and amount of beams are not limited to these specific dimensions, and, as understood from the disclosure, may be more or less depending on the application of the system.
The front and rear sections 7/9 can be connected to each other by beams 41, 43, 45, 47, 49, 51 which can be perpendicular to the front and rear sections 7/9 at joints 53a, 23a, 25a, 27a, 29a, 55a and 53b, 23b, 25b, 27b, 29b, 55b, respectively. In one embodiment, each of the beams 13a, 15a, 17a, 19a, 21a, 13b, 15b, 17b, 19b, 21b, 41, 43, 45, 47, 49, 51 and the joints 53a, 23a, 25a, 27a, 29a, 55a, 53b, 23b, 25b, 27b, 29b, 55b may be fabricated using highly durable heat-welded seam structures, for example, 1-2 in. seams. The seams may form a substantially completely airtight and sealed structure that, when inflated, provides rigidity and structural integrity needed to support the accessories within the system 1. The seams further may be larger or smaller without departing from the spirit of the disclosure, for example, the seams may be between about 1½ in. to about 4 in. without departing from the present disclosure.
As shown in
As shown in
In addition, according to the embodiments of the disclosure, the system 1 can include one or more module netting panels or main netting panels 67 connected/attached to the one or more modules 5. Such netting panels 67 can have accessory panel seams 63 fabricated into the netting panels, and these accessory panel seams 63 may be releaseably attached to the modules 5 and 105 at various intervals, beginning at the front section 7 and/or rear section 9, and continuing at regular intervals.
In one embodiment, accessory panels 61 may be attached to the accessory panel seams 63 via zippers, Velcro®, and/or other attachment devices or means. The accessory panels 61 may include door panels 69, and other accessories for numerous sports training activities without departing from the disclosure.
In one embodiment, the main netting panel 67 and/or door panels 69 also may have an approximately 1½ to approximately 2½ in. floor seam 68, though greater or lesser dimensioned seams can also be provided. As illustrated in
Upon inflation/construction of the system 1, the weight of the modules 5 themselves generally can provide sufficient rigidity, stability and support to maintain the modules in position under most normal conditions of use. However, as needed, additional supports such as weights (i.e., sand bags, metal piping, adjustable cinching straps, etc.) may be added to the bottom of the main netting panel 67, for example, to or along the netting panels 67 to hold them in place or prevent substantial movement during certain weather conditions such as times of high wind. Weight may be placed on top of the main netting panel 67, sewn or interwoven into the accessory panels, or attached by any other means without departing from the disclosure.
As illustrated in
In one embodiment, a series of modules 5, 105 may be connected together by modular interconnects 87 (
In one embodiment, the main netting panels 67 may be interconnected by module interconnects 89 illustrated in
With one embodiment, the system 1 may have one or more pressure release valves within each module to regulate air-pressure, guard against overfilling, and prevent accidental rupturing when modules are used in areas with great variability in ambient temperature. The pressure release valves generally may be between about 1.5 to about 6 PSI, or more, and can be about 2 to about 3 PSI, for example. In another embodiment, two or more pressure release valves can be provided at desired intervals along the module.
According to embodiments of the present disclosure, the netting panels 67 can be laminated to, sewn to, interwoven with, and/or otherwise connected to one or more panel seams, as illustrated in
One exemplary method of use for the system is generally described below. First, the system positioned with the top section 6 facing up. An air pump can be attached to the module at one or more locations on the module structures and inflates the module to the desired pressure, for example, about 2-5 PSI. The netting panels and accessory panels may stay attached at all times, or be added before or after inflation depending on the preference and needs of the user. Weights may be attached as needed to the module at tie down locations 87, 91 to further anchor the module. Weight may also be placed on the netting to secure the netting in place. One or more modules may be connected by modular interconnects 87. To deflate the systems an air pump may be attached to the module at one or more locations and deflates the module. Once the module is fully broken down, the module may be rolled up and stored in a bag or other transport/storage means.
The foregoing description generally illustrates and describes various embodiments of the present invention. It will, however, be understood by those skilled in the art that various changes and modifications can be made to the above-discussed construction of the present invention without departing from the spirit and scope of the invention as disclosed herein, and that it is intended that all matter contained in the above description or shown in the accompanying drawings shall be interpreted as being illustrative, and not to be taken in a limiting sense. Furthermore, the scope of the present disclosure shall be construed to cover various modifications, combinations, additions, alterations, etc., above and to the above-described embodiments, which shall be considered to be within the scope of the present invention. Accordingly, various features and characteristics of the present invention as discussed herein may be selectively interchanged and applied to other illustrated and non-illustrated embodiments of the invention, and numerous variations, modifications, and additions further can be made thereto without departing from the spirit and scope of the present invention as set forth in the appended claims.
Claims
1. A system for providing a collapsible, portable structure for multi-sport practice and/or training activities, comprising:
- at least one module comprising a series of inflatable sections connected together; and
- at least one netting panel releasably coupled to at least one of the sections of the at least one inflatable module;
- wherein, upon inflation of the inflatable sections, the at least one module is erected into a substantially self-supporting structure defining an interior practice space, the interior practice space configured for performing one or more selected sports practice and/or training activities therein.
2. The system according to claim 1, wherein the at least one module is configured to be connected in series with one or more additional modules to create a variable length structure accommodating the one or more selected sports practice and/or training activities.
3. The system according to claim 2, wherein the at least one module is connected to the one or more additional modules by one or more module interconnects; and wherein the at least one netting panel is configured to be connectable to one or more additional netting panels of the one or more additional modules.
4. The system according to claim 1, wherein the at least one inflatable module comprises a horseshoe, semi-circular, square, oval, or rectangular shape, configured and dimensioned to facilitate the one or more selected sports practice and/or training activities.
5. The system according to claim 1, wherein the inflatable sections of at least one module each comprises a substantially airtight, puncture and weather resistant material.
6. The system according to claim 5, wherein the sections each comprise a polyvinyl chloride impregnated material fabricated into a substantially cylindrical beam.
7. The system according to claim 1, wherein the netting panel applies a tension to the at least one section of the module, and wherein altering a tension force of the at least one netting panel changes the rigidity of the at least one inflatable module.
8. The system according to claim 1, further comprising a door panel extending across an open end of the interior practice space, and wherein the door panel is configured to provide access therethrough and into the interior practice space.
9. The system according to claim 1, wherein the at least one netting panel comprises a mesh material having a substantially triangular, diamond, or square shaped pattern, and the at least one netting panel is configured to substantially reduce rebound of objects impacting the at least one netting panel during the one or more selected sports practice and/or training activities.
10. The system according to claim 1, wherein the inflatable sections of the at least one module comprise a front section, a rear section, a first side and a second side, each of the sections connected to each other, and further comprising netting panels releasably connected to each of the front and rear sections of the module.
11. The system according to claim 10, wherein the front and rear sections each comprise a plurality of spaced beams defining open areas therebetween and connected to each other at a plurality of joints, each having a width of between about 1.5 in. and about 4 in.
12. The system according to claim 11, wherein the plurality of joints comprise heat-welded seams.
13. The system according to claim 1, wherein at least one of the inflatable sections of the at least one module includes a pressure release valve.
14. The system according to claim 1, wherein the at least one netting panel comprises one or more panel seams, a netting material disposed between an inner fabric part and an outer fabric part, and having a reinforcing cording woven therein, one or more grommets attached to the inner fabric part, and one or more attachment devices attached to the outer fabric part.
15. A module for forming a multi-sport practice and/or training system, comprising:
- a front section, a rear section and at least one side section connected together and each including a plurality of inflatable structural beams; and
- one or more netting panels releasably mounted to at least one of the front, rear and side sections;
- wherein inflation of the front, rear and at least one side section defines a structural frame having sufficient rigidity and weight to enable the structural frame to be substantially self-supported and comprising an interior practice space configured for performing selected sports practice and/or training activities.
16. The module according to claim 15, further comprising tie down locations arranged along the front, rear and/or side sections and configured for attaching a weight to provide additional stability to the module.
17. The module according to claim 15, wherein the plurality of inflatable structural beams define open areas therebetween and are connected to each other at a plurality of joints, each joint comprising a heat-welded seam having a width of between about 1.5 in. to about 4 in.
18. The module according to claim 15, wherein the plurality of inflatable structural beams of the front and/or side section comprise at least four inflatable structural beams, including first and second inflatable structural beams disposed parallel to each other, third and fourth inflatable structural beams each disposed at an angle with respect to the first and second inflatable structural beams.
19. The module according to claim 15, further comprising a door panel connected to one of the front or rear sections, extending across an opening therein, wherein the door panel is configured to provide access therethrough and into the interior practice space, and comprises at least one rounded interior corner.
Type: Application
Filed: May 8, 2015
Publication Date: Nov 12, 2015
Inventors: Anthony Begando (Milton, GA), Sherri Burdeshaw (Canton, GA)
Application Number: 14/707,264