The present disclosure relates generally to paddleboards and water sports involving paddleboards. More particularly the present disclosure relates to an inflatable stand up paddleboard, combined with a thermally insulated compartment for storage of food, drink, personal effects, and other items that may require storage in a temperature stabilized medium, that does not diminish the functionality or versatility of the inflatable board.
Stand up paddle boarding has existed as a water sport in one form or another for over a hundred years. Modern stand up paddle boarding in its current form and popularization began in the 1940s as an alternative to surfing. Over the years, different variations of stand up paddle boarding came into existence, such as stand up paddleboard touring, stand up paddleboard yoga, and stand up paddleboard fishing, to name a few.
Paddleboards come in many shapes and sizes and are comprised of different materials depending on the type of paddleboard and the height, weight, and skill of the user. Solid paddleboards typically have a foam core that is covered by one of many different materials, including, wood veneers, fiberglass, or carbon fiber. Epoxy resin can be added on top of those materials to create a stronger board.
Inflatable paddleboards are a popular option for paddleboarders looking for a more portable board that has the same functionality as solid boards. Inflatable stand up paddleboards are stable due to their core comprised of thousands of fine threads made from nylon or other analogous material that is covered by at least one layer of vinyl material, typically PVC. Inflatable paddleboards that can be deflated and rolled up small enough to fit into a bag or backpack for easy travel are known in the art. However, despite their versatility, inflatable stand up paddleboards lack storage options for their users.
Therefore, what is needed is an inflatable stand up paddleboard with a thermally insulated compartment having the following characteristics and benefits over the prior art.
The subject matter of this application may involve, in some cases, interrelated products, alternative solutions to a particular problem, and/or a plurality of different uses of a single system or article.
It is an object of the present invention to provide a convenient insulated storage option integrated into an inflatable stand up paddleboard. It is another object to provide this storage option without sacrificing the performance of the fully inflated paddleboard or the portability of the fully deflated paddleboard.
In one aspect of the present invention, an already existing and familiar structure, the fully inflated inflatable stand up paddleboard is utilized, and a thermally insulated storage compartment is combined with the structure. The combination is unique and there is no previous evidence of its design in the prior art. In some embodiments, the inflatable stand up paddleboard defines a void for holding the compartment, which, until it is secured to the paddleboard, is separate from the board. For example, the void may be within the front or back of the paddleboard, and the compartment can be secured optionally in either variation without sacrificing the integrity and functionality of the inflatable paddleboard. The compartment may be secured to the paddleboard using a urethane adhesive glue; however, it should be noted that the compartment may be secured to the paddleboard in any way that does not diminish the integrity or functionality of the paddleboard.
In another aspect of the present invention, the inflatable stand up paddleboard may be comprised of a core of a plurality of threads that may be made from nylon or other analogous material and covered by at least one layer of a vinyl, including, but not limited to PVC or PEVA. The plurality of threads join top and bottom of the board. When the board is fully inflated the threads confine the movement of the top and bottom of the paddleboard so that the board maintains its shape. The void generally does not contain any material. The inflatable stand up paddleboard may also have a valve for inflation and deflation. The standing side of the paddleboard may have a meshed foam or rubber material connected to the vinyl layer to allow the user better stability when standing and controlling the board. The bottom side of the paddleboard may have several fins to allow the user better control when steering the direction of the board. The paddleboard may also have a leash plug for attaching a leash to the board. The paddleboard may also have a handle attached to the standing side of the paddleboard to give the user ease of carrying the fully inflated board.
In yet another aspect of the present invention, the compartment may be comprised of a vinyl material, including, but not limited to, PVC or PEVA. The compartment may have an inside layer and an outside layer both comprised of the vinyl material. The compartment may contain thermally insulating material between both the inside layer and outside layer. The thermal insulation material may be a foam and/or aluminized sheet, comprised of any one of polystyrene, polyethylene, polyurethane, or reflective insulation; however, it should be noted that the insulating material may be any material capable of providing a temperature-controlled environment.
In another aspect of the present invention, the compartment may have a waterproof zipper on the outside layer for opening and closing the compartment.
In yet another aspect of the present invention, additional sheets of vinyl material, such as PVC or PEVA, may be secured to the inflatable paddleboard as a cover for the compartment within the void and a cover for the bottom of the void, respectively. These additional vinyl sheets may provide stability to both the top and bottom of the inflatable paddleboard.
In another aspect of the present invention, the vinyl sheets may be used to secure insulation between a sheet and the compartment, the sheet and space within the void not filled by the compartment, or both. In some embodiments the insulation used may be a foam comprised of any one of polystyrene, polyethylene, or polyurethane. In other embodiments the insulation used may be reflective insulation. The reflective insulation may be placed on the outside of the sheet or over the compartment without the sheet, depending on the embodiment.
It should be understood that the inflatable paddleboard, the void, the compartment, the vinyl sheets, and the varying types and amounts of insulation utilized in different embodiments may be of varying sizes and shapes without straying from the scope of the present invention.
The detailed description set forth below in connection with the appended drawings is intended as a description of presently preferred embodiments of the invention and does not represent the only forms in which the present disclosure may be constructed and/or utilized. The description sets forth the functions and the sequence of steps for constructing and operating the invention in connection with the illustrated embodiments.
Generally, the present disclosure concerns an inflatable stand up paddieboard with a thermally insulated compartment or storage receptacle configured to preserve both the versatility of a paddleboard that may be inflated or deflated and the convenience of portable storage. The embodiments described herein can allow the user to store food, drink, or other items in a temperature controlled environment within the paddleboard while not sacrificing the stability of the board in use, which provides for a better inflatable stand up paddleboard experience overall.
Inflatable stand up paddleboards are in some cases made of “drop stitch fabric” construction which are made from a core of a plurality of threads that may be made from nylon or other analogous material and that is covered by at least one layer of a vinyl material. The plurality of threads join top and bottom of the board. When the board is fully inflated the threads confine the movement of the top and bottom of the paddleboard so that the board maintains its shape. Inflatable stand up paddleboards may vary in size, shape, and color for various performance and aesthetic reasons.
The combination between the inflatable stand up paddleboard and the insulated compartment or storage recetacle is accomplished generally by creating the void within either the front or back of an inflatable stand up paddleboard. The void is non-pressurized and is completely separated from the pressurized air within the body of the inflatable board by interior walls, so that the storage receptacle extends and is secured to the paddleboard. In some embodiments, the compartment is made from a vinyl material and may be opened and closed by a waterproof zipper; however, it should be understood that any material that may be secured to an inflatable paddleboard and any structure for opening and closing the compartment that yields a waterproof compartment may be utilized.
In some embodiments, the compartment has an outside layer and an inside layer, where the outside layer has a larger surface area than the surface area of the inside layer and is connected to an essentially flat surface made from the same material as both inside and outside layers. Both the outside layer connected to the flat surface and the inside layer are referred to collectively as the “compartment.” Thermal insulation may be secured between the portion of the outside layer that is not the essentially flat surface and the inside layer. In the preferred embodiments, the thermal insulation is a foam layer comprised of at least one of polystyrene, polyethylene, or polyurethane; however, the insulation may be comprised of any material capable of yielding a temperature-controlled compartment. The thickness and shape of the insulation layer depends on the space between the inside layer and outside layer of the compartment and the shape of the compartment, respectively. The insulation between the two layers of the compartment reduces the rate of heat transfer between food, drink, and other items stored within the compartment and the outside environment.
In other embodiments, vinyl sheets, that may be comprised of PVC or PEVA, are secured to the inflatable paddleboard on both the bottom side and the standing side in a way that covers the void created for receiving the compartment. Additional insulation may be placed between the top sheet and the bottom sheet, simultaneously or alternatively, depending on the embodiment. In the preferred embodiments, the additional insulation is a foam insulation layer comprised of at least one of polystyrene, polyethylene, or polyurethane; however, the insulation may be any material capable of decreasing the rate of heat transfer between the compartment and the outside environment. For example, in some embodiments, reflective insulation may be utilized.
Turning now to
Finally,
While several variations of the present disclosure have been illustrated by way of example in preferred or particular embodiments, it is apparent that further embodiments could be developed within the spirit and scope of the present disclosure, or the inventive concept thereof. However, it is to be expressly understood that such modifications and adaptations are within the spirit and scope of the present disclosure, and are inclusive, but not limited to the following appended claims as set forth below.
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