The present invention relates to a board associated with sports, recreational, or lifesaving activities, particularly to an enhanced sports board.
Existing sports, leisure, or rescue boards, such as various surfboards, snowboards, grass sleds, sandboards, and rescue boards, typically consist of a deck, a foam core, and a bottom plate. The deck supports a user, while the bottom board facilitates sliding on a sliding surface (such as water, snow, grass, or sand surfaces). The foam core is usually made of foam material. To enhance the overall structure of the sports board, one or more reinforcing ribs are often placed inside the core board. However, this configuration has its shortcomings and requires improvement. Additionally, the seam between the deck and bottom board is susceptible to water or fine impurities, presenting a challenge to address.
The present invention discloses a sports board comprising a foam core, a deck, and a bottom board. The deck is integrally bonded to the entire top surface of the foam core. The deck includes a first top foam skin, a second top foam skin, and a non-foamed plastic layer between them. The first top foam skin is positioned between the non-foamed plastic layer and the foam core. The bottom board is integrally bonded to the entire bottom surface of the foam core.
In one embodiment, the deck of the sports board in the present invention includes a non-foamed plastic film, and the non-foamed plastic film is integrally boned to the second top foam skin.
In one embodiment, the entire peripheral edge of the deck in the present invention extends to the peripheral surface of the foam core and is flush with the bottom surface of the foam core.
In one embodiment, the entire peripheral edge of the bottom board of the sports board in the present invention extends outward beyond the bottom surface of the foam core, and bends upward to allow the part of the bottom board near to the peripheral edge to be integrally boned to the deck.
In one embodiment, the bottom board of the sports board in the present invention includes a bottom foam skin and a non-foamed plastic plate, wherein the bottom foam skin is positioned between the non-foamed plastic plate and the foam core.
In one embodiment, the bottom board of the sports board in the present invention is only bonded to the bottom surface of the foam core, and is not boned to the peripheral surface of the foam core.
In one embodiment, the peripheral edge of the bottom board of the sports board in the present invention does not exceed half of the vertical width of the peripheral surface of the foam core.
The present invention also discloses another sports board, comprising a foam core, a deck, and a bottom board. The deck is integrally bonded to the entire top and peripheral surface of the foam core. The entire peripheral edge of the deck extends to the peripheral surface of the foam core and is flush with the bottom surface of the foam core. The bottom board is integrally bonded to the entire bottom surface of the foam core, wherein the entire peripheral edge of the bottom board extends outward beyond the bottom surface of the foam core and bends upward to allow the part of the bottom board near the peripheral edge to be integrally attached to the deck.
In one embodiment, the bottom board of the other sports board in the present invention includes a bottom foam skin and a non-foamed plastic plate, where the bottom foam skin is positioned between the non-foamed plastic plate and the foam core. The bottom board is only bonded to the bottom surface of the foam core and is not bonded to the peripheral surface of the foam core.
In one embodiment, the peripheral edge of the bottom board of the other sports board in the present invention does not exceed half of the vertical width of the peripheral surface of the foam core.
As shown in
The inner surface 20 of the deck 2 is integrally bonded to the entire top surface 11 of the foam core 1, and preferably further bonded to the entire peripheral surface 13 of the foam core board 1. As shown in
As shown in
Preferably, the deck 2 further includes a non-foamed plastic film 24. The non-foamed plastic film 24 can be made of polyethylene, with a thickness of approximately 0.1-0.2 mm and may feature a printed pattern. The non-foamed plastic film 24 is integrally bonded directly to the entire top surface of the second top foam skin 22 by heat pressing, without any adhesive layer or other layer between them.
In one embodiment, the non-foamed plastic layer 23 is positioned between the first top foam skin 21 and the second top foam skin 22, and they are bonded together by heat pressing, without any adhesive layer between them.
In one embodiment, the entire deck 2 is bonded to the foam core 1 by heat pressing, without any adhesive layer between them.
In one embodiment, the thickness of the first top foam skin 21 may be thinner than that of the second top foam skin 22.
In one embodiment, the first top foam skin 21 is softer and more easily compressed than the second top foam skin 22.
Since the non-foamed plastic layer 23 of the present invention can cover only the entire top surface 11 of the foam core 1 or both the entire top surface 11 and the entire peripheral surface 13 of the foam core 1, as illustrated in
As shown in
The non-foamed plastic plate 31, made of polyethylene with a thickness of approximately 0.3 to 1 mm, may feature printed patterns. It has a harder and more wear-resistant texture compared to the bottom foam skin 32, making it suitable for sliding on various surfaces such as water, snow, grass, or sand. Additionally, the thickness of the non-foamed plastic plate 31 is greater than that of the non-foamed plastic film 24 but less than that of the second top foam skin 22, and similar to the non-foamed plastic layer 23.
The bottom foam skin 32 is positioned between the non-foamed plastic plate 31 and the foam core 1, made of plastic foam materials such as expanded polyethylene (EPE), expanded polypropylene (EPP), and the like.
Moreover, before the bottom board 3 is bonded to the foam core 1, the thickness of the bottom foam skin 32 is approximately equivalent to that of the second top foam skin 22. However, after the bottom board 3 is bonded to the foam core 1, due to the pressure applied during bonding, the bottom foam skin 32 is compressed to be very thin, approximately only 0.3 to 0.5 mm (or even thinner). This results in the thickness of the bottom foam skin 32 being not only less than that of the second top foam skin 22 but also less than the thickness of the non-foamed plastic plate 31 and the non-foamed plastic layer 23.
As shown in
According to
| Number | Date | Country | Kind |
|---|---|---|---|
| 112151752 | Dec 2023 | TW | national |