The present invention relates to a gliding board for sports activities on water, on snow, on natural lawn and artificial lawn, sand and the like.
Such gliding boards are known as sail-less surfboards for surf-riding, as snowboards on snow and as so-called wake boards and serve to cause a movement relative to the medium therebelow, with the sportsman standing on it utilizing the water waves or snow, grass and sand slopes. What must be regarded to be a disadvantage of these devices is the fact that such gliding movements are limited in terms of their duration, either because the water wave runs ashore and ends or because the slope or dune inclinations end in the bottom of a valley.
The present invention is now intended to provide a gliding board of a kind similar to a surfing or snowboard that permits also a longer motion even on flat media.
According to the present invention, hence a gliding board is expediently provided wherein a board-like board body is provided on which the athlete stands like on a surfboard or a snowboard, possible using loops or straps. The propulsion is generated by means of a drive motor that produces either a driving jet or a driving rotating movement for a propeller or wheels or chains. This drive motor has a flat design and is disposed in the rear part of the board body; in accordance with the invention, it is supported for movement so that the direction of movement of the gliding board can be changed.
A rotating means, preferably in the form of a turntable with rotational stops is provided for the mobile support of the drive motor that is integrated into the board body. According to an alternative, the drive motor may also be adapted for being shifted into the board body, also via predetermined paths of movement, in particular along at least one control cam, while it may move on rollers or slides, respectively. This mobility of the drive motor is expediently supported or induced by a change of the direction of movement of the gliding board, which is caused by the person standing on the gliding board.
The envisaged tank is preferably made of a synthetic material and contains carbon fibres. As a result, it can be shaped extremely easily with a high strength in a form that acts as structural element of the gliding board. The tank can be accommodated in an extraordinarily flat form or with a wide area in the board body in such a way that the thickness of the board body can be kept as small as possible and that the tank cannot be recognised from the outside, with the exception of a tank inlet and an optical or acoustical liquid-level indicator.
According to a further embodiment of the invention, a remote controller is provided for the drive motor, preferably a wireless control system (Blue tooth element) that consists preferably of a hand-held part with starter button, speed adjustment and a hand strap.
For driving, a drive motor of flat design is provided as an essential novelty, which is integrated, as far as this is possible, into the rear part of the board body. This drive motor is preferably designed as a compressed-air motor, with the tank being a compressed-air reservoir. This compressed-air motor presents the advantages that it has an extraordinarily low weight and an extremely small configuration and that its operation is extremely compatible in ecologic terms. It comprises at least two pistons in opposition, like a boxer engine, and in operation of the drive motor, which may also be referred to as compressed-air engine, a piston aspirates air and compresses it in a spherical chamber of a volume of 32 cm3, for instance, to a pressure of roughly 20 bar at 400° C. When cold compressed air of 40 bar, for example, is now injected from the tank into this spherical chamber an abrupt expansion of the air takes place, which expands then in a second piston and presses the latter towards a crankshaft. The air is subsequently passed via an exhaust pipe to the outside while the first piston causes already compression in the first chamber again, thus repeating the cycle. The driving force is then transmitted from the simultaneously rotating crankshaft to an enclosed driving propeller provided either on the bottom side or in a recess in the underside of the board body. As an alternative, the rotational driving force may also act on driving wheels, rollers, chains, or similar elements.
In the following, one embodiment of the invention will be explained in more details with reference to the attached drawing wherein:
In this embodiment, the drive motor is configured as a compressed-air motor whilst the tank 13 is a compressed-air reservoir that is capable of supplying the drive motor 12 in a controlled manner with air, for example, at a pressure of 40 bar.
The drive motor is movably supported in and integrated into the rear part of the board body 11 for a change of the direction of movement of the gliding board 10. In the illustrated embodiment, a schematically roughly indicated turntable 16 is provided as means for shifting the drive motor 12, which turntable is connected to the drive motor 12, with the pipes 14 and 15 being elastic tubes of a sufficient length so as to be able to follow the rotational movements of the turntable up to a predetermined stop. The turntable 16 may also be designed without connection to the drive motor 12. It is inserted into the surface of the board or gliding board 10, respectively, to be flush with the surface, and presents a smooth surface. It enables the user to change the direction (from the windward side to the lee side=180°), with the user standing in the width-wise direction with and without foot straps.
The reference numeral 17 roughly indicates an exhaust pipe whereas the region 18 is provided for driving means not illustrated here, driven by the drive motor 12 and serving to propel the gliding board on the respective medium.
As is shown in
The novel gliding board is extraordinarily flexible in terms of the shape in which it may be formed, is of an extremely light weight due to the tank containing nothing but air and on account of the envisaged compressed-air drive system, and can be designed and handled in a reliable and safe manner, with provisions being made for simple checking of the liquid-level in the tank 13 by means of a liquid-level indicator roughly indicated by the reference numeral 25.
The hand-held piece 22 can moreover be designed in such a way that the speed control means 24 automatically switches the drive motor off when the compressed hand-held piece is released, so that not only an extraordinarily high safety and reliability in operation but also economy in consumption of the tank charge can be achieved.
Number | Date | Country | Kind |
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101 22 515 | May 2001 | DE | national |
101 22 781 | May 2001 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP02/05193 | 5/10/2002 | WO | 00 | 5/26/2004 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO02/089930 | 11/14/2002 | WO | A |
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Number | Date | Country | |
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20040231578 A1 | Nov 2004 | US |