This invention relates to powered watercraft and is concerned especially with powered watercraft for use by an individual on water for recreation, lifeguard and rescue services, and/or other purposes.
According to the present invention there is provided a powered watercraft which is for the support and surface-transport on water of a user lying prone on the watercraft, and which has a hull that comprises a moulded shell of expanded plastics material, wherein the moulded plastics shell is strengthened by a framework which extends lengthwise of the hull and which has two arms that extend laterally either side of the hull with hand-grips for gripping by the prone user in steering the watercraft at least in part by shift of his/her weight on the craft.
The moulded plastics material may be expanded polypropylene or other dense foam material.
The watercraft may be powered by a motor-driven propeller mounted within a duct on the underside of the hull. The motor may be electrically powered from a re-chargeable or other battery carried by the watercraft, with speed of the motor regulated via one or more controls operated from the hand-grips.
A dual-purpose powered watercraft according to the invention will now be described, by way of example, with reference to the accompanying drawings, in which:
Referring to
The motor 5 is powered by a battery (not shown) and is controlled by the user through hand operation of two sets of lever-mechanisms 9 (
Steering of the craft 1 is achieved by the user while lying prone on the upper surface 2 holding the hand-grips 10, moving his/her weight between right- and left-hand sides of the craft 1 according to whether turning is to be to the right or to the left. Additional facility for steering may be included.
Recesses 15 in the upper surface 2 of the craft 1 enable it to be readily carried by hand when tipped onto one or other of its sides, and a handle recess 19 (see
Referring now also especially to
An aluminium framework or skeleton 27 comprising longitudinal stretchers 28 and laterally-extending arms 29 are received within conformal grooving 30 of the cover sheet 24 to be tightly retained in the grooving 30 flush with the upper surface of the sheet 24. This affords longitudinal and lateral structural strengthening to the shell 20 additional to that provided by the polycarbonate sheet 24. It is to the free ends of the laterally-extending arms 29 of the aluminium skeleton 27 that the handgrips 10 and the lever-mechanisms 9 are securely attached.
The skeleton 27 incorporates an aluminium, open-top box 31 at its rear end that fits closely within the cavity 26 to house electronic controls (not shown) for the electric motor 5. The battery, which may be re-charged via a socket 32 on the right-hand side of the craft 1, or otherwise, powers the electric motor 5 and an LED lighting unit 33 (see
The box 31 is sealed watertight using a top-cover 34 over the electronic controls for the motor 5, and a plate 35 having top-surface mouldings matched to the configuration of the skeleton 27, is closed over the cover 34.
The motor 5 and the shrouded propeller 4 driven directly by it, are mounted on the underside of the shell 20 within the duct 7 which is defined between the underside of the shell 20 and the cowling 8 when fitted. Metal plates 36 and 37 are fitted to opposite ends of the cowling 8 for strengthening purposes and for protecting the cowling 8 when there is grounding of the craft 1 during use.
Fitting of the cowling 8 to the hull 3 to establish the duct 7 is onto bowed metal frames 38 and 39 that are located at the inlet 12 and outlet 14 respectively of the duct 7. The frame 38 provides support for protective metal slats 40 of the inlet 12, whereas the frame 39 provides support for protective metal slats 41 of the outlet 14.
The flow of water through the duct 7 between the inlet 12 and outlet 14 is effective to cool the motor 5, and also enables heat generated by the motor-control electronics within the aluminium box 31 to be dissipated from the bottom of the box 31 via a heat-sink plate 42 (see
A bracket 43 is secured centrally at the rear of the shell 20 for use as a convenient towing-attachment point.
Use of moulded expanded polypropylene for the shell 20 of the hull 3 and cowling 8 affords the craft 1 with durability and with light weight together with a degree of resilience or ‘give’ that reduces the likelihood of injury in the event of collision with swimmers and objects in the water. Areas of the hull 3 where strength is required, in particular, for example at the hand-grips 10, and at the mounting of the propulsion unit within the duct 7, are strengthened by the aluminium skeleton 27, namely via the stretchers 28, the arms 29 to which the grips 10 are attached, and via the box 31 located in the cavity 26 directly above the mounting of the propeller 4 and its motor 5.
The direct coupling of the propeller 4 to the motor 5 has the advantage of avoiding gearing between them and readily enables the bearings of the coupling to be sealed from being immersed in water; this materially reduces the likelihood of corrosion resulting from galvanic action in particular between the aluminium of the propeller 4 and steel or iron of the shaft of the motor 5 on which the propeller 4 is mounted.
Number | Date | Country | Kind |
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1610960.5 | Jun 2016 | GB | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2017/065612 | 6/23/2017 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2017/220811 | 12/28/2017 | WO | A |
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5158034 | Hsu | Oct 1992 | A |
5303666 | DeSantis | Apr 1994 | A |
6152062 | Hattori | Nov 2000 | A |
6461204 | Takura et al. | Oct 2002 | B1 |
6682372 | Grimmeisen | Jan 2004 | B2 |
20010025594 | Daniels | Oct 2001 | A1 |
20150353175 | Walpurgis | Dec 2015 | A1 |
Number | Date | Country |
---|---|---|
0162347 | Aug 2001 | WO |
2014111232 | Jul 2014 | WO |
Entry |
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International Search Report Corresponding to PCT/EP2017/065612 dated Oct. 2, 2017. |
Written Opinion Corresponding to PCT/EP2017/065612 dated Oct. 2, 2017. |
Number | Date | Country | |
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20190202533 A1 | Jul 2019 | US |