EP3081477A1 - Dispositif de pose d'un systeme de propulsion sur un bateau - Google Patents

Dispositif de pose d'un systeme de propulsion sur un bateau Download PDF

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Publication number
EP3081477A1
EP3081477A1 EP16164828.2A EP16164828A EP3081477A1 EP 3081477 A1 EP3081477 A1 EP 3081477A1 EP 16164828 A EP16164828 A EP 16164828A EP 3081477 A1 EP3081477 A1 EP 3081477A1
Authority
EP
European Patent Office
Prior art keywords
leg
paddle board
belt
legs
stand
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP16164828.2A
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German (de)
English (en)
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EP3081477B1 (fr
Inventor
Harro Zufall
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Individual
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Individual
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Publication date
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Publication of EP3081477A1 publication Critical patent/EP3081477A1/fr
Application granted granted Critical
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63HMARINE PROPULSION OR STEERING
    • B63H16/00Marine propulsion by muscle power
    • B63H16/06Rowlocks; Mountings therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63HMARINE PROPULSION OR STEERING
    • B63H20/00Outboard propulsion units, e.g. outboard motors or Z-drives; Arrangements thereof on vessels
    • B63H20/007Trolling propulsion units
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63HMARINE PROPULSION OR STEERING
    • B63H20/00Outboard propulsion units, e.g. outboard motors or Z-drives; Arrangements thereof on vessels
    • B63H20/02Mounting of propulsion units
    • B63H20/06Mounting of propulsion units on an intermediate support
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63HMARINE PROPULSION OR STEERING
    • B63H16/00Marine propulsion by muscle power
    • B63H16/04Oars; Sculls; Paddles; Poles
    • B63H2016/046Oars for single-oar sculling, i.e. for propelling boats by swinging single stern-mounted oars from side to side; Use or arrangements thereof on boats

Definitions

  • the present invention relates to a device for mounting a drive means on a watercraft. Furthermore, the invention relates to a means of transport, which comprises the vessel and the device.
  • the drive means may be a belt or drive unit with a motor driven screw.
  • the vessel may be a stand-up paddle board.
  • a standup paddle board is understood as meaning a surfboard with one or more fins on which a user can move forward while standing in the water with the aid of a drive means for generating propulsion.
  • it may be a surfboard with a large-volume float, which provides a sufficiently high tipping stability to ensure a secure footing of the user on the stand-up paddle board.
  • a standup paddle board in the context of the present invention is not subject to any restrictions as regards its dimensions or its volume.
  • the vessel may be, in particular, a small boat, such as a canoe or bathing boat.
  • the object is achieved by a device for mounting a drive means on a watercraft, in particular a stand-up paddle board.
  • the device comprises a base element with which a receiving device for receiving the drive means is rotatably mounted and with which exactly one leg is connected or a plurality of mutually bendable legs are connected. Attached to each leg are fastening means which are adapted to fix the leg in the region of a stern of the watercraft to the vessel in such a way that the base element is fixed at a position above the watercraft.
  • the apparatus assists the user in handling the drive means.
  • the drive means is held by the device so that the user does not have to keep the drive means free or balance on the watercraft. This simplifies the propulsion generation for the user.
  • the drive means is a belt
  • the receiving device is designed to receive a shaft of the belt.
  • the belt blade is dipped in the area of the stern of the vessel into the water, and by driving back and forth of the belt blade in the water propulsion generated.
  • the belt may be moved so that the belt blade follows a movement curve that follows approximately a horizontal eight (that is, the " ⁇ " sign). During this movement, propulsion in the forward direction is continuously generated. It is thus a very efficient and simple way of generating propulsion.
  • the drive means is a drive unit that includes a motor-driven drive member attached to one end of a shaft, the receptacle being configured to receive the shaft.
  • a motor drive for the watercraft is provided, so that the user does not have to generate propulsion automatically. Due to the pivotable mounting of the shaft of the drive unit within the receiving device, the shaft can in particular be pivoted about a vertical axis in order thereby to make changes in direction of travel.
  • the drive element may in particular be a screw attached to the end of the shaft.
  • the invention is not limited thereto.
  • the device may be detachably connected to the vessel, and in particular configured to be attachable to conventional small craft, such as stand-up paddle boards or small boats.
  • conventional watercraft can be equipped with the device.
  • the user can use the watercraft of choice together with the device or conventionally without the device.
  • the device comprises two or three mutually angled legs, which are associated with fastening means for fixing the legs in an angled state in the region of the stern of the watercraft to the watercraft
  • the fastening means comprise receptacles which are arranged on the board-side ends of the legs and are each designed to form an edge of the standup Paddle boards, wherein at least two legs, which are arranged opposite to each other, when the device is fixed on the stand-up paddle board, by a connecting element are connected and a clamping device is provided for changing a length of the connecting element.
  • the device can be easily attached to a conventional stand-up paddle board and fixed.
  • the device can be adapted to different stand-up paddle boards, in particular to stand-up paddle boards of different widths.
  • a connected embodiment is characterized in that the connecting element is designed as a belt, and the tensioning device comprises a lockable winding device for partially winding the belt.
  • This embodiment enables a particularly simple attachment and fixation of the device on stand-up paddle boards with different dimensions, in particular with different widths.
  • the legs are pivotally articulated to the base member. This allows adaptation to different standup paddle boards. Furthermore, it is possible to fold the legs when not in use of the device, so that the device has a small footprint and can be easily transported and stowed.
  • a further embodiment is characterized in that the device comprises exactly one leg, wherein the leg is foldable, and the device further comprises a support element which fixes the leg such that the base element is fixed above the watercraft.
  • the device is suitable both for attachment to a standup paddle board as well as for attachment to a small boat, such as a canoe. If the stand-up paddle board or the small boat is to be used in a conventional manner without the device, the leg can be folded in this embodiment, so that the device does not hinder the user. It can optionally also provided that the stand-up paddle board or small boat has a recess for receiving the folded leg to further minimize disabilities of the user.
  • the support member may comprise a support strut which is hinged to the leg and can be fixed at a predetermined position.
  • the support strut can be fixed on a surface of the standup paddle board or at the bottom of the small boat.
  • the fixation is preferably designed detachable, so that they are solved can to fold over the leg.
  • the support strut is preferably pivotable so that it can be applied to the leg when the leg is folded down.
  • the drive means is held at a position at a certain height above the standup paddle board.
  • the height may preferably be changed to adapt the device in particular to the size of the user and / or the length of the belt or the shaft of the motor-driven drive unit. Therefore, an embodiment provides that the device further comprises a telescopic device, which is designed to change a distance between the board-side ends of the legs and the receiving device. In one embodiment, it is provided in particular insofar that the legs are designed to be telescopic. Alternatively or additionally, the adjustability of the height can be achieved in that the base element comprises a retractable support element on which the receiving device is mounted.
  • the invention proposes a means of locomotion comprising a vessel and a device fixed in the region of its stern according to one of the claims 1-12.
  • the means of transportation further comprises a drive means configured as a belt, wherein the belt is attached to the vessel by means of the apparatus so that a blade of the belt can be submerged in the area of the stern of the vessel when the vessel floats on the water
  • the means of locomotion includes a drive means having a drive unit comprising a motordriven drive member attached to one end of a shaft, the drive unit being mounted to the vessel such that the propulsion member is submerged in the area of the stern of the vessel can when the watercraft floats on the water.
  • the drive element may in particular be a screw.
  • FIG. 1 is exemplary and schematically illustrated a first embodiment of a device with which a drive means can be attached to a watercraft.
  • the device is particularly suitable for use with a standup paddle board 1 and will be described below with respect to such use.
  • the drive means in the embodiment shown is a belt 2, which may be embodied in any configuration known to the person skilled in the art. In particular, it may be a belt 2 with a shaft 3 made of metal (such as aluminum) and a sheet 4 made of plastic.
  • the belt can be made in other ways, for example, one or more pieces of wood.
  • the belt 2 can be attached to the stand-up paddle board 1 in such a way that its shaft 3 in the region of the rear 5 of the stand-up paddle board 1 has a height above the stand-up paddle board 1 a fixed position is rotatably or pivotally fixed. This allows a person standing on the stand-up paddle board 1, the sheet 4 of the belt 2 behind the rear 5 of the stand-up paddle board 1 (ie "astern") to dive into the water, and the stand-up paddle board. 1 to move through Wriggen.
  • the device for attaching the belt 2 to the standup paddle board 1 has a base element 6, which has a substantially cylindrical basic shape in the illustrated embodiment.
  • the base member 6 may be made of metal or plastic, for example, and may be solid or hollow.
  • a receptacle 8 for supporting the shaft 3 of the belt 2 is fixed by a hinge means 7.
  • the hinge device 7 allows pivoting of the attached in the receptacle 8 belt 2 about the vertical axis and another perpendicular thereto axis to perform Wriggschulen with the belt 2 can.
  • the hinge device 7 in particular allows pivoting about the vertical axis (ie to the right and left) at least within an angular range required for the purpose of Wriggen and a pivot about a horizontal axis transverse to the longitudinal direction of the standup paddle board 1 (ie up and down).
  • the receptacle 8 for the belt 2 can be configured as an approximately U-shaped Dolle, in which the shaft 3 of the belt 2 is inserted.
  • the Dolle is rotatable about a senkreche axis, so that the belt 2 can be pivoted about this axis.
  • the Wriggen also required pivoting about a horizontal axis is a movement of the belt shaft 3 allows within the Dolle.
  • the receptacle 8 forms the pivot point in the executed with the belt 2 Wrigg Gayen.
  • the belt 2 is not fixed within the receptacle 8 and must be held by the user. Therefore, see other embodiments, a fixation of the belt shaft 3 within the receptacle 8 before.
  • the receptacle 8 is designed as a substantially executed as a two-piece hollow cylinder 21 component that includes the shaft 3 of the belt 2 in the manner of a clamp and can be adapted to different shaft diameter.
  • the inner surface of the hollow cylinder 21 coming into contact with the shaft 3 may be provided with a lining 22 made of a rubber-like material.
  • the liner 22 may in one embodiment be designed as a replaceable insert, with multiple liners 22 can be provided with different inner diameters to allow adaptation to the respective shaft diameter.
  • the two pieces 21a, 21b of the hollow cylinder 21 may be connected to each other on one side by a hinge 31, so that the hollow cylinder 21 can be unfolded to insert the shaft 3 of the belt 2.
  • the hollow cylinder pieces 21a, 21b can be connected by means of a suitable fastening mechanism so that the belt shaft 3 can be clamped in the receptacle 8.
  • the attachment mechanism may be configured, for example, as a folding mechanism.
  • the sides of the hollow cylindrical pieces 21a, 21b connected to each other by the fastening mechanism can each have an inwardly bent one Section, so that the hollow cylindrical pieces 21 a, 21 b abut with the bent portions.
  • the folding mechanism may comprise a lever 23 which is pivotally mounted on a hollow cylindrical piece, preferably the upper wooden cylindrical piece 21b.
  • a bracket 24 may be attached, which can engage in a hook 25 which is fixed to the other hollow cylindrical piece - preferably the lower hollow cylindrical piece 21 a - is connected.
  • the bracket 24 can be inserted into the hook 25. If the lever 23 is then moved in the closing direction, the bracket 24 and consequently also the hook 25 together with the hollow cylinder piece 21a holding the hook 25 are acted upon by a pulling force in the direction of the hollow cylinder piece 21b supporting the lever 23 so that the belt shank 3 is sandwiched between the hollow cylinder pieces 21a, 21b is clamped.
  • the lever 23 and the bracket 24 may be configured bent, so that they conform to the hollow cylinder 21 when the lever 23 is in the closed position.
  • a fastening mechanism known to those skilled in the art may be provided between the hollow cylinder pieces 21a, 21b, which makes it possible to clamp the belt shaft 3 within the hollow cylinder 21.
  • a screw mechanism can be provided.
  • the receptacle 8 can also be dispensed with the hinge 31, and the hollow cylindrical pieces 21a, 21b can be connected to each other for example on both sides by means of suitable fastening mechanisms.
  • the hinge device 7 comprises in the in FIG. 2 As shown embodiment, a lower portion 26 which is connected to the base member 6 of the device or the base member 6 forms.
  • the lower portion 26 is connected to a central portion 27 by a suitably configured pivot joint 28.
  • the rotational axis of the pivot joint 28 is oriented vertically when the device is mounted on the standup paddle board 1, so that the pivot joint 28 allows the pivoting of the belt 2 to the left and right.
  • the middle portion 26 is connected in the illustrated embodiment of the hinge device 7 via a tilting joint 29 with the lower hollow cylindrical piece 21 a of the receptacle 8 for the belt 2.
  • the tilting joint 29 By means of the tilting joint 29, the receptacle 7 to a in the FIG. 2 shown axis 30 which runs in a plane parallel to the surface of the standup paddle board 1 when the device is attached to the standup paddle board 1.
  • the hinge device 7 may also be embodied in a different manner, which enables the pivoting of the belt 2 at least about the two aforementioned axes of rotation, so that a rolling movement can be carried out with the belt 2.
  • a universally rotatable ball joint instead of the rotary joint 28 and the separate tilting joint 29, a universally rotatable ball joint can also be provided.
  • FIG. 1 shows in this respect an embodiment with three legs 9a-c.
  • the legs 9a-c can, as in the FIG. 1 represented, at equal angular intervals of 120 ° to each other to the base body 6 to be attached.
  • the legs 9a-c are at an angle to the vertical so that their ends form a triangle.
  • the legs 9a-c are pivotally hinged to the base member 6 so that they can be folded when not in use, to reduce the space requirement of the device and to be able to transport the device easily.
  • the aforesaid height at which the receptacle 8 for the belt 2 is placed above the standup paddle board 1 by means of the device when the device is attached to the standup paddle board 1 may preferably be varied. As a result, the height can be adjusted in particular to the size of the user and the length of the belt 2.
  • the legs 9a-c are designed to be telescopic in one embodiment.
  • the legs 9a-c in this embodiment may comprise an outer tube and an inner tube inserted into the outer tube, which is displaceable within the outer tube and can be locked continuously or at predetermined positions.
  • Suitable mechanisms, which can be provided for locking are known in the art. These may include, for example, bolts that can be pushed through holes of holes of the tubes overlapping.
  • a mechanism may be provided in which, for example, by rotating the inner tube clamping elements can be activated, which lock the inner tube in the outer tube.
  • the device may have a support element which can be pushed into or pushed out of the base element 6 and can be locked in a stepless or predetermined position by a suitable mechanism.
  • the support element may be a tube which is guided in the base element 6 and can be displaced within the base element 6.
  • the receptacle 8 is connected in this embodiment via the hinge device 7 with the support element, so that the height at which the belt 2 is held by the receiving device on the standup paddle board 1, changed by a displacement of the support member within the base member 6 can be.
  • receptacles 10a-c are provided at the ends of the legs, which can be attached to the edges of the stand-up paddle board 1 in such a way that they embrace the edges.
  • the receptacles 10a-c may, for example, have a substantially U-shape.
  • the recordings can be made wider than the leg diameter.
  • the upper portions of the receptacles connected to the legs 9a-c may be 10a-c are longer than the lower portions, which are in the mounted state of the receptacles 10a-c on the underside of the stand-up paddle board 1.
  • a large footprint on the top of the stand-up paddle board 1 is created and at the same time caused by the lower portions of the receptacles 10 a, b of the front legs (the sides extend transversely to the direction of movement of the stand-up paddle board 1) a low water resistance ,
  • the interior surfaces of the receptacles 10a-c which come into contact with the stand-up paddle board 1 may be provided with a padding which may be made, for example, of a rubber-like material or a foam material in order to avoid damage to the standup paddle board 1.
  • the two front legs 9a, b which face each other in the assembled state of the device, can be coupled together by a connecting element 11 whose length is changed by means of a tensioning device 12 can be.
  • the connecting element 11 can in this case be fastened to the receptacles 10a, b or to the legs 9a, b themselves.
  • attachment at different heights is conceivable, in which case the legs 9a, b are telescopic are - the telescoping should not be affected. Therefore, in this case, the connecting element 11 can be fastened to the legs 9a, b in the region of the aforementioned outer tubes, for example.
  • the connecting element 11 is designed as a belt connecting the legs 9a, b, which may for example be made of a textile material.
  • the connecting element 11 can be folded in a simple manner when the legs 9a-c of the device for transport and / or storage are folded.
  • the tensioner 12, in one embodiment respectively connects a first part of the harness attached to one of the front legs 9a, b and a second part of the harness connected to the other front leg 9a, b, and includes a winding device partially wind one of the belt parts. In this case, the winding device can be locked, so that the length of the belt can be fixed and the belt can be stretched in this way in particular.
  • the winding device can be configured in a manner known to those skilled in the art. In particular, it may be a lever ratchet, as it often finds use in tension straps.
  • the front legs 9a, b may be connected to each other by struts, which are variable in their length.
  • the strut may be formed in two parts, wherein the two parts may be connected by a clamping device 12, which may be configured for example as a designed as a double screw clamping screw or as a turnbuckle with double nut.
  • the strut may be releasably connected to one of the legs 9a, b and pivotally connected to the other leg 9a, b or to both legs 9a, b detachably.
  • This leg 9a serves primarily to prevent tilting of the device forward or backward (seen in the longitudinal direction of the standup paddle board). This function can be fulfilled even if the front legs 9a, b are fixed in the manner described above and the rear leg 9c is not additionally fixed. Likewise, however, it is also possible to provide such additional fixation of the rear leg 9c, for example by connecting this leg 9c to one of the front legs 9a, b or both front legs 9a, b by variable-length struts.
  • the receptacles 10a-c of the legs 9a-c in the rear area of the stand-up paddle board 1 are hooked to the edges of the stand-up paddle board 1.
  • the receptacles 10a, b of the front legs 9a, b are hooked on the side edges of the stand-up paddle board and the receptacle 10c on the rear edge.
  • the connecting element 11 is tensioned by means of the clamping device 12 such that the standup paddle board 1 between the receptacles 10a, b of the front legs 9a, b is firmly clamped. This fixes the device on the standup paddle board.
  • the belt 2 and the belt shaft 3 are inserted into the receptacle 8 and fixed in this.
  • the device has three legs 9a-c, wherein between the front legs 9a, b an angular distance of about 180 ° and between the rear leg 9c and the front legs 9a, b respectively angular distance of about 90 °, as in the FIG. 3 illustrated in a schematic plan view.
  • Further embodiments of the device differ from the previously described embodiments by the arrangement and / or number of legs 9i.
  • the legs 9a-c may be arranged at different angular distances from one another. Such an arrangement is in the FIG. 4a exemplified and schematically illustrated. Here is between all legs in about the same angular distance of 120 °.
  • the device may comprise more than three legs 9a-c.
  • approximately four legs 9a-d may be provided, as exemplarily and schematically in FIG FIG. 4b is illustrated.
  • the legs 9a-d can be arranged such that two rear legs 9c, d are arranged approximately equidistant from the rear edge of the standup paddle board 1 on both sides of the center longitudinal axis of the standup paddle board 1 and two front legs 9a, b also at approximately the same distance from the rear edge of the standup paddle board 1 (which is greater than the distances of the rear legs 9c, d to the rear edge) on both sides of the central longitudinal axis.
  • the angular distances between the two front legs 9a, b and between the two rear legs 9c, d can be approximately equal.
  • the angular distance between adjacent front legs 9a, b and rear legs 9c, d may be smaller than the aforementioned angular distance between the front legs 9a, b and the rear legs 9c, d.
  • it can also be provided to attach the four legs 9a-d at equal angular intervals of 90 ° to the base element 6.
  • the fixation of the four-legged device can be done in a similar manner as described above by means of connecting elements 11a, b connecting respectively the opposite front legs 9a, b and the opposite rear legs 9c, d and their lengths by tensioning devices (in not shown) can be changed to tension the connecting elements 11a, b.
  • the connecting elements 11a, b and the tensioning devices can be designed in the manner already described above.
  • the device may in one possible embodiment comprise only a single leg 9, which is optionally designed telescopic. This embodiment is also suitable when using the device on a standup paddle board 1.
  • the device can be used in this embodiment in a similar manner in conjunction with other vessels, especially small boats.
  • the base element 6 and the leg 9 can here be designed in one piece, ie a section of the leg 9 can simultaneously form the base element 6.
  • a foot of the leg 9 is connected to a standup paddle board 1, and the leg 9 is hinged so that it can be folded down when not in use.
  • the leg 9 can preferably be folded over so that the folded leg 9 extends horizontally in the direction of the central longitudinal axis of the stand-up paddle board 1.
  • the leg 9 can be folded forward in one embodiment. This prevents that the folded leg 9 projects beyond the stand-up paddle board 1, as could be the case, for example, with a leg 9 folded backwards.
  • the leg 9 is telescopic, but can also be provided that it can be folded backwards.
  • a joint 51 is provided at the foot of the leg 9. This may be about a hinge, which connects the leg with the stand-up paddle board 1 or a base plate (not shown in the figure).
  • the hinge preferably allows the leg to pivot between a substantially horizontal orientation in the folded state and a substantially vertical orientation in the operative state of the device. Stop preferably prevents the leg from pivoting beyond the substantially vertical orientation. The stop can be realized approximately through the bottom of the stand-up paddle board 1 or the base plate.
  • the base plate may be made of metal or a solid material, to ensure a stable state of the leg 9.
  • a recess 52 is provided in the bottom of the stand-up paddle board, which receives the leg 9 in the folded state. This allows the leg in the folded state in the bottom of the stand-up paddle board 1 are sunk so that it does not bother the user when the stand-up paddle board 1 is used without the device.
  • the recess 52 may be designed so that also the hinge device. 7 and can record the recording 8.
  • the hinge device 7 can be solved with the attached receptacle 8 of the leg. This can be realized by a detachable connection between the leg 9 and the hinge device 7.
  • the hinge device may have approximately a threaded bolt which can be screwed into a threaded hole of the leg that extends along the longitudinal axis of the leg 9. If such a releasable connection is provided, the hinge device 7 can be removed from the leg 9 before it is folded down, and the recess 52 then receives only the folded leg 9 without the hinge device 7 and the receptacle 8.
  • the recess 52 is omitted, and a base plate is mounted on the stand-up paddle boards 1 or the bottom of a small boat, for example, screwed or glued.
  • the folded leg 9 - with or without hinge device 7 and receptacle 8 - is then placed on the stand-up paddle board 1 or the bottom of the small boat.
  • This embodiment is particularly suitable for stand-up paddle boards 1 and small boats, the base body (in the bottom area) has a too small thickness to provide the recess 52 for receiving the leg 9.
  • this embodiment is suitable for retrofitting conventional stand-up paddle boards 1 or other watercraft, which do not have the recess.
  • a support member In order to fix the leg 9 in the unfolded state in a substantially vertical orientation, a support member is provided.
  • the support element is configured in one embodiment as a support strut 53, which is articulated by means of a hinge connection 54 on the leg 9, and can be pivoted between an alignment parallel to the leg 9 and an orientation at an angle to the leg 9.
  • the support strut 53 can be arranged on the front or rear side of the leg 9 (with respect to the longitudinal direction of the standup paddle board 1), ie on the side facing the standup paddle board 1 when the leg 9 is folded down the opposite side.
  • the support strut 53 is arranged on the side of the leg 9, which points in the direction of the stand-up paddle board 1 with folded leg 9, and a recess 52 is provided for receiving the folded leg 9, the support strut 53 is preferably also of the Recess 52 received, and the recess 52 is formed accordingly.
  • the end facing away from the leg 9 of the support strut 53 at angled support strut 53 at a predetermined position 57 on the standup paddle board 1 are fixed.
  • the position 57 is selected such that the leg 9 is aligned substantially vertically with the support strut 53 fixed.
  • the fixation can basically be done in any way.
  • a fastening element 55 may be provided at the end of the support strut 53, which faces away from the leg 9, a fastening element 55 may be provided at the end of the support strut 53, which faces away from the leg 9, a fastening element 55 may be provided.
  • the fastener may comprise about a hole and be secured to the standup paddle board 1 with a plug or bolt 56 passed through the hole.
  • a corresponding receptacle for the bolt 56 is provided on the stand-up paddle board 1 or at the bottom of the small boat or embedded in this.
  • a recess 52 is provided for receiving the folded leg 9 and the support strut 53 is arranged on the board-
  • the leg may also be rigid (i.e., not hinged).
  • the board-side end of the leg 9, for example, be screwed to the stand-up paddle board 1, for which purpose one or more threads for receiving the corresponding screws can be provided.
  • the board-side end of the leg is provided with a device which is locked with a locking device provided on the stand-up paddle board 1.
  • the screw or locking connection can be made detachable, so that the device can be removed when not in use.
  • the receptacle 8 for the strap 2 may be configured in the same manner in the embodiments with one leg and connected to the leg via the base element 6, as in the embodiments with a plurality of legs. These have the advantage over the embodiment with only one leg that they require no modification of the stand-up paddle board 1 (such as by the attachment of the aforementioned thread or the locking device). On the other hand, the embodiments of the device with only one leg allow a simpler attachment of the device, especially on small boats, in which the legs can not be attached to an edge, as is the case with stand-up paddle boards 1.
  • a device is provided with which a belt 2 can be attached to a watercraft, such as a standup paddle board 1 or small boat, by navigating the watercraft can be moved.
  • the device is also suitable for attaching a motor-driven drive unit 61 to a watercraft so that it does not have to be automatically moved by the user.
  • FIG. 6 Such an embodiment is in the FIG. 6 schematically and exemplarily in turn in conjunction with a standup paddle board 1 illustrated.
  • the device for fixing the drive unit 61 is designed in this embodiment as described above.
  • the device may be a single leg or, as in the FIG. 6 represents comprising several legs.
  • the drive unit 61 is attached to the device.
  • This has, for example, a shaft 62, whose lengths may correspond approximately to that of a belt 2.
  • the shaft 62 is inserted into the receptacle 8 of the device to fix the drive unit 61 to the device.
  • the drive element may in particular be designed as a screw 63, which is rotatably mounted on the end of the shaft 62.
  • the screw 63 may be a conventional propeller, which may be dipped into the water to drive the stand-up paddle board 1 when the drive unit 61 is fixed to the device.
  • the shaft 62 may be bent in an end portion, so that the axis of rotation of the screw 63 extends approximately horizontally when the shaft 62 is immersed in the water at an angle. As a result, the propelling effect of the drive unit 61 is improved.
  • a handle 64 is preferably provided, on which the user can hold the drive unit 64 and which can in principle be configured in any desired manner.
  • the drive unit 61 comprises a motor unit 65, which is connected to the screw 53 via a drive shaft (not shown in the figure) running in the shaft 62.
  • the motor unit 65 is preferably designed as an electric motor; However, it can also be provided an internal combustion engine as well.
  • the power and / or speed of the motor may preferably be varied by the user to thereby set different rotational speeds of the screw 61.
  • a transmission with multiple gears can be provided, via which the motor unit 65 drives the screw 63.
  • the motor unit 65 may be mounted on the shaft 62 in the region of the handle. Other arrangements However, the motor unit 65, approximately at the screw-side end of the shaft 62, are also possible in principle.
  • the screw 63 of the drive unit 61 fixed to the device is immersed behind the rear 5 of the stand-up paddle board 1 into the water. Due to the rotation of the screw 63 driven by the motor unit 64, the standup paddle board 1 is driven in the forward direction. To effect changes in direction, the shaft 62 of the drive unit 61 can be pivoted by the user to the left or right.
  • the device can be used in a previously illustrated embodiment - such as a single leg 9 - in conjunction with a small boat to fix the drive unit 61 to the small boat.

Landscapes

  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • Ocean & Marine Engineering (AREA)
  • Accessories Of Cameras (AREA)
  • Motorcycle And Bicycle Frame (AREA)
EP16164828.2A 2015-04-17 2016-04-12 Dispositif de pose d'un systeme de propulsion sur un bateau Active EP3081477B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102015207065.4A DE102015207065A1 (de) 2015-04-17 2015-04-17 Vorrichtung zur Anbringung eines Antriebsmittels an einem Standup-Paddle-Board

Publications (2)

Publication Number Publication Date
EP3081477A1 true EP3081477A1 (fr) 2016-10-19
EP3081477B1 EP3081477B1 (fr) 2018-06-13

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Application Number Title Priority Date Filing Date
EP16164828.2A Active EP3081477B1 (fr) 2015-04-17 2016-04-12 Dispositif de pose d'un systeme de propulsion sur un bateau

Country Status (4)

Country Link
EP (1) EP3081477B1 (fr)
DE (1) DE102015207065A1 (fr)
ES (1) ES2683270T3 (fr)
PT (1) PT3081477T (fr)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR3082182A1 (fr) * 2018-06-08 2019-12-13 Universite De Montpellier Dispositif support d'appendice pour engin nautique
IT201900013302A1 (it) * 2019-07-30 2021-01-30 Mpt Plastica S R L Dispositivo per fissare un primo ed un secondo scalmo ad una tavola galleggiante
CN112977742A (zh) * 2021-03-17 2021-06-18 海腾(天津)新材料科技有限责任公司 一种新型浮式复合材料海洋平台
CN113734404A (zh) * 2021-09-10 2021-12-03 方松 一种游乐园船桨用驱动装置
CN114132471A (zh) * 2021-12-30 2022-03-04 上海珐伊复合材料科技有限公司 舢板桨架结构

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202020102791U1 (de) 2020-05-15 2020-05-29 Harro Zufall Sitzvorrichtung für ein Surf- oder SUP-Board

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB190214792A (en) * 1902-07-02 1903-06-11 Frederick William Lanchester Improvements in Mechanism for the Propulsion of Boats
FR2423394A1 (fr) * 1978-04-17 1979-11-16 Baulard Raymond Dispositif propulseur pour embarcation formant godille automatique
AU2012101383A4 (en) * 2012-09-07 2012-11-15 Simons, Korstiaan Mr Sculler

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DE2620770C3 (de) * 1976-05-11 1979-06-21 John Gmbh, 8228 Freilassing Berührungsschutz für die von einem Motor angetriebene Schraube eines Boots
US7182037B2 (en) * 2004-03-30 2007-02-27 Honda Motor Co., Ltd. Marine propulsion attachment with removable frame structure for non-self-propelled marine vehicles
JP4563910B2 (ja) * 2005-09-29 2010-10-20 本田技研工業株式会社 水上乗り物
DE102012106672A1 (de) * 2011-08-05 2013-02-07 Ernstfried Prade Paddeleinrichtung und Wasserfahrzeug
ITMI20131388A1 (it) * 2013-08-13 2015-02-14 Francesco Rienzi Tavola galleggiante per sport acquatici.
RO129296B1 (ro) * 2013-09-26 2022-06-30 Mirel Domşa Dispozitiv cu vâsle ataşabil plăcilor plutitoare

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB190214792A (en) * 1902-07-02 1903-06-11 Frederick William Lanchester Improvements in Mechanism for the Propulsion of Boats
FR2423394A1 (fr) * 1978-04-17 1979-11-16 Baulard Raymond Dispositif propulseur pour embarcation formant godille automatique
AU2012101383A4 (en) * 2012-09-07 2012-11-15 Simons, Korstiaan Mr Sculler

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR3082182A1 (fr) * 2018-06-08 2019-12-13 Universite De Montpellier Dispositif support d'appendice pour engin nautique
IT201900013302A1 (it) * 2019-07-30 2021-01-30 Mpt Plastica S R L Dispositivo per fissare un primo ed un secondo scalmo ad una tavola galleggiante
EP3771633A1 (fr) 2019-07-30 2021-02-03 Andrea Antonelli Dispositif pour engager une première et une deuxième serrure à pagaie sur une planche flottante
CN112977742A (zh) * 2021-03-17 2021-06-18 海腾(天津)新材料科技有限责任公司 一种新型浮式复合材料海洋平台
CN112977742B (zh) * 2021-03-17 2023-08-11 海腾(天津)新材料科技有限责任公司 一种新型浮式复合材料海洋平台
CN113734404A (zh) * 2021-09-10 2021-12-03 方松 一种游乐园船桨用驱动装置
CN114132471A (zh) * 2021-12-30 2022-03-04 上海珐伊复合材料科技有限公司 舢板桨架结构

Also Published As

Publication number Publication date
EP3081477B1 (fr) 2018-06-13
PT3081477T (pt) 2018-10-15
DE102015207065A1 (de) 2016-10-20
ES2683270T3 (es) 2018-09-25

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