Mobile platform device for boats
The mobile platform device addresses horizontal displacement issues by synchronizing actuation means for pivoting and translating support arms and platforms, ensuring stable positioning on boats with varying transom configurations.
Patent Information
- Application Number
- FR2024007617
- Authority / Receiving Office
- FR · FR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-07-11
- Publication Date
- 2026-01-16
AI Technical Summary
Existing mobile platform devices for boats experience horizontal displacement of the platform relative to the transom, which is problematic for boats with non-vertical transoms, leading to positioning issues and inefficiencies in platform placement.
A mobile platform device with synchronized actuation means that control the pivoting and translation of support arms and the platform, allowing for simultaneous horizontal and vertical adjustments to maintain the platform in a stable position relative to the boat.
The device ensures the platform remains substantially horizontal and adjusts its position relative to the transom, accommodating various boat configurations, including sloping transoms, by integrating hydraulic or motor-driven actuation and synchronized translational control.
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Abstract
Description
Title of the invention: Mobile platform device for boats
[0001] The present invention relates to a mobile platform device for a boat, in particular intended to be fixed in an articulated manner on the transom of such a boat.
[0002] Many platform devices are already known that are attached to the stern of larger boats, such as yachts, and on which a smaller boat or tender often, but not necessarily, rests. Such a platform device is designed to be mobile, most often by means of actuation in the form of a jack or motor, to raise or lower the platform as needed, for example, to bring the platform level with the waterline, or even below the waterline to facilitate launching or retrieving the tender.
[0003] Obviously, such a platform device can have another use than transporting an annex.
[0004] Typically, these platform devices comprise at least one support arm, generally a pair of support arms, the first end of which is equipped with articulated fastening means, allowing this platform device to be fixed to the vessel in an articulated manner around a horizontal axis. These support arms are generally attached to the transom of a boat.
[0005] On the opposite free end of these support arms, a platform is mounted in an articulated manner, again around a horizontal axis parallel to the pivot axis of the support arms. By means of suitable means, the platform is maintained in a substantially horizontal plane, whether the support arms are raised, lowered, or even during the raising and lowering phases of the latter.
[0006] Such a platform device is known in particular from document EP 3 279 077. This device comprises a cylinder associated with each of the support arms, the rod of which is extended by a connecting rod, also called a cam, acting on the end of a lever arm extending under the platform. Thus, when the cylinders are actuated to raise or lower the support arms, the interaction between these cylinders and the platform results in the platform pivoting with a synchronized rotation of the support arms relative to them, thereby maintaining the platform permanently in a substantially horizontal plane. This result is in particular obtained through a specific ratio between the stroke of the cylinder rod and the length of the lever arm under the platform.
[0007] The raising and lowering of the support arms also results from the action of these cylinders on slings, in the form of rope, strip, or cable. More specifically, one end of a sling associated with a support arm is fixed to a point on the vessel. This sling, passing around one or more pulleys, is attached at its opposite end to the support arm. One of the pulleys is fixed to the end of the cylinder rod so that the advance of this cylinder rod causes the support arm to descend by rotation around a horizontal axis under the weight of the arm and the platform it carries, while the retraction of this cylinder rod exerts a pull on the sling, causing the support arm to rise.
[0008] It is understood that, by acting on the jacks of the support arms, these are caused to pivot around the articulation axis which connects them to the vessel, causing, at the same time, the pivoting of the platform at the end of these support arms.
[0009] Despite the recognized advantages of such mobile platform devices, they nonetheless present certain drawbacks. In particular, the raising and lowering of the support arms by rotation around a horizontal axis generates a horizontal displacement of the platform, a displacement which, in most configurations, tends to bring this platform closer to the transom of the vessel in one position or another, most often in the lowered position.
[0010] In this regard, boats with a transom that, for aesthetic or other reasons, forms an upward-sloping plane from the waterline, giving the boat a streamlined stern, are increasingly common on the market. Such a configuration necessitates lengthening the support arms, not to mention that, in the raised position, the platform is positioned far away and cantilevered from the boat's transom.
[0011] It was within the framework of an inventive approach that it was conceived that the platform, in addition to being mounted pivoting on the end of these support arms, would also be mobile in translation under the action of drive means in movement synchronized with the pivoting of the support arms.
[0012] According to a second inventive approach, it was imagined that these drive means, for moving the platform in translation, cooperate with the actuation means contributing to jointly controlling the raising or lowering of the support arm(s) and the rotation, on the end of the latter, of the platform to maintain it in a substantially horizontal plane.
[0013] To this end, the invention relates to a mobile platform device for a boat, comprising at least one support arm provided, at a first end, of articulated fastening means designed to secure said support arm to a vessel in a pivotal manner about an axis X, said support arm further comprising a second end, opposite the first, on which is mounted, articulated about an axis Y, parallel to X, a platform, said platform device further comprising actuation means, of hydraulic or motor type, for jointly controlling the pivoting of the support arm about the axis X and the rotation of the platform about the axis Y. More particularly, the platform is further mounted in translation on the end of the support arm along a direction Z perpendicular to the axis Y.
[0014] According to another feature of the invention, the mobile platform device includes means for synchronizing control in translation of the platform along the Z direction with the rotation of the platform around the Y axis and / or of the support arm(s) around the X axis.
[0015] Advantageously, the means for synchronizing the translational control of the platform along the Z direction are substantially designed by means of drive cooperating with said actuation means jointly controlling the pivoting of the support arm around the X axis and the rotation of the platform around the Y axis.
[0016] According to the invention, the actuation means are defined by at least one cylinder acting directly on the platform for the rotation control of the latter around the Y axis and indirectly, through first transmission means, on the support arm for the rotation control of the latter around the X axis, said cylinder cooperating, furthermore, with second transmission means defining the means for synchronizing the translational control of the platform along the Z direction.
[0017] The advantages arising from the present invention consist in that, during the raising and lowering commands of the platform, which is otherwise preferably maintained in a horizontal position once the mobile platform device has been brought back onto a boat, said platform can also move horizontally, in this case move closer to or further away from the boat according to the direction of movement of this or these support arms and the configuration of the transom of the boat.
[0018] In summary, a mobile platform device according to the invention is adaptable to a boat, whether the transom is vertical or whether it defines an outward or inward inclined plane.
[0019] Another advantage is that this translational movement of the platform occurs in a synchronized manner, in particular with the raising and lowering command of the support arm(s).
[0020] According to another advantage, this translational movement of the platform is obtained by means of the same actuation means ensuring the raising and lowering of a support arm and the rotation of the platform around the Y axis to maintain it systematically in the same plane.
[0021] Other purposes and advantages of the present invention will become apparent during the following description relating to an example of an embodiment given by way of illustration.
[0022] Understanding this description will be facilitated by referring to the attached drawings in which:
[0023] [Fig-1] [Fig. 1] is a schematic and perspective representation of the device platform in a lowered position;
[0024] [Fig.2] [Fig.2] is a schematic and elevational representation, side view, of this platform device in raised position, the actuation means and the various drive means being made visible, the very structure of this platform device being represented in discontinuous lines;
[0025] [Fig.3] [Fig.3] is a schematic representation similar to [Fig.2], the platform device being in lowered position.
[0026] With reference to these drawings, the mobile platform device 1 includes at least one support arm 2. In this regard, it should be taken into account that such mobile platform devices 1 generally include two support arms arranged parallel and at a distance from each other.
[0027] Also, the present description will relate more particularly to an example of an embodiment with two support arms, knowing that the present invention cannot be limited to such a configuration.
[0028] A support arm 2 has a first end 3, equipped with articulated fixing means 4 through which this support arm 2 can be brought in an articulated manner around an axis X, preferably horizontal, onto the transom of a boat, not shown in the figures.
[0029] This support arm 2 further comprises a second end 5 on which a platform 6 is pivotally mounted about an axis Y, parallel to the axis X. This platform is capable of fulfilling various functions. In this case, a load, such as a small boat or tender, can be positioned on this platform 6, and its mobile platform device 1 facilitates launching and retrieval.
[0030] This mobile platform device 1 further includes actuation means 7, of hydraulic, electric motor or manual type, to control: 1. the pivoting of the support arm(s) 2 around the axis X; - the pivoting of the support arm(s) 2 around the X axis; - and the rotation of platform 6 around the Y axis.
[0031] These actuation means 7 act, as the case may be, directly or indirectly on this or these support arms 2 and on the platform 6 for a synchronized rotational movement of both, respectively around the X axis and the Y axis.
[0032] In the preferred example illustrated in the drawings, these actuation means 7 take the form of a cylinder 8 integrated into or associated with a support arm 2. This cylinder 8 comprises a cylinder body 9 from which emerges, at one end 10, a cylinder rod 11. The opposite end 12 of this cylinder body 9 is made fixed to the support arm 2, preferably near the first end 3 of the latter.
[0033] The cylinder rod 11 is fixed, at an inner end to the cylinder body 9, to a piston (not visible) which moves within this cylinder body 9 under the impulse of the pressure of a hydraulic fluid exerted on one side or the other on this piston, driving the cylinder rod 11 in an axial direction. The latter is connected at its opposite end 13, preferably via a connecting rod 11a, to a lever arm 14 extending under the platform 6. Thus, depending on the direction of movement of the cylinder rod 11 under the impulse of the piston, this results in a rotation of the platform 6 in one direction or the other around the Y axis, under the impulse exerted by the connecting rod 11a on the lever arm 14 extending under this platform 6.
[0034] As previously stated, these actuation means 7, here in the form of a cylinder 8, act jointly on the support arm 2 to control its rotation around the X axis. More particularly, these actuation means 7 act indirectly on the support arm 2 via first drive means 15.
[0035] According to a preferred embodiment, these drive means 15 are substantially defined by at least one sling 16, which may be in the form of a band or cable made of any material, preferably synthetic or composite, and / or metallic. This sling 16 has a first end 17 designed to be fixed to a fixed support S on the vessel and a second end 18 attached to the support arm 2. Furthermore, this sling 16 partially winds around a return pulley 19 carried by the hydraulic cylinder rod 11, such that, depending on the direction of movement of the latter, the latter exerts a pull on the sling 16 tending to bring its two ends 17 and 18 closer together, leading, for example, to raising the support arm 2 by rotation around the axis X.In this case, by commanding the movement in the opposite direction of the cylinder rod 11, the result is a release of the sling 16, allowing the support arm 2 to lower under the effect of its weight and the platform 6 which carries it, this ensuring the separation of the ends 17 and 18 of the sling 16. .
[0036] As illustrated in the figures, this sling 16 can be wound around a turning pulley 20 attached to the support arm 2 so as to impose on the sling 16 describe a loop 21 between this return pulley 20 and its end 18, passing through the return pulley 19 associated with the cylinder rod 11. Thus, when the cylinder rod 11 is retracted in the cylinder body 9, a tension is exerted, through the return pulley 19, on this loop 21 described by the sling 16. This results in a progressive increase in the size of this loop 21, leading to a shortening of the distance between the two ends 17 and 18 of this sling 16.
[0037] According to the invention, the platform 6 is also mounted mobile in translation on the second end 5 of the support arm(s) 2, along a direction Z perpendicular to the pivot axes X and Y.
[0038] According to one embodiment of the invention, this platform 6 comprises a support frame 22 mounted to slide along the Z direction on the lever arm 14 which is mounted, articulated, around the Y axis, on the second end 5 of the support arm(s) 2. In particular, this support frame 22 can be attached by means of at least one slide 24 to the lever arm 14.
[0039] According to a particular feature of the invention, the mobile platform device 1 includes means 25 for synchronizing control in translation of the platform 6 along the Z direction with the rotation of this platform 6 around the Y axis and / or of the support arm(s) 2 around the X axis.
[0040] According to an advantageous design, these means 25 for synchronizing the translational control of the platform 6 are substantially designed by means of drive 26 cooperating with said actuation means 7 jointly controlling the pivoting of the support arm 2 around the X axis and the rotation of the platform 6 around the Y axis.
[0041] In the embodiment more particularly illustrated in the figures, the actuation means 7 being defined by a cylinder 8 associated and / or integrated into the support arm 2 under the conditions set out above, said drive means 26 are, again, advantageously defined by at least one sling 27 in the form of a band or a cable in any material, preferably synthetic or composite, and / or metallic.
[0042] This sling 27 has a first end 28 made fixed to the support frame 22 of the platform 6 and a second end 29 made fixed to the support arm 2. Between these two ends 28, 29, this sling 27 winds, at least partially, around a return pulley 30 associated directly or indirectly with the cylinder rod 11, such that, according to the direction of movement of the latter, a traction is exerted on the sling 27 which is transmitted to the support frame 22 in a translational control in a direction 31 determined along the direction Z.
[0043] In the example illustrated in Figures 2 and 3, the first end 28 of the sling 27 is secured to a first side 32 of the support frame 22. This sling 27 follows, then, a path passing around one or more return pulleys 33, 33' until it partially wraps around the return pulley 30 and connects, by describing a loop 34, its second end 29 made solid to the support arm 2.
[0044] Thus, under the impulse of the cylinder rod 11 during the command to lower the support arm 2, the pulley 30, fixed to the connecting rod lia extending said cylinder rod 11, exerts a traction on the loop 34 by increasing the length of the latter and by passing this traction on the support frame 22 through the end 28 of the sling 27 made fixed to the first side 32 of this support frame 22.
[0045] In this case, the traction exerted by the sling 27 results, when the support arm 2 is lowered, in pushing the support frame 22 back in the direction 31 along the Z direction, that is, pushing this support frame 22 away from the first end 3 of the support arm 2, and therefore from the transom of the boat on which the platform device 1 is fixed. The present invention is not, however, limited to such a direction of movement of the support frame 22 under the action of this traction exerted on the sling 27.
[0046] Advantageously, the drive means 26 further comprise a second sling 27a in the form of a band or a rope made of any material, preferably synthetic or composite, and / or metallic.
[0047] This sling 27a has a first end 28a made fixed to the support frame 22 of the platform 6 and a second end 29a fixed to the support arm 2. Between these two ends 28a, 29b, this sling 27a winds, at least partially, around a return pulley 30a associated directly or indirectly with the cylinder rod 11, such that, according to the direction of movement of the latter, a traction is exerted on the sling 27a which is transmitted to the support frame 22 in a translational control in a direction 31a determined along the direction Z.
[0048] In the example illustrated in figures 2 and 3, the first end 28a of the sling 27a is made fixed to a second side 32a of the support frame 22. This sling 27a then follows a path by passing around one or more return pulleys 33 until it comes to wrap partially around the return pulley 30a, before connecting, by describing a loop 34a, its second end 29a made fixed to the support arm 2.
[0049] Thus, under the impulse of the cylinder rod 11, when the support arm 2 is raised, the pulley 30a, here fixed to the end of the connecting rod lia linked to said cylinder rod 11, exerts a traction on the loop 34a by increasing the length of the latter and by passing this traction on the support frame 22 through the end 28a of the sling 27a made fixed to the side 32a of this support frame 22.
[0050] In this case, the traction exerted by the sling 27a results, when the support arm 2 is raised, in the direction of 31a along the Z direction, that is to say by pushing back this support chassis 22 so as to bring it back towards the first end 3 of the support arm 2, therefore towards the rear transom of the boat on which the platform device 1 is fixed. The present invention is however not limited to such a direction of movement of the support chassis 22 under the action of this traction exerted on the sling 27a.
[0051] According to another feature of the invention, at least one of the slings 27; 27a is connected, at at least one of its ends 28, 28a; 29, 29a, as the case may be, to the support frame 22 or to the support arm 2, by means of an elastic element 35, 35a.
[0052] According to an alternative embodiment at least one of the slings 27; 27a incorporates, along its length, at least one such elastic element 35; 35a.
[0053] This can adopt different embodiments. Thus, this elastic element 35; 35a can be defined as a simple spiral spring, a damping spring or equivalent.
[0054] Furthermore, at least one of the slings 27; 27a, preferably each of them, is connected, at at least one of its ends 28, 28a; 29, 29a, as the case may be, to the support frame 22 or to the support arm 2, by means of sling tension adjustment means 36, 36a.
[0055] According to an alternative embodiment at least one of the slings 27; 27a, preferably each of them, incorporates, along its length, such sling tension adjustment means 36; 36a.
[0056] Such sling tension adjustment means, for example in the form of a turnbuckle, have the advantage of finely adjusting the length of the slings 27, 27a during the assembly of the mobile platform device 1.
[0057] As for the elastic element 35, 35a, as the case may be, integrated into a sling 27; 27a or connecting, one of its ends 28, 28a; 29, 29a, as the case may be, support frame 22 or to the support arm 2, it has the advantage of compensating for differential trajectory lengths communicated to the slings 27; 27a under the impulse of the actuation means 7, in this case in the embodiment described, directly by the cylinder rod 11 or indirectly by the connecting rod lia extending the latter.
[0058] According to another embodiment not illustrated in the figures, the drive means 26 are defined by a single sling, each end of which is fixed to the support frame 22, this sling being further secured, along its length, directly or indirectly to the cylinder rod 11 so that the movement of the latter backward in the cylinder body 9 or vice versa generates a translation of the support frame 22 along the Z direction in a direction 31a or in the opposite direction 31.
[0059] The actuation means 7 take the form of a cylinder 8 integrated into or associated with the support arm 2, this cylinder 8 comprising a cylinder rod 11 and the drive means 26 are defined by a single sling, each of the ends is fixed to one of the sides 32, 32a of the support frame 22, this sling being further secured, along its length, directly or indirectly to the cylinder rod 11 so that the movement of the latter in one direction or the other generates a translation of the support frame 22 along the Z direction in a direction 31a or in the opposite direction 31.
[0060] Here again, such a single sling may include along its length or at least at one of its ends an elastic element and means for adjusting sling tension.
Claims
Demands
1. Mobile platform device (1) for a boat, comprising at least one support arm (2) provided, at a first end (3), with articulated fastening means (4) designed to secure said support arm (2) to a boat in a pivotal manner about an axis X, said support arm (2) further comprising a second end (5), opposite to the first (3), on which is mounted articulated, about an axis Y, parallel to X, a platform (6), said mobile platform device (1) further comprising actuation means (7), of hydraulic or motor type, for jointly controlling the pivoting of the support arm (2) about the axis X and the rotation of the platform (6) about the axis Y, characterized in that the platform (6) is further mounted in translation on the second end (5) of the support arm (2) along a direction Z, perpendicular to the axis Y.
2. Mobile platform device (1) according to claim 1, characterized in that the platform (6) comprises a support chassis (22) mounted to slide along the Z direction on a lever arm (14) which is mounted articulated, around the Y axis, on the second end (5) of the support arm (2).
3. Mobile platform device (1) according to claim 1 or claim 2, characterized in that it comprises means (25) for synchronizing translational control of the platform (6) along the Z direction with the rotation of this platform (6) around the Y axis.
4. Mobile platform device (1) according to claim 3, characterized in that the means (25) for synchronizing translational control of the platform (6) are substantially designed by drive means (26) cooperating with said actuation means (7) jointly controlling the pivoting of the support arm (2) around the X axis and the rotation of the platform (6) around the Y axis.
5. Mobile platform device (1) according to claim 4, the actuation means (7) of which are in the form of a cylinder (8) integrated into or associated with the support arm (2), said cylinder (8) comprising a cylinder rod (11), characterized in that said drive means (26) are defined by at least one sling (27) in the form of a band or rope having a first end (28) made fixed to the support frame (22) of the platform (6) and a second end (29) made fixed to the support arm (2), between these two ends (28, 29) this sling (27) winds, at least partially, around a return pulley (30) associated directly or indirectly with the cylinder rod (11) to, according to the direction of movement of the latter, exert a traction on the sling (27) which is transmitted to the support frame (22) in a translational control in a direction (31) determined along the direction Z.
6. Mobile platform device (1) according to claim 5 characterized in that the drive means (26) further comprise a second sling (27a) in the form of a band or cable having a first end (28a) made integral with the support frame (22) of the platform (6) and a second end (29a) fixed to the support arm (2), between these two ends (28a, 29b), this sling (27a) winds, at least partially, around a return pulley (30a) associated directly or indirectly with the cylinder rod (11), so as, depending on the direction of movement of the latter, to exert a traction on the sling (27a) transmitted to the support frame (22) in a translational control in a determined direction (31a) along the direction Z.
7. Mobile platform device (1) according to claim 5 or 6, characterized in that a sling (27; 27a) is designed by a band or rope made of a synthetic or composite and / or metallic material.
8. Mobile platform device (1) according to any one of claims 5 to 7, characterized in that at least one of the slings (27; 27a) is connected, at at least one of its ends (28, 28a; 29, 29a), as the case may be, to the support frame (22) or to the support arm (2), by means of an elastic element (35; 35a).
9. Mobile platform device (1) according to any one of claims 5 to 8, characterized in that at least one of the slings (27; 27a) incorporates, along its length, at least one elastic element (35, 35a).
10. Mobile platform device (1) according to any one of claims 5 to 7, characterized in that at least one of the slings (27; 27a), preferably each of them, is connected, at at least one of its ends (28, 28a; 29, 29a), as the case may be, to the support frame (22) or to the support arm (2), by means of sling tension adjustment (36; 36a).
11. Mobile platform device (1) according to any one of claims 5 to 10, characterized in that at least one of the slings (27; 27a), preferably each of them, incorporates, along its length, sling tension adjustment means (36; 36a).
12. Mobile platform device (1) according to claim 4, the actuation means (7) of which take the form of a cylinder (8) integrated in or associated with the support arm (2), this cylinder (8) comprising a cylinder rod (11), characterized in that the drive means (26) are defined by a single sling, each end of which is fixed to one of the sides (32, 32a) of the support frame (22), this sling being further secured, along its length, directly or indirectly to the cylinder rod (11) so that the movement of the latter in one direction or the other generates a translation of the support frame (22) along the Z direction in a direction (31a) or in the opposite direction (31).
Citation Information
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