The present invention relates to a movable platform assembly, of the type comprising a base portion able to be fixed to a support structure and at least one pivotable arm hinged at one end with said base portion, about a first hinging axis, and at the other end, with a loading platform, about a second hinging axis, said at least one pivotable arm being able to be rotated via actuating means which are designed to allow said platform to maintain a constant inclination with respect to said base portion during rotation of said at least one pivotable arm.
A platform assembly of this type, which is specifically applied to a boat, is known from the international application WO 03/106254 A1 in the name of the same Applicant.
In this platform assembly, the movement of the pivotable arm(s) is obtained by means of chain-type transmission means, there being also envisaged additional chain-type transmission means which ensure the parallel alignment of the loading platform and the base portion.
Although this solution has proved to be particularly effective, the Applicant has investigated new solutions for moving the loading platform which are optimum also from the point of view of the compactness of the entire actuating system.
The invention therefore relates to a movable platform assembly of the type defined in the introduction, in which said actuating means comprise a first and a second rotary actuator mounted on said first and second hinging axes, respectively, in which the first rotary actuator comprises a first part fastened to the base portion and a second part rotatable with respect to the first part and fastened to the pivotable arm, and in which the second rotary actuator comprises a first part fastened to the loading platform and a second part rotatable with respect to the first part and fastened to the pivotable arm, said actuating means also comprising control means able to control in a co-ordinated manner rotation of said first and second rotary actuators.
Preferred embodiments are described in the dependent claims.
Further objects and advantages of the invention will become clearer from the following detailed description of a preferred, but non-limiting embodiment of the invention, provided with reference to the accompanying drawings in which:
With reference to
With reference to
As can be seen more clearly from
A pair of support feet 38a, 38b are hinged with the distal ends of the swing arms 32a, 32b. Their hinging axis is indicated by x2 in the figures. The support feet 38a, 38b are able to perform a relative rotation (namely that indicated by the arrows B2) with respect to the swing arms 32a, 32b in the vertical plane until they assume an arrangement folded back along these arms 32a, 32b in the closed position shown in
The diagram shown in
The first dual rotary actuator 50 comprises a first part 51 fastened to the fixed arms 22a, 22b, and hence to the base 2, and a second part 52 which is rotatable with respect to the first part and fastened to the pivotable arms 32a, 32b. The first part 51 of the first rotary actuator 50 may consist of the two end shafts of the dual rotary actuator which are fixed respectively to the two fixed arms 22a, 22b. The second rotary actuator 60 comprises a first part 61 fastened to the support feet 38a, 38b, and hence to the loading platform 3, and a second part 62 which is rotatable with respect to the first part and fastened to the pivotable arms 32a, 32b. The first part 61 of the second rotary actuator 60 may consist of the two end shafts of the dual rotary actuator which are fixed to the two support feet 38a, 38b of the platform 3, respectively.
The movement of the two dual actuators 50 and 60 is performed by means of a hydraulic control unit, denoted by U1 in
With reference to
The control unit U2 is programmed to compare with each other the values of the reference signal and the alignment signal. If, during movement of the assembly, this control unit detects that these values differ by more than a certain tolerance, it intervenes, causing the hydraulic control unit U1 to vary distribution of the control liquid supplied to the two dual actuators 50, 60. In this way, during the whole of the movement of the swing arms 32a, 32b, it is ensured that the loading platform 3 maintains a constant orientation with respect to the base 2. Preferably, the control unit U1 is also programmed to compare with each other the values of the reference signal and the movement signal, so as to be able to determine the angle of rotation of the swing arms with respect to the base 2. This feature may have several regulating and/or safety functions. For example, by equipping the control unit with an interface with allows a user to set the desired angle of rotation with respect to the closed position, it is possible to program the control unit so that it stops the supply of liquid to the actuators when this desired angle is reached. It is also possible to program the control unit to activate an alarm signal or, in case of a movable support structure such as a boat, to prevent starting of the movable structure if it detects that the angle of movement is changing while someone is attempting to start the movable structure.
With the platform assembly according to the invention it is possible to obtain a rotation of the swing arms 32a, 32b with a maximum angle of about 240° and more, from the closed position, where these arms 32a, 32b are completely extended on the base 2 of the platform assembly 1, into the maximum open position allowed by the particular arrangement of the hinging axis x1 of the swing arms 32a, 32b.
Inside the pivotable arms 32a, 32b, which are constructed with a box-like form, there is provided an alignment unit which is able to keep the orientation of the steps 35 unvaried with respect to the base 2 during rotation of the pivotable arms. For this purpose, each step 35 (as shown in
The system for achieving alignment of the steps 35, however, must not be regarded as being limited to the example described hitherto, it being possible to envisage for this purpose other means which may occur to a person skilled in the art, for example lever systems.
In case the invention is applied to a boat, by lowering the platform 3 so as to reach the fully open position of the swing arms 32a, 32b, it is possible to immerse this platform 3 underneath the surface of the water, allowing hauling out and launching of a tender or similar type of marine vehicle equipping the boat, while the steps 35 allow access for persons swimming in the water. It is also possible to vary the position of the platform 3 so as to reach decks of varying heights, while the fact that this platform 3 and the steps 35 remain in any case horizontal allows easy access from and onto the boat. Moreover, the fact that the platform 3 remains horizontal also during its entire movement allows easy access also for persons who have problems walking as well as the loading of bulky objects.
Anyway, the invention is not limited to such kind of application but, as can be easily understood, it may be used in any technical field, when the transport of loads between different height levels is required, while keeping constant the attitude of the transported load.
Number | Date | Country | Kind |
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PCT/IT2007/000920 | Dec 2007 | IT | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/IT08/00110 | 2/20/2008 | WO | 00 | 6/7/2010 |