This application claims priority benefit to European Patent Application No. 17 203 997.6 filed on Nov. 28, 2017 the entire contents of which is incorporated by reference.
The present invention relates to automatic guided vehicles (AGV) used in the industrial field, for handling products and/or components typically within a production environment. In particular, the present invention relates to an accessory modular device designed to be mounted on board various types of AGV, for example, to facilitate loading onto, and unloading from, the AGV itself and/or to facilitate assembly operations that an operator must perform on the components transported by the AGV itself.
The object of the present invention is to provide an accessory device for an AGV of the type indicated above, which can be easily implemented on different types of AGV and, at the same time, has a relatively simple and economical structure to produce.
A further object of the present invention is to provide an accessory device of the type indicated above, which has low overall dimensions and that can be adapted according to the operators interacting with the aforesaid device, depending on the production environment in which the AGV is intended to operate and depending on the types of components transported by the AGV.
In view of achieving the aforesaid objects, the present invention relates to an accessory device for an AGV, configured to be mounted onboard said AGV, for example, to facilitate loading onto, and unloading from, said AGV, of an object transported by said AGV, for example a pallet, said accessory device comprising:
Thanks to these characteristics, the accessory device according to the invention is able to implement a series of important advantages. Firstly, the adoption of a height-adjustable upper platform facilitates the interaction of an operator with the object transported by the AGV, for example, allowing an operator to perform assembly operations on the component transported by the AGV in ergonomic positions. Furthermore, thanks to the upper platform shaped like an inverted omega and therefore having a central portion lying in a plane that is lowered with respect to its end portions, it is possible to have a vertical dimension relatively contained. Finally, the omega shape of the upper platform makes it possible to arrange, within its central portion, useful accessories to further facilitate handling of the objects transported by the AGV and by the device.
According to a first preferred characteristic of the invention, the lifting units have a pantograph structure having a base portion arranged to be fixed above the base surface of the AGV, and a vertically movable upper portion. The base portion is substantially shaped like a rectangle and is fixed transversely above the base surface relative to the longitudinal direction of the AGV. Thanks to this characteristic, it is possible to limit the size of the accessory device, restricted to the dimensions of the upper plane of the AGV.
According to a further preferred characteristic of the invention, the device also comprises an accessory for further facilitating the movement of the object transported by the AGV. The accessory is arranged at the central portion of the upper platform.
In a first embodiment, the accessory is a roller conveyor equipped with an electric motor, and the lifting units are movable with a nut screw mechanism operated by means of a single electric motor which, with a transmission belt, moves the lifting units synchronously in the aforesaid vertical direction.
In a second embodiment, the accessory is a motorized revolving table.
In a third embodiment, a motorized revolving table is arranged at the central portion of the upper platform, and a roller conveyor is arranged above the motorized revolving table.
Further characteristics and advantages of the invention will become apparent from the description that follows with reference to the attached drawings, provided purely by way of non-limiting example, wherein:
In the following description, various specific details are illustrated aimed at a thorough understanding of the embodiments. The embodiments can be implemented without one or more of the specific details, or with other methods, components, materials, etc. In other cases, known structures, constructive details, materials or operations are not illustrated and described in detail, since they can be produced in any known way, and also because they do not fall, taken in their own right, within the scope of the present invention.
It is also understood that in the following description, only the elements useful for understanding the invention are described, for example, assuming that the AGV on which the accessory devices are implemented according to the invention, comprises all the elements known per se for operation.
In the attached drawings, reference 1 indicates, in its entirety, a preferred embodiment of an accessory modular device according to the present invention for an AGV A. As known for some time, the term AGV means an automatic guided vehicle used mainly in the industrial field for handling products within a production environment, such as a production line.
The accessory device 1 according to the invention is configured to be mounted on board the AGV A, for example, to facilitate loading onto, and unloading from, said AGV, of an object transported by the AGV itself, for example object or component T (shown in phantom line) in
The AGV A has a base surface 3, on which both the accessory device 1, and an object to be handled within the production environment in which the AGV operates, can be mounted.
The AGV A illustrated in the drawings is provided herein purely by way of example, and it is evident that it can have any known configuration, different from that illustrated. Furthermore, the details relating to the technology with which the AGV operates within the production environment are not presented here because they are beyond the specific characteristics of the invention. The device according to the present invention is applicable to different types of AGV and is powered by AGV batteries. The device according to the invention can be used in different types of production environments such as, for example, a “stop-and-go” or a “continuously moving” production line.
In the illustrated embodiment, with reference in particular to
AGV A, and the accessory device 1 associated with the AGV A, transport a pallet P. The pallet P is arranged, in turn, to carry a component (for example a cylinder head T shown in phantom lines). Typically, an operator O must manually perform assembly operations, and/or with the aid of electromechanical systems, on the components transported by the pallets P. Of course, the pallet P as depicted herein is also given by way of example, since the accessory device 1 can also be associated with other types of objects that are different from those illustrated.
With reference, in particular, to the exploded view of
The accessory modular device 1 according to the invention also comprises an upper platform 4 arranged above the lifting units 2. The upper platform 4 has two end portions 40, each of which is rigidly connected above a respective lifting unit 2, in such a way that the upper platform 4 can be raised or lowered by the lifting units 2.
According to an important characteristic of the present invention, the upper platform 4 is substantially shaped as an inverted omega, so that it has a central portion 41 that lies in a lowered plane with respect to its end portions 40 arranged above the lifting units 2 (
Thanks to the characteristics of the device 1 according to the invention indicated above, the pallet P arranged at the central portion 41 of the upper platform 4 can be adjusted in a vertical direction. This characteristic makes it easier to load the transported parts onto, and unload from the AGV itself and/or to facilitate assembly operations that an operator must perform on the components transported by the AGV itself. A further advantage deriving from the above described structure of the device 1 is that of being able to adjust the height from the ground of the exemplary component cylinder head T associated with the example of the pallet P, in order to allow an operator O to perform machining and/or assembly operations in ergonomic positions. Furthermore, thanks to the inverted omega shape of the upper platform 4, the height from the ground of the pallet P is reduced compared to platforms with a substantially rectilinear profile, since the provision of a lowered central portion with respect to the end portions, mounted on the lifting units, allows limitation of the height due to implementing the device 1 on the base surface 3 of the AGV A.
According to a preferred characteristic of the invention, the accessory device 1 also comprises an accessory 7 (
The exemplary accessory 7 is configured to be mounted at the central portion 41 of the upper platform 4. The omega shape of the upper platform 4 therefore has the additional advantage of allowing the arrangement of different types of accessories 7 at its central portion 41.
The distance between the two end portions 40 can be modified to position different sized accessories 7, pallets and components carried by the pallet.
With reference, in particular, to
According to an alternative embodiment (not illustrated in the drawings), an alternate form of accessory 7 mounted at the central portion 41 of the upper platform 4 consists of a motorized revolving table arranged at the central portion 41 of the upper platform 4, and of a roller conveyor arranged above the motorized revolving table. In this configuration, the height from the ground of the plane on which the pallet is arranged is greater than in the embodiments in which the accessory 7 consists of just a roller conveyor or a revolving table, but in these cases the pallet is able to rotate freely above the platform 4 with an inverted omega shape comprising the two lifting units.
According to an important characteristic of the invention, the accessory modular device 1A comprises a configurable electronic control unit for automatically operating the lifting units 2 and the accessory 7 according to a predetermined program. The electronic unit of the device 1A can be configured to communicate with an electronic unit of the AGV A. Alternatively, the lifting units 2 and the accessory 7 can be operated manually by an operator O by means of the aforesaid manually controlled pushbutton panel.
The device 1A also comprises a programmable electronic safety controller, configured for communicating with the AGV electronic unit, in order to automatically manage a series of safety functions required according to the specific application in which the accessory device 1 and the AGV A operate (for example, the automatic stop of the vertical movement of the lifting units). It is understood that the electronic device 11, HMI interface 12, the electronic control unit, and/or the programmable electronic safety controller may individually, selectively, or collectively, be used with each of the exemplary accessory devices described herein.
As previously mentioned, the device 1, 1A (and 1B below) can be interfaced with different types of AGV. The electric motors M, M1 are powered by means of the batteries of the AGV A to actuate the lifting units and/or the accessory 7.
Again, with reference to the example illustrated in
According to the preferred embodiment illustrated in the drawings, each lifting unit 2 has a base portion 5 mounted above the base surface 3 of the AGV A. The base portions 5 of the lifting units 2 have a substantially rectangular shape and are transversely fixed above the base surface 3 with respect to the longitudinal direction of the AGV A. Each lifting unit 2 comprises a screw 9 mounted in a freely rotatable manner between two support elements 8, 13, each mounted at a respective end of the base element 5. The base portion 5 further comprises a nut 14 engaged with the screw 9. The nut 14 is slidably mounted on the base portion 5 and is free to move along the base portion 5 and not to rotate when the screw 9 is rotated. As will become clearer below, the screws 9 of the units 2 are synchronously driven by the electric motor M, by means of a transmission belt 24.
Each of the lifting units 2 further comprises a pantograph structure S and a vertically movable upper portion 6. The upper portion 6 has substantially the same shape and dimension as the base portion 5. The pantograph structure S is configured to lower or raise the upper portion 6 when the electric motor M drives the screw 9, which causes the axial displacement of the nut 14. The pantograph structure S consists of two pairs of rods (indicated by the references 19, 20 and 21, 22), which are mounted parallel to each other relative to the longitudinal direction of the base portion 5. As illustrated in
The lifting units 2 are movable in the vertical direction by means of a single electric motor M, which actuates the nut screw mechanism described above.
According to a specific embodiment, the mechanism can also be implemented by means of a recirculating ball screw. Both screws 9 of the lifting units 2 are actuated by means of a transmission belt 24. Following rotation of the screw 9, the nut 14 moves axially along the base portion 5. Movement of the nut 14 causes displacement of the rods 20, 22 which, in turn, cause the upper platform 6 to be lowered or raised. Following lowering or lifting of the upper portion 6, the pins 18 of the rods 19, 22 slide into the slots 17 provided on the upper platform 6, and the rods 19, 22 are also free to move towards the raised or lowered condition.
As illustrated in the example accessory device 1B and pallet P2 shown in
As is evident from the foregoing description, the accessory device according to the invention achieves a series of important advantages.
First of all, the accessory modular device makes it possible to move an object transported by the AGV in a vertical direction, by means of a relatively simple structure that is easily adaptable on different types of AGV.
Secondly, the provision of an upper platform 4 substantially shaped like an omega, allows the central portion to be lower with respect to the end portions, and this allows obtainment of a relatively reduced height from the ground of the objects transported by the AGV, and also to have a seat (central portion of the upper platform 4) to accommodate an additional accessory configured to further facilitate handling of the objects transported by the device and the AGV.
A further advantage of the present invention is that of being able to automatically or manually adapt the height of the object transported by the AGV so that an operator can interact with said object in ergonomic positions. The lifting units 2 can also be automatically activated during an operative moving step of the AGV A.
Finally, the present invention is applicable to different types of AGV and can be used in different types of production environments such as, for example, a “stop-and-go” or a “continuously moving” production line.
Of course, without prejudice to the principle of the invention, the details of construction and the embodiments may vary widely with respect to those described and illustrated, without departing from the scope of the present invention. For example, the lifting units can have a different type of pantograph structure than that illustrated, and the units can be fed by different electric motors (one electric motor for each lifting unit).
Number | Date | Country | Kind |
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17203997.6 | Nov 2017 | EP | regional |