[0001] The present invention refers to an actuation device for the movement of a gate or
barrier of similar type, in particular a swing gate.
[0002] Numerous examples of actuation devices for the movement of gates are known.
[0003] Some actuation devices of known type comprise a gearmotor positioned underground
below a gate supporting upright.
[0004] In other solutions the gearmotor is installed exposed to view, outside the gate structure.
[0005] In further solutions the gearmotor is housed in a cavity of the gate supporting upright.
Typically, in actuation devices for the movement of gates, the structure of the gearmotor
is purposely designed to ensure appropriate movement of the gate which, as is known,
must occur at a relatively low speed with limited travel.
[0006] The actuation devices currently available generally involve the use of gearmotors
with relatively complex structures, costly to produce at industrial level and entailing
difficult operational installation, especially if the gearmotor has to be housed in
the gate supporting structure.
[0007] Currently, furthermore, to ensure the client a sufficiently wide and varied commercial
offering, each model of actuation device must be provided with a series of gearmotors
of different type, each of which can be used in relation to a certain class of gates
to be moved. Obviously this significantly increases production and warehouse management
costs.
[0008] The main aim of the present invention is to provide an actuation device for the movement
of a gate or barrier of similar type which solves the above drawbacks.
[0009] In the context of this aim, one object of the present invention is to provide an
actuation device which has a relatively simple overall structure with reduced overall
dimensions.
[0010] A further object of the present invention is to provide an actuation device which
entails relatively simple operational installation.
[0011] Last but not least, a further object of the present invention is to provide an actuation
device which can be easily produced at industrial level, at competitive costs.
[0012] This aim, in addition to said and further objects which will be illustrated in greater
detail below, are achieved by an actuation device for the movement of a gate or barrier
of similar type according to claim 1 below.
[0013] The actuation device, according to the present invention, has a very compact overall
structure with relatively reduced overall dimensions.
[0014] This allows simple and rapid operational installation in the field, with consequent
limitation of installation times and costs.
[0015] The actuation device according to the present invention features a substantially
modular structure, with a relatively limited number of parts which can be easily assembled,
and is easy and inexpensive to produce on an industrial scale.
[0016] Further characteristics and advantages of the present invention will be illustrated
in greater detail in the description of preferred but not exclusive embodiments of
the actuation device according to the invention illustrated by way of non-limiting
example in the accompanying drawings in which:
- figures 1-2 schematically illustrate the structure of a gate which comprises the actuation
device, according to the invention; and
- figures 3-7 partially illustrate, in a schematic manner, exploded views of a portion
of the actuation device according to the present invention in some examples of operational
installation of the same.
[0017] With reference to the figures cited, the present invention refers to an actuation
device 1 for the movement of a gate 100 or barrier of similar type.
[0018] The gate 100 can be, for example, a swing gate with one or two leaves.
[0019] It comprises at least one rotating leaf 2, which comprises a supporting portion 3
positioned in the vicinity of a hinge zone, where the leaf 2 is combined in a rotating
manner with a fixed support 5, for example a wall or supporting column or the ground.
[0020] The supporting portion 3 is combined in a rotating manner with at least one first
hinge structure 4, integrally connected to the fixed support 5, at a rotation axis
90, which can coincide with (figures 5-6) or be different from (figure 4) a rotation
axis of the leaf 2 with respect to the fixed support 5. In the latter case, the hinge
structure 4 obviously does not have the function of supporting the leaf 2.
[0021] Preferably, the supporting portion 3 develops along the rotation axis 90 in a substantially
perpendicular manner with respect to a base surface 200 of the gate 100, for example
the surface of the ground.
[0022] The supporting portion 3 can advantageously consist of a supporting upright for the
leaf 2, as illustrated in the figures cited.
[0023] It can be rotationally combined with at least one second hinge structure 9, integrally
connected to the fixed support 5.
[0024] Preferably the hinge structure 4 is positioned in the vicinity of a lower end 31
of the supporting portion 3, advantageously below the leaf 2, in a space between the
lower edge 21 of the leaf and the ground or fixed support 5.
[0025] The actuation device 1 comprises a gearmotor 10 for the transmission of a rotational
movement to a first movement transmission member 17, preferably a drive shaft.
[0026] The gearmotor 10 is housed in a first cavity 33 of the supporting portion 3, which
is preferably positioned in the vicinity of the lower end 31 of the supporting portion
and develops along the rotation axis 10.
[0027] Also the gearmotor 10 preferably has a substantially tubular overall structure which
develops along said axis, as illustrated in the figures cited.
[0028] According to the invention, the actuation device 1 comprises a first movement transmission
unit 14, operationally distinct and physically separable from the gearmotor 10.
[0029] The term "functionally distinct" indicates that the movement transmission unit 14
has its own operation, different from that of the gearmotor 10 or the parts thereof.
[0030] The term "physically distinct" indicates that the movement transmission unit has
its own autonomous structure, which can be separated from that of the gearmotor 10
or the parts thereof, for example so that it can be installed or removed without intervening
on the gearmotor 10 or without compromising the structural integrity of the latter.
[0031] The movement transmission unit 14 is operationally combined with the gearmotor 10
by means of the movement transmission member 17.
[0032] It is designed to transmit to a second movement transmission member 143 a rotational
movement with r.p.m. below that of the rotational movement of the movement transmission
member 17.
[0033] According to the invention, the gearmotor 10 and the movement transmission unit 14
are operationally combined respectively with the supporting portion 3 and the hinge
structure 4 so that the rotational movement of the movement transmission member 143
determines the rotation of the supporting portion 3 with respect to the hinge structure
4 and consequent movement of the rotating leaf 2.
[0034] Preferably, as will be seen better below, the movement transmission member 143 is
mechanically coupled with a wall 411 of the hinge structure 4.
[0035] Preferably, furthermore, the gearmotor 10 is operationally combined, advantageously
at a head 13, with a wall of the cavity 33, so that it is integral with the supporting
portion 3 of the leaf2.
[0036] The head 13 can also have a shape complementary to the respective cavity 33, consequently
excluding the need for additional mechanical fastenings. For said purpose, a casing
18 of the gearmotor 10 can be shaped so as to couple mechanically with a wall of the
cavity 33 by means of mating surfaces.
[0037] Alternatively, the casing 18 can be fixed to a wall of the cavity 33 by appropriate
fastening means.
[0038] Preferably, the gearmotor 10 comprises the casing 18, an electric motor (not illustrated)
and one or more reduction stages (not illustrated) suitable for reducing the number
of r.p.m. of the rotational movement imparted by the electric motor.
[0039] The gearmotor 10 can be produced in a traditional way. In particular, it can be a
gearmotor designed and used in applications of different type, for example a tubular
gearmotor for the movement of curtains and shutters.
[0040] In principle, the movement transmission unit 14 can be housed in the same cavity
33 as the supporting portion 3 which houses the gearmotor 10.
[0041] Preferably, however, the movement transmission unit 14 is operationally positioned
so as to be separate from the structure of the leaf 2, in particular the supporting
portion 3.
[0042] In this way, the actuation device 1 can be easily adapted to different gate types
and structures, using the same type of tubular gearmotor 10 and simply modifying some
technical*-construction characteristics of the transmission unit 14.
[0043] Furthermore, by positioning the movement transmission unit 14 outside the structure
of the leaf 2, it is possible to simplify the structure of the unit, minimising the
number of stages of transformation of the movement necessary to obtain the desired
rotation speed for the leaf 2, with consequent reduction of the overall dimensions
and costs.
[0044] Preferably, the movement transmission unit 14 is operationally positioned at the
hinge structure 4.
[0045] In one embodiment of the present invention, illustrated in the figures cited, the
movement transmission unit 14 is advantageously housed in a second cavity 43, defined
in the hinge structure 4.
[0046] Preferably, the hinge structure 4 comprises a base 41 integrally connected to the
fixed support 5 and shaped so as to define the cavity 43.
[0047] The base 41 can comprise a plate 412, which can be fixed to the support 5 by fastening
means 81 and 82, and advantageously shaped so that it can be easily fixed directly
to the ground (figures 3-5) or to a supporting column or wall positioned laterally
with respect to the supporting portion 3 of the leaf 2 (figures 6-7).
[0048] Preferably, from a first wall 412A of the plate 412, shaped so that it is substantially
parallel to the base surface 200, a second wall 411 of the base 41 rises vertically,
shaped so as to define the cavity 43, in cooperation with the wall 412A.
[0049] The wall 411 can be advantageously shaped in a ring and arranged so that it is centred
with respect to the axis of rotation 90.
[0050] The cavity 43 can therefore substantially be a blind cavity with cylindrical shape,
having a lateral wall and a bottom wall defined respectively by the walls 411 and
412A of the base 41. Preferably, the hinge structure 4 comprises a cover 42 integrally
combined with the supporting portion 3 of the leaf 2 and rotationally combined with
the base 41, advantageously at the wall 411.
[0051] In one embodiment of the present invention, illustrated in the figures cited, the
movement transmission unit 14 comprises a toothed pinion gear 141 comprising a first
end operationally combined with the movement transmission member 17 and a second end
combined in a rotating manner with the wall 412A of the base 42, at a suitable coupling
hole.
[0052] The pinion gear 141, advantageously positioned along the axis of rotation 90, is
mechanically coupled with a plurality of gear wheels 142, so as to form a movement
transmission mechanism of epicyclic type.
[0053] Said movement transmission mechanism is advantageously designed to mechanically couple
with the wall 411 of the base 42.
[0054] Advantageously, the above-mentioned movement transmission mechanism comprises three
gear wheels, arranged at 120° with respect to the pinion 141. Alternatively, four
toothed gear wheels can be used arranged at 90° with respect to the pinion 141.
[0055] Preferably, the teeth of the gear wheels 142 engage directly with a toothed crown
wheel 411A obtained at the wall 411 of the base 41.
[0056] The movement transmission unit 14 can advantageously comprise further structural
elements suitable for ensuring optimal functioning, for example the thrust bearing
144 and the supporting elements 145 and 146, housed in the cavity 43.
[0057] From the above it is evident that, in this embodiment of the invention, the teeth
143 of the gear wheels 142 constitute the third movement transmission member of the
movement transmission unit 14.
[0058] Since the crown wheel 411A is integrally fixed to the fixed support 5 and the gearmotor
10 integrally combined with the supporting portion 3 of the leaf 2, the constrain
forces that arise in opposition to the rotational movement imparted by the teeth 143
determine the rotation of the supporting portion 3 with respect to the hinge structure
4, and the consequent movement of the leaf 2, with respect to the fixed support 5.
[0059] It should be noted that in the embodiment of the invention just described, the overall
dimensions are greatly reduced, in particular as regards the movement transmission
unit 14.
[0060] In practice it has been ascertained that the actuation device according to the present
invention achieves the set aims and objects.
[0061] The actuation device 1 has a substantially modular structure, divided into sections
separate in both functional and physical terms, in particular a first section comprising
the gearmotor 10 and a second section comprising the first movement transmission unit
14.
[0062] Said solution allows for the use, even in very different operating situations, of
one single type of gearmotor 10, given that the speed of the rotational movement transmitted
by the actuation device 1 can be easily adapted to the installation requirements of
the gate 100, thanks to the movement transmission unit 14.
[0063] The gearmotor 10 can therefore consist of a device having a standardised compact
structure which is easy to produce with relatively low production costs and simple
to install in the field. The gearmotor 10 can be of the traditional type, designed
and used for applications of different type, for example for the movement of curtains
and shutters.
[0064] The transmission unit 14 allows easy adaptation of the characteristics of said traditional
gearmotor to the requirements of an installation for the movement of gates and barriers
of similar type.
[0065] In fact, the structure of the transmission unit 14 can be easily modified to adapt
the speed of the rotational movement transmitted by the latter to the installation
needs in the field.
[0066] For example, with reference to the embodiment illustrated in figures 3 and 7, it
is sufficient to appropriately modify the transmission ratio of the movement imparted
by the epicyclic transmission mechanism consisting of the pinion 141 and gear wheels
142.
[0067] It is evident that said advantages provide a significant reduction in production
and installation costs with respect to the actuation devices of known type.
[0068] The actuation device 1 can be easily installed in existing gates or barriers.
[0069] The characteristics of the movement installation unit 14 can be easily adapted also
to the type of gate to be moved.
[0070] In particular, it is simple to modify the structure of the movement transmission
unit 14 so as to adapt the functionality offered by the hinge structure 4 to contingent
installation needs.
[0071] For example, for application in gates with two hinges (figure 4) it is sufficient
to eliminate the thrust bearing 144 so that the hinge structure 4 does not have the
function of supporting the leaf2.
[0072] From the above it is evident that the actuation device 1 has a relatively simple
overall structure with reduced overall dimensions.
[0073] Operational installation is therefore easy and the device is particularly simple
and inexpensive to produce and assemble at industrial level.
1. Actuation device (1) for movement of a gate (100) or barrier of similar type, said
gate comprising at least one rotating leaf (2) comprising a supporting portion (3)
combined in a rotating manner, at a rotation axis (90), with at least one first hinge
structure (4), integrally connected to a fixed support (5), said actuation device
comprising a gearmotor (10) designed to transmit a rotational movement to a first
movement transmission member (17), said gearmotor being housed in a first cavity (33)
of said supporting portion, characterised in that it comprises a first movement transmission unit (14), functionally and physically
distinct with respect to said gearmotor, said first movement transmission unit being
operationally combined with said gearmotor by means of said first movement transmission
member, said first movement transmission unit being arranged to transmit to a second
movement transmission member (143) a rotational movement with number of r.p.m. below
the number of r.p.m. of the rotational movement of said first movement transmission
member, said gearmotor and said first movement transmission unit being operationally
combined respectively with said supporting portion and with said first hinge structure
so that the rotational movement of said second movement transmission member determines
the rotation of said supporting portion with respect to said first hinge structure
and the consequent movement of said rotating leaf.
2. Actuation device, according to claim 1, characterised in that said first movement transmission unit is operationally positioned so that it is separate
from said supporting portion.
3. Actuation device, according to claim 2, characterised in that said first movement transmission unit is operationally positioned at said first hinge
structure.
4. Actuation device, according to claim 3, characterised in that said first movement transmission unit is housed in a second cavity (43) defined in
said first hinge structure.
5. Actuation device, according to claim 4, characterised in that said first hinge structure (4) comprises a base (41), integrally connected with said
fixed support (5) and shaped so as to define said second cavity.
6. Actuation device, according to one or more of the preceding claims, characterised in that said first movement transmission unit is mechanically coupled with a wall (411) of
said first hinge structure by means of said second movement transmission member (143).
7. Actuation device, according to claims 5 and 6,
characterised in that said first movement transmission unit comprises:
- a toothed pinion gear (141) comprising a first end, operationally combined with
said first movement transmission member (17), and a second end, combined in a rotating
manner with a first wall (412A) of said base; and
- a plurality of toothed gear wheels (142), operationally combined with said pinion
gear so as to form an epicyclic movement transmission mechanism, mechanically coupled
with a second wall (411) of said base.
8. Actuation device, according to claim 7, characterised in that the teeth of said gear wheels engage with a toothed crown wheel (411A) obtained in
said second wall (411).
9. Actuation device, according to one or more of the preceding claims, characterised in that said gearmotor is operationally combined with a wall of said first cavity, so that
it is integral with said supporting portion.
10. Actuation device, according to claim 9, characterised in that a casing (18) of said gearmotor is shaped so as to couple mechanically with a wall
of said first cavity, by means of mating surfaces.
11. Actuation device, according to claim 1, characterised in that said first movement transmission unit is housed in said first cavity.
12. Actuation device, according to one or more of the preceding claims, characterised in that said supporting portion (3) develops along said axis of rotation in a substantially
perpendicular manner with respect to a base surface (200) of said gate, said first
cavity and said first hinge structure being positioned near a lower end (31) of said
supporting portion.
13. Gate (100) or barrier of similar type characterised in that it comprises an actuation device, according to one or more of the preceding claims.