ROLL FEEDER DEVICE
20180312357 ยท 2018-11-01
Inventors
Cpc classification
B65H19/123
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/41368
PERFORMING OPERATIONS; TRANSPORTING
B65H19/12
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A roll feeding device, comprising: a support shaft (10), equipped with a longitudinal axis (Y) and provided to support one or more rolls (C), which comprises a first end (11) and a second end (12); one or more pusher arms (20), movable along a direction parallel to the longitudinal axis (Y) in both directions, each of which is movable between an active position, in which it is arranged alongside a roll (C) and can come into contact with it during a movement parallel to the longitudinal axis (Y), and an inactive position.
Claims
1. A roll feeder device, characterised by the fact it comprises: a support shaft (10), equipped with a longitudinal axis (Y) and configured to support one or more rolls (C), which includes a first end (11) and a second end (12); one or more pusher arms (20), movable along a direction parallel to the longitudinal axis (Y) in both directions, each of which is movable between an active position, in which it is positioned at the side of a roll (C) and may come into contact with it during a movement parallel to the longitudinal axis (Y) and an inactive position.
2. The feeder device according to claim 1, wherein each pusher arm (20), in the active position, has a first end (21) placed near the support shaft (10), while in the inactive position, it is positioned away from the support shaft (10).
3. The feeder device according to claim 1, wherein each pusher arm (20) is movable in rotation around an axis parallel to the longitudinal axis (Y) between the active and inactive positions.
4. The feeder device according to claim 1, wherein each pusher arm (20) is associated with a carriage (23) sliding in a direction parallel to the longitudinal axis (Y).
5. The feeder device according to claim 4, wherein each pusher arm (20) is associated with the carriage (23) by means of a rotary pin (22) parallel to the longitudinal axis (Y) and provided with an actuator (24), associated with the carriage (23), for rotation between the active position and the inactive position.
6. The feeder device according to claim 1, comprising a plurality of pusher arms (20), parallel to each other and arranged so as to be able to be interposed among a plurality of rolls (C).
7. The feeder device according to claim 1, wherein the first end (11) of the support shaft (10) is provided with a striking element (11a) for a roll (C).
8. The device according to claim 7, wherein the striking element (11a) for a roll includes a disk integral in rotation with the support shaft (10).
9. The device according to claim 8, wherein the support shaft (10) and the striking element (11a) are rotated about the longitudinal axis (Y) by means of a rotary actuator, so as to determine the unwinding of the roll (C).
Description
[0009] Characteristics and advantages of the present invention will more fully emerge from the following detailed description of an embodiment of the invention, as illustrated in a non-limiting example in the accompanying drawings, in which:
[0010]
[0011]
[0012]
[0013] The roll feeder device according to present invention comprises a support shaft (10), provided with a longitudinal axis (Y). As shown in the figures, the support shaft (10) is provided to support one or more rolls (C). The rolls (C) are inserted on the support shaft (10) at a central opening, so as to be located concentric to the longitudinal axis (Y) and parallel to each other.
[0014]
[0015] The support shaft (10) comprises a first end (11) and a second end (12). In proximity to the first end (11) of the support shaft (10) a feeding position of a roll (C) is defined. In such feeding position, the roll (C) can be grabbed by an automatic feeder, not illustrated, which grasps its leading end (B) to offer it to a cutting device, not illustrated, of a machine for producing abrasive discs, of the type mentioned in the introductory part of the description. For that purpose, the first end of the support shaft (10) is provided with a striking element (11a), in contact with which a roll (C) can strike sliding along the support shaft (10), as will be clarified below. The support shaft (10) and the striking element (11a) are set in rotation about the longitudinal axis (Y), by means of an actuator (15), for example a rotary actuator (15) associated with the support shaft (10) through a belt (16), for determining the unwinding of the roll (C). Preferably, the striking element (11a) is integral in rotation with the support shaft (10).
[0016] The feeder device comprises one or more pusher arms (20), movable along a direction parallel to the longitudinal axis (Y) in both directions. In particular, the pusher arms (20) are movable along the support shaft (10) for a forward stroke, directed towards the first end (11) of the support shaft (10), and for an opposite return stroke.
[0017] Each of the pusher arms (20) is movable between an active position, in which it is arranged alongside a roll (C) and can come into contact with it during a movement parallel to the longitudinal axis (Y), and an inactive position. In the inactive position, each pusher arm (20) is able to surpass the first end (11) of the support shaft (10). When it is in its active position, each pusher arm (20), sliding along the support shaft (10) in the forward stroke, is able to push a roll (C) towards the first end (11) and in contact with the striking element (11a).
[0018] In the embodiment shown, each pusher arm (20) has a first end (21) which, in the active position, is arranged in proximity to the support shaft (10). Advantageously, the first end (21) may be C-shaped so as to partially embrace the support shaft (10). The C-shaped conformation further defines a central and relatively large contact surface with the roll (C), which allows the roll (C) to be pushed along the support shaft (10) without jamming. In the inactive position, the first end (21) of the arm (20) is instead positioned away from the support shaft (10).
[0019] Each pusher arm (20) is movable in rotation around an axis (T) parallel to the longitudinal axis (Y) between the active and inactive positions. In the active position, visible in
[0020] The pusher arms (20) are associated with a carriage (23) sliding in a direction parallel to the longitudinal axis (Y), by means of a prismatic guide. An actuator means (25) comprising, for example, a rotary actuator associated with a rack are provided to determine the sliding of the carriage (23).
[0021] In particular, each pusher arm (20) is associated with the carriage (23) by means of a rotary pin (22) parallel to the longitudinal axis (Y). Each pin (22) is associated with a U-shaped bracket (22a), which is solidly constrained to the carriage (23). Each pusher arm (20) is provided with an actuator (24), associated with the carriage (23), for the rotation between the active position and the inactive position. For example, the actuator (24) may be in the form of a piston which, at one end, is pivoted to the carriage (23), at the other end it is pivoted to the related pusher arm (20).
[0022] In the embodiment shown, the feeder device according to the present invention comprises a plurality of pusher arms (20), parallel to each other and arranged so as to be able to be interposed among a plurality of rolls (C). In particular, the version shown comprises five pusher arms (20), with which five rolls may be interposed (C). Each roll (C) is interposed between its own pusher arm (20) and the striking element (11a), i.e. each roll (C) is adjacent to its own pusher arm (20) on the side of the striking element (11a), so that the pusher arm (20), moving towards the striking arm (11a), can push its own roll (C).
[0023]
[0024] Once all the rolls are empty, the carriage (23) returns to its initial position, and a new group of rolls can be mounted on the support shaft (10). The pusher arms (20) can return to the active position, each alongside its own roll (C), as shown in
[0025] The feeder device has been illustrated with five pusher arms (20), but it could be provided with a different number of pusher arms (20).
[0026] For example, the feeder device could be realised with only one pusher arm (20). In that case, the rolls (C) can be loaded onto the support shaft (10) in the same position as
[0027] The feeder device according to the present invention achieves important advantages.
[0028] Once a predefined number of rolls (C) has been loaded onto the support shaft (10), the feeder device in fact allows an empty roll to be replaced with a new one totally automatically, without the need for an operator to intervene and whose job is essentially reduced to the initial loading of the rolls (C).
[0029] The device further has a simple and reliable structure, which does not require any particular maintenance operations.