Actuating device for upper sheet-pressing tools of an industrial machine for the bending of metal elements
11167336 ยท 2021-11-09
Assignee
Inventors
Cpc classification
B21D5/047
PERFORMING OPERATIONS; TRANSPORTING
F16H55/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B21D11/20
PERFORMING OPERATIONS; TRANSPORTING
F16H55/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B21D5/04
PERFORMING OPERATIONS; TRANSPORTING
International classification
B21D22/02
PERFORMING OPERATIONS; TRANSPORTING
F16H55/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H55/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An actuating device for actuating a contractible element for a bending element of an industrial machine for bending metal elements comprises a lower component and an upper component apt to move relative to each other from a first position to a second position, the actuation device including a connecting plate configured to be connected to the lower component of the contractible element. A rack and pinion gear unit is also set out and includes a pinion having an axis, at least a first rack and a second rack actuated simultaneously by the pinion. The first rack is configured to be fixed to the upper component and the second rack is configured to be coupled to the connecting plate. The pinion is operable in a first direction of rotation to move the first rack and the second rack transverse to the axis in opposite directions. The pinion is operable in a second direction of rotation, contrary to the first one, to move the racks in opposite directions towards a second position.
Claims
1. An actuating device configured to actuate a contractible element of a bending means of an industrial machine for bending metal elements provided with a lower component and an upper component apt to move relative to each other from a first position to a second position, the actuation device comprising: a rack and pinion gear unit; a connecting plate configured to be connected to the lower component of said contractible element; said rack and pinion gear unit comprising a pinion having an axis, at least a first rack and a second rack, said first rack and said second rack are actuated simultaneously by said pinion so as to pass from a first position to a second position; said first rack being configured to be fixed to the upper component of said contractible element; the second rack being configured to be coupled to the connecting plate; said pinion being operable in a first direction of rotation to move the first rack along a first trajectory of translation, transverse to said axis and to move said second rack along a second trajectory of translation, transverse to said axis, such that said first rack and said second rack advance in opposite directions towards the first position of each of said first rack and said second rack; said pinion being operable in a second direction of rotation, contrary to said first direction of rotation, to move said racks in opposite directions towards the second position of each of said first rack and said second rack.
2. The actuating device according to claim 1, wherein said rack unit comprises a third rack suitable for actuating said pinion and movable along a third trajectory of translation transverse to said axis and to said first and second translation trajectories.
3. The actuation device according to claim 2, wherein the third rack comprises a slot for receiving an actuator to actuate the movement of the third rack.
4. The actuating device according to claim 1, further comprising thrust means coupled to said first rack or to said second rack and arranged to push said first and second rack in opposite directions and divergent so as to land spontaneously in the first position.
5. A contractible element for bending means of an industrial machine for bending flat metal elements, said contractible element comprising: a lower component; an upper component; the lower component configured to contact a flat metal element to be bent; the lower component and the upper component configured to move relative to each other from a first position to a second position, an actuating device configured to actuate a contractible element of a bending means of an industrial machine for bending metal elements provided with a lower component and an upper component apt to move relative to each other from a first position to a second position, the actuation device comprising: a rack and pinion gear unit; a connecting plate configured to be connected to the lower component of said contractible element; said rack and pinion gear unit comprising a pinion having an axis, at least a first rack and a second rack, said first rack and said second rack are actuated simultaneously by said pinion so as to pass from a first position to a second position; said first rack being configured to be fixed to the upper component of said contractible element; the second rack being configured to be coupled to the connecting plate; said pinion being operable in a first direction of rotation to move the first rack along a first trajectory of translation, transverse to said axis and to move said second rack along a second trajectory of translation, transverse to said axis, such that said first rack and said second rack advance in opposite directions towards the first position of each of said first rack and said second rack; said pinion being operable in a second direction of rotation, contrary to said first direction of rotation, to move said racks in opposite directions towards the second position of each of said first rack and said second rack, wherein said first rack is configured to be fixed to the upper component of said contractible element; wherein the second rack is configured to be coupled to the connecting plate; wherein said pinion is operable in a first direction of rotation to move the first rack along a first trajectory of translation, transverse to said axis and to move said second rack along a second trajectory of translation, transverse to said axis, such that said first rack and said second rack advance in opposite directions towards the first position of each of said first rack and said second rack; and wherein said pinion being operable in a second direction of rotation, contrary to said first direction of rotation, to move said racks in opposite directions towards the second position of each of said first rack and said second rack; and wherein when said actuating device is operated, said lower component and said upper component pass from the first position to the second position and vice versa.
6. The contractible element according to claim 5, wherein said upper component has a first horizontal bore for housing said pinion in combination with a second horizontal bore for housing said third rack, such that said pinion can be actuated by said third rack.
7. The contractible element according to claim 5, wherein said upper component further comprises a horizontal slot arranged in communication with said second horizontal bore and configured to render the second horizontal bore externally accessible and said third rack externally operable.
8. A method for actuating a contractible element for bending means of an industrial machine for bending metal elements, the industrial machine provided with a lower component and an upper component configured to move relative to each other from a first position to a second position, wherein the contractible element comprises a rack and pinion gear unit comprising a pinion having an axis, at least a first rack and a second rack, the method comprising the steps of: operating said pinion in a first direction of rotation to move the first rack along a first trajectory of translation, transverse to said axis and to move said second rack along a second trajectory of translation, transverse to said axis, such that said first rack and said second rack advance in opposite directions towards the first position of each of said first rack and said second rack; and operating said pinion in a second direction of rotation, contrary to said first direction of rotation, to move said racks in opposite directions towards the second position of each of said first rack and said second rack.
Description
BRIEF DESCRIPTION OF THE DRAWING
(1) The cited purposes and advantages, as well as others which will emerge hereinafter, will become more apparent from the description below which follows, relating to preferred embodiments of the upper sheet-pressing tool of the present disclosure, provided as an illustrative and non-limiting example, with the aid of the accompanying drawing tables, wherein:
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DETAILED DESCRIPTION
(15) The industrial machine for the bending of flat metal elements, such as for example a plate, is illustrated in
(16) As can be seen in
(17) In accordance with the invention, the bending means 4 comprises upper sheet-pressing tools 40, lower sheet-pressing tools 41, and a blade assembly.
(18) The upper sheet-pressing tools 40 have substantially the same vertical section, and comprise fractional elements 42, incremental elements 43 and contractible elements 100.
(19) In
(20) Specifically, in reference to
(21) The rack and pinion gear unit 20 comprising a pinion 21 having an axis X, at least a first rack 22 and a second rack 23. These first and second racks 22, 23 are actuated simultaneously by the pinion 21. The first rack 22 is apt to be fixed to the upper component 46 of the contractible element 100. The second rack 23 is apt to be coupled to the connecting plate 30 and therefore to the shaped component 44.
(22) The first rack 22 is orientated in such a way that, when actuated by the pinion 21, it moves according to a first direction A1 in relation to axis X. The second rack 23, when actuated by the pinion 21, is guided along a second direction A2, opposite the first direction A1. In other words, the first rack 22 and the second rack 23 advance in opposite directions along a direction transverse to axis X, moving the upper component 46 and lower component 44 away from one another, or else bringing them closer to one another.
(23) Specifically, the first rack 22 moves along a first trajectory of translation A1, parallel to the second translation trajectory A2, along which the second rack 23 moves. When the first rack 22 moves away from the lower component 44, the second rack 23 moves away the lower component 44 from the upper component 46, the movement of the lower component 44 being guided by guiding means of the plate 30 according to the prior art, up to a contracting position, while when the first rack 22 moves towards the lower component 44, the second rack 23 moves the lower component 44 towards the upper component 46, up to an extending position, or vice versa.
(24) According to a variant of the invention, shown in
(25) The upper component 46 is integral to the central body 45 and has a first vertical bore 47 that, as shown in the preferred embodiment of
(26) In any event, this first vertical bore 47 is apt to house the first rack 22. Preferably, therefore, the first rack 22 is rendered integral to the fixing means 25, and in turn to the upper component 44, in such a way that they move together.
(27) Equally preferably, according to the invention, it is possible to provide, coupled to the first rack 22 or to the second rack 23, thrust means 27 (for example: a spiral spring) for pushing the two racks in opposite directions and divergent, so that the contractible element of the invention results spontaneously in the expanded position, as shown in
(28) In the case wherein the thrust means comprise a spiral spring, as shown in
(29) In the operating position, on the other hand, as shown in
(30) A second vertical bore 49 is apt to house the second rack 23. The first vertical bore 47 has the inlet 48 on the upper horizontal surface of the same upper component 46. The second vertical bore 49 is accessible from the front by means of a vertical slot 31, so as to pass a slide 32, apt to fasten the second rack 23 and the plate 30. In this way, the plate 30 is integral to the second rack 23 and transmits to the shaped component 44 the movement of the same second rack 23, making it possible for it to contract upon itself according to the prior art.
(31) There is also a first horizontal bore 11, apt to house the pinion 21. If necessary, it is also possible to provide for a second horizontal bore 12 apt to house the third rack 24. On the front it is further possible, advantageously, to provide for a horizontal slot 13, at the second horizontal bore 12, such that it is rendered accessible.
(32) In such a case in fact, the third rack 24 can have a slot 28, apt to receive an actuator. When the actuator engages with the slot 28, the actuator can carry out a movement along the axis A3 (or substantially within the slot 13), and therefore actuate the movement of the third rack 24, which in turn actuates the movement of the pinion 21 and consequently of the first and second racks 22 and 23, in order to expand or contract the contractible element 100.
(33) The operation of the industrial machine 1 for the bending of flat metal elements is as follows. The actuators are located at a first insertion position. The contractible elements 100 are in the expanded position, resting upon the surface of the sheet being worked. The bending means 4 have fractional elements 42, incremental elements 43, and contractible elements 100 all arranged with the upper components 46 aligned with one another, in such a way as to have a single surface (
(34) During construction, the industrial machine that is an object embodiment of the present disclosure can be subjected to further modifications with respect to those already highlighted and consisting, for example, of a support frame that is different to that shown in the following figures and only summarily previously described. Furthermore, in other embodiments of the invention, not shown hereinafter, the actuation means may be of a different typology to that indicated during the course of the preceding descriptive text. In addition, further embodiments of the industrial machine 5 claimed herein, not shown, may include gripping and feeder means other than those upon which the description of the preferred embodiment of the invention was based, which does not invalidate the main and innovative advantages involved in the latter. In addition, the movable working plane of the industrial machine of embodiments of the present disclosure can assume another construction composition in other construction variants of the invention, not yet shown.
(35) Other embodiments of the industrial machine of the embodiments of the present invention, not yet shown in the enclosed drawings, may provide for the actuation means to move the gripping and feeder means according to only one vertical direction or else only one horizontal direction in order to determine the displacement thereof with respect to the working plane.
(36) Finally, alternative embodiments of the invention can be possible, not shown in the enclosed drawings, wherein the bending means of the flat metal element have a different composition from that obtainable from such designs.
(37) It is clear, finally, that numerous other variants may be applied to the industrial machine under examination, without departing from the principles of novelty that are inherent to the inventive idea expressed herein, as it is also clear that, in the practical embodiment of the invention, the materials, shapes and dimensions of the details illustrated can be any, depending upon the requirements, and can be replaced with others that are technically equivalent.
(38) Where the construction characteristics and techniques mentioned in the subsequent claims are followed by markings or reference numbers, these markings were introduced with the sole purpose of increasing the intelligibility of the claims and, consequently, they do not have a limiting effect upon the interpretation of each element identified, purely by way of example, by such reference markings.