PROCESSING MACHINE AND PROCESSING METHOD
20230137361 ยท 2023-05-04
Inventors
Cpc classification
B23Q7/045
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23Q7/03
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Processing machine and related operating method, wherein the processing machine is a machine for machining components having a body within which there are a chamber and a movement bridge which is movable on the upper part of the chamber, wherein the processing machine includes a positioning device integrated in the structure of the bridge and equipped with grabbing devices for the grabbing of the element to be machined and for the transportation of the element to be machined towards and from a machining bench of the machine.
Claims
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26. Processing machine of components comprising a body within which a chamber and a movement bridge which is movable on the upper part of the chamber along a Y axis are present, the bridge being provided with an arm which is movable along the bridge according to an X axis, the arm bearing a machining head which is vertically movable on the arm along a Z axis, the head being provided with machining tools of the components, the machine comprising a first zone for machining, in which a bench is located which includes supports to support at reciprocally opposite ends one of the components which is shaped as an oblong element to be machined, the machine comprising a control unit containing machining programs for controlling the movement of bridge, arm and head, wherein the processing machine includes a positioning device for the grabbing of the element to be machined and for the transportation of the element to be machined from a second zone of the machine, which is a charging zone of the element to be machined, to the bench, in which the positioning device is integrated in the structure of the bridge, the positioning device being provided with an independent movement system along the X axis and the control unit containing movement programs for controlling the movement of the bridge, and of the positioning device for automatic or semi-automatic charging or discharging operations of the element to be machined with respect to the bench, in such a way that the charging or discharging movements along the Y axis occur by means of the movement of the bridge and along the X axis occur by means of movement of the positioning device which includes grabbing devices equipped with lifting device and hooking system for hooking, lowering and lifting of the element to be machined, wherein the grabbing devices of the positioning device include a first grabbing device and a second grabbing device, the positioning device further comprising guides, in which the guides transversely extend along the X axis direction along the width development of the bridge, the first grabbing device and the second grabbing device being slidable along the guides independently one another.
27. Processing machine according to claim 26, wherein each of the grabbing devices is provided with a respective gear-motor group for the movement along the guides under the control of the control unit of the processing machine.
28. Processing machine according to claim 27, wherein the positioning device includes a rack which is placed parallel to the guides and an engagement interface for conversion of the rotary motion of the gear-motor group into a linear motion of the respective grabbing device along the rack.
29. Processing machine according to claim 26, wherein each of the grabbing devices includes a plate provided with carriages for sliding on the guides.
30. Processing machine according to claim 29, wherein the plate supports the lifting device which is motorized and suitable for controlling the lowering and the lifting of the hooking system which is located at the end of a wrap-around flexible means for lowering and lifting the element to be machined.
31. Processing machine according to claim 30, wherein the lifting device is selected from the group consisting of a lifting device in the form of hoist and a lifting device in the form of winch.
32. Processing machine according to claim 26, wherein the positioning device is a separate device with respect to the bridge, the positioning device comprising a mounting structure for fixing it to the bridge.
33. Processing machine according to claim 26, wherein the positioning device is an integrated device with respect to the bridge, the components of the positioning device being directly fixed on the structure of the bridge.
34. Processing machine according to claim 26, wherein the guides of the positioning device form a guide system both for the movement of the grabbing devices and for the movement of the arm bearing the machining head.
35. Processing machine according to claim 26, wherein the second zone of the machine, that is the charging zone of the element to be machined, is further a zone of discharging of the element to be machined from the machine.
36. Processing machine according to claim 35, wherein the machine includes a parking zone of the machining head, the first zone for machining and the second zone and the parking zone transversely developing across along the X axis of the machine and being placed one after the other according to a configuration, in which the first zone is placed between the second zone and the parking zone along the Y axis of the machine.
37. Processing machine according to claim 26, wherein the machine includes a third zone, the first zone for machining and the second zone and the third zone transversely developing across along the X axis of the machine and being placed one after the other along the Y axis of the machine according to a configuration, in which the first zone for machining is placed between the second zone and the third zone, the third zone constituting an unloading zone of element to be machined for unloading of the element to be machined from the machine, the second zone for charging and the third zone for unloading being placed at opposite sides with respect to the first zone for machining, in such a way that the machine constitutes a pass-through machine for loading the elements to be machined from a loading side and for unloading the elements to be machined from the opposite side with respect to the loading side.
38. Processing machine according to claim 26, wherein the supports form a lathe for rotation of the element to be machined.
39. Processing machine according to claim 26, wherein the supports of the bench include a coupling system with automatic centring and locking for engagement of the element to be machined.
40. Processing machine according to claim 26, wherein the supports of the bench comprise a first support and of a second support, at least one of the two supports selected between the first support and the second support, being transversely movable along the width development axis of the bench according to an approach or departing direction with respect to the other of the two supports, in order to allow an increase of the space between the first support and the second support during the positioning and removal operations of the element to be machined and a decrease of the space with locking action of the element to be machined in the provided position of machining on the bench.
41. Processing machine according to claim 40, wherein the second support is transversely movable along the width development axis of the bench and the first support is fixed.
42. Processing machine according to claim 26, wherein the processing machine is provided with a pit located below the bench, the bench being supported by a base which includes a lifting and lowering system of the bench for the movement of the bench between a position at least partially retracted inside the pit and an extracted position from the pit, in which the bench is in the machining condition by means of the machining head.
43. Processing machine according to claim 42, wherein it includes a retractable cover system of the pit forming a plane aligned with the ground surface, so that the entire surface of the chamber of the machine becomes a single walk-over floor of the chamber for further machining operations, when the bench is in the position at least partially retracted inside the pit.
44. Processing machine according to claim 43, wherein it includes a movable machining table which is provided with an upper surface for fixing further pieces to be machined having a smaller size than the size of the elements to be machined, the machining table being movable on transport means of the table for insertion into the chamber when the bench is in the position at least partially retracted inside the pit and the retractable cover system of the pit forms said walk-over floor which is aligned with the ground surface.
45. Operating method of a processing machine of components comprising a body within which a chamber and a movement bridge, which is movable on the upper part of the chamber along an Y axis are present, the bridge being provided with an arm, which is movable along the bridge according to a X axis, the arm bearing a machining head, which is vertically movable on the arm along a Z axis, the head being provided with machining tools of the components, the machine comprising a first zone for machining, in which a bench is located which includes supports to support at reciprocally opposite ends one of the components, which is shaped as an oblong element to be machined, the machine comprising a control unit containing machining programs for controlling the movement of bridge, arm and head, in which the method includes: a loading phase of the element to be machined inside the chamber of the processing machine in a loading zone by means of transport means of the element to be machined; a charging phase of the element to be machined on the bench; a machining phase of the element to be machined on the bench by means of movement phases of the bridge, of the arm and of the machining head in the first zone for machining; a discharging phase of the element to be machined from the bench; an unloading phase of the element to be machined from the chamber of the processing machine; in which the processing machine comprises the positioning device integrated in the structure of the bridge with said grabbing devices, the processing machine comprising said second zone for charging the machine, the charging phase of the element to be machined on the bench being an automatic or semi-automatic charging phase that includes: a movement phase of the movement device along the Y axis from a waiting position of the movement device to a pickup position of the movement device for charging the element to be machined in the second zone for charging; a movement phase of the positioning device along the X axis from a waiting position of the positioning device to a pickup position of the positioning device for charging the element to be machined; a hooking and lifting phase of the element to be machined by means of the hooking system of the positioning device; a transportation phase of the element to be machined from the loading position in the second zone of charging towards the machining bench in the first zone for machining, by movement means of the movement device along the Y axis; a blocking phase of the element to be machined at supports of the machining bench; a release phase of the element to be machined from the hooking system of the positioning device; in which the semi-automatic or automatic charging phase is carried out in such a way, that the charging movements along the Y axis are made by means of movement of the bridge and along the X axis are made by means of movement of the positioning device integrated to the bridge characterised in that the processing machine is made according to claim 26, the movement phase of the positioning device along the X axis being a movement phase of first grabbing device and second grabbing device along the guides that transversely extend along the direction of the X axis along the development of the width of the bridge, according to a configuration in which the first grabbing device and the second grabbing device are slidable along the guides independently one another.
46. Operating method of a processing machine of components according to claim 45, wherein the discharging phase of the element to be machined from the bench is an automatic or semi-automatic discharging phase that includes: a movement phase of the movement device along the Y axis from a waiting position of the movement device to a pickup position of the movement device for discharging the element to be machined; a movement phase of the positioning device along the X axis from a waiting position of the positioning device to a pickup position of the positioning device for charging the element to be machined; a hooking and lifting phase of the element to be machined by means of the hooking system of the positioning device; a transportation phase of the element to be machined from the position on the machining bench towards an unloading position, by means of movement of the movement device along the Y axis; a lowering phase of the element to be machined on transport means of the element to be machined; a release phase of the element to be machined from the hooking system of the positioning device (10); in which the automatic or semi-automatic discharging phase of the element to be machined with respect to the bench is carried out in such a way that the movements along the Y axis are made by means of movement of the bridge and along the X axis are made by means of movement of the positioning device integrated to the bridge.
47. Operating method of a processing machine of components according to claim 45, wherein each of the grabbing devices of the processing machine includes a plate provided with carriages for sliding on the guides, wherein the plate supports the lifting device which is motorized and suitable for controlling the lowering and the lifting of the hooking system which is located at the end of a wrap-around flexible means for lowering and lifting the element to be machined, wherein the lifting device is selected from the group consisting of a lifting device in the form of hoist and a lifting device in the form of winch, wherein the lifting phase of the element to be machined being a control phase of the motorized lifting device of each of the grabbing devices in such a way that the lifting device of the first grabbing device and the lifting device of the second grabbing device are simultaneously moved in a synchronized way during the lifting of the element to be machined.
48. Operating method of a processing machine of components according to claim 45, wherein the supports of the processing machine form a lathe for rotation of the element to be machined, the method further comprising an unloading phase of the element to be machined when machining is ended, in which the unloading phase occurs in the third zone of the machine, the first zone for machining and the second zone and the third zone transversely developing along the X axis of the machine and being placed one after the other along the Y axis of the machine according to a configuration, in which the first zone for machining is placed between the second zone and the third zone, the third zone constituting an unloading zone of the element to be machined for unloading the element to be machined from the machine, the second zone for charging and the third zone for unloading being placed on opposite sides with respect to the first zone of machining in such a way that the machine constitutes a pass-through machine for loading the elements to be machined on one side and unloading the elements to be machined at the opposite side with respect to the loading side, in which the loading phase of the machine occurs at the opposite side of the machine with respect to the side where the unloading phase occurs.
Description
DESCRIPTION OF THE DRAWINGS
[0017] Hereinafter a solution is described with reference to the enclosed drawings, which are to be considered as a non-limiting example of the present invention, in which:
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[0031]
DESCRIPTION OF THE INVENTION
[0032] The present invention relates to (
[0033] The processing machine (1) comprises a body (5) of the machine defining inside it a chamber (35) within which occurs the machining. The machining chamber (35) is (
[0034] Furthermore, the processing machine (1) is equipped with a second zone (42) constituting a front access area of the processing machine (1), the function of which will be explained in detail in the following part of the present description. A third zone (43) constitutes a back-access area of the processing machine (1).
[0035] In some embodiments, the second zone (42) of the machine (1), that is the charging zone of the element to be machined (7), is furthermore a discharging zone of the element to be machined by the machine (1) and, in that case, the third zone (43) can be intended to be a parking zone of the machining head (26), the first zone for machining (41) and the second zone of (42) and the parking zone transversely developing across along the X axis (38) of the machine and being placed one after the other according to a configuration in which the first machining zone (41) is placed between the second zone (42) and the parking zone along the Y axis (37) of the machine. The parking area of the machining head (26) can be used to maintain the machining head in protected position during the predisposition operations for charging the element to be machined (7) on the bench (9) and for maintenance operations.
[0036] In other embodiments (
[0037] The processing machine (1) is equipped with upper covers (33, 34) and with side covers (29, 30) in order to make the chamber (35) a closed environment and the processing machine (1) is further equipped (
[0038] The processing machine (1) is equipped (
[0039] A control unit (6), preferably of the numerically controlled type, controls the longitudinal movements of the bridge (13) along the Y axis (37), the transverse movements of the arm (25) along the X axis (38) and the movements along the Z axis (39) of the machining head (26).
[0040] In this respect the control unit (6) can position the machining head (26) in any point of spatial coordinates (X, Y) on the plane X-Y of the processing machine (1), defined by the cartesian axes X axis (38) and Y axis (37) by means of the longitudinal movement of the bridge (13) along the Y axis (37) and by means of the longitudinal movement of the arm (25) along the X axis (38). Furthermore, the control unit (6), for each point of spatial coordinates (X, Y), can position the machining head (26) vertically in any point along a spatial coordinate (Z) on the Z axis (39) of the processing machine (1), by means of the lifting and lowering movement of the machining head (26) supported by the arm (25).
[0041] The machining head (26) is, in turn, an articulated head suitable for independently moving on X, Y, Z axes a machining tool supported on the head itself. The processing machine (1) includes (
[0042] As explained, there are considerable problems related to the machining machines of the prior art regarding charging and discharging operations of large-sized elements to be machined. As a non-limiting example for the purposes of the present invention, in case of tubular elements with diameters of about 1000-2000 mm, length between 800 and 6500 mm, weights can also reach to 2000 kg. The elements to be machined with the inventive machine can be in the form of plates or, in general, elements with polygonal or circular section internally hollow or full, having very big and great length sectional sizes. Charging and discharging phases of the machine by means of specifically equipped bridge cranes or forklifts are therefore complex, slow and may also involve the risk of damaging the same elements to be machined and the machine or parts of it. Furthermore, in order to allow the movement by means of such systems, the machine must be opportunely sized to allow the access by means of bridge cranes or by means of forklifts equipped with bulky lifting systems and which must perform the required access manoeuvres, with the consequence that the machines of the prior art must be very big, with an increase in the costs, increase in the occupied space in the production plant, greater difficulty in containing the machining dust, difficulty in obtaining high machining precision because of the constructive tolerances in large machines.
[0043] The inventive processing machine (1) includes the use (
[0044] The positioning device (10) includes (
[0045] Thanks to this solution, the positioning device (10) uses the already existing movement of the bridge (13) structure along the Y axis direction (37) of the machine and is sufficient for the positioning device (10) to realize the movement along the X axis (38) of the machine by means of the described system comprising the couple of grabbing devices (21, 22) and the lifting and lowering movement along the Z axis (39) of the machine, by means of the described lifting device (24) supported by each grabbing devices (21, 22).
[0046] This solution is very advantageous, not only because it is possible to use more movements of the machine to perform different aims, but also because it allows to solve the problems of the prior art in relation to the charging of large-sized elements to be machined causing significant increase in the volume of the machines and reductions in precision performances of the processes carried out. Specifically, the movement along the Y axis (37) of the positioning device (10) uses the movement along said axis made by the bridge (13) for the movement of the machining head (26), simplifying the overall system, so as be able to achieve the described advantages and to obtain a compact processing machine able to process elements (7) of significant sizes.
[0047] In one embodiment, the guides (15) of the positioning device (10) can be used both for the movement of the grabbing devices (21, 22) of the positioning device (10) and for the movement of the arm (25) supporting the machining head (26).
[0048] Taking into consideration now an example (
[0059] At this point (
[0060] In general, the operating method of a processing machine (1) of components (7, 47) relates to a machine (1) comprising a body (5) within which a chamber (35) and a movement bridge (13) which is movable on the upper part of the chamber (35) along an Y axis (37) are present, the bridge (13) being provided with an arm (25) which is movable along the bridge (13) according to a X axis (38), the arm (25) bearing a machining head (26) which is vertically movable on the arm (25) along a Z axis (39), the head (26) being provided with machining tools of the components (7, 47), the machine (1) comprising a first zone (41) for machining, in which a bench (9) is located which includes supports (31, 32) to support at reciprocally opposite ends one of the components (7, 47) which is shaped as an oblong element to be machined (7), wherein the supports (31, 32) support the element to be machined (7). In some embodiments, the supports (31, 32) can be configured in such a way to form a lathe for rotation of the element to be machined (7). With the term oblong, it is intended to indicate an element having a greater length than the sectional sizes. The machine (1) includes a control unit (6) containing machining programs for the control of the movement of bridge (13), arm (25) and head (26). In particular, the method includes [0061] a loading phase of the element to be machined (7) inside the chamber (35) of the processing machine (1) in a loading zone by means of transport means (44) of the element to be machined; [0062] a charging phase of the element to be machined (7) on the bench (9); [0063] a machining phase of the element to be machined (7) on the bench (9) by means of movement phases of the bridge (13), of the arm (25) and of the machining head (26) in the first zone (41) for machining; [0064] a discharging phase of the element to be machined (7) from the bench (9); [0065] an unloading phase of the element to be machined (7) from the chamber (35) of the processing machine (1).
[0066] The charging phase of the element to be machined (7) on the bench (9) is an automatic or semi-automatic charging phase including: [0067] a movement phase of the movement device (2) along the Y axis (37) from a waiting position to a pickup position for charging the element to be machined (7) in the second zone (42) for charging; [0068] a movement phase of the positioning device (10) along the X axis (38) from a waiting position to a pickup position of the element to be machined (7); [0069] a hooking and lifting phase of the element to be machined (7) by means of the hooking system of the positioning device (10); [0070] a transportation phase of the element to be machined (7) from the loading position in the second zone (42) of charging towards the machining bench (9) in the first zone (41) for machining, by movement means of the movement device (2) along the Y axis (37); [0071] a blocking phase of the element to be machined (7), near the supports (31, 32) of the machining bench (9); [0072] a release phase of the element to be machined (7) from the hooking system of the positioning device (10);
in which the semi-automatic or automatic charging phase is carried out in such a way that the charging movements along the Y axis (37) are made by means of movement of the bridge (13) and along the X axis (38) are made by means of movement of the positioning device (10) integrated to the bridge (13).
[0073] Likewise, with reference to the discharging phase, it includes: [0074] a movement phase of the movement device (2) along the Y axis (37) from a waiting position to a pickup position for discharging the element to be machined (7); [0075] a movement phase of the device of positioning (10) along the axis X (38) from a waiting position to a pickup position for discharging the element to be machined (7); [0076] a hooking and lifting phase of the element to be machined (7) by means of the hooking system of the positioning device (10). [0077] a transportation phase of the element to be machined (7) from the position on the machining bench (9) towards an unloading position, by means of movement of the movement device (2) along the Y axis (37); [0078] a lowering phase of the element to be machined (7) on transport means (44) of the element to be machined; [0079] a release phase of the element to be machined (7) from the hooking system of the positioning device (10);
[0080] in which the automatic or semi-automatic discharging phase of the element to be machined (7) with respect to the bench (9) is carried out in such a way that the movements along the Y axis (37) are made by means of movement of the bridge (13) and along the X axis (38) are made by means of movement of the positioning device (10) integrated to the bridge (13).
[0081] In a preferred embodiment of the method, the processing machine (1) is equipped with grabbing devices (21, 22) including the first grabbing device (21) and the second grabbing device (22) independently sliding along the guides (15) one another, the movement phase of the positioning device (10) along the X axis (38) being a movement phase of first grabbing device (21) and second grabbing device (22) along the guides (15) that transversely extend along the direction of the X axis (38) along the development of the width of the bridge (13), according to a configuration in which the first grabbing device (21) and the second grabbing device (22) are slidable along the guides (15) independently one another.
[0082] With reference (
[0083] Preferably, the lifting phase of the element to be machined (7) is a phase for controlling the device of the motorized lifting device (24) of each grabbing device (21, 22) in such a way that the lifting device (24) of the first grabbing device (21) and the lifting device (24) of the second grabbing device (22) are simultaneously moved in a synchronized way during the lifting of the element to be machined, under control of the control unit (6).
[0084] In a particularly advantageous embodiment, it is provided that the processing machine (1) is equipped with a pit (3) located below the bench (9) and that the base (8) is equipped with a lifting and lowering system of the bench (9) for the movement of the bench (9) between a position at least partially retracted inside the pit (3) and an extracted position from the pit (3), in which the bench (9) is in the machining condition by means of the machining head (26). This solution allows, together with the other described measures, to obtain a further improved compactness of the processing machine (1), because, thanks to the lowering of the bench (9) within the pit (3), that is, with the at least partially lowered bench with respect to the ground surface (4), it is not necessary to excessively lift the element to be machined (7) during charging operations and the machine in its whole can be maintained lower and more compact, with the previously described advantages in terms of costs, spaces and machining precision.
[0085] The presence of the pit (3) and of the base (8) equipped with the retractable system of the bench (9), further allows to obtain an additional flexibility of the processing machine (1), because with the retracted bench (9) inside of the pit (3) it is possible (
[0086] The inventive solution is particularly advantageous because, thanks to the compactness of the machine and to the fact that it avoids charging operations with bridge crane or forklift, the machine can be sealed more easily, avoiding the dispersion of the machining dust. In fact, since the charging operations with bridge crane from the upper part of the machine are avoided, the first portion of the upper cover (33) and the second portion of the upper cover (34) can always remain in their machining position and avoid the dispersion of the dust upwardly. Said cover portions are foldable and anchored on the opposite sides of the bridge (13), in such a way that, when the bridge (13) is moved along the Y axis direction (37), one of the two upper cover portions extends, while the other retracts respectively under the traction and pushing action of the bridge (13) itself, which is moved. Even the bridge (13) is equipped with a folding cover system which extends and retracts in a similar way further to movements of the arm along the X axis (38).
[0087] The elements to be machined (7) can be of different materials, such as, only as a non-limitative example, fiberglass, carbon fibre, metals or metallic alloys including aluminium, wood, etc. Even the processes to be carried out can be of different kinds, such as, only as a non-limitative example, holes, flares, millings, headings, all kinds of operations that can be carried out by a tool supported by the machining head (26), as, for example, a milling tool.
[0088] The inventive solution also involves a variation of the usual configurations of similar machines, because the access and the exit of the elements to be machined (7) occurs on the opposite side with respect to the one of the traditional machines. This is due to the particular configuration of the machine, by means of which the charging and discharging operations of the elements to be machined are made by means of the same bridge (13) used for mechanical processes, which does not occur in the prior art techniques. Consequently, the charging operations of the elements to be machined in the inventive machine occur on the same side usually corresponding to the parking position of the machining head, which, during charging and discharging operations by means of the bridge (13), it can be placed in a lifted and side end position in order to be protected by possible risks of impacts. Finally, the present invention relates to (
[0089] The present invention has been described with reference to the figures enclosed in a preferred embodiment thereof, but it is evident that many possible changes, modifications and variants will be readily understood by a person skilled in the art in the light of the previous description. Thus, it should be noted that the present invention is not limited to the present description, but it includes any changes, modifications and variants in compliance with the appended claims.
NOMENCLATURE USED
[0090] With reference to the identification numbers in the enclosed figures, the following nomenclature has been used: [0091] 1. Processing machine [0092] 2. Movement device [0093] 3. Pit [0094] 4. Ground surface [0095] 5. Machine body [0096] 6. Control unit [0097] 7. Element to be machined [0098] 8. Base [0099] 9. Bench [0100] 10. Positioning device [0101] 11. First side [0102] 12. Second side [0103] 13. Movement bridge [0104] 14. Slide system [0105] 15. Guide [0106] 16. Rack [0107] 17. Plate [0108] 18. Carriage [0109] 19. Motor [0110] 20. Gear unit [0111] 21. First grabbing device [0112] 22. Second grabbing device [0113] 23. Engagement interface [0114] 24. Lifting device [0115] 25. Arm [0116] 26. Machining head [0117] 27. Hooking system [0118] 28. Chain or belt or cable [0119] 29. First side cover [0120] 30. Second side cover [0121] 31. First support [0122] 32. Second support [0123] 33. First portion of the upper cover [0124] 34. Second portion of the upper cover [0125] 35. Chamber [0126] 36. Tool changer device [0127] 37. Y axis direction [0128] 38. X axis direction [0129] 39. Z axis direction [0130] 40. Suction inlet [0131] 41. First zone [0132] 42. Second zone [0133] 43 Third zone [0134] 44. Transport mean of the element to be machined [0135] 45. Mounting structure [0136] 46. Retractable cover [0137] 47. Pieces to be machined [0138] 48. Machining table [0139] 49. Transport means of the machining table