EP1541256B1 - Automatic feeder for electrowelded metal nets - Google Patents
Automatic feeder for electrowelded metal nets Download PDFInfo
- Publication number
- EP1541256B1 EP1541256B1 EP04024820A EP04024820A EP1541256B1 EP 1541256 B1 EP1541256 B1 EP 1541256B1 EP 04024820 A EP04024820 A EP 04024820A EP 04024820 A EP04024820 A EP 04024820A EP 1541256 B1 EP1541256 B1 EP 1541256B1
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- European Patent Office
- Prior art keywords
- net
- nets
- pack
- stacked
- automatic feeder
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- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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- 239000002184 metal Substances 0.000 title claims abstract description 26
- 238000000034 method Methods 0.000 claims abstract description 9
- 230000006855 networking Effects 0.000 claims abstract description 8
- 238000005452 bending Methods 0.000 claims description 27
- 238000011144 upstream manufacturing Methods 0.000 claims description 9
- 230000003287 optical effect Effects 0.000 claims description 5
- 238000012545 processing Methods 0.000 claims description 3
- 238000003780 insertion Methods 0.000 claims description 2
- 230000037431 insertion Effects 0.000 claims description 2
- 238000012546 transfer Methods 0.000 claims description 2
- 230000004913 activation Effects 0.000 claims 1
- 238000013459 approach Methods 0.000 claims 1
- 230000000149 penetrating effect Effects 0.000 claims 1
- 230000002457 bidirectional effect Effects 0.000 description 2
- 238000005266 casting Methods 0.000 description 2
- 230000000670 limiting effect Effects 0.000 description 2
- 238000004519 manufacturing process Methods 0.000 description 2
- 238000000926 separation method Methods 0.000 description 2
- 230000003068 static effect Effects 0.000 description 2
- 210000000080 chela (arthropods) Anatomy 0.000 description 1
- 238000010924 continuous production Methods 0.000 description 1
- 238000005520 cutting process Methods 0.000 description 1
- 230000003014 reinforcing effect Effects 0.000 description 1
- 238000007493 shaping process Methods 0.000 description 1
- 238000003860 storage Methods 0.000 description 1
- 230000007306 turnover Effects 0.000 description 1
- 239000002699 waste material Substances 0.000 description 1
Images
Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21D—WORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21D11/00—Bending not restricted to forms of material mentioned in only one of groups B21D5/00, B21D7/00, B21D9/00; Bending not provided for in groups B21D5/00 - B21D9/00; Twisting
- B21D11/10—Bending specially adapted to produce specific articles, e.g. leaf springs
- B21D11/12—Bending specially adapted to produce specific articles, e.g. leaf springs the articles being reinforcements for concrete
- B21D11/125—Bending wire nets
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21F—WORKING OR PROCESSING OF METAL WIRE
- B21F33/00—Tools or devices specially designed for handling or processing wire fabrics or the like
Definitions
- the present invention relates to an automatic feeder for electrowelded metal nets suitable for reinforcing concrete castings, which is suitable to position said nets in an optimum manner at net bending machines, operating by starting from said nets stacked in any manner and/or with methods entailing minimum space occupation, i.e., with longitudinal and/or transverse rods arranged alternately side by side.
- Said feeder in addition to recognizing in each instance the net when it is gripped, automatically positions said net correctly on the bending unit, also turning it over spatially if necessary.
- the feeder is capable of operating on large electrowelded metal nets (measuring for example 7 meters in length and 3.6 meters in width).
- DE-A-3823057 discloses a feeder as indicated in the pre-characterising portion of claim 1.
- the aim of the present invention is to overcome the drawbacks noted in current apparatuses for working electrowelded metal nets.
- the object of the invention is therefore to:
- the aim and object of the present invention are achieved by the feeder according to claim 1, by providing an automatic feeder for electrowelded metal nets that is suitable to work upstream of a bidirectional bending unit or of other automatic machines, and a method according to claim 12.
- the feeder according to the present invention is an intelligent unit for geometric recognition of electrowelded metal nets that uses electromagnetic methods and/or optical sensors and/or other equivalent systems known to the person skilled in the art.
- Apparatuses for working electrowelded metal nets can work on nets assembled on-site in-line (and in this case the present invention is unnecessary), or on stacked nets that arrive from other steelworks or other separate apparatuses.
- the nets due to transportation cost reasons
- the nets are usually stacked alternately in order to reduce their space occupation for an equal number of nets. They are superimposed and stacked alternately, reducing their volume by up to 50%.
- This entails, as already mentioned earlier, a waste of time caused by their handling to arrange them with the correct orientation for subsequent work.
- Automatic net processing machines must in fact be fed with nets that are all arranged with the same orientation, as otherwise the finished product is structurally unsuitable for its final use (for example in the building of frames and lattice-like structures for concrete castings).
- the automated feeder for haphazardly or alternately stacked metal nets uses, upstream, a static conveyor platform for packs of nets, which acts as a storage system and feeds a platform that can move in a vertical direction and has a function to self-level the upper net of the pack with respect to the horizontal working surface and to the unit for geometric recognition of the net.
- the unit for geometric recognition of the net can use various known techniques, from the electromagnetic system to the optical system, from the use of presence sensors to pneumatic systems.
- an electromagnetic system for recognizing the orientation of the nets has been used which is based on a plurality of electromagnets, which are variously arranged on a horizontal surface below a (fixed and/or movable) supporting beam that covers the entire length of the nets.
- electromagnets cooperate in mutual coordination and are suitable to recognize the presence or absence of the metal rods that constitute the net.
- the bed that carries the pack of nets rises vertically until it places the first upper net in contact with the lower surface of the electromagnet supporting beam.
- said bed moves downward slightly, leaving the net attracted by the electromagnets suspended.
- said electromagnets control the correct positioning of an upper movable arm, which is equipped with automatic pincers capable of gripping, laterally at one end, a single net and more specifically the net identified and kept raised by the electromagnets.
- the net gripping arm can move and is suspended above the working surface and is equipped with appropriate clamps suitable to drag the net horizontally and is actuated in its movements by suitable automation systems.
- the overturning device is meant to automatically turn the net over through 180° if it is upside-down with respect to the correct subsequent working step.
- Said device is composed of a plurality of bars arranged on a horizontal rotating surface, which is pivoted laterally about an axis that is parallel to the working axis of the bending machines and is perpendicular to the advancement direction of the nets.
- the bars that form the supporting surface for the net to be turned over are provided with suitable gripping clamps or with other suitable means (for example electromagnets) in order to retain the net during overturning.
- the feeder as described is capable of feeding and prearranging the net automatically in the intended spatial orientation, regardless of its initial arrangement, upstream of a working machine or of a bending unit, of a simple type or of the type composed of two mutually opposite automatic bending machines that can be moved in a programmable manner as regards distance with respect to each other.
- the automatic feeder for electrowelded nets is arranged upstream with respect to the two mutually opposite movable bending machines 8 and 9 and downstream with respect to the conveyor 1 of the packs of variously stacked electrowelded metal nets 3 that arrive from production facilities that are external to the working apparatus or are produced directly in-line or not in-line.
- the net working apparatus as shown in Figure 1 is in turn provided with a particular conveyor unit 2 for packs 3 of nets, with a vertically movable supporting surface, which is also capable of arranging the nets so that they are aligned along an abutment plane, and a bed or a working surface 12 for the transit of the nets, which lies transversely with respect to the work advancement direction of said nets.
- overhead carriages that support arms with automatic net gripping clamps-4; a carriage with an automatic arm 5 upstream of the bending machines 8 and 9, for serving a net recognition device 16, with three-dimensional movements; a carriage with a beam that supports automatic grip clamps 6, with movement on a vertical plane, and which is arranged between the two mutually opposite movable bending machines and serves them; and finally a carriage with an automatic arm 7, downstream of the bending machines, with three-dimensional movements, for serving the evacuation of the products.
- the automatic feeder for electrowelded metal nets consists of a bed 2 of the conveyor unit for conveying packs of variously stacked nets 3, which is capable of moving the nets in the work direction of the apparatus and at the same time of aligning them on a vertical plane, formed by the static work bed 12 and arranged transversely to the work flow.
- Said conveyor bed 2 can also move vertically in order to lift and/or lower the pack of nets on command with respect to the net recognition devices 16 (of the electromagnetic, optical or other equivalent type), supported by a transverse fixed beam 10 that lies above said pack.
- the geometric recognition of the upper side of the net at the top of the pack of variously stacked nets in fact occurs by means of recognition devices that are arranged on the lower face of the beam 10 and that identify the characteristics of the first upper metal net of the pack and automatically actuate the carriage 5 with the arm 5 equipped with automatic clamps 11 for gripping and moving the net.
- the automatic feeder since electrowelded metal nets are generally large and can interlock during the preceding step for forming the packs or during their ordinary transport, separate the first upper net from the second underlying one: this occurs by virtue of the intervention of a particular separator unit 14, which can move horizontally on command and is capable of inserting itself below the first upper net 4, which is supported and raised by the clamps of the arm 5, when the bed 2 that conveys the pack of nets 2 moves downward.
- the horizontal insertion of the wedge-shaped device 14 with multiple aligned elements between the lower surface of the first upper net of the pack and the upper surface of the second net of the pack facilitates the transfer of the recognized net onto the overturning unit (if it is necessary to rotate it through 180°) or by arranging it directly in the correct way on the bending machines 8 and 9.
- said devices 16 also activate automatically the overturning step of the respective mechanical unit 13.
- Said overturning unit 13 consists of a plurality of rotating arms, which are pivoted at 17 about a horizontal axis that is perpendicular to the direction of the work flow and which are provided with suitable automatic grip clamps 15 that are capable of retaining the net during the rotation through 180° of the arms to arrange it with the correct orientation on the working surface 12, upstream of the bending machines or directly on them in order to be gripped by the clamps of the vertical movement carriage 8 that serves said machines.
- the present invention can be applied to serve any other machine for working on electrowelded metal nets, including machines that are different from those considered by way of example in the present application .
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Wire Processing (AREA)
- Automatic Assembly (AREA)
- Specific Conveyance Elements (AREA)
- De-Stacking Of Articles (AREA)
- Vending Machines For Individual Products (AREA)
- Transition And Organic Metals Composition Catalysts For Addition Polymerization (AREA)
Abstract
Description
- The present invention relates to an automatic feeder for electrowelded metal nets suitable for reinforcing concrete castings, which is suitable to position said nets in an optimum manner at net bending machines, operating by starting from said nets stacked in any manner and/or with methods entailing minimum space occupation, i.e., with longitudinal and/or transverse rods arranged alternately side by side. Said feeder, in addition to recognizing in each instance the net when it is gripped, automatically positions said net correctly on the bending unit, also turning it over spatially if necessary. The feeder is capable of operating on large electrowelded metal nets (measuring for example 7 meters in length and 3.6 meters in width).
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DE-A-3823057 discloses a feeder as indicated in the pre-characterising portion of claim 1. - Various kinds of automatic feeders for electrowelded metal nets are known in the background art and are composed of multiple automated devices that initially work on individual nets that arrive from forming units or from stacks of nets arranged so that they all have the same orientation.
- Currently, the facilities that manufacture said electrowelded metal nets, in order to reduce transport bulk and costs, form the packs of nets by continuously alternating their orientations, thus reducing (for an equal number of nets) the height of the pack. This technical solution, ideal for the transportation step, is at the same time much more troublesome in the subsequent steps of the working of the electrowelded metal nets, particularly during the step for handling them in order to prearrange them exactly on the bending units or on the other machine tools (for example for cutting, shaping, curving, et cetera).
- This entails an auxiliary processing step ahead of the net working equipment, in order to achieve its correct spatial prearrangement for subsequent work. This drawback negatively affects the working time and therefore the final cost of the finished product.
- The aim of the present invention is to overcome the drawbacks noted in current apparatuses for working electrowelded metal nets. The object of the invention is therefore to:
- provide an automatic feeder or prearrangement unit for nets that arrive from packs stacked in various manners, capable of arranging them one at a time ahead of the working machines so that they all have the same orientation, in order to able to perform an automatic and continuous production cycle;
- provide a feeder constituted by an intelligent electromagnetic device or by another equivalent technique that is capable of recognizing the orientation of the net and of lifting one net at a time from the stack and grip it with suitable clamps that can move to convey it on a suitable automatic device with an overturning table;
- provide a feeder for electrowelded metal nets that is capable of working on nets of any size and configuration.
- The aim and object of the present invention are achieved by the feeder according to claim 1, by providing an automatic feeder for electrowelded metal nets that is suitable to work upstream of a bidirectional bending unit or of other automatic machines, and a method according to
claim 12. - The feeder according to the present invention is an intelligent unit for geometric recognition of electrowelded metal nets that uses electromagnetic methods and/or optical sensors and/or other equivalent systems known to the person skilled in the art.
- Apparatuses for working electrowelded metal nets can work on nets assembled on-site in-line (and in this case the present invention is unnecessary), or on stacked nets that arrive from other steelworks or other separate apparatuses. In these last cases, unfortunately, the nets (due to transportation cost reasons) are usually stacked alternately in order to reduce their space occupation for an equal number of nets. They are superimposed and stacked alternately, reducing their volume by up to 50%. This entails, as already mentioned earlier, a waste of time caused by their handling to arrange them with the correct orientation for subsequent work. Automatic net processing machines must in fact be fed with nets that are all arranged with the same orientation, as otherwise the finished product is structurally unsuitable for its final use (for example in the building of frames and lattice-like structures for concrete castings).
- The automated feeder for haphazardly or alternately stacked metal nets uses, upstream, a static conveyor platform for packs of nets, which acts as a storage system and feeds a platform that can move in a vertical direction and has a function to self-level the upper net of the pack with respect to the horizontal working surface and to the unit for geometric recognition of the net.
- The unit for geometric recognition of the net can use various known techniques, from the electromagnetic system to the optical system, from the use of presence sensors to pneumatic systems. However, in this case, an electromagnetic system for recognizing the orientation of the nets has been used which is based on a plurality of electromagnets, which are variously arranged on a horizontal surface below a (fixed and/or movable) supporting beam that covers the entire length of the nets. Such electromagnets cooperate in mutual coordination and are suitable to recognize the presence or absence of the metal rods that constitute the net. To facilitate this recognition step, the bed that carries the pack of nets rises vertically until it places the first upper net in contact with the lower surface of the electromagnet supporting beam. Once recognition has occurred, said bed moves downward slightly, leaving the net attracted by the electromagnets suspended. Moreover, said electromagnets control the correct positioning of an upper movable arm, which is equipped with automatic pincers capable of gripping, laterally at one end, a single net and more specifically the net identified and kept raised by the electromagnets.
- At this point, between the net kept raised from the pack by the grip arm and the underlying net, there is a gap that is sufficient for the passage of a device with slender horizontal spikes, which are inserted on command between the lower surface of the raised net and the upper surface of the first upper net of the slightly lowered pack, facilitating the separation of the net raised only partially by said arm from the remaining nets of the pack. The separated net is identified and is dragged by the movable arm onto an overturning device, which is activated automatically only if it is necessary to turn over the net for the subsequent step of normal bending (with a net bending machine) or bidirectional bending (with two oppositely arranged net bending machines); otherwise, said net is simply arranged correctly on the net bending machine for the subsequent working step.
- The net gripping arm can move and is suspended above the working surface and is equipped with appropriate clamps suitable to drag the net horizontally and is actuated in its movements by suitable automation systems.
- The overturning device is meant to automatically turn the net over through 180° if it is upside-down with respect to the correct subsequent working step. Said device is composed of a plurality of bars arranged on a horizontal rotating surface, which is pivoted laterally about an axis that is parallel to the working axis of the bending machines and is perpendicular to the advancement direction of the nets. The bars that form the supporting surface for the net to be turned over are provided with suitable gripping clamps or with other suitable means (for example electromagnets) in order to retain the net during overturning.
- Accordingly, the feeder as described is capable of feeding and prearranging the net automatically in the intended spatial orientation, regardless of its initial arrangement, upstream of a working machine or of a bending unit, of a simple type or of the type composed of two mutually opposite automatic bending machines that can be moved in a programmable manner as regards distance with respect to each other.
- An embodiment according to the present invention is illustrated by way of preferred but non-limiting example in the accompanying drawings, wherein:
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Figure 1 is a schematic side view of an automatic system for bending electrowelded metal nets, with a device for turning over the nets upstream of the two mutually opposite bending machines; -
Figure 2 is a side view of the device for automatically turning over electrowelded metal nets, illustrating the beam for supporting the recognition devices (of the electromagnetic type), the arm for gripping and moving the net, the movable unit for separating the nets, and the overturning unit; -
Figure 3 is a side view of the movable net separation unit in action while a net is kept raised by the grip arm; -
Figure 4 is a side view of the step for moving the net that followsFigure 3 , with conveyance of the net, turned over through 180°, onto the overturning unit; -
Figure 5 is a side view of the step for turning over the net ahead of the mutually opposite movable net bending machines; -
Figure 6 is a plan view ofFigure 2 , illustrating the beam for supporting the recognition devices and the movable units for separating and overturning the net. - As shown in the accompanying figures, the automatic feeder for electrowelded nets is arranged upstream with respect to the two mutually opposite
movable bending machines electrowelded metal nets 3 that arrive from production facilities that are external to the working apparatus or are produced directly in-line or not in-line. The net working apparatus as shown inFigure 1 is in turn provided with aparticular conveyor unit 2 forpacks 3 of nets, with a vertically movable supporting surface, which is also capable of arranging the nets so that they are aligned along an abutment plane, and a bed or a workingsurface 12 for the transit of the nets, which lies transversely with respect to the work advancement direction of said nets. In order to move the nets, there are provided as follows: overhead carriages that support arms with automatic net gripping clamps-4; a carriage with anautomatic arm 5 upstream of thebending machines net recognition device 16, with three-dimensional movements; a carriage with a beam that supportsautomatic grip clamps 6, with movement on a vertical plane, and which is arranged between the two mutually opposite movable bending machines and serves them; and finally a carriage with anautomatic arm 7, downstream of the bending machines, with three-dimensional movements, for serving the evacuation of the products. - Accordingly, the automatic feeder for electrowelded metal nets consists of a
bed 2 of the conveyor unit for conveying packs of variously stackednets 3, which is capable of moving the nets in the work direction of the apparatus and at the same time of aligning them on a vertical plane, formed by thestatic work bed 12 and arranged transversely to the work flow. Saidconveyor bed 2 can also move vertically in order to lift and/or lower the pack of nets on command with respect to the net recognition devices 16 (of the electromagnetic, optical or other equivalent type), supported by a transversefixed beam 10 that lies above said pack. The geometric recognition of the upper side of the net at the top of the pack of variously stacked nets in fact occurs by means of recognition devices that are arranged on the lower face of thebeam 10 and that identify the characteristics of the first upper metal net of the pack and automatically actuate thecarriage 5 with thearm 5 equipped with automatic clamps 11 for gripping and moving the net. - At this point, the automatic feeder, since electrowelded metal nets are generally large and can interlock during the preceding step for forming the packs or during their ordinary transport, separate the first upper net from the second underlying one: this occurs by virtue of the intervention of a
particular separator unit 14, which can move horizontally on command and is capable of inserting itself below the first upper net 4, which is supported and raised by the clamps of thearm 5, when thebed 2 that conveys the pack ofnets 2 moves downward. The horizontal insertion of the wedge-shaped device 14 with multiple aligned elements between the lower surface of the first upper net of the pack and the upper surface of the second net of the pack facilitates the transfer of the recognized net onto the overturning unit (if it is necessary to rotate it through 180°) or by arranging it directly in the correct way on thebending machines - If the net recognized by the
devices 16 is upside-down with respect to future work, said devices also activate automatically the overturning step of the respectivemechanical unit 13. Said overturningunit 13 consists of a plurality of rotating arms, which are pivoted at 17 about a horizontal axis that is perpendicular to the direction of the work flow and which are provided with suitableautomatic grip clamps 15 that are capable of retaining the net during the rotation through 180° of the arms to arrange it with the correct orientation on the workingsurface 12, upstream of the bending machines or directly on them in order to be gripped by the clamps of thevertical movement carriage 8 that serves said machines. - As it is evident, the present invention can be applied to serve any other machine for working on electrowelded metal nets, including machines that are different from those considered by way of example in the present application .
- The invention is of course not limited to the example of embodiment described above, starting from which it is possible to provide other embodiments and forms, and the details of execution may vary in any case within the scope of the invention as stated and claimed below.
- Where technical features mentioned in any claim are followed by reference signs, those reference signs have been included for the sole purpose of increasing the intelligibility of the claims and accordingly such reference signs do not have any limiting effect on the interpretation of each element identified by way of example by such reference signs.
Claims (12)
- An automatic feeder for electrowelded metal nets including:at least one conveyor bed means (2), the conveyor bed means (2) having a horizontal surface for supporting a pack (3) of stacked nets and being adapted for moving vertically and horizontally; characterised inmeans (16) for recognizing the geometric orientation and/or the structural configuration of a net (4), the net (4) being arranged individually or stacked above the pack (3) of stacked nets,means adapted for actuating automatically an arm (5) provided with suitable grip clamps (11), the arm (5) being adapted to handle the net (4) and to position the net (4) correctly on a net working machine (8, 9) or to place the net (4) on means (13) for turning a net preferably up to 180°,at least one upper beam means (10) extending above the net (4) stacked in the pack (3), the upper beam means (10) being adapted to support the means (16) for recognizing, the means (16) for recognizing being adapted to communicate and actuate, by virtue of automation methods, the arm (5) with the grip clamps (11), andat least one separator means (14), the separator means (14) including one or more wedges which are capable of being inserted from an external position to a position within the pack (3) of stacked nets.
- The automatic feeder according to claim 1, characterized in that the means (13) for turning a net includes at least one unit (13) for turning nets over through 180° from a horizontal position to an upside-down horizontal position, the unit (13) being made of a plurality of aligned supporting arms which rotate simultaneously, are pivoted about a horizontal axis (17), are perpendicular to the work direction, and are provided with automatic clamps (15) for gripping the nets to be turned over.
- The automatic feeder according to claim 1 or 2, characterized by further including means for coordinating the movement of a first upper net (4) of the pack (3), a remaining part of the pack (3) and the separator means (14), such that when the first upper net (4) of the pack (3) is kept raised by the arm (5) and the remaining part of the pack (3) is lowered, the separator means (14) is inserted between the lower surface of the raised first upper net (4) and the upper surface of the remaining part of the pack (3).
- The automatic feeder according to one or more of claims 1-3, characterized in that the upper beam means (10) is fixed and in that the means (16) for recognizing includes electromagnets (16) or the like, such as to releasably hold a first net (4) in a raised position in respect to the remaining part of the pack (3) of stacked nets and to facilitate in insertion of the wedge of the separator means (14) between a first upper net (4) and the remaining part of the pack (3).
- The automatic feeder according to claim 1, wherein the net working machine (8, 9) is a bending unit (8, 9) or wherein the means (13) for turning is an overturning unit (13), and wherein
the upper beam means (10) includes a fixed upper beam which is horizontal and perpendicular to the work flow and covers the entire span of the maximum width of the nets stacked in the pack (3), the nets being made of metal;
the means (16) for recognizing including a plurality of electromagnetic and/or optical devices (16), the means (16) for recognizing directing the arm (5) with the grip clamps (11) for the subsequent transfer of the net (4) onto the overturning unit (13) or onto the bending unit (8, 9) or for other processing;
the arm (5) is supported on an overhead carriage and is capable of operating in three dimensions for placing the net (4) on the overturning unit (13) or on a working surface (12) disposed upstream of the bending unit (8, 9) or on the bending unit (8, 9) for working nets;
the separator means (14) includes a separator (14), the plurality of slender wedges being aligned at right angles to the work flow of the nets, with automatic horizontal movement, and capable of being inserted from the external position to the position within the pack (3) of stacked nets between the lower surface of a raised first upper net (4) and the upper surface of a second net of the pack (3), when the first upper net (4) of the pack (3) is kept raised by the arm (5) and the remaining part of the pack (3) is lowered; and
the overturning unit (13) is adapted for turning nets over through 180°, from a horizontal position to an upside-down horizontal position, the overturning unit (13) being composed of a plurality of aligned supporting arms which rotate simultaneously, are pivoted about a horizontal axis (17), are perpendicular to the work direction, and are provided with automatic clamps (15) for gripping the nets to be turned over; and wherein
the automatic feeder further includes devices for verifying and checking the presence of a net in the various steps of identification and automated handling of the electrowelded metal net. - The automatic feeder according to claims 1 or 5, characterized in that the means (16) for recognizing are adapted to recognize a haphazardly piled net, the means (16) for recognizing being of the electromagnetic and/or optical and/or mechanical and/or pneumatic type and/or of a type that uses known equivalent methods, in order to manage and control the subsequent operating steps according to the configuration of the recognized net.
- The automatic feeder according to claim 5, characterized in that the overturning unit (13) automatically performs, in accordance with the commands received from the means (16) for recognizing, the rotation through 180° of a net on the working surface (12) or directly on the bending unit (8, 9).
- The automatic feeder according to claim 5, characterized in that the at least one conveyor bed means (2) includes at least one movable bed (2) which is actuated in its movements, particularly the vertical movement, by suitable means for detecting the presence of the net (4) proximate to the fixed upper beam (10).
- The automatic feeder according to claim 1, characterized in that the upper beam means (10) is fixed or vertically and/or horizontally movable with respect to the pack (3) of the nets to be recognized.
- The automatic feeder according to claim 1, further comprising a horizontal conveyor bed (1) upstream of the at least one conveyor bed means (2).
- The automatic feeder according to claim 5, characterized in that the packs (3) of stacked nets are arranged on a horizontal conveyor bed (1) in vertical position with its sides acting as supporting base, and wherein the individual nets are turned through 90° one at a time on the conveyor bed means (2) to be subsequently recognized individually or in a stacked manner.
- A method for verifying and checking the presence of a net (4) in a pack (3) of stacked electrowelded metal nets in an automatic feeder according to one ore more of the preceding claims, wherein the following steps are provided:a) in the presence of a horizontal pack of electrowelded metal nets, stacked haphazardly with different and/or identical adjacent surfaces or all stacked with the same orientation for the subsequent work or all stacked with the opposite orientation with respect to the orientation of the subsequent work, on the conveyor bed means (2), making the lateral ends of the nets to adhere and aligning them along a vertical plane that is perpendicular to the work advancement flow;b) raising said pack (3) of stacked nets by means of the conveyor bed means (2), until the upper grid-like surface of a first upper net (4) at the top of the stacked pack (3) adheres to, or approaches, the means (16) for recognizing;c) once recognition of the structural geometry of the upper surface of the first upper net (4) at the top of the pack (3) has occurred, actuating the automatic positioning of the overlying arm (5) for correctly locking the net on the lateral side, at right angles to the work flow; and furthermore, once the orientation of the first upper net has (4) been recognized, automatically sending the first upper net (4) either directly to the net working machine (8, 9) or transferring the first upper net (4) onto the means (13) for turning a net; and at the same time, actuating the lowering of the conveyor bed means (2) that supports the pack (3) of stacker nets, leaving only the recognized first upper net (4) in a raised position;d) starting to operate the at least one separator means (14) such that the wedges move horizontally from a position that is external to the pack (3), penetrating between the suspended first upper net (4) and a second net that lies on the lowered pack and transferring the recognized first upper net (4) by dragging with the arm (5) to the the means (13) for turning a net or directly to the net working machine (8, 9);e) if the upper side of the recognized first upper net (4) is arranged opposite with respect to the optimum one provided for the subsequent work, transferring and positioning the first upper net (4) onto overturning arms of the means (13) for overturning a net, which are equipped with appropriately provided clamps (15) or other equivalent systems, in order to rotate the first upper net (4) through 180° with respect to the side that is perpendicular to the work flow; andf) once rotation has been performed, arranging then the first upper net (4) on mutually opposite net working machines (8, 9), which are movable and are orientated at right angles with respect to the work flow; and subsequent activation of a vertical carriage (6) for the programmed operations for bending or other work, and of a carriage (7) for evacuating the finished products.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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ITUD20030240 | 2003-12-10 | ||
IT000240A ITUD20030240A1 (en) | 2003-12-10 | 2003-12-10 | AUTOMATIC FEEDER FOR ELETTROSALDATE METALLIC NETWORKS. |
Publications (2)
Publication Number | Publication Date |
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EP1541256A1 EP1541256A1 (en) | 2005-06-15 |
EP1541256B1 true EP1541256B1 (en) | 2008-04-02 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP04024820A Expired - Lifetime EP1541256B1 (en) | 2003-12-10 | 2004-10-19 | Automatic feeder for electrowelded metal nets |
Country Status (5)
Country | Link |
---|---|
EP (1) | EP1541256B1 (en) |
AT (1) | ATE390971T1 (en) |
DE (1) | DE602004012824T2 (en) |
ES (1) | ES2305641T3 (en) |
IT (1) | ITUD20030240A1 (en) |
Family Cites Families (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
FR2117805B1 (en) * | 1970-12-18 | 1973-11-30 | Bouwstaal Roermond Nv | |
ATE79362T1 (en) * | 1987-06-16 | 1992-08-15 | Impianti Industriali Spa | STACKING DEVICE FOR WIRE MESH MATS. |
DE3823857A1 (en) * | 1988-07-14 | 1990-01-18 | Heinz Ruhl | Apparatus for removing reinforcement mats |
FR2721640B1 (en) * | 1994-06-28 | 1996-09-13 | Bokobza Galdys | Method of manufacturing reinforcements for reinforced concrete. |
DE19520349A1 (en) * | 1995-06-07 | 1996-12-12 | Sket Drahtziehmaschinenwerk Gr | Turning and stacking machine for welded lattice mats |
-
2003
- 2003-12-10 IT IT000240A patent/ITUD20030240A1/en unknown
-
2004
- 2004-10-19 EP EP04024820A patent/EP1541256B1/en not_active Expired - Lifetime
- 2004-10-19 DE DE602004012824T patent/DE602004012824T2/en not_active Expired - Lifetime
- 2004-10-19 AT AT04024820T patent/ATE390971T1/en active
- 2004-10-19 ES ES04024820T patent/ES2305641T3/en not_active Expired - Lifetime
Also Published As
Publication number | Publication date |
---|---|
ATE390971T1 (en) | 2008-04-15 |
DE602004012824D1 (en) | 2008-05-15 |
ITUD20030240A1 (en) | 2005-06-11 |
DE602004012824T2 (en) | 2009-04-09 |
EP1541256A1 (en) | 2005-06-15 |
ES2305641T3 (en) | 2008-11-01 |
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