PRODUCTION SYSTEM FOR PROCESSING A WIRE MATERIAL WOUND TO FORM A WIRE REEL, COMPRISING A CONVEYING MEANS WITH PERMANENT MAGNETS
20190054517 ยท 2019-02-21
Inventors
Cpc classification
B65H51/20
PERFORMING OPERATIONS; TRANSPORTING
B65H57/14
PERFORMING OPERATIONS; TRANSPORTING
B65H51/14
PERFORMING OPERATIONS; TRANSPORTING
B21F23/00
PERFORMING OPERATIONS; TRANSPORTING
B21C49/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B21F23/00
PERFORMING OPERATIONS; TRANSPORTING
B21C47/34
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A production system for processing a wire material wound to form a wire reel, in particular reinforcing steel. The production system comprises a receiving device for receiving the wire reel; an unreeling device for removing the wire material on the wire reel; and a processing device for processing the removed wire material. The unreeling device comprises a conveyor surrounding a first deflection roller and a second deflection roller, wherein permanent magnets are arranged on the conveyor and an increased frictional connection can be established between a surface of the wire material and an outer surface of the conveying means by means of the permanent magnets.
Claims
1. A production system (1) for processing a wire material (3) wound to form a wire reel (2), in particular concrete-reinforcing steel, the production system (1) comprising: an accommodation apparatus (4) for accommodating the wire reel (2); an unreeling apparatus (5) for pulling off the wire material (3) situated on the wire reel (2); and a processing apparatus (10) for processing the pulled-off wire material (3), wherein the unreeling apparatus (5) comprises a conveying means (8) that runs around a first deflection roller (6) and a second deflection roller (7), wherein permanent magnets (16) are disposed on the conveying means (8), and an increased friction fit between a surface (13) of the wire material (3) and an outer surface (12) of the conveying means (8) can be produced by means of the permanent magnets (16).
2. The production system according to claim 1, wherein the conveying means (8) of the unreeling apparatus (5) is configured as a conveyor belt (9).
3. The production system according to claim 1, wherein the accommodation apparatus (4) is configured for accommodating a raw material roller (36), wherein the wire material (3) wound in the manner of a reel is disposed on the raw material roller (36).
4. The production system according to claim 1, wherein the accommodation apparatus (4) has a braking mechanism (37), by means of which the wire material (3) of the wire reel (2) is tightened during the unreeling process.
5. The production system according to claim 1, wherein the unreeling apparatus (5) is disposed in the production system (1) in such a manner that the wire material (3) is passed to the processing apparatus (10) in an arc (38).
6. The production system according to claim 1, wherein the processing apparatus (10) is configured as a straightening system (11) for straightening the wire material (3).
7. The production system according to claim 1, wherein the unreeling apparatus (5) has at least a third deflection roller (39) in addition to the first deflection roller (6) and the second deflection roller (7), wherein the rotation axles (40) of the deflection rollers (6, 7, 39) are arranged in an arc (41) relative to one another, so that the wire material (3) is guided around the unreeling apparatus (5) in arc shape.
8. The production system according to claim 1, wherein the unreeling apparatus (5) is coupled with a servomotor (19).
9. The production system according to claim 1, wherein the unreeling apparatus (5) is movably mounted on the production system (1).
10. Production system according to claim 1, wherein a guide element (43) is disposed on the unreeling apparatus (5), on a side (42) of the unreeling apparatus (5) that faces the accommodation apparatus (4).
Description
[0017] For a better understanding of the invention, it will be explained in greater detail using the following figures.
[0018] The figures show, each in a greatly simplified, schematic representation:
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[0029]
[0030] As an introduction, it should be stated that in the different embodiments described, the same parts are provided with the same reference symbols or the same component designations, wherein the disclosures contained in the description as a whole can be transferred analogously to the same parts having the same reference symbols or the same component designations. Also, the position information selected in the description, such as top, bottom, at the side, etc., for example, refer to the figure being directly described and shown, and this position information must be applied appropriately to the new position if a change in position occurs.
[0031]
[0032] The production system 1 comprises an accommodation apparatus 4 for accommodating the wire reel 2. Furthermore, an unreeling apparatus 5 is configured, by means of which the wire material 3 wound onto the wire reel 2 can be pulled off. The unreeling apparatus 5 comprises a first deflection roller 6 and a second deflection roller 7, between which a conveying means 8 is tensioned. Subsequently in the figure description, the unreeling apparatus 5 will be described in more detail with regard to
[0033] Furthermore, it is provided that the production system 1 comprises a processing apparatus 10, which serves for further treatment of the unrolled wire material 3. The processing apparatus 10 can be configured as a straightening system 11, for example, and can thereby serve for straightening of the wire material 3.
[0034] In further alternative embodiments, not shown, the processing apparatus 10 can be configured as a cut-to-length apparatus, for example, which serves to cut the wire material 3 to length.
[0035] In
[0036] To pull the wire material 3 off from the wire reel 2, it is provided that an outer surface 12 of the conveying means 8 stands in contact with a surface 13 of the wire material 3, and that the wire material 3 is moved by the conveying means 8. In particular, it is provided that the wire material 3 is transported along with the advancing movement of the conveying means 8 by means of the friction that is in effect between the outer surface 12 of the conveying means 8 and the surface 13 of the wire material 3, preferably without any slip.
[0037]
[0038] As is evident from
[0039] As is evident from looking at
[0040] In order to achieve the best possible adhesion of the conveying means 8 to the surface 13 of the wire material 3, it is provided that permanent magnets 16 are disposed on the conveying means 8 or within the conveying means 8, by means of which magnets the conveying means 8 is pressed against the wire material 3.
[0041] In order to further increase the friction force between wire material 3 and conveying means 8, it can be provided that the outer surface 12 has a specific surface roughness. Furthermore, it can be provided that the outer surface 12 has a coating to be able to increase the friction coefficient or the wear resistance of the conveying means 8. Such a coating can be a special rubber material or another plastic material, for example.
[0042] Furthermore, it is conceivable that the conveying means has a core material 17 that serves to absorb the tensile forces in the conveying means 8. The core material 17 can be formed as a woven textile, by means of plastic fibers, by means of steel fibers, or in some other way, for example.
[0043] The conveying means 8 is driven by a drive unit 18, which can be configured, in particular, as a servomotor 19. The drive unit 18 can be coupled either with the first deflection roller 6 or the second deflection roller 7.
[0044] A drive unit 18, which is configured as a servomotor 19, has the advantage that the conveying means 8 and thereby the wire material 3 can be positioned precisely by means of the unreeling apparatus 5.
[0045] Alternatively to the servomotor 19, a stepper motor can also be used as a drive unit 18, for example, wherein when using a stepper motor, an additional sensor 20 is required that detects the current position of the conveying means 8.
[0046] Such a sensor 20 can be configured in the form of an angle of rotation sensor, for example, which can be coupled with the first deflection roller 6 or the second deflection roller 7 of the unreeling apparatus 5. Furthermore, the sensor 20 can be configured as an incremental sensor, for example, which reads an incremental strip disposed on the conveying means 8.
[0047] The conveying means 8 can consist, for the most part, of a plastic material, in particular of a rubber-like material.
[0048] As indicated schematically, it can furthermore be provided that the inner surface 14 of the conveying means 8 has a gearing 21 that can correspond with a counter-gearing 22 of one of the deflection rollers 6, 7. By means of such a gearing, the positioning precision of the unreeling apparatus 5 can be increased.
[0049] As is evident from
[0050] As is evident from
[0051] Furthermore, it can be provided that a width 29 of the permanent magnet 16 is selected to be less than a width 30 of the conveying means 8.
[0052] In
[0053] As is evident from
[0054] In
[0055] As is evident from
[0056] As is evident from
[0057] In an alternative embodiment variant, not shown in any detail, it can also be provided that the groove-shaped depression 31 is configured in the form of a V-shaped groove.
[0058] In
[0059] As is evident from
[0060] The individual permanent magnets 16 can be accommodated between the recesses 34 in the conveying means 8.
[0061] In
[0062] As is evident from
[0063] In
[0064] As is furthermore evident from
[0065] Furthermore, a braking mechanism 37 can be provided, by means of which the raw material roller 36 or the wire reel 2 can be braked. In this way, undesirable unreeling of the wire reel 2 can be prevented to the greatest possible extent. Furthermore, by means of the tightening of the wire material 3, it can be prevented that loops form on the wire reel 2, in which the wire material 3 becomes jammed.
[0066] Furthermore, it can be provided that the wire material 3 is guided to the processing apparatus 10 in an arc 38. This brings with it the advantage that the arc 38 serves as a buffer. In this regard, the processing apparatus 10 can have great acceleration values during intake of the wire material 3, wherein the wire material 3 does not have to be unwound from the wire reel 2 at the same speed.
[0067] Furthermore, it can be provided that at least a third deflection roller 39 is disposed between the first deflection roller 6 and the second deflection roller 7. The rotation axles 40 of the three deflection rollers 6, 7, 39 can be arranged in an arc 41 relative to one another, as is evident in this exemplary embodiment, so that the wire material 3 is guided around the unreeling apparatus 5 in arc shape. The more additional deflection rollers 39 are disposed between the first deflection roller 6 and the second deflection roller 7, the more the progression of the conveying means 8 at the contact surface can come close to a continuously running arc. By means of this configuration of the unreeling apparatus 5, the result can be achieved that the looping angle at the unreeling apparatus 5 can be increased, and thereby the friction force between conveying means 8 and wire material 3 can be increased.
[0068] Furthermore, it can be provided that a guide element 43 is disposed on the unreeling apparatus 5, on a side 42 of the unreeling apparatus 5 that faces the accommodation apparatus 4. The guide element 43 can be configured in the form of a ring-like element, for example, which has a central bore through which the wire material 3 is passed, and by means of which guidance or centering of the wire material 3 can be achieved.
[0069] Furthermore, it can be provided that the unreeling apparatus 5 is guided on a guide rail 44, by means of which the unreeling apparatus 5 can be displaced in a vertical direction. As a result, the position of the unreeling apparatus 5 can be adapted to different diameters of the wire reel 2. In addition, it can be provided that the unreeling apparatus 5 is guided to be displaceable in a horizontal direction, in order to be able to displace the unreeling apparatus 5 with reference to the width of the wire reel 2, and thereby for it to be able to be adapted with reference to the current winding position of the wire material 3.
[0070] Furthermore, it can be provided that the unreeling apparatus 5 can be mounted so as to pivot. This can be particularly advantageous so as to be able to adapt the unreeling apparatus 5 to different positions or unreeling states of the arc 38.
[0071] In
[0072] As is evident from
[0073] As is evident from
[0074] In
[0075] As is evident from
[0076] In
[0077] As is evident from
[0078] The exemplary embodiments show possible embodiment variants, wherein it is noted at this point that the invention is not restricted to the specifically shown embodiments variants of the same, but rather also various combinations of the individual embodiment variants with one another are possible, and this variation possibility lies within the ability of a person skilled in the art of this technical field, on the basis of the teaching for technical action provided by the present invention.
[0079] The scope of protection is determined by the claims. However, the description and the drawings should be referred to for an interpretation of the claims. Individual characteristics or combinations of characteristics from the different exemplary embodiments that are shown and described can represent independent inventive solutions in and of themselves. The task underling the independent inventive solutions can be derived from the description.
[0080] All information regarding value ranges in the present description should be understood to mean that these include any and all partial ranges of them; for example, the information 1 to 10 should be understood to mean that all partial ranges, proceeding from the lower limit 1 and the upper limit 10, i.e. all partial ranges, beginning with a lower limit of 1 or more and ending with an upper limit of 10 or less, for example 1 to 1.7, or 3.2 to 8.1, or 5.5 to 10, are included.
[0081] For the sake of good order, it should be pointed out, in conclusion, that for a better understanding of the structure, elements were shown not to scale and/or enlarged and/or reduced in size, in part.
REFERENCE SYMBOL LISTING
[0082] 1 production system
[0083] 2 wire reel
[0084] 3 wire material
[0085] 4 accommodation apparatus
[0086] 5 unreeling apparatus
[0087] 6 first deflection roller
[0088] 7 second deflection roller
[0089] 8 conveying means
[0090] 9 conveyor belt
[0091] 10 processing apparatus
[0092] 11 straightening system
[0093] 12 outer surface of conveying means
[0094] 13 surface of wire material
[0095] 14 inner surface
[0096] 15 support unit
[0097] 16 permanent magnet
[0098] 17 core material
[0099] 18 drive unit
[0100] 19 servomotor
[0101] 20 sensor
[0102] 21 gearing
[0103] 22 counter-gearing
[0104] 23 photoelectric barrier
[0105] 24 end surface
[0106] 25 diameter of wire material
[0107] 26 thickness of permanent magnet
[0108] 27 thickness of conveying means
[0109] 28 covering of permanent magnet
[0110] 29 width of permanent magnet
[0111] 30 width of conveying means
[0112] 31 groove-shaped depression
[0113] 32 longitudinal expanse
[0114] 33 groove bottom
[0115] 34 recess
[0116] 35 depression depth
[0117] 36 raw material roller
[0118] 37 braking mechanism
[0119] 38 arc
[0120] 39 third deflection roller
[0121] 40 rotation axle
[0122] 41 arc
[0123] 42 facing side
[0124] 43 guide element
[0125] 44 guide rail
[0126] 45 cut-to-length apparatus
[0127] 46 raw material rod
[0128] 47 vertical conveyor
[0129] 48 horizontal strip
[0130] 49 rod cut-to-length apparatus
[0131] 50 lever