EP3774319A1 - Onduleuse - Google Patents

Onduleuse

Info

Publication number
EP3774319A1
EP3774319A1 EP19711529.8A EP19711529A EP3774319A1 EP 3774319 A1 EP3774319 A1 EP 3774319A1 EP 19711529 A EP19711529 A EP 19711529A EP 3774319 A1 EP3774319 A1 EP 3774319A1
Authority
EP
European Patent Office
Prior art keywords
web
corrugated cardboard
path
trolley
cover
Prior art date
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.)
Pending
Application number
EP19711529.8A
Other languages
German (de)
English (en)
Inventor
Martin RUHLAND
Karl Ruhland
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
BHS Intralogistics GmbH
Original Assignee
BHS Intralogistics GmbH
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by BHS Intralogistics GmbH filed Critical BHS Intralogistics GmbH
Publication of EP3774319A1 publication Critical patent/EP3774319A1/fr
Pending legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31FMECHANICAL WORKING OR DEFORMATION OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31F1/00Mechanical deformation without removing material, e.g. in combination with laminating
    • B31F1/20Corrugating; Corrugating combined with laminating to other layers
    • B31F1/24Making webs in which the channel of each corrugation is transverse to the web feed
    • B31F1/26Making webs in which the channel of each corrugation is transverse to the web feed by interengaging toothed cylinders cylinder constructions
    • B31F1/28Making webs in which the channel of each corrugation is transverse to the web feed by interengaging toothed cylinders cylinder constructions combined with uniting the corrugated webs to flat webs ; Making double-faced corrugated cardboard
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31FMECHANICAL WORKING OR DEFORMATION OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31F1/00Mechanical deformation without removing material, e.g. in combination with laminating
    • B31F1/20Corrugating; Corrugating combined with laminating to other layers
    • B31F1/24Making webs in which the channel of each corrugation is transverse to the web feed
    • B31F1/26Making webs in which the channel of each corrugation is transverse to the web feed by interengaging toothed cylinders cylinder constructions
    • B31F1/28Making webs in which the channel of each corrugation is transverse to the web feed by interengaging toothed cylinders cylinder constructions combined with uniting the corrugated webs to flat webs ; Making double-faced corrugated cardboard
    • B31F1/2804Methods
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H19/00Changing the web roll
    • B65H19/10Changing the web roll in unwinding mechanisms or in connection with unwinding operations
    • B65H19/12Lifting, transporting, or inserting the web roll; Removing empty core
    • B65H19/126Lifting, transporting, or inserting the web roll; Removing empty core with both-ends supporting arrangements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2405/00Parts for holding the handled material
    • B65H2405/40Holders, supports for rolls
    • B65H2405/42Supports for rolls fully removable from the handling machine
    • B65H2405/422Trolley, cart, i.e. support movable on floor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2701/00Handled material; Storage means
    • B65H2701/10Handled articles or webs
    • B65H2701/17Nature of material
    • B65H2701/176Cardboard
    • B65H2701/1762Corrugated

Definitions

  • the invention relates to a corrugated cardboard plant and a method for producing corrugated cardboard.
  • a corrugated cardboard plant which comprises material roll conveyors.
  • the material rollers trolley are linearly between a rest position and loading operating position adjacent to unwinding device by means of a respective chain drive ver storable. In the operating position, the roll of material can be transferred to the corresponding unwinding device.
  • This corrugated cardboard plant is extremely inflexible. She is not very friendly.
  • JP H08-333043 A discloses splice assemblies with support arms for carrying Materialrol len. To the support arms runs a closed guideway in a hall floor for Trol leys for transporting the rolls of material. On the tracks, the trolleys are synchronously movable by means of an endless chain.
  • a Bruzu Castvortechnische for a corrugated board system is known.
  • Under a splicing arrangement is a first recess for receiving a web roll away carrying transport device, while further provided a second recess and a third Ver recess for receiving a web roll feed device and another web roll feed device.
  • a pair of endless chains is provided which carries a carriage for receiving a web roll.
  • DE 37 31 488 A1 discloses a corrugated cardboard plant.
  • a winning device for reciprocating between a Fagerplatz and a point under Schwenkar- provided a roll stand.
  • the conveyor device has a guide groove arranged in the floor and a carriage movable along the guide groove.
  • Each end of a train regulating chain is disposed at a front and rear end of a carriage.
  • DE 42 07 199 A1 discloses a corrugated cardboard plant with a web roll transfer device.
  • a carriage with the web roll mounted thereon runs on rails and stops at a predetermined position during operation of the web roll transfer device.
  • DE 94 14 677 Ul discloses a paper processing unwinding device.
  • a paper roll is transported on a transport device, which is designed as an underfloor conveyor.
  • the underfloor conveyor has a carriage with a loading plate for the paper roll.
  • Transportplattfor men can be moved along a closed transport path.
  • the invention has for its object to overcome the abuses of the prior art to the.
  • a corrugated cardboard plant is to be created, which allows a special easy feeding and / or removal of (residual) rolls of material to a corrugated board production line or away from it.
  • the intervention in a hall in which the corrugated cardboard plant is housed should be as low as possible for the transport of the material rolls. A corresponding procedure should also be provided.
  • the core of the invention lies in the at least one Transportwa gene or -trolley, between at least one roll of material and at least one intermediate web dispenser or corrugated web dispenser, cover sheet dispenser and / or Kaschierbahn- dispensing device in particular for transporting or removal of the Material rolls, such as paper rolls or cardboard rolls, for the production of corrugated board is movable.
  • the control device controls the at least one transport carriage accordingly. It is conveniently electronic type. A signal transmission between the controller and the at least one trolley is conveniently wirelessly.
  • the control device is preferably a central control device.
  • the at least one transport vehicle preferably has its own communication device with a receiving unit for receiving external information or signals, which are, for example, driving, destination and / or surrounding information, in particular from the control device.
  • the communication device in addition to a receiving unit for receiving external information, such as the control device and / or an auxiliary control, and a transmitting unit for transmitting information or signals, for example, from each position, driving, ambient and / or loading information to the controller.
  • the trolley is preferably schickbar to any location. He is preferably moved without a rail.
  • a central control device of the trolley is particularly simple executable or inexpensive.
  • the controller preferably coordinates the at least one transport carriage, conveniently a plurality of transport vehicles.
  • the at least one transport vehicle preferably has at least one own travel drive for, in particular direct or indirect, driving of at least one drivable Lau unit thereof.
  • the at least one traversing drive is preferably formed as an electric drive. He is preferably directly or indirectly on a frame of the trolley is arranged.
  • the at least one traversing drive is favorably in direct or indirect drive connection with the drive unit (s) to be driven. He has an engine.
  • the Trans portwagen is preferably independently driven.
  • the at least one transport vehicle is preferably independently controllable. He is especially self-driving.
  • the trolley includes its own energy storage unit, which is designed for example as Baterie or accumulator. When discharged, stored chemical energy is preferably converted into electrical energy by electrochemical reaction. converts. The trolley is thus independent of a power grid or house installation.
  • the running units of the trolley are preferably designed as wheel units, which comprise, for example, in each case a wheel or a double wheel.
  • the running units are, for example, chain units or sliding units. Combinations are possible.
  • the running units are preferably arranged directly or indirectly on the frame or mounted thereon.
  • the at least one trolley is preferably horizontally on a ground moving bar.
  • the substrate is preferably made of concrete, in particular fiber concrete. It preferably extends horizontally.
  • a roll of material is accommodated, which is formed by a rolled-up material web and is preferably required for the production of corrugated cardboard.
  • the Materialrollenaufhahme is conveniently accessible from above. It preferably extends along the trolley. In the material roll holder but also an empty inner support sleeve of a roll of material can be accommodated.
  • the material roll receptacle is preferably unlimited in the longitudinal direction.
  • This embodiment allows a relative longitudinal displacement between the trolley and a record to be delivered or roll of material, which is compared to the trolley, in particular slightly feeble, raised.
  • the trolley is so easy along the Materialrollenaufhahme or the roll of material under the raised roll of material mobile or moved away from this. There is a shift in the axial direction of the roll of material. Collision points between the trolley and the material roll do not exist.
  • the roll of material rolls is thus preferably open or free in its longitudinal direction.
  • the material roll receptacle has down favorably at least one support element for the support from a substrate during compression of at least one spring unit.
  • the trolley is so very durable.
  • the at least one support element is preferably plate-shaped and dimensionally stable before. It is preferably relative to the frame, in particular overload, displaceable.
  • a material roll detection sensor of the trolley is designed, for example, as a weight sensor or optical sensor. It is expedient if the material roll recognition sensor is assigned to the material roll take-up. He is in particular able to recognize whether the trolley is loaded or unloaded. It is advantageous if a corresponding infor mation on the communication device to the central control device of Wellpappean position can be sent.
  • the corrugated cardboard plant has, for example, a cross-cutting device for cutting the double-faced laminated corrugated cardboard web in sheets. It is useful if the Wellpappean situation also includes a stacking device for stacking the sheets.
  • the embodiment according to the dependent claim 2 leads to a particularly secure guidance of the at least one transport vehicle.
  • the at least one Verfahrwegvorgabe- arrangement is designed as a marker and is applied for example on the ground as a paint or paint. For example, it is visible or invisible.
  • Such Ausgestal device requires only a particularly small interference with the corrugated cardboard plant aufhehmende hall.
  • Verfahrwegvorgabean Aunt is formed according to one embodiment, at least partially by at least one power supply coil, which is conveniently arranged in the underground.
  • the travel default arrangement is at least partially formed by a wire disposed on or in the ground.
  • a travel path detection device of the transport carriage recognizes the at least one Ver guideway specification arrangement as a travel. It is favorably optical type. It is preferably designed as a camera, sensor or the like.
  • the trolley follows the route specification.
  • the travel default arrangement is conveniently linear. For example, it is interrupted or uninterrupted.
  • the at least one transport vehicle can be moved, for example, along an imaginary transport path, which is defined, for example, in a software and conveniently has at least one straight and / or curved section.
  • An imaginary travel path is understood to mean, in particular, a travel path that is not real or tangible.
  • the imaginary travel path can also be referred to as a fictitious travel path, for example.
  • the at least one trolley is controllable for example via a software control.
  • the trolley is preferably steerable. He is able to drive straight. Furthermore, cornering or turning is possible. This makes the trolley extremely flexible.
  • the travel path is preferably arbitrarily specifiable, which simplifies the planning of the rest of the infrastructure.
  • the trolley is preferably moved freely from fixed travel paths before. For example, it is capable of performing a turn when, for example, its receiving unit receives corresponding, direct or indirect, information, for example, from the central controller.
  • a steering of the trolley or deflection of at least one running unit by a control of the trolley or by corre sponding signals can be brought.
  • At least one running unit is deflectable. This can be done, for example, specifically by an actuatable steering device.
  • two travel drives are present, which can be controlled separately or independently and are in drive connection with corresponding running units. With identical control of the traversing drives the trolley straight, while this drives with different control of the traversing a cornering or a turning maneuver makes.
  • the travel drives are independent of each other and can be controlled differently. They can be driven in opposite directions of rotation.
  • the embodiment according to the dependent claim 3 allows a particularly simple loading or unloading of the trolley.
  • the trolley is able to shift the material layer axially.
  • a lateral offset of the at least one transport gens opposite the at least one Vorfahrwegvorgabean extract between 2 cm and 15 cm, preferably between 3 cm and 8 cm, possible.
  • the at least one Verfahrwegvorgabean Aunt is at least partially closed as a circuit. It is expedient if the at least one travel path presetting arrangement has at least one material roll feed part travel path and at least one material roll discharge part travel path. Conveniently, the at least one material roll feed partial travel path is designed at least in regions as a one-way street. The at least one material roll-off partial travel path is preferably designed at least in regions as one pathway. This corrugated board plant is particularly economical. It is expedient if there is a closed, in particular fully automatic, material roll or transport carton cycle. It is advantageous if at least one path in opposite directions of the at least one trolley is passable. Preferably, at least one path is passable only in one direction from the at least one transport vehicle. The at least one travel default arrangement conveniently comprises at least one material roll or dolly cycle. The at least one material roll feed part travel path and material roll discharge part travel path are conveniently separated from one another when configured as a one-way street.
  • the corrugated cardboard plant according to claim 4, 5 is particularly economical.
  • the at least one distribution path at least one cover path, intermediate path and / or Kaschierbahnweg connects, leading to the cover web, inter mediate or Kaschierbahn- dispensing device or to their respective Abrollisme. It is advantageous if the at least one Deckbahnweg, insectsweg and / or Ka schierbahnweg at least partially as, in particular endless, one-way and / or Ge gen Godée is executed for at least one trolley.
  • the embodiment according to the dependent claim 6 provides a further improved leadership of at least one trolley. In particular, such a position marker is disclosed Benach to a switch, intersection and the like. It is preferably carried out as a paint again.
  • the corrugated cardboard plant according to the dependent claim 7 is also particularly economical or efficient. Waiting times for transporting or removing new material rolls are thus avoided. It is expedient if the at least one trolley buffer area is arranged adjacent to the at least one intermediate web discharge device, cover web discharge device and / or laminating web discharge device.
  • the corrugated cardboard plant according to the dependent claim 8 is particularly safe.
  • the control device also takes over the monitoring of at least one danger or protection area.
  • Access control to the at least one protection area is effected, for example, electronically-optically, in particular by means of at least one (laser) light barrier or a light curtain.
  • the at least one transport vehicle located in the protected area is then immediately put out of operation when the danger is detected.
  • a release for detected danger is preferably carried out by an operator, example, by acknowledging.
  • the control device preferably controls a central security concept, so that the at least one trolley ver comparatively easy to carry out.
  • the embodiment according to the subclaim 9 allows a substantially uninterrupted method of the at least one transport vehicle. Conveniently, the charging takes place in ductile, in particular by at least one coil.
  • the energy storage unit of the trolley in particular inductive tive, is rechargeable.
  • the energy storage is rechargeable in moving and / or stationary trolley.
  • the corrugated cardboard plant according to dependent claim 10 is extremely safe.
  • the at least one intermediate web dispensing device, cover sheet dispensing device and / or laminating web dispensing device is also.
  • the dependent claims 2 to 21 preferably also relate to advantageous developments of the proceedings according to claim 22.
  • FIG. 1 is a perspective view of a trolley
  • Fig. 2 is an exploded view illustrating the essential parts of the transport carriage shown in Fig. 1,
  • FIG. 3 shows a cross section through the transport carriage shown in Fig. 1, 2,
  • FIGS. 1 to 3 shows a further cross section through the trolley shown in FIGS. 1 to 3, wherein the spring units are in an unloaded state
  • FIG. 5 is a cross-sectional view corresponding to FIG. 4, wherein the spring units are now in a loaded, compressed state
  • 6 is a bottom view showing the transport carriage illustrated in FIGS. 1 to 5 and a roll of material disposed thereon;
  • Fig. 7 is a side view of the arrangement shown in Fig. 6 of trolley and
  • FIG. 8 shows a longitudinal section through the arrangement shown in Fig. 6 of trolley and roll of material according to the section line VIII-VIII in Fig. 6,
  • FIGS. 6 to 8 show a perspective view of the arrangement of transport carriage and material roll shown in FIGS. 6 to 8,
  • FIG. 10 shows a cross section through the arrangement of Transportwa conditions and material roll shown in Fig. 6 to 9,
  • FIG. 12 is a view illustrating the power supply coil shown in FIG. 11 and a dolly above it; FIG.
  • Fig. 13 shows another arrangement of an illustrated dolly and a
  • Fig. 14 is a Ffitsmale through the arrangement shown in Fig. 13 of trolley and roll of material according to the section line XIV-XIV in Fig. 13, and
  • Fig. 15 is a partial plan view of a simplified corrugated board according to the invention according to a first embodiment, in which also trolley and their Ver routes are shown with
  • Fig. 16 is a partial plan view of a simplified corrugated cardboard according to a second embodiment of the invention, in which also trolley and their travels are shown.
  • the paper roll transport carriage 5 has a rigid frame 1, which is like a frame or a chassis.
  • the frame 1 carries a paper roll receptacle 2 for an endli che rolled-up paper web and a plurality of wheel units 3 for moving the paper roll transport carriage 5 on a substrate and a communication device. 4
  • the paper roll trolley 5 Depending on received via the communication device 4 signals or Informa functions of the paper roll dolly 5 is set in motion. Furthermore, it is beispielswei se whose speed can be specified. The paper roll trolley 5 are accordingly also way or destination information can be transmitted. The paper roll trolley 5 is straight or curved manner.
  • the frame 1 has two longitudinal sides 6 and two transverse sides 7.
  • the longitudinal sides 6 are parallel to each other. They extend parallel to the paper roll receptacle 2.
  • the transverse sides 7 extend parallel to each other.
  • the longitudinal sides 6 and the transverse sides 7 extend rechtwink lig each other.
  • an independent positioning drive 8 Adjacent to each longitudinal side 6 is on the frame 1, an independent positioning drive 8 is arranged, which comprises a drive shaft having an electric motor.
  • each traversing drive 8 or its drive shaft is a drive track 9 in drive connection, which is rotatably mounted or rotationally driven.
  • the axes of rotation of the drive wheels 9 are aligned with each other. They extend perpendicular to the longitudinal sides 6.
  • the drive wheels 9 are located in the middle with respect to a longitudinal direction 10 of the paper roll transport carriage 5. They are unthinkable.
  • a steering wheel unit 11 angeord net, each comprising a twin wheel.
  • the twin wheels are rotatably mounted. Every steering Wheel unit 11 is independently steerable about a vertical steering axle 12.
  • the steering wheel units 11 are freely deflectable, in particular by 360 °.
  • the steering axles 12 are parallel to each other.
  • the paper roll receptacle 2 is formed by two mutually spaced gutter parts 13, which are each mounted vertically displaceable on the frame 1.
  • the gutter parts 13 extend next to the transverse sides 7 between the longitudinal sides 6. Their lowest point of contact is located centrally between the longitudinal sides 6. They are of symmetrical design.
  • the gutter parts 13 have their highest points adjacent to the longitudinal sides 6 of the frame 1. They are adjacent to the transverse sides 7 of the frame 1 and open in the longitudinal direction.
  • the paper roll receptacle 2 carries at least one horizontally extending support plate 67 below.
  • each spring unit 14 is formed by a helical compression spring which is prestressed and compressible. Screw axes 15 of the spring units 14 extend vertically.
  • the spring units 14 are supported on the frame 1 above.
  • one of the gutter parts 13 lies on at least two spring units 14 at the top.
  • the maximum spring travel of the spring units 14 is favorably in each case between 3 mm and 10 mm, more preferably between 5 mm and 8 mm.
  • Guides 16 are arranged between the frame 1 and each channel part 13, which allow a verti cal displacement of each channel member 13 while changing the length of the associated spring units 14, but prevent or reduce a horizontal displacement of each channel part 13 relative to the frame 1.
  • Each guide 16 is formed by a guide pin 17 ge, which extends vertically and engages in an associated spring unit 14 from above.
  • an accumulator 18 is also arranged on the frame 1.
  • the accumulator 18 han delt it is a rechargeable storage for electrical energy for the travel drives
  • a voltage regulator 19 is arranged on the frame 1.
  • the voltage regulator 19 is electrically connected to the accumulator 18. He is capable of fluctuations in the electrical Balance input voltage of the accumulator 18.
  • the voltage regulator 19 is favorably electronic type. He is also in electrical communication with the two travel drives 8.
  • a controller 20 is further arranged, which is capable of the two travel drives 8 independently zuzusteuem.
  • the controller 20 is also in signal communication with the communication device 4.
  • a terminal box 21 is arranged on the frame 1.
  • the electronic or electrical components of the paper roll transport carriage 5 are electrically connected.
  • a safety device 22 which is designed as a scanner, in particular a laser scanner, is arranged on the frame 1 in a front corner area.
  • Theoreinrich device 22 is connected to the controller 20 in signal communication. She is able to stop the paper roll trolley 5 when detected danger.
  • an emergency stop device 23 is arranged at each end of the paper roll transport carriage 5. Each emergency stop device 23 is able, on actuation, to switch off the travel drives 8 or to immediately interrupt the power supply to them.
  • a travel path recognition device 24 Adjacent to the front transverse side 7, a travel path recognition device 24, which is designed as a sensor, is arranged centrally on the frame 1.
  • the Verfahrweg- recognition device 24 is elongate and extends horizontally. It is perpendicular to the longitudinal direction 10 of the paper roll transport carriage 5. It is able to recognize a given travel path.
  • the frame 1 also holds an inductive energy transfer device 25.
  • the energy transfer device 25 is connected to the accumulator 18 in electrical connection. It is arranged in a central region of the paper roll transport carriage 5.
  • the energy transfer device 25 carries a paper roll recognition sensor 26 at the top.
  • the paper roll recognition sensor 26 is capable of recognizing whether the paper roll transport carriage 5 is loaded or unloaded. He is in the paper roll holder 2.
  • the paper roll transport carriage 5 is moved by energizing the at least one traversing drive 8.
  • the necessary electrical energy comes from the accumulator 18.
  • the United driving drives 8 indirectly receive corresponding driving signals via the Verfahrweg- recognition device 24 and / or via the communication device. 4
  • the paper roll transport carriage 5 rotates in place.
  • the paper roll transport carriage 5 makes a turn.
  • the steering wheel units 11 are automatically adjusted to the respective steering axis 12. If the two drive wheels 9 driven identically and in the same direction who the, then moves the paper roll dolly 5 straight.
  • the steering wheel units 11 are automatically set according to a straight ahead.
  • the biased spring units 14 hold the paper roll 27 and the gutter parts 13 even at maximum paper roll weight, such as five tons, still in position. In an overload, dyna mix or static, give the spring units 14 until the Textilrollenaufhahme 2 springs so far that the at least one support plate 67 strikes the ground and thus dissipates the overload directly into the ground without overloading the paper roll trolley 5.
  • the paper roll 27 arranged in the paper roll receptacle 2 lies on the paper roll recognition sensor 26, which thus recognizes a load with the paper roll 27. It stretches horizontally.
  • the paper roll 27 rests on the gutter parts 13.
  • the gutter parts 13 are located above a partial catching area of the paper roll 27 at this bottom and / or laterally.
  • the paper roll 27 is, conveniently uniform, over the paper roll transport carriage 5 in the longitudinal direction by 10 and / or in the transverse direction over.
  • the paper roll 27 covers in its longitudinal or axial direction and in its transverse direction, that is perpendicular to its longitudinal direction, the paper roll-trolley 5 completely.
  • Each Abrollmaschine of each splicer device / web dispensing device conveniently has a Abrollarman für rotatable Fagem the respective paper roll 27.
  • the corrugated papermaking line extends along a corrugated papermaking direction. It comprises a first corrugated cardboard manufacturing device 28 for producing a single-faced corrugated cardboard web laminated on one side.
  • the first corrugated board manufacturing device 28 is preceded by a first cover sheet splicing device 29 and a first intermediate web splicing device 30.
  • the first cover sheet splicing device 29 comprises a first unwinding unit for unrolling a finite first cover sheet from a first cover sheet roll and a second unwinding unit for unrolling a finite second cover sheet from a second cover sheet roll.
  • the finite first cover sheet and second Covering web are connected together to provide an endless first cover sheet by means of a connecting and cutting unit of the first cover sheet splicing device 29.
  • the first intermediate web splicing device 30 is formed corresponding to the first cover web splicing device 29. This comprises for rolling a finite first intermediate web of a first intermediate web roll, a third unwinding unit and for unrolling a fini chen second intermediate web of a second intermediate web roll, a fourth unwinding unit.
  • the finite first intermediate web and second intermediate web are joined together to provide an endless first intermediate web by means of a joining and cutting unit of the first intermediate web splicing device 30.
  • the endless first cover sheet and the endless first intermediate web are fed to the first corrugated board manufacturing device 28.
  • the first corrugated paperboard manufacturing apparatus 28 comprises a first corrugating roll assembly having a first corrugating roll and a second corrugating roll for convincing a corrugation-facing, endless first corrugated sheet from the endless first intermediate sheet.
  • the corrugating rolls form a first nip for passing and corrugating the endless first intermediate web.
  • the first corrugated cardboard manufacturing device 28 For connecting the endless first cover sheet with the endless corrugated first intermediate web or corrugated web to the one-sided laminated endless first corrugated board, the first corrugated cardboard manufacturing device 28 on a first glue application device, which preferably comprises a Leimdosierwalze, a glue container and a glue applicator roll.
  • a first glue application device which preferably comprises a Leimdosierwalze, a glue container and a glue applicator roll.
  • the glue present in the glue container is applied via the glue application roller to tips of the corrugation of the endless first corrugated web.
  • the glue metering roller bears against the glue application roller and serves to form a uniform glue layer on the glue application roller.
  • the endless first cover sheet is then joined together with the endless first corrugated web, which is provided with glue from the glue container, in the first corrugated board production device 28 for producing the first corrugated board web laminated on one side.
  • the first Wellpap PE manufacturing device 28 For pressing the endless first cover sheet against the provided with glue, endless first corrugated web, which in turn rests in regions on the first corrugating roll, the first Wellpap PE manufacturing device 28 has a first Anpressmodul.
  • the first Anpressmodul is conveniently designed as Anpressbandmodul. It is located above the first corrugating roll.
  • the first pressing module has two first deflection rollers and an endless first pressure belt, which is guided around the first two guide rollers.
  • the first corrugating roller engages in a space between the two first guide rollers of the first Anpressmoduls regionally from below, whereby the first pressure belt is deflected by the first corrugating roller.
  • the first pressure belt presses against the endless first cover sheet, which in turn is pressed against the provided with glue, applied to the first corrugating roll, endless first corrugated web.
  • first high-transport device For temporarily storing and buffering the single-sided, endless first corrugated board web, it is fed via a first high-transport device to a first storage device where it forms loops.
  • the corrugated board manufacturing line has a second corrugating machine 31 formed in correspondence with the first corrugating machine 28.
  • the second corrugated board manufacturing device 31 is preceded by a second cover sheet splicing device 32 and a second intermediate web splicing device 33 which are formed corresponding to the first cover sheet splicing device 29 and the first intermediate web splicing device 30, respectively.
  • the second cover sheet splicing device 32 comprises for rolling a finite third deck web of a third cover web roll, a fifth unwinding unit and for unrolling a fin fourth cover sheet from a fourth cover web roll a sixth unwinding unit.
  • the finite Third cover sheet and fourth cover sheet are connected to each other to provide an endless second deck by means of a connecting and cutting unit of the second cover sheet splicing device 32.
  • the second intermediate web splicing device 33 comprises a seventh unwinding unit for unrolling a finite third intermediate web from a third intermediate web roll and an eighth Abrol unit for unwinding a finite fourth intermediate web from a fourth intermediate web roll.
  • the finite third intermediate web and fourth intermediate web are joined together to provide an endless second intermediate web by means of a joining and cutting unit of the second intermediate web splicing device 33.
  • the second corrugated papermaking apparatus 31 is capable of producing a single-faced, endless, second corrugated board web from the endless second cover web and intermediate web.
  • the single-sided laminated, second corrugated board web is a second memory device supplied, where it forms loops.
  • the corrugated board manufacturing line also has a liner splicer 34 which comprises a tenth take-off unit for unwinding a finite first liner from a first liner web roll and a tenth take-off unit for unwinding a finite second liner web from a second leader web.
  • the finite first liner and the end Liche second Kaschierban be connected to each other to provide an endless laminating by means of a connecting and cutting unit of the laminating splicer 34.
  • the corrugated board manufacturing line Downstream of the storage devices and the liner splicer 34, the corrugated board manufacturing line has a preheater comprising three superposed preheating rollers. The preheating the single-side laminated, endless corrugated cardboard sheets and the endless laminating are supplied.
  • the corrugated board manufacturing line Downstream of the preheater, the corrugated board manufacturing line has a gluing unit with gluing rollers partially submerged in a respective glueing bath.
  • a Leimdosierwalze is applied to a uniform layer of glue on the adjacent to form a gluing roller.
  • the one-sided laminated, first corrugated board web is in contact with its corrugated web with a first gluing roller, so that the corrugation of this corrugated web is provided with glue from the glueing bath.
  • the single-faced, second corrugated cardboard web is in contact with its corrugated web with a second gluing roller, so that the corrugation of this corrugated web is provided with glue from the associated glueing bath.
  • the corrugated board production line Downstream of the gluing unit, the corrugated board production line has a connecting device 35, which is designed as a heating press-on device and comprises a horizontally extending heating table. Adjacent to the heating table, a guided around guide rollers, endless pressure belt is arranged. Between the pressure belt and the heating table, a pressure gap is formed through which the corrugated cardboard webs laminated on one side and the endless laminating web are guided to form the endless, here five-day corrugated cardboard web.
  • a connecting device 35 which is designed as a heating press-on device and comprises a horizontally extending heating table. Adjacent to the heating table, a guided around guide rollers, endless pressure belt is arranged. Between the pressure belt and the heating table, a pressure gap is formed through which the corrugated cardboard webs laminated on one side and the endless laminating web are guided to form the endless, here five-day corrugated cardboard web.
  • the corrugated board manufacturing line Downstream of the connection device 35, the corrugated board manufacturing line has a short cross-cutting device.
  • the corrugated board manufacturing line Downstream of the short cross cutter, the corrugated board manufacturing line includes a slitter / scorer.
  • the corrugated board manufacturing line Downstream of the slitter / corrugator, the corrugated board manufacturing line has a cross-cutter to produce from the endless corrugated web or partial webs of the same sheets.
  • the cross-cutting device is arranged downstream of a conveyor belt device to further claim the sheets.
  • the conveyor belt device is arranged downstream of a storage device.
  • Adjacent to the corrugated board manufacturing line is a paper roll store 36 of the corrugated board plant in which a plurality of, conveniently different, paper rolls 27 are stored for the splicing devices 29, 30, 32, 33, 34.
  • Adjacent to the paper roll store 36 is a transfer point 36a, where the paper rolls 37 are transferred from the paper roll store 36 to the respective paper roll transport carriage 5, for example manually or automatically.
  • travel markings 38 are also shown, which indicate and predetermine the travel paths of the paper roll transport carriages 5 in the corrugated cardboard plant.
  • the travel markings 38 are visible and applied as a paint on a level surface supporting the corrugated board system. They can be recognized by the travel path recognition devices 24 of the paper roll transport carriages 5.
  • the paper roll dolly 5 follow in normal operation while driving the travel markers 38, the curves, switches, crossings and straight sections include.
  • the central control device 65 determines how the paper roll transport carriage 5 should travel at switches, crossings or the like.
  • the maximum Ver driving speed of the paper roll transport carriage 5 is preferably 0.4 m / s.
  • the transfer point 36a is adjoined by a feed-removal path 39, where the paper-roll transport carriages 5 move in opposite directions during operation of the corrugated cardboard plant.
  • the feed-off guide path 39 has a subsequent to the transfer point 36 a straight section and the end an arc section.
  • a distribution path 40 connects.
  • the distribution path 40 extends parallel to the straight section of the delivery-discharge path 39 and the corrugated production line. It extends between the straight portion of the feed-discharge path 39 and the corrugated board manufacturing line.
  • the supply discharge path 39 adjoins the distribution path 40 at a distance from ends of the distribution path 40.
  • first diverter 41 and a second diverter 42 Between the distribution path 40 and the supply discharge path 39 there are a first diverter 41 and a second diverter 42. Depending on the selected diverter 41, 42, the paper roller transport vehicles 5 are guided correspondingly into the distribution path 40. The paper roll trolley 5 are so again from the distribution path 40 via the respective turnout 41, 42 back to the feed From 39 guideway feasible.
  • a first cover path 43 connects via a 90 ° bend.
  • the distribution path 40 is adjoined by an additional 90 ° bend by an intermediate track covering path 44 which extends parallel to the first covering path 43.
  • An intermediate web laminating path 45 which runs parallel to the intermediate web cover web path 44, adjoins the distribution path 40 via a further 90 ° bend.
  • An altemative path 46 adjoins the distribution path 40 at the end via another 90 ° bend.
  • the intermediate web cover web path 44 is disposed between the first cover web path 43 and the intermediate web laminating path 45.
  • the intermediate web laminate path 45 is disposed between the intermediate web cover sheet path 44 and the altemative path 46.
  • the first cover pathway 43 and the intermediate track cover pathway 44 are reachable via the first switch 41 from the feed-off guide path 39.
  • the intermediate web Kaschierbahnweg 45 and the Altemativweg 46 are on the second switch 42 from the feed-Ab guide path 39 from he reichbar.
  • the Altemativweg 46 serves to improve the travel paths of the paper roll transport carriage. 5
  • a cover sheet return path 47 which runs straight ver and aligned with the first Deckbahnweg 43.
  • a first cover web feed path 48 and via a wide re turnout and a further sheet a second cover web path feed path 49 adjoin the first cover web path 43 via a switch and a bow.
  • the cover sheet return path 47, the first cover sheet feeding path 48, and the second cover sheet feeding path 49 are mainly straight, parallel to each other, and each perpendicular to the corrugated board manufacturing line. They are each one way and through put the corrugated board manufacturing line.
  • the cover sheet feed paths 48, 49 are aligned with the Ab roll units of the first cover sheet splicing device 29th
  • the cover sheet return path 47, the first cover sheet feed path 48 and the second cover sheet feed path 49 are located in a first laser scanner protection area 50.
  • Lichtvor slope and entrained transponder when entering the laser scanner protection area 50th hazardous movements stopped by the central control device 65 and also released again, without an operator must re ff eigige the corresponding places ff.
  • Adjacent to the intermediate web cover sheet path 44 is an intermediate web cover sheet return path 51 which is straight and in alignment with the intermediate web cover web path 44.
  • a first intermediate web feed path 52 connects to the intermediate web cover web path 44 via a switch and a bow.
  • a second intermediate web feed path 53 adjoins the intermediate web cover web path 44 via a further switch and a further sheet.
  • a third cover web feed path 54 adjoins the intermediate web cover web path 44 via a further switch and a further sheet.
  • the first intermediate sheet feeding path 52, the second intermediate sheet feeding path 53, the third cover sheet feeding path 54 and the fourth cover sheet feeding path 55, and the intermediate sheet covering sheet return path 51 are respectively mainly straight, parallel to each other and perpendicular to the corrugated board manufacturing line. They are each one-way.
  • the first interleaf feed path 52 and the second interleaf feed path 53 are aligned with the Abrol lein whatsoever the first intermediate web splicer 30.
  • the third cover web feed path 54 and the fourth cover web Zu manufacturedweg 55 are aligned with the Abrollismeen the second cover web splicing 32nd
  • the first intermediate web feed path 52, the second intermediate web feed path 53, the third cover web feed path 54, and the fourth cover web feed path 55 and the intermediate web cover sheet return path 51 pass through the corrugated papermaking line and are located in a second laser scanner protection area 56
  • a second laser scanner protection area 56 By means of a light curtain and entrained trans ponder upon entering the second laser scanner protection area 56 dangerous Be movements are stopped and released again, without an operator must approve the corresponding bodies again.
  • the intermediate web laminating path 45 is followed by an intermediate web laminating path return path 57, which runs straight and is cursed with the intermediate web laminating path 45. tet.
  • the intermediate web Kaschierbahnweg 45 connects via a switch and a bow, a third intermediate web feed path 58 at.
  • a fourth intermediate web feed path 59 connects to the intermediate web Kaschierbahnweg 45 via a switch and a bow.
  • At the intermediate web Kaschierbahnweg 45 connects via a switch and a bow, a second liner feed path 61 at.
  • the third intermediate sheet feeding path 58, the fourth intermediate sheet feeding path 59, the first sheet feed path 60, and the second laminating feed path 61 and the intermediate sheet laminating path return path 57 are mainly straight, parallel to each other and perpendicular to the corrugated production line ,
  • the third intermediate web feed path 58 and the fourth intermediate web feed path 59 are aligned with the unwind units of the second web splicer 33.
  • the first stocker feed path 60 and the second stocker feed path 61 are aligned with the unwind units of the liner splicer 34.
  • the third intermediate web feed path 58, the fourth intermediate web feed path 59, the first sheeter feed path 60 and the second feed path 61 as well as the intermediate web feed path return path 57 penetrate the corrugated production line and are located in a third laser scanner protection area 62.
  • hazardous Be movements are stopped when entering the third laser scanner protection area and also released again, without an operator must approve the corresponding bodies again.
  • a central control device 65 of the corrugated cardboard plant causes the collection of a paper roll 27 to be used from the paper roll store 36 for corrugated production in the corrugated production line via a paper roll transport carriage 5.
  • a paper roll trolley 5 moves to the transfer point 36a, if he still there not located.
  • the paper roll 27 is loaded there on the paper roll transport carriage 5. It is centered in the paper roll holder 2.
  • the central control device 65 then sends the loaded paper roll transport carriage 5 to the paper roll 27 requiring splicing device 29, 30, 32, 33 and 34th
  • the paper roll transport carriage 5 can move laterally offset to the Verfahrwegmark ist 38 in particular by targeted control.
  • the paper rolls 27 are so according to their external diameter exactly according to the splicer to be equipped 29, 30, 32, 33 and
  • the paper roll transport carriage 5 is formed, the paper roll 27 axially verla with respect to this or relative to the frame 1 to verla.
  • the paper-roll transport carriage 5 moves to a splicer 29, 30, 32, 33 and 34, respectively, along the supply-discharge path 39 in the direction of the distribution path 40.
  • the paper roll transport carriage 5 moves via the first turnout 41 onto the distribution path 40 and passes through the intermediate runway cover path 44. This passes then via the first cover path 43 to the As a function of the required equipping of the first or second unwinding unit of the first cover splice device 29, the corresponding feed path 48, 49 is selected.
  • the residual paper roll 27 which may be completely empty or still carrying paper, is moved away from the corresponding unwinding unit away from the first cover web path 43.
  • the remainder paper roll 27 is then driven over the cover sheet return path 47, the first cover sheet path 43, the distribution path 40, the switch 41 and the lead-off guide path 39 back to the paper roll storage 36.
  • the paper roll transport carriage 5 moves via the first switch 41 and the distribution path 40 into the intermediate web cover web path 44.
  • the first intermediate web splicing device 30 is the corre sponding Zuliteweg 52, 53 selected.
  • the remaining paper roll 27, which may be completely empty or still carrying paper is moved away from the corresponding unwinding unit away from the first intermediate web cover web path 44.
  • the residual paper roll 27 is then moved back to the paper roll stocker 36 via the intermediate web cover sheet return path 51, the first intermediate sheet cover sheet path 44, the distribution path 40, the switch 41, and the supply discharge path 39.
  • the paper roll transport carriage 5 moves via the first switch 41 and the distribution path 40 in the intermediate web cover path 44.
  • the ent speaking supply path 54, 55 is selected.
  • the residual paper roll 27, which may be completely empty or still carrying paper, is moved away from the corresponding unwinding unit away from the intermediate web cover web path 44.
  • the remainder of the paper roll 27 is then moved back to the paper roll stocker 36 via the interleaf covering sheet return path 51, the intermediate sheet covering sheet path 44, the distribution path 40, the diverter 41 and the feeding-off path 39.
  • the paper roll trolley 5 passes through the second turnout 42 and the United partial path 40 in the intermediate web Kaschierbahnweg 45. Depending on the required Be fitting the seventh or If the unwinding unit of the second intermediate web splicing device 33 is selected, the corresponding feed path 58, 59 is selected.
  • the remainder of the paper roll 27 is then moved back to the paper roll storage 36 via the intermediate web laminating path return path 57, the intermediate web laminating path 45, the dividing path 40, the second diverter 42 and the feed-discharging path 39.
  • the paper roll transport carriage 5 moves via the second switch 42 and the distribution path 40 in the intermediate web Kaschierbahnweg 45.
  • the corre sponding Zuliteweg 60, 61 is selected.
  • the remaining paper roll 27, which may be completely empty or still carrying paper, is moved away from the corresponding unwinding unit away from the intermediate web laminating path 45.
  • the rest of the paper roll 27 is then moved over the inter mediate belt lining return path 57, the intermediate web Kaschierbahnweg 45, the United partial path 40, the second switch 42 and the feed-Abriosweg 39 back to the Textilrollenla ger 36.
  • the paper roll trolley 5 move safely on their trajectory, which is formed by the individual nen ways. They are charged in charging zones, which are formed by coils 66 in the underground along the travel path.
  • the coils 66 are preferably laid centrally with respect to the travel mark and extend over a large part of the travel path Ver.
  • the electrical energy of the coils 66 is transmitted to the paper roll transport carriage 5 via the energy transfer device 25.
  • the charging zones coincide favorably with waiting zones.
  • a cycle is created in the corrugated cardboard plant, which is formed in particular by the onward transport of the paper rolls 27 and the removal of the remaining paper rolls 27.
  • the transport of the paper rolls 27 and / or the removal of the residual paper rolls 27 takes place in each case at least partially, more preferably at least for the most part, in one-way operation or unidirectionally.
  • the removal or return transport of the residual paper rolls 27 takes place at least partially, more preferably at least for the most part, on a separate path.
  • a cycle of paper rolls 27 and residual paper rolls 27 with one-way operation is thus enabled.
  • the feed discharge path 39 is used both for feeding and discharging the paper roll transport car 5 with respect to the paper roll storage 36, regardless of which splicing device 29, 32, 30, 33, 34 the paper roll transport car 5 are provided or from which they come.
  • the distribution path 40 is at least partially used by all paper roll transport car 5.
  • the paper rolls-Dolly 5 use this at least partially, to come to the ge planned splicer 29, 32, 30, 33, 34 and / or come from this or to the leading from-leading path 39.
  • the paper roll transport carriage 5 according to an alternative imple mentation form only put into motion when induction on a switch on the paper roll transport carriage 5 is supplied with energy. Without energy from the coils 66, the paper roll transport trolley 5 brakes controlled to a standstill.
  • the safety device 22 of the paper roll transport carriage 5 prevents collisions.
  • Each paper roll trolley 5 is also manually controllable.
  • each paper roll transport carriage 5 has an auxiliary control device 63 for connection to an external portable auxiliary control 64.
  • a corrugated board manufacturing line is provided for forming a three-ply or seven-ply corrugated board web.
  • a second embodiment of a corrugated cardboard plant will be described below with reference to FIG. 16. Identical parts or elements receive the same reference numerals as in the first embodiment, the description of which is hereby explicitly referred to. Con structive different, but functionally similar parts receive the same reference numerals with a subordinate "a".
  • the distribution path 40a is designed as a one-way street and a cycle.
  • the distribution path 40a which is thus continuous, comprises a substantially straight first distribution path section 68 adjoining the first switch 41 and second switch 42 and a second distribution route section 69 which runs parallel to the first distribution route section 68.
  • the first and second distribution path portions 68, 69 extend in parallel to the straight portion of the supply-discharge path 39 and the corrugated production line, and are connected to each other.
  • the paper roll transport carriages 5 are optionally moved in a first direction during operation of the corrugated board system, while the paper roll transport carriages 5 are moved on the second distribution path section 69 in a second direction opposite to the first direction.
  • the distribution path 40a is followed by a first cover path 43a.
  • the first cover pathway 43a Connected to the first distribution path section 68 and the second distribution path section 69 is the first cover pathway 43a, which is virtually endless and comprises a first cover path segment 70 and a second cover segment 71.
  • the cover web path sections 70, 71 extend parallel to one another and are aligned with the unwinding units of the first cover web splicing device 29.
  • the first cover web path section 70 connects via a connecting piece 72 to the first distribution path section 68 and via an arc 73 to the second distribution path section 69.
  • the second deck path section 71 connects via an arc 74 to the first Verteilwegabexcellent 68 and an arc 75 to the second Verteilwegabexcellent 69 at.
  • the first and second deck path portions 70, 71 pass through the corrugated board manufacturing line at the respective Abrol unit and are connected to each other beyond the corrugated production line.
  • the paper roll transport carriages 5 are movable both on the first cover web path section 70 and on the second cover web path section 71 in opposite directions for equipping the first cover web splicing device 29 and removing residual paper rolls 27.
  • a circumferential transport of the paper roll transport carriage 5 in one direction for equipping the first cover sheet splicing device 29 and removal of a residual paper roll 27 along the first cover web path 43 a is also possible.
  • the distribution path 40a is followed by a first intermediate pathway 76.
  • the first distribution path section 68 and the second distribution path section 69 are adjoined by the first intermediate pathway 76, which is virtually endless and comprises a first intermediate path segment 77 and a second intermediate path segment 78.
  • the embbahnwegabitese 77, 78 extend parallel to each other and to the Deckbahnwegab(2017)en 70, 71. They are aligned with the Abrollein units of the first intermediate web splicing 30.
  • the first Eisenbahnwegabites 77 is a double arch 79 to the first Verteilwegabexcellent 68 and a double sheet 80 to the second Verteilwegabexcellent 69 connected.
  • the second intermediate rail path section 78 is connected via a double arch 81 to the first Verteilwegabrough 68 and a second double arch 82 to the second Verteilwegabrough 69.
  • the first and second intermediate web path portions 77, 78 penetrate the corrugated board manufacturing line at the respective unwinding unit and are connected to each other beyond the corrugated board manufacturing line.
  • the paper roll transport carriage 5 are movable both on the first intermediate web path portion 77 and on the second intermediate web path portion 78 in opposite directions to the loading piece of the first intermediate web splicing device 30 and removal of residual paper rolls 27. Circulating transport of the paper roll transport carriage 5 in one direction for loading the first intermediate web splicing device 30 and removal of a residual paper roll 27 along the first intermediate path 76 is also possible.
  • a second cover path 83 connects.
  • the second Deckbahnweg connects 83, which is virtually endless and a first Deckbahnwegabites 84 and a second cover web wegabterrorism 85 includes.
  • the cover web path sections 84, 85 extend parallel to one another and to the cover web path sections 70, 71. They align with the unwinding units of the second Covering splice device 32.
  • the first cover web path section 84 connects via a double arch 86 to the first distribution path section 68 and via a double arch 87 to the second distribution path section 69.
  • the second cover web path section 85 connects to the first distribution path section 68 via a double arch 88 and to the second distribution path section 69 via a double arch 89.
  • the first and second cover sheet path sections 84, 85 pass through the corrugated board manufacturing line at the respective unwinding unit and are connected to each other beyond the corrugated board manufacturing line.
  • the paper roll trolley 5 are both on the first Deckbahnwegabexcellent 84 and on the second Deckbahnwegabexcellent 85 in opposite directions for equipping the second cover sheet splicing device 32 and removal of residual paper rolls 27 moved bar.
  • a circulating transport of the paper roll transport carriage 5 in one direction to Bestü ckung the second cover sheet splicing device 32 and removal of a residual paper roll 27 along the second cover sheet path 83 is also possible.
  • the distribution path 40a is followed by a second intermediate path 90.
  • the first intermediate path section 68 and the second distribution path section 69 are adjoined by the second intermediate path 90, which is virtually endless and comprises a first intermediate path section 91 and a second intermediate path section 92.
  • the embbahnwegabitese 91, 92 extend parallel to each other and to the Deckbahnwegab(2017)en 70, 71. They are aligned with the Abrol lein whatsoever the second intermediate web splicing device 33.
  • the first Eisenbahnwegab section 91 includes a double arch 93 to the first Verteilwegabexcellent 68 and a double arch 94 to the second Verteilwegabexcellent 69 at.
  • the second intermediate track section 92 connects via a double bow 95 to the first Verteilwegabites 68 and a double arch 96 to the second Verteilweg 69.
  • the first and second intermediate web path sections 91, 92 pass through the corrugated board manufacturing line at the respective unwinding unit and are connected to each other beyond the corrugated board manufacturing line.
  • the paper roll dolly 5 are both on the first Eisenbahnwegabexcellent 91 as well as on the second Eisenbahnwegabexcellent 92 in opposite directions to Be fitting the second intermediate web splicing device 33 and removal of residual paper rolls 27 movable. Circulating transport of the paper roll transport carriage 5 in one direction for loading the second intermediate web splicing device 33 and removal of a residual paper roll 27 along the second intermediate path 90 is also possible.
  • the distribution path 40a is followed by a laminating path 97.
  • the first distribution path section 68 and the second distribution path section 69 are followed by the laminating path 97, which is quasi endless and comprises a first laminating path section 98 and a second laminating section 101.
  • the Kaschierbahnwegabitese 98, 99 extend parallel to each other and to the Deckbahnwegab(2017)en 70, 71. They are aligned with the Abrollismeen the liner splicing device 34.
  • the first Kaschierbahnwegabites 98 connects via a double sheet 100 to the first Verteilwegabexcellent 68 and a double bow 101 to the second Verteilwegabexcellent 69 at.
  • the second Kaschierbahnwegabites 99 connects via a double arch 102 to the first Verteilwegabrough 68 and a double arch 103 to the second Verteilwegabexcellent 69 at.
  • the first and second Kaschierbahnwegab section 98, 99 enforce the corrugated manufacturing line at the respective unwinding unit and are connected to each other beyond the corrugated production line.
  • the paper rolls-Dolly 5 are on both the first Kaschierbahnwegabites 98 and on the second Kaschierbahnwegabites 99 in gegensinniggen directions to Be piece of laminating splicing device 34 and removal of residual paper rolls 27 ver mobile. Circumferential transport of the paper roll transport carriage 5 in one direction for loading the laminating sheet splicing device 34 and removal of a residual paper roll 27 along the laminating path 97 is also possible.
  • the cover web paths 43a, 83, intermediate web paths 76, 90 and the laminating path 97 are spaced from one another connected to the distribution path 40a and extend at a distance from each other. You are in a laser scanner protection area 50.
  • each paper roll transport carriage 5 always travels from the supply-discharge path 39 via the second switch 42 to the distribution path 40a.
  • Each paper roll trolley 5 moves over the first Verteilwegabites 68 on the second Verteilwegabites 69.
  • the central Steuerein direction 65 sends the loaded paper roll transport carriage 5 to the paper roll 27 required splicer 29, 30, 32, 33, 34 via the corresponding path 70, 71, 77, 78th .
  • the paper roll transport carriage 5 travels via the sheet 73 or the sheet 75 from the second distribution path section 69 to the cover web path section 70 or 71.
  • the corresponding cover web path section 70, 71 is selected.
  • the paper roll transport carriage 5 moves over the double sheet 80 or the double sheet 82 from the second distribution path section 69 to the intermediate web path section 77 or 78.
  • the corresponding intermediate web path section 77, 78 is selected.
  • the paper roll transport carriage 5 can also pass over the double sheet 79 or the double sheet 81 from the first distribution path section 68 to the intermediate web path section 77 or 78.
  • the paper roll transport carriage 5 travels over the double sheet 87 or the double sheet 89 from the second distribution path section 69 to the cover web path sections 84 and 85, respectively Equipping the first or second unwinding unit of the second cover web splicing device 32, the corresponding cover web path section 84, 85 is selected.
  • the paper roll transport carriage 5 can also pass over the double sheet 86 or the double sheet 88 from the first Verteilwegabschnit 68 on the Deckbahnwegabexcellent 84 and 85, respectively.
  • the paper rolls transport carriage 5 via the double sheet 94 or the double sheet 96 moves from the second Verteilwegabexcellent 69 on the Eisenbahnwegabexcellent 91 and 92.
  • the corresponding intermediate web path section 91, 92 is selected.
  • the paper roll transporting carriage 5 can also pass over the double sheet 93 or the double sheet 95 from the first distribution path section 68 to the intermediate web path section 91 or 92.
  • the paper roll transport carriage 5 moves over the double sheet 101 or the double sheet 103 from the second Verteilwegabites 69 on the Kaschierbahnwegabrough 98 and 99. In dependence from the required assembly of the first or second unwinding unit of the lamination splicing device 34, the corresponding laminating path sections 98, 99 are selected.
  • the paper roll transport carriage 5 can also pass over the double sheet 100 or the Doppelbo conditions 102 from the first Verteilwegabexcellent 68 on the Kaschierbahnwegabexcellent 77 and 78, respectively.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Machines For Manufacturing Corrugated Board In Mechanical Paper-Making Processes (AREA)
  • Replacement Of Web Rolls (AREA)
  • Platform Screen Doors And Railroad Systems (AREA)

Abstract

L'invention concerne une onduleuse, comprenant au moins un dispositif de distribution de bande intermédiaire (30, 33) destiné à distribuer au moins une bande intermédiaire, au moins un dispositif de distribution de bande de recouvrement (29, 32) destiné à distribuer au moins une bande de recouvrement, au moins un dispositif de fabrication de carton ondulé (28, 31) situé en aval du ou des dispositifs de distribution de bande intermédiaire (30, 33) et du ou des dispositifs de distribution de bande de recouvrement (29, 32) pour la fabrication d'au moins une bande de papier ondulé contrecollée d'un côté à partir de la ou des bandes de recouvrement et de la ou des bandes intermédiaires, un dispositif de distribution de bande de contrecollage (34) pour la distribution d'une bande de contrecollage, un dispositif de liaison (35) pour la liaison de la ou des bandes de papier ondulé contrecollées d'un côté et de la bande de contrecollage les unes aux autres pour la formation d'une bande de papier ondulé contrecollée des deux côtés, au moins un chariot de transport (5) pour le transport d'au moins un rouleau de matériau (27) le long d'au moins une voie de déplacement entre au moins un support (36) de rouleau de matériau et le ou les dispositifs de distribution de bande intermédiaire (30, 33), le ou les dispositifs de distribution de bande de recouvrement (29, 32) et/ou le dispositif de distribution de bande de contrecollage (34), et un dispositif de commande (65) destiné à commander le ou les chariots de transport (5).
EP19711529.8A 2018-04-09 2019-03-08 Onduleuse Pending EP3774319A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102018205292.1A DE102018205292A1 (de) 2018-04-09 2018-04-09 Wellpappeanlage
PCT/EP2019/055900 WO2019197090A1 (fr) 2018-04-09 2019-03-08 Onduleuse

Publications (1)

Publication Number Publication Date
EP3774319A1 true EP3774319A1 (fr) 2021-02-17

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Application Number Title Priority Date Filing Date
EP19711529.8A Pending EP3774319A1 (fr) 2018-04-09 2019-03-08 Onduleuse

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US (1) US11801655B2 (fr)
EP (1) EP3774319A1 (fr)
JP (1) JP7481262B2 (fr)
CN (1) CN112236293A (fr)
DE (1) DE102018205292A1 (fr)
WO (1) WO2019197090A1 (fr)

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DE102020202033A1 (de) 2020-02-18 2021-08-19 Bhs Corrugated Maschinen- Und Anlagenbau Gmbh Betriebsmittel-Zuführanordnung
CN113059850B (zh) * 2021-03-30 2022-08-16 河南省金芒果纸制品有限公司 一种七层瓦楞纸箱生产控制系统及控制方法

Family Cites Families (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2052386B (en) 1979-05-02 1983-02-02 Rengo Co Ltd Method for producing double-faced corrugated boards
US4819758A (en) 1984-06-07 1989-04-11 Eds Technologies Inc. Vehicle for delivering large cylindrical shaped loads and the like
JPH0764462B2 (ja) * 1986-09-20 1995-07-12 株式会社磯輪鉄工所 段ボール製造機における原紙の装填方法
GB2209328B (en) * 1987-09-03 1991-09-25 Isowa Industry Co Cardboard web feeding device for corrugator.
US4948060A (en) * 1988-09-12 1990-08-14 Butler Automatic, Inc. Automatic web roll handling system for splicing
GB2255761B (en) * 1991-03-08 1994-05-11 Isowa Kk Web roll transferring apparatus
DE9414677U1 (de) * 1994-09-09 1994-12-15 BHS Corrugated Maschinen- und Anlagenbau GmbH, 92729 Weiherhammer Papierrollen-Transport- und Ausricht-Einrichtung für eine Papierverarbeitungs-Abrolleinrichtung
JPH08333043A (ja) * 1995-06-09 1996-12-17 Japan Eng Kk 原紙ロール搬出入装置
DE19919593A1 (de) * 1999-02-12 2000-08-31 Thiessen Papchem Gmbh & Co Kg Transportvorrichtung
JP4395756B2 (ja) * 2005-01-05 2010-01-13 株式会社ダイフク 物品搬送設備
JP4336720B2 (ja) * 2007-03-29 2009-09-30 株式会社Isowa 原紙ロール搬送装置及び原紙ロールの搬送方法、並びに原紙ロール搬送装置のレイアウト方法
JP5316907B2 (ja) 2011-03-17 2013-10-16 株式会社ダイフク 物品搬送設備

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US20210138759A1 (en) 2021-05-13
JP2021521027A (ja) 2021-08-26
DE102018205292A1 (de) 2019-10-10
US11801655B2 (en) 2023-10-31
JP7481262B2 (ja) 2024-05-10
WO2019197090A1 (fr) 2019-10-17

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