US20060249620A1 - Method for controlling and/or monitoring a web-processing machine - Google Patents
Method for controlling and/or monitoring a web-processing machine Download PDFInfo
- Publication number
- US20060249620A1 US20060249620A1 US11/407,346 US40734606A US2006249620A1 US 20060249620 A1 US20060249620 A1 US 20060249620A1 US 40734606 A US40734606 A US 40734606A US 2006249620 A1 US2006249620 A1 US 2006249620A1
- Authority
- US
- United States
- Prior art keywords
- web
- roll
- time
- speed
- point
- 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.)
- Abandoned
Links
- 238000000034 method Methods 0.000 title claims abstract description 32
- 238000012545 processing Methods 0.000 title claims abstract description 14
- 238000012544 monitoring process Methods 0.000 title claims abstract description 5
- 239000000463 material Substances 0.000 claims description 8
- 238000004804 winding Methods 0.000 claims description 7
- 238000011161 development Methods 0.000 claims description 4
- 238000005304 joining Methods 0.000 description 8
- 238000005520 cutting process Methods 0.000 description 3
- 238000005259 measurement Methods 0.000 description 3
- 238000003860 storage Methods 0.000 description 2
- 238000012935 Averaging Methods 0.000 description 1
- 238000004026 adhesive bonding Methods 0.000 description 1
- 239000005021 flexible packaging material Substances 0.000 description 1
- 238000003466 welding Methods 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H16/00—Unwinding, paying-out webs
- B65H16/02—Supporting web roll
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H23/00—Registering, tensioning, smoothing or guiding webs
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H23/00—Registering, tensioning, smoothing or guiding webs
- B65H23/04—Registering, tensioning, smoothing or guiding webs longitudinally
- B65H23/046—Sensing longitudinal register of web
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H26/00—Warning or safety devices, e.g. automatic fault detectors, stop-motions, for web-advancing mechanisms
- B65H26/06—Warning or safety devices, e.g. automatic fault detectors, stop-motions, for web-advancing mechanisms responsive to predetermined lengths of webs
- B65H26/066—Warning or safety devices, e.g. automatic fault detectors, stop-motions, for web-advancing mechanisms responsive to predetermined lengths of webs responsive to information, e.g. printed mark, on the web or web roll
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H2511/00—Dimensions; Position; Numbers; Identification; Occurrences
- B65H2511/10—Size; Dimensions
- B65H2511/11—Length
- B65H2511/114—Remaining length of web roll
Definitions
- the invention relates to a method for controlling and/or monitoring a web-processing machine according to the preamble of claim 1 .
- control signals must activate not only the signals but also other work steps of machines. Such control signals can also originate from a control unit programmed for this purpose.
- the object of the present invention is to provide a more reliable method. This object is achieved by the characterizing part of claim 1 .
- the angular speed of the roll can be measured in that suitable rotary encoders monitor the rotation movement of the roll and plot it against the time.
- the web speed can be recorded in a comparable manner with the help of rotary encoders, for example, on transport rollers, printing rollers or impression rollers.
- the diameter of these rollers usually remains constant while the roll is unwound as a result of which its diameter shrinks.
- the web length which is measured by the web speed sensor during the rotation of a roll, corresponds to the circumference of the roll in this period of time.
- the circumference increases from rotation to rotation by an amount, which substantially corresponds to the thickness of the web material.
- the absolute disturbance variables which result due to the start of the web and which are substantially constant in the case of the difference between the successive layers, inter alia play a role in this connection. Particularly these disturbance variables can be determined or even eliminated completely if the web thickness is determined in the manner described over a plurality of rotations.
- a control device implements the method in an automated form. For example, if the circumference of the winding sleeve—in case the roll comprises one such winding sleeve—is known to this control device, it can take this variable also into consideration when determining the point in time. If there is no winding sleeve present, a minimum circumference or diameter of the roll can be used in its place.
- a guide roller whose rotary movement is monitored by a rotary encoder (incremental encoder), is used for determining the web speed or web length. This can take place in a similar manner in the case of printing machines.
- the single FIGURE illustrates a schematic lateral view of an inventive device for implementing the inventive method.
- the FIGURE illustrates schematically a web-processing machine 1 .
- a web-processing machine 1 can basically be a continuously operating machine, such as for example, a printing machine or a laminator or a machine operating at a given cycle rate, for example, an FFS machine, mentioned at the outset. Webs are supplied continuously to both the continuously operating machines as well as the machines operating at a given cycle rate.
- the web-processing machine 1 is equipped with a draw unit 2 .
- This draw unit consists of a first roller 3 and a second roller 4 , at least one of which is driven continuously. Both the rollers 3 , 4 form a roller clearance through which the web 5 is conveyed in the web running direction z.
- the machine 1 is illustrated in the FIGURE as a machine operating at a given cycle rate.
- the machine is equipped with a web storage unit 6 , known per se, in which rolls 7 are mounted in a swivel arm 8 , which is attached in a machine frame (not illustrated in detail), while the roll 9 is rotatably connected to the machine frame and is therefore stationary, however rotatable.
- At least one of the subsequent rolls 10 is driven intermittently and thus ensures the feed of the web 5 at a given cycle rate.
- the web 5 is usually supplied to the web-processing machine 1 in the form of a web roll 12 .
- the latter is non-rotatably connected to an axle 13 , which penetrates through the winding sleeve 14 of the web roll 12 and which is mounted rotatably in the unwinding device 11 .
- the unwinding device 11 can comprise at least one additional web roll (not illustrated in detail).
- the unwinding device 11 further comprises a joining station 15 .
- This joining station 15 comprises a cross-cutting blade 16 using which the unnecessary web remainder can be cut off from the web end when or shortly before the web 5 is unwound completely from the web roll.
- the joining station 15 comprises additionally holding means 17 , using which the start of a web which is wound up on another web roll, is held in a waiting position. If a tube is used as a web, this tube can be provided with slots in the region of its lateral edges, so that two walls separated from one another are formed at the web start 18 . These walls can be folded over in vertical positions as illustrated in the FIGURE.
- a control device receives or determines the point in time at which the web end on the web roll 12 is reached.
- control device delivers control signals using signal lines (also not illustrated) to the joining station 15 and to the machine 1 , if necessary. Activated by these signals, the web 5 is first drawn forward further in the web transport direction until a predetermined position is reached. Subsequently, the cross-cutting blade 16 , if necessary, cuts off the web remainder from the end of the web 5 , which is held on by clamping means 19 . The holding means 17 now transport the web start 18 into a position, in which the longitudinal axis of the web 5 and that of the new web align with one another. Subsequently, the web start 18 is joined to the end of the web 5 , for example by gluing or welding.
- signal lines also not illustrated
- the unwinding device comprises a signal transmitter 20 , which delivers a signal to the control device when the marking attached to the axle 13 passes the signal transmitter.
- the control unit can determine the angular speed ⁇ of the web roll 12 from the number of signals and the associated elapsed time.
- the signal transmitter can scan the marking in different ways, for example, optically, magnetically, electrically or mechanically. Other types of speed measurements are also applicable on such an unwinding device.
- the control device obtains information about the web speed v.
- one of the rollers or rolls, which transport the web 5 continuously is equipped with a rotary encoder.
- the roller 5 [sic] of the draw unit is equipped with the rotary encoder.
- the control unit can determine the instantaneous speed v of the web from the angle about which the roller or the roll moves per time unit and the circumference of the roller or the roll.
- other methods for determining the web speed are applicable.
- the control unit can now determine the development of the circumference of the web roll 12 as a function of the time by comparing the speed v of the web with the angular speed ⁇ of the web roll 12 . Simple geometric relations are used as the basis for calculation. If the parameters of the winding sleeve 14 , which allow inferences to be drawn about its outer diameter, are additionally known to the control unit, then the control unit can determine, precisely and in advance, the point in time T at which the end of the web 5 on the web roll 12 can be expected to be reached. The control unit can naturally calculate the length of the web 5 in advance, which can be still processed to the maximum extent. In this manner the web remainder is reduced while still enabling the joining process in the connection station 15 .
Landscapes
- Controlling Rewinding, Feeding, Winding, Or Abnormalities Of Webs (AREA)
- Replacement Of Web Rolls (AREA)
- Preliminary Treatment Of Fibers (AREA)
- Fixing For Electrophotography (AREA)
- Treatment Of Fiber Materials (AREA)
Abstract
A method for controlling and/or monitoring a web-processing machine (1) is introduced, wherein at least one web (5) of the web-processing machine (1) is unwound from the roll (12) of an unwinding device and is supplied to the machine (1), wherein the point in time (T) at which the web end on the roll is reached is determined and control signals are emitted depending on this point in time (T).
The novelty and inventive step of the invention is that the angular speed (ω) of the roll (12) and the speed (v) of the web (5) are recorded and that the point in time (T) is determined taking both these variables (v, ω) into consideration. A device (1) for implementing the method is also described and forms the subject of the patent request.
Description
- The invention relates to a method for controlling and/or monitoring a web-processing machine according to the preamble of
claim 1. - Methods of this type are used inter alia in printing machines or bag machines. Often warning signals are emitted to call the machine operator's attention to the approaching end of the material web. However, semi-automatic or fully-automatic web-replacement methods are also known. In these methods, control signals must activate not only the signals but also other work steps of machines. Such control signals can also originate from a control unit programmed for this purpose.
- The methods used for this purpose in accordance with prior art work unreliably. That is, they determine the point in time (T), at which the web end is reached, with extreme imprecision.
- Therefore the object of the present invention is to provide a more reliable method. This object is achieved by the characterizing part of
claim 1. - The angular speed of the roll can be measured in that suitable rotary encoders monitor the rotation movement of the roll and plot it against the time. The web speed can be recorded in a comparable manner with the help of rotary encoders, for example, on transport rollers, printing rollers or impression rollers. The diameter of these rollers usually remains constant while the roll is unwound as a result of which its diameter shrinks.
- Generally the time or time measurement required for determining these two speeds means that a time segment is taken into consideration. This seems uncritical in the case of a continuous unwinding movement. But also in the case of discontinuous unwinding movements an averaging can take place over a time frame when determining the speed.
- It is important that from the “web speed”, the length of the web unwound from the roll per time unit and then supplied usually to the processing part of the machine can be determined. This also applies to the recording of the rotary movement of the roll per time unit.
- The same conclusion is arrived at if the rotary encoder is used on transport rollers, printing rollers or impression rollers to measure the length of the web section, which was drawn from the roll between two pulses delivered by the rotary encoder to the roll. For this purpose, the time elapsed between the two pulses delivered by the rotary encoder to the roll is also recorded.
- Information about these two variables for the same periods of time can be processed in the inventive manner.
- Thus, for example, the web length, which is measured by the web speed sensor during the rotation of a roll, corresponds to the circumference of the roll in this period of time. The circumference increases from rotation to rotation by an amount, which substantially corresponds to the thickness of the web material. The absolute disturbance variables, which result due to the start of the web and which are substantially constant in the case of the difference between the successive layers, inter alia play a role in this connection. Particularly these disturbance variables can be determined or even eliminated completely if the web thickness is determined in the manner described over a plurality of rotations.
- It is advantageous if a control device implements the method in an automated form. For example, if the circumference of the winding sleeve—in case the roll comprises one such winding sleeve—is known to this control device, it can take this variable also into consideration when determining the point in time. If there is no winding sleeve present, a minimum circumference or diameter of the roll can be used in its place.
- It is also very advantageous to use the inventive method in FFS machines as have been described in the German Patent Specification DE 199 20 478 A1. A tubular web is usually present in these methods.
- The use of an inventive method in a machine in accordance with DE 199 20 478 A1 for controlling and/or monitoring the material roll on such a machine is included in the disclosure of the present document. Given the large material thickness of the flat tubular webs or side-gusseted tubular webs used there, the method described here is particularly advantageous.
- Usually, in such an FFS machine a guide roller, whose rotary movement is monitored by a rotary encoder (incremental encoder), is used for determining the web speed or web length. This can take place in a similar manner in the case of printing machines.
- Less slippage takes place on cylinders, which have a large web wrap-around. This increases the accuracy of the measurement.
- In printing machines, however, it is also recommended to use printing cylinders or impression cylinders since particularly less slippage takes place here. There takes place particularly less web movement on central impression cylinders on which several rubber rollers or printing plate cylinders are placed. Central cylinder flexographic printing machines inter alia have such impression cylinders. They print inter alia flexible packaging material.
- Additional example embodiments of the invention are specified in the present description and the claims.
- The single FIGURE illustrates a schematic lateral view of an inventive device for implementing the inventive method.
- The FIGURE illustrates schematically a web-
processing machine 1. Such a machine can basically be a continuously operating machine, such as for example, a printing machine or a laminator or a machine operating at a given cycle rate, for example, an FFS machine, mentioned at the outset. Webs are supplied continuously to both the continuously operating machines as well as the machines operating at a given cycle rate. For this purpose, the web-processing machine 1 is equipped with adraw unit 2. This draw unit consists of afirst roller 3 and asecond roller 4, at least one of which is driven continuously. Both the 3, 4 form a roller clearance through which therollers web 5 is conveyed in the web running direction z. - The
machine 1 is illustrated in the FIGURE as a machine operating at a given cycle rate. For converting the continuous transport of theweb 5 into a feed at a given cycle rate, the machine is equipped with aweb storage unit 6, known per se, in whichrolls 7 are mounted in aswivel arm 8, which is attached in a machine frame (not illustrated in detail), while theroll 9 is rotatably connected to the machine frame and is therefore stationary, however rotatable. At least one of thesubsequent rolls 10 is driven intermittently and thus ensures the feed of theweb 5 at a given cycle rate. - The
web 5 is usually supplied to the web-processing machine 1 in the form of aweb roll 12. For unwinding theweb 5 from theweb roll 12, the latter is non-rotatably connected to anaxle 13, which penetrates through thewinding sleeve 14 of theweb roll 12 and which is mounted rotatably in theunwinding device 11. Theunwinding device 11 can comprise at least one additional web roll (not illustrated in detail). Theunwinding device 11 further comprises ajoining station 15. This joiningstation 15 comprises across-cutting blade 16 using which the unnecessary web remainder can be cut off from the web end when or shortly before theweb 5 is unwound completely from the web roll. The joiningstation 15 comprises additionallyholding means 17, using which the start of a web which is wound up on another web roll, is held in a waiting position. If a tube is used as a web, this tube can be provided with slots in the region of its lateral edges, so that two walls separated from one another are formed at theweb start 18. These walls can be folded over in vertical positions as illustrated in the FIGURE. In order to not have to mount thestart 18 of the new web into the web-processing machine 1 when theweb roll 12 is completely unwound, theweb start 18 is joined to the end of theweb 5 inside the joiningstation 15. For this purpose, a control device (not illustrated) receives or determines the point in time at which the web end on theweb roll 12 is reached. Subsequently, the control device delivers control signals using signal lines (also not illustrated) to thejoining station 15 and to themachine 1, if necessary. Activated by these signals, theweb 5 is first drawn forward further in the web transport direction until a predetermined position is reached. Subsequently, thecross-cutting blade 16, if necessary, cuts off the web remainder from the end of theweb 5, which is held on by clamping means 19. The holding means 17 now transport the web start 18 into a position, in which the longitudinal axis of theweb 5 and that of the new web align with one another. Subsequently, theweb start 18 is joined to the end of theweb 5, for example by gluing or welding. - To ensure firstly that only the least possible web remainder remains on the
web roll 12 and secondly that the web end is not drawn through the clamping means 19 or drawn past them, which would prevent or at least complicate the joining process of the end of theweb 5 and theweb start 18, it is necessary to predetermine as precisely as possible the point in time at which the web end on theweb roll 12 is reached. In order to enable this, the unwinding device comprises asignal transmitter 20, which delivers a signal to the control device when the marking attached to theaxle 13 passes the signal transmitter. The control unit can determine the angular speed ω of theweb roll 12 from the number of signals and the associated elapsed time. - The signal transmitter can scan the marking in different ways, for example, optically, magnetically, electrically or mechanically. Other types of speed measurements are also applicable on such an unwinding device.
- Furthermore, the control device obtains information about the web speed v. For this purpose, one of the rollers or rolls, which transport the
web 5 continuously, is equipped with a rotary encoder. Preferably the roller 5 [sic] of the draw unit is equipped with the rotary encoder. The control unit can determine the instantaneous speed v of the web from the angle about which the roller or the roll moves per time unit and the circumference of the roller or the roll. Here also, other methods for determining the web speed are applicable. - The control unit can now determine the development of the circumference of the
web roll 12 as a function of the time by comparing the speed v of the web with the angular speed ω of theweb roll 12. Simple geometric relations are used as the basis for calculation. If the parameters of the windingsleeve 14, which allow inferences to be drawn about its outer diameter, are additionally known to the control unit, then the control unit can determine, precisely and in advance, the point in time T at which the end of theweb 5 on theweb roll 12 can be expected to be reached. The control unit can naturally calculate the length of theweb 5 in advance, which can be still processed to the maximum extent. In this manner the web remainder is reduced while still enabling the joining process in theconnection station 15.List of reference symbols 1 Web-processing machine 2 Draw unit 3 Roller 4 Roller 5 Web 6 Web storage 7 Roll 8 Swivel arm 9 Roll 10 Roll 11 Unwinding device 12 Web roll 13 Axle 14 Winding sleeve 15 Joining station 16 Cross-cutting blade 17 Holding means 18 Web start 1819 Clamping means 20 Signal transmitter 21 Marking Z Web transport direction V Web speed ω Angular speed of the roll T Point in time at which the web end is reached
Claims (14)
1: Method for controlling and/or monitoring a web-processing machine (1),
wherein at least one web (5) of the web-processing machine (1) is unwound from the roll (12) of an unwinding device and is supplied to the machine (1), wherein the point in time (T) at which the web end on the roll (12) is reached, is determined and wherein control signals are emitted depending on this point in time (T),
said method being characterized in that
the angular speed (ω) of the roll (12) is recorded,
that the speed (v) of the web (5) is recorded,
and that the point in time (T) is determined taking both these values (v, ω) into consideration.
2: Method according to claim 1 ,
characterized in that
when determining the point in time (T), the minimum diameter of the roll (12) and/or the diameter of the winding sleeve (14) are taken into consideration.
3: Method according to claim 1
characterized in that
the material thickness of the web (5) is calculated from the development of the circumference of the roll (12) per rotation.
4: Method according to the preceding claim
characterized in that
the development of the circumference of the roll (12) is averaged over several rotations.
5: Method according to claim 3
characterized in that
the material thickness is taken into account when determining the point in time (T).
6: Method according to claim 1
characterized in that
the web speed (v) is measured using a rotary encoder, which records the rotations of a roller (3, 4), which is mechanically connected to the web (5).
7: Method according to the preceding claim,
characterized in that
the web speed is measured using a roller (3, 4), which rolls off with the web (5).
8: Web-processing machine (1)
having an unwinding device (11), in which (1) at least one web (5) can be unwound from a roll (11) and can be supplied to the processing part of the machine (1),
and also having a control device using which the point in time (T), at which the web end on the roll (12) is reached, can be determined, characterized by
a means (20, 21) for recording the angular speed (ω) of the roll (11),
a means for recording the speed (v) of the web (5), a control device using which both these values (v, ω) can be taken into consideration when determining the point in time (T).
9: Method according to claim 2 ,
characterized in that
the material thickness of the web (5) is calculated from the development of the circumference of the roll (12) per rotation.
10: Method according to claim 4 ,
characterized in that
the material thickness is taken into account when determining the point in time (T).
11: Method according to claim 2 ,
characterized in that
the web speed (v) is measured using a rotary encoder, which records the rotations of a roller (3, 4), which is mechanically connected to the web (5).
12: Method according to claim 3 ,
characterized in that
the web speed (v) is measured using a rotary encoder, which records the rotations of a roller (3, 4), which is mechanically connected to the web (5).
13: Method according to claim 4 ,
characterized in that
the web speed (v) is measured using a rotary encoder, which records the rotations of a roller (3, 4), which is mechanically connected to the web (5).
14: Method according to claim 5 ,
characterized in that
the web speed (v) is measured using a rotary encoder, which records the rotations of a roller (3, 4), which is mechanically connected to the web (5).
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102005018544 | 2005-04-20 | ||
| DE102005018544.4 | 2005-04-20 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US20060249620A1 true US20060249620A1 (en) | 2006-11-09 |
Family
ID=36687975
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US11/407,346 Abandoned US20060249620A1 (en) | 2005-04-20 | 2006-04-20 | Method for controlling and/or monitoring a web-processing machine |
Country Status (6)
| Country | Link |
|---|---|
| US (1) | US20060249620A1 (en) |
| EP (1) | EP1714926B1 (en) |
| AT (1) | ATE401278T1 (en) |
| DE (1) | DE502006001097D1 (en) |
| ES (1) | ES2307247T3 (en) |
| PL (1) | PL1714926T3 (en) |
Cited By (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20120318905A1 (en) * | 2010-01-15 | 2012-12-20 | Maurizio Pedercini | Unreeling assembly, particularly for labeling devices |
| CN107428482A (en) * | 2015-04-09 | 2017-12-01 | 株式会社高园科技 | Sheet end detection mechanism, drum body, and method for manufacturing the drum body |
| CN107428483A (en) * | 2015-04-09 | 2017-12-01 | 株式会社高园科技 | Sheet material uses up the manufacture method of testing agency, barrel and barrel |
| CN107531437A (en) * | 2015-04-09 | 2018-01-02 | 株式会社高园科技 | Sheet material uses up the manufacture method of testing agency, barrel and barrel |
| CN110753624A (en) * | 2017-07-28 | 2020-02-04 | 惠普发展公司,有限责任合伙企业 | Determination of the length of a web medium |
| CN111873555A (en) * | 2020-08-03 | 2020-11-03 | 浙江佳鹏电脑科技股份有限公司 | Raw paper on-line control system of corrugated board production line |
| US11148894B2 (en) * | 2017-04-21 | 2021-10-19 | Windmöller & Hölscher Kg | Method and devices and system for winding and unwinding a reel |
| US11518563B2 (en) * | 2019-02-18 | 2022-12-06 | Giesecke+Devrient Currency Technology Gmbh | Apparatus for packaging sheet material |
| US12378028B2 (en) * | 2022-06-01 | 2025-08-05 | Ishida Co., Ltd. | Packaging apparatus |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN110274625A (en) * | 2019-05-28 | 2019-09-24 | 杭州全桥电气有限公司 | A kind of body paper on-line detecting system |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3990647A (en) * | 1975-06-23 | 1976-11-09 | Butler Automatic, Inc. | Web splice control system |
| US3994449A (en) * | 1975-06-23 | 1976-11-30 | Butler Automatic, Inc. | Auto-splice system |
| US4021002A (en) * | 1975-06-23 | 1977-05-03 | Butler Automatic, Inc. | Auto-splice system |
| US4159572A (en) * | 1977-11-02 | 1979-07-03 | United States Steel Corporation | Dynamic gage averaging and length determining device and method for continuous sheet material |
| US4657198A (en) * | 1984-05-18 | 1987-04-14 | Fuji Photo Film Co., Ltd. | Apparatus for measuring the thickness of a roll winding on or unwinding from a core |
| US4913366A (en) * | 1987-11-02 | 1990-04-03 | Fuji Photo Film Co., Ltd. | Web unwinder with core diameter measuring device |
| US6039285A (en) * | 1995-04-21 | 2000-03-21 | Fabio Perini S.P.A. | Device for unwinding reels of web material comprising a system for controlling the unwinding pressure |
| US6460317B1 (en) * | 1999-05-04 | 2002-10-08 | Windmöller & Hölscher | Device for manufacturing and preferably also for filling and sealing thermoplastic sacks |
Family Cites Families (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4369906A (en) * | 1980-06-19 | 1983-01-25 | Crosfield Electronics Limited | Web feeding machines |
| DE19614300B4 (en) * | 1995-04-21 | 2004-08-26 | Abb Patent Gmbh | Process for self-regulating compensation for the effects of uneven concentricity of a roll |
| US5967445A (en) * | 1996-09-20 | 1999-10-19 | Kabushiki Kaisha Yuyama Seisakusho | Method of adjusting tension applied to sheet, and device for the same |
| JP4446293B2 (en) * | 1999-06-29 | 2010-04-07 | 株式会社ミヤコシ | Infeed device for rotary printing press |
-
2006
- 2006-03-30 EP EP06006645A patent/EP1714926B1/en active Active
- 2006-03-30 PL PL06006645T patent/PL1714926T3/en unknown
- 2006-03-30 DE DE502006001097T patent/DE502006001097D1/en active Active
- 2006-03-30 ES ES06006645T patent/ES2307247T3/en active Active
- 2006-03-30 AT AT06006645T patent/ATE401278T1/en active
- 2006-04-20 US US11/407,346 patent/US20060249620A1/en not_active Abandoned
Patent Citations (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3990647A (en) * | 1975-06-23 | 1976-11-09 | Butler Automatic, Inc. | Web splice control system |
| US3994449A (en) * | 1975-06-23 | 1976-11-30 | Butler Automatic, Inc. | Auto-splice system |
| US4021002A (en) * | 1975-06-23 | 1977-05-03 | Butler Automatic, Inc. | Auto-splice system |
| US4159572A (en) * | 1977-11-02 | 1979-07-03 | United States Steel Corporation | Dynamic gage averaging and length determining device and method for continuous sheet material |
| US4657198A (en) * | 1984-05-18 | 1987-04-14 | Fuji Photo Film Co., Ltd. | Apparatus for measuring the thickness of a roll winding on or unwinding from a core |
| US4913366A (en) * | 1987-11-02 | 1990-04-03 | Fuji Photo Film Co., Ltd. | Web unwinder with core diameter measuring device |
| US6039285A (en) * | 1995-04-21 | 2000-03-21 | Fabio Perini S.P.A. | Device for unwinding reels of web material comprising a system for controlling the unwinding pressure |
| US6460317B1 (en) * | 1999-05-04 | 2002-10-08 | Windmöller & Hölscher | Device for manufacturing and preferably also for filling and sealing thermoplastic sacks |
Cited By (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20120318905A1 (en) * | 2010-01-15 | 2012-12-20 | Maurizio Pedercini | Unreeling assembly, particularly for labeling devices |
| CN107428482A (en) * | 2015-04-09 | 2017-12-01 | 株式会社高园科技 | Sheet end detection mechanism, drum body, and method for manufacturing the drum body |
| CN107428483A (en) * | 2015-04-09 | 2017-12-01 | 株式会社高园科技 | Sheet material uses up the manufacture method of testing agency, barrel and barrel |
| CN107531437A (en) * | 2015-04-09 | 2018-01-02 | 株式会社高园科技 | Sheet material uses up the manufacture method of testing agency, barrel and barrel |
| US11148894B2 (en) * | 2017-04-21 | 2021-10-19 | Windmöller & Hölscher Kg | Method and devices and system for winding and unwinding a reel |
| CN110753624A (en) * | 2017-07-28 | 2020-02-04 | 惠普发展公司,有限责任合伙企业 | Determination of the length of a web medium |
| US11518563B2 (en) * | 2019-02-18 | 2022-12-06 | Giesecke+Devrient Currency Technology Gmbh | Apparatus for packaging sheet material |
| CN111873555A (en) * | 2020-08-03 | 2020-11-03 | 浙江佳鹏电脑科技股份有限公司 | Raw paper on-line control system of corrugated board production line |
| US12378028B2 (en) * | 2022-06-01 | 2025-08-05 | Ishida Co., Ltd. | Packaging apparatus |
Also Published As
| Publication number | Publication date |
|---|---|
| ATE401278T1 (en) | 2008-08-15 |
| EP1714926B1 (en) | 2008-07-16 |
| EP1714926A2 (en) | 2006-10-25 |
| EP1714926A3 (en) | 2007-06-20 |
| PL1714926T3 (en) | 2008-12-31 |
| DE502006001097D1 (en) | 2008-08-28 |
| ES2307247T3 (en) | 2008-11-16 |
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Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| AS | Assignment |
Owner name: WINDMOELLER & HOELSCHER KG, GERMANY Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:HUIL, OLIVER;REEL/FRAME:018063/0208 Effective date: 20060530 |
|
| STCB | Information on status: application discontinuation |
Free format text: ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION |