WO1998012380A1 - Method for drying a surface-treated paper web or equivalent in an after-dryer of a paper machine and after-dryer carrying out the method in a paper machine - Google Patents

Method for drying a surface-treated paper web or equivalent in an after-dryer of a paper machine and after-dryer carrying out the method in a paper machine Download PDF

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Publication number
WO1998012380A1
WO1998012380A1 PCT/FI1997/000532 FI9700532W WO9812380A1 WO 1998012380 A1 WO1998012380 A1 WO 1998012380A1 FI 9700532 W FI9700532 W FI 9700532W WO 9812380 A1 WO9812380 A1 WO 9812380A1
Authority
WO
WIPO (PCT)
Prior art keywords
dryer
paper web
drying
group
wire draw
Prior art date
Application number
PCT/FI1997/000532
Other languages
English (en)
French (fr)
Inventor
Pasi Ahonen
Juha Kaihovirta
Original Assignee
Valmet Corporation
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 Valmet Corporation filed Critical Valmet Corporation
Priority to JP10514319A priority Critical patent/JP2001500580A/ja
Priority to CA002267287A priority patent/CA2267287A1/en
Priority to AU43028/97A priority patent/AU4302897A/en
Priority to EP97919060A priority patent/EP1015690A1/en
Publication of WO1998012380A1 publication Critical patent/WO1998012380A1/en

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Classifications

    • DTEXTILES; PAPER
    • D21PAPER-MAKING; PRODUCTION OF CELLULOSE
    • D21FPAPER-MAKING MACHINES; METHODS OF PRODUCING PAPER THEREON
    • D21F5/00Dryer section of machines for making continuous webs of paper
    • D21F5/02Drying on cylinders
    • D21F5/04Drying on cylinders on two or more drying cylinders
    • D21F5/042Drying on cylinders on two or more drying cylinders in combination with suction or blowing devices
    • D21F5/044Drying on cylinders on two or more drying cylinders in combination with suction or blowing devices using air hoods over the cylinders
    • DTEXTILES; PAPER
    • D21PAPER-MAKING; PRODUCTION OF CELLULOSE
    • D21FPAPER-MAKING MACHINES; METHODS OF PRODUCING PAPER THEREON
    • D21F5/00Dryer section of machines for making continuous webs of paper
    • D21F5/02Drying on cylinders
    • D21F5/04Drying on cylinders on two or more drying cylinders
    • DTEXTILES; PAPER
    • D21PAPER-MAKING; PRODUCTION OF CELLULOSE
    • D21FPAPER-MAKING MACHINES; METHODS OF PRODUCING PAPER THEREON
    • D21F5/00Dryer section of machines for making continuous webs of paper
    • D21F5/02Drying on cylinders
    • D21F5/04Drying on cylinders on two or more drying cylinders
    • D21F5/048Drying on cylinders on two or more drying cylinders in combination with other heating means
    • DTEXTILES; PAPER
    • D21PAPER-MAKING; PRODUCTION OF CELLULOSE
    • D21GCALENDERS; ACCESSORIES FOR PAPER-MAKING MACHINES
    • D21G9/00Other accessories for paper-making machines
    • D21G9/009Apparatus for glaze-coating paper webs

Definitions

  • the invention concerns a method for drying a surface-treated paper web or equivalent in an after-dryer of a paper machine, in which method the paper web is first finished in a finishing section, in which finishing section the paper web is surface- sized or coated by means of a finishing device, after which the paper web is dried.
  • the invention concerns an after-dryer for a paper machine for applying the method in accordance with the invention to the drying of a surface-treated paper web or equivalent, which after-dryer is placed after the finishing device, by means of which finishing device the paper web is surface-sized or coated.
  • twin- wire draw and/or single-wire draw is/are employed.
  • twin-wire draw the groups of drying cylinders comprise two wires, which press the web one from above and the other one from below against heated cylinder faces. Between the rows of drying cylinders, which are usually horizontal rows, the web has free and unsupported draws, which are susceptible of fluttering, which may cause web breaks, in particular so when the web is still relatively moist and, therefore, of low strength.
  • each group of drying cylinders includes just one drying wire, on whose support the web runs through the whole group so that the drying wire presses the web on the drying cylinders against the heated cylinder faces, whereas on the reversing cylinders or rolls between the drying cylinders the web remains at the side of the outside curve.
  • the drying cylinders are placed outside the wire loop, and the reversing cylinders or rolls inside said loop.
  • the tendency of curling of paper is already affected in connection with the web formation, in particular at the sheet formation stage by means of selection of the difference in speed between the slice jet and the wire, and by means of other running parameters.
  • a suitable initial curl form is regulated for the sheet in order that the curling of the paper after one-sided or double-sided copying could be optimized.
  • the reactivity of curling i.e. the extent to which curling occurs per unit of change in moisture content, is affected to a greater extent by means of a multi-layer structure of the paper, which is produced in connection with the web formation in the wet end.
  • a specific object of the invention is to create novel concepts for an after-dryer of a paper machine in which runnability, efficiency and control of curling are optimized.
  • the method in accordance with the invention is mainly characterized in that in the after-dryer the paper web is dried in at least one dryer group that makes use of single- wire draw, and that, at the same time, the paper web is dried by means of an impingement-drying equipment fitted in connection with at least one cylinder or roll in said dryer group.
  • the after-dryer in accordance with the invention that makes use of the method is mainly characterized in that the after-dryer comprises at least one dryer group that applies single-wire draw, and an impingement-drying equipment is fitted in connection with at least one cylinder or roll in said dryer group.
  • the after-dryer comprises at least one dryer group that applies single-wire draw, and an impingement-drying equipment is fitted in connection with at least one cylinder or roll in said dryer group.
  • an inverted group with single-wire draw is fitted, above whose suction rolls, suction cylinders or equivalent reversing rolls/cylinders impingement blowing hoods are placed.
  • This solution is advantageous, because single-wire draw has a good runnability and does not require threading by means of a rope, and, moreover, impingement drying dries the coated side of the paper web efficiently.
  • the advantage is obtained that the web is heated quickly, whereby efficient evaporation of the water present in the web surface is achieved.
  • the impingement blowing does not affect the curling, and the curling is regulated in the following group with twin-wire draw by adjusting the steam pressures in the upper and lower cylinders to suitable levels.
  • the arrangement in accordance with the invention permits the construction of a shorter after-dryer and has a better energy economy than infrared dryers etc. devices based on electric energy, because in impingement drying it is possible to use, for example, combus- tion gases from liquefied petroleum gas, which are more advantageous than electricity.
  • an important advantage of the system in accordance with the present invention is good runnability. Moreover, in the arrangement in accordance with the invention, the efficiency can be regulated readily and, also, the impingement drying provides a possibility for profiling.
  • impingement drying is applied to the drying of a coating and, in the same way as in a combined infrared/airborne-web dryer, the air heated by the infra is utilized in the impingement drying unit.
  • Warm air can be used as replacement air for the impingement drying unit, and also directly as impingement blow air, to replace air that has to be heated otherwise, or it can also be used as pre-heated air for a burner by whose means said blow air is heated.
  • gas infra dryers are available.
  • Figure 1 is a schematic illustration of an exemplifying embodiment in which, in the beginning of the after-dryer, there is a dryer group that makes use of single-wire draw, in which group the reversing rolls/cylinders are provided with an impingement drying device and which group is followed by a dryer group with twin-wire draw.
  • Figure 2 is a schematic illustration of an after-dryer substantially similar to that shown in Fig. 1, in which dryer the first drying equipment is an airborne web dryer.
  • the exemplifying embodiment that is illustrated schematically in Figure 3 is substantially similar to those shown in Figs. 1 and 2, but in this embodiment, after coating, the web is turned by means of a reversing blow box.
  • Figure 4 is a schematic illustration of an exemplifying embodiment in which, after coating/surface-sizing, the web is turned by means of a reversing blow box, passed into an inverted dryer group that applies single-wire draw and in which impingement drying devices are fitted in connection with the reversing rolls/cylinders, after which there follows a dryer group that applies twin-wire draw.
  • Figure 5 is a schematic illustration of an exemplifying embodiment which is substantially similar to that shown in Fig. 4, but the drying cylinder in the inverted dryer group with single-wire draw has been substituted for by a reversing blow box.
  • Figure 6 is a schematic illustration of an exemplifying embodiment in which the first dryer group is a group with normal single-wire draw, in which group, in connection with the reversing rolls, impingement drying units are fitted, which are followed by a dryer group with twin- wire draw.
  • Figure 7 is a schematic illustration of an exemplifying embodiment in which the first group in the after-dryer is a normal dryer group with single- wire draw, which group is followed by a second normal group with single-wire draw, in which group impingement drying devices are fitted in connection with some of the reversing rolls.
  • Figure 8 is a schematic illustration of an exemplifying embodiment which is substantially similar to that shown in Fig. 7, but the first dryer device in the after-dryer, before the groups with single-wire draw, is an airborne web dryer.
  • Figure 9 is a schematic illustration of an exemplifying embodiment in which an airborne web dryer equipment is followed by a normal dryer group with single-wire draw, after which group a cylinder of very large diameter is placed, in connection with which cylinder impingement drying devices are fitted and which cylinder is followed by a normal dryer group that applies single-wire draw.
  • Figure 10 is a schematic illustration of an exemplifying embodiment in which the first dryer group in the after-dryer is provided with a reversing cylinder/roll of large diameter, in connection with which impingement drying devices are fitted and which is followed by a dryer group that applies twin-wire draw.
  • Figure 11 is a schematic illustration of an exemplifying embodiment in which the first group in the after-dryer is a group with twin-wire draw, which group is followed by an inverted dryer group with single-wire draw, followed by a dryer group that applies twin- wire draw.
  • Figures 12A and 12B are schematic illustrations of an exemplifying embodiment of the nozzle face of an impingement drying device.
  • Figure 13 is a schematic illustration of an exemplifying embodiment in which, in the beginning of the after-dryer, connected with the first cylinder, an infra dryer is fitted, whose heat is used in connection with impingement drying, and in which, between the infra and the impingement dryer, a reversing blow equipment is fitted.
  • Figure 14 is a schematic illustration of an exemplifying embodiment in which, after the coating, the web is dried by means of an infra dryer or a gas dryer, whose heat is utilized in impingement drying, and in which, after the infra dryer, a reversing blow box is fitted, which is followed by an impingement dryer group.
  • the coating device is denoted with the reference numeral 10, and the coating device 10 is, for example, a coating device marketed by the applicant with the name SYM-SIZERTM, which device comprises two opposite coating rolls 11 and 12, in connection with each of which there are size feed devices so that the paper web W is coated from both sides in the coating nip between the rolls 1 1 and 12.
  • SYM-SIZERTM a coating device marketed by the applicant with the name SYM-SIZERTM, which device comprises two opposite coating rolls 11 and 12, in connection with each of which there are size feed devices so that the paper web W is coated from both sides in the coating nip between the rolls 1 1 and 12.
  • the web W is passed into the after-dryer onto its first drying cylinder 21 placed in the lower row RA, over which the web W is passed into its inverted dryer group with single-wire draw, onto its first reversing roll/cylinder 23 in the upper row RY, from which the web W is passed by means of the drying wire or an equivalent support fabric 26 onto the drying cylinder 22 in the lower row RA and further onto the reversing roll or cylinder 24 in the upper row RY.
  • impingement blowing equipment 25 is fitted, by whose means drying gas/air jets are blown towards the web W.
  • the guide rolls of the drying wire 26 are denoted with the reference numeral 27, and by means of the guide roll 27A the run of the drying wire 26 is shifted so that it does not reach contact with the web W to be dried that runs over the drying cylinder 21.
  • the web W is passed as a closed draw into a dryer group with twin- wire draw onto the first drying cylinder 31 in its lower row RA.
  • the drying cylinders in the lower row RA are denoted with the reference numerals 31,32 and 33, over which cylinders the web W runs alternating and meandering onto the drying cylinders 41 ,42 and 43 in the upper row RY.
  • the drying wire 34 of the lower-row RA cylinders 31 ,32,33 runs guided by the guide rolls 35, and the drying wire 44 of the upper row RY runs guided by the guide rolls 45. Over the guide roll / alignment roll 46 the web W is passed to further processing.
  • a doctor 28 can be provided.
  • FI Patent No. 83, 680 Equivalent US Patents Nos. 5,022, 163 and 5, 172,491.
  • the exemplifying embodiment shown in Fig. 2 is substantially similar to that shown in Fig. 1 , and corresponding parts are denoted with the same reference numerals. Unlike the exemplifying embodiment shown in Fig. 1 , in Fig. 2 the web W coated by means of the coating device 10 is first passed through an airborne web dryer 15, which operates as a pre-dryer, before the first drying cylinder 21.
  • the exemplifying embodiment shown in Fig. 3 is substantially similar to those shown in Figs. 1 and 2, and corresponding parts are denoted with the same reference numerals. It is a difference in this exemplifying embodiment that after the coating device 10 the paper web W is passed over a reversing blow device 14 into an airborne web dryer 15 operating as a pre-dryer, and from the airborne web dryer 15 directly onto the first reversing roll/cylinder 23 in the upper row RY in an inverted group with single- wire draw.
  • the exemplifying embodiment shown in Fig. 4 is substantially similar to the exemplifying embodiments shown in Figs. 1 to 3, but in this exemplifying embodi- ment, after the coating device 10, the web W is passed over a reversing blow device 14 directly onto the first reversing roll/cylinder 23 in the upper row RY in an inverted group with single-wire draw.
  • the exemplifying embodiment shown in Fig. 5 is substantially similar to that shown in Fig. 4, but here the drying cylinder 22 in the lower row RA in the first inverted dryer group with single-wire draw has been substituted for by a reversing blow device 28.
  • the coated web W is passed from the coating device 10 over the drying cylinder 21 onto the first drying cylinder 51 in the upper row RY in a normal dryer group with single-wire draw.
  • This dryer group comprises two drying cylinders 51 and 52 in the upper row RY and two reversing rolls or cylinders 53,54 in the lower row RA. In connection with the reversing rolls/cylinders, an impingement drying equipment 55 is fitted.
  • the drying wire is denoted with the reference numeral 56 and the guide rolls with the reference numeral 57. After this dryer group the web W is passed as a closed draw by means of the drying wire 56 onto the first drying cylinder 41A in the upper row RY in a dryer group with twin-wire draw.
  • the dryer group with twin- wire draw is similar to the twin-wire draw illustrated in the preceding figures.
  • the coating device 10 is followed by a dryer group with normal single-wire draw, into which the coated paper web W is passed over the drying cylinders 61 and 62.
  • the drying wire 66 Supported on the drying wire 66, the paper web W to be dried runs meandering over the reversing rolls/cylinders 65 in the lower row RA and the drying cylinders 63 in the upper row RY onto the drying cylinder 64, from which the web W is passed into the next dryer group with normal single-wire draw as a closed draw onto the drying wire 76 of said group, on whose support the paper web W runs meandering over the reversing rolls/cylinders 75,78 in the lower row RA and the drying cylinders 73 in the upper row.
  • impingement drying devices 79 are fitted for further drying of the web by means of drying blowings. Over the drying cylinder 74 the web W is passed to further processing.
  • dryer groups with single-wire draw blow boxes 68 or equivalent are used, for example devices 68 which are marketed by the applicant with the trade mark UNO-RUN- BLOW-BOX and which improve the runnability. Of course, these devices can also be used in the exemplifying embodiments shown in the other figures.
  • the exemplifying embodiment shown in Fig. 8 is substantially similar to that shown in Fig. 7, but in this embodiment the web W is passed from the coating device 10 through the airborne web dryer 15 operating as a pre-dryer over the drying cylinders 61 ,62 into dryer groups that apply a normal single-wire draw.
  • the exemplifying embodiment shown in Fig. 9 is substantially similar to that shown in Fig. 8, and in this embodiment, after the coating device 10, the coated paper web W is passed through the airborne web dryer 15 over the cylinders 61 ,62 into the first normal dryer group with single-wire draw, after which the web W is passed over the drying cylinder 81 around the large-diameter roll 80, in connection with which roll an impingement drying equipment 85 is provided.
  • the diameter of the large-diameter roll is 20...150 %, preferably 25...90 % larger than the diameter of the ordinary drying cylinders.
  • drying cylinder 82 in the lower row, from which the web W is passed over the drying cylinder 91 into a normal dryer group with single-wire draw, whose reversing rolls/cylinders are denoted with the reference numeral 95 and drying cylinders with the reference numeral 93.
  • the drying wire is denoted with the reference numeral 96, and its guide rolls with the reference numeral 97.
  • the paper web W is passed over the drying cylinder 101 onto the face of the large - diameter roll 100, in whose connection an impingement drying equipment 105 is fitted.
  • the large-diameter roll 100 is followed by a drying cylinder 102 and by a reversing roll/cylinder 103, after which the web W is passed into a dryer group with twin-wire draw, which is substantially similar to that described above, for example, in relation to Fig. 1.
  • a drying wire 106 of its own is provided, whose guide rolls are denoted with the reference numeral 107.
  • the guide roll 107 A the run of the drying wire is shifted so that it does not reach contact with the paper web W to be dried which runs over the drying cylinder 101.
  • the paper web W which was coated in the coating device 10, runs first over the drying cylinder 111 into a dryer group with twin-wire draw, in which the upper wire 114 runs guided by the guide rolls 15 over the drying cylinders 112 and 113 and the lower wire 122 runs over the guide rolls 123 and the drying cylinder 121.
  • the web W runs meandering from one row RA to the other RY, and between the rows RA,RY the web W has free unsupported draws. From the group with twin-wire draw the web W is passed into the next dryer group, onto the drying cylinder 131 in the lower row, where the web runs on support of the drying wire 136.
  • the web is passed onto the reversing roll/cylinder 132 in the upper row, in connection with which an impingement drying equipment 135 is fitted.
  • the web is passed back to the lower row and further onto the drying cylinders 141 ,142 in the upper row, and in the final part of the group an ordinary group with twin-wire draw is fitted, in which the wire that operates as the lower wire 136 is common with the wire running through the impingement dryer group, and the drying cylinders 141 , 142 in the upper row are provided with a drying-wire cycle 146 of their own with guide rolls 147.
  • the web W is passed to possible further processing.
  • Figs. 12A...12B are schematic illustrations of the construction of the nozzle face of the impingement drying device, in which the blow holes are denoted with the reference N 2 and the exhaust air pipes with the reference N t .
  • the diameter of the exhaust air pipes N- is about 50...100 mm, preferably 75 mm, and the diameter of the blow holes is about 3...8 mm, most commonly 5 mm.
  • the paper web W runs at a distance of about 10...150 mm, preferably 25 mm, from the face of the nozzle plate, and the nozzle chamber of the hood is denoted with the reference letter N.
  • the cylinder face is denoted with the reference C.
  • the open area of the blow holes in the nozzle plate in the area of the web W is about 1...5 % and most commonly 1.5 % .
  • the velocity of air in the blow holes is about 40...150 metres per second, preferably 100 m.p.s.
  • the air quantity that is blown is about 0.5...2.5 cu.m per second per sq.m, which is calculated for the effective area of the hood. Most commonly an air quantity of 1...1.5 cu.m per second per sq.m is used.
  • the open area of the exhaust air pipes is 5...15 %, most commonly 10 % .
  • the impingement drying equipment to be used in connection with the exemplifying embodiments illustrated above in Figs. 1 to 11 can be an arrangement of a number of different types and in itself known to a person skilled in the art, in which arrangement drying air flows are blown towards the web to be dried.
  • the impingement drying equipment can be constructed in blocks in the running direction S of the web or in the direction transverse to the running direction, in which case each block can be regulated separately if necessary.
  • the paper web W is passed onto the drying cylinder 151, in whose connection an infra drying equipment 152 is fitted. After this the paper web to be dried is passed over the reversing blow box 153 onto the drying cylinder 154 and further onto a reversing roll or a drying cylinder or equivalent 155. In connection with the cylinder/ roll 154, an impingement drying equipment 156 is fitted, which can be opened in the way indicated by the arrows S156 for cleaning.
  • the wire draw takes place as a normal single-wire draw as described above in relation to the preceding figures.
  • the coating is applied to the wire side, i.e.
  • the hot exhaust air of the infra dryer 152 is passed along the duct 157 through a blower 158 for use in the impingement dryer 156.
  • This infra-heated air can be used directly as impingement blow air, for example, to replace air that would have to be heated otherwise, or as pre-heated air in the burner in which said blow air for the impingement dryer is heated, or as replacement air for the impingement dryer.
  • the impingement drying equipment 156 can be openable towards the bottom by means of pivot members 171.
  • the exemplifying embodiment shown in Fig. 14 represents an arrangement in which the coating of the web W by means of the coating device 10 is applied to the top side of the web, and the web W is dried first by means of an infra/gas dryer 161 , after which the run of the web W is turned by means of a reversing blow box 162 and the web W is passed to run into a group with inverted single- wire draw, in which, in connection with the reversing rolls/cylinders 163,165, impingement drying devices 167 are provided.
  • the exhaust air from the infra/gas dryer 161 is used as drying air for the impingement drying, and the exhaust gas is passed through the ducts 168 and through the blower 169 into the air system of the impingement drying.

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  • Paper (AREA)
  • Drying Of Solid Materials (AREA)
PCT/FI1997/000532 1996-09-20 1997-09-09 Method for drying a surface-treated paper web or equivalent in an after-dryer of a paper machine and after-dryer carrying out the method in a paper machine WO1998012380A1 (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
JP10514319A JP2001500580A (ja) 1996-09-20 1997-09-09 抄紙機のアフタードライヤにおける表面処理紙ウェブもしくはその等価物の乾燥方法、および該方法を行う抄紙機のアフタードライヤ
CA002267287A CA2267287A1 (en) 1996-09-20 1997-09-09 Method for drying a surface-treated paper web or equivalent in an after-dryer of a paper machine and after-dryer carrying out the method in a paper machine
AU43028/97A AU4302897A (en) 1996-09-20 1997-09-09 Method for drying a surface-treated paper web or equivalent in an after-dryer of a paper machine and after-dryer carrying out the method in a paper machine
EP97919060A EP1015690A1 (en) 1996-09-20 1997-09-09 Method for drying a surface-treated paper web or equivalent in an after-dryer of a paper machine and after-dryer carrying out the method in a paper machine

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FI963735A FI106270B (sv) 1996-09-20 1996-09-20 Förfarande för torkning av ytbehandlad pappersbana eller liknande i eftertorkparti i pappersmaskin samt förfarandet tillämpande eftertorkparti i pappersmaskin
FI963735 1996-09-20

Publications (1)

Publication Number Publication Date
WO1998012380A1 true WO1998012380A1 (en) 1998-03-26

Family

ID=8546715

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/FI1997/000532 WO1998012380A1 (en) 1996-09-20 1997-09-09 Method for drying a surface-treated paper web or equivalent in an after-dryer of a paper machine and after-dryer carrying out the method in a paper machine

Country Status (7)

Country Link
EP (1) EP1015690A1 (sv)
JP (1) JP2001500580A (sv)
CN (1) CN1077637C (sv)
AU (1) AU4302897A (sv)
CA (1) CA2267287A1 (sv)
FI (1) FI106270B (sv)
WO (1) WO1998012380A1 (sv)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2002072955A1 (en) * 2001-03-09 2002-09-19 Metso Paper, Inc. Method and arrangement in manufacturing of printing paper
WO2004099495A1 (en) * 2003-05-08 2004-11-18 Metso Paper, Inc. Method for control of the curl of paper in the treatment of surface-sized paper, and finishing section of a paper machine
EP2708645A1 (en) * 2012-09-17 2014-03-19 Metso Paper Inc. An arrangement and a method for producing coated board

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6001421A (en) * 1996-12-03 1999-12-14 Valmet Corporation Method for drying paper and a dry end of a paper machine
SE535634C2 (sv) * 2010-11-16 2012-10-23 Andritz Tech & Asset Man Gmbh Cellulosatork som har nedre blåslådor samt förfarande för torkning av en bana av cellulosamassa
CN105926340A (zh) * 2016-06-20 2016-09-07 山东天阳纸业有限公司 一种应用于热升华原纸的干燥设备及干燥工艺
DE102017118218A1 (de) * 2017-08-10 2019-02-14 Voith Patent Gmbh Maschine und verfahren zur herstellung einer faserstoffbahn
CN114622434A (zh) * 2022-04-18 2022-06-14 广东理文造纸有限公司 一种热缸控温涂布装置及其控温方法

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0620313A2 (en) * 1993-03-22 1994-10-19 Valmet Paper Machinery Inc. Drying method and drying module, as well as dryer sections that make use of same, in particular for a high-speed paper machine
EP0726353A2 (en) * 1995-02-01 1996-08-14 Valmet Corporation Method for producing surface-treated paper and dry end of a paper machine

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0620313A2 (en) * 1993-03-22 1994-10-19 Valmet Paper Machinery Inc. Drying method and drying module, as well as dryer sections that make use of same, in particular for a high-speed paper machine
EP0726353A2 (en) * 1995-02-01 1996-08-14 Valmet Corporation Method for producing surface-treated paper and dry end of a paper machine

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2002072955A1 (en) * 2001-03-09 2002-09-19 Metso Paper, Inc. Method and arrangement in manufacturing of printing paper
WO2004099495A1 (en) * 2003-05-08 2004-11-18 Metso Paper, Inc. Method for control of the curl of paper in the treatment of surface-sized paper, and finishing section of a paper machine
GB2416582A (en) * 2003-05-08 2006-02-01 Metso Paper Inc Method for control of the curl of paper in the treatment of surface-sized paper,and finishing section of a paper machine
GB2416582B (en) * 2003-05-08 2007-02-21 Metso Paper Inc Method for control of the curl of paper in the treatment of surface-sized paper,and finishing section of a paper machine
EP2708645A1 (en) * 2012-09-17 2014-03-19 Metso Paper Inc. An arrangement and a method for producing coated board

Also Published As

Publication number Publication date
FI106270B (sv) 2000-12-29
JP2001500580A (ja) 2001-01-16
CN1231007A (zh) 1999-10-06
FI963735A0 (sv) 1996-09-20
CA2267287A1 (en) 1998-03-26
EP1015690A1 (en) 2000-07-05
AU4302897A (en) 1998-04-14
FI963735A (sv) 1998-03-21
CN1077637C (zh) 2002-01-09

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