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EP 0 968 329 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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24.01.2007 Bulletin 2007/04 |
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Date of filing: 20.03.1997 |
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International Patent Classification (IPC):
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International application number: |
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PCT/SE1997/000466 |
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International publication number: |
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WO 1998/041683 (24.09.1998 Gazette 1998/38) |
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METHOD IN THE PRODUCTION OF A WEB MATERIAL
VERFAHREN ZUR HERSTELLUNG EINER MATERIALBAHN
PROCEDE DE PRODUCTION D'UN MATERIAU EN BANDE
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Designated Contracting States: |
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AT BE DE DK ES FI FR GB IT NL PT SE |
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Date of publication of application: |
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05.01.2000 Bulletin 2000/01 |
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Proprietor: Stora Enso Aktiebolag |
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791 80 Falun (SE) |
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Inventors: |
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- HAKANSSON, Philip
S-294 37 Sölvesborg (SE)
- CARLSSON, Tommy
S-294 36 Sölvesborg (SE)
- WIGSTEN, Anders
S-790 15 Sundborn (SE)
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Representative: Johansson, Lars-Erik et al |
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Hynell Patenttjänst AB
Patron Carls väg 2 683 40 Hagfors / Uddeholm 683 40 Hagfors / Uddeholm (SE) |
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References cited: :
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- DATABASE PAPERCHEM, FILE 240 [Online] MITSUBISHI HEAVY LTD 'Dispersion of Pulp in
Papermaking', XP002992808 Retrieved from Dialog, accession no. 0567131 -& JP 05 033
283 A 09 February 1993 -& DATABASE WPI Week 199311, Derwent Publications Ltd., London,
GB; AN 1993-089151, XP002991950 & JP 05 033 283 A (MITO MITSUBISHI HEAVY IND CO LTD)
09 February 1993
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
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TECHNICAL FIELD
[0001] The invention relates to a method to improve, in the production of a web which to
an essential part consists of cellulosic fibres, the formation of the web material
in a one or plural wire machine by, to an essential part, dispersing existing flocks
in the stock which is led from an inlet box out onto at least one wire, and to counteract
the reformation of flocks in the stock on the wire. The description also includes
a short account of a device for performing the method and of a method to clean press
felts and wires.
BACKGROUND OF THE INVENTION
[0002] When producing paper and board, the raw material is mainly cellulosic fibres and
in most cases also fillers, such as calcium carbonate and/or clay, retention agents
and so on are included. The included components tend, in connection with the production
of paper and board, to form flocks in the stock with poor distribution of the components
as a result. The formation is used as a measurement of how even the components, mainly
the fibres and fillers, which are included in the paper or board, are distributed.
[0003] The formation is a very important property of paper and board. A paper or board with
poor formation gives a stained impression, has poorer printing properties and poorer
strength than a paper or a board with good formation. By improving the formation,
essential improvements in quality can be achieved. As an alternative, the basis weight
of the paper or board can be decreased with sustained strength, which results in a
not unessential economic potential.
[0004] Traditionally, it has been tried to solve the problem with fibre flocks by developing
the design of the inlet boxes or equipment in near connection with the inlet box.
It has however proved impossibe to definitely solve the problem with formation, since
fibre flocks quickly reform after the stock has left the inlet box and has entered
onto the wire.
[0005] It has also been suggested different arrangements within the wire section, which
to a certain extent can prevent the reformation of fibre flocks, for example different
types of vibration and/or shaking means. The installation of top wire structures can
also be said to be a part of this goal, although the installation of top wires in
the first place is dictated by other purposes.
[0006] As a conclusion it can be said that the equipment, which so far has been used or
proposed in order to take care of the problem of fibre flocks, is difficult to control,
complicated, capital demanding and that it obstructs or prevents the optimisation
of other quality properties than formation in the paper or board. A consequence of
this compromising is e.g. that the orientation of fibres in the paper or board is
difficult to optimise. A result of the use of so far known equipment for improving
the formation, is typically such conditions that more fibres are oriented in the length
direction of the web material than in its cross direction. This results in poorer
strength properties in the cross direction of the product.
[0007] It is known from DATABASE WPI Week 199311, Derwent Publications Ltd., London, GB;
Class F09, AN 1993-089151, XP002991950 & JP 5 033 283 A, 09.02.1993 to expose the
stock, during formation of the web on a wire, to vibrations with frequencies of 20-40
Hz and with an amplitude of 2-3 mm.
[0008] EP-A-0318107 discloses a method of forming a fibrous web in a paper-machine, in which
method stock is introduced into a wedge-like space or gap. According to one aspect
of the method, the formation of flocks is prevented by supplying into the gap energy
in the form of a mechanical high-frequency vibration, preferably in the ultrasonic
range, said energy causing the breaking down of flocks.
DESCRIPTION OF THE INVENTION
[0009] The object of the invention is to attack the above problems. This is, in connection
with the method described in the introduction, achieved by ultrasound energy being
furnished to the stock in a plurality of wire sections, suitably by the ultrasound
energy being furnished to the stock on the wire in at least one cross directional
section of the wire sections along the transport direction of the stock on the wire.
The ultrasound energy is furnished as ultrasound waves with frequencies between 15
and 75 kHz, which has surprisingly shown to result in considerably better formation
when ultrasound elements (ultrasound generators or elements which can transmit ultrasound
energy from one or more generators), which emit energy by means of oscillation with
said frequency, are placed within the wire section of a paper or board machine in
such a way that ultrasound energy is transmitted to the stock on the wire. In order
to achieve the best effect, the ultrasound energy transmitting elements should be
positioned directly below the wire or wires which follow after the inlet box or boxes
of the paper or board machine. As a consequence of this positioning, the effect can
also be achieved that the wire or wires are cleaned. The elements are moreover positioned
so that an optimal effect, i.e. optimal ultrasound energy per mass unit of the stock
(suspension of fibres/fillers) is achieved, at the same time as it is important that
the concentration of the stock (the dry content) in at least one or some of said sections
of the wire section still is adequately low so that flocks which are formed are not
bound too strong, but can be broken apart. Consequently, at least some ultrasound
elements are positioned e.g. so that they mainly influence the stock within at least
one section of the wire section where the stock on the wire has a concentration of
between 0,2 and 6 %, suitably between 0,5 and 5 % or between 1 and 6 %. A conceivable
optimal range of content can also be between 1,5 and 5 %. A positioning of the ultrasound
elements further back on the paper machine, e.g. in or on the inlet box, will for
certain result in that flocks which may have been formed possibly can be dispersed
there, but these can afterwards be reformed on the wire or wires.
[0010] Consequently, a positioning of the elements before the wire section will result in
none or very small improvement of the formation.
[0011] In certain cases, it can be conceived to position elements which transmit ultrasound
energy also within one or more sections where the concentration of the stock is more
than 5 or 6 %, preferably in order to prevent flocks from being reformed. It can for
example be conceived to place ultrasound elements within sections of the area which
is common for a top wire section and a sub wire section, within which sections the
concentration of the stock may be considerably higher than 5 à 6 % or up to 15 %,
preferably a maximum of 12%, as well as within the introductory section of the sub
wire, where the concentration of the stock may be lower than 5 à 6 %. The ultrasound
elements within the introductory section of the sub wire, where the concentration
of the stock is 0.2-6 %, preferably 0.5-5 % or 1-6 %, e.g. 1.5-5 %, hereby act to
both dissolve flocks which have already been formed and to prevent new establishment
of flocks, while ultrasound elements within the area where the concentration is as
much as between 5 and 15 %, preferably between 6 and 12 %, in the first place are
acting to preserve the good formation.
[0012] Hence, in a device for performance of the method according to the invention, ultrasound
elements which transmit the ultrasound energy to the stock are arranged in a wire
loop in contact with the inside of the wire in the loop in the area of the distribution
of the stock and thus also in contact with the liquid in the stock via the wire and
via the mesh interspaces in the wire for transmission of the ultrasound energy to
the stock via the wire and directly to the liquid phase via the mesh interspaces.
According to one aspect, the ultrasound elements may be arranged in a sub loop and/or
in a top loop. According to another aspect, the ultrasound elements may be arranged
opposite each other in a sub wire loop and in a top wire loop. According to yet another
aspect, the ultrasound elements and/or ultrasound generators which are connected to
the ultrasound elements are adjustable in respect of power and/or frequency which
is transmitted to the stock. According to yet another aspect, the ultrasound elements
may consist of separate units. According to yet another aspect, the ultrasound elements
may be integrated with one or some dewatering elements of the type which include formation
tables, foils and suction boxes.
[0013] The ultrasound energy is furnished to the stock on the wire within a plurality of
cross directional sections which are arranged after each other, e.g. within three
to five after each other following, cross directional sections. This will also result
in a possibility to adapt the frequency and/or power of the ultrasound to the concentration
of the stock within different sections of the wire section, so that e.g. ultrasound
energy with a higher frequency is furnished in at least one section which is closer
to the inlet box, than within a subsequent section further away from the inlet box.
[0014] The ultrasound elements are suitably arranged so that the ultrasound power (amplitude)
and/or the frequency can be controlled. Hereby, an optimisation of the formation will
be possible, so that it can be adapted to the composition of the stock. Consequently,
flocks which contain larger amounts of fines and fillers should demand a higher frequency
than e.g. a stock which is based on a hard wood pulp with short fibres, which may
demand a somewhat lower frequency. The lowest frequency should be demanded in connection
with the dispersion of fibres from soft wood pulp with long fibres. Also the wire
speed has effect on suitable frequency and/or power. The optimisation of the frequency
and power of the ultrasound elements can of course be made by means of a parent control
and regulation equipment.
[0015] The ultrasound elements may consequently operate sequentially by changing the frequency
and/or power or also the elements may be dedicated for certain prechosen frequencies
and/or powers which attack certain flock sizes or a certain content of flock. One
aspect of the invention is characterised in that the ultrasound elements are equipped
to operate in this way. Further features and aspects of the invention are apparent
from the subsequent claims.
[0016] It is also possible to place ultrasound elements in direct contact with press felts,
formation wires and/or drying wires in order to clean these felts and/or wires. A
water spray can be positioned either on the same side as the ultrasound element or
on the opposite side in order to supply the water volume which is necessary to transmit
the ultrasound from the element to the inner structure of the felt or wire.
1. Method to improve, in the production of a web which to an essential part consists
of cellulosic fibres, the formation of the web material in a one or plural wire machine
by furnishing ultrasound energy to a stock on a wire, which stock is led from an inlet
box out onto said wire, in order to, to an essential part, disperse existing flocks
in the stock, characterised in that ultrasound energy is furnished as ultrasound waves with frequencies between 15 and
75 kHz to the stock on the wire within a plurality of cross directional wire sections
which are arranged after each other, such that reformation of flocks in the stock
on the wire is counteracted.
2. Method according to claim 1, characterised in that the ultrasound energy is furnished to the stock within three to five cross directional
sections which are arranged after each other.
3. Method according to any of claims 1-2, characterised in that the ultrasound energy is furnished to the stock within at least some section where
the stock on the wire has a concentration (dry content) of between 0,2 and 6 %, preferably
between 0,5 and 5 % or between 1 and 6 %, suitably between 1,5 and 5 %.
4. Method according to claim 3, characterised in that ultrasound energy also is furnished to the stock within at least some section where
the concentration of the stock is 5-15 %, preferably 6-12 %.
5. Method according to any of claims 1-4, characterised in that the ultrasound energy is furnished to the stock within the area of the first halves
of the wire sections.
6. Method according to any of the preceding claims, characterised in that the ultrasound waves which are furnished to the stock have different frequencies
within at least a couple of said sections.
7. Method according to claim 6, characterised in that the ultrasound has a higher frequency within at least one section which is closer
to the inlet box than a subsequent section further away from the inlet box, within
which subsequent section the ultrasound has a lower frequency.
1. Verfahren zur Verbesserung der Bildung des Bahnmaterials bei der Herstellung einer
Bahn, welche zu einem wesentlichen Teil aus Cellulosefasern besteht, in einer oder
mehreren Siebmaschinen durch Liefern von Ultraschallenergie an einen Papierstoff auf
einem Sieb, wobei dieser Papierstoff aus einer Einlassbox auf genanntes Sieb geführt
wird, um, zu einem wesentlichen Teil, bestehende Flocken auf dem Papierstoff zu verteilen,
dadurch gekennzeichnet, dass Ultraschallenergie als Ultraschallwellen mit Frequenzen zwischen 15 und 75 kHz an
den Papierstoff auf dem Sieb innerhalb einer Vielzahl von Siebabschnitten in Querrichtung,
die hintereinander angeordnet sind, geliefert wird, so dass Neubildung der Flocken
in dem Papierstoff auf dem Sieb entgegengewirkt wird.
2. Verfahren nach Anspruch 1, dadurch gekennzeichnet, dass die Ultraschallenergie an den Papierstoff innerhalb von drei bis fünf Abschnitten
in Querrichtung, die nacheinander angeordnet sind, bereitgestellt wird.
3. Verfahren nach einem der Ansprüche 1 - 2, dadurch gekennzeichnet, dass die Ultraschallenergie an den Papierstoff innerhalb mindestens irgendeines Abschnitts
geliefert wird, wo der Papierstoff auf dem Sieb eine Konzentration (Trockengehalt)
von zwischen 0,2 und 6 %, vorzugsweise zwischen 0,5 und 5 % oder zwischen 1 und 6
%, zweckmäßigerweise zwischen 1,5 und 5 % aufweist.
4. Verfahren nach Anspruch 3, dadurch gekennzeichnet, dass die Ultraschallenergie auch an den Papierstoff innerhalb mindestens irgendeines Abschnitts
geliefert wird, wo die Konzentration des Papierstoffes 5 - 15 %, vorzugsweise 6 -
12 % beträgt.
5. Verfahren nach einem der Ansprüche 1 - 4, dadurch gekennzeichnet, dass die Ultraschallenergie an den Papierstoff innerhalb des Bereiches der ersten Hälften
der Siebabschnitte geliefert wird.
6. Verfahren nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Ultraschallwellen, die an den Papierstoff geliefert werden, unterschiedliche
Frequenzen innerhalb mindestens ein paar der genannten Abschnitte aufweisen.
7. Verfahren nach Anspruch 6, dadurch gekennzeichnet, dass der Ultraschall eine höhere Frequenz innerhalb mindestens eines Abschnitts aufweist,
der sich näher an der Einlassbox befindet als ein nachfolgender Abschnitt, der sich
weiter von der Einlassbox entfernt befindet, wobei der Ultraschall innerhalb dieses
nachfolgenden Abschnitts eine geringere Frequenz aufweist.
1. Procédé pour améliorer, au cours de la production d'une bande qui pour une part essentielle
se compose de fibres cellulosiques, la formation du matériau en bande dans un dispositif
à fil simple ou multiple en fournissant de l'énergie ultrasonore à une pâte sur une
toile, laquelle pâte est sortie depuis une boîte d'entrée sur ladite toile, afin de,
pour une part essentielle, disperser des flocons existant dans la pâte, caractérisé en ce que l'énergie ultrasonore est fournie sous forme d'ondes ultrasonores ayant des fréquences
entre 15 et 75 kHz à la pâte sur la toile dans une pluralité de sections de toile
transversales qui sont disposées l'une après l'autre, de telle sorte que la reformation
des flocons dans la pâte sur la toile est contrariée.
2. Procédé selon la revendication 1, caractérisé en ce que l'énergie ultrasonore est fournie à la pâte dans trois à cinq des sections transversales
qui sont disposées l'une après l'autre.
3. Procédé selon l'une quelconque des revendications 1 et 2, caractérisé en ce que l'énergie ultrasonore est fournie à la pâte dans au moins certaines sections où la
pâte sur la toile a une concentration (teneur en matière sèche) comprise entre 0,2
et 6 %, de préférence entre 0,5 et 5 % ou entre 1 et 6 %, de manière adéquate entre
1,5 et 5 %.
4. Procédé selon la revendication 3, caractérisé en ce que l'énergie ultrasonore est elle aussi fournie à la pâte dans au moins quelques sections
où la concentration de la pâte est de 5 à 15 %, de préférence de 6 à 12 %.
5. Procédé selon l'une quelconque des revendications 1 à 4, caractérisé en ce que l'énergie ultrasonore est fournie à la pâte dans la zone des premières moitiés des
sections de toile.
6. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que les ondes ultrasonores qui sont fournies à la pâte ont des fréquences différentes
dans au moins un couple desdites sections.
7. Procédé selon la revendication 6, caractérisé en ce que l'ultrason a une fréquence supérieure dans au moins une section qui est plus proche
de la boîte d'entrée qu'une section suivante plus éloignée de la boîte d'entrée, dans
laquelle section suivante l'ultrason a une fréquence inférieure.