[0001] The invention relates to a carrier-roll winder according to the preamble of claim
1, which comprises at least two surface support elements to support at least one reel
being formed at least for part of the forming time of the reel substantially below
it and at least one loading device which is arranged to support said reel substantially
above it and in which the carrier-roll winder is provided with at least one drive
so that the drive is arranged to apply tangential force to the reel being wound. The
invention also relates to a method for using a carrier-roll winder according to the
preamble of claim 6.
[0002] On a fibrous web slitter-winder, a full-width fibrous web is unwound from a so-called
machine reel which web is cut into several partial webs parallel in the cross-machine
direction on the cutting part of the slitter-winder and the partial webs are wound
into partial web reels on the winding part of the slitter-winder. In slitter-winders
of carrier-roll type, the partial web reels are wound on top of two carrier rolls
or a carrier roll and a set of belt rolls. A simultaneously wound group of partial
web reels, i.e. the so-called set, is additionally supported from the top with a rider
roll or equivalent and edge reels from their winding cores. From prior art, an arrangement
of this type is known, inter alia, in specification
US 4 601 441. With certain fibrous-web types, the forming of partial web reels can be achieved
more advantageous if the rider roll is provided with a drive. Then, it is possible
to apply moment/force, i.e. pull, to the surface of the reel with the rider roll.
Specification
US 2003/0234315 A1 describes a carrier-roll winder in which the rider roll unit comprises several rolls
provided with a separate drive.
[0003] In a slitter-winder of the carrier-roll type, the whole set or single reels can start
to oscillate on a relatively low frequency (about <10 Hz) in the machine direction
on top of the carrier rolls. This is commonly called the "bouncing" phenomenon. Different
from vibration, bouncing is such of its nature that it is very difficult, often even
impossible to detect with normal vibration measurements. It is not also possible to
prevent the phenomenon successfully and sufficiently with traditional vibration dampers.
The phenomenon can also limit the maximum speed usable in winding, thus decreasing
capacity. In the worst case, the phenomenon can cause the off-throwing of the set.
[0004] Specification
US 4 180 216 presents as a solution for the bouncing problem transferring the rider roll during
winding along the surface of the reel from its peak point as the reel increases with
the purpose of changing the spring constant of the reel being completed. The specification
also suggests using several rider rolls simultaneously to support the set. The adjustment
of the position of the rider roll is described occurring pre-programmedly based on
experience and the roll diameter of the set being completed, among others. With this
type of an arrangement, it is in practice not possible to prevent the bouncing phenomenon
sufficiently, because actual conditions in winding are always different from the ones
of a previously compiled statistical model.
[0005] Specification
US 4 171 106 describes movable carrier rolls as the solution for the bouncing problem. The specification
presents that the carrier rolls are transferred away from each other according as
the reel diameter of the set increases. An arrangement of this type, in which both
carrier rolls are movable, is technically very complex to implement in practice.
[0006] DE 20 18 494 A1 discloses a generic carrier-roll winder according to the preamble of claim 1 and
a generic method for using a carrier-roll winder according to the preamble of claim
6.
[0007] A further roll winder and method for controlling the same is known from
EP 1 790 598 A2.
[0008] The object of the invention is indeed to provide such a carrier-roll winder and a
method for using a carrier-roll winder by means of which the bouncing phenomenon is
at least minimised. A particular object of the invention is to provide a carrier-roll
winder of the slitter-winder of a fibrous web and a method of the carrier-roll winder.
[0009] The objects of the invention are mainly achieved with a carrier-roll winder according
to claim 1 and a method according to claim 6.
[0010] Unless more particularly defined, in this context the following definitions are valid.
A carrier-roll winder refers to a web winder in which at least one reel being formed
is supported below the reel with at least two surface support devices of the reel,
such as a roll or a set of belt rolls. The cross direction refers to the direction
of the longitudinal axis of the surface support device, such as the roll, and the
machine direction the direction perpendicular in relation to the cross direction and
the vertical direction. A set refers to a set of partial web reels being wound simultaneously
on the winder. A reel refers to one or more reels.
[0011] According to a first embodiment of the invention, the carrier-roll winder comprises
at least two surface support elements of the reel arranged to support at least one
reel being formed substantially below it and at least one loading device which is
arranged to support said reel at least for part of the forming time of the reel substantially
above it, and in which the carrier-roll winder is provided with at least one drive
so that the drive is arranged to apply tangential force to the reel being wound. The
invention is mainly characterised by that the carrier-roll winder comprises a control
arrangement which is arranged to control said at least one drive of the carrier-roll
winder so that the drive provides the reel/reels being wound with an effect diminishing
the bouncing phenomenon.
[0012] The control arrangement comprises an arrangement for detecting and monitoring the
bouncing phenomenon of the reel/reels which according to an embodiment comprises elements
for registering momentary changes in the machine-directional position of said at least
one reel. This is advantageously implemented so that the elements comprise a contact-free
distance measuring device arranged to measure the position of the surface of the reel
being formed.
[0013] According to an advantageous embodiment, the loading device of the carrier-roll winder
is provided with a drive and the control arrangement is arranged to control the drive
of the loading device so that tangential force applied by the drive to the reel provides
an effect diminishing the bouncing phenomenon. Advantageously, the loading device
is a rider roll which extends in the cross direction over the whole set.
[0014] According to another embodiment of the invention, one or both of said surface support
elements is provided with a drive and the control arrangement is arranged to control
the drive of the surface support element so that tangential force applied by the drive
to the reel provides an effect diminishing the bouncing phenomenon.
[0015] According to the invention, the control arrangement is arranged to control the drive
so that with the drive is applied to the reel or reels tangential force provided by
the bouncing phenomenon, resisting a change in the machine-directional position of
the reel or reels substantially diverging from the steady state. In the method for
using a carrier-roll winder according to the invention, partial web reels are wound
supported by at least two surface support elements substantially below the partial
web reels, and supported by at least one loading device at least for part of the forming
time of the reel substantially above the partial web reels and, in which method, to
the partial web reel/reels is applied tangential force by means of at least one drive
and via at least one of said surface support elements or the loading device. The method
is mainly characterised by that at least one drive is controlled so that the drive
provides the reel/reels being wound with an effect diminishing the bouncing phenomenon.
[0016] In the method according to the invention, during winding, the occurrence of a possible
machine-directional to-and-fro motion of the reels being wound (the bouncing phenomenon)
is determined and, in the case of said motion occurring, the drive rotating the reel/reels
is controlled to change the winding force applied to the reel/reels substantially
at the pace of said to-and-fro motion so that the drive provides the reel/reels being
wound with an effect diminishing the bouncing phenomenon.
[0017] According to an advantageous embodiment of the invention, the effect diminishing
the bouncing phenomenon is applied to the reel/reels being wound via the loading device.
The drive of the loading device is controlled so that its moment specification is
changed to substantially cyclically variable.
[0018] According to another advantageous embodiment of the invention, the effect diminishing
the bouncing phenomenon to the reel/reels being wound is provided by controlling the
drive of several rolls simultaneously.
[0019] Advantageously in the method, the frequency of the machine-directional to-and-fro
motion of the reels being wound is determined and the drive is controlled so that
its moment specification is changed variable substantially on the same frequency.
The moment specification of the drive is advantageously changed on the frequency of
below 5 Hz.
[0020] According to an embodiment of the invention, the method according to the invention
is applied so that, in the method, tangential force applicable to the partial web
reel/reels is provided with the combined effect of at least one drive and a brake
device. When e.g. the rider roll is formed of several partial rolls with a common
drive but each with its own brake device, it is possible to have an effect diminishing
the bouncing with the brake device of one or more partial rolls.
[0021] According to an advantageous additional characteristic of the invention, it is possible
to affect bouncing in embodiments, which apply the invention in connection with a
loading device and the loading device comprises a belt cycle provided with sheaves,
by deflecting the sheaves, whereby additional moment is provided to the rider roll
by which it is possible to diminish bouncing. Such an arrangement is also implementable
even though the drive was primarily used to implement constant moment.
[0022] According to an embodiment of the invention, the set is actively affected during
winding so that the oscillation motion of the set, the bouncing, is slowed down by
repeatedly inducing a force opposite to the oscillation motion, e.g. on each oscillation
cycle or every other or third etc. The opposing force can be induced by means of the
transmission of the support rolls of one reel, e.g. in carrier-roll winders provided
with sets of belt rolls via the tension force of the belt. The opposing force can
also be provided with the deviation of the support roll in the nip direction or the
deflection of the support roll so that the effect is applied as greater to a desired
point, advantageously to the middle of the set. Thus, the prevention of the natural
oscillation form inducing the excitation of the bouncing phenomenon of the dynamics
between the set and the support rolls is provided by a change in the dynamics so that
the natural frequency alters and thus changing excitation frequencies can be avoided.
This is also implementable as an adaptive arrangement by combining in the arrangement
the measurement of the oscillation motion and cycle combined with the control of an
element/actuator supplying the opposing force.
[0023] Other additional features characteristic of the invention are illustrated in the
accompanying claims.
[0024] The invention and its operation will now be described with reference to the accompanying
schematic figures in which
Fig. 1 shows a carrier-roll winder according to an embodiment of the invention,
Fig. 2 shows a carrier-roll winder according to another embodiment of the invention
and
Fig. 3 shows part of the carrier-roll winder of Fig. 1 from direction A.
[0025] Fig. 1 shows a carrier-roll winder 10 according to an embodiment of the invention.
The carrier-roll winder comprises as support rolls a front roll 15 and a rear roll
20 supported by which on the carrier-roll winder a reel 25 being wound of partial
webs W is being formed. To support the reel 25 from the top is also arranged a rider
roll 30. For the rider roll, there is in the carrier-roll winder a rider-roll beam
35. Above and below refer to the upside and underside of a horizontal plane passing
via the centre of the reel.
[0026] The support rolls 15, 20 of the carrier-roll winder 10 are provided with drives 15.1,
20.1 by means of which surface draw i.e. tangential force can be applied to the reel
being formed. Also the rider roll 30 is provided with a drive 30.1.
[0027] Fig. 1 schematically shows the bouncing phenomenon which can be at least considerably
minimised or even eliminated with the carrier-roll winder and the method according
to the invention. In the bouncing phenomenon, a single reel or even the whole set,
reference 25' in Fig. 3, moves back and forth in the machine direction mainly by rotating
alternately on the surface of the front and rear roll 15, 20 in a way crudely described
by Fig. 1 from its stable position.
[0028] The to-and-fro motion of single rolls is prevented by combining successive reels
25 of the set 25' from their winding cores to each other e.g. so that cores 40 functioning
as the winding core of two adjacent reels 25 are combined with a sleeve 45 which sufficiently
locks the cores to each other radially. This can be seen in Fig. 3 which shows part
of the carrier-roll winder of Fig. 1 from direction A.
[0029] The bouncing phenomenon affecting the whole set 25' can be minimised when the carrier-roll
winder 10 comprises a control arrangement 100 which is arranged to control at least
one drive of the carrier-roll winder so that the drive provides the reels of the set
with an effect diminishing the bouncing phenomenon.
[0030] When examining the bouncing phenomenon shown by Fig. 1 by way of an example in more
detail, it is found that the reel can rotate around the support roll 15 clockwise,
motion d1. Then when rotating, each reel is pressed with greater force against the
rider roll 30. Equivalently, the set can rotate around the support roll 20 counter
clockwise, motion d2. Also from the effect of this motion d2, the reels are pressed
with greater force against the rider roll 30. Then, nip force momentarily risen on
the rider roll also increases friction force between the rider roll 30 and the surface
of the reel 25. When according to the invention the drive 30.1 provides the reels
of the set 25' with an effect diminishing the bouncing phenomenon, the effect of the
drive on the actual reels 25 of the set is ensured along with said increase of friction
force. The increase of friction force thus occurs at such points of time when via
the rider roll 30 the change of the operation of the drive has to be conveyed to the
reels of the set 25'. Hence, the arrangement according to the invention is very advantageous.
[0031] It is evident that the rider roll is not necessarily for the whole forming time of
the reel in connection with the surface of the reel but the invention can also be
applied with such winders and/or winding processes in which the rider roll is released
away from the connection of the reel for part of the winding time.
[0032] The control arrangement 100 is arranged to adjust the moment of the drive 30.1 of
the rider roll 30 so that with the rider roll is applied an effect diminishing the
bouncing phenomenon to the reels of the set. In a situation in which the set rotates
around the support roll 15 clockwise, motion d1, the surface speed of the reels 25
in relation to the rider roll 30 increases momentarily, whereby for diminishing the
bouncing phenomenon during the motion d1 the specification of the drive 30.1 of the
rider roll is changed momentarily smaller. Equivalently in a situation in which the
set rotates around the support roll 20 counter clockwise, motion d2, the surface speed
of the reels 25 in relation to the rider roll 30 decreases momentarily, whereby for
diminishing the bouncing phenomenon during the motion d2 the specification of the
drive 30.1 of the rider roll is changed momentarily greater. The adjustment can be
based on e.g. on the adjustment of drive moment and/or speed.
[0033] Fig. 1 shows an arrangement joined in the control arrangement for detecting and monitoring
the bouncing phenomenon 110. In this embodiment, it comprises elements 115 for registering
changes in the machine-directional position of the reel. In more detail, said elements
comprise a contact-free distance measuring device with which the position and thus
also the motion of the reels 25 can be measured. The position of the surface of the
reels 25 will of course change also when the diameter increases, but this slowly changing
part of the measurement is filtered out and only the so-called dynamic position change
i.e. momentary position change is monitored. This measuring data is sent to the control
arrangement 100. If the reels 25 start to oscillate, the adjuster calculates a correction
term for e.g. the moment or speed adjuster of the drive of the rider roll. Now, the
rider roll 30 and the drive 30.1 of the rider roll stop oscillation by applying a
change of a tangential force component to the reels 25 which resists the bouncing
motion of the reels 25. In a bouncing situation, the frequency of the oscillation
of the reels 25 is quite low, whereby measuring the position of the reels 25 is well
suited for this purpose. The measurement is possible to implement alternatively e.g.
with an ultrasound or opto-electronic sensor as well as with e.g. various camera arrangements.
Also other types of arrangements suitable for the determination of the momentary position
of the reels can be applicable.
[0034] Fig. 2 shows another embodiment of the invention. Here, an arrangement in connection
with the control arrangement 100 for detecting and monitoring the bouncing phenomenon
is implemented with several different ways which can be used separately or together
complementing each other.
[0035] The bouncing phenomenon can be detected according to the first embodiment by monitoring
the power intake or moment of the drives 15.1, 20.1 of the support rolls 15, 20. The
above-described to-and-fro motion of the reels is visible in the power intake of the
drives 15.1 and/or 20.1 and its variation can be used in the control of the rider
roll for correcting the bouncing phenomenon. In a situation in which the set rotates
around the support roll 15 clockwise, motion d1, and equivalently in a situation in
which the set rotates around the support roll counter clockwise, motion d2, the power
intakes of the drives 15.1 and 20.1 change at the pace of the motion of the reels
and the moment of the drive 30.1 of the rider roll is controlled according to this
embodiment based on the changes in the power intakes of the drives 15.1 and 20.1.
[0036] The bouncing phenomenon can be detected according to another embodiment from the
bearing forces of the support rolls. The support rolls are provided with a power sensor
120 which is in connection with the control arrangement 100 for controlling the moment
of the drive 30.1 of the rider roll in a way according to the invention.
[0037] The bouncing phenomenon can be detected according to a yet another embodiment from
the core locks 45. The core locks are arranged to support the end reels in the cross
direction via sockets joined in the winding core. The core lock is controllably movable
supported in the support structure. The core lock is provided with a position sensor
130 by means of which (depending on the structure of the core lock) data is communicated
to the control arrangement 100 of momentary changes in the position of the reel 25,
e.g. changes in the angle α of the support arm of the core lock. Controlling the drive
30.1 of the rider roll is now performed based on this data in a way according to the
invention. Even though motion is conveyed in practice to the core locks due to, inter
alia, the eccentricity of the reels, a signal given by such a motion can be distinguished
of the bouncing phenomenon and filtered out of the process.
[0038] Furthermore referring to Fig. 1, next will be described another arrangement according
to an embodiment of the invention. The bouncing phenomenon can be prevented in addition
to, or alternatively to, controlling the moment of the drive 30.1 of the rider roll
based on the position changes of the reel 25 or the set 25' so that the moment of
the support rolls 15, 20 is controlled based on the position changes of the reel 25
or the set 25'. In a situation in which the set rotates around the support roll 15
clockwise, motion d1, for diminishing the bouncing phenomenon during the motion d1,
the moment of the drive 15.1 of the support roll 15 is controlled momentarily with
a smaller specification. Equivalently in a situation in which the set rotates around
the support roll 20 counter clockwise, motion d2, for diminishing the bouncing phenomenon
during the motion d2, the moment of the drive 20.1 of the support roll 20 is controlled
momentarily with a greater specification.
[0039] According to an embodiment, in the control system 100 is determined a frequency on
which the detected bouncing phenomenon occurs, whereby at least one drive is controlled
by changing its specification substantially on the same said frequency but typically
in a different stage. The bouncing frequency is typically below 10 Hz. The control
system can simply comprise only an adjuster and a control apparatus.
[0040] According to another embodiment, in the control system 100 is determined a frequency
on which the detected bouncing phenomenon occurs, whereby at least one drive is controlled
by changing its specification on a second frequency dependent on the determined frequency.
The second frequency can be a frequency based on experience or e.g. a multiple of
said determined frequency.
[0041] It should be noticed that only a few of the most advantageous embodiments of the
invention were described above. Thus, it is evident that the invention is not limited
to the above-mentioned embodiments, but it can be applied in many ways within the
scope defined by the enclosed claims. For example, when controlling the drives, it
is possible to apply other control variable alternatives differing from the described.
It is also possible that single features described in connection with different embodiments
are used within the scope of the basic idea of the invention in connection with other
embodiments and/or combine various units of the described features, if so required
and technical possibilities for this existing.
The present invention relates to a carrier-roll winder (10) which comprises at least
two surface support elements (15, 20) to support at least one reel (25) being formed
at least for part of the forming time of the reel substantially below it and at least
one loading device (30) which is arranged to support said reel (25) at least for part
of the forming time of the reel substantially above it, and in which the carrier-roll
winder is provided with at least one drive (15.1, 20.1, 30.1) so that the drive (15.1,
20.1, 30.1) is arranged to apply tangential force to the reel (25) being wound. The
carrier-roll winder (10) comprises a control arrangement (100) which is arranged to
control said at least one drive (15.1, 20.1, 30.1) of the carrier-roll winder so that
the drive provides the reel/reels (25) being wound with an effect diminishing the
bouncing phenomenon.
1. A carrier-roll winder (10) which comprises at least two surface support elements (15,
20) to support at least one reel (25) being formed substantially below it and at least
one loading device (30) which is arranged to support said reel (25) at least for part
of the forming time of the reel substantially above it, and in which the carrier-roll
winder is provided with at least one drive (15.1, 20.1, 30.1) so that the drive (15.1,
20.1, 30.1) is arranged to apply tangential force to the reel (25) being wound,
the carrier-roll winder (10) comprises a control arrangement (100) which is arranged
to control said at least one drive (15.1, 20.1, 30.1) of the carrier-roll winder such
that the drive provides the reel/reels (25) being wound with an effect diminishing
the bouncing phenomenon,
the control arrangement (100) comprises an arrangement (110) for detecting and monitoring
the bouncing phenomenon, and characterised in that the control arrangement is arranged to control the drive so that with the drive is
applied to the reel or reels tangential force provided by the bouncing phenomenon,
resisting a change in the machine-directional position of the reel or reels substantially
diverging from the steady state.
2. A carrier-roll winder according to claim 1, characterised in that the arrangement (110) for detecting and monitoring the bouncing phenomenon comprises
elements (115, 120, 130) for registering momentary changes in the machine-directional
position of said at least one reel (25).
3. A carrier-roll winder according to claim 2, characterised in that the elements for registering the momentary changes in the machine-directional position
of the reel (25) comprises a contact-free distance measuring device (115) arranged
to measure the position of the surface of the reel (25) being formed.
4. A carrier-roll winder according to claim 1, characterised in that the loading device (30) is provided with a drive (30.1), and that the control arrangement
(100) is arranged to control the drive of the loading device so that the tangential
force applied by the drive (30.1) to the reel (25) provides an effect diminishing
the bouncing phenomenon.
5. A carrier-roll winder according to claim 1, characterised in that one or both of said surface support elements (15, 20) is provided with a drive (15.1
20.1), and that the control arrangement (100) is arranged to control the drive (15.1,
20.1) of the surface support element so that the tangential force applied by the drive
to the reel (25) provides an effect diminishing the bouncing phenomenon.
6. A method for using a carrier-roll winder, in which method, partial web reels are wound
supported by at least two surface support elements substantially below the partial
web reels, and supported by at least one loading device at least for part of the forming
time of the reel substantially above the partial web reels and, in which method, to
the partial web reel/reels is applied tangential force by means of at least one drive
and via at least one of said surface support elements or the loading device,
the drive is controlled such that the drive provides the reel/reels being wound with
an effect diminishing the bouncing phenomenon, and
during winding, the occurrence of a possible machine-directional to-and-fro motion
of the reels being wound (the bouncing phenomenon) is determined and characterised in that in the case of said motion occurring, the drive rotating the reel/reels is controlled
to change the winding force applied to the reel/reels substantially at the pace of
said to-and-fro motion so that the drive provides the reel/reels being wound with
an effect diminishing the bouncing phenomenon.
7. A method according to claim 6, characterised in that the effect diminishing the bouncing phenomenon is applied to the reel/reels being
wound via the loading device.
8. A method according to claim 7, characterised in that the drive is controlled so that its moment specification is changed to substantially
variable.
9. A method according to claim 8, characterised in that the drive is controlled so that its moment specification is changed to substantially
cyclically variable.
10. A method according to claim 6, characterised in that the moment specification of the drive is advantageously changed on the frequency
of below 5 Hz.
11. A method according to claim 6, characterised in that, in the method, the frequency of the machine-directional to-and-fro motion of the
reels being wound is determined and the drive is controlled so that its moment specification
is changed variable substantially on a frequency dependent on said determined frequency
or substantially on the same frequency as the determined frequency.
1. Tragrollenwickler (10), der wenigstens zwei Oberflächenstützelemente (15, 50), um
wenigstens eine Rolle (25), die ausgebildet wird, im Wesentlichen unter dieser zu
stützen, und wenigstens eine Belastungsvorrichtung (30) aufweist, die angeordnet ist,
um die Rolle (25) wenigstens für einen Teil der Ausbildungszeit der Rolle im Wesentlichen
über dieser zu stützen, wobei der Tragrollenwickler mit wenigstens einem Antrieb (15.1,
20.1, 30.1) so versehen ist, dass der Antrieb (15.1, 20.1, 30.1) angeordnet ist, um
eine tangentiale Kraft auf die Rolle (25), die gewickelt wird, aufzubringen,
wobei der Tragrollenwickler (10) eine Steuerungsanordnung (100) aufweist, die angeordnet
ist, um den wenigstens einen Antrieb (15.1, 20.1, 30.1) des Tragrollenwicklers derart
zu steuern, dass der Antrieb die Rolle/Rollen (25), die gewickelt wird/werden, mit
einem Effekt versieht, der das Prellphänomen verringert,
wobei die Steuerungsanordnung (100) eine Anordnung (110) zum Erfassen und Überwachen
des Prellphänomens aufweist, und
dadurch gekennzeichnet, dass
die Steuerungsanordnung angeordnet ist, um den Antrieb so zu steuern, dass der Antrieb
auf die Rolle oder die Rollen eine tangentiale Kraft aufbringt, die durch das Prellphänomen
vorgesehen wird, wodurch einer Änderung der Maschinenrichtungsposition der Rolle oder
der Rollen Widerstand geleistet wird, die im Wesentlichen von dem stetigen Zustand
abweicht.
2. Tragrollenwickler nach Anspruch 1, dadurch gekennzeichnet, dass die Anordnung (110) zum Erfassen und Überwachen des Prellphänomens Elemente (115,
120, 130) zum Registrieren von momentanen Änderungen der Maschinenrichtungsposition
der wenigstens einen Rolle (25) aufweist.
3. Tragrollenwickler nach Anspruch 2, dadurch gekennzeichnet, dass die Elemente zum Registrieren der momentanen Änderungen der Maschinenrichtungsposition
der Rolle (25) eine berührungslose Abstandsmessvorrichtung (115) aufweisen, die angeordnet
ist, um die Position der Oberfläche der Rolle (25) zu messen, die ausgebildet wird.
4. Tragrollenwickler nach Anspruch 1, dadurch gekennzeichnet, dass die Belastungsvorrichtung (30) mit einem Antrieb (30.1) versehen ist, und dass die
Steuerungsanordnung (100) angeordnet ist, um den Antrieb der Belastungsvorrichtung
so zu steuern, dass die tangentiale Kraft, die durch den Antrieb (30.1) auf die Rolle
(25) aufgebracht wird, einen Effekt vorsieht, der das Prellphänomen verringert.
5. Tragrollenwickler nach Anspruch 1, dadurch gekennzeichnet, dass eines oder beide von den Oberflächenstützelementen (15, 20) mit einem Antrieb (15.1,
20.1) versehen ist/sind, und dass die Steuerungsanordnung (100) angeordnet ist, um
den Antrieb (15.1, 20.1) des Oberflächenstützelements so zu steuern, dass die tangentiale
Kraft, die durch den Antrieb auf die Rolle (25) aufgebracht wird, einen Effekt vorsieht,
der das Prellphänomen verringert.
6. Verfahren zum Verwenden eines Tragrollenwickler, wobei bei dem Verfahren Teilbahnrollen
gewickelt werden, die durch wenigstens zwei Oberflächenstützelemente im Wesentlichen
unter den Teilbahnrollen gestützt sind und die durch wenigstens eine Belastungsvorrichtung
wenigstens für einen Teil der Ausbildungszeit der Rolle im Wesentlichen über den Teilbahnrollen
gestützt sind, und wobei bei dem Verfahren auf die Teilbahnrolle/die Teilbahnrollen
eine tangentiale Kraft mittels wenigstens eines Antriebs und über wenigstens eines
der Oberflächenstützelemente oder die Belastungsvorrichtung aufgebracht wird,
der Antrieb derart gesteuert wird, dass der Antrieb die Rolle/die Rollen, die gewickelt
wird/werden, mit einem Effekt versieht, der das Prellphänomen verringert, und
während eines Wickelns, das Auftreten einer möglichen Hin- und Wegbewegung in Maschinenrichtung
der Rollen, die gewickelt werden (das Prellphänomen), bestimmt wird, und
dadurch gekennzeichnet, dass
in dem Fall, dass die Bewegung auftritt, der Antrieb, der die Rolle/die Rollen dreht,
gesteuert wird, um die Wicklungskraft, die auf die Rolle/die Rollen aufgebracht wird,
im Wesentlichen mit der Geschwindigkeit der Hin- und Wegbewegung zu ändern, sodass
der Antrieb die Rolle/die Rollen, die gewickelt wird/werden, mit einem Effekt versieht,
der das Prellphänomen verringert.
7. Verfahren nach Anspruch 6, dadurch gekennzeichnet, dass der Effekt, der das Prellphänomen verringert, auf die Rolle/die Rollen, die gewickelt
werden, über die Belastungsvorrichtung aufgebracht wird.
8. Verfahren nach Anspruch 7, dadurch gekennzeichnet, dass der Antrieb so gesteuert wird, dass seine Momentspezifikation geändert wird, um im
Wesentlichen variabel zu sein.
9. Verfahren nach Anspruch 8, dadurch gekennzeichnet, dass der Antrieb so gesteuert wird, dass seine Momentspezifikation geändert wird, um im
Wesentlichen zyklisch variabel zu sein.
10. Verfahren nach Anspruch 6, dadurch gekennzeichnet, dass die Momentspezifikation des Antriebs vorteilhaft auf die Frequenz unterhalb 5 Hz
geändert wird.
11. Verfahren nach Anspruch 6, dadurch gekennzeichnet, dass bei dem Verfahren die Frequenz der Hin- und Wegbewegung in Maschinenrichtung der
Rollen, die gewickelt werden, bestimmt wird, und der Antrieb so gesteuert wird, dass
seine Momentspezifikation variabel im Wesentlichen auf eine Frequenz in Abhängigkeit
der bestimmten Frequenz oder im Wesentlichen auf die gleiche Frequenz wie die bestimmte
Frequenz geändert wird.
1. Enrouleur de rouleau support (10) qui comprend au moins deux éléments de support de
surface (15, 20) pour supporter au moins une bobine (25) qui est formée sensiblement
au-dessous de ce dernier et au moins un dispositif de chargement (30) qui est agencé
pour supporter ladite bobine (25) au moins pendant une partie du temps de formation
de la bobine sensiblement au-dessus de ce dernier, et dans lequel l'enrouleur de rouleau
support est prévu avec au moins un entraînement (15.1, 20.1, 30.1) de sorte que l'entraînement
(15.1, 20.1, 30.1) est agencé pour appliquer la force tangentielle sur la bobine (25)
qui est enroulée,
l'enrouleur de rouleau support (10) comprend un agencement de commande (100) qui est
agencé pour commander ledit au moins un entraînement (15.1, 20.1, 30.1) de l'enrouleur
de rouleau support de sorte que l'entraînement dote la bobine/les bobines (25) qui
est (sont) enroulée (s) avec un effet diminuant le phénomène de rebond,
l'agencement de commande (100) comprend un agencement (110) pour détecter et surveiller
le phénomène de rebond, et
caractérisé en ce que :
l'agencement de commande est agencé pour commander l'entraînement de sorte qu'avec
l'entraînement, la force tangentielle fournie par le phénomène de rebond est appliquée
sur la bobine ou les bobines, résistant à un changement de position directionnelle
de machine de la bobine ou des bobines, divergeant sensiblement de l'état stable.
2. Enrouleur de rouleau support selon la revendication 1, caractérisé en ce que l'agencement (110) pour détecter et surveiller le phénomène de rebond comprend des
éléments (115, 120, 130) pour enregistrer des changements momentanés dans la position
directionnelle de machine de ladite au moins une bobine (25).
3. Enrouleur de rouleau support selon la revendication 2, caractérisé en ce que les éléments pour enregistrer les changements momentanés de la position directionnelle
de machine de la bobine (25) comprennent un dispositif de mesure de distance sans
contact (115) agencé pour mesurer la position de la surface de la bobine (25) qui
est formée.
4. Enrouleur de rouleau support selon la revendication 1, caractérisé en ce que le dispositif de chargement (30) est prévu avec un entraînement (30.1) et en ce que l'agencement de commande (100) est agencé pour commander l'entraînement du dispositif
de chargement de sorte que la force tangentielle appliquée par l'entraînement (30.1)
sur la bobine (25) fournit un effet diminuant le phénomène de rebond.
5. Enrouleur de rouleau support selon la revendication 1, caractérisé en ce qu'un ou deux desdits éléments de support de surface (15, 20) est (sont) prévu(s) avec
un entraînement (15.1, 20.1), et en ce que l'agencement de commande (100) est agencé pour commander l'entraînement (15.1, 20.1)
de l'élément de support de surface de sorte que la force tangentielle appliquée par
l'entraînement sur la bobine (25) fournit un effet diminuant le phénomène de rebond.
6. Procédé pour utiliser un enrouleur de rouleau support, dans lequel procédé, des bobines
de papier partielles sont enroulées, supportées par au moins deux éléments de support
de surface sensiblement au-dessous des bobines de papier partielles, et supportées
par au moins un dispositif de chargement au moins pendant une partie du temps de formation
de la bobine sensiblement au-dessus des bobines de papier partielles et, dans lequel
procédé, sur la bobine/les bobines de papier partielles, est appliquée la force tangentielle
au moyen d'au moins un entraînement et via au moins l'un parmi lesdits éléments de
support de surface ou le dispositif de chargement,
l'entraînement est commandé de sorte que l'entraînement dote la bobine/les bobines
qui sont enroulées, d'un effet diminuant le phénomène de rebond, et
pendant l'enroulement, l'occurrence d'un mouvement d'avant en arrière directionnel
de machine éventuel des bobines qui sont enroulées (le phénomène de rebond) est déterminée,
et
caractérisé en ce que :
dans le cas dans lequel ledit mouvement a lieu, l'entraînement faisant tourner la
bobine/les bobines est commandé pour modifier la force d'enroulement appliquée sur
la bobine/les bobines sensiblement au rythme dudit mouvement d'avant en arrière de
sorte que l'entraînement dote la bobine/les bobines qui sont enroulées, d'un effet
diminuant le phénomène de rebond.
7. Procédé selon la revendication 6, caractérisé en ce que l'effet diminuant le phénomène de rebond est appliqué sur la bobine/les bobines qui
sont enroulées, via le dispositif de chargement.
8. Procédé selon la revendication 7, caractérisé en ce que l'entraînement est commandé de sorte que sa spécification de moment est modifiée
pour être sensiblement variable.
9. Procédé selon la revendication 8, caractérisé en ce que l'entraînement est commandé de sorte que sa spécification de moment est modifiée
pour être sensiblement cycliquement variable.
10. Procédé selon la revendication 6, caractérisé en ce que la spécification de moment de l'entraînement est avantageusement modifiée sur la
fréquence inférieure à 5 Hz.
11. Procédé selon la revendication 6, caractérisé en ce que, dans le procédé, la fréquence du mouvement d'avant en arrière directionnel de machine
des bobines qui sont enroulées, est déterminée et l'entraînement est commandé de sorte
que sa spécification de moment est modifiée pour être sensiblement variable sur une
fréquence dépendant de ladite fréquence déterminée ou sensiblement sur la même fréquence
que la fréquence déterminée.