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(11) |
EP 2 039 634 B1 |
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EUROPEAN PATENT SPECIFICATION |
| (45) |
Mention of the grant of the patent: |
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29.08.2012 Bulletin 2012/35 |
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Date of filing: 20.09.2007 |
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International Patent Classification (IPC):
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| (54) |
Web winders and methods of operating web winders
Bahnwickelmaschinen und Verfahren zum Betrieb von Bahnwickelmaschinen
Bobineur de fils et procédé de fonctionnement de bobineurs de fils
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| (84) |
Designated Contracting States: |
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AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IS IT LI LT LU LV MC MT NL PL PT RO
SE SI SK TR |
| (43) |
Date of publication of application: |
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25.03.2009 Bulletin 2009/13 |
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Proprietor: Atlas Converting Equipment Limited |
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Kempston,
Bedford,
Bedforshire MK42 7XT (GB) |
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Inventor: |
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- Loft, Roger
Bedford
Bedfordshire
MK43 9JU (GB)
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| (74) |
Representative: ip21 Ltd |
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Central Formalities Department
Lakeside 300
Old Chapel Way Broadland Business Park
Norwich
Norfolk NR7 0WG Broadland Business Park
Norwich
Norfolk NR7 0WG (GB) |
| (56) |
References cited: :
EP-A- 0 407 070 GB-A- 2 028 772 US-A- 4 344 584
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EP-A- 0 875 476 US-A- 2 769 600 US-A1- 2003 226 636
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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).
|
Technical Field
[0001] The invention relates to web winders and methods of operating web winders.
Background Art
[0002] The closest prior art known to the applicant is the applicant's own prior web winder
which is a slitter rewinder (sold under trademark Titan CT610). This slitter rewinder
comprises a frame; at least one turret rotatably mounted in the frame. The turret
incorporates a housing from which first and second winding spindles extend; the turret
being rotatable between a first position where the first spindle is in a winding position
and the second spindle is in an unloading position; and a second position where the
first spindle is in an unloading position and the second spindle is in a winding position.
A supporting member is provided for holding the spindle or spindles, which are in
an unloading position. The supporting member may be removed laterally to reveal one
or more spindles in a cantilevered configuration. Rewound packages or bales located
on the spindles in the unloading position may then be removed.
[0004] The problem, which the invention addresses, may be defined as how to improve support
for the spindles in a turret web winder.
Disclosure of Invention
[0005] In a first broad independent aspect, the invention provides a web winder comprising
a frame; at least one turret rotatably mounted in said frame; said turret incorporating
a housing from which first and second winding spindles extend; said turret being rotatable
between a first position where said first spindle is in a winding position and said
second spindle is in an unloading position; and a second position where said first
spindle is in an unloading position and said second spindle is in a winding position;
characterised in that said web winder further comprises:
- a supporting arm which extends between said winding spindles and which is sufficiently
spaced from said housing to allow webs to be wound onto said spindle; said supporting
arm incorporating a first clamp for attaching to a first spindle and a second clamp
for attaching to a second spindle; and
- means for releasing and closing said clamps dependent upon the rotation of said turret.
[0006] This configuration is particularly advantageous because it allows the spindles to
be supported during the operation of interchanging the spindle in the winding position
with the spindle in the unloading position. It also minimises spindle distortions
due to the risk of bending the spindles. It also allows for the spindles to be of
greater length than would otherwise be possible which would increase the capacity
of the winder.
[0007] In a subsidiary aspect in accordance with the invention's first broad independent
aspect, said means for releasing and closing incorporates a cam, which is operatively
connected to said clamps. This allows the releasing and closing operation to occur
dependent upon the rotation of the turret. It avoids the requirement, which may have
otherwise been mandatory for separate driving of the releasing and closing of the
clamps.
[0008] In a further subsidiary aspect, said clamps are bearing clamps. This allows the clamps
to fulfil a dual function of supporting the spindles and clamping in a sufficiently
loose fashion to accommodate rotation of the spindle relative to the clamp.
[0009] In a further subsidiary aspect, said cam is located co-axially with said turret housing
when said clamps are attached to both winding spindles and said turret is rotated
to interchange said spindles between winding and unloading positions. This configuration
allows the clamp releasing and closing means to operate in conjunction with the rotation
of the turret housing.
[0010] In a further subsidiary aspect, said supporting arm incorporates a mounting plate
on which said clamps are mounted; and said clamps incorporate a first portion which
is fixedly attached to said plate and a second portion which is displaceable relative
to said first portion and which abuts against said first portion when said second
portion bears load. This configuration is particularly advantageous because it allows
the fixed first portion to bear vertical loading instead of the components, which
secure the second portion to the mounting plate.
[0011] In a further subsidiary aspect, the web winder further comprises means for retracting
and returning said supporting arm from and to the spindle in the unloading position
when, in use, the supporting arm is attached to the spindle in a winding position
and released from the spindle in the unloading position; whereby the spindle in the
unloading position is supported at its proximal extremity and is sufficiently free
at its distal extremity to be unloaded.
[0012] In a further subsidiary aspect, said supporting arm is rotatably mounted on bearings
and at least one of said bearings is a one-way clutch. This configuration is particularly
advantageous because it prevents slight reverse rotation of the system due to varying
package weights.
[0013] In a further subsidiary aspect, the web winder comprises two turrets and corresponding
supporting arms; and said means for retracting and returning said supporting arm incorporates
linkage means for synchronizing the operation of retracting and returning said supporting
arms. This configuration is particularly advantageous because it allows the retraction
and the returning driving mechanism to be common to both turrets.
[0014] In a second broad independent aspect, the invention provides a method of operating
a turret web winder according to any of the preceding aspects, comprising the steps
of:
- winding a web on a first spindle;
- unloading bales from a second spindle from the extremity of said spindle located oppositely
to said turret housing;
- supporting said winding spindles by said supporting arm; and
- automatically releasing and closing said clamps dependent upon the rotation of said
turret.
[0015] This method is particularly advantageous because it allows the spindles to be supported
during the interchanging operation between winding position and unloading position.
It also allows bending to be minimised. It also allows the length of the spindles
to be extended for a given operational requirement.
[0016] In a subsidiary aspect in accordance with the invention's second broad independent
aspect, the method further comprises the step of retracting said supporting arm whilst
being attached to the spindle in the winding position and released from the spindle
in the unloading position. This allows the load to be removed laterally without any
impediment.
[0017] In a further subsidiary aspect, the method further comprises the step of returning
said supporting arm following unloading the spindle in the unloading position. This
allows the supporting arm to support the spindle during its rotation back to the winding
position.
[0018] In a further subsidiary aspect, the method further comprises the step of rotating
said turret for interchanging said spindles between the unloading position and the
winding position whilst the clamps are closed onto both spindles. This configuration
is particularly advantageous because it allows the spindles to be supported during
their rotation between their winding position and their unloading position.
[0019] In a further subsidiary aspect, the method further comprises the step of opening
the clamp as the spindle approaches the unloading position. This allows the clamp
to open in time for its removal for the unloading operation to take place.
[0020] In a further subsidiary aspect, the method further comprises the step of closing
the clamp as the spindle departs from the unloading position towards the winding position.
This maximises the period of attachment during the interchanging of positions.
Brief Description of Figures in the Drawings
[0021]
Figure 1 shows a perspective view of a turret winder;
Figure 2 shows a perspective view of the supporting arm side of the turret winder
of figure 1;
Figures 3 and 4 show side elevations from the supporting arm side of the turret winder;
figure 3 shows the supporting arms in engagement with both spindles whilst figure
4 shows the supporting arms in a retracted position from the spindle in the unloading
position;
Figure 5 shows a perspective view of a supporting arm and its clamping assembly;
Figure 6 shows the supporting arm of figure 5 in an alternative perspective view;
Figure 7 shows a supporting arm in a sectional view through line A-A of figure 8;
Figure 8 shows a side elevation of the supporting arm and its main support bearing
housing;
Figures 9 and 10 show alternative side elevations of the supporting arm;
Figure 11 shows a perspective view with a part cross-sectional portion of the main
support bearing housing and a portion of the supporting arm.
Best Mode for Carrying Out the Invention
[0022] Figure 1 shows a web winder, which may be a turret slitter re-winder. Winder 1 incorporates
a frame, which may be formed of several vertical panels such as panels 2 and 3. The
frame supports a large number of apparatus such as slitters, idle shafts and vacuuming
apparatus. None of these is shown for simplicity and clarity of description for the
specific improvements to the turrets. Turrets 4 and 5 are shown straddling between
panels 2 and 3. Each turret incorporates a turret housing 6, which is rotatable about
its central axis. Spindles 7 and 8 extend between the panels. Spindle 7 is in its
winding position whilst spindle 8 is in its unloading position. The turret housing
is rotatable anticlockwise in order to cause the spindles to interchange positions.
This allows the winding operation to occur whilst the unloading operation is taking
place. A supporting arm arrangement 9 is shown in a mode of operation where the winding
spindle 7 is secured to bearing means and spindle 8 is located in a cantilevered position
for unloading packages or bales.
[0023] The supporting arm arrangement 9 incorporates a mounting plate 10 extending between
spindles 7 and 8 when its clamps 11 and 12 are attached to their respective spindles.
[0024] As shown in figure 5, mounting plate 10 incorporates a cut out portion 13 of sufficient
size to accommodate the diameter of a spindle. Portion 14 which is located immediately
beneath cut out portion 13 incorporates an upper bowed surface 15 corresponding in
diameter to the spindle diameter. Located inwardly from the mounting plate, a first
portion 16 of the clamp 11 is shown. Portion 16 incorporates a bowed upper surface
17 which also corresponds to the diameter of the spindle. The portion is immobilized
relative to the lower portion of the mounting plate through appropriate fasteners
18 and 19. Portion 20 of clamp 11 is substantially C-shaped with a pivot point 21
located at its lower extremity in the unloading position of clamp 11 in figure 5.
The underside 22 of portion 16 corresponds in shape to the inside surface 23 of the
C-shaped portion 20. When the clamp is in its closed position as shown for clamp 12,
the surfaces 22 and 23 are in a mating relationship so that any vertical load exerted
on the C-shaped portion would be carried by the other portion of the clamp in order
to avoid the load being carried by pin 24 at a central location along the mounting
plate 10. A number of attachment points such as attachment point 25 are provided to
secure a shaft 26 by using a number of appropriate fasteners such as fastener 50.
As can be seen in figure 3, the axis of the mounting plate when the supporting arm
extends between the spindles, is in line with the axis of rotation of the turret housing.
Shaft 26 as shown in figure 6 extends through the main support bearing housing 27.
At a location adjacent to the mounting plate, a cam-plate 28 is secured and immobilized
relative to the support bearing housing 27. Housing 27 incorporates at a first extremity
a support bearing such as a roller bearing 29 and at its opposite extremity a one-way
clutch and a support bearing 30. The combined support bearing and one-way clutch mechanism
provides the support which is necessary for shaft 26 as well as preventing slight
reverse rotation of the system due to varying package weights.
[0025] Figure 5 shows the clamps in the horizontal position when the slitter is rewinding.
The spindles and their supporting rotating centres are not shown for clarity. Clamp
12 corresponds to the configuration of the clamp when in the winding position. A tension
spring 31 extends between C-shaped clamp portion 20 and link 32. Plate 33 and its
oblong slot 34 protrude from the rear portion of C-shaped clamp portion 20. Plate
33 is secured through fasteners such as fastener 35 (see figure 9) onto the C-shaped
clamp portion. As shown in either figure 5 or figure 9, tension spring 31 is extended
for the configuration shown of clamp 12. Pin 36 fits into oblong slot 34. The configuration
of clamp 12 in figures 5 and 9 enforces an over-centre condition which locks clamp
12 in position. Link 32 is connected through shaft 38 to link 37. Shaft 38 is supported
by a bearing set into mounting plate 10.
[0026] The over-centre distance of link 32 is controlled by the abutment of link 37 against
the stop-pin 39, which is fixed to mounting plate 10 (see figure 10). Link 37 also
has a hardened pin 40 which is pressed in and which acts as a cam follower.
[0027] The path of cam-pin 40 is illustrated in figure 7. As the mounting plate is caused
to rotate in the anticlockwise direction in conjunction with the turret, the cam-follower
40 follows an arc section 41 of the path. During this phase, clamp 12 remains in its
closed position. As it nears the position where the spindle would be unloaded, cam-follower
40 abuts against opening cam 42, which causes link 32 to pivot and be held in the
position shown for clamp 11. The tension spring draws the C-shaped portion 20 against
link 32.
[0028] Once the clamp is opened as shown for clamp 11, the supporting arm is free to detach
from the spindle in the unloading position.
[0029] The support bearing housing 27 is fixed to a supporting arm 43 (see figure 2), which
pivots about the same axis as the spindle in its winding position. Arm 43 is rotatable
about spindle 7 and allows the mounting plate 10 to be retracted from spindle 8 for
unloading. Arm 43 incorporates two wings 44 and 45 located on either side of the winding
spindle. A ram 46 is secured at one extremity 47 to frame 3 and at its opposite extremity
to wing 45 so that when the ram is extended wing 45 is drawn upwards causing wing
44 to be lowered and retracted out of the unloading area. A linkage member 48 extends
between wing 45 and a corresponding wing of another turret so that when the arm 43
is displaced a corresponding motion is achieved in the corresponding turret.
[0030] As the mounting plate 10 is rotated with the turret, cam-follower 40 engages closing
cam 49 immediately after the rotation of the mounting plate is initiated when returning
the unloaded spindle from the unloading position to the winding position.
[0031] Opening and closing cam 42 and 49 are configured as plates with individually adjustable
mechanisms to allow the refinement of the operation.
[0032] When the cam-follower 40 meets the opening cam 49 pin 36 is forced along the slot
(clockwise when viewing figure 9). This removes the over-centre lock and rotates the
clamp portion 20 away from its secured position.
[0033] The continuation of rotation of the mounting plate 10 by another 180 degrees after
ejection immediately causes cam-follower 40 to abut the closing cam 49 and re-lock
the clamp portion 20 onto the bearing of the spindle it is supporting.
[0034] The operation of the re-winder may be summarised in overview as follows: The lifting
arm 43 pivots about the same centre axis of the rewind spindle 7 in the winding position.
A mounting plate 10 pivots on the lifting arm 43, and has the same axis of rotation
as the main turret housing 6 on the opposite side of the re-winder. The mounting plate
10 has two bearing clamps 11 and 12, one at each end. A bearing on the end of the
rewind spindle, in the winding position, is clamped by the bearing clamp 12, and secured
by a mechanical linkage 32. The spindles rotate with the turret by 180 degrees anticlockwise.
This also rotates the mounting plate 10 because both spindles are clamped by their
respective bearing clamps 11 and 12. When the spindle approaches the unload position,
a cam assembly automatically opens the bearing clamp 11. At the winding position,
bearing clamp 12 remains closed. Since the bearing clamp 11 is released, the lifting
arm is now free to rotate 90 degrees in a downward direction together with the mounting
plate 10 because they both pivot about the same centre axis which corresponds to the
axis of the spindle at the winding position. This action allows enough clearance for
rewound packages to be removed from the spindle 8 in the unload position. After the
rewound packages have been removed, the lifting arm 43 rotates 90 degrees in an upward
direction and engages with the bearing on the end of the spindle 8. The main turret
housing 6 now rotates the spindles 180 degrees anticlockwise and at the start of this
rotation, the cam assembly automatically closes the bearing clamp 11 using the mechanical
linkage 32.
[0035] This assembly is fitted to both the upper and lower main turret. They are mechanically
linked together with a connecting rod or linkage member 48. The rotation of the arm
43 is achieved by using a hydraulic cylinder or ram 46 with its associated control
valves.
1. A web winder (1) comprising a frame (2, 3); at least one turret (4, 5) rotatably mounted
in said frame; said turret (4, 5) incorporating a housing (6) from which first (7)
and second (8) winding spindles extend; said turret being rotatable between a first
position where said first spindle (7) is in a winding position and said second spindle
(8) is in an unloading position; and a second position where said first spindle (7)
is in an unloading position and said second spindle (8) is in a winding position;
characterised in that said web winder further comprises:
• a supporting arm (9) which extends between said winding spindles (7, 8) and which
is sufficiently spaced from said housing (6) to allow webs to be wound onto said spindle;
said supporting arm (9) incorporating a first clamp (12) for attaching to the first
spindle (7) and a second clamp (11) for attaching to the second spindle (8); and
• means for releasing and closing said clamps (11, 12) dependent upon the rotation
of said turret.
2. A web winder according to claim 1, wherein said means for releasing and closing incorporates
a cam (28) which is operatively connected to said clamps (11, 12).
3. A web winder according to claim 2, wherein said clamps (11, 12) are bearing clamps.
4. A web winder according to any of the preceding claims, wherein said cam (28) is located
co-axially with said turret housing (6) when said clamps (11, 12) are attached to
both winding spindles (7, 8) and said turret (4, 5) is rotated to interchange said
spindles (7, 8) between winding and unloading positions.
5. A web winder according to any of the preceding claims, wherein said supporting arm
(9) incorporates a mounting plate (10) on which said clamps (11, 12) are mounted;
and said clamps (11, 12) incorporate a first portion (16) which is fixedly attached
to said plate (10) and a second portion (20) which is displaceable relative to said
first portion and which abuts against said first portion (16) when said second portion
bears load.
6. A web winder according to claim 5, further comprising means for retracting and
returning said supporting arm (9) from and to the spindle (7, 8) in the unloading
position when, in use, the supporting arm (9) is attached to the spindle (7, 8) in
a winding position and released from the spindle (7, 8) in the unloading position;
whereby the spindle (7, 8) in the unloading position is supported at its proximal
extremity and is sufficiently free at its distal extremity to be unloaded.
7. A web winder according to any of the preceding claims, wherein said supporting arm
(9) is rotatably mounted on bearings (29, 30) and at least one of said bearings (29,
30) is a one-way clutch.
8. A web winder according to any of claims 6 and 7, comprising two turrets (4, 5) and
corresponding supporting arms (9); and said means for retracting and returning said
supporting arm (9) incorporates linkage means (48) for synchronizing the operations
of retracting and returning said supporting arms (9).
9. A method of operating a turret web winder according to any of the preceding claims,
comprising the steps of:
• winding a web on a first spindle (7);
• unloading bales from a second spindle (8) from the extremity of said spindle located
oppositely to said turret housing (6);
• supporting said winding spindles (7, 8) by said supporting arm (9); and
• automatically releasing and closing said clamps (11, 12) dependent upon the rotation
of said turret (4, 5).
10. A method according to claim 9, further comprising the step of retracting said supporting
arm (9) whilst being attached to the spindle in the winding position and released
from the spindle in the unloading position.
11. A method according to either of the preceding claims, further comprising the step
of returning said supporting arm (9) following unloading the spindle (7, 8) in the
unloading position.
12. A method according to any of claims 9 to 10, further comprising the step of rotating
said turret (4, 5) for interchanging said spindles (7, 8) between the unloading position
and the winding position whilst the clamps (11, 12) are closed onto both spindles
(7, 8).
13. A method according to any of claims 9 to 12, further comprising the step of opening
the clamp (11, 12) as the spindle approaches the unloading position.
14. A method according to any of claims 9 to 13, further comprising the step of closing
the clamp (11, 12) as the spindle departs from the unloading position towards the
winding position.
1. Bahnwickelmaschine (1), umfassend einen Rahmen (2, 3); mindestens einen in dem Rahmen
drehbar montierten Revolverkopf (4, 5); wobei der Revolverkopf (4, 5) ein Gehäuse
(6) aufweist, von dem aus sich erste (7) und zweite (8) Wickeldorne erstrecken; wobei
der Revolverkopf drehbar ist zwischen einer ersten Position, in welcher der erste
Dorn (7) sich in einer Wickelposition und der zweite Dorn (8) sich in einer Entladeposition
befindet, und einer zweiten Position, in welcher der erste Dorn (7) sich in einer
Entladeposition befindet und der zweite Dorn (8) sich in einer Wickelposition befindet;
dadurch gekennzeichnet, dass die Bahnwickelmaschine des Weiteren umfasst:
• einen Stützarm (9), der sich zwischen den Wickeldornen (7, 8) erstreckt und der
einen ausreichenden Abstand zu dem Gehäuse (6) aufweist, um das Wickeln von Bahnen
auf den Dorn zu ermöglichen; wobei der Stützarm (9) eine erste Klemme (12) zur Befestigung
an dem ersten Dorn (7) und eine zweite Klemme (11) zur Befestigung an dem zweiten
Dorn (9) aufweist; und
• Mittel zum Lösen und Schließen der Klemmen (11, 12) in Abhängigkeit von der Drehung
des Revolverkopfs.
2. Bahnwickelmaschine gemäß Anspruch 1, wobei die Mittel zum Lösen und Schließen einen
Nocken (28) aufweisen, der operativ mit den Klemmen (11, 12) verbunden ist.
3. Bandwickelmaschine gemäß Anspruch 2, wobei die Klemmen (11, 12) Lagerklemmen sind.
4. Bandwickelmaschine gemäß einem der vorherigen Ansprüche, wobei der Nocken (28) koaxial
zu dem Revolverkopfgehäuse (6) angeordnet ist, wenn die Klemmen (11, 12) an beiden
Wickeldornen (7, 8) befestigt sind und der Revolverkopf (4, 5) gedreht wird, um die
Dorne (7, 8) zwischen den Wickel- und Entladepositionen auszutauschen.
5. Bandwickelmaschine gemäß einem der vorherigen Ansprüche, wobei der Stützarm (9) eine
Befestigungsplatte (10) aufweist, auf der die Klemmen (11, 12) montiert sind; und
die Klemmen (11, 12) einen ersten Abschnitt (16) aufweisen, der fest an der Platte
(10) befestigt ist, sowie einen zweiten Abschnitt (20), der im Verhältnis zu dem ersten
Abschnitt verschiebbar ist und der gegen den ersten Abschnitt (16) stößt, wenn der
zweite Abschnitt unter Belastung steht.
6. Bandwickelmaschine gemäß Anspruch 5, des Weiteren umfassend Mittel zum Einziehen und
Zurückfahren des Stützarms (9) von bzw. zu dem Dorn (7, 8) in der Entladeposition,
wenn, während des Einsatzes, der Stützarm (9) in einer Wickelposition an dem Dorn
(7, 8) befestigt ist und in der Entladeposition von dem Dorn (7, 8) gelöst ist; wodurch
der Dorn (7, 8) in der Entladeposition an seinem äußersten proximalen Ende gestützt
wird und an seinem äußersten distalen Ende ausreichend Freiheit besitzt, um entladen
zu werden.
7. Bandwickelmaschine gemäß einem der vorherigen Ansprüche, wobei der Stützarm (9) drehbar
auf Lagern (29, 30) befestigt ist und mindestens eines der Lager (29, 30) eine Einweg-Kupplung
ist.
8. Bandwickelmaschine gemäß einem der Ansprüche 6 und 7, umfassend zwei Revolverköpfe
(4, 5) und entsprechende Stützarme (9); und wobei die Mittel zum Einziehen und Zurückfahren
des Stützarms (9) des Weiteren Verbindungsmittel (48) zur Synchronisierung der Operationen
zum Einziehen und Rückfahren der Stützarme (9) aufweisen.
9. Verfahren zum Betreiben einer Revolverkopf-Bahnwickelmaschine gemäß einem der vorherigen
Ansprüche, umfassend die folgenden Schritte:
• Wickeln einer Bahn auf einen ersten Dorn (7);
• Entladen von Ballen von einem zweiten Dorn (8) von dem äußersten Ende des Dorns,
das sich gegenüberliegend zu dem Revolverkopf-Gehäuse (6) befindet;
• Stützen der Wickeldorne (7, 8) durch den Stützarm (9); und
• automatisches Lösen und Schließen der Klemmen (11, 12) in Abhängigkeit von der Drehung
des Revolverkopfs (4, 5).
10. Verfahren gemäß Anspruch 9, des Weiteren umfassend den Schritt des Einziehens des
Stützarms (9), während er in der Wickelposition an dem Dorn befestigt ist und in der
Entladeposition von dem Dorn gelöst ist.
11. Verfahren gemäß einem der beiden vorherigen Ansprüche, des Weiteren umfassend den
Schritt des Zurückfahrens des Stützarms (9) im Anschluss an das Entladen des Dorns
(7, 8) in der Entladeposition.
12. Verfahren gemäß einem der Ansprüche 9 bis 10, des Weiteren umfassend den Schritt des
Drehens des Revolverkopfes (4, 5) zum Austauschen der Dorne (7, 8) zwischen der Entladeposition
und der Wickelposition, während die Klemmen (11, 12) auf beiden Dornen (7, 8) geschlossen
sind).
13. Verfahren gemäß einem der Ansprüche 9 bis 12, des Weiteren umfassend den Schritt des
Öffnens der Klemme (11, 12), wenn sich der Dorn der Entladeposition nähert.
14. Verfahren gemäß einem der Ansprüche 9 bis 13, des Weiteren umfassend den Schritt des
Schließens der Klemme (11, 12), wenn sich der Dorn aus der Entladeposition entfernt
und der Wickelposition nähert.
1. Une enrouleuse de tissu (1) comportant une structure (2, 3) ; au moins une tourelle
(4, 5) montée de façon à pouvoir entrer en rotation dans ladite structure ; ladite
tourelle (4, 5) incorporant un logement (6) à partir duquel une première (7) et une
deuxième (8) broche à renvider s'étendent ; ladite tourelle pouvant entrer en rotation
entre une première position où ladite première broche (7) est dans une position de
renvidage et ladite deuxième broche (8) est dans une position de dévidage ; et une
deuxième position où ladite première broche (7) est dans une position de dévidage
et ladite deuxième broche (8) est dans une position de renvidage ;
caractérisée en ce que ladite enrouleuse de tissu comporte de plus :
• un bras de soutien (9) qui s'étend entre lesdites broches de renvidage (7, 8) et
qui est suffisamment espacé dudit logement (6) pour permettre à des tissus d'être
enroulés sur ladite broche ; ledit bras de soutien (9) incorporant une première attache
(12) destinée à s'attacher à la première broche (7) et une deuxième attache (11) destinée
à s'attacher à la deuxième broche (8) ; et
• un moyen destiné à libérer et à fermer lesdites attaches (11, 12) en fonction de
la rotation de ladite tourelle.
2. Une enrouleuse de tissu selon la revendication 1, dans laquelle ledit moyen destiné
à libérer et à fermer incorpore une came (28) qui est connectée de façon opérante
auxdites attaches (11, 12).
3. Une enrouleuse de tissu selon la revendication 2, dans laquelle lesdites attaches
(11, 12) sont des attaches de palier.
4. Une enrouleuse de tissu selon n'importe lesquelles des revendications précédentes,
dans laquelle ladite came (28) est située de façon coaxiale avec ledit logement de
tourelle (6) quand lesdites attaches (11, 12) sont attachées aux deux broches de renvidage
(7, 8) et ladite tourelle (4, 5) est mise en rotation pour intervertir lesdites broches
(7, 8) entre les positions de renvidage et de dévidage.
5. Une enrouleuse de tissu selon n'importe lesquelles des revendications précédentes,
dans laquelle ledit bras de soutien (9) incorpore une plaque de montage (10) sur laquelle
lesdites attaches (11, 12) sont montées ; et lesdites attaches (11, 12) incorporent
une première portion (16) qui est attachée de façon fixe à ladite plaque (10) et une
deuxième portion (20) qui peut être déplacée relativement à ladite première portion
et qui bute contre ladite première portion (16) quand ladite deuxième portion supporte
une charge.
6. Une enrouleuse de tissu selon la revendication 5, comportant de plus un moyen destiné
à rétracter et à retourner ledit bras de soutien (9) de et vers la broche (7, 8) dans
la position de dévidage quand, lors de l'utilisation, le bras de soutien (9) est attaché
à la broche (7, 8) dans une position de renvidage et libéré de la broche (7, 8) dans
la position de dévidage ; grâce à quoi la broche (7, 8) dans la position de dévidage
est soutenue au niveau de son extrémité proximale et est suffisamment libre au niveau
de son extrémité distale pour être dévidée.
7. Une enrouleuse de tissu selon n'importe lesquelles des revendications précédentes,
dans laquelle ledit bras de soutien (9) est monté de façon à pouvoir entrer en rotation
sur des paliers (29, 30) et au moins un desdits paliers (29, 30) est une roue libre.
8. Une enrouleuse de tissu selon n'importe lesquelles des revendications 6 et 7, comportant
deux tourelles (4, 5) et des bras de soutien correspondants (9) ; et ledit moyen destiné
à rétracter et à retourner ledit bras de soutien (9) incorpore un moyen de liaison
(48) destiné à synchroniser les opérations de rétractation et de retour desdits bras
de soutien.
9. Un procédé d'exploitation d'enrouleuse de tissu à tourelle selon n'importe lesquelles
des revendications précédentes, comportant les étapes de :
• enrouler un tissu sur une première broche (7) ;
• dévider des balles d'une deuxième broche (8) à partir de l'extrémité de ladite broche
située à l'opposé dudit logement de tourelle (6) ;
• soutenir lesdites broches de renvidage (7, 8) à l'aide du bras de soutien (9) ;
et
• automatiquement libérer et fermer lesdites attaches (11, 12) en fonction de la rotation
de ladite tourelle (4, 5).
10. Un procédé selon la revendication 9, comportant de plus l'étape de rétracter ledit
bras de soutien (9) tandis qu'il est attaché à la broche dans la position de renvidage
et libéré de la broche dans la position de dévidage.
11. Un procédé selon n'importe lesquelles des revendications précédentes, comportant de
plus l'étape de retourner ledit bras de soutien (9) suite au dévidage de la broche
(7, 8) dans la position de dévidage.
12. Un procédé selon n'importe lesquelles des revendications 9 à 10, comportant de plus
l'étape de mettre en rotation ladite tourelle (4, 5) pour intervertir lesdites broches
(7, 8) entre la position de dévidage et la position de renvidage tandis que les attaches
(11, 12) sont fermées sur les deux broches (7, 8).
13. Un procédé selon n'importe lesquelles des revendications 9 à 12, comportant de plus
l'étape d'ouvrir l'attache (11, 12) à mesure que la broche approche de la position
de dévidage.
14. Un procédé selon n'importe lesquelles des revendications 9 à 13, comportant de plus
l'étape de fermer l'attache (11, 12) à mesure que la broche quitte la position de
dévidage en direction de la position de renvidage.
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description