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EP 2 350 364 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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09.04.2014 Bulletin 2014/15 |
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Date of filing: 11.09.2009 |
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International Patent Classification (IPC):
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International application number: |
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PCT/EP2009/006610 |
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International publication number: |
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WO 2010/031523 (25.03.2010 Gazette 2010/12) |
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DEVICE FOR HOLDING A SHAFT END AND WEAVING MACHINE
HALTER FÜR SCHAFTENDE SOWIE WEBMASCHINE
DISPOSITIF POUR MAINTENIR UNE EXTRÉMITÉ D'ARBRE ET MÉTIER À TISSER
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Designated Contracting States: |
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AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO
PL PT RO SE SI SK SM TR |
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Priority: |
19.09.2008 BE 200800523
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Date of publication of application: |
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03.08.2011 Bulletin 2011/31 |
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Proprietor: Picanol |
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8900 Ieper (BE) |
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Inventors: |
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- BLANCKAERT, Lucien
B-8980 Geluveld (BE)
- MEYNS, Ignace
B-8647 Reninge (BE)
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Representative: Patentanwälte
Ruff, Wilhelm, Beier, Dauster & Partner |
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Kronenstrasse 30 70174 Stuttgart 70174 Stuttgart (DE) |
| (56) |
References cited: :
EP-A- 0 001 112 EP-A- 0 387 189 DE-B- 1 098 457 JP-U- 4 037 293 US-A- 1 718 719 US-A- 2 426 498
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EP-A- 0 360 753 EP-A- 0 414 291 GB-A- 965 960 US-A- 1 694 474 US-A- 1 814 780 US-A- 2 514 152
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Remarks: |
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The file contains technical information submitted after the application was filed
and not included in this specification |
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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).
|
[0001] The invention relates to a device for holding a shaft end, wherein the device comprises
a first bearing element and a bearing element movable relative thereto that can move
between a holding position in which the shaft end is held and a release position in
which the shaft end is free. The shaft end can be part of a warp beam or a cloth beam
for a weaving machine.
[0002] Such a device is for example known from
EP 414 291 A1 and serves to hold a shaft end of a warp beam or a cloth beam in a weaving machine
so that it may be installed in the weaving machine or removed from the weaving machine
without great difficulty. A disadvantage of such a device is that it comprises a relatively
bulky and expensive mechanism for the movable clamping element.
[0003] JP 4-37293 U shows a device for holding a shaft end that comprises a stationary bearing element
and a movable bearing element, wherein the movable bearing element is attached to
a pivotably mounted arm and movable between a holding position and a release position.
The arm with the movable bearing element is forced in the holding position by means
of a spring element and movable against the force of the spring element using a lever.
[0004] US 2,514,152 relates to a releasable bearing for a weaving machine comprising two lower rollers
with stationary pivot axes and upper rollers mounted on movable arms actuated by locking
cams. The rollers are all adapted to be moved into engagement with annular gudgeon
grooves provided at a warp beam roll and/or a cloth beam roll.
[0005] An object of the invention is to form a simply constructed device of the above-mentioned
type that is reliable and easy to operate.
[0006] This object is achieved by a device for holding a shaft end, which is part of a cloth
beam or a warp beam for a textile machine, with the features of Claim 1. Preferred
embodiments are defined in the dependent claims.
[0007] To achieve this object the device according to the invention comprises a pivotably
mounted lever, a first stationary arranged bearing element and a movable bearing element
attached to a pivotably mounted arm having a running surface that cooperates with
the running surface of the lever to bring the arm in the holding position, wherein
the running surface of the arm cooperates with the running surface of the lever to
hold the arm in the holding position, and wherein the running surfaces of the arm
and the lever are embodied in such a way that forces acting in radial direction on
the shaft end cannot cause the movably mounted bearing element, together with the
pivotably mounted arm, to be moved out of the holding position.
[0008] The device can be easily operated by means of the lever that can interact with the
arm. The profiled or cam-shaped running surfaces of the arm and the lever are embodied
in such a way that forces acting in radial direction on the shaft end cannot cause
the movably mounted bearing element, together with the pivotably mounted arm, to be
moved out of the holding position. Only when the lever is moved out of its holding
position the arm with the movably mounted bearing element can also leave the holding
position. Through the interaction between the running surface of the arm and the running
surface of the lever, the arm can be brought into and held in the holding position.
[0009] According to one embodiment, the running surface of the arm and the running surface
of the lever that cooperates with the running surface of the arm are arranged in such
a way that when the lever is moved out of the holding position, the force between
the lever and the arm first increases and with further movement decreases again. This
means that the arm and the lever can hereby form an over-center mechanism while they
are in the holding position. This is advantageous for holding the pivotably mounted
bearing element in the holding position. Both the lever and the arm can hereby deform
elastically during the movement from and to the holding position. As a result, an
over-center mechanism is formed with the running surfaces of the arm and of the lever
that allows the arm to be held in the holding position.
[0010] According to one embodiment, the distance between a pivot of the lever and a contact
point, in which the running surface of the arm contacts the running surface of the
lever in order to reach the holding position is larger than a tangential distance
between the pivot and the running surface of the arm, so that the running surface
of the arm and the running surface of the lever cooperate to form an over-center mechanism.
[0011] According to one embodiment, the arm and the lever are connected by a spring. This
allows among other things the arm to follow the lever when commanded by the lever
even when the running surfaces of the arm and the lever are not interacting with one
another. The spring also allows to hold the arm in the holding position and allows
to force the arm and the lever towards one another. The spring can hereby be installed
between the lever and the arm in such a way that when the lever is moved out of the
holding position, the force of the spring between the lever and the arm first increases
and with further movement decreases again. This allows the arm and the lever to be
pulled towards one another in the holding position, and allows that the arm and the
lever may be in a so-called over-center position in the holding position by the spring.
An over-center mechanism that allows the arm to be held in the holding position is
thus formed with the spring.
[0012] According to one embodiment, the spring is installed between an element attached
to the arm and an element attached to the lever, wherein a line through the axis of
the element attached to the arm and the axis of the element attached to the lever
moves past a line through the axis of the element attached to the arm and the axis
of the held shaft end in order to reach the holding position.
[0013] According to one embodiment, a stop on the lever and a stop on the arm may make contact
with one another in the holding position. This allows the relative positions of the
arm and the lever in the holding position to be determined without the need for further
elements.
[0014] According to one embodiment, the device comprises a frame to which the arm and the
lever are attached by means of a corresponding pivot with the pivot for the arm and
the pivot for the lever being installed parallel to the held shaft end. This is advantageous
for holding the shaft end in the device.
[0015] The invention also relates to a weaving machine that comprises a device according
to the invention.
[0016] Further characteristics and advantages of the invention are presented in the following
description of the embodiments shown in the drawings.
Figure 1 shows a perspective view of a device according to the invention for a weaving
machine in the holding position.
Figure 2 shows a side view along arrow F2 in figure 1 of the device in figure 1 with
a shaft end held in the holding position.
Figure 3 shows a side view along arrow F3 in figure 1 of the device in figure 1 with
a shaft end held in the holding position.
Figure 4 shows the side view of figure 3 in a position between the holding position
and the release position.
Figure 5 shows the side view of figure 3 in the release position.
[0017] Figures 1 to 5 show a device 1 according to the invention comprising a frame 2 to
which a bearing 3, also referred to as a bearing device, is attached. This frame 2
can be attached to or form part of a side section of a weaving machine. Close to the
bearing 3 a support surface 4 is arranged to guide a shaft end 5 to be held to the
bearing 3. The shaft end 5 hereby forms the part to be held in the bearing and can
be a part of a warp beam, a cloth beam or an element for a weaving machine or for
a textile machine. The bearing 3 of the device 1 for holding the shaft end 5 comprises
a first stationary arranged bearing element 6 and a second movably arranged bearing
element 7 that is moveable relative to the stationary installed bearing element 6.
The bearing element 7 is hereby moveable between a holding position in which the shaft
end 5 is held in the bearing 3, and a release position in which the shaft end 5 is
free in the area of the bearing 3, this means it is not held in the bearing 3.
[0018] The bearing element 6 is installed in the frame 2 in the area of the angle between
the horizontally arranged part 8 and the vertically arranged part 9 of the frame 2.
The bearing element 6 can be glued, clamped, welded or fastened by another known means
to the frame 2. In the embodiment shown, the bearing element 6 is essentially formed
by a cylinder segment that connects with the support surface 4 substantially tangentially.
This may allow the shaft end 5 to be mounted in the bearing element 6 or to be removed
from the bearing element 6. The support surface 4 can consist of a plastic element,
can be fastened by means of screw connections to the part 8 of the frame 2 and extends
substantially parallel to the part 8.
[0019] The movable bearing element 7 is attached to a pivotably mounted arm 10. The arm
10 is attached to the part 9 of the frame 2 by means of a pivot 11. The pivot 11 for
the arm 10 is installed parallel to the shaft end 5 to be held. On the side facing
towards the movably arranged bearing element 7, the arm 10 has a running surface 12
with a profiled or cam-shaped form. The bearing element 7 may be attached to the arm
10 by means of bolt connections 13. The bolt connections 13 comprise for example a
bolt that extends with certain play through a bore in the arm 10 and a bore in the
bearing element 7, whereby the bolt cooperates with a nut to attach the arm 10 to
the bearing element 7. The pivot 11 can be formed by a bolt 14 that extends with limited
play through a bore in the arm 10 and can be screwed into a part 9 of the frame 2.
[0020] The device 1 also comprises a pivotably mounted lever 15, also referred to as holding
arm. The lever 15 is connected via a pivot 16 to a collar 17 of the part 9 of the
frame 2. The pivot 16 for the lever 15 is arranged parallel to the shaft end 5 to
be held. The pivot 16 is hereby also installed parallel to the pivot 11 for the arm
10.
[0021] The lever 15 is provided with a running surface 18 with a profiled or cam-shaped
form. The running surface 12 of the arm 10 and the running surface 18 of the lever
15 cooperate with one another and allow the arm 10 to be brought into and held in
the holding position by means of the lever 15. The pivot 16 can be formed by a bolt
19 that extends with a limited play through a bore in the lever 15 and can be screwed
into the part 9 of the frame 2.
[0022] The device 1 also comprises a spring 20 that may connect the arm 10 and the lever
15. The spring 20 can force the arm 10 and the lever 15 towards one another. The spring
20 may be embodied by a spring system or spring element and consists of a tension
spring in the embodiment shown. The spring 20 is hereby installed between an element
21, for example a bolt, attached to the arm 10 and an element 22, for example a bolt,
attached to the lever 15. The lever 15 has a stop 23 that may interact with a stop
24 on the arm 10. The stop 23 and the stop 24 are intended to contact one another
in the holding position. The relative positions of the bearing element 6 and the bearing
element 7 in the holding position may be regulated by making use of the play in the
bolt connections 13 with which the bearing element 7 is attached with respect to the
arm 10. With a relative positioning of the stops 23 and 24, the force with which the
shaft end 5 is held or clamped in the bearing 3 may be set by adjusting the relative
positions of the bearing element 7 and the arm 10. The stops 23, 24 also allow the
shaft end 5 to be held in the bearing 3 in such a way that the shaft end 5 may be
locked with a certain play and, for example, can still turn in the bearing 3.
[0023] The lever 15 comprises a lever arm 25 that in the holding position can extend substantially
parallel to the support surface 4. The lever arm 25 enables an operator to move the
lever 15 and the arm 10 from holding position to release position and from release
position to holding position. For this purpose, the arm 10 and the lever 15 can be
elastically deformable and/or mounted in an elastically deformable manner. In the
embodiment shown, the surface of the stop 23 is positioned substantially perpendicularly
on the lower surface of the lever arm 25.
[0024] The running surface 12 of the arm 10 and the running surface 18 of the lever 15 that
cooperates with the running surface 12 of the arm 10 are arranged in such a way that
when the lever 15 is moved from the holding position as shown in figure 2, the force
between the lever 15 and the arm 10 first increases and with further movement decreases
again. This is achieved in that the running surface 12 and the running surface 18
are hereby able to form an over-center mechanism, more particularly in that the distance
along line 26 in figure 2 between the pivot 16 and the contact point 27 where the
running surface 12 makes contact with the running surface 18 is larger than the tangential
distance along line 28 between the pivot 16 and the running surface 12.
[0025] The spring 20 is hereby preferably arranged between the lever 15 and the arm 10 in
such a way that when the lever 15 is moved out of the holding position, the force
of the spring 20 between the lever 15 and the arm 10 first increases and with further
movement decreases again. This is achieved in that in figure 3 the line 29 through
the axis of the element 21 and the axis of the element 22, which determines the position
of the spring 20, moves past the line 30 through the axis of the element 21 and the
axis of the held shaft end 5 in order to reach the holding position as shown in figure
3, and in this way an over-center mechanism is formed.
[0026] During the movement from the release position shown in figure 5 via the position
shown in figure 4 to the holding position shown in figure 3, the running surface 12
makes contact with the running surface 18, as a result of which the arm 12 is moved
to the holding position by the lever 15. During the movement of the lever 15 from
the holding position via the position in figure 4 to the release position, the arm
12 is moved together with the lever 15 by means of the spring 20.
[0027] It is obvious that for holding a warp beam or a cloth beam on a weaving machine,
two devices 1 according to the invention are preferably provided, each of which can
hold a shaft end 5 of the warp beam or the cloth beam. According to a variant not
shown, the lever arm 25 may form an angle with the support surface 4 to allow to guide
a shaft end 5 between the lever arm 25 and the support surface 4 towards the bearing
3.
[0028] The arm 10 and the lever 15 may be formed, for example, by a profiled plate. The
edges of such a profiled plate may hereby form a running surface 12 or 18 according
to the invention. Such a plate can be manufactured, for example, by laser cutting.
The manufacture of the arm 10 and the lever 15 as a plate permits a simple construction,
and in particular allows a running surface to be made in a simple manner.
[0029] The device according to the invention also offers the advantage that no tools are
required to open or to close the device 1. Furthermore, the device 1 mainly comprises
an easily manufacturable pivotably mounted arm 10 for a bearing element 7, an easily
manufacturable pivotably mounted lever 15 and a spring 20.
[0030] The device according to the invention may be applied in different types of machines,
such as textile machines, in particular in any type of weaving machine or similar
textile machine comprising a part designed to be held at the shaft ends such as a
warp beam or a cloth beam. This may be either an airjet weaving machine, a rapier
weaving machine, a water jet weaving machine, a projectile weaving machine, some other
type of weaving machine, a beaming machine, a knitting machine or some other type
of textile machine.
[0031] The device according to the invention is not limited, however, to the embodiments
described as examples and shown in the figures. Within the extent of protection of
the claims the device can also be performed in other variant embodiments, forms and
dimensions. Combinations of the embodiments shown are also possible that fall within
the extent of protection of the.claims.
1. A device for holding a shaft end (5) which is part of a cloth beam or a warp beam
for a textile machine, comprising a pivotably mounted lever (15), a first stationary
arranged bearing element (6) and a movable bearing element (7) movable relative thereto
that is movable between a holding position in which the shaft end (5) is held and
a release position in which the shaft end (5) is free, wherein the movable bearing
element (7) is attached to a pivotably mounted arm (10) that has a running surface
(12) that cooperates with a running surface (18) of the lever (15) to bring the arm
(10) in the holding position, wherein the running surface (12) of the arm (10) cooperates
with the running surface (18) of the lever (15) to hold the arm (10) in the holding
position, characterized in that the running surfaces (12, 18) of the arm (10) and the lever (15) are embodied in
such a way that forces acting in radial direction on the shaft end (5) cannot cause
the movable bearing element (7), together with the pivotably mounted arm (10), to
be moved out of the holding position.
2. The device as claimed in claim 1, characterized in that the running surface (12) of the arm (10) and the running surface (18) of the lever
(15) that cooperates with the running surface (12) of the arm (10) are arranged in
such a way that when the lever (15) is moved out of the holding position, the force
between the lever (15) and the arm (10) first increases and with further movement
decreases again.
3. The device as claimed in claim 2, characterized in that the distance between a pivot (16) of the lever (15) and a contact point (27), in
which the running surface (12) of the arm (10) contacts the running surface (18) of
the lever (15) in order to reach the holding position is larger than a tangential
distance between the pivot (16) of the lever (15) and the running surface (12) of
the arm (10), so that the running surface (12) of the arm (10) and the running surface
(18) of the lever (15) cooperate to form an over-center mechanism.
4. The device as claimed in claim 1, 2 or 3, characterized in that the arm (10) and the lever (15) are connected by a spring (20).
5. The device as claimed in claim 4, characterized in that the spring (20) is arranged between the lever (15) and the arm (10) in such a way
that when the lever (15) is moved out of the holding position, the force of the spring
(20) between the lever (15) and the arm (10) first increases and with further movement
decreases again.
6. The device as claimed in claim 5, characterized in that the spring (20) is arranged between an element (21) attached to the arm (10) and
an element (22) attached to the lever (15), wherein a line (29) through the axis of
the element (21) attached to the arm (10) and the axis of the element (22) attached
to the lever (15) moves past a line (30) through the axis of the element (21) attached
to the arm (10) and the axis of the held shaft end (5) in order to reach the holding
position.
7. The device as claimed in one of the claims 1 to 6, characterized in that a stop (23) on the lever (15) and a stop (24) on the arm (10) make contact with one
another in the holding position.
8. The device as claimed in one of the claims 1 to 7, characterized in that the device (1) comprises a frame (2) to which the arm (10) is attached by means of
a pivot (11) with the pivot (11) for the arm (10) being arranged parallel to the held
shaft end (5).
9. The device as claimed in one of the claims 1 to 8, characterized in that the device (1) comprises a frame (2) to which the lever (15) is attached by means
of a pivot (16) with the pivot (16) for the lever (15) being arranged parallel to
the held shaft end (5).
10. A weaving machine, characterized in that the weaving machine comprises a device (1) according to one of the claims 1 to 9.
1. Eine Vorrichtung zum Halten eines Wellenendes (5), das Teil eines Warenbaums oder
eines Kettbaums für eine Textilmaschine ist, umfassend einen schwenkbar montierten
Hebel (15), ein erstes stationär angeordnetes Lagerelement (6) und ein relativ dazu
bewegliches bewegliches Lagerelement (7), das zwischen einer Halteposition, in der
das Wellenende (5) gehalten wird, und einer Freigabeposition, in der das Wellenende
(5) frei ist, beweglich ist, wobei das bewegliche Lagerelement (7) auf einem schwenkbar
montierten Arm (10) befestigt ist, der eine Lauffläche (12) aufweist, die mit einer
Lauffläche (18) des Hebels (15) zusammenwirkt, um den Arm (10) in die Halteposition
zu bringen, wobei die Lauffläche (12) des Armes (10) mit der Lauffläche (18) des Hebels
(15) zusammenwirkt, um den Arm (10) in der Halteposition zu halten, dadurch gekennzeichnet, dass die Laufflächen (12, 18) des Arms (10) und des Hebels (15) derart ausgebildet sind,
dass Kräfte, die in radialer Richtung auf das Wellenende (5) wirken, nicht bewirken
können, dass das bewegliche Lagerelement (7) zusammen mit dem schwenkbar montierten
Arm (10) aus der Halteposition bewegt wird.
2. Die Vorrichtung nach Anspruch 1, dadurch gekennzeichnet, dass die Lauffläche (12) des Arms (10) und die Lauffläche (18) des Hebels (15), die mit
der Lauffläche (12) des Arms (10) zusammenwirkt, derart angeordnet sind, dass, wenn
der Hebel (15) aus der Halteposition bewegt wird, die Kraft zwischen dem Hebel (15)
und dem Arm (10) zunächst ansteigt und bei weiterer Bewegung wieder abnimmt.
3. Die Vorrichtung nach Anspruch 2, dadurch gekennzeichnet, dass der Abstand zwischen einem Zapfen (16) des Hebels (15) und einem Kontaktpunkt (27),
in dem die Lauffläche (12) des Arms (10) mit der Lauffläche (18) des Hebels (15) in
Berührung kommt, um die Halteposition zu erreichen, grösser ist als ein tangentialer
Abstand zwischen dem Zapfen (16) des Hebels (15) und der Lauffläche (12) des Arms
(10), so dass die Lauffläche (12) des Arms (10) und die Lauffläche (18) des Hebels
(15) zusammenwirken, um einen Sprungwerk-Mechanismus zu bilden.
4. Die Vorrichtung nach Anspruch 1, 2 oder 3, dadurch gekennzeichnet, dass der Arm (10) und der Hebel (15) durch eine Feder (20) verbunden sind.
5. Die Vorrichtung nach Anspruch 4, dadurch gekennzeichnet, dass die Feder (20) zwischen dem Hebel (15) und dem Arm (10) derart angeordnet ist, dass,
wenn der Hebel (15) aus der Halteposition bewegt wird, die Kraft der Feder (20) zwischen
dem Hebel (15) und des Arms (10) zunächst ansteigt und bei weiterer Bewegung wieder
abnimmt.
6. Die Vorrichtung nach Anspruch 5, dadurch gekennzeichnet, dass die Feder (20) zwischen einem auf dem Arm (10) befestigten Element (21) und einem
auf dem Hebel (15) befestigten Element (22) angeordnet ist, wobei eine Linie (29)
durch die Achse des auf dem Arm (10) befestigten Elements (21) und die Achse des auf
dem Hebel (15) befestigten Elements (22) über eine Linie (30) durch die Achse des
auf dem Arm (10) befestigen Elements (21) und die Achse des gehaltenen Wellenendes
(5) bewegt wird, um die Halteposition zu erreichen.
7. Die Vorrichtung nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass ein Anschlag (23) auf dem Hebel (15) und ein Anschlag (24) auf dem Arm (10) in der
Halteposition miteinander in Berührung kommen.
8. Die Vorrichtung nach einem der Ansprüche 1 bis 7, dadurch gekennzeichnet, dass die Vorrichtung (1) einen Rahmen (2) enthält, an dem der Arm (10) mittels eines Zapfens
(11) befestigt ist, wobei der Zapfen (11) für den Arm (10) parallel zu dem gehaltenen
Wellenende (5) angeordnet ist.
9. Die Vorrichtung nach einem der Ansprüche 1 bis 8, dadurch gekennzeichnet, dass die Vorrichtung (1) einen Rahmen (2) enthält, an dem der Hebel (15) mittels eines
Zapfens (16) befestigt ist, wobei der Zapfen (16) für den Hebel (15) parallel zu dem
gehaltenen Wellenende (5) angeordnet ist.
10. Eine Webmaschine, dadurch gekennzeichnet, dass die Webmaschine eine Vorrichtung (1) nach einem der Ansprüche 1 bis 9 enthält.
1. Un dispositif pour maintenir une extrémité d'arbre (5) qui est partie d'un rouleau-tissu
ou une ensouple pour une machine textile, comprenant un levier (15) monté pivotante,
un premier élément de support (6) disposé fixe et un élément de support (7) mobile
mobile par rapport à celui-ci qui est mobile entre une position de maintien dans laquelle
l'extrémité d'arbre (5) est maintenue et une position de libération dans laquelle
l'extrémité d'arbre (5) est libre, dans lequel l'élément de support (7) mobile est
fixé sur un bras (10) monté pivotante qui a une surface de roulement (12) qui coopère
avec une surface de roulement (18) du levier (15) pour amener le bras (10) dans la
position de maintien, dans lequel la surface de roulement (12) du bras (10) coopère
avec la surface de roulement (18) du levier (15) pour maintenir le bras (10) dans
la position de maintien, caractérisé en ce que les surfaces de roulement (12, 18) du bras (10) et du levier (15) sont réalisées
de telle sorte que les forces agissant dans la direction radiale sur l'extrémité d'arbre
(5) ne peuvent pas provoquer l'élément de support (7) mobile, conjointement avec le
bras (10) monté pivotante, pour être déplacé hors de la position de maintien.
2. Le dispositif selon la revendication 1, caractérisé en ce que la surface de roulement (12) du bras (10) et la surface de roulement (18) du levier
(15) qui coopère avec la surface de roulement (12) du bras (10) sont disposés de telle
manière que lorsque le levier (15) est déplacé hors de la position de maintien, la
force entre le levier (15) et le bras (10) augmente d'abord et diminue de nouveau
à déplacement supplémentaire.
3. Le dispositif selon la revendication 2, caractérisé en ce que la distance entre un pivot (16) du levier (15) et un point de contact (27), dans
lequel la surface de roulement (12) du bras (10) entre en contact avec la surface
de roulement (18) du levier (15) afin d'atteindre la position de maintien est plus
grande que la distance tangentielle entre le pivot (16) du levier (15) et la surface
de roulement (12) du bras (10), de sorte que la surface de roulement (12) du bras
(10) et la surface de roulement (18) du levier (15) coopèrent pour former un mécanisme
à arc-boutement.
4. Le dispositif selon la revendication 1, 2 ou 3, caractérisé en ce que le bras (10) et le levier (15) sont connectés par un ressort (20).
5. Le dispositif selon la revendication 4, caractérisé en ce que le ressort (20) est disposé entre le levier (15) et le bras (10) de telle sorte que
lorsque le levier (15) est déplacé hors de la position de maintien, la force du ressort
(20) entre le levier (15) et le bras (10) augmente d'abord et diminue de nouveau à
déplacement supplémentaire.
6. Le dispositif selon la revendication 5, caractérisé en ce que le ressort (20) est disposé entre un élément (21) fixé au bras (10) et un élément
(22) fixé au levier (15), dans lequel une ligne (29) à travers l'axe de l'élément
(21) fixé sur le bras (10) et l'axe de l'élément (22) fixé au levier (15) se déplace
au-delà d'une ligne (30) à travers l'axe de l'élément (21) fixé au bras (10) et l'axe
de l'extrémité d'arbre (5) maintenue afin d'atteindre la position de maintien.
7. Le dispositif selon l'une quelconque des revendications 1 à 6, caractérisé en ce qu'une butée (23) sur le levier (15) et une butée (24) sur le bras (10) entrent en contact
avec l'autre dans la position de maintien.
8. Le dispositif selon l'une quelconque des revendications 1 à 7, caractérisé en ce que le dispositif (1) comprend un châssis (2) sur lequel le bras (10) est fixé au moyen
d'un pivot (11) avec le pivot (11) pour le bras (10) étant disposé parallèlement à
l'extrémité d'arbre (5) maintenue.
9. Le dispositif selon l'une quelconque des revendications 1 à 8, caractérisé en ce que le dispositif (1) comprend un châssis (2) sur lequel le levier (15) est fixé au moyen
d'un pivot (16) avec le pivot (16) pour le levier (15) étant disposé parallèlement
à l'extrémité d'arbre (5) maintenue.
10. Une machine à tisser, caractérisée en ce que la machine à tisser comprend un dispositif (1) selon l'une quelconque des revendications
1 à 9.
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