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EP 0 107 798 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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13.07.1988 Bulletin 1988/28 |
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Date of filing: 28.09.1983 |
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International Patent Classification (IPC)4: D03D 49/20 |
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System to obtain a reciprocal differentiated pressure in the contact between two cylinders
in looms
System zum Erhalten einer reziproken Variation im Kontaktdruck zwischen zwei Rollen
einer Webmaschine
Système pour obtenir une variation réciproque dans la pression de contact entre deux
rouleaux dans un métier à tisser
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Designated Contracting States: |
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AT BE CH DE FR GB LI LU NL SE |
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Priority: |
01.10.1982 IT 2357382
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Date of publication of application: |
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09.05.1984 Bulletin 1984/19 |
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Proprietor: VILMINORE OFFICINE MECCANICHE S.P.A. |
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I-24020 Vilminore di Scalve
Bergamo (IT) |
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Inventor: |
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- Pezzoli, Luigi
I-24026 Leffe Bergamo (IT)
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Representative: Vatti, Paolo, Dr. Ing. et al |
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Fumero-Studio Consulenza Brevetti
Franz-Joseph-Strasse 38 80801 München 80801 München (DE) |
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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] This invention concerns a system to improve the contact pressure between two rollers
- particularly the cloth-pulling roller and the cloth-pressing bar of a loom - allowing
to obtain a proper pressure of mutual contact along the whole length of said rollers.
[0002] It is known that the productiveness of modern weaving machines depends not only on
the speed, but also on the width of the weaving: there is hence a trend to increase
the length of weaving machines.
[0003] This obviously involves structural problems connected with the loads which the machines
and their parts have to bear.
[0004] A particular problemn is that of warp yarn tension and of the fabric adhering onto
the cloth-pulling roller, this being an essential condition to obtain the "right feel"
in the fabric and prevent even serious weaving defects (mainly determined by a change
in the number of wefts per centimeter).
[0005] In fact, to obtain an increased weaving width, a longer weaving loom is required,
whereby the loom structure becomes more flexible. During working, this may reduce
- even up to eliminating it - the grip of the fabric onto the cloth-pulling roller
which, in the central part of the loom, tends to move apart from the cloth-pressing
bar apt to guarantee said grip. Furthermore, the increased length of the cloth-pulling
roller and of the cloth-pressing bar is apt to limit the action, in the central part
of the loom, of any lateral pressure members: this means that, at the centre of the
loom, the grip of the fabric onto the roller is merely obtained thanks to the weight
of the cloth-pressing bar, which is often insufficient.
[0006] Some attempts to overcome these drawbacks have been made in the past, but with scarce
success. In particular, according to the German Patent No. 2.335.638, it has been
provided to interpose an endless belt between the cloth-pulling roller and the cloth-pressinig
bar, in order to obtain a constant regular grip of the fabric onto the roller.
[0007] The present invention now proposes to fully solve this problem by providing a system
which allows to obtain a proper pressure of mutual contact - between the cloth-pulling
roller and the cloth-pressing bar - along the whole length of the loom, whereby the
fabric perfectly adheres onto the roller around which it winds while being produced,
even at the centre of the loom or in correspondence of any critical parts thereof.
[0008] For this purpose, the invention provides a system to improve the mutual contact between
two rollers, characterized in that one of said rollers, particularly the cloth-pressing
bar, is formed of a tube rotating about its own axis, and of an inner structure in
said tube, which elastically presses against the inner surface thereof with a force
directed to the line of contact between the rollers, the force exerted by said inner
structure on the inner surface of the tube varying along the length of the roller.
[0009] The system according to the invention can be realized in a wide variety of embodiments,
some of which are illustrated, by mere way of nonlimiting example, in the accompanying
drawings, in which:
Fig. 1 is a longitudinal view of a unit comprising a cloth-pulling roller and a cloth-pressing
bar according to a first embodiment of the system of the present invention;
Figs. 2 and 3 are side views showing the assembly of the elements forming the cloth-pressing
bar of the unit of fig. 1;
Fig. 4 shows a variant of the system according to the invention illustrated in figs.
1 to 3;
Fig. 5 is a longitudinal view of another embodiment of the system according to the
invention, of which:
Fig. 6 shows a variant;
Fig. 7 is a longitudinal view of a still further embodiment of the system according
to the invention;
Fig. 8 is a side view showing the assembly of the cloth-pressing bar of the embodiment
of fig. 7;
Fig. 9 is a longitudinal view of a cloth-pulling roller and cloth-pressing bar unit,
according to a fluid pressure operated embodiment of the system according to the invention;
and
Figs. 10 and 11 are side views showing some details of the system of fig. 9, fig.
11 being on an enlarged scale.
[0010] With reference to figures 1 to 3, the system according to the invention comprises
a cloth-pulling roller 1, of conventional characteristics, to which there is associated
a cloth-pressing bar 2 formed: of an external tube 3, provided with a suitable covering
and mounted rotatable on two end supports 4, of a metal bar 5, which is elastically
deformed in respect of its originally bent configuration and is arranged inside the
tube 3, fixedly mounted therein by means of two pressing end supports 6, and of a
bush 7, interposed at the centre of the unit between the bar 5 and the tube 3, so
as to impart a pressure on this latter, while allowing the rotation thereof.
[0011] The two supports 4 for the tube 3 each comprise a shell 8, having an end pivoted
in 9 and housing into a suitable seat at its centre one end of the tube 3, the other
end of said shell 8 being subject to the action of a locking setscrew 10, by way of
a spring 11. The supports 6 each comprise a metal lever 12, having an end pivoted
in 13 and housing at the centre one end of the bar 5, the rotation of which is prevented
by suitable means 12A, the other end of said lever 12 being subject to the action
of a locking setscrew 14.
[0012] Originally, the bar 5 has a deeply curved configuration, in respect of which it is
elastically deformed by being bent until it can be inserted - substantially rectilinear
- into the tube 3. Herein it is kept bent thanks to the supports 6, thereby imparting
a strong elastic action of pressure onto the tube 3, through the bush 7; this guarantees
a highly efficient and continuous contact between the tube 3 and the cloth-pulling
roller 1, in the central part of said roller and of the loom (this part usually being
the critical area where the structure and geometrical confrigura- tion of the cloth-pressing
bar are likely to vary).
[0013] Since the critical area of contact between the two rollers 1 and 2 may obviously
vary according to the structural characteristics of the loom, to its way of working,
to the work being performed, and so on - thereby differing from the area subjected
to the pressure of the bush 7 - it is understood that said bush 7 may have a varying
length, or may even be replaced by two or more bushes, according to requirements.
[0014] The embodiment of the system according to the invention, shown in figure 4, illustrates
the use of two bushes 15 and 16, suitably spaced and interposed between the bar 5
and the tube 3 of the cloth-pressing bar 2, in the central part of the loom.
[0015] In the embodiment of figure 5, the cloth-pressing bar 2 again comprises an external
rotating tube 3 cooperating with the cloth-pulling roller 1; however, the unit comprising
the bar 5 and the bush 7 (solution of figure 1) has been replaced by a barrel-shaped
bar 17, elastically bent and kept so deformed by the supports 6, whereby its generatrix
contacting the tube 3 results substantially rectilinear. The bar 17 produces the same
effect as the aforespecified unit, thereby ensuring a proper and continuous contact
between the cloth-pressing bar 2 and the cloth-pulling roller 1.
[0016] It can be easily understood that, in the embodiment of figure 5, the function of
the supports 4 for the tube 3 is not essential, as the position of said tube can be
guaranteed by the assembly of the bar 17. Figure 6 therefore illustrates a variant
of the embodiment of figure 5, wherein said supports have actually been eliminated.
[0017] The embodiment shown in figures 7 and 8 is somewhat different from the previous embodiment
of the system according to the invention. In this case, the cloth-pressing bar 2 is
obtained by associating to a tube 3 - rotating on end supports, as in the case of
figure 1 - a rectilinear bar 18 having, throughout its length, a projecting profile
19 which is suitably shaped in correspondence of the areas whereon a supplementary
pressure is required. Said bar 18 is mounted with its ends 20, external to the tube
3, rotating on supports 21, and it is subjected to torsion by screws 22 acting on
levers 23 which are keyed on said bar close to its ends (see figure 8); the screws
22 screw into proper seats fixed on the loom casing, as shown in 24.
[0018] The action of the projecting profile 19 of the bar 18 against the inner wall of the
tube 3 guarantees a proper continuous contact between the cloth-pressing bar 2 and
the cloth-pulling roller 1.
[0019] According to a still further embodiment of the system according to the invention
- illustrated in figures 9 to 11 - the structure of the cloth-pressing bar 2 comprises
a tube 29, rotating within fixed end supports 30, and a fixed tube 31 mounted inside
said tube 29. Two pluralities of elements 32 radially project from the fixed tube
31 (figures 9 and 10), said elements being mounted as pistons (see enlarged detail
of figure 11) along a generatrix of said tube 31 and being apt to press against the
inner wall of the tube 29. The elements 32 are distributed according to a law determined
by the contact pressure required between the rollers 1 and 2 along the different parts
of the loom; as clearly shown in figure 9, said distribution is uneven, since a greater
number of said elements is provided in correspondence of the central part of the loom.
Fluid under pressure is sent into the properly sealed fixed tube 31, to drive the
elements 32 partially out of their seats in the wall of said tube and push them against
the rotating tube 29, as indicated by the arrow 33 in figure 11. Though not shown,
this embodiment will evidently provide for sealing means, for the fluid under pressure,
between the elements 32 and the seats in the wall of the fixed tube 31, wherein said
elements are mounted slidable.
[0020] This produces an effect of elastic deformation along the area of the cloth-pressing
bar 2 contacting the cloth-pulling roller 1, which allows to suitably adjust the pressure
of mutual contact between said rollers, according to the object of the present invention.
1. System to improve the mutual contact between two rollers in a weaving loom, characterized
in that one of said rollers, particularly the cloth-pressing bar (2), is formed of
a tube (3, 29) rotating about its own axis, and of an inner structure (5,17,18, 31)
in said tube (3, 29), which elastically presses against the inner surface thereof
with a force directed to the line of contact between the rollers, the force exerted
by said inner structure on the inner surface of the tube varying along the length
of the roller.
2. System as in claim 1, wherein said inner structure comprises an elastically deformed
metal bar (5) and at least one bush (7) mounted thereon and pressing against the inner
wall of said tube (3).
3. System as in claim 1, wherein said inner structure comprises a barrel-shaped bar
(17), having a geometrical configuration which varies along its axis.
4. System as in claim 1, wherein said inner structure comprises a rectilinear metal
bar (18), rotating on end supports (21) and having, throughout its length, a suitably
shaped projecting profile (19) apt to press against the inner wall of the tube (3),
means (22, 23) being provided to adjust the angular position of the bar (18) in respect
of said tube (3).
5. System as in claim 1, wherein said inner structure comprises a tube (31) and at
least one plurality of pressure elements (32) radially projecting therefrom and operated
by fluid pressure means.
6. System as in claims 1 to 5, wherein said cloth-pressing bar (2) comprises: a tube
(29) rotating on fixed end supports (30); a fixed tube (31) mounted inside said tube
(29); at least one plurality of pressure elements (32), mounted as pistons along a
generatrix of said fixed tube (31) and radially projecting therefrom, said elements
(32) being apt to press against the inner wall of the rotating tube (29); and means
sending fluid under pressure into said fixed inner tube (31), to cause said elements
(32) to press against said tube (29).
7. System as in claim 7, comprising two pluralities of pressure elements (32), mounted
along two generating lines of said fixed tube (31).
1. System zur Verbesserung des gegenseitigen Kontakts zwischen zwei Walzen einer Webmaschine,
dadurch gekennzeichnet, daß die eine der Walzen, insbesondere der Warenbaum (2), in
Form eines um seine eigene Achse rotierenden Rohres (3, 29) mit einem Innenaufbau
(5, 17, 18, 31) ausgebildet ist, der elastisch gegen die Innenfläche des Rohres mit
einer Kraft drückt, die auf die Kontaktlinie zwischen den Walzen gerichtet ist, wobei
die von dem Innenaufbau auf die Innenfläche des Rohres ausgeübte Kraft entlang der
Länge der Walze variiert.
2. System nach Anspruch 1, wobei der Innenaufbau eine elastisch deformierbare Metallstange
(5) und wenigstens eine auf dieser montierten und gegen die Innenfläche des Rohres
(3) drükkende Buchse (7) aufweist.
3. System nach Anspruch 1, wobei der Innenaufbau eine tonnenförmige Stange (17) aufweist,
deren geometrische Ausbildung entlang der Achse variiert.
4. System nach Anspruch 1, wobei der Innenaufbau eine geradlinige Metallstange (18)
aufweist, die in Endlagern (21) dreht und über ihre Länge ein geeignet geformtes vorstehendes
Profil (19) aufweist, das zum Drücken gegen die Innenwand des Rohres (3) ausgebildet
ist, und Mitteln (22, 23), die vorgesehen sind, um die Winkelposition der Stange (13)
in bezug auf das Rohr (3) einzustellen.
5. System nach Anspruch 1, wobei der Innenaufbau ein Rohr (31) und wenigstens eine
Mehrzahl von Druckelementen (32) aufweist, die sich radial von diesem weg erstrecken
und durch Fluiddruckmittel betrieben werden.
6. System nach Anspruch 1 bis 6, wobei der Warenbaum aufweist: ein in festen Endlagern
(30) rotierendes Rohr (29), ein festes Rohr (31), das auf der Innenseite des Rohres
(29) montiert ist; wenigstens eine Mehrzahl von Druckelementen (32), die als Kolben
entlang einer Erzeugenden des festen Rohres (31) sich von dieser radial weg erstreckend
montiert sind, wobei die Elemente
(32) zum Drücken gegen die Innenfläche des rotierenden Rohres (29) eingerichtet sind;
und Mitteln zum Ausbringen eines Druckfluids in das feste innere Rohr (31), um ein
Drücken der Elemente (32) gegen das Rohr (29) zu verursachen.
7. System nach Anspruch 6, mit zwei Gruppen von Druckelementen (32), die entlang der
beiden Erzeugenden des festen Rohres (31) montiert sind.
1. Système pour améliorer le contact mutuel entre deux rouleaux dans un métier à tisser,
caractérisé en ce que l'un des rouleaux, en particulier le barreau (2) servant à presser
le vêtement, est formé d'un tube (3, 29), monté à rotation autour de son axe, et d'une
structure interne (5, 17, 18, 31) logée dans le tube (3, 29), et qui sollicite élastiquement
par pression la surface interne de ce tube, avec une force dirigée vers la ligne de
contact entre les rouleaux, la force exercée par la structure interne sur la surface
interne du tube variant sur la longueur du rouleau.
2. Système selon la revendication 1, dans lequel la structure interne comprend un
barreau métallique déformé élastiquement (5) et au moins un manchon (7) monté sur
celui-ci et qui sollicite par pression la paroi interne du tube (3).
3. Système selon la revendication 1, dans lequel la structure interne comprend un
barreau (17) conformé en canon, qui possède une configuration géométrique qui varie
le long de son axe.
4. Système selon la revendication 1, dans lequel la structure interne comprend un
barreau métallique rectiligne (18) monté à rotation sur des supports d'extrémité (21)
et possédant, sur sa longueur, un profil (19) en saillie conformé de façon appropriée
pour solliciter par pression la paroi interne du tube (3), des moyens (22, 23) étant
prévus pour ajuster la position angulaire du barreau (18) par rapport au tube (3).
5. Système selon la revendication 1, dans lequel la structure interne comprend un
tube (31) et au moins une pluralité d'éléments presseurs (32) en saillie radialement
à partir de celui-ci et actionné par des moyens à pression de fluide.
6. Système selon les revendications 1 à 5, dans lequel le barreau (2) exercant une
pression sur le vêtement comprend: un tube (29) monté à rotation sur des supports
d'extrémité fixes (30), un tube fixe (31) monté à l'intérieur du tube (29), au moins
une pluralité d'éléments presseurs (32) montés à la façon de pistons le long d'une
génératrice du tube fixe (31) et en saillie radialement à partir de celui-ci, les
éléments (32) étant adaptés pour solliciter par pression la paroi interne du tube
rotatif (29) et des moyens dirigeant un fluide sous pression à l'intérieur du tube
interne fixe (31), pour conduire les éléments (32) à solliciter par pression le tube
(29).
7. Système selon la revendication 6, comprenant deux séries d'éléments presseurs (32)
montés le long de deux génératrices du tube fixe (31