[0001] The present invention concerns a weft presenting device for looms.
[0002] As known, in looms of the type with grippers one or more weft yarns are inserted,
by a pair of grippers with reciprocating motion cooperating at the centre of the shed,
into the ordered and parallel sequence of warp yarns forming the shed.
[0003] The weft yarn insertions, and the exchanges of position of the warp yarns obtained
through the weave devices, suitably follow one another and lead to the forming of
the desired fabric. The need thus arises to insert into the warp shed a certain sequence
of weft yarns which, according to the fabric being produced, may differ in colour,
type and count.
[0004] For this purpose, in gripper looms, the use of "presenting devices" has now become
common and widespread: they consist of devices performing the function to select the
weft yarns to be inserted, and present them to the carrying grippers which provide
for their insertion. Such devices substantially comprise one or more rods provided,
at their working end, with an eyelet through which is let a respective weft yarn:
the movement of the rods involves shifting the eyelets and thus the position of the
corresponding weft yarns sliding therethrough. The weft yarns are thereby alternately
shifted from a position of rest, away from the trajectory of the gripper, into a "presenting"
position in which they can be caught by the carrying gripper and carried towards and
into the warp shed.
[0005] In the past, wide use has been made of mechanical presenting devices, which could
ideally be split up in two parts: a moving unit, apt to perform a reciprocating straightaway
motion thanks to appropriate kinematic mechanisms and/or suitable cams coupled with
the working motion of the loom, and a selecting unit apt to select the specific rod,
out of the weft yarn carrying rods, which has to be shifted by the moving unit. Such
mechanical presenting devices involve however different drawbacks:
- The motion law to present each weft yarn is a fixed law; to change said law it is
necessary to replace some mechanical elements or carry out some manual adjustments;
consequently, each time one needs to change the type of article being woven, it is
necessary to substantially operate on the mechanics of the device;
- The fixed coupling between loom and presenting device sets limits in their mutual
positioning - in that it requires a specific kinematic chain involving special planning
requirements - and prevents the presenting device from working independently from
the loom, forcing to adopt complicated procedures, in order to move the weave machine
independently from the presenting device, when the loom is in slow running conditions
and while resetting the steady state.
- Finally, the mechanical selection units are rather noisy and bulky, such as to hamper
the weaver's work on the loom and the insertion of the weft yarns into the eyelets
of the weft carrying rods.
[0006] To overcome these drawbacks or at least part thereof, in the last years presenting
devices have been conceived, in which the movement of the rods can be made independent
from the working motion of the loom, in that a fixed mechanical coupling no longer
exists between them.
[0007] The EP-A1-598.264, in the name of PICANOL N.V., discloses a presenting device wherein
the single rods are independently controlled by electric motors, through cam mechanisms.
[0008] This solution, however, also involves a number of drawbacks.
[0009] The electric motors do not perform continuous, but alternate rotations, in one direction
and in the other, between a position corresponding to the top dead center and a position
corresponding to the bottom dead center of the respective rod. Hence, the adjustment
of such motors requires a complicated electronic control system.
[0010] Furthermore, the head of the rod, namely its end connected to the cam mechanism,
follows a curved trajectory involving the surrounding area: it is thus necessary to
provide for a sufficient lateral spacing between one rod and the next, in order to
prevent a mutual interference thereof. For this purpose the EP-A1-598.264 provides
for the single rods, with the respective drive mechanisms, to be mounted on corresponding
support plates, so as to form modules positioned one next to the other without any
interferences: it is evident that such a multiple presenting device covers on the
whole a considerable space sidewise, which - as already stated - is highly undesirable.
[0011] Finally, the trajectory of the rod eyelet end is not rectilinear, but is also curved.
This, besides determining bounds in the mutual arrangement of the rods, forces to
adopt oscillating guide bushes, which may cause seizures and jammings and which anyhow
represent a delicate and costly component.
[0012] EP 0 362 089 discloses an articulated drive mechanism in which two drive rods are
connected each other and with an eccentric pin of a motor by using spatial bearings;
the presenting rod driven by said mechanism is constrained against lateral forces
by two sliding bushes.
[0013] The EP-B1-461.524, in the name of the present Applicant, discloses a presenting device
wherein the rods are singly controlled by electric linear motors. The overall dimensions
of a multiple presenting device, constructed according to the teachings of said patent,
can be limited (especially in one of the two embodiments described therein) because
the rods follow completely rectilinear trajectories, with no mutual interference,
and the electric linear motors cover a rather limited specific space. Nevertheless,
the use of electric linear motors does not always prove satisfactory, both in terms
of. costs and due to difficulties of adjustment and of control.
[0014] The object of the present invention is to thus supply a weft presenting device apt
to fully overcome the aforecited drawbacks, and particularly a device allowing to
singly control each weft yarn presenting rod, both in synchronism with the working
motion of the loom and independently therefrom, while simultaneously providing an
easy control of the device, a simple and economic structure and, at the same time,
a modularity and compactedness which allow to obtain a multiple presenting device
involving minimum overall dimensions and competitive costs.
[0015] Said objects are reached with a device to select and present weft yarns to a carrying
gripper in looms - of the type comprising a set of rods having an eyelet to let the
weft yarns through, rod guiding elements and a rotary driving motor for each rod -
in which exact straight-line guide mechanisms are interposed between the driving motors
and said rods.
[0016] Further characteristics and advantages of the presenting device according to the
invention will anyhow be more evident from the following detailed description of a
preferred embodiment thereof, given by way of example and illustrated on the accompanying
drawings, in which:
Fig. 1 is a diagrammatic side elevation showing an example of gripper loom on which
is mounted the presenting device according to the invention;
Fig. 2A is a partial front elevation of the presenting device according to the invention;
Fig. 2B is a longitudinal section view along the line I-I of fig. 2A;
Fig. 3 is a diagrammatic front elevation showing how a loom gripper interacts with
the presenting device of the invention shown in its whole;
Figs. 4A, 4B and 4C are, respectively, a longitudinal part section view, a side elevation
and a front elevation of a preferred embodiment of the exact straight-line guide mechanism
according to the invention; and
Fig. 5 is a front elevation, with partially removed portions, showing the two end-of-stroke
positions (a) and (b) of a rod forming part of the presenting device according to
the invention.
[0017] As shown in fig. 1, the weft presenting device is positioned in correspondence of
the loom side of weft yarn insertion. It comprises a set of weft carrying rods 1 provided,
at their working end 1a (figs. 2A and 2B) with an eyelet 2 to let the weft yarn through,
said rods 1 being guided into guide bushes 3. As illustrated in fig. 3, the shifting
of a rod 1 leads the corresponding weft yarn T, sliding through the respective eyelet
2, to interfere with the trajectory followed by the loom carrying gripper N, so as
to allow this latter to clamp said weft yarn and insert it into the warp shed.
[0018] As shown in fig. 2B, each rod 1 of the presenting device is connected, through its
head 1b, to an outlet member 10 of a driving mechanism 11 controlled by a respective
electric motor M. The motor M is preferably an electric step-by-step motor.
[0019] According to the invention, the driving mechanism 11 reproduces an exact straight-line
guide. Though there are different possibilities to conceive an exact straight-line
guide, the mechanism 11 of the present invention is preferably that illustrated in
figs. 4 and 5.
[0020] As shown in detail in fig. 4A, a housing C - on which the electric step-by-step motor
M is mounted - contains the elements forming the exact straight-line guide. A rotor
12, rotatably mounted on a bearing 13, is fixed to the outlet shaft 14 of the electric
motor M. A planetary gear 15 is rotatably mounted on the rotor 12 by way of a support
spindle 15a positioned parallel, but eccentric, in respect of the rotation axis of
the shaft 14. The gear 15 has an external toothing 16 meshing with an internal gear
17 applied into or formed in one piece with the housing C. Onto an end of the spindle
15a there is fixed a supporting block 18, from which axially projects the outlet member
10 of the mechanism 11 in the form of a pin.
[0021] Said driving mechanism 11, suitably dimensioned, allows to change the purely rotary
motion of the motor shaft 14 into a reciprocating straightaway motion of the pin 10
(figs. 4B and 4C); in fact, the rolling of the planetary gear 15 over the internal
gear 17 leads the pin 10 to follow a rectilinear trajectory (fig. 4C) while spinning,
thus performing a full rotation for each rotation of the motor shaft 14. The pin 10
follows a law which is perfectly sinusoidal in time, if the rotation of the electric
motor M is continuous and constant, but it may follow different laws by suitably controlling
the electric motor M.
[0022] The great advantage of this mechanism 11 is to be able to perform a reciprocating
straightaway motion without the help of cam mechanisms, or other type of eccentrics,
which forcedly require to reverse the rotation of the motor in order to obtain a reciprocating
motion. This results into a substantially easy control of the motor M, thereby reaching
a first object of the present invention.
[0023] Furthermore, the perfectly rectilinear movement of the rods allows to adopt fixed
bushes 3 - rather than oscillating bushes, as in prior art - thereby reaching a second
object of the present invention.
[0024] Fig. 5 illustrates the two opposite positions of the planetary gear 15, in correspondence
of the two end-of-stroke positions of the rod 1. In particular, with the assembly
of fig. 5 the rod 1 performs a straightaway motion along a vertical axis (in respect
of the plane of the drawing).
[0025] By suitably keying the block 18 onto the spindle 15a it is possible to obtain rectilinear
displacements of the rods 1 along axes inclined in respect of the vertical axis -
as shown in fig. 3 - so as to draw close, in a same weft presenting device, various
rods positioned according to straight convergent lines. Fig. 3 shows a weft presenting
device with nine rods, wherein all the units are mounted, drawn close, onto a same
support plate P. The different inclination of the rods 1 allows the various weft yarns,
inserted into the single eyelets 2, to substantially converge in the same restricted
area (shown by small circles). This last characteristic is very important to make
sure that the weft yarns are presented in an optimal zone, to be caught by the carrying
gripper N.
[0026] As an alternative to that shown in fig. 3, the keying of the blocks 18 on the respective
spindles 15a can be identical for all the rods 1 (as shown, for example, in fig. 5)
and the different inclinations of the rods are obtained by mounting the driving mechanisms
11 on the support plate P according to different angles (this condition is not shown)
instead of equal angles (as in fig. 3).
[0027] This last mounting arrangement is advantageous, in that it does not require a specific
keying of the blocks 18 for each position taken up by the mechanisms 11, and thus
allows an easy and prompt interchangeableness of such driving mechanisms.
[0028] In both cases one may appreciate the modularity and high compactedness of the multiple
weft presenting device according to the invention. In particular, seen that the heads
1b of the rods 1 follow a perfectly rectilinear trajectory, the area which they cover
in their movement is very limited, whereby it is no longer necessary to provide -
as in the case of the device disclosed by EP-A1-598.264 - for a spacing between the
rods, such as to allow a freedom of movement to the rod head following a curved trajectory.
In the weft presenting device according to the present invention, even if a rod 1
should cover the area into which is moving a block 18 (for example, the rod 1 and
the block 18 shown in fig. 3), no interferences arise, since the rods 1 are anyhow
mounted overhanging in respect of the blocks 18 (as shown in fig. 2B), whereby their
moving path is always external to said blocks.
[0029] Furthermore, thanks to its modularity and compactedness, the device according to
the invention is easy to assemble and disassemble, to the full advantage of its maintenance.
[0030] Finally, through an appropriate electronic control system, it is possible to reset
the electrical axis between the motor M and the working motion of the loom, so as
to synchronize the motion of the weft presenting device with the motion of the loom.
For example, a proximity sensor S (see fig. 2B) detects the position of the head 1b
of the rod 1, then timing the working motion of the loom with the rotation of the
motor M.
[0031] The electronic control of the electric step-by-step motor M also allows to obtain
motion laws for the rods 1 which perfectly fulfil the requirements of the specific
product having to be woven, without having to replace or modify any mechanical component
of the system.
[0032] It is anyhow understood that the invention is not limited to the particular embodiment
illustrated heretofore, which merely represents a non-limiting example of its scope,
but many variants can be introduced, all within reach of a person skilled in the art,
without thereby departing
from the protection field
of the present invention.
[0033] For example, the various units of the weft presenting device - instead of being drawn
close onto a same support plate, as in fig. 3 - could be positioned according to different
geometries, at least partially opposite one to the other, or mutually offset. Moreover,
though a single preferred embodiment of the driving mechanism 11 has been described
herein, other embodiments can be conceived for the exact straight-line guide, all
falling within the protection field of the present invention.
1. Device to select and present weft yarns to a carrying gripper in looms - of the type
comprising a set of rods (1) having an eyelet (2) to let the weft yarns through, rod
guiding elements (3), a rotary driving motor (M) for each rod (1) rotating only in
one direction and an exact straight-line guide mechanism interposed between each motor
(M) and said rods (1) - characterized in that said exact straight-line guide mechanism is provided only with turning pair couplings
in the form of a rotor (12) fixed to the shaft (14) of the driving motor (M) and carrying
in excentric manner in respect of said shaft (14) a planetary gear (15) meshing with
an internal gear (17), which planetary gear (15) is carrying an eccentric pin (10)
driving said rods (1), the trajectory of said pin (10) being rectilinear.
2. Device as in claim 1), wherein said planetary gear (15) is carrying a coaxial spindle
(15a) at which end said driving pin (10) is eccentrically supported.
3. Device as in claim 2), wherein said driving motors (M) are electric step-by-step rotary
motors.
4. Device as in claim 1), 2) or 3), wherein said rod guiding element (3) consists of
a fixed bush.
5. Device as in claim 4), wherein the rods (1), the guide bushes (3), the exact straight-line
mechanism (11) and the driving motors (M) are all mounted onto a same support plate
(P), so that the rods (1) may converge towards the zone where the weft yarns are clamped
by the loom carrying gripper (N).
1. Vorrichtung zum Auswählen und Präsentieren von Schussfäden für einen Tragegreifer
in Webmaschinen - von der Art mit einem Satz von Stangen (1) mit einer Öse (2) zum
Durchlassen der Schussfäden, Stangenführungselementen (3), einem sich nur in eine
Richtung drehenden Drehantriebsmotor (M) für jede Stange (1) und einem exakt geradlinigen
Führungsmechanismus, der zwischen dem Antriebsmotor und den Stangen (1) angeordnet
ist - dadurch gekennzeichnet, dass der exakt geradlinige Führungsmechanismus nur mit Umkehrpaarkupplungen in der Form
eines an der Welle (14) des Antriebsmotors (M) befestigten Rotors (12) versehen ist,
der ein mit einem Hohlrad (17) kämmendes Planetenrad (15) exzentrisch bezüglich der
Welle (14) trägt, wobei das Planetenrad (15) einen die Stangen (1) antreibenden Exzenterstift
(10) trägt, dessen Bahn geradlinig ist.
2. Vorrichtung nach Anspruch 1, wobei das Planetenrad (15) eine koaxiale Sindel (15a)
trägt, an deren Ende der Antriebsstift (10) exzentrisch gelagert ist.
3. Vorrichtung nach Anspruch 2, wobei die Antriebsmotoren (M) Schrittmotoren sind.
4. Vorichtung nach Anspruch 1, 2 oder 3, wobei das Führungselement (3) aus einer festen
Buchse besteht.
5. Vorrichtung nach Anspruch 4, wobei die Stangen (1), die Führungsbuchsen (3), der exakt
geradlinige Führungsmechanismus (11) und dir Antriebsmotoren (M) alle auf derselben
Stützplatte (P) montiert sind, so das die Stangen (1) in Richtung auf den Bereich,
in dem die Schussfäden durch den Schussfadentragegreifer (N) geklemmt werden, konvergieren
können.
1. Dispositif pour sélectionner et présenter des fils de trame à une pince porteuse dans
des métiers - du type comprenant un jeu de barres (1) comportant un oeillet (2) pour
laisser passer les fils de trame, des éléments de guidage de barres (3), un moteur
d'entraînement rotatif (M) pour chaque barre (1) ne tournant que dans un seul sens
et un mécanisme guide d'alignement exact intercalé entre chaque moteur (M) et lesdites
barres (1) - caractérisé en ce que ledit mécanisme guide d'alignement exact n'est doté que de manchons d'accouplement
rotatifs par paires sous la forme d'un rotor fixé à l'arbre (14) du moteur d'entraînement
(M) et supportant de manière excentrique par rapport audit arbre (14) un engrenage
planétaire (15) s'engrenant avec un engrenage intérieur (17), lequel engrenage planétaire
(15) supporte une cheville excentrique (10) entraînant lesdites barres (1), la trajectoire
de ladite cheville (10) étant rectiligne.
2. Dispositif selon la revendication 1, dans lequel ledit engrenage planétaire (15) supporte
une broche coaxiale (15a) à l'extrémité de laquelle ladite cheville d'entraînement
(10) est supportée excentriquement..
3. Dispositif selon la revendication 2, dans lequel lesdits moteurs d'entraînement (M)
sont des moteurs rotatifs pas à pas, électriques.
4. Dispositif selon la revendication 1, 2 ou 3, dans lequel ledit élément de guidage
de barre (3) consiste en une douille fixe.
5. Dispositif selon la revendication 4, dans lequel les barres (1), les douilles de guidage
(3), le mécanisme guide d'alignement exact (11) et les moteurs d'entraînement (M)
sont tous montés sur une même plaque de support (P), de manière que les barres (1)
puissent converger vers la zone dans laquelle les fils de trame sont serrés par la
pince porteuse (N) du métier.