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EP 1 780 321 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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26.08.2009 Bulletin 2009/35 |
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Date of filing: 01.11.2005 |
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International Patent Classification (IPC):
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High speed color altering head for single-face circular knitting machines
Hochgeschwindigkeits-Ringelvorrichtung für Einzylinder-Rundstrickmaschinen
Dispositif pour le changement de couleurs à haute vitesse dans des métiers à tricoter
circulaires fonture simple
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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 HU IE IS IT LI LT LU LV MC NL PL PT RO SE
SI SK TR |
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Date of publication of application: |
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02.05.2007 Bulletin 2007/18 |
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Proprietor: Pai Lung Machinery Mill Co., Ltd. |
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Taipei Hsien, Taiwan (CN) |
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Inventor: |
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- Wei, Chih-Liang
Jui-Fang Town, Taipei Hsien (TW)
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Representative: 2K Patentanwälte Blasberg Kewitz & Reichel |
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Partnerschaft
Corneliusstraße 18 60325 Frankfurt am Main 60325 Frankfurt am Main (DE) |
| (56) |
References cited: :
WO-A-00/73564 GB-A- 2 390 614
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GB-A- 2 300 002
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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).
|
FIELD OF THE INVENTION
[0001] The present invention relates to a color altering head for circular knitting machines
and particularly to a high speed color altering head for single-face circular knitting
machines to feed colored yarns.
BACKGROUND OF THE INVENTION
[0002] During knitting operation of a conventional circular knitting machine, if there is
a need to do jacquard knitting of different colors on the fabric, a color altering
head is installed on a yarn feeding bore of the circular knitting machine. The color
altering head can move a color yarn to the yarn feeding bore to be picked up by a
knitting needle so that the colored yarn is knitted into the fabric to achieve jacquard
knitting effect that contains different colors.
[0003] Refer to FIGS. 1A through 1D for a fragmentary structure of a conventional single-face
color altering head in operations. The single-face color altering head mechanism 1
includes a yarn feeding plate 11, a yarn clipping plate 12 and a spacer 13. The yarn
feeding plate 11 has a butt 112 driven by a cam (not shown in the drawings) of the
circular knitting machine to push the yarn feeding plate 11 forwards (referring to
FIG. 1A). A colored yarn threading through a yarn feeding eye 116 is picked up by
the yarn clipping plate 12 and clipped between the yarn clipping plate 12 and the
spacer 13, and can be drawn (not shown in the drawings). While the yarn feeding plate
11 is moved and a thrust portion 114 of the yarn feeding plate11 is in contact with
a thrust lug 122 of the yarn clipping plate 12, the yarn clipping plate 12 is driven
forwards by the yarn feeding plate 11 (referring to FIG. 1B). Then the color yarn
clipped between the yarn clipping plate 12 and the spacer 13 is released to be knitted
by the knitting needle of the circular knitting machine. When the needle selection
device (not shown in the drawings) of the circular knitting machine changes another
colored yarn, another set of yarn feeding plate and yarn clipping plate (not shown
in the drawings) operate as previously discussed to pick up and release another color
yarn for knitting operation. Meanwhile, the yarn feeding plate 11 is immediately driven
by the cam (not shown in the drawings) to retract the yarn feeding plate 11 through
a drawing portion 113 formed thereon (referring to FIG. 1C), and the colored yarn
threading through the yarn feeding eye 116 is picked up by the yarn feeding plate
11, and the yarn is moved along the path of an action slot 111 to be transversely
saddled on a yarn clipping portion 121 (not shown in the drawings) of the yarn clipping
plate 12. When the yarn feeding plate 11 is moved and a retracting portion 115 thereof
is in contact with a retracting lug 123 of the yarn clipping plate 12, the yarn clipping
plate 12 is retracted by a reward driven force of the yarn feeding plate 11 (referring
to FIG. 1D). As the color yarn is transversely saddled on the clipping portion 121
(not shown in the drawings), the yarn clipping plate 12 is moved rewards to the spacer
13 by the yarn feeding plate 11, and a shearing force is generated to sever the colored
yarn and clip the colored yarn between the yarn clipping plate 12 and the spacer 13.
Thereby different colored yarns can be changed in the knitting operation, and the
resulting knitted fabric has colorful jacquard effect.
[0004] However, the conventional color altering head previously discussed mainly aims to
be used in the circular knitting machine operating at a regular speed to place the
altered yarn transversely on the clipping portion 121, and generate a shearing force
with the spacer 13 to sever the yarn, and clip the yarn between the yarn clipping
plate 12 and the spacer 13. When the conventional color altering head is used at high
speed (about 25 RPM), two serious problems occur: 1. During operation of the yarn
feeding plate 11, an extra action of driving the yarn clipping plate 12 is needed.
Hence operation cycle is longer, and high speed knitting operation is hindered. Moreover,
the constant driving of the yarn clipping plate 12 and the associated hitting generate
metal impact and bouncing. This also impairs high speed operation. 2. As the yarn
clipping plate 12 is driven by the yarn feeding plate 11 at a selected operation speed,
the color altering head also has to be designed and function at the selected operation
speed. In the event that the circular knitting machine runs at an operation speed
higher than the designed level, the yarn cannot be straddled on the clipping portion
121 or the clipping portion 121 cannot clip the severed yarn, yarn dropping occurs.
[0005] GB2 390 614 A discloses a color altering head for a circular knitting machine according to the
preamble of claim 1. A separate control of the yarn feeding and yarn clipping mechanism
is, however, not disclosed.
[0006] WO 00/73 564 A1 discloses a device for selectively feeding threads in knitting machines. Actuation
of stripers or of thread clamping and cutting elements in order to arrange the thread
transversely to the needle bed of the machine is performed by means of cams applied
to the needle bed, which is usually movable with respect to the stripers. The functions
of clamping and cutting are, however, performed by the same device clamping and cutting
element. Thus, separate control of the yarn feeding and yarn clipping mechanism by
associated cams is not disclosed.
[0007] Another yarn changer for knitting machines is disclosed by
GB 2 300 002 A. Selector levers and control members respectively to be actuated by the cam tracks
act directly and not through additional levers all the like on the associated functional
parts, such as yarn fingers, closers or openers. However, separate control of the
yarn feeding and yarn clipping mechanism by associated upper and lower cams is not
disclosed.
SUMMARY OF THE INVENTION
[0008] It is an object of the present invention to provide a high speed color altering head
for single-phase circular knitting machines enabling a higher operation speed which
can be adapted to circular knitting machines of varying operation speeds. According
to another aspect of the invention, there is to be provided an improved color altering
head where the yarn can be severed smoothly, and yarn dropping can be prevented
[0009] The above and further objects are achieved by a high speed color altering head comprising
the features of claim 1. Further advantages embodiments are the subject matter of
the dependent claims.
[0010] In order to achieve the foregoing objects, the high speed color altering head for
single-face knitting machines according to the invention includes: two outer plates
on two outer sides of the color altering head;
a plurality of yarn feeding mechanisms located between the two outer plates to provide
colored yarn feeding operation;
a plurality of yarn clipping mechanisms located between the two outer plates alternately
among the yarn feeding mechanisms to clip and sever colored yarns;
a plurality of spacers located on the plates and yarn feeding mechanisms; and
a plurality of color selection pressing plates located between the two outer plates.
Each color selection pressing plate corresponds to one yarn feeding mechanism and
one yarn clipping mechanism.
[0011] According to the present invention, the color selection pressing plates are driven
by a color selection device to release the corresponding yarn feeding mechanism and
yarn clipping mechanism to enable the upper and lower cams of the circular knitting
machine to separately control the yarn feeding operation of the yarn feeding mechanism
and the yarn clipping operation of the yarn clipping mechanism. Thereby high speed
operation can be achieved without dropping the yarns.
[0012] According to the present invention there is provided an improved color altering head
that separately controls the yarn feeding plate and the yarn clipping plate. Each
has its own operation. There is no extra driving operation. Hence operation speed
can be increased. There is also no metal bouncing force. This can facilitate high
speed operation.
[0013] According to another object of the invention there is provided an improved color
altering head which can be adapted to circular knitting machines of varying operation
speeds. By changing the control sequence of the cams, the color altering head can
function as desired at different operation speeds of the circular knitting machines.
The yarn can be severed smoothly, and yarn dropping can be prevented.
[0014] The foregoing, as well as additional objects, features and advantages of the invention
will be more readily apparent from the following detailed description, which proceeds
with reference to the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWINGS
[0015]
FIGS. 1A through 1D are fragmentary views of a conventional single-face color altering
head in operating conditions.
FIG. 2 is a perspective view of the color altering head of the present invention.
FIG. 3 is a fragmentary perspective view of the yarn clipping mechanism of the present
invention.
FIG. 4 is a fragmentary perspective view of the yarn feeding mechanism of the present
invention.
FIGS. 5A through 5H are schematic views of the color altering head of the present
invention in operating conditions.
FIG. 6 is an exploded view of the floss removing device of the color altering head
of the present invention.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0016] Please referring to FIG. 2, the high speed color altering head 2 for single-face
circular knitting machines according to the invention is installed on a circular knitting
machine and controlled by a return cam, a color selection device and upper and lower
cams (not shown in the drawings) of the circular knitting machine to feed colored
yarns to a knitting needle and perform colored and jacquard knitting operation. The
color altering head 2 includes two outer plates 60 located on two outer sides, a plurality
of yarn feeding mechanism 20 located between the two outer plates 60 to perform colored
yarn feeding operation, a plurality of yarn clipping mechanism 30 located between
the two outer plates 60 among the yarn feeding mechanisms 20 in an alternate fashion
to clip and sever colored yarns, a plurality of spacers 50 located between the outer
plates 60, yarn feeding mechanisms 20 and yarn clipping mechanisms 30 and a plurality
of color selection pressing plates 40 located between the two outer plates 60. Each
of the color selection pressing plates 40 corresponds to one yarn feeding mechanism
20 and one yarn clipping mechanism 30. There is further a floss removing device 70
fastened to the outer plate 60 through a fastening element 90. A floss detent plate
80 also is provided on an upper side of the yarn feeding plate 21 that is exposed
outside the spacer 50 to prevent floss from entering. The color selection device (not
shown in the drawings) can drive the color selection pressing plate 40 to release
the corresponding yarn feeding mechanism 20 and the yarn clipping mechanism 30 so
that the upper and lower cams of the circular knitting machines can separately control
yarn feeding operation of the yarn feeding mechanism 20 and yarn clipping operation
of the yarn clipping mechanism 30 to achieve high speed operation without dropping
the yarns.
[0017] Referring to FIG. 3, the yarn clipping mechanisms 30 of the invention are located
between the two outer plates 60 among the yarn feeding mechanisms 20 in an alternate
fashion to perform colored yarn clipping and severing operations. Each yarn clipping
mechanism 30 includes a first action plate 33, a clipping yarn pushing plate 32, a
clipping yarn plate 31 and an elastic element 34. The clipping yarn plate 31 is driven
by the clipping yarn pushing plate 32. The first action plate 33 has one end pivotally
coupled with the spacer 50 and another free end harnessed and pressed by the color
selection pressing plate 40 and the clipping yarn pushing plate 32.
[0018] Referring to FIG. 4, the yarn feeding mechanisms 20 are located between the two outer
plates 60 to perform colored yarn feeding operation. Each yarn feeding mechanism 20
includes a second action plate 26, a feeding yarn pushing plate 23, a linkage bar
22, a yarn feeding plate 21 and two elastic elements 24 and 25. The yarn feeding plate
21 is driven by the feeding yarn pushing plate 23 through the linkage bar 22. The
yarn feeding plate 21 has an action slot 211 run through by an anchor lug 54 of the
spacer 50. The second action plate 26 has one end pivotally coupled with the spacer
50 and another free end harnessed and pressed by the color selection pressing plate
40 and the feeding yarn pushing plate 23.
[0019] FIGS. 5A through 5H show the high speed color altering head 2 of the invention in
different operating conditions. The yarn feeding and severing operations are controlled
by the upper and lower cams (not shown in the drawings). FIGS. 5A and 5B depict a
condition in which the color selection pressing plate 40 is not yet driven by the
color selection device (not shown in the drawings), and the yarn feeding mechanism
20 and the yarn clipping mechanism 30 are in a return condition. The color selection
pressing plate 40 pushes the second action plate 26 and the first action plate 33
through a thrust end 42, and the feeding yarn pushing plate 23 has a first detent
portion 231 and the clipping yarn pushing plate 32 has a second detent portion 321
retained respectively by the second action plate 26 and the first action plate 33
without moving.
[0020] When a return end 43 of the color selection pressing plate 40 is driven by the color
selection device (not shown in thedrawings) (referring to FIGS. 5C and 5D), the thrust
end 42 of the color selection pressing plate 40 enables the second action plate 26
of the yarn feeding mechanism 20 to be pushed and moved by the feeding yarn pushing
plate 23 about a first axis 261 while another end of the second action plate is the
free end, and the first action plate 33 of the yarn clipping mechanism 30 to be pushed
and moved by the clipping yarn pushing plate 32 about a second axis 331 while another
end of the first action plate is the free end (with the pushing force generated by
the elastic elements 24 and 34). Hence a first drawing portion 232 of the feeding
yarn pushing plate 23 and a first thrust portion 322 of the clipping yarn pushing
plate 32 are exposed outside the spacer 50 on an upper side. The first drawing portion
232 exposed outside the spacer 50 is driven by the upper cam (not shown in the drawings)
of the circular knitting machine to move the linkage bar 22 rearwards. The linkage
bar 22 moves about an axial hole 221 to sway the pivotal juncture of a pivot head
223 and a coupling portion 212 to move the yarn feeding plate 21 forwards along the
action slot 211 to move the yarn outside (referring to FIG. 5E). Meanwhile, the first
thrust portion 322 of the clipping yarn pushing plate 32 exposed outside the spacer
50 is driven forwards by another upper cam (not shown in the drawings) to move the
clipping yarn plate 31. The clipping yarn plate 31 is moved forwards along a path
defined by a first anchor point 51 and a first slot 313 and a second anchor point
52 and a second slot 314 to release the yarn at the front side (referring to FIG.
5F) to be used by the knitting needle (not shown in the drawings) of the circular
knitting machine to perform knitting operation.
[0021] When the return cam (not shown in the drawings) of the circular knitting machine
is in contact with the color selection pressing plate 40 in the next rotation cycle,
the color selection pressing plate 40 is returned and reset. While the color selection
pressing plate 40 depresses the first drawing portion 232 of the feeding yarn pushing
plate 23 into the spacer 50 to expose a second thrust portion 233 outside the spacer
50 on a lower side, and the first thrust portion 322 of the clipping yarn pushing
plate 32 is pushed into the spacer 50 to expose a second drawing portion 323 outside
the spacer 50 on the lower side, the yarn feeding plate 21 and the clipping yarn plate
31 are not moving (referring to FIGS. 5G and 5H). Another set of the yarn feeding
mechanism (not shown in the drawings) and another set of the yarn clipping mechanism
(not shown in the drawings) resume the aforesaid operations only when the needle selection
device (not shown in the drawings) is changed to another colored yarn. Then another
colored yarn is picked up and released for knitting operation. Meanwhile, the second
thrust portion 233 of the feeding yarn pushing plate 23 exposed outside the spacer
50 is driven by the lower cam (not shown in the drawings) to drive the linkage bar
22 forwards, and the linkage bar 22 moves about an axial hole 221 to sway the pivotal
juncture of the pivot head 223 and the coupling portion 212 to move the yarn feeding
plate 21 along the moving path of the action slot 211 to move the yarn rewards (referring
to FIG. 5A), and the colored yarn is straddled transversely on a clipping portion
311 of the clipping yarn plate 31 (not shown in the drawings). Meanwhile, due to the
colored yarn is straddled transversely on the clipping portion 311, and the second
drawing portion 323 of the clipping yarn pushing plate 32 is driven by the lower cam
(not shown in the drawings), the clipping yarn plate 31 is moved rearwards to the
spacer 50 (referring to FIG. 5B), and a shearing force is generated to sever the colored
yarn, and the colored yarn is clipped between the clipping portion 311 and the spacer
50 (not shown in the drawings). Thus the yarns of different colors can be altered
and knitted. And the resulting knitted fabric has colorful and jacquard effect.
[0022] FIG. 6 shows an embodiment of a floss removing device 70 of the color altering head
2. The outer plate 60 has two notches 61 to fasten the floss removing device 70 through
a fastening element 90 (such as a screw). It is located on the position where yarn
severing and clipping take place on the clipping portion 311 of the yarn clipping
mechanism 30, and the floss is accumulated easily. The floss removing device adopts
a detachable design and enables the floss to be cleared easily and quickly.
[0023] While the preferred embodiments of the invention have been set forth for the purpose
of disclosure, modifications of the disclosed embodiments of the invention as well
as other embodiments thereof may occur to those skilled in the art. Accordingly, the
appended claims are intended to cover all embodiments which do not depart from the
spirit and scope of the invention.
1. A high speed color altering head for single-face circular knitting machines installed
on a circular knitting machine and controlled by a return cam, a color selection device
and an upper cam and a lower cam of the circular knitting machine to perform colored
yarn feeding operation and achieve colored and jacquard knitting effect, comprising:
two outer plates (60) located on two outer sides of the color altering head (2);
a plurality of yarn feeding mechanisms (20) located between the two outer plates (60)
to provide the colored yarn feeding operation;
a plurality of yarn clipping mechanisms (30) located between the two outer plates
(60) among the yarn feeding mechanisms (20) in an alternate fashion to clip and sever
colored yarns;
a plurality of spacers (50) located between the outer plates (60), the yarn feeding
mechanisms (20) and the yarn clipping mechanisms (30); and
a plurality of color selection pressing plates (40) located between the two outer
plates (60), each color selection pressing plate (40) corresponding to one yarn feeding
mechanism (20) and one yarn clipping mechanism (30);
wherein the color selection pressing plates (40) are driven by the color selection
device to release the corresponding yam feeding mechanisms (20) and yarn clipping
mechanisms (30),
characterized in that the yarn feeding operation of the yarn feeding mechanisms (20) and the yarn severing
operation of the yarn clipping mechanisms (30) are separately controlled by the upper
and lower cams at high speed without dropping the yarns.
2. The high speed color altering head of claim 1, wherein each of the yarn feeding mechanisms
(20) includes a second action plate (26), a feeding yarn pushing plate (23), a linkage
bar (22), a yarn feeding plate (21) and an elastic element (24), the yarn feeding
plate (21) being driven by the feeding yarn pushing plate (23) through the linkage
bar (22).
3. The high speed color altering head of claim 2, wherein each of the spacers (50) has
an anchor lug (54), the yarn feeding plate (21) having a first action slot (211) which
is coupled with the anchor lug (54).
4. The high speed color altering head of claim 2, wherein a floss detent plate (80) is
located above the yarn feeding plate (21) that is exposed outside of the spacer (50)
to prevent floss from entering.
5. The high speed color altering head of claim 2, wherein the second action plate (26)
has one end pivotally coupled with the spacer (50) and another free end harnessed
and pressed by the color selection pressing plate (40) and the feeding yarn pushing
plate (23).
6. The high speed color altering head of claim 1, wherein each of the spacers (50) has
an anchor lug (54), a first anchor point (51) and a second anchor point (52).
7. The high speed color altering head of claim 1, wherein the yarn clipping mechanism
(30) includes a first action plate (33), a clipping yarn pushing plate (32), a clipping
yarn plate (31) and an elastic element (34), the clipping yarn plate (31) being driven
by the clipping yarn pushing plate (32).
8. The high speed color altering head of claim 7, wherein the first action plate (33)
has one end pivotally coupled with the spacer (50) and another free end pushed by
the color selection pressing plate (40) and the clipping yarn pushing plate (32).
9. The high speed color altering head of claim 7, wherein the outer plate (60) has a
notch (61) to fasten a detachable floss removing device (70) through a fastening element
(90) to clear floss, the floss removing device (70) having intervals for said clipping
yarn plate (31) clipping operation, the number of the intervals being same as the
spacers (50).
1. Hochgeschwindigkeits-Farbwechseikopf für Pinseiten-Rundstrickmaschinen, eingebaut
in einer Rundstrickmaschine und gesteuert durch einen Rückkehmocken, eine Farbauswahleinrichtung
und einen oberen Nocken sowie einen unteren Nocken der Rundstrickmaschine, um einen
Farbgarn-Zuführvorgang ausruführen und einen farbigen Jaquard-Strickeffekt zu erzielen,
umfassend:
zwei äußere Platten (60), die sich auf zwei Außenseiten des Farbwechselkopfes (2)
befinden;
eine Mehrzahl von Garnzufühnnechanismen (20), die sich zwischen den beiden äußeren
Platten (60) befinden, um für den Farbgarn-Zuführvorgang zu sorgen;
eine Mehrzahl von Garnabtrennmechanismen (30), die zwischen den beiden äußeren Platten
(60) und den Garnzufiihrmechanismen (20) alternierend angeordnet sind, um die harbgarne
zu klemmen und abzutrennen bzw. abzuscheiden;
eine Mehrzahl von Distanzstücken (50), die sich zwischen den äußeren Platten (60),
den Gamzuführmechanismen (20) und den Garnabtrennmechanismen (30) befinden; und
eine Mehrzahl von Farbauswahl-Pressplatten bzw. Farbauswahl-Drüekplatten (40), die
sich zwischen den beiden äußeren Platten (60) bcünden, wobei jede Farbauswahl-Drückplatte
(40) einem Garnzufühnmechanismus (20) und einem Garnabtrennmechanismus (30) zugeordnet
ist;
wobei die Farbauswahl-Drückplatten (40) von der Farbauswahleinnchtung gesteuert werden,
um den entsprechenden Garnzuführmechanismus (20) und Gamabtrennmechanismus (30) zu
aktivieren,
dadurch gekennzeichnet, dass der Gamzuführvorgang der Garnzuführmechanismen (20) und der Garnabtrennvorgang der
Garnabtrennmechanismen (30) gesondert mit Hilfe des oberen und unteren Nockens mit
hoher Geschwindigkeit gesteuert wird, ohne dass die Garne fallengelassen werden.
2. Hochgeschwindigkeits-Farbwechselkopf nach Anspruch 1, wobei jeder der Garnzufühnmechanismen
(20) eine zweite Betätigungsplatte (26), eine zuführende Garndruckplatte (23), einen
Verbindungsarm (22), eine Garnzuführplatte (21) und ein elastisches Element (24) umfasst,
wobei die Garnzuführplatte von der zuführenden Garndrückplatte (23) mit Hilfe des
Verbindungsarms (22) angetrieben wird.
3. Hochigeschwindigkeits-Farbwechselkopf nach Anspruch 2, wobei jedes der Distanzstücke
(50) ein Befestigungs-Augenstück (54) aufweist, wobei die Garnzufiihrplatte (21) einen
ersten Augenstückschlitz (211) aufweist, der mit dem Befestigung-Augenstück (54) gekoppelt
ist.
4. Hochgeschwindigkeits-Farbwcchsellkopf nach Anspruch 2, wobei eine Rohgarn-Sicherungsplatte
(80) oberhalb der Garnzuführplatte (21) angeordnet ist, welche außerhalb des Distanzstückes
(50) frei zugänglich ist, um einen Eintritt des Rohgarns zu verhindern.
5. Hochgesehwindigkeits-Farbwcchselkopf nach Anspruch 2, wobei die zweite Betätigungsplatte
(26) ein erstes Ende, das schwenkbeweglich mit dem Distanzstück (50) gekoppelt ist,
und ein anderes freies Ende aufweist, das eingespannt ist und von der Farbauswahl-Drückplatte
(40) und der zuführenden Garndrückplatte (23) mit Druck beaufschlagt wird.
6. Hochgeschwindigkeits-Farbwcchselkopf nach Anspruch 1, wobei jedes der Distanzstücke
(50) ein Befestigungs-Augenstück (54), eine erste Befestigungsstelle (51) und eine
zweite Befestigungsstelle (52) aufweist.
7. Hochgeschwindigkeits-Farbwechselkopf nach Anspruch 1, wobei der Garnabtrennmechanismus
(30) eine erste Betätigungsplatte (33), eine klemmende Garndrückplatte (32), eine
klemmende Garnplatte (31) und ein elastisches Element (34) aufweist, wobei die klemmende
Gamplatte (31) von der klemmenden Garmdrückplatte (32) angetrieben wird.
8. Hochgeschwindigkeits-Farbwcchselkopf nach Anspruch 7, wobei die erste Betätigungsplatte
(33) ein erstes Ende, das schwenkbeweglich mit dem Distanzstück (50) gekoppelt ist,
und ein anderes freies Ende aufweist, das von der Farbauswahl-Drückplatte (40) und
der klemmenden Garndrückplatte (32) vorgetrieben wird.
9. Hochgesehwindigkeits-Farbweehselkopf nach Anspruch 7, wobei die äußere Platte (60)
eine Kerbe (61) aufweist, um eine abnehmbare Rohgarn-Enifermungseinrichtung (70) mit
Hilfe eines Befestigungselements (90) zu befestigen, um das Rohgarn zu beseitigen,
wobei die Rohgarn-Entfernungseinrichtung (70) Intervalle für den Klemmvorgang der
klemmenden Gamplatte (31) vorsieht, wobei die Anzahl von Intervallen gleich der Anzahl
von Distanzstücken (50) ist.
1. Tête de changement de couleur à grande vitesse pour des machines à tricoter circulaires
à face unique installée sur une machine à tricoter circulaire et entraînée par une
came de retour, un dispositif de sélection de couleur et une came supérieure et une
came inférieure de la machine à tricoter circulaire pour effectuer une opération d'avance
de fil de couleur et réaliser un effet de tricotage en couleur et jacquard, comprenant
:
deux plaques externes (60) situées sur deux côtés extérieurs de la tête de changement
de couleur (2);
une pluralité de mécanismes d'avance de fil (20) situés entre les deux plaques externes
(60) pour réaliser l'opération d'avance de fil de couleur ;
une pluralité de mécanismes de pinçage de fil (30) situés entre les deux plaques externes
(60) parmi les mécanismes d'avance de fil (20) d'une manière alternée pour pincer
et couper les fils de couleur ;
une pluralité d'éléments d'espacement (50) situés entre les plaques externes (60),
les mécanismes d'avance de fil (20) et les mécanismes de pinçage de fil (30) ; et
une pluralité de plaques de pression de sélection de couleur (40) situées entre les
deux plaques externes (60), chaque plaque de pression de sélection de couleur (40)
correspondant à un mécanisme d'avance de fil (20) et à un mécanisme de pinçage de
fil (30);
dans laquelle les plaques de pression de sélection de couleur (40) sont entraînées
par le dispositif de sélection de couleur pour libérer les mécanismes d'avance de
fil (20) et les mécanismes de pinçage de fil (30) correspondants,
caractérisée en ce que l'opération d'avance de fil des mécanismes d'avance de fil (20) et l'opération de
coupe de fil des mécanismes de pinçage de fil (30) sont commandées séparément par
les cames supérieure et inférieure à grande vitesse sans laisser tomber les fils.
2. Tête de changement de couleur à grande vitesse selon la revendication 1, dans laquelle
chacun des mécanismes d'avance de fil (20) comprend une deuxième plaque d'actionnement
(26), une plaque de poussée de fil d'avance (23), une barre de liaison (22), une plaque
d'avance de fil (21) et un élément élastique (24), la plaque d'avance de fil (21)
étant entraînée par la plaque de poussée de fil d'avance (23) par l'intermédiaire
de la barre de liaison (22).
3. Tête de changement de couleur à grande vitesse selon la revendication 2, dans laquelle
chacun des éléments d'espacement (50) comporte une languette d'ancrage (54), la plaque
d'avance de fil (21) comportant une première fente d'actionnement (211) qui est accouplée
à la languette d'ancrage (54).
4. Tête de changement de couleur à grande vitesse selon la revendication 2, dans laquelle
la plaque de dégagement de bourre (80) est située au-dessus de la plaque d'avance
de fil (21) qui est exposée à l'extérieur de l'élément d'espacement (50) pour éviter
que la bourre ne pénètre.
5. Tête de changement de couleur à grande vitesse selon la revendication 2, dans laquelle
la deuxième plaque d'actionnement (26) a une extrémité accouplée de manière pivotante
à l'élément d'espacement (50) et une autre extrémité libre harnachée et pressée par
la plaque de pression de sélection de couleur (40) et la plaque de poussée de fil
d'avance (23).
6. Tête de changement de couleur à grande vitesse selon la revendication 1, dans laquelle
chacun des éléments d'espacement (50) compote une languette d'ancrage (54), un premier
point d'ancrage (51) et un deuxième point d'ancrage (52).
7. Tête de changement de couleur. à grande vitesse selon la revendication 1, dans laquelle
le mécanisme de pinçage de fil (30) comprend une première plaque d'actionnement (33),
une plaque de poussée de fil de pinçage (32), une plaque de fil de pinçage (31) et
un élément élastique (34), la plaque de fil de pinçage (31) étant entraînée par la
plaque de poussée de fil de pinçage (32).
8. Tête de changement de couleur à grande vitesse selon la revendication 7, dans laquelle
la première plaque d'actionnement (33) a une extrémité accouplée de manière pivotante
à l'élément d'espacement (50) et une autre extrémité libre poussée par la plaque de
pression de sélection de couleur (40) et la plaque de poussée de fil de pinçage (32).
9. Tête de changement de couleur à grande vitesse selon la revendication 7, dans laquelle
la plaque externe (60) comporte une encoche (61) pour fixer un dispositif de retrait
de bourre (70) détachable par l'intermédiaire de l'élément de fixation (90) pour retirer
la bourre, le dispositif de retrait de bourre (70) comportant des intervalles pour
l'opération de pinçage de ladite plaque de fil de pinçage (31), le nombre d'intervalles
étant identique au nombre d'éléments d'espacement (50).
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