EP3679185B1 - Weft feeder device - Google Patents
Weft feeder device Download PDFInfo
- Publication number
- EP3679185B1 EP3679185B1 EP18746719.6A EP18746719A EP3679185B1 EP 3679185 B1 EP3679185 B1 EP 3679185B1 EP 18746719 A EP18746719 A EP 18746719A EP 3679185 B1 EP3679185 B1 EP 3679185B1
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- EP
- European Patent Office
- Prior art keywords
- drum
- drive wheel
- leg
- driven
- wire
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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- 238000004804 winding Methods 0.000 claims description 63
- 230000033001 locomotion Effects 0.000 claims description 11
- 230000005540 biological transmission Effects 0.000 claims description 4
- 230000000284 resting effect Effects 0.000 description 7
- 230000008878 coupling Effects 0.000 description 2
- 238000010168 coupling process Methods 0.000 description 2
- 238000005859 coupling reaction Methods 0.000 description 2
- 230000001419 dependent effect Effects 0.000 description 1
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Classifications
-
- D—TEXTILES; PAPER
- D03—WEAVING
- D03D—WOVEN FABRICS; METHODS OF WEAVING; LOOMS
- D03D47/00—Looms in which bulk supply of weft does not pass through shed, e.g. shuttleless looms, gripper shuttle looms, dummy shuttle looms
- D03D47/34—Handling the weft between bulk storage and weft-inserting means
- D03D47/36—Measuring and cutting the weft
- D03D47/361—Drum-type weft feeding devices
Definitions
- the invention relates to a weft feeder device with a winding drum with an adjustable winding circumference for storing weft thread and with a drum axis, the winding drum comprising at least one drum segment, which drum segment is moveable in a radial direction of the drum axis for adjusting the winding circumference of the winding drum.
- the drum segment could be a "resting drum segment”, which is only moved with respect to a guiding structure upon adjusting the winding circumference, but which is not moved upon winding or unwinding a weft thread to or from the winding drum.
- the drum segment could also be a "feeding drum segment”, which is moved with respect to a guiding structure upon adjusting the winding circumference and which is moved together with the guiding structure upon winding or unwinding a weft thread to or from the winding drum in order to advance a singular winding in a direction mainly parallel to the direction of the drum axis.
- WO 2015/169611 A1 shows an adjustably arranged drum segment having two side legs, wherein a first side leg is a guiding leg and a second side leg is provided with a rack cooperating with a centrally arranged cogwheel for adjusting the winding circumference.
- JP 09-170141 A1 shows a weft feeder device, the drum segments are each provided with a central leg extending in the radial direction of a drum axis, which central legs are guided in a respective guiding structure.
- the central legs are further provided with a rack, wherein to each rack a separate gear wheel is assigned.
- the gearwheels are coupled using a belt.
- the drum segments Upon operation, the drum segments generally are to be held fixed in position with respect to the guiding structure to maintain a set winding circumference. It is known to provide a wobbling or moving guiding structure for the feeding drum segments, which guiding structure is moved so that the feeding drum segments are moving back in a pattern for advancing the windings on the winding drum. Generally, such a wobbling movement is obtained by using an eccentric and inclined hub.
- the legs of the feeding drum segments still need to be fixed in position with respect to the guiding structure and/or a movement mechanism for moving the feeding drum segments with respect to the guiding structure in order to avoid excessive wear of the legs, the guiding structure and/or the movement mechanism and housing.
- It is the object of the present invention to provide a weft feeder device comprising a winding drum with an adjustable winding circumference for storing weft thread, which is simple in design and allows a movement of drum segments of the winding drum with no or only little play.
- a weft feeder device comprising a winding drum with an adjustable winding circumference for storing weft thread and with a drum axis
- the weft feeder device further comprises a drive mechanism that comprises a central drive wheel arranged coaxially with respect to the drum axis
- the winding drum comprises at least one drum segment mounted to a guiding structure so as to be moveable in a radial direction about the drum axis
- the drum segment comprises at least a first side leg extending along a side of the central drive wheel, wherein the first side leg is a driven leg drivingly coupled to the drive wheel
- the drive mechanism further comprises at least one wire strand extending along the periphery of the central drive wheel for a motion transmission from the drive wheel to the driven leg, which at least one wire strand is fixed to the driven leg and to the central drive wheel.
- the driven leg is connected to the drive wheel by means of the wire strand, such that when rotating the drive wheel via the wire strand a pulling force is applied to the driven leg for causing a movement of the driven leg and the associated drum segment for an adjustment of the winding circumference.
- the wire strand can be held under tension for avoiding a movement of the driven leg and, thus, of the associated drum segment during operation of the weft feeder device when the winding circumference is to be kept constant.
- the drum segment is moved in one direction by applying a pulling force using the wire strand and is moved in the opposite direction by means of an additional active or passive device, for example a passive element applying an internal restoring force.
- one wire strand or two wire strands is/are fixed to the driven leg at two distinct connection points, which are distanced from one another along the longitudinal direction of the driven leg, wherein the one wire strand or the two wire strands is/are fixed to the two connection points such that sections of the one or the two wire strands cross each other.
- the length of the wire strand or the wire strands is chosen such that play is avoided.
- the one wire strand or the two wire strands are fixed to the drive wheel using a tensioning screw.
- the winding drum comprises a number of drum segments mounted to a guiding structure so as to be moveable in a radial direction about the drum axis
- each driven leg is connected to the drive wheel using one or two designated wire strands.
- the winding drum comprises a number of drum segments mounted to a guiding structure so as to be moveable in a radial direction about the drum axis
- the drive mechanism comprises a number of wire strands
- the drum segments each comprise at least a first side leg extending along a side of the central drive wheel, which first side legs are driven legs drivingly coupled to the drive wheel, wherein each wire strand is fixed to the driven legs of at least two drum segments and each driven leg is connected to at least one wire strand such that all wire strands are interconnected with each other, and at least one wire strand is fixed to the central drive wheel.
- wire strands having at least one branching end, for connecting with two different driven legs are provided.
- the wire strands have two unbranching ends.
- the winding drum comprises a number of drum segments mounted to a guiding structure so as to be moveable in a radial direction about the drum axis
- the drive mechanism comprises an associated number of wire strands
- the drum segments each comprise at least a first side leg extending along a side of the central drive wheel, which first side legs are driven legs drivingly coupled to the drive wheel, wherein each wire strand is fixed to the driven legs of two neighboring drum segments and at least one wire strand is fixed to the central drive wheel.
- the winding drum further comprises one or more fixedly mounted drum segment(s), such fixedly mounted drum segments could be arranged between two moveably arranged drum segments, wherein the moveably arranged drum segments are still referred to as neighboring drum segments in the context of the application.
- two wire strands are fixed to each driven leg at two distinct connection points, which are distanced from one another along the longitudinal direction of the driven leg, wherein the two wire strands are fixed to the two connection points such that sections of the two wire strands cross each other.
- the connection points in particular are chosen such that a pulling force is applied in an at least essentially tangential direction of the drive wheel, which is in parallel to the driven leg for avoiding forces acting on the driven leg that could cause a jamming of the drum segment in the guiding structure.
- the at least one wire strand or a selected one of a number of wire strands is fixed to the drive wheel with a fixation element.
- the fixation element for example is a bolt or screw, wherein in one embodiment a tension of the wire strand is settable by setting the fixation element.
- a tension of the wire strand is settable by setting the fixation element.
- the drive wheel is driven to rotate in either direction for moving the drum segments.
- a cogwheel is provided for driving the drive wheel.
- the at least one drum segment has a second side leg, wherein the first side leg and the second side leg extend along opposite sides of the central drive wheel, wherein the second side leg is a guiding leg extending in parallel to the radial direction of the winding drum, which guiding leg is moveably mounted to the guiding structure.
- the driven leg and the guide leg are similar in length and both extend beyond the drum axis in a mid-position of the driven leg between a first position associated with a maximum winding circumference and a second position associated with a minimum winding circumference.
- the guiding leg is shorter than the driven leg.
- the drum segments are resting drum segments, which are not moved when advancing windings of the weft thread.
- the drum segments are feeding drum segments, which together with the guiding structure are moved in a pattern for advancing windings of the weft thread on the winding drum.
- the drive wheel is also attached to and moved together with the guiding structure.
- Fig. 1 shows in a perspective view parts of a weft feeder device having a winding drum 1 for storing weft thread (not shown) and a drive mechanism 2, namely three drum segments 3, 4, 5 of the winding drum 1 and a central drive wheel 6 and three wire strands 7, 8, 9 of the drive mechanism 2.
- the drum segments 3, 4, 5 are mounted to a guiding structure (not shown) so as to be moveable in a radial direction about a drum axis 10, wherein upon moving the drum segments 3, 4, 5 in the radial direction a winding circumference of the winding drum 1 is adjustable.
- the winding drum 1 further comprises a fourth drum segment (not shown), which is arranged fixed in position.
- the drum segments 3, 4, 5 in one embodiment are so-called resting drum segments, which are only moved with respect to the guiding structure upon adjusting the winding circumference, but which are not moved upon winding or unwinding a weft thread to or from the winding drum 1.
- each of the three drum segments 3, 4, 5 shown comprises a first side leg and a second side leg extending along opposite sides of the central drive wheel 6.
- the first side legs are referred to as driven legs 11, 12, 13, wherein the driven legs 11, 12, 13 are drivingly coupled to the drive wheel 6.
- the second side legs are referred to as guiding legs 14, 15, 16, which are used for guiding the drum segments 3, 4, 5 in the guiding structure (not shown).
- Fig. 2 shows the drum segments 3, 4, 5 together with the wire strands 7, 8, 9 in a perspective view.
- Fig. 3 shows the three wire strands 7, 8, 9 of the drive mechanism 2 of Fig. 1 together with the three driven legs 11, 12, 13 of drum segments 3, 4, 5 of the winding drum 1 of Fig. 1 .
- each wire strand 7, 8, 9 is fixed to the driven legs 11, 12, 13 of two neighboring drum segments 3, 4, 5, such that all wire strands 7, 8, 9 are interconnected with each other.
- two of the three wire strands 7, 8, 9 are fixed to each driven leg 11, 12, 13 at two distinct connection points 17, 22; 18, 19; 20, 21.
- a first wire strand 7 is fixed to a first driven leg 11 at a first connection point 17 and to a second driven leg 12 at a second connection point 18, a second wire strand 8 is fixed to the second driven leg 12 at a third connection point 19 and to a third driven leg 13 at a fourth connection point 20, and a third wire strand 9 is fixed to the third driven leg 13 at a fifth connection point 21 and to the first driven leg 11 at a sixth connection point 22.
- the connection points 17, 22; 18, 19; 20, 21 at each driven leg 11, 12, 13 are distanced from one another along the longitudinal direction of the driven leg 11, 12, 13.
- the connection points 17, 22; 18, 19; 20, 21 are chosen such that sections of two wire strands 7, 8, 9, which are fixed to an associated driven leg 11, 12, 13 cross each other.
- connection points 22, 18, 20 is arranged at a distal end of the associated driven leg 11, 12, 13, whereas the other connection point 17, 19, 21 is arranged about midway on the associated driven leg 11, 12, 13.
- a groove 29 is provided at each driven leg 11, 12, 13 for receiving the wire strands 7, 8, 9.
- One of the wire strands 7, 8, 9, in the embodiment shown the third wire strand 9, is further fixed to the central drive wheel 6 (see Fig. 1 ) by means of a fixation element 23, which in the embodiment shown comprises a bolt or screw, wherein by rotating the bolt or screw of the fixation element 23 the associated wire strand 9 is tensioned by the fixation element 23.
- a fixation element 23 which in the embodiment shown comprises a bolt or screw, wherein by rotating the bolt or screw of the fixation element 23 the associated wire strand 9 is tensioned by the fixation element 23.
- all wire strands 7, 8, 9 are interconnected with each other, by tensioning the third wire strand 9 fixed to the central drive wheel 6, the remaining wire strands 7, 8 are also tensioned.
- all wire strands 7, 8, 9 can be simultaneously tensioned.
- Fig. 4 is a top view of parts of the weft feeder device of Fig. 1 with the central drive wheel 6.
- a cogwheel 27 is provided coaxially to the drive wheel 6, wherein the drive wheel 6 is driven to rotate by means of the cogwheel 27.
- Fig. 5 is a top view of the parts of the weft feeder device similar to Fig. 4 without the cogwheel 27.
- Fig. 6 is a top view of three drum segments 3, 4, 5 together with three wire strands 7, 8, 9 of the drive mechanism 2 in a first position
- Fig. 7 is a top view of three drum segments 3, 4, 5 together with three wire strands 7, 8, 9 of the drive mechanism 2 in a second position
- Fig. 8 is a top view of three drum segments 3, 4, 5 together with three wire strands 7, 8, 9 of the drive mechanism 2 in a third position.
- the drive wheel 6 (see Fig. 4 and 5 ) can be rotated counterclockwise, wherein in the embodiment shown, by rotating the drive wheel 6 counterclockwise, by means of the first wire strand 7 a pulling force is applied at the connection point 17 arranged midway of the first driven leg 11 and the first driven leg 11 is moved to the right, by means of the second wire strand 8 a pulling force is applied at the connection point 19 arranged midway of the second driven leg 12 and the second driven leg 12 is moved upwards, and by means of the third wire strand 9 a pulling force is applied at the connection point 21 arranged midway of the third driven leg 13 and the third driven leg 13 is moved to the left.
- the drive wheel 6 can be rotated clockwise, wherein in the embodiment shown, by rotating the drive wheel 6 clockwise, by means of the third wire strand 9 a pulling force is applied at the connection point 22 arranged at the distal end of the first driven leg 11 and the first driven leg 11 is moved to the left, by means of the first wire strand 7 a pulling force is applied at the connection point 18 arranged at the distal end of the second driven leg 12 and the second driven leg 12 is moved downward, and by means of the second wire strand 8 a pulling force is applied at the connection point 20 arranged at the distal end of the third driven leg 13 and the third driven leg 13 is moved to the right.
- the driven legs 11, 12, 13 are moved in order to increase the winding circumference via a second position shown in Fig. 7 into or towards the first position shown in Fig. 6 .
- Fig. 9 schematically shows in a top view a drum segment 5 and a drive wheel 6 of a weft feeder device according to a second embodiment.
- one designated wire strand 9 is provided for connecting the driven leg 13 of one drum segment 5 to the drive wheel 6.
- the weft feeder device may comprise further drum segments 3, 4 with designated wire strands 7, 8 for connecting the associated driven leg 11, 12 to the drive wheel 6.
- a tension of each wire strand 7, 8, 9 has to be carried out separately, for example by using an associated fixation element 25, 24, 23.
- the wire strand 7 is fixed to the driven leg 11 at two distinct connection points 17, 22, which are distanced from one another along the longitudinal direction of the driven leg 11, wherein sections of the wire strand 7, which are fixed to the driven leg 11 cross each other.
- the wire strand 8 is fixed to the driven leg 12 at two distinct connection points 18, 19, while the wire strand 9 is fixed to the driven leg 13 at two distinct connection points 20, 21.
- a pulling force is applied via the wire strand 7 at the connection point 22 arranged at the right in Fig. 10 and the driven leg 11 is moved to the left.
- a pulling force is applied via the wire strand 7 at the connection point 17 arranged at the left in Fig.
- the drum segments 30, 40, 50 are so-called feeding drum segments, which are moved with respect to the guiding structure 26 upon adjusting the winding circumference and which are further moved together with the guiding structure 26 upon winding or unwinding a weft thread to or from the winding drum 1 in order to advance a singular winding in a direction mainly parallel to the direction of the drum axis 10.
- Each drum segment 30, 40, 50 comprises a driven leg 110, 120, 130 cooperating with a central drive wheel 60 and a guiding leg 140, 150, 160, which guiding leg 140, 150, 160 is moveably mounted to the guiding structure 26.
- a driven leg 110, 120, 130 cooperating with a central drive wheel 60
- a guiding leg 140, 150, 160 which guiding leg 140, 150, 160 is moveably mounted to the guiding structure 26.
- the guiding structure 26 comprises boreholes for guiding the guiding legs 140, 150, 160, of which boreholes only the borehole 31 for the guiding leg 160 is partially visible. Further, the guiding structure 26 comprises guiding elements 33, 34, 35 for guiding an associated driven leg 110, 120, 130 with respect to the guiding structure 26.
- the central drive wheel 60 is for example driven similarly as the central drive wheel 6.
- Three wire strands 7, 8, 9 are provided for a motion transmission from the drive wheel 60 to the driven legs 110, 120, 130.
- the three wire strands 7, 8, 9 are interconnected via the driven legs 110, 120, 130 and one wire strand 9 is connected to the central drive wheel 60.
- the wire strands 7, 8, 9 and the fixation element 23 are designed similar as shown in Fig. 3 .
- the wires 7, 8, 9 are driven via central drive wheel 60 that is driven similar as the drive wheel 6 in Fig. 1 .
- Fig. 12 shows in perspective view of a weft feeder device with a first drum set comprising three resting drum segments 3, 4, 5 and a central drive wheel 6 as shown in Fig.
- a second drum set comprising three feeding drum segments 30, 40 50 and a central drive wheel 60 as shown in Fig. 11 .
- the central drive wheels 6, 60 are arranged at an axial distance, and can be driven together or separately.
- Guiding structures 28, 26 are provided for guiding the guiding legs 14, 15, 16, 140, 150, 160 and/or the driven legs 11, 12, 13, 110, 120, 130 of the drum segments of the first drum set and the second drum set, respectively.
- the guiding structure 26 of the second drum set preferably is designed as shown in Fig. 11 .
- a guiding structure 28 for guiding the guiding legs 14, 15, 16 and/or the driven legs 11, 12, 13 of the three resting drum segments 3, 4, 5 of the first drum set is shown schematically.
- the guiding structure 28 can be designed similar to the guiding structure 26 for the guiding legs 140, 150, 160 and/or the driven legs 110, 120, 130 of the drum segments 30, 40, 50 as shown in Fig. 11 .
- the guiding structure can be designed similar to the guiding structure as shown in WO2015/169611 A1 .
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Description
- The invention relates to a weft feeder device with a winding drum with an adjustable winding circumference for storing weft thread and with a drum axis, the winding drum comprising at least one drum segment, which drum segment is moveable in a radial direction of the drum axis for adjusting the winding circumference of the winding drum.
- The drum segment could be a "resting drum segment", which is only moved with respect to a guiding structure upon adjusting the winding circumference, but which is not moved upon winding or unwinding a weft thread to or from the winding drum. The drum segment could also be a "feeding drum segment", which is moved with respect to a guiding structure upon adjusting the winding circumference and which is moved together with the guiding structure upon winding or unwinding a weft thread to or from the winding drum in order to advance a singular winding in a direction mainly parallel to the direction of the drum axis.
-
WO 2015/169611 A1 shows an adjustably arranged drum segment having two side legs, wherein a first side leg is a guiding leg and a second side leg is provided with a rack cooperating with a centrally arranged cogwheel for adjusting the winding circumference. -
JP 09-170141 A1 - Upon operation, the drum segments generally are to be held fixed in position with respect to the guiding structure to maintain a set winding circumference. It is known to provide a wobbling or moving guiding structure for the feeding drum segments, which guiding structure is moved so that the feeding drum segments are moving back in a pattern for advancing the windings on the winding drum. Generally, such a wobbling movement is obtained by using an eccentric and inclined hub. When providing a wobbling guiding structure, the legs of the feeding drum segments still need to be fixed in position with respect to the guiding structure and/or a movement mechanism for moving the feeding drum segments with respect to the guiding structure in order to avoid excessive wear of the legs, the guiding structure and/or the movement mechanism and housing.
- It is the object of the present invention to provide a weft feeder device comprising a winding drum with an adjustable winding circumference for storing weft thread, which is simple in design and allows a movement of drum segments of the winding drum with no or only little play.
- This object is solved by a weft feeder device with the features of
claim 1. Particular embodiments are defined in the dependent claims. - According to a first aspect, a weft feeder device comprising a winding drum with an adjustable winding circumference for storing weft thread and with a drum axis is provided, wherein the weft feeder device further comprises a drive mechanism that comprises a central drive wheel arranged coaxially with respect to the drum axis, wherein the winding drum comprises at least one drum segment mounted to a guiding structure so as to be moveable in a radial direction about the drum axis, wherein the drum segment comprises at least a first side leg extending along a side of the central drive wheel, wherein the first side leg is a driven leg drivingly coupled to the drive wheel, and wherein the drive mechanism further comprises at least one wire strand extending along the periphery of the central drive wheel for a motion transmission from the drive wheel to the driven leg, which at least one wire strand is fixed to the driven leg and to the central drive wheel.
- The driven leg is connected to the drive wheel by means of the wire strand, such that when rotating the drive wheel via the wire strand a pulling force is applied to the driven leg for causing a movement of the driven leg and the associated drum segment for an adjustment of the winding circumference. The wire strand can be held under tension for avoiding a movement of the driven leg and, thus, of the associated drum segment during operation of the weft feeder device when the winding circumference is to be kept constant.
- In one embodiment, the drum segment is moved in one direction by applying a pulling force using the wire strand and is moved in the opposite direction by means of an additional active or passive device, for example a passive element applying an internal restoring force.
- In accordance with one particular embodiment, one wire strand or two wire strands is/are fixed to the driven leg at two distinct connection points, which are distanced from one another along the longitudinal direction of the driven leg, wherein the one wire strand or the two wire strands is/are fixed to the two connection points such that sections of the one or the two wire strands cross each other. Hence, by rotating the drive wheel in either direction, a pulling force is applied to the driven leg at either one of the two connection points. The length of the wire strand or the wire strands is chosen such that play is avoided. For adjusting the length, in one embodiment the one wire strand or the two wire strands are fixed to the drive wheel using a tensioning screw. In case the winding drum comprises a number of drum segments mounted to a guiding structure so as to be moveable in a radial direction about the drum axis, in one embodiment each driven leg is connected to the drive wheel using one or two designated wire strands.
- In accordance with another embodiment, the winding drum comprises a number of drum segments mounted to a guiding structure so as to be moveable in a radial direction about the drum axis, wherein the drive mechanism comprises a number of wire strands, wherein the drum segments each comprise at least a first side leg extending along a side of the central drive wheel, which first side legs are driven legs drivingly coupled to the drive wheel, wherein each wire strand is fixed to the driven legs of at least two drum segments and each driven leg is connected to at least one wire strand such that all wire strands are interconnected with each other, and at least one wire strand is fixed to the central drive wheel. As all wire strands are interconnected, it is sufficient to fix one wire strand to the central drive wheel for drivingly coupling the central drive wheel with all wire strands and, thus, with all drum segments. In one embodiment, wire strands having at least one branching end, for connecting with two different driven legs are provided. In other embodiments, the wire strands have two unbranching ends.
- In accordance with an embodiment, the winding drum comprises a number of drum segments mounted to a guiding structure so as to be moveable in a radial direction about the drum axis, wherein the drive mechanism comprises an associated number of wire strands, wherein the drum segments each comprise at least a first side leg extending along a side of the central drive wheel, which first side legs are driven legs drivingly coupled to the drive wheel, wherein each wire strand is fixed to the driven legs of two neighboring drum segments and at least one wire strand is fixed to the central drive wheel. As each wire strand is fixed to the driven legs of two neighboring drum segments, all wire strands are interconnected with each other and it is sufficient to fix one wire strand to the central drive wheel for drivingly coupling the central drive wheel with all wire strands and, thus, with all drum segments. In case the winding drum further comprises one or more fixedly mounted drum segment(s), such fixedly mounted drum segments could be arranged between two moveably arranged drum segments, wherein the moveably arranged drum segments are still referred to as neighboring drum segments in the context of the application.
- In one embodiment, two wire strands are fixed to each driven leg at two distinct connection points, which are distanced from one another along the longitudinal direction of the driven leg, wherein the two wire strands are fixed to the two connection points such that sections of the two wire strands cross each other. The connection points in particular are chosen such that a pulling force is applied in an at least essentially tangential direction of the drive wheel, which is in parallel to the driven leg for avoiding forces acting on the driven leg that could cause a jamming of the drum segment in the guiding structure.
- In one embodiment, the at least one wire strand or a selected one of a number of wire strands is fixed to the drive wheel with a fixation element. The fixation element for example is a bolt or screw, wherein in one embodiment a tension of the wire strand is settable by setting the fixation element. In case a number of wire strands is provided and all wire strands are interconnected with each other, by tensioning one of the wire strands all wire strands are tensioned. This allows for a very simple adjustment of the tension.
- For adjusting the winding circumference, the drive wheel is driven to rotate in either direction for moving the drum segments. In one embodiment, a cogwheel is provided for driving the drive wheel.
- In one embodiment, the at least one drum segment has a second side leg, wherein the first side leg and the second side leg extend along opposite sides of the central drive wheel, wherein the second side leg is a guiding leg extending in parallel to the radial direction of the winding drum, which guiding leg is moveably mounted to the guiding structure. In one embodiment, the driven leg and the guide leg are similar in length and both extend beyond the drum axis in a mid-position of the driven leg between a first position associated with a maximum winding circumference and a second position associated with a minimum winding circumference. In other embodiments, the guiding leg is shorter than the driven leg.
- In one embodiment, the drum segments are resting drum segments, which are not moved when advancing windings of the weft thread. In particular embodiments, the drum segments are feeding drum segments, which together with the guiding structure are moved in a pattern for advancing windings of the weft thread on the winding drum. The drive wheel is also attached to and moved together with the guiding structure. Hence, when moving the drum segments together with the guiding structure, the driven legs are securely held in position by means of the at least one wire strand and an undesired movement of the drum segments with respect to the guiding structure is avoided.
- In the following, an embodiment of the invention will be described in detail with reference to the drawings. Throughout the drawings, the same elements will be denoted by the same reference numerals.
- Fig. 1
- is a perspective view of three resting drum segments of a winding drum and a drive mechanism of a weft feeder device, the drive mechanism comprising a central drive wheel and three wire strands;
- Fig. 2
- is a perspective view similar to
Fig. 1 without the central drive wheel; - Fig. 3
- is a perspective view of the three wire strands of the drive mechanism of
Fig. 1 together with three driven legs of drum segments of the winding drum; - Fig. 4
- is a top view of parts of the weft feeder device of
Fig. 1 ; - Fig. 5
- is a top view of the parts of the weft feeder device similar to
Fig. 4 without a cogwheel for driving the central drive wheel; - Fig. 6
- is a top view of three drum segments together with three wire strands of the drive mechanism in a first position;
- Fig. 7
- is a top view of the three drum segments together with three wire strands of
Fig. 6 in a second position; - Fig. 8
- is a top view of the three drum segments together with three wire strands of
Fig. 6 in a third position; - Fig. 9
- is a schematic top view of a drum segment of a winding drum and a drive mechanism of a weft feeder device according to a second embodiment;
- Fig. 10
- is a schematic top view of drum segments of a winding drum and a drive mechanism of a weft feeder device according to the second embodiment of
Fig. 9 ; - Fig. 11
- is a perspective view of three feeding drum segments of a winding drum and a drive mechanism of a weft feeder device, the drive mechanism comprising a central drive wheel and three wire strands; and
- Fig. 12
- is a perspective view for both the feeding drum segments of
Fig. 1 and the resting drum segments ofFig. 11 . -
Fig. 1 shows in a perspective view parts of a weft feeder device having a windingdrum 1 for storing weft thread (not shown) and adrive mechanism 2, namely threedrum segments drum 1 and acentral drive wheel 6 and threewire strands drive mechanism 2. - The
drum segments drum axis 10, wherein upon moving thedrum segments drum 1 is adjustable. As known for example fromWO2015/169611 A1 the windingdrum 1 further comprises a fourth drum segment (not shown), which is arranged fixed in position. Thedrum segments drum 1. - In the embodiment shown, each of the three
drum segments central drive wheel 6. The first side legs are referred to as drivenlegs legs drive wheel 6. The second side legs are referred to as guidinglegs drum segments - For a motion transmission from the
drive wheel 6 to the drivenlegs wire strands legs central drive wheel 6. -
Fig. 2 shows thedrum segments wire strands Fig. 3 shows the threewire strands drive mechanism 2 ofFig. 1 together with the three drivenlegs drum segments drum 1 ofFig. 1 . - As best seen in
Fig. 3 , eachwire strand legs drum segments wire strands wire strands leg first wire strand 7 is fixed to a first drivenleg 11 at afirst connection point 17 and to a second drivenleg 12 at asecond connection point 18, asecond wire strand 8 is fixed to the second drivenleg 12 at athird connection point 19 and to a thirddriven leg 13 at afourth connection point 20, and athird wire strand 9 is fixed to the thirddriven leg 13 at afifth connection point 21 and to the first drivenleg 11 at asixth connection point 22. The connection points 17, 22; 18, 19; 20, 21 at eachdriven leg leg wire strands leg leg other connection point leg groove 29 is provided at eachdriven leg wire strands - One of the
wire strands third wire strand 9, is further fixed to the central drive wheel 6 (seeFig. 1 ) by means of afixation element 23, which in the embodiment shown comprises a bolt or screw, wherein by rotating the bolt or screw of thefixation element 23 the associatedwire strand 9 is tensioned by thefixation element 23. As in the embodiment shown, as best seen inFig. 3 , allwire strands third wire strand 9 fixed to thecentral drive wheel 6, the remainingwire strands drive system 2, allwire strands -
Fig. 4 is a top view of parts of the weft feeder device ofFig. 1 with thecentral drive wheel 6. As best seen inFig. 4 , acogwheel 27 is provided coaxially to thedrive wheel 6, wherein thedrive wheel 6 is driven to rotate by means of thecogwheel 27.Fig. 5 is a top view of the parts of the weft feeder device similar toFig. 4 without thecogwheel 27. -
Fig. 6 is a top view of threedrum segments wire strands drive mechanism 2 in a first position,Fig. 7 is a top view of threedrum segments wire strands drive mechanism 2 in a second position, andFig. 8 is a top view of threedrum segments wire strands drive mechanism 2 in a third position. - Starting from the position shown in
Fig. 6 , the drive wheel 6 (seeFig. 4 and5 ) can be rotated counterclockwise, wherein in the embodiment shown, by rotating thedrive wheel 6 counterclockwise, by means of the first wire strand 7 a pulling force is applied at theconnection point 17 arranged midway of the first drivenleg 11 and the first drivenleg 11 is moved to the right, by means of the second wire strand 8 a pulling force is applied at theconnection point 19 arranged midway of the second drivenleg 12 and the second drivenleg 12 is moved upwards, and by means of the third wire strand 9 a pulling force is applied at theconnection point 21 arranged midway of the thirddriven leg 13 and the thirddriven leg 13 is moved to the left. It will be understood that the terms, left, right, upwards, and downwards in this context only refer to the drawing plane and not to any orientation of the elements in use. In other words, starting from the first position shown inFig. 6 , by rotating thedrive wheel 6 counterclockwise, the drivenlegs Fig. 7 into or towards a third position shown inFig. 8 . - Starting from
Fig. 8 , thedrive wheel 6 can be rotated clockwise, wherein in the embodiment shown, by rotating thedrive wheel 6 clockwise, by means of the third wire strand 9 a pulling force is applied at theconnection point 22 arranged at the distal end of the first drivenleg 11 and the first drivenleg 11 is moved to the left, by means of the first wire strand 7 a pulling force is applied at theconnection point 18 arranged at the distal end of the second drivenleg 12 and the second drivenleg 12 is moved downward, and by means of the second wire strand 8 a pulling force is applied at theconnection point 20 arranged at the distal end of the thirddriven leg 13 and the thirddriven leg 13 is moved to the right. In other words, starting from the second position shown inFig. 8 , by rotating thedrive wheel 6 clockwise, the drivenlegs Fig. 7 into or towards the first position shown inFig. 6 . -
Fig. 9 schematically shows in a top view adrum segment 5 and adrive wheel 6 of a weft feeder device according to a second embodiment. In this embodiment, one designatedwire strand 9 is provided for connecting the drivenleg 13 of onedrum segment 5 to thedrive wheel 6. Similarly, as shown inFig. 10 , the weft feeder device may comprisefurther drum segments wire strands leg drive wheel 6. In this case, a tension of eachwire strand fixation element wire strand 7 is fixed to the drivenleg 11 at two distinct connection points 17, 22, which are distanced from one another along the longitudinal direction of the drivenleg 11, wherein sections of thewire strand 7, which are fixed to the drivenleg 11 cross each other. Similarly, thewire strand 8 is fixed to the drivenleg 12 at two distinct connection points 18, 19, while thewire strand 9 is fixed to the drivenleg 13 at two distinct connection points 20, 21. In the embodiment shown, by rotating thedrive wheel 6 clockwise, a pulling force is applied via thewire strand 7 at theconnection point 22 arranged at the right inFig. 10 and the drivenleg 11 is moved to the left. Likewise, by rotating thedrive wheel 6 counterclockwise, a pulling force is applied via thewire strand 7 at theconnection point 17 arranged at the left inFig. 10 and the drivenleg 11 is moved to the right. Likewise, by rotating thedrive wheel 6 counterclockwise, a pulling force is applied via thewire strand connection point drive wheel 6 clockwise, a pulling force is applied via thewire strand connection point - In other embodiments, as shown in
Fig. 11 , thedrum segments structure 26 upon adjusting the winding circumference and which are further moved together with the guidingstructure 26 upon winding or unwinding a weft thread to or from the windingdrum 1 in order to advance a singular winding in a direction mainly parallel to the direction of thedrum axis 10. Eachdrum segment leg central drive wheel 60 and a guidingleg leg structure 26. In the embodiment shown inFig. 11 , the guidingstructure 26 comprises boreholes for guiding the guidinglegs borehole 31 for the guidingleg 160 is partially visible. Further, the guidingstructure 26 comprises guidingelements leg structure 26. Thecentral drive wheel 60 is for example driven similarly as thecentral drive wheel 6. - Three
wire strands drive wheel 60 to the drivenlegs wire strands legs wire strand 9 is connected to thecentral drive wheel 60. Thewire strands fixation element 23 are designed similar as shown inFig. 3 . Thewires central drive wheel 60 that is driven similar as thedrive wheel 6 inFig. 1 .Fig. 12 shows in perspective view of a weft feeder device with a first drum set comprising three restingdrum segments central drive wheel 6 as shown inFig. 1 and a second drum set comprising three feedingdrum segments central drive wheel 60 as shown inFig. 11 . which drum sets are both designed according to the invention. Thecentral drive wheels - Guiding
structures legs legs structure 26 of the second drum set preferably is designed as shown inFig. 11 . InFig. 12 , a guidingstructure 28 for guiding the guidinglegs legs drum segments structure 28 can be designed similar to the guidingstructure 26 for the guidinglegs legs drum segments Fig. 11 . Alternatively, the guiding structure can be designed similar to the guiding structure as shown inWO2015/169611 A1 .
Claims (10)
- Weft feeder device comprising a winding drum (1) with an adjustable winding circumference for storing weft thread and with a drum axis (10), and comprising a drive mechanism (2) that comprises a central drive wheel (6, 60) arranged coaxially with respect to the drum axis (10), wherein the winding drum (1) comprises at least one drum segment (3, 4, 5; 30, 40, 50) mounted so as to be moveable in a radial direction about the drum axis (10), wherein the drum segment (3, 4, 5; 30, 40, 50) comprises at least a first side leg extending along a side of the central drive wheel (6, 60), wherein the first side leg is a driven leg (11, 12, 13; 110, 120, 130) drivingly coupled to the drive wheel (6, 60), characterized in that the drive mechanism (2) further comprises at least one wire strand (7, 8, 9) extending along the periphery of the central drive wheel (6, 60) for a motion transmission from the drive wheel (6, 60) to the driven leg (11, 12, 13; 110, 120, 130), which at least one wire strand (7, 8, 9) is fixed to the driven leg (11, 12, 13; 110, 120, 130) and to the central drive wheel (6, 60) .
- Weft feeder device according to claim 1, characterized in that one wire strand (7, 8, 9) or two wire strands (7, 8, 9) is/are fixed to the driven leg (11, 12, 13; 110, 120, 130) at two distinct connection points (17, 18, 19, 20, 21, 22), which are distanced from one another along the longitudinal direction of the driven leg (11, 12, 13; 110, 120, 130), wherein the one wire strand (7, 8, 9) or the two wire strands (7, 8, 9) is/are fixed to the two connection points (17, 18, 19, 20, 21, 22) such that sections of the one or the two wire strands (7, 8, 9) cross each other.
- Weft feeder device according to claim 1 or 2, characterized in that the winding drum (1) comprises a number of drum segments (3, 4, 5; 30, 40, 50) mounted so as to be moveable in a radial direction about the drum axis (10), wherein the drive mechanism (2) comprises a number of wire strands (7, 8, 9), wherein the drum segments (3, 4, 5; 30, 40, 50) each comprise at least a first side leg extending along a side of the central drive wheel (6, 60), which first side legs are driven legs (11, 12, 13; 110, 120, 130) drivingly coupled to the drive wheel (6, 60), wherein each wire strand (7, 8, 9) is fixed to the driven legs (11, 12, 13; 110, 120, 130) of at least two drum segments (3, 4, 5) and each driven leg (11, 12, 13; 110, 120, 130) is connected to at least one wire strand (7, 8, 9) such that all wire strands (7, 8, 9) are interconnected with each other, and at least one wire strand (7, 8, 9) is fixed to the central drive wheel (6, 60).
- Weft feeder device according to any one of claims 1 to 3, characterized in that the winding drum (1) comprises a number of drum segments (3, 4, 5; 30, 40, 50) mounted so as to be moveable in a radial direction about the drum axis (10), wherein the drive mechanism (2) comprises an associated number of wire strands (7, 8, 9), wherein the drum segments (3, 4, 5; 30, 40, 50) each comprise at least a first side leg extending along a side of the central drive wheel (6, 60), which first side legs are driven legs (11, 12, 13; 110, 120, 130) drivingly coupled to the drive wheel (6, 60), wherein each wire strand (7, 8, 9) is fixed to the driven legs (11, 12, 13; 110, 120, 130) of two neighboring drum segments (3, 4, 5; 30, 40, 50) and at least one wire strand (7, 8, 9) is fixed to the central drive wheel (6, 60).
- Weft feeder device according to claim 3 or 4, characterized in that two wire strands (7, 8, 9) are fixed to each driven leg (11, 12, 13; 110, 120, 130) at two distinct connection points (17, 18, 19, 20, 21, 22), which are distanced from one another along the longitudinal direction of the driven leg (11, 12, 13; 110, 120, 130), wherein the two wire strands (7, 8, 9) are fixed to the two connection points (17, 18, 19, 20, 21, 22) such that sections of the two wire strands (7, 8, 9) cross each other.
- Weft feeder device according to any one of claims 1 to 5, characterized in that the at least one wire strand (7, 8, 9) or a selected one of a number of wire strands (7, 8, 9) is fixed to the drive wheel (6, 60) with a fixation element (23, 24, 25).
- Weft feeder device according to claim 6, characterized in that the at least one wire strand (7, 8, 9) is fixed to the drive wheel (6, 60) with a fixation element (23, 24, 25), wherein a tension of the wire strand (7, 8, 9) is settable by setting the fixation element (23, 24, 25).
- Weft feeder device according to any one of claims 1 to 7, characterized in that a cogwheel (27) is provided for driving the drive wheel (6, 60).
- Weft feeder device according to any one of claims 1 to 8, characterized in that the at least one drum segment has a second side leg, wherein the first side leg and the second side leg extend along opposite sides of the central drive wheel (6, 60), wherein the second side leg is a guiding leg (14, 15, 16; 140, 150, 160) extending in parallel to the radial direction of the winding drum (1), which guiding leg (14, 15, 16; 140, 150, 160) is moveably mounted to a guiding structure (26, 28).
- Weft feeder device according to any one of claims 1 to 9, characterized in that the drum segments are feeding drum segments (30, 40, 50), which are moved in a pattern for advancing windings of the weft thread on the winding drum (1).
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
BE2017/0125A BE1025559B1 (en) | 2017-09-08 | 2017-09-08 | Impact feeder |
PCT/EP2018/071226 WO2019048157A1 (en) | 2017-09-08 | 2018-08-06 | Weft feeder device |
Publications (2)
Publication Number | Publication Date |
---|---|
EP3679185A1 EP3679185A1 (en) | 2020-07-15 |
EP3679185B1 true EP3679185B1 (en) | 2021-06-23 |
Family
ID=60117406
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP18746719.6A Active EP3679185B1 (en) | 2017-09-08 | 2018-08-06 | Weft feeder device |
Country Status (4)
Country | Link |
---|---|
EP (1) | EP3679185B1 (en) |
CN (1) | CN111032938B (en) |
BE (1) | BE1025559B1 (en) |
WO (1) | WO2019048157A1 (en) |
Families Citing this family (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114277480A (en) * | 2021-12-07 | 2022-04-05 | 安徽华烨特种材料有限公司 | Warping yarn tension control method |
CN114000241A (en) * | 2021-12-07 | 2022-02-01 | 安徽华烨特种材料有限公司 | Yarn tensioner of warping machine |
Family Cites Families (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
IT1204330B (en) * | 1986-04-30 | 1989-03-01 | Sarfati & Vischiani Spa | ACCUMULATOR DEVICE FOR WEFT WIRE FEEDERS IN TEXTILE MACHINES |
JPH09170141A (en) * | 1995-12-20 | 1997-06-30 | Toyota Autom Loom Works Ltd | Weft-measuring and storing device for weaving loom |
CN106414824B (en) * | 2014-05-09 | 2018-11-13 | 必佳乐公司 | Weft feeding device device |
-
2017
- 2017-09-08 BE BE2017/0125A patent/BE1025559B1/en active IP Right Grant
-
2018
- 2018-08-06 EP EP18746719.6A patent/EP3679185B1/en active Active
- 2018-08-06 CN CN201880058117.1A patent/CN111032938B/en active Active
- 2018-08-06 WO PCT/EP2018/071226 patent/WO2019048157A1/en unknown
Also Published As
Publication number | Publication date |
---|---|
CN111032938A (en) | 2020-04-17 |
CN111032938B (en) | 2021-04-20 |
EP3679185A1 (en) | 2020-07-15 |
BE1025559A1 (en) | 2019-04-10 |
BE1025559B1 (en) | 2019-04-15 |
WO2019048157A1 (en) | 2019-03-14 |
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