EP4624400A1 - Changiervorrichtung und garnwickelvorrichtung - Google Patents

Changiervorrichtung und garnwickelvorrichtung

Info

Publication number
EP4624400A1
EP4624400A1 EP25157884.5A EP25157884A EP4624400A1 EP 4624400 A1 EP4624400 A1 EP 4624400A1 EP 25157884 A EP25157884 A EP 25157884A EP 4624400 A1 EP4624400 A1 EP 4624400A1
Authority
EP
European Patent Office
Prior art keywords
traverse
guide
traverse guide
end portion
origin
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.)
Pending
Application number
EP25157884.5A
Other languages
English (en)
French (fr)
Inventor
Masashi Kawai
Keisuke Okada
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
TMT Machinery Inc
Original Assignee
TMT Machinery Inc
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by TMT Machinery Inc filed Critical TMT Machinery Inc
Publication of EP4624400A1 publication Critical patent/EP4624400A1/de
Pending legal-status Critical Current

Links

Classifications

    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H54/00—Winding, coiling, or depositing filamentary material
    • B65H54/02—Winding and traversing material on to reels, bobbins, tubes, or like package cores or formers
    • B65H54/28—Traversing devices; Package-shaping arrangements
    • B65H54/2821—Traversing devices driven by belts or chains
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H54/00—Winding, coiling, or depositing filamentary material
    • B65H54/02—Winding and traversing material on to reels, bobbins, tubes, or like package cores or formers
    • B65H54/28—Traversing devices; Package-shaping arrangements
    • B65H54/2884—Microprocessor-controlled traversing devices in so far the control is not special to one of the traversing devices of groups B65H54/2803 - B65H54/325 or group B65H54/38
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H54/00—Winding, coiling, or depositing filamentary material
    • B65H54/02—Winding and traversing material on to reels, bobbins, tubes, or like package cores or formers
    • B65H54/10—Winding and traversing material on to reels, bobbins, tubes, or like package cores or formers for making packages of specified shapes or on specified types of bobbins, tubes, cores, or formers
    • B65H54/20—Winding and traversing material on to reels, bobbins, tubes, or like package cores or formers for making packages of specified shapes or on specified types of bobbins, tubes, cores, or formers forming multiple packages
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H54/00—Winding, coiling, or depositing filamentary material
    • B65H54/02—Winding and traversing material on to reels, bobbins, tubes, or like package cores or formers
    • B65H54/28—Traversing devices; Package-shaping arrangements
    • B65H54/2848—Arrangements for aligned winding
    • B65H54/2854—Detection or control of aligned winding or reversal
    • B65H54/2857—Reversal control
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H54/00—Winding, coiling, or depositing filamentary material
    • B65H54/02—Winding and traversing material on to reels, bobbins, tubes, or like package cores or formers
    • B65H54/28—Traversing devices; Package-shaping arrangements
    • B65H54/2881—Traversing devices with a plurality of guides for winding on a plurality of bobbins
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H54/00—Winding, coiling, or depositing filamentary material
    • B65H54/02—Winding and traversing material on to reels, bobbins, tubes, or like package cores or formers
    • B65H54/28—Traversing devices; Package-shaping arrangements
    • B65H54/2884—Microprocessor-controlled traversing devices in so far the control is not special to one of the traversing devices of groups B65H54/2803 - B65H54/325 or group B65H54/38
    • B65H54/2887—Microprocessor-controlled traversing devices in so far the control is not special to one of the traversing devices of groups B65H54/2803 - B65H54/325 or group B65H54/38 detecting the position of the yarn guide
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H54/00—Winding, coiling, or depositing filamentary material
    • B65H54/02—Winding and traversing material on to reels, bobbins, tubes, or like package cores or formers
    • B65H54/28—Traversing devices; Package-shaping arrangements
    • B65H54/2884—Microprocessor-controlled traversing devices in so far the control is not special to one of the traversing devices of groups B65H54/2803 - B65H54/325 or group B65H54/38
    • B65H54/289—Microprocessor-controlled traversing devices in so far the control is not special to one of the traversing devices of groups B65H54/2803 - B65H54/325 or group B65H54/38 stopping the yarn guide in a predetermined position
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2701/00—Handled material; Storage means
    • B65H2701/30—Handled filamentary material
    • B65H2701/31—Textiles threads or artificial strands of filaments

Definitions

  • the present invention relates to a traverse device and a yarn winding apparatus including this traverse device.
  • Patent Literature 1 Japanese Laid-Open Patent Publication No. 2004-189359 discloses a traverse device configured to traverse a yarn which is a material of a package.
  • the traverse device includes a traverse motor (driving source), a driving belt, and a traverse guide.
  • the traverse motor causes the driving belt to reciprocate
  • the traverse guide attached to the driving belt reciprocates within a predetermined area in a predetermined traverse direction.
  • the traverse device further includes two movement regulating members (origin indicating members) used for determining an origin position of reciprocal movement of the traverse guide.
  • origin indicating members are placed outside both sides of a normal area where traversing of the yarn in a normal state (i.e., at the time of production of the package) is performed.
  • the origin position is calculated based on location information of the traverse guide in contact with the first origin indicating member and that of the traverse guide in contact with the second origin indicating member.
  • An object of the present invention is (i) to make it possible to determine an origin position of the traverse guide and (ii) to prevent the traverse guide from dropping off from a driving belt, with a simple structure.
  • a traverse device is configured to traverse a yarn and comprises: a traverse guide configured to guide the yarn; a driving belt to which the traverse guide is attached; a driving source which is able to cause the driving belt to reciprocate in a predetermined traverse direction, which is able to change a reciprocal area where the traverse guide reciprocates in the traverse direction as long as the reciprocal area is within a predetermined movable area, and which is able to move the traverse guide to an attachment-and-detachment position which is outside a production area and where the traverse guide is attachable to and detachable from the driving belt, the production area being the reciprocal area smaller than the movable area; an origin indicating member which is provided for determining an origin position of the traverse guide and which is positioned at a position which is opposite to the attachment-and-detachment position over the production area in the traverse direction and where the origin indicating member can make contact with the traverse guide; and a drop prevention portion configured
  • the drop prevention portion prevents the traverse guide from dropping off from the driving belt.
  • the traverse device of the first aspect is arranged such that the drop prevention portion extends at least along the entire length of the production area in the traverse direction.
  • the traverse guide is prevented from dropping off from the driving belt not only when the origin position is determined, but also when the traverse guide reciprocates within the production area.
  • the traverse device of the first or second aspect is arranged such that the driving source includes a servo motor which is able to detect location information regarding the position of the traverse guide in the traverse direction.
  • the traverse devices are arranged so that the traverse devices are approachable from one side in a predetermined intersecting direction intersecting with the axial direction, one of the traverse devices is a first traverse device whose end portion on the attachment-and-detachment position side in the traverse direction is provided as a first end portion, another of the traverse devices is a second traverse device which is adjacent to the first traverse device in the traverse direction and whose end portion on the side opposite to the attachment-and-detachment position in the traverse direction is provided as a second end portion, the first end portion is arranged to overlap with the second end portion in the axial direction, and the first end portion is provided on the one side of the second end portion in the intersecting direction.
  • the second end portion makes it difficult to detach the traverse guide at the attachment-and-detachment position.
  • the traverse guide when the traverse guide is detached from a traverse device in maintenance, the traverse device needs to be detached from the yarn winding apparatus.
  • the first end portion is provided on the one side of the second end portion in the intersecting direction, i.e., positioned at a position where an operator can easily approach. With this arrangement, the traverse guide is easily detachable from the traverse device in maintenance without detaching the traverse device from the yarn winding apparatus.
  • the yarn winding apparatus of the fifth aspect further comprises a controller and is arranged such that the driving source includes the servo motor which is able to detect the location information regarding the position of the traverse guide in the traverse direction.
  • the controller is configured to: control the servo motor to move the traverse guide toward a contact position where the traverse guide makes contact with the origin indicating member; determine whether the traverse guide makes contact with the origin indicating member, by using the location information; and by using the location information indicating the contact position and information of length of the movable area given in advance, set a position which is distanced from the contact position by a distance of a predetermined percentage of the length of the movable area in the traverse direction as the origin position.
  • the origin position is easily and finely set by the controller.
  • FIG. 1 is a profile of the spun yarn take-up machine 1.
  • the spun yarn take-up machine 1 is configured to take up yarns Y spun out from a spinning apparatus 2 and to wind the yarns Y onto the respective bobbins B, so as to form packages P.
  • the spinning apparatus 2 is configured to discharge, e.g., molten polymer which is a material of the yarns Y.
  • the material of the yarns Y is a polyester material such as PET, etc.
  • Each yarn Y is, e.g., a mono-filament yarn formed of a single filament.
  • the disclosure is not limited to this.
  • the spun yarn take-up machine 1 includes a first godet roller 11, a second godet roller 12, and a yarn winding apparatus 13.
  • the first godet roller 11 is a roller with an axis substantially parallel to the left-right direction.
  • the first godet roller 11 is provided below, e.g., the spinning apparatus 2.
  • the yarns Y aligned in the left-right direction are wound onto the first godet roller 11.
  • the first godet roller 11 is rotationally driven by an unillustrated motor. With this arrangement, the first godet roller 11 is configured to send the yarns Y to the downstream side in a yarn running direction.
  • the second godet roller 12 is a roller with an axis substantially parallel to the left-right direction.
  • the second godet roller 12 is placed downstream of the first godet roller 11 in the yarn running direction.
  • the second godet roller 12 is provided above and behind the first godet roller 11.
  • the second godet roller 12 is rotationally driven by an unillustrated motor. With this arrangement, the second godet roller 12 is configured to send the yarns Y to the downstream side in the yarn running direction.
  • the yarn winding apparatus 13 is able to perform a winding operation in which the packages P are formed by winding the yarns Y onto the respective bobbins B.
  • the yarn winding apparatus 13 is placed downstream of the second godet roller 12 in the yarn running direction.
  • the yarn winding apparatus 13 is provided below the second godet roller 12.
  • FIG. 2 is a perspective view of a part of the yarn winding apparatus 13.
  • the yarn winding apparatus 13 includes a frame 20, fulcrum guides 21, traverse guides 22, a turret 23, two bobbin holders 24, a contact roller 25, and a controller 26.
  • the frame 20 is a member to which components of the yarn winding apparatus 13 are attached or in which those are accommodated.
  • the frame 20 includes, e.g., a first frame 20a and a second frame 20b.
  • the first frame 20a extends in, e.g., the up-down direction.
  • the first frame 20a is provided at a rear end portion of the yarn winding apparatus 13.
  • the second frame 20b extends in, e.g., the front-rear direction.
  • the second frame 20b is fixed to, e.g., a front end of an upper end portion of the first frame 20a.
  • a front surface cover 20c (see FIG. 2 ) is attached to a front end of the second frame 20b.
  • the fulcrum guides 21 function as fulcrums when the running yarns Y are traversed by the respective traverse guides 22.
  • Each fulcrum guide 21 is configured to guide a yarn Y to the downstream side in the yarn running direction.
  • the fulcrum guides 21 are provided for the respective yarns Y.
  • the fulcrum guides 21 are aligned in the front-rear direction.
  • the traverse guides 22 are provided for the respective yarns Y.
  • the traverse guides 22 are aligned in the front-rear direction.
  • Each traverse guide 22 is configured to reciprocate at least in the front-rear direction. With this arrangement, the yarns Y threaded to the traverse guides 22 are traversed about the fulcrum guides 21.
  • a moving direction of each traverse guide 22 may be tilted with respect to the front-rear direction.
  • the traverse guides 22 are included in, e.g., the respective traverse devices 30 (see FIG. 3(a) ).
  • the traverse devices 30 are aligned in the front-rear direction.
  • the traverse devices 30 are accommodated in, e.g., the second frame 20b.
  • the traverse devices 30 which are adjacent to each other in the front-rear direction may be arranged to partially overlap with each other in the front-rear direction (see FIG. 2 ).
  • the structure of each traverse device 30 will be detailed later.
  • the two bobbin holders 24 are rotatably supported by the turret 23. When viewed in the front-rear direction, the two bobbin holders 24 are arranged to be, e.g., point symmetric about the center of a rotational axis of the turret 23.
  • the axial direction of each bobbin holder 24 is substantially parallel to the front-rear direction (see FIG. 1 ).
  • Each bobbin holder 24 supports bobbins B aligned in the front-rear direction. In the present embodiment, each bobbin holder 24 supports, e.g., six bobbins B. The number of bobbins B which can be supported by each bobbin holder 24 is not limited to this.
  • Each of the two bobbin holders 24 is rotationally driven by an individual winding motor 102 (see FIG. 1 ).
  • the yarns Y are simultaneously wound onto the bobbins B attached to one bobbin holder 24.
  • the one bobbin holder 24 is provided above the other bobbin holder 24.
  • the one bobbin holder 24 may be referred to as an upper bobbin holder 24 for the convenience of explanation.
  • the contact roller 25 is provided immediately above the upper bobbin holder 24.
  • the axial direction of the contact roller 25 is substantially parallel to the front-rear direction.
  • the contact roller 25 is configured to make contact with the surfaces of the packages P, which is supported by the upper bobbin holder 24, so as to apply contact pressure to the surfaces of the packages P. As a result, the shape of each package P is adjusted.
  • the controller 26 includes an unillustrated CPU, ROM, RAM, etc.
  • the controller 26 is electrically connected to each section of the yarn winding apparatus 13.
  • the controller 26 is able to control the operation of each section of the yarn winding apparatus 13.
  • the yarns Y traversed by the traverse guides 22 are wound onto the bobbins B so as to form the packages P.
  • the turret 23 is rotated so as to switch over the upper and lower positions of the two bobbin holders 24. Because of this, the bobbin holder 24 having been at the lower position is accordingly moved to the upper position.
  • the yarns Y are wound onto the respective bobbins B attached to the upper bobbin holder 24, so as to form the packages P.
  • the bobbin holder 24 to which the completed packages P are attached is moved to the lower position.
  • the completed packages P are collected by, e.g., an unillustrated package collector.
  • FIGs. 3(a) and 3(b) show the structure of the traverse device 30.
  • FIG. 3(a) shows the traverse device 30 viewed from the other side in a later-described belt width direction.
  • FIG. 3(b) shows the traverse device 30 viewed from one side in the belt width direction.
  • a direction in which a traverse guide 22 reciprocates will be referred to as a traverse direction.
  • the right side on the sheet of FIG. 3(a) is defined as one side in the traverse direction
  • the left side on the sheet is defined as the other side in the traverse direction.
  • FIG. 4(a) is a perspective view of an enlarged end portion of the traverse device 30 on one side in the traverse direction (i.e., which is not a front end portion but a rear end portion of the traverse device 30 attached to the yarn winding apparatus 13).
  • FIG. 4(b) shows a main body 41 (described later) of the traverse guide 22 viewed in the traverse direction.
  • FIG. 5 is a perspective view of an enlarged end portion of the traverse device 30 on the other side in the traverse direction (i.e., which is not a rear end portion but a front end portion of the traverse device 30 attached to the yarn winding apparatus 13).
  • the traverse device 30 includes a base member 31, a traverse motor 32, a driving pulley 33, two driven pulleys 34, an endless belt 35, a guide rail unit 36, two regulating members 37, and the above-described traverse guide 22.
  • the base member 31 is a member to which, e.g., the traverse motor 32, etc. is attached.
  • the base member 31 is, e.g., a substantially flat plate-shaped member.
  • the base member 31 is long and extends in the traverse direction (e.g., in a direction which is slightly tilted with respect to the front-rear direction in the present embodiment).
  • the traverse motor 32 (a driving source of the present invention) is a driving source used for moving the traverse guide 22.
  • the traverse motor 32 is attached to, e.g., the base member 31.
  • the traverse motor 32 has an unillustrated rotational shaft.
  • the rotational shaft is rotatable in a predetermined positive direction.
  • the rotational shaft is rotatable in a direction opposite to the positive direction.
  • the traverse motor 32 is controlled by, e.g., the controller 26.
  • the controller 26 is able to output, e.g., a predetermined pulse signal.
  • the traverse motor 32 rotates its rotational shaft by a predetermined angle.
  • the traverse motor 32 is, e.g., a known servo motor.
  • the traverse motor 32 is able to detect location information regarding the position of the traverse guide 22 in the traverse direction.
  • the traverse motor 32 includes a rotary encoder 32a (see FIG. 3(a) ).
  • the rotary encoder 32a may be, e.g., a known increment-type device which is able to detect information of a variation amount of an angular position of one rotational shaft.
  • the rotary encoder 32a may be, e.g., a known absolute-type device which is able to detect information of the angular position of the rotational shaft itself.
  • the angular position information corresponds to location information of the traverse guide 22 in the traverse direction.
  • the position of the traverse guide 22 in the traverse direction can be calculated based on, e.g., (i) a predetermined calculation formula and (ii) the angular position information acquired by the rotary encoder 32a.
  • the determination of whether the rotational shaft of the traverse motor 32 properly rotates can be performed by using the angular position information and information of a pulse signal output from the controller 26. In the present embodiment, the controller 26 is able to perform this determination.
  • the driving pulley 33 is a pully onto which the endless belt 35 is wound.
  • the driving pulley 33 is rotationally driven by the traverse motor 32 in the positive direction and the direction opposite to the positive direction.
  • the two driven pulleys 34 are pulleys onto which the endless belt 35 is wound in the same manner as the driving pulley 33.
  • the two driven pulleys 34 are rotated by the movement of the endless belt 35.
  • a direction of a rotational shaft of each driven pulley 34 is substantially parallel to the direction of a rotational shaft of the driving pulley 33.
  • the two driven pulleys 34 include (i) a driven pulley 34a provided at one end portion of the traverse device 30 on one side in the traverse direction and (ii) a driven pulley 34b provided at the other end portion of the traverse device 30 on the other side in the traverse direction.
  • a line segment (not illustrated) connecting the center of the rotational shaft of the driven pulley 34a to the center of the rotational shaft of the driven pulley 34b may be tilted with respect to the front-rear direction.
  • the driven pulley 34b (i.e., the front end portion) of one traverse device 30 may be arranged to at least partially overlap with the driven pulley 34a (i.e., the rear end portion) of another traverse device 30 provided in front of the one traverse device 30 in, e.g., the front-rear direction (see FIG. 2 ).
  • the endless belt 35 (a driving belt of the present invention) is wound onto the driving pulley 33 and the two driven pulleys 34.
  • the traverse guide 22 is attached to a substantially linear part of the endless belt 35, which is positioned between the two driven pulleys 34.
  • the endless belt 35 reciprocates so that the traverse guide 22 also reciprocates in the traverse direction.
  • a width direction of the endless belt 35 will be referred to as the belt width direction (see FIG. 4(a) to FIG. 5 ).
  • the belt width direction is a direction (i.e., a direction perpendicular to the sheet of FIG.
  • the traverse guide 22 can be positioned at any position within a predetermined area (a movable area TRm shown in FIG. 3(a) ) in the traverse direction in accordance with the angular position of the rotational shaft of the traverse motor 32. That is, an area (reciprocal area) in which the traverse motor 32 causes the traverse guide 22 to reciprocate can be changed at will by, e.g., the controller 26 as long as the area is within the movable area TRm.
  • the length of the movable area TRm in the traverse direction may be referred to as movable length.
  • the traverse guide 22 reciprocates within a production area TRn (see FIG.
  • the production area TRn is smaller than the movable area TRm in the traverse direction.
  • the length of the production area TRn in the traverse direction is shorter than the movable length.
  • the length of the production area TRn in the traverse direction can be changed during the winding operation. That is, the length of reciprocal movement of the traverse guide 22 in the front-rear direction may be changed during the winding operation.
  • the package P can be formed by taper winding (see FIG. 1 ).
  • the traverse guide 22 is movable to a position which is inside the movable area TRm and outside the production area TRn in the traverse direction.
  • the guide rail unit 36 (a guide rail of the present invention) is configured to guide the traverse guide 22 in the traverse direction.
  • the guide rail unit 36 extends in the traverse direction.
  • the guide rail unit 36 is provided at least within the production area TRn in the traverse direction. The guide rail unit 36 will be detailed later.
  • the two regulating members 37 are used for restricting the movement of the traverse guide 22 in the traverse direction.
  • the two regulating members 37 are provided inside the respective two driven pulleys 34 in the traverse direction.
  • the traverse guide 22 is movable within an area provided between the two regulating members 37 in the traverse direction. That is, the above-described movable area TRm is defined by the two regulating members 37.
  • One of the two regulating members 37 is used also for determining the position of an origin (hereinafter, the origin position) of movement of the traverse guide 22 in the traverse direction as described later.
  • the origin position can be determined based on angular position information of the rotational shaft of the traverse motor 32 when the traverse guide 22 is in contact with the regulating member 37. The details will be given later.
  • a position near the regulating member 37 is an attachment-and-detachment position where the traverse guide 22 is attachable to and detachable from the endless belt 35.
  • the traverse guide 22 at the attachment-and-detachment position is easily detached from the driving belt 35.
  • a lock mechanism (not illustrated) may be provided in the traverse guide 22 in order to prevent the traverse guide 22 from dropping off from the endless belt 35.
  • the main body 41 (see FIG. 3(a) to FIG. 5 ) is attached to the endless belt 35.
  • the main body 41 is long and extends in, e.g., the traverse direction as compared to the belt width direction and the orthogonal direction. Roughly speaking, the main body 41 is substantially L-shaped (see FIG. 4(b) ) when viewed in the traverse direction.
  • the main body 41 includes an attached portion 43, a first protrusion 44, a second protrusion 45, and a third protrusion 46.
  • the attached portion 43 (see FIG. 4(a) to FIG. 5 ) is attached to the endless belt 35.
  • the attached portion 43 is hatched and highlighted in FIG. 4(b) .
  • the attached portion 43 is, e.g., a substantially rectangular-parallelepiped portion.
  • the attached portion 43 includes, e.g., a groove 43a (see FIG. 5 ).
  • the groove 43a is formed along the entire length of the main body 41 in the traverse direction. When viewed in the traverse direction, the groove 43a is open to one side in the belt width direction.
  • the groove 43a is formed so that the endless belt 35 can be relatively inserted into the groove 43a in the belt width direction.
  • the endless belt 35 is, e.g., a known toothed belt.
  • engagement holes 43b which are engageable with the respective teeth (not illustrated) of the toothed belt are formed at intermediate parts of the groove 43a in the traverse direction.
  • the first protrusion 44 and the second protrusion 45 are provided for restricting the movement of the main body 41 in an unintentional direction, by means of the guide rail unit 36.
  • the first protrusion 44 protrudes from an end of the attached portion 43 on the base member 31 side (one side) toward the base member side 31 (see FIG. 4(a) ) in, e.g., the orthogonal direction.
  • the second protrusion 45 is, e.g., a part of the attached portion 43 in the belt width direction.
  • the second protrusion 45 is provided on, e.g., one end portion of the attached portion 43 on one side in the belt width direction (see FIG. 4(a) to FIG. 5 ).
  • the third protrusion 46 is a portion to which the guide member 42 is fixed (see FIG. 4(a) ).
  • the third protrusion 46 protrudes from the other end of the attached portion 43 on the other side in, e.g., the orthogonal direction toward the other side in the orthogonal direction (i.e., away from the base member 31).
  • the guide member 42 is configured to guide a running yarn Y (see FIG. 1 ).
  • the guide member 42 is fixed to the third protrusion 46 of the main body 41.
  • the guide rail unit 36 includes, e.g., a first guider 51 and a second guider 52.
  • the first guider 51 extends along, e.g., the entire length of the movable area TRm in the traverse direction.
  • the first guider 51 is fixed to the base member 31 by, e.g., an unillustrated fastener.
  • the first guider 51 is provided on the base member 31 side in the orthogonal direction as compared to the traverse guide 22.
  • the first guider 51 includes a guide surface 51a and a guide groove 51b.
  • the guide surface 51a and the guide groove 51b extend in the traverse direction, and are configured to guide the main body 41 of the traverse guide 22 in the traverse direction.
  • the guide surface 51a is oriented to, e.g., the attached portion 43 side of the main body 41 in the orthogonal direction.
  • the guide surface 51a is configured to restrict the movement of the attached portion 43 toward the base member 31 side in the orthogonal direction.
  • the guide groove 51b is configured to guide the first protrusion 44 of the main body 41 in the traverse direction.
  • the guide groove 51b is configured to restrict the movement of the first protrusion 44 toward both sides in the belt width direction.
  • the first guider 51 is configured (i) to restrict the movement of the traverse guide 22 toward one side (the base member 31 side) in the orthogonal direction and toward both sides in the belt width direction and (ii) to guide the traverse guide 22 in the traverse direction.
  • the second guider 52 extends from one end of the movable area TRm to a position near the other end of the movable area TRm in the traverse direction.
  • the second guider 52 is fixed to the base member 31 by, e.g., an unillustrated fastener.
  • the second guider 52 is provided on one side of the traverse guide 22 in the belt width direction.
  • the second guider 52 includes a guide surface 52a configured to guide the second protrusion 45 in the traverse direction.
  • the guide surface 52a is arranged to be opposite to the guide surface 51a of the first guider 51 over the second protrusion 45 in the orthogonal direction.
  • the guide surface 52a is oriented to the second protrusion 45 side in the orthogonal direction.
  • the guide surface 52a is configured to restrict the movement of the second protrusion 45 toward the other side (away from the base member 31) in the orthogonal direction.
  • the second guider 52 is not provided at the other end portion of the movable area TRm in the traverse direction (see FIG. 3(a), FIG. 3(b) , and FIG. 5 ). An end portion of the guide surface 52a of the second guider 52 may be cut out on the other side in the traverse direction.
  • an operator can move the traverse guide 22 away from the endless belt 35 (indicated by two-dot chain lines in FIG. 5 ) by moving the traverse guide 22 toward the other side in the orthogonal direction and moving it further to the other side in the belt width direction.
  • a position of the traverse guide 22 in the traverse direction will be referred to as an attachment-and-detachment position for the convenience of explanation.
  • the traverse guide 22 at the attachment-and-detachment position is attachable to and detachable from the endless belt 35 (indicated by arrows in FIG. 5 ).
  • the attachment-and-detachment positions of the traverse devices 30 are preferably provided at positions where the operator can easily approach (access).
  • the yarn winding apparatus 13 (see FIG. 2 ) is arranged so that the operator can approach (access) the traverse device 30 from a position above the frame 20.
  • a front end portion (first end portion) of one traverse device 30 is arranged to overlap with, in the front-rear direction, a rear end portion (second end portion) of another traverse device 30 which is adjacent to and in front of the one traverse device 30
  • the first end portion is provided above the second end portion (see FIG. 2 ).
  • one traverse device 30 is equivalent to a first traverse device of the present invention.
  • another traverse device 30 which is adjacent to and in front of the one traverse device 30 is equivalent to a second traverse device of the present invention.
  • the attachment-and-detachment position is preferably provided at the front end portion of each traverse device 30.
  • each traverse device 30 may need to be detached from the yarn winding apparatus 13 in order to detach a corresponding traverse guide 22.
  • each traverse guide 22 is easily detachable from a corresponding traverse device 30 in maintenance.
  • the traverse guide 22 is detachable from the traverse device 30 in maintenance without detaching the traverse device 30 from the yarn winding apparatus 13.
  • the up-down direction orthogonal to (intersecting with) the front-rear direction is equivalent to an intersecting direction of the present invention.
  • the upper side in the up-down direction is equivalent to one side in the intersecting direction.
  • Both the first guider 51 and the second guider 52 are provided at a part of the guide rail unit 36 in the traverse direction, and this part of the guide rail 36 will be referred to as a drop prevention portion 53 (see FIG. 3(b) ) for the convenience of explanation. That is, the drop prevention portion 53 and the guide rail unit 36 are integrally formed.
  • the drop prevention portion 53 extends along the entire length of the production area TRn (see FIG. 3(a) ) in the traverse direction.
  • the drop prevention portion 53 is configured to restrict (i) the movement of the traverse guide 22 toward both sides in the belt width direction and (ii) the movement of the traverse guide 22 toward both sides in the orthogonal direction.
  • the drop prevention portion 53 prevents the traverse guide 22 from dropping off from the endless belt 35.
  • One of the two regulating members 37 is a first regulating member 37a defining one end of the movable area TRm in the traverse direction
  • the other of the two regulating members 37 is a second regulating member 37b defining the other end of the movable area TRm in the traverse direction.
  • the first regulating member 37a is equivalent to an origin indicating member of the present invention.
  • the first regulating member 37a is positioned at a position opposite to the attachment-and-detachment position over the production area TRn in the traverse direction so that the first regulating member 37a can make contact with the traverse guide 22.
  • the drop prevention portion 53 extends to a position immediately near the first regulating member 37a in the traverse direction. That is, the drop prevention portion 53 is arranged to prevent the traverse guide 22 in contact with the first regulating member 37a from dropping off from the endless belt 35.
  • the traverse guide 22 is prevented from dropping off from the endless belt 35 when the origin position (described later) is determined.
  • the controller 26 determines the origin position (step S103).
  • the drop prevention portion 53 prevents the traverse guide 22 from dropping off from the endless belt 35. This prevents the traverse guide 22 from, e.g., being lost or caught into the yarn winding apparatus 13.
  • the movable length is calculated based on these sets of information.
  • the controller 26 determines a position which is distanced from the contact position by, e.g., a distance of a half (i.e., 50%) of the movable length in the traverse direction, as the origin position.
  • 50% is equivalent to a predetermined percentage of the present invention.
  • the controller 26 causes information of the position of the origin position to be stored in, e.g., the RAM. As described above, the origin position is set.
  • the first regulating member 37a is arranged to be opposite to the attachment-and-detachment position over the production area TRn in the traverse direction.
  • the position of the origin is determined by using information of the contact position and that of the movable length.
  • the traverse guide 22 when the traverse guide 22 is brought into contact with the first regulating member 37a, the traverse guide 22 does not need to move toward the attachment-and-detachment position side.
  • the drop prevention portion 53 prevents the traverse guide 22 from dropping off from the endless belt 35.
  • the traverse device 30 includes the guide rail unit 36. It is therefore possible to provide a stable track of reciprocal movement of the traverse guide 22 within the production area TRn, by means of guide rail unit 36.
  • the drop prevention portion 53 and the guide rail unit 36 are integrally formed. Therefore, with a simple structure, the traverse guide 22 is prevented from dropping off at the time of determination of the origin position, and a stable track of the traverse guide 22 is provided in the production area TRn.
  • the drop prevention portion 53 extends at least along the entire length of the production area TRn in the traverse direction. Therefore, the traverse guide 22 is prevented from dropping off from the endless belt 35 not only when the origin position is determined, but also when the traverse guide 22 reciprocates within the production area TRn.
  • the traverse motor 32 includes a servo motor which is able to detect location information. This makes it possible to determine the origin position by using the location information detected by the rotary encoder 32a of the servo motor. To be more specific, it is determined that the traverse guide 22 makes contact with the first regulating member 37a when a signal for driving the servo motor is not in consistency with the location information (i.e., when a step-out occurs in the servo motor). It is therefore possible to easily and finely determine the origin position.
  • the first end portion of the first traverse device is arranged to overlap with the second end portion of the second traverse device in the front-rear direction and to be above the second end portion in the up-down direction.
  • the traverse device 30 may need to be detached from the yarn winding apparatus 13 in order to detach the traverse guide 22.
  • the traverse device 30 does not need to be detached from the yarn winding apparatus 13 in order to detach the traverse guide 22.
  • the traverse guide 22 is easily detached from the traverse device 30 in maintenance without detaching the traverse device 30 from the yarn winding apparatus 13.
  • the traverse guide 22 When the traverse guide 22 is unintentionally detached from the traverse device 30, a problem in which the traverse guide 22 is caught into a member forming the yarn winding apparatus 13, etc. may occur so as to obstruct the operation of the yarn winding apparatus 13.
  • the traverse guide 22 is prevented from being detached from the traverse device 30 at the time of determination of the origin position. It is therefore possible to effectively suppress the traverse guide 22 from being caught into a member forming the yarn winding apparatus 13.
  • the traverse guide 22 When the traverse guide 22 is unintentionally detached from the traverse device 30 in the large yarn winding apparatus 13 including the bobbin holders 24 which are long in the front-rear direction, the traverse guide 22 needs to be found within a large area where the yarn winding apparatus 13 is provided or its surroundings. This may cause a lot of work and lost time before the yarn winding apparatus 13 starts to operate. In such a structure, the traverse device 30 of the present embodiment is especially effective.
  • the controller 26 makes it possible to easily and finely determine the origin position.

Landscapes

  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Textile Engineering (AREA)
  • Guides For Winding Or Rewinding, Or Guides For Filamentary Materials (AREA)
  • Winding Filamentary Materials (AREA)
EP25157884.5A 2024-03-26 2025-02-14 Changiervorrichtung und garnwickelvorrichtung Pending EP4624400A1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2024049678A JP2025149190A (ja) 2024-03-26 2024-03-26 トラバース装置、及び糸巻取装置

Publications (1)

Publication Number Publication Date
EP4624400A1 true EP4624400A1 (de) 2025-10-01

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP25157884.5A Pending EP4624400A1 (de) 2024-03-26 2025-02-14 Changiervorrichtung und garnwickelvorrichtung

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Country Link
EP (1) EP4624400A1 (de)
JP (1) JP2025149190A (de)
CN (1) CN120698296A (de)
TW (1) TW202600441A (de)

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2004189359A (ja) 2002-12-09 2004-07-08 Murata Mach Ltd トラバース装置のトラバースガイドの原点出し方法
DE102008038343A1 (de) * 2007-08-30 2009-03-05 Tmt Machinery, Inc. Garnhaspelmaschine und Garntexturiermaschine
CN101780901A (zh) * 2009-01-16 2010-07-21 日本Tmt机械株式会社 丝条卷绕装置及纺丝机
EP2765102A2 (de) * 2013-02-07 2014-08-13 Rieter CZ s.r.o. Verfahren zur Verteilung von aufgewickeltem Garn und Vorrichtung zur Durchführung des Verfahrens

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2004189359A (ja) 2002-12-09 2004-07-08 Murata Mach Ltd トラバース装置のトラバースガイドの原点出し方法
DE102008038343A1 (de) * 2007-08-30 2009-03-05 Tmt Machinery, Inc. Garnhaspelmaschine und Garntexturiermaschine
CN101780901A (zh) * 2009-01-16 2010-07-21 日本Tmt机械株式会社 丝条卷绕装置及纺丝机
EP2765102A2 (de) * 2013-02-07 2014-08-13 Rieter CZ s.r.o. Verfahren zur Verteilung von aufgewickeltem Garn und Vorrichtung zur Durchführung des Verfahrens

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TW202600441A (zh) 2026-01-01
CN120698296A (zh) 2025-09-26
JP2025149190A (ja) 2025-10-08

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