EP0410018B1 - Betriebsverfahren und Vorrichtung zum automatisierten Betanken eines ein Netzmittel aufnehmenden Avivagekopfes einer Doppeldraht-Zwirnspindel - Google Patents

Betriebsverfahren und Vorrichtung zum automatisierten Betanken eines ein Netzmittel aufnehmenden Avivagekopfes einer Doppeldraht-Zwirnspindel Download PDF

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Publication number
EP0410018B1
EP0410018B1 EP89113548A EP89113548A EP0410018B1 EP 0410018 B1 EP0410018 B1 EP 0410018B1 EP 89113548 A EP89113548 A EP 89113548A EP 89113548 A EP89113548 A EP 89113548A EP 0410018 B1 EP0410018 B1 EP 0410018B1
Authority
EP
European Patent Office
Prior art keywords
bobbin
head
valve
reviving
gripper
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.)
Expired - Lifetime
Application number
EP89113548A
Other languages
German (de)
English (en)
French (fr)
Other versions
EP0410018A1 (de
Inventor
Ulrich Dipl.-Ing. Lossa
Heinz Stenmans
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.)
Palitex Project Co GmbH
Original Assignee
Palitex Project Co GmbH
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 Palitex Project Co GmbH filed Critical Palitex Project Co GmbH
Priority to DE89113548T priority Critical patent/DE58906597D1/de
Priority to EP89113548A priority patent/EP0410018B1/de
Priority to US07/549,891 priority patent/US5136836A/en
Priority to DD90342971A priority patent/DD300112A5/de
Priority to JP2193189A priority patent/JPH0359128A/ja
Priority to CS903687A priority patent/CS368790A2/cs
Publication of EP0410018A1 publication Critical patent/EP0410018A1/de
Application granted granted Critical
Publication of EP0410018B1 publication Critical patent/EP0410018B1/de
Priority to IN2MA1997D priority patent/IN178127B/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01HSPINNING OR TWISTING
    • D01H13/00Other common constructional features, details or accessories
    • D01H13/005Service carriages travelling along the machines
    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01HSPINNING OR TWISTING
    • D01H13/00Other common constructional features, details or accessories
    • D01H13/30Moistening, sizing, oiling, waxing, colouring, or drying yarns or the like as incidental measures during spinning or twisting
    • D01H13/302Moistening, e.g. for wet spinning

Definitions

  • Double-wire twisting spindles are often provided with thread wetting devices (DE-U-8116261), for example in the form of an intermediate head which can be plugged onto the hollow spindle axis with the interposition of a coil adapter and which has a storage container filled with a wetting agent and a porous net body with capillary action on the thread to remove the wetting agent, which is drawn into the porous net body from below by suction from the storage container.
  • thread wetting devices DE-U-8116261
  • the object of the invention is to refuel the storage container of the aviva head in an automated working process with new wetting agent.
  • the method dealt with in claim 2 is characterized in that this refueling of the aviva head is carried out in connection with the exchange of empty bobbin tubes for fully wound template or cross-wound bobbins.
  • FIG. 1 shows a detail of a double-wire twisting machine A, an automatic maintenance machine B which can be moved along the double-wire twisting machine on lower and upper rails 1 and 2, and a hanging conveyor device C.
  • the overhead conveyor device C comprises a top rail 3, in which a conveyor chain or a conveyor belt is guided, to which or on which bobbin hanging holders 4 for bobbin adapters or bobbin transport adapters 5, which hang down at regular intervals, are fastened.
  • the bobbin hanging holder 4 and the bobbin adapter 5 are designed in a known manner so that when a bobbin adapter 5 is started up, the bobbin adapter is gripped and held by the bobbin hanging holder, while the bobbin adapter 5 is released by the bobbin hanging holder 4 during the subsequent raising and lowering thereof.
  • FIG. 1 shows in the area of the top rail 3 on the left side six bobbin adapters 5, each with two fully wound cross-wound bobbins 6, which are to be transferred to the individual twisting points of the double-wire twisting machine 1 by means of the maintenance machine B, and two with empty sleeves 6 on the right 'equipped coil adapter 5, which by the maintenance machine B have been taken individually from twisting points of the double-wire twisting machine A and transferred to a bobbin hanging holder 4.
  • the double-wire twisting machine A comprises several working or twisting stations with the usual known elements such as (not shown) spindle in the lower area, balloon limiter 7, bobbin pot 8, thread inlet 9, balloon thread guide 10, deflection elements 11 for controlling the thread opening tension, advance line 12, traversing thread guide 13 and the cross-wound spool or take-up spool 15 driven by a friction roller 14.
  • a conveyor belt 16 in the upper area between the two parallel longitudinal machine sides for the removal of fully wound cross-wound bobbins 15.
  • the package 15 has a sleeve magazine 17 for empty take-up tubes 18.
  • FIG. 1 shows, schematically and in sections, various handling elements of the machine B, which are used to replace a bobbin adapter 5 (drain unit) equipped with empty bobbin sleeves 6 'with a full bobbin 6 equipped bobbin adapter 5 (template unit) and for manipulating or securing the thread ends of the empty or almost unwound bobbin tubes 6 '.
  • These are mainly two holding mandrels 100, which can be pivoted about a vertical axis and can be moved up and down in the vertical direction, for supply and discharge units as well as gripper and suction devices 22 and 23.
  • the maintenance machine B has a cabinet-shaped housing 101, the front wall of which is provided with a guide slot 102 for the pivotable cross arm 103 carrying a mandrel 100.
  • Fig. 2 shows a double-wire twist spindle additionally the bobbin 8.1 and the usual thread storage disk 19.
  • the bobbin adapter 5 which is also a transport adapter in the manner described above, consists of a cylinder section 5.1, which has a supporting flange 5.2 at its lower end and Area of its upper end preferably has an annular groove 5.3.
  • the lower gripper 22 of the maintenance machine B which has the two gripper arms 22.1 and 22.2 and can be pivoted in the horizontal direction (arrows f1), and is movable up and down.
  • the gripper ends of the two gripper arms 22.1 and 22.2 can be used in tightly enclose the bobbin 8 inserted bobbin adapter 5 on its outer circumference, but preferably in the area of its annular groove 5.3, whereby at the same time the end of the thread coming from the lower bobbin sleeve 6 ', which has not yet completely expired and entering the hollow core of the bobbin adapter, is automatically clamped and secured.
  • a two-part coil adapter is assumed.
  • the lower section of the adapter represents a means of transport for the fully wound bobbins or the expired tubes. In this form, it is also part of the bobbin transport system that is superior to the double-wire twisting machine. On the double wire twisting spindle, i.e. Within the bobbin, such an adapter lower part also serves to center the bobbins on the hub of the bobbin.
  • this adapter lower part 5 is a hollow axis having head part or adapter upper part 50 plugged on, which serves in a known manner to create different thread run-off conditions on a double-wire twisting spindle.
  • This adapter upper part is an aviva head 50 forming a thread inlet for wetting the continuous thread with an avivating agent.
  • this aviva head 50 consists of an annular storage container 51, the top of which is closed, optionally by means of a removable lid.
  • a central tube 52 is guided through the bottom of the storage container 51 and, with its end projecting downward from the storage container 51, can be inserted into the hollow axis of the lower bobbin adapter 5 within a double-wire twisted spindle in the extension of the hollow spindle axis, as can be seen in FIG 3 results.
  • the top or the lid of the storage container 51 is provided with an outwardly directed central tube extension 51.1, into which a net body 53 in the form of an annular, rigid rotational body made of porous material with a capillary action is inserted.
  • the surface of the net body 53 facing the thread has an inwardly directed, spherical surface.
  • the lower portion of the tubular net body is pushed onto the part of the central tube 52 located within the storage container 51.
  • Lubricant or wetting agent 54 filled into the storage container 51 is conveyed upwards under the influence of the capillary action as long as the porous net body 53 is immersed in this wetting agent, so that threads sliding along the crowned surface of the net body 53 are wetted with the wetting agent.
  • the supply of wetting agent within the storage container 51 is used up, so that wetting agent must be refilled from time to time.
  • the storage container 51 is provided with an internal refueling chamber 55, which has an opening 55.1 on its upper side and a downwardly directed cylindrical bore 55.2 in its bottom, which merges into a conical opening 55.3 that widens outwards.
  • a valve body 56 carrying an annular seal 57 is inserted into the cylinder bore 55.2 and is slidably guided in the cylinder bore 55.2 with its hollow cylindrical shaft 56.1 projecting downwards.
  • the hollow cylindrical shaft is provided with lateral openings 56.2 in the area of its upper end.
  • the valve body 56 is under the force of a return and closing spring 58 which is supported on the top of the fueling chamber 55 and by which the valve body 56 is loaded such that its ring seal 57 rests against the bottom of the fueling chamber 55 which forms a valve seat.
  • An annular lip seal 59 is inserted into the cone opening 55.3.
  • the upper cover wall or the cover of the storage container 51 is provided with a blind bore 60 of larger diameter which is closed by a stopper 61, to which a passage bore 62 of smaller diameter leading into the interior of the chamber connects.
  • a transverse bore 63 opens into the blind bore 60.
  • the through bore 62 is at its upper end by an annular shoulder surrounded on which a valve flap 64 rests.
  • Fig. 2 shows a portion of the double wire twisting machine in cross section, namely the machine frame 27, a compressed air line 28 with a connection leading to a double wire twisting spindle 29, which leads to a compressed air nozzle 30 for the pneumatic threading, and a spindle whorl 31 with belt pressure roller 32 for pressing a tangential drive belt 33 against the spindle whorl 31.
  • a foot lever 34 assigned to each individual spindle serves to actuate a spindle brake (not shown), and this foot lever 34 also serves to actuate the compressed air nozzle 30 in order, in a known manner, to produce a suction air flow in the spindle hollow axis Build up thread threading through the spindle.
  • FIG. 2 further shows part of the maintenance machine B patrolling in front of the double-wire twisting machine along the rails 1 and 2, of which maintenance and handling elements relevant for further description are shown in detail, such as the grippers 22 and 37 and the suction device 23, and a Actuating lever 35, by pressing it down in the direction of arrow f6, the foot lever 34 can be actuated at a given moment to stop the individual spindles.
  • 2 shows just above the foot lever 34 two rollers 36 of the maintenance machine B, which are guided along a guide surface 1.1 of the lower rail 1.
  • the suction device 23 with the upper gripper 37 is attached to a swivel arm 23.1 and is as well as the gripper 22 can be pivoted in the direction of arrow f1 and can be moved up and down in the direction of arrow f5 in the vertical direction.
  • Fig. 3 shows the lower gripper 22 as it grips the adapter lower part 5 with its two gripper arms 22.1 and 22.2 and at the same time clamps the thread 6 'leading to the sleeve 6 which still has a residual winding.
  • the aviva head 50 is gripped and held by the upper gripper 37 attached to the suction device 23, which has two gripper arms 37.1, 37.2 which can be pivoted in the horizontal direction.
  • the gripper arms 37.1, 37.2 of the upper gripper 37 are provided with inwardly directed projections or lugs 38 which, when the gripper arms are closed, engage point-wise in an annular groove 51.2 of the aviva head 50. This ensures that a thread running along the outside of the aviva head 50, which runs into the center or the hollow axis of the aviva head at the top, is not clamped by these gripper arms 37.1 or 37.2.
  • Air lines are integrated in the lower gripper 22 or in its gripper arms 22.1 and 22.2 and in the suction device 23, through which either for the pneumatic actuation of the gripper arms or cutting devices, not shown, can be supplied with compressed air, or in which a suction air flow can be built up in order to suck off cut thread ends.
  • the suction device 23 is pivoted laterally together with the upper gripper 37. Then the adapter lower part 5 can be lifted out of the coil pot 8 together with the two sleeves 6 'by means of the gripper 22. The gripper 22 is then pivoted so far into the maintenance machine B that the adapter lower part 5 with the two sleeves 6 'can be attached to one of the two mandrels 100, which has been brought into a corresponding pivot position.
  • the avivagehead 50 held by the gripper 37 is pivoted into the maintenance machine B into a position above the refueling station 40, see FIG. 4.
  • the refueling station 40 contains part of the maintenance machine B forming storage tank 41 for wetting agent 54.
  • This storage tank 41 has a liquid level indicator 42, a filler neck 43 which can be closed by means of a cover 43.1, a compressed air connection 44, a sensor 45 for determining the liquid level in the storage tank 41, a receptacle 46 for inserting the bottom from the Storage container projecting section of the pipe socket 52 of the Avivagekopf 50 and a filler neck 47 protruding upward from the storage tank 41.
  • a pipe socket 48 which ends at the bottom end above the tank bottom and opens at its upper end into a valve chamber 49 which is arranged below the upper cover wall of the storage tank 41 and via a bore 49.1 with the outside atmosphere in Connection is established.
  • the tubular filler neck 47 projecting upward from the storage tank 41 is sealingly guided and carries at its end inside the valve chamber 49 a valve disk 47.1 with an annular seal 47.2. Lateral openings are arranged in the filler neck 47 directly above the valve plate 47.1.
  • a closing or return spring 47.3 acts on the valve plate 47.1, from which the valve plate or the valve plate ring seal is pressed against the valve seat formed by the upper side of the valve chamber 49.
  • the arrows a shown in FIG. 5 indicate that there is an overpressure inside the storage tank 41, which is built up by compressed air supplied through the compressed air connection 44 and, in addition to the spring 47.3, ensures that the filler neck 47 is closed.
  • the filler neck 47 When inserting the pipe socket 52 of the aviva head 50 into the receptacle 46, the filler neck 47 is simultaneously inserted into the cone opening 55.3, so that the upper, preferably conically tapering end of the filler neck 47 against the underside of the hollow cylindrical shaft, which preferably has a funnel-shaped opening 56.1 is pressed.
  • the filler neck 47 lifts the valve body 56 of the aviva head 50 against the force of the compression spring 58 from the valve seat, so that a connection between the refueling chamber 55 and the inner bore of the cylindrical shaft 56.1 is made through the lateral openings 56.2.
  • This return and closing spring 58 is designed so that it exerts as much back pressure on the filler neck 47 from a certain path that it dodges against the force of the spring 47.3 supporting it and thus opens the filler valve associated with it. Because of the excess pressure prevailing in the storage tank 41, wetting agent 54 can now flow from the storage tank 41 into the storage container 51.
  • the wetting agent flowing into the storage container 51 displaces the above the wetting agent or. Air leveling air which can flow out via the relief valve of the storage container 51 formed by the elements 60, 61, 62, 63 and 64.
  • the two valves close under the influence of their return and closing springs 58 and 47.3.
  • the filled aviva head 50 can then be moved back into the spindle area and onto the meanwhile inserted into the spindle with two full cross or Supply spools 6 fitted adapter lower part 5 can be plugged on.
  • the spindle After swiveling back the suction device 23 with the associated gripper 37 and the lower gripper 22 in the maintenance machine B, the spindle is ready for a new twisting cycle.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Textile Engineering (AREA)
  • Spinning Or Twisting Of Yarns (AREA)
  • Treatment Of Fiber Materials (AREA)
EP89113548A 1989-07-24 1989-07-24 Betriebsverfahren und Vorrichtung zum automatisierten Betanken eines ein Netzmittel aufnehmenden Avivagekopfes einer Doppeldraht-Zwirnspindel Expired - Lifetime EP0410018B1 (de)

Priority Applications (7)

Application Number Priority Date Filing Date Title
DE89113548T DE58906597D1 (de) 1989-07-24 1989-07-24 Betriebsverfahren und Vorrichtung zum automatisierten Betanken eines ein Netzmittel aufnehmenden Avivagekopfes einer Doppeldraht-Zwirnspindel.
EP89113548A EP0410018B1 (de) 1989-07-24 1989-07-24 Betriebsverfahren und Vorrichtung zum automatisierten Betanken eines ein Netzmittel aufnehmenden Avivagekopfes einer Doppeldraht-Zwirnspindel
US07/549,891 US5136836A (en) 1989-07-24 1990-07-09 Apparatus for refilling a yarn lubricating head device utilized in each spindle assembly of a textile yarn processing machine
DD90342971A DD300112A5 (de) 1989-07-24 1990-07-20 Betriebsverfahren und vorrichtung zum automatisierten betanken eines ein netzmittel aufnehmenden aviagekopfes einer doppeldraht-zwirnspindel
JP2193189A JPH0359128A (ja) 1989-07-24 1990-07-23 2重撚糸スピンドルの潤滑ヘッドの浸潤剤を自動供給する方法及び装置
CS903687A CS368790A2 (en) 1989-07-24 1990-07-24 Method and device for wetting agent's automatized complementation into brightening head with two-for-one twist spindle
IN2MA1997D IN178127B (enrdf_load_stackoverflow) 1989-07-24 1997-03-08

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP89113548A EP0410018B1 (de) 1989-07-24 1989-07-24 Betriebsverfahren und Vorrichtung zum automatisierten Betanken eines ein Netzmittel aufnehmenden Avivagekopfes einer Doppeldraht-Zwirnspindel

Publications (2)

Publication Number Publication Date
EP0410018A1 EP0410018A1 (de) 1991-01-30
EP0410018B1 true EP0410018B1 (de) 1993-12-29

Family

ID=8201671

Family Applications (1)

Application Number Title Priority Date Filing Date
EP89113548A Expired - Lifetime EP0410018B1 (de) 1989-07-24 1989-07-24 Betriebsverfahren und Vorrichtung zum automatisierten Betanken eines ein Netzmittel aufnehmenden Avivagekopfes einer Doppeldraht-Zwirnspindel

Country Status (7)

Country Link
US (1) US5136836A (enrdf_load_stackoverflow)
EP (1) EP0410018B1 (enrdf_load_stackoverflow)
JP (1) JPH0359128A (enrdf_load_stackoverflow)
CS (1) CS368790A2 (enrdf_load_stackoverflow)
DD (1) DD300112A5 (enrdf_load_stackoverflow)
DE (1) DE58906597D1 (enrdf_load_stackoverflow)
IN (1) IN178127B (enrdf_load_stackoverflow)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102618979A (zh) * 2011-01-28 2012-08-01 武汉纺织大学 一种具有在线加热加湿的柔顺倍捻锭子

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10058722A1 (de) * 2000-11-25 2002-06-06 Volkmann Gmbh Faden-Benetzungseinrichtung, insbesondere für eine Doppeldraht-Zwirnspindel, sowie mit einer solchen Faden-Benetzungseinrichtung ausgerüstete Doppeldraht-Zwirnspindel
KR100393755B1 (ko) * 2001-09-17 2003-08-02 주식회사 에이스조립시스템 나사체결로봇
KR100433448B1 (ko) * 2002-02-18 2004-05-31 유니온정보기술 주식회사 개인휴대정보단말기 케이스
KR100942340B1 (ko) * 2009-03-26 2010-02-12 최효영 휴대단말기 보호커버
CN109137168A (zh) * 2018-10-29 2019-01-04 沈阳宏大纺织机械有限责任公司 一种换筒滑板
CN110067052B (zh) * 2019-04-11 2021-10-08 湖北枫树线业有限公司 一种制备间位芳纶纱线的牵伸系统及其应用方法
LU504418B1 (de) * 2023-06-06 2024-12-06 Saurer Spinning Solutions Gmbh & Co Kg Faserbandanleger und Verfahren

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE1259751B (de) * 1963-12-21 1968-01-25 Palitex Project Co Gmbh Doppeldrahtzwirnspindel
GB1385313A (en) * 1973-04-05 1975-02-26 Palitex Project Co Gmbh Double-twisting spindle
DE8116261U1 (de) * 1981-06-02 1982-09-30 Saurer-Allma Gmbh, 8960 Kempten Doppeldrahtzwirnspindel
JPS58144134A (ja) * 1982-02-12 1983-08-27 Toyoda Autom Loom Works Ltd 紡機における自動作業機の停止位置規正装置
JPS60122376U (ja) * 1984-01-21 1985-08-17 村田機械株式会社 二重撚糸機における潤滑剤塗布装置
DE3409233C1 (de) * 1984-03-14 1985-10-10 Palitex Project-Company Gmbh, 4150 Krefeld Faden-Benetzungseinrichtung,insbesondere fuer eine Doppeldrahtzwirnspindel
JPS62110931A (ja) * 1985-11-11 1987-05-22 Murata Mach Ltd 二重撚糸機における潤滑液の塗布装置
JPS6426732A (en) * 1987-07-22 1989-01-30 Murata Machinery Ltd Double twister

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102618979A (zh) * 2011-01-28 2012-08-01 武汉纺织大学 一种具有在线加热加湿的柔顺倍捻锭子
CN102618979B (zh) * 2011-01-28 2014-09-10 武汉纺织大学 一种具有在线加热加湿的柔顺倍捻锭子

Also Published As

Publication number Publication date
US5136836A (en) 1992-08-11
JPH0359128A (ja) 1991-03-14
EP0410018A1 (de) 1991-01-30
DD300112A5 (de) 1992-05-21
IN178127B (enrdf_load_stackoverflow) 1997-03-08
DE58906597D1 (de) 1994-02-10
CS368790A2 (en) 1991-12-17

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