WO1979000420A1 - Methode et appareil d'etablissement de valeurs de mesure correspondant a la densite lineaire de meches de fibres - Google Patents

Methode et appareil d'etablissement de valeurs de mesure correspondant a la densite lineaire de meches de fibres Download PDF

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Publication number
WO1979000420A1
WO1979000420A1 PCT/EP1978/000020 EP7800020W WO7900420A1 WO 1979000420 A1 WO1979000420 A1 WO 1979000420A1 EP 7800020 W EP7800020 W EP 7800020W WO 7900420 A1 WO7900420 A1 WO 7900420A1
Authority
WO
WIPO (PCT)
Prior art keywords
measuring
arrangement
gear
signal
circuit arrangement
Prior art date
Application number
PCT/EP1978/000020
Other languages
German (de)
English (en)
Inventor
R Moser
Original Assignee
Rieter Ag Maschf
R Moser
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 Rieter Ag Maschf, R Moser filed Critical Rieter Ag Maschf
Priority to JP50006378A priority Critical patent/JPS55500021A/ja
Priority to DE19782857278 priority patent/DE2857278A1/de
Publication of WO1979000420A1 publication Critical patent/WO1979000420A1/fr

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Classifications

    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01GPRELIMINARY TREATMENT OF FIBRES, e.g. FOR SPINNING
    • D01G23/00Feeding fibres to machines; Conveying fibres between machines
    • D01G23/06Arrangements in which a machine or apparatus is regulated in response to changes in the volume or weight of fibres fed, e.g. piano motions

Definitions

  • the present invention concerns a method of producing measuring values corresponding to the linear density (titre) of fiber slivers produced in spinning preparation, in which the fiber sliver is transported at operating speed, through a measuring funnel, for establishing a pressure measuring signal depending on the linear density, and an apparatus for implementing the method.
  • the pressure generated in the compressing device is opposed to the pressure generated in the measuring funnel, the relation between the pressure in the measuring. funnel, or in one leg of a manometer respectively, and the pressure in the other leg of the manometer supposedly is a measure of the linear density of the fiber sliver solely.
  • the pressure signal generated in the measuring funnel corresponding to the linear density of the fiber sliver also depends proportionally on the fiber sliver speed
  • the compensation using the air compressing device driven at a rotational speed proportional to the fiber sliver speed results in an over- compensation.
  • the press ure generated by the air compressing device depends on the square of its rotational speed, measuring values still biased by the fiber sliver throughput speed are obtained.
  • the inventive method achieves this objective in that the pressure measuring signal is transduced into a proportional voltage signal, which continually is integrated over a time period which the fiber sliver requires for covering a path corresponding to the length of a measuring distance.
  • the inventive apparatus for implementing the method with a pneumatic measuring funnel for the fiber sliver is characterized in that a pneumatic / electric transducer is connected pneumatically with the measuring funnel and electrically with an integrating circuit arrangement, and that a Controlling logic arrangement on one hand side is connected with a proximity initiator cooperating with a gear of a gear arrangement of a spinning preparatory machine, and on the other hand side is connected to the integrating circuit arrangement.
  • the integrating circuit arrangement additionally can be designed as a sample and hold circuit arrangement with a holding condenser.
  • the approach initiator can be designed in such manner that at each passage of a tooth of the gear an impulse is transmitted to the control logic device, which for opening and closing two switches can be designed in such manner that between a first and a second impulse an integration value is formed at the collecting condenser, and that between the second and a third impulse is held at the holding condenser.
  • the integrating circuit arrangement is provided with an output circuit connected to the holding condenser for an Output signal which, e.g. can be used for controlling a gear arrangement of the spinning preparatory machine.
  • Fig. 2 an example of the course of the voltage at the sample and hold condenser plotted diagrammatically.
  • Fig. 3 an apparatus on a spinning preparatory machine, used for producing a measuring value corresponding to the linear density of the fiber sliver.
  • a pneumatic duct 3 merges into the funnel 2, using which the pressure in the measuring funnel 2 is measured in the known manner, which pressure is a measure of the linear density . of the fiber sliver 1.
  • the pneumatic measuring signal is transmitted via the duct 3 to a pneumatic / electric transducer 4, by which the pressure measured by a pressure measuring device is transformed into a proportional voltage signal.
  • the voltage signal is transmitted via the circuit 5 to an integrating circuit arrangement 6, in which the voltage is integrated.
  • an Integration end value of the voltage is formed over a time period, which the fiber sliver requires for covering a distance chosen as a constant measuring length s.
  • the integration value corresponding to an output signal 7 is held in storage until it is canceled as the riext integration value arrives.
  • the output signal 7 thus forms a measure for the linear density (titre) of a constant length of the fiber sliver, which measure is well suited for control purposes or by suitable transformation can be transduced into a normal measure value of linear density.
  • Fig. 2 the course of. the voltage U (p) depending on the pneumatic pressure is plotted (towards the right hand side) against the length 1 covered by the fiber sliver (extending upward in the diagram).
  • the integration value ⁇ (p) corresponding to the output signal 7 forms a step line, the Step width s of which corresponds to the measuring length of the fiber sliver.
  • the integration value ⁇ (p) thus forms the mean value of the voltage U (p) over ehe integration interval, and eoineides the closer with the momentaneous voltage course, the shorter the measuring length s corresponding to the path covered by the fiber sliver is chosen.
  • the output signal 7 forming a measure of the linear density of the fiber sliver thus is entirely independent of the fiber sliver speed, as the integration value is formed always over the same constant length of sliver.
  • the integration time and the pressure p change in opposite senses, if the fiber sliver speed changes just as the fiber sliver covers the path corresponding to the measuring length s faster or slower.
  • a fiber sliver 1 is transported through a measuring funnel 2 before reaching a pair of rolls 8 of a spinning preparatory machine not shown in raore detail.
  • the increasing funnel 2 via a pneumatic duct 3 is connected with a pneumatic / electric transducer 4.
  • a circuit 5 conveys the signal into an integrating circuit 6 which is laid out as an integration and sample and hold circuit and which yields an output signal 7.
  • a motor 9 drives a gear arrangement 10 of the spinning preparatory machine, the drive of the pair of rolls 8 only being shown in the figure.
  • Facing a gear 11 of the gear arrangement 10 a proximity initiator 12 is arranged, which is electrically connected with a control logic device 13.
  • the control logic device 13 is connected with two switches 14 and 15 and with the integrating circuit 6.
  • the pneumatic pressure measured in the measuring funnel 2 is transformed in the transducer 4 into a proportional voltage and is transmitted to into the integrating circuit 6 designed as an integrating and sample and hold circuit.
  • the proximity initiator 12 now scans, eg the distance t of two neighboring teeth of the gear 11, ie each time a tooth passes it, an impulse is transmitted. to the control logic device 13.
  • the gear tooth gauge t however, is constant from tooth to tooth and corresponds to a small length s of the sliver 1 being transported by the rolls 8, and thus corresponds to a constant measuring length s.
  • the control logic 13 opens and closes the switches in such rhythm that continuously the voltage values are integrated on the collector condenser 16 between a first and a second impulse produced by the proximity initiator 12, then are transferred to the hold condenser 17 where they are stored between the second and a third impulse, and subsequently are canceled as the next following integration value arrives.
  • a circuit connected with the hold condenser now continuously yields, with each rotational movement of the gear 11 over the gear tooth gauge t, an integrated voltage value which is proportional to the linear density of the measuring length s of the fiber sliver 1, or respectively of the fiber sliver length transported by this rotational movement of the gear 11.
  • the output signal 7 now forms a suitable control value for spinning preparation, which is independent of the processing speed of the fiber sliver.
  • the signal 7 can be transmitted, for controlling the speed of the motor 9, into a control arrangement 18 connected to the motor 9, as shown in Fig. 3 with broken lines.
  • the speed of the gear arrangement 10 and of the pair of rolls 8 connected therewith can be controlled in function of the linear density of the fiber sliver 1.

Landscapes

  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Spinning Or Twisting Of Yarns (AREA)

Abstract

La methode est utilisee pour etablir des valeurs de mesure en fonction de la densite lineaire d'une meche de fibres transportee au travers d'un entonnoir de mesure. Un signal de mesure transmis de l'entonnoir de mesure (2) est transforme en un signal de tension electrique proportionnel et est integre de maniere continue. L'appareil de l'invention comprend l'entonnoir de mesure en question connecte pneumatiquement a un transducteur pneumatique/electrique (4). Le transducteur transmet son signal a un dispositif de circuit d'integration (6). Un dispositif logique de commande (13) d'une part coopere avec une roue dentee (11) d'un dispositif d'engrenage (10) d'une machine preparatoire a filer et, d'autre part, est connecte au dispositif de circuit d'integration. Un initiateur de proximite (12) transmet une impulsion au dispositif logique de commande a chaque passage d'une dent. Le circuit d'integration fournit des valeurs de mesure sous forme de signaux de commande a des machines a filer de preparation, lesdits signaux etant independants de la vitesse de la meche de fibres.
PCT/EP1978/000020 1977-12-22 1978-10-17 Methode et appareil d'etablissement de valeurs de mesure correspondant a la densite lineaire de meches de fibres WO1979000420A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
JP50006378A JPS55500021A (fr) 1977-12-22 1978-10-17
DE19782857278 DE2857278A1 (de) 1977-12-22 1978-10-17 Method and apparatus for producing measuring values corresponding to the linear density of fibre slivers

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CH1586677A CH629546A5 (de) 1977-12-22 1977-12-22 Verfahren zur bestimmung des titers von in der spinnereivorbereitung anfallenden faserbaendern und vorrichtung zur durchfuehrung des verfahrens.
CH15866/77 1977-12-22

Publications (1)

Publication Number Publication Date
WO1979000420A1 true WO1979000420A1 (fr) 1979-07-12

Family

ID=4412629

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/EP1978/000020 WO1979000420A1 (fr) 1977-12-22 1978-10-17 Methode et appareil d'etablissement de valeurs de mesure correspondant a la densite lineaire de meches de fibres

Country Status (10)

Country Link
EP (1) EP0007374B1 (fr)
JP (1) JPS55500021A (fr)
AR (1) AR225607A1 (fr)
BE (1) BE873050A (fr)
CH (1) CH629546A5 (fr)
ES (1) ES476695A1 (fr)
GB (1) GB2036102B (fr)
IT (1) IT1100258B (fr)
NL (1) NL7810843A (fr)
WO (1) WO1979000420A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0679862A2 (fr) * 1994-04-29 1995-11-02 Rieter Ingolstadt Spinnereimaschinenbau AG Correction des signaux de mesure d'épaisseur d'un ruban fibreux de textile, obtenus par une paire de rouleaux palpeurs

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2182904A (en) * 1985-11-18 1987-05-28 British Nuclear Fuels Plc A positioning mechanism
US5093025A (en) * 1989-04-07 1992-03-03 Tosoh Corporation Cholesteric liquid crystal polyester containing optically active group
JPH03180519A (ja) * 1989-12-04 1991-08-06 Mas Fab Rieter Ag スライバにおける繊度及びその変動の連続的検出方法及びこの方法を実施する装置
US5289381A (en) * 1989-12-04 1994-02-22 Maschinenfabrik Rieter Ag Method and apparatus for continuously determining the fineness of fibers in slivers
DE19921429B4 (de) * 1998-06-29 2017-03-02 Rieter Ingolstadt Gmbh Verfahren und Vorrichtung zur Fehlerkorrektur eines von einem Meßorgan gelieferten Meßwertes von Faserband in einer Textilmaschine

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2682144A (en) * 1947-03-18 1954-06-29 Deering Milliken Res Trust Control method and means
US2843882A (en) * 1955-06-08 1958-07-22 Us Rubber Co Evener
DE1167709B (de) * 1962-02-05 1964-04-09 Walther Wegener Dr Ing Verfahren und Vorrichtung zum selbsttaetigen Vergleichmaessigen von Faserbaendern, Faservliesen u. dgl. beim Verstrecken
US3154810A (en) * 1962-12-31 1964-11-03 Monsanto Co Denier monitoring and control system
FR1408755A (fr) * 1964-06-22 1965-08-20 Inst Regelungstechnik Groupe d'étirage de commande pour bancs d'étirage de peignés, notamment pour les bancs d'étirage de peignés à curseur rapide
DE1912329A1 (de) * 1968-03-11 1969-10-09 Teijin Ltd Vorrichtung fuer Deniermessung von Garn

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2682144A (en) * 1947-03-18 1954-06-29 Deering Milliken Res Trust Control method and means
US2843882A (en) * 1955-06-08 1958-07-22 Us Rubber Co Evener
DE1167709B (de) * 1962-02-05 1964-04-09 Walther Wegener Dr Ing Verfahren und Vorrichtung zum selbsttaetigen Vergleichmaessigen von Faserbaendern, Faservliesen u. dgl. beim Verstrecken
US3154810A (en) * 1962-12-31 1964-11-03 Monsanto Co Denier monitoring and control system
FR1408755A (fr) * 1964-06-22 1965-08-20 Inst Regelungstechnik Groupe d'étirage de commande pour bancs d'étirage de peignés, notamment pour les bancs d'étirage de peignés à curseur rapide
DE1912329A1 (de) * 1968-03-11 1969-10-09 Teijin Ltd Vorrichtung fuer Deniermessung von Garn

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0679862A2 (fr) * 1994-04-29 1995-11-02 Rieter Ingolstadt Spinnereimaschinenbau AG Correction des signaux de mesure d'épaisseur d'un ruban fibreux de textile, obtenus par une paire de rouleaux palpeurs
DE4414972A1 (de) * 1994-04-29 1995-11-02 Rieter Ingolstadt Spinnerei Korrektur eines von einem Tastwalzenpaar zur Dicke eines textilen Faserbandes gewonnenen Meßsignals
EP0679862A3 (fr) * 1994-04-29 1996-02-28 Rieter Ingolstadt Spinnerei Correction des signaux de mesure d'épaisseur d'un ruban fibreux de textile, obtenus par une paire de rouleaux palpeurs.
DE4414972C2 (de) * 1994-04-29 2003-07-24 Rieter Ingolstadt Spinnerei Korrektur eines von einem Tastwalzenpaar zur Dicke eines textilen Faserbandes gewonnenen Meßsignals

Also Published As

Publication number Publication date
AR225607A1 (es) 1982-04-15
GB2036102A (en) 1980-06-25
IT7829707A0 (it) 1978-11-13
EP0007374B1 (fr) 1983-10-26
ES476695A1 (es) 1979-11-16
GB2036102B (en) 1982-11-03
BE873050A (fr) 1979-06-22
NL7810843A (nl) 1979-06-26
EP0007374A1 (fr) 1980-02-06
CH629546A5 (de) 1982-04-30
JPS55500021A (fr) 1980-01-24
IT1100258B (it) 1985-09-28

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