EP0795052B2 - Verfahren zur herstellung cellulosischer formkörper und ein garn aus cellulosischen filamenten - Google Patents

Verfahren zur herstellung cellulosischer formkörper und ein garn aus cellulosischen filamenten Download PDF

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Publication number
EP0795052B2
EP0795052B2 EP95939293A EP95939293A EP0795052B2 EP 0795052 B2 EP0795052 B2 EP 0795052B2 EP 95939293 A EP95939293 A EP 95939293A EP 95939293 A EP95939293 A EP 95939293A EP 0795052 B2 EP0795052 B2 EP 0795052B2
Authority
EP
European Patent Office
Prior art keywords
air
solution
process according
cellulose
filaments
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
EP95939293A
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German (de)
English (en)
French (fr)
Other versions
EP0795052B1 (de
EP0795052A1 (de
Inventor
Jürgen Pitowski
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.)
Akzo Nobel NV
Original Assignee
Akzo Nobel NV
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Classifications

    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01FCHEMICAL FEATURES IN THE MANUFACTURE OF ARTIFICIAL FILAMENTS, THREADS, FIBRES, BRISTLES OR RIBBONS; APPARATUS SPECIALLY ADAPTED FOR THE MANUFACTURE OF CARBON FILAMENTS
    • D01F2/00Monocomponent artificial filaments or the like of cellulose or cellulose derivatives; Manufacture thereof
    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01DMECHANICAL METHODS OR APPARATUS IN THE MANUFACTURE OF ARTIFICIAL FILAMENTS, THREADS, FIBRES, BRISTLES OR RIBBONS
    • D01D5/00Formation of filaments, threads, or the like
    • D01D5/06Wet spinning methods
    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01DMECHANICAL METHODS OR APPARATUS IN THE MANUFACTURE OF ARTIFICIAL FILAMENTS, THREADS, FIBRES, BRISTLES OR RIBBONS
    • D01D5/00Formation of filaments, threads, or the like
    • D01D5/08Melt spinning methods
    • D01D5/088Cooling filaments, threads or the like, leaving the spinnerettes
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T428/00Stock material or miscellaneous articles
    • Y10T428/29Coated or structually defined flake, particle, cell, strand, strand portion, rod, filament, macroscopic fiber or mass thereof
    • Y10T428/2913Rod, strand, filament or fiber
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T428/00Stock material or miscellaneous articles
    • Y10T428/29Coated or structually defined flake, particle, cell, strand, strand portion, rod, filament, macroscopic fiber or mass thereof
    • Y10T428/2913Rod, strand, filament or fiber
    • Y10T428/2933Coated or with bond, impregnation or core
    • Y10T428/2964Artificial fiber or filament
    • Y10T428/2965Cellulosic

Definitions

  • the invention relates to a method for producing cellulosic molded bodies, wherein a solution of cellulose in a tertiary amine N-oxide and optionally water is formed in a hot state and the molded solution is cooled before introduction into a coagulation bath with air, and a Gam cellulosic filaments.
  • the air gap is the area between the shaping element and the coagulation bath in which the cellulose is precipitated.
  • the temperature in the air gap is lower than in the spinneret, but is significantly higher than room temperature due to the heat radiation through the spinneret and resulting from the Enthalpiestrom the moldings heating of the air. Due to the permanent evaporation of water, which is usually used as a coagulation bath, so humid conditions are present in the air gap.
  • WO 93/19230 to cool the molded solution immediately after molding, faster cooling is effected so that the tackiness of the molded solution decreases correspondingly faster.
  • Post-published application WO 98/28218 describes a process for producing cellulose filaments with a solution of cellulose in an organic solvent, wherein the solution is extruded through a die having a plurality of holes to form a plurality of strands, the strands via a gas gap in directs a spin bath containing water to form the filaments and introduces a forced gas flow through the gap parallel to the water surface in the spin bath.
  • the air can have a temperature of 0 ° C to 50 ° C.
  • the dew point in WO 98/28218 is preferably in the range of 4 to 10 ° C (water vapor content 5 to 7.5 g / kg).
  • the temperature of the air is then in the range of 5 ° C to 30 ° C, but the air at 10 ° C may also have a relative humidity of 100%. It is also preferable to use air having a temperature of 10 ° C to 40 ° C and a relative humidity in the dew point range of 4 ° C to 10 ° C, using air having a typical temperature of 20 ° C.
  • the object of the present invention is to improve such a method but in particular also the properties of the shaped bodies produced therewith, preferably filaments, or of a filament yarn.
  • This object is achieved by a method for producing cellulosic molded bodies, wherein a solution of cellulose in a tertiary amine N-oxide and optionally water is formed in a hot state and the molded solution is cooled before introduction into a coagulation bath with air, wherein the Cooling conditioned air is used, which has a water content of 0.1 to 2 g of water vapor per kg of dry air and their relative humidity is less than 85%.
  • This water content of conditioned air corresponds to a dew point range of -8 ° C (2 g of steam per kg of dry air) to about -50 ° C (0.1 g of steam per kg of dry air) and is thus well outside the scope of WO 98/28218 ,
  • the water content of the conditioned air is 0.7 (dew point -24 ° C) to 2 g of steam per kg of dry air.
  • the cooling can be done with flowing air, which is blown against the formed solution or sucked from this.
  • the aspiration may be accomplished by providing conditioned air and soaking it through, for example, a bundle of freshly spun fibers or filaments. Particularly advantageous is a combination of blowing and suction.
  • the shaped solution may be exposed to the conditioned air all the way to the coagulation bath, or only over part of that length, it being advantageous to apply the air in the first part, that is, it is advantageous. H. in the region of the air gap, which adjoins directly to the shaping element.
  • the conditioned air should flow at an angle of 0 to 120 °, preferably 90 °, relative to the direction of movement of the formed solution, the angle of 0 ° corresponding to an incident flow opposite to the direction of travel of the formed solution.
  • fibers in particular filaments, films, hollow fibers, membranes, for example for use in dialysis, oxygenation or filtration can be produced in an advantageous manner.
  • the formation of the solution into a desired cellulosic molding can be carried out with known spinnerets for the production of fibers, slot dies or hollow thread spinnerets. Following formation, i. before introducing the shaped solution into the coagulation bath, it can be stretched.
  • a yarn of cellulosic filaments prepared from a solution of cellulose in a tertiary amine N-oxide and optionally water, is characterized in that the cross-sectional areas of the filaments have a coefficient of variation of less than 6%.
  • the influence of the water content or of the mixing ratio is manifested during filament production, in particular in irregularities of the filament cross sections.
  • the coefficient of variation of the filament cross-sectional areas is 30% in a yarn with 50 individual filaments.
  • the coefficient of variation at the same temperature lowered to 5.8%.
  • Even when using warmer air, for example, 40 ° C. but a low water content of 3.4 g / kg and a relative humidity of 7.4% results in a coefficient of variation of 11.3%, which is thus a factor of 2.7 lower than when using cooler air with higher humidity.
  • it is therefore essential to carry out a conditioning of the air gap with dry air.
  • the temperature of the cooling air plays rather a minor role.
  • the filaments were stretched in the air gap by a factor of 16 and dried after passing through a water bath for coagulation and washed washing baths to remove the NMMO.
  • the take-off speed was 420 m / min.
  • the respectively obtained filament bundles were cut through at a distance of one meter 2 times perpendicular to the bundle axis.
  • the cross-sectional areas of the filaments were transferred by means of a light microscope (magnification 570: 1) and a video camera in a computer-image analysis system (Quantimet 970) and evaluated.
  • the area of each filament was determined. From the mean value of the filament cross sections of each bundle examined, where two sectional images were evaluated per bundle, and the standard deviation, the coefficient of variation of the filament cross section area was calculated as the ratio of standard deviation to mean value.
  • the resulting air stream was then cooled to the desired temperature with a heat exchanger.
  • the relative humidity and the water content were determined with a psychrometer (ALME-MO 2290-2 with psychrometer AN 846 or humidity / temperature probe AFH 9646-2).
  • ambient air was cooled until it had a relative humidity of 100%. Subsequently, a further cooling, and the auskondensierende water was deposited. With this procedure, the air was allowed to dry to a water content of about 4 g / kg. Subsequently, the air was reheated to the desired temperature. The relative humidity and water content were measured with the psychrometer.
  • the air previously predried by condensation was further dried using a dehumidifier (Model 120 KS from Munters GmbH).
  • the reheating of the dry air was also carried out with a heat exchanger.
  • the determination of the relative humidity and the water content of the air, which was dried to a water content of less than 4 g / kg, was carried out with a mirror-cooled dew point meter (S4000 RS from MI-CHELL Instruments).
  • Table I clearly shows that the lowest coefficients of variation of the filament cross-sectional areas result, almost independently of the temperature of the conditioned air, when the conditioned air has a low water content, as in Examples No. 2. 3. 9. 10 and 11, in which at water contents below 2 g / kg, the coefficient of variation is only of the order of 5 to 6%. The relative humidity in these examples was below 30%.
  • Example 22 shows the conditions of the ambient air at a temperature of 21 ° C, at a relative humidity of 60% and a water content of 9.2 g / kg. In this example, although the relative humidity in the claimed area, but not the water content, and there is a coefficient of variation of 23.4%.

Landscapes

  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)
  • Artificial Filaments (AREA)
  • Spinning Methods And Devices For Manufacturing Artificial Fibers (AREA)
  • Yarns And Mechanical Finishing Of Yarns Or Ropes (AREA)
  • Treatments For Attaching Organic Compounds To Fibrous Goods (AREA)
  • Paper (AREA)
EP95939293A 1994-12-02 1995-11-24 Verfahren zur herstellung cellulosischer formkörper und ein garn aus cellulosischen filamenten Expired - Lifetime EP0795052B2 (de)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE4442890 1994-12-02
DE4442890 1994-12-02
PCT/EP1995/004634 WO1996017118A1 (de) 1994-12-02 1995-11-24 Verfahren zur herstellung cellulosischer formkörper und ein garn aus cellulosischen filamenten

Publications (3)

Publication Number Publication Date
EP0795052A1 EP0795052A1 (de) 1997-09-17
EP0795052B1 EP0795052B1 (de) 1998-06-24
EP0795052B2 true EP0795052B2 (de) 2006-04-26

Family

ID=6534703

Family Applications (1)

Application Number Title Priority Date Filing Date
EP95939293A Expired - Lifetime EP0795052B2 (de) 1994-12-02 1995-11-24 Verfahren zur herstellung cellulosischer formkörper und ein garn aus cellulosischen filamenten

Country Status (16)

Country Link
US (2) US5902532A (es)
EP (1) EP0795052B2 (es)
JP (1) JPH10510011A (es)
KR (1) KR100398294B1 (es)
CN (1) CN1066214C (es)
AT (1) ATE167709T1 (es)
AU (1) AU695212B2 (es)
CA (1) CA2205466A1 (es)
CZ (1) CZ288742B6 (es)
DE (1) DE59502659D1 (es)
ES (1) ES2120243T5 (es)
HU (1) HU220367B (es)
PL (1) PL183097B1 (es)
SK (1) SK67697A3 (es)
TW (1) TW300924B (es)
WO (1) WO1996017118A1 (es)

Families Citing this family (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB9605504D0 (en) * 1996-03-15 1996-05-15 Courtaulds Plc Manufacture of elongate members
AT405531B (de) 1997-06-17 1999-09-27 Chemiefaser Lenzing Ag Verfahren zur herstellung cellulosischer fasern
AT408656B (de) * 1998-06-04 2002-02-25 Chemiefaser Lenzing Ag Verfahren zur herstellung cellulosischer formkörper
US6773648B2 (en) 1998-11-03 2004-08-10 Weyerhaeuser Company Meltblown process with mechanical attenuation
DE19954152C2 (de) * 1999-11-10 2001-08-09 Thueringisches Inst Textil Verfahren und Vorrichtung zur Herstellung von Cellulosefasern und Cellulosefilamentgarnen
AT408355B (de) * 2000-06-29 2001-11-26 Chemiefaser Lenzing Ag Verfahren zur herstellung cellulosischer fasern
DE10043297B4 (de) * 2000-09-02 2005-12-08 Thüringisches Institut für Textil- und Kunststoff-Forschung e.V. Verfahren zur Herstellung von Cellulosefasern und Cellulosefilamentgarnen
DE60222432D1 (de) * 2001-08-11 2007-10-25 Chemiefaser Lenzing Ag Verfahren zur herstellung zellulosischer formkörper
DE10200406A1 (de) * 2002-01-08 2003-07-24 Zimmer Ag Spinnvorrichtung und -verfahren mit turbulenter Kühlbeblasung
DE10200405A1 (de) * 2002-01-08 2002-08-01 Zimmer Ag Spinnvorrichtung und -verfahren mit Kühlbeblasung
DE10206089A1 (de) 2002-02-13 2002-08-14 Zimmer Ag Bersteinsatz
DE202005002863U1 (de) 2005-02-21 2006-06-29 Cordenka Gmbh Airbaggewebe
US7905721B2 (en) * 2007-06-05 2011-03-15 Husky Injection Molding Systems Ltd. Air source device and a method for use in a molding system
TWI667378B (zh) 2014-01-03 2019-08-01 奧地利商蘭精股份有限公司 纖維素纖維

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4416698A (en) 1977-07-26 1983-11-22 Akzona Incorporated Shaped cellulose article prepared from a solution containing cellulose dissolved in a tertiary amine N-oxide solvent and a process for making the article
DD277289A1 (de) 1988-11-24 1990-03-28 Schwarza Chemiefaser Verfahren zur verspinnung viskoelastischer polymerloesungen
WO1994028218A1 (en) 1993-05-24 1994-12-08 Courtaulds Fibres (Holdings) Limited Spinning cell

Family Cites Families (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4246221A (en) * 1979-03-02 1981-01-20 Akzona Incorporated Process for shaped cellulose article prepared from a solution containing cellulose dissolved in a tertiary amine N-oxide solvent
US4144080A (en) * 1977-07-26 1979-03-13 Akzona Incorporated Process for making amine oxide solution of cellulose
US4324593A (en) * 1978-09-01 1982-04-13 Akzona Incorporated Shapeable tertiary amine N-oxide solution of cellulose, shaped cellulose product made therefrom and process for preparing the shapeable solution and cellulose products
AT395863B (de) * 1991-01-09 1993-03-25 Chemiefaser Lenzing Ag Verfahren zur herstellung eines cellulosischen formkoerpers
AT395862B (de) * 1991-01-09 1993-03-25 Chemiefaser Lenzing Ag Verfahren zur herstellung eines cellulosischen formkoerpers
ATA53792A (de) * 1992-03-17 1995-02-15 Chemiefaser Lenzing Ag Verfahren zur herstellung cellulosischer formkörper, vorrichtung zur durchführung des verfahrens sowie verwendung einer spinnvorrichtung
GB2307203B (en) * 1993-04-21 1997-09-10 Chemiefaser Lenzing Ag Process for the production of cellulose fibres having a reduced tendency to fibrillation
TW257811B (es) * 1993-04-21 1995-09-21 Chemiefaser Lenzing Ag
AT401271B (de) * 1993-07-08 1996-07-25 Chemiefaser Lenzing Ag Verfahren zur herstellung von cellulosefasern
JP3445865B2 (ja) * 1995-04-06 2003-09-08 花王株式会社 セルロース系繊維改質法

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4416698A (en) 1977-07-26 1983-11-22 Akzona Incorporated Shaped cellulose article prepared from a solution containing cellulose dissolved in a tertiary amine N-oxide solvent and a process for making the article
DD277289A1 (de) 1988-11-24 1990-03-28 Schwarza Chemiefaser Verfahren zur verspinnung viskoelastischer polymerloesungen
WO1994028218A1 (en) 1993-05-24 1994-12-08 Courtaulds Fibres (Holdings) Limited Spinning cell

Non-Patent Citations (6)

* Cited by examiner, † Cited by third party
Title
DDR-Fachbereichsstandard Viskoseseide (1983)
DDR-Standard Polyamidseide (1973)
Fourné: "Synthetische Fasern" (1964); S. 368, 606-607, 680
R. Jährling: "Die Herstellung der Zellwolle und Kunstseide" (1957); S. 323, Tab. 26
W. Weischet: "Einführung in die Allgemeine Klimatologie"; B.G. Teubner, Stuttgart (1977); S. 142-145
Zusammenfassung der JP-A-05-44104

Also Published As

Publication number Publication date
AU695212B2 (en) 1998-08-06
PL320507A1 (en) 1997-10-13
SK67697A3 (en) 1997-10-08
EP0795052B1 (de) 1998-06-24
DE59502659D1 (de) 1998-07-30
CZ288742B6 (cs) 2001-08-15
PL183097B1 (pl) 2002-05-31
JPH10510011A (ja) 1998-09-29
ATE167709T1 (de) 1998-07-15
CN1066214C (zh) 2001-05-23
AU4117796A (en) 1996-06-19
WO1996017118A1 (de) 1996-06-06
TW300924B (es) 1997-03-21
ES2120243T5 (es) 2006-11-16
ES2120243T3 (es) 1998-10-16
HU220367B (hu) 2001-12-28
KR100398294B1 (ko) 2003-12-31
US6042944A (en) 2000-03-28
EP0795052A1 (de) 1997-09-17
CA2205466A1 (en) 1996-06-06
US5902532A (en) 1999-05-11
CN1168701A (zh) 1997-12-24
CZ167497A3 (en) 1997-10-15
HUT77266A (hu) 1998-03-02

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