EP1339902B1 - Method and device for making a strand comprising glass filaments - Google Patents
Method and device for making a strand comprising glass filaments Download PDFInfo
- Publication number
- EP1339902B1 EP1339902B1 EP01982538A EP01982538A EP1339902B1 EP 1339902 B1 EP1339902 B1 EP 1339902B1 EP 01982538 A EP01982538 A EP 01982538A EP 01982538 A EP01982538 A EP 01982538A EP 1339902 B1 EP1339902 B1 EP 1339902B1
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- EP
- European Patent Office
- Prior art keywords
- filaments
- spinning
- scraper
- roll
- unit
- 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
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Classifications
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- D—TEXTILES; PAPER
- D02—YARNS; MECHANICAL FINISHING OF YARNS OR ROPES; WARPING OR BEAMING
- D02G—CRIMPING OR CURLING FIBRES, FILAMENTS, THREADS, OR YARNS; YARNS OR THREADS
- D02G3/00—Yarns or threads, e.g. fancy yarns; Processes or apparatus for the production thereof, not otherwise provided for
- D02G3/02—Yarns or threads characterised by the material or by the materials from which they are made
- D02G3/16—Yarns or threads made from mineral substances
- D02G3/18—Yarns or threads made from mineral substances from glass or the like
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- D—TEXTILES; PAPER
- D02—YARNS; MECHANICAL FINISHING OF YARNS OR ROPES; WARPING OR BEAMING
- D02G—CRIMPING OR CURLING FIBRES, FILAMENTS, THREADS, OR YARNS; YARNS OR THREADS
- D02G3/00—Yarns or threads, e.g. fancy yarns; Processes or apparatus for the production thereof, not otherwise provided for
- D02G3/22—Yarns or threads characterised by constructional features, e.g. blending, filament/fibre
- D02G3/38—Threads in which fibres, filaments, or yarns are wound with other yarns or filaments, e.g. wrap yarns, i.e. strands of filaments or staple fibres are wrapped by a helically wound binder yarn
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- D—TEXTILES; PAPER
- D02—YARNS; MECHANICAL FINISHING OF YARNS OR ROPES; WARPING OR BEAMING
- D02G—CRIMPING OR CURLING FIBRES, FILAMENTS, THREADS, OR YARNS; YARNS OR THREADS
- D02G3/00—Yarns or threads, e.g. fancy yarns; Processes or apparatus for the production thereof, not otherwise provided for
- D02G3/02—Yarns or threads characterised by the material or by the materials from which they are made
- D02G3/16—Yarns or threads made from mineral substances
- D02G3/18—Yarns or threads made from mineral substances from glass or the like
- D02G3/182—Yarns or threads made from mineral substances from glass or the like the glass being present only in part of the structure
- D02G3/187—Yarns or threads made from mineral substances from glass or the like the glass being present only in part of the structure in the sheath
Definitions
- the invention relates to obtaining a winding of a glass wick, made in particular of glass filaments directly from a die.
- This die can be indifferently fed either in balls or pieces of glass other shapes (reflow fiber-drawing process), either in molten glass from of a furnace (direct fusion fiberization process).
- the glass may be glass E, glass C, or any other composition likely to be fibered.
- a known device as partially described in the patent application EP 0 928 840 consists of a drawing cylinder, located substantially vertically of the die and around which are wound in the form of a tablecloth the filaments of glass falling from the die, into a spinning assembly transforming the sheet of filaments in a wick, and in a winder for winding the wick.
- the spinning assembly comprises a squeegee, or tool intended to scrape, swivel, adapted to abut against the surface of the cylinder to loosen the filaments of said cylinder after a rotation of approximately 270 °, and an elongated conical element parallel to the axis of rotation of the cylinder, located above the cylinder and presenting a longitudinal opening which is arranged in the continuity of the doctor blade and by which are directed the filaments after their detachment of the cylinder, the element oblong being traversed from one end to the other, centrally, by a wire of soul around which wrap the projected filaments in the form of a wick from the cylinder.
- the wick comes out of the open conical end of the element oblong to be wound on the winder placed laterally to the oblong element.
- the core wire is made of plastic material and used to provide a composite wick more resistant to traction than a composite wick only glass.
- a set of pre-spinning which is disposed upstream of the spinning assembly, at substantially 180 ° relative to the arrival of the filaments on the drawing cylinder.
- the location of the pre-spinning assembly is thus considered at the rear of the cylinder, the front being defined by the location of deposition of the filaments on the cylinder.
- upstream and downstream are defined with respect to the direction of scrolling filaments on the cylinder from the die.
- the pre-spinning assembly is essentially operated at beginning of the drawing of the filaments during the rise in speed of the cylinder.
- the arrival of the filaments to the spinning assembly is short-circuited, thus avoiding obtaining a winding that would present at the beginning a wick in the title not conform to that provided by the standards.
- the pre-spinning assembly is provided with a swivel squeegee capable of coming into stop on drawing cylinder and drum with internal spindle winding of the filaments.
- the pre-spinning scraper takes off the filament web, therefore before its arrival on the squeegee, the filaments coming to wind around the spindle pre-spinning drum.
- Pre-spinning squeegee is removed from the draw roll when the speed of the cylinder has reached a regime establishing the desired diameter filaments.
- the operator In order to avoid too much accumulation of filaments around the spindle of the pre-spinning drum, the operator must proceed with the extraction at the back cylinder; however it should be able to simultaneously monitor in front of the cylinder any occasional breakage of the filaments delivered by the die, which would justify immediate intervention. So, at the start of the device winding or during a recovery of the winding after a breakage of filaments, two operators are in fact required, an operator who is solicited to be present at the back of the draw cylinder to assist manual extraction pre-spin drum, while the other is at the front to ensure the stretching of the filaments.
- the existing device proves too bulky to allow an integration of several of them arranged side by side in an installation direct fusion.
- the object of the invention is to obviate these disadvantages by providing a winding device of a glass wire whose operation generates a reduced manpower and high productivity.
- Another object of the invention is to reduce the size of the device of spinning, allowing the insertion of one or more devices into a direct fusion fiberization, the dimensions of which are imposed by various technical and economic constraints.
- the pre-spinning assembly is thus located at the front of the cylinder, a single operator is sufficient to manage and control the operation of the device.
- This provision at the front of the drawing cylinder also has the advantage of not having to dispose of and manage only one glass waste sink that receives both the breakage filaments of the die and the flock formed around the drum spindle pre-spinning.
- the receiving element of the spinning assembly has a bottom abutting the sliding surface of the doctor blade, a rear wall cylindrical concavity of longitudinal axis parallel to the axis of rotation of the cylinder and a longitudinal façade opening.
- the receiving element is integral with the spin doctor and is arranged so that its bottom and the surface of slip of the squeegee are coplanar, moving the squeegee against the cylinder surface being realized by the pivoting of the spinning assembly.
- the bottom of the receiving element and the surface of slip of the squeegee are embossed to help slip the filaments.
- the guide means in the element of receiving the spinning assembly are provided to cross from one side to the other said receiving element in a diagonal line from one end lower front of the longitudinal opening to an upper lateral point of the receiving element.
- the guide means consist rather in a traction wire, which may be glass or thermoplastic for example. This tractor wire can be either cut after the raise, or kept inside the wick, constituting in the latter case a core wire for the wick which he increases the tensile strength.
- a Venturi tube capable of sucking the towing wire is arranged so as to project it into the receiving element of the set of spinning.
- a guillotine is associated with the outlet of the Venturi tube to cut the towing wire after the beginning of winding of the wick.
- a rotating annular device is provided at the exit of the receiving element of the spinning assembly towards the winder to round the wick. Just downstream of this ring device, is placed an air injection nozzle in front of which the wick passes to complete its smoothing.
- Sizing means are provided arranged respectively upstream of the deposition of the filaments on the cylinder and upstream of the spinning assembly for coat the surface of the roll before depositing the filaments and filaments before their detachment of the cylinder, which ensures the sizing filaments over their entire outer periphery.
- the device comprises at least two spinning assemblies arranged upstream of the pre-spinning device and suitable for work together or separately.
- Each spinning set includes in this case a spinning squeegee whose width of the blade corresponds to a width part of the cylinder and complementary to the width of the other blade so as to separate and take off in two parts the filament web.
- FIGS. 1 and 2 is illustrated the device of the prior art, it allows drawing glass filaments 10 from a die 11 and winding them onto a winder 12.
- This device comprises a thread puller 13 which makes it possible to pre-stretch the filaments when falling from the die 11, a rotating drawing cylinder around which rolled in the form of a sheet the filaments 10 brought from the wire puller and clad against the surface 21 of the cylinder, substantially over its entire width and according to a deposition line L, a spinning assembly 30 comprising on the one hand a doctor blade retractable spinning device 31 disposed substantially at 270 ° from the deposit line L filaments and for detaching filaments when abutting against the surface 21 of the cylinder, and secondly, a receiving element 32 for the tapered filaments which is of conical shape, as well as a through core wire 40 the receiving element 32 and around which the filaments 10 are wound, the thread of core surrounded by the filaments being wound on the winder 12.
- the device of the prior art also comprises a set of pre-spinning 50 consisting of a rotary pre-spinning drum 51, and a pre-spinning doctor blade 52 adapted to be moved or pivoted between a rest position and a operating position for which the doctor blade is pressed against the surface 21 of the cylinder at the beginning of the stretching of the filaments or during a restart of the drawing filaments after a breakage of these.
- the rotary drum 51 comprises an internal pin 53 around which the projected filaments are wound in the drum via the doctor blade 52.
- a sizing system 60 of the filaments is provided downstream of the pre-spinning assembly 50 and upstream of the spinning assembly 30, this system having a translation movement back and forth parallel to the axis of rotation of the cylinder 20 so as to spray the assembly the filament web rotating on the cylinder.
- the device of the prior art operates as follows: the core wire 40 from a reel of wire not shown in Figures 1 and 2 is drawn to the winder 12 crossing the receiving element 32 of the set of spinning from one end to the other, parallel to the axis of rotation and so central, while the filaments 10 falling from the die 11 are brought manually against the surface 21 of the cylinder to be plated. Filaments are wrapped around the cylinder 20 in rotation and the pre-spinning assembly 50 is made operational at the start of the stretching of the filaments, that is to say at the beginning of the rotation of the cylinder. The sheet of filaments is peeled off by means of of the squeegee 52, the filaments being thrown into the drum 51 by force centrifuge that was transmitted to them during their rotation around the cylinder 20. They are then received around the internal pin 53 drum 52 and quickly form fluff, which is manually pulled by an operator, at medium for example of a wire puller, to avoid excessive accumulation in the drum 51.
- the doctor blade 52 of the pre-spinning assembly 50 is raised in the rest position so that the filament web continues its rotation to the squeegee 31.
- the spinning squeegee 31 was brought in the lowered position so that its blade presses on the surface 21 of the cylinder of so that the filaments come off the surface 21 and walk on the surface sliding surface 33 of the doctor blade, this sliding surface being inclined in direction of the receiving element 32 to which the filaments are guided, the projection of the filaments being favored by the centrifugal force that was transmitted during their rotation on the cylinder.
- the reception element 32 presents a deflection wall 34 adapted to return the filaments to the core wire 40 passing through from one side and longitudinally said receiving element. Filaments wrapping around the core wire then constitute a wick M which is drawn to the winder 12 to be wound.
- FIGS. 3 to 6 illustrate the device of the invention, the common elements to the device of the prior art are identified by identical references.
- the device of the invention provided with its drawing cylinder 20 comprises even a spinning assembly 30 and pre-spinning assembly 50, as well as means 40 for guiding the web of the spinning assembly to the winder, which are constituted by a tractor wire.
- the set of pre-spinning 50 has been disposed downstream of the spinning assembly 30, and preferably beyond 270 ° of the deposit line L so that the filaments, thus starting the lowering the cylinder, are more easily caught by the pre-spinning doctor blade 52.
- This new provision of the invention makes it possible to solicit only one only operator, since it can remain positioned at the front of the cylinder 20 of way to pull on the wrap wrapped around the pin 53 of the set of pre-spinning 50 when starting the device while monitoring the stretching of the filaments from die 11 in order to be able to intervene immediately in case of break the filaments.
- the flock also wraps up much more easily because filaments are driven in the downward direction of the cylinder.
- a waste pit common 14 is sufficient to collect the floss and glass in case of breakage.
- the location of the pre-spinning assembly of the prior art in upstream of the spinning assembly had the disadvantage that at the time of raise the pre-spinning doctor to allow the tablecloth to reach the squeegee spinning, the risk that the blade of the pre-spinning squeegee hangs some filaments existed, damaging the sheet of filaments arriving towards the spinning assembly.
- the spinning assembly 30 comprising the doctor blade 31 and the element of reception 32 differs from that of the prior art in that the element of reception 32 does not have a conical shape.
- the conical shape of art front towards the exit of the core wire towards the winder allows to channel the circulating air to facilitate the winding of the filaments around the core wire and facilitates the guiding of the wire surrounded by the filaments. The invention achieves this goal differently.
- the spinning assembly visible in FIGS. 5 and 6 comprises a bottom 36 of width equivalent to that of the cylinder 20, the side walls 35 and a wall cylindrical rear longitudinal 34 which delimit an opening of 37 longitudinal facade, the rear wall 34 having a function identical to the deflection wall of the prior art.
- the bottom 36 is inclined according to the slope of the sliding surface 33 of the spinning bay.
- the blade 31 is integral with said bottom 36 to ensure perfect continuity of sliding surface for the filaments; and by the way, this fastening has the advantage of only rotating one piece.
- the bottom 36 as the surface 33 of the doctor blade are advantageously embossed.
- the cylindrical shape of the rear wall 34 generates a concavity which is a deflecting surface of circulating air to facilitate winding filaments projected around the tractor wire 40.
- the side wall 35 located on the side of the winder 12 is provided with an orifice 38 allowing the withdrawal of the towing wire surrounded by the filaments towards the winder, the thread tractor 40 being unwound from a reel 41, and running in the element of receiving 32 along a diagonal that starts from the lower lateral end 39 of the opening 37 located opposite the side wall 35 provided with the orifice 38 and which opens out at the orifice 38.
- the tow wire 40 may advantageously be brought to the level of the end 39 by means of a Venturi tube 42 ensuring the aspiration and the projection of the wire to be recovered manually at the level of the orifice 38 by a brush not shown.
- the diagonal path followed by the tractor wire implies that the distance between the sheet of filaments and the tow wire passing at the end 39 is minimized so that upon the arrival of the web on the sliding surface 33 of the squeegee after its detachment by the blade 31a of the squeegee, first filaments can begin to wrap in order to cause the following of the tablecloth as a snowball effect which guarantees a better winding of filaments, unlike the prior art showing a soul wire arranged so central in the oblong element accommodating the glass filaments.
- the towing wire of the invention is not necessarily plastic as in the prior art but may be simply glass. Thread tractor is not primarily intended to guarantee a stronger wire but primarily serves as a guide wire and stimulus. Indeed, this tractor wire is necessary for the formation of the wick to then be pulled to the winder in order to be rolled up.
- the towing wire or guidance becomes no longer indispensable since the filaments of the wick pulled by the winding of the latter automatically lead the filaments peeling off the cylinder.
- a guillotine 43 which serves to cut the towing wire after the beginning of the winding of the wick.
- the tow wire in case of breakage of the wick, the tow wire, then called recovery, is again essential to revive the winding of the filaments around it as soon as they detach from the cylinder.
- Traction wire 40 also has the advantage of allowing the arrangement of the winder 12 at any location relative to the spinning assembly, that either on the same level or on a different floor making the wick's journey non-rectilinear output of the spinning assembly, the towing wire constituting a wire guide and total support for the entire wick which facilitates its conduct along a more sinuous path lowering the risk of breaking the wick.
- the thread 40 is above all a tow wire according to the invention and not necessarily a wire soul since it is usually cut from the beginning of winding of the wick.
- a device 70 At the exit of the orifice 38 is arranged a device 70 called "false twist" constituted by a annular member rotating at high speed through which the wick to roll on itself to round it up.
- a device 70 it is still necessary at the exit of the device 70 to adjust the volume of the wick so that it is not shaggy the otherwise rendering it unusable, but that the filaments remain in alignment with the wick.
- An air injection nozzle 71 located immediately downstream of the device 70 is therefore intended to further entangle the filaments and smooth the outer surface of the wick.
- a power-up system 72 well known in the state of the art, consisting of bars staggered so that the wick straddles these bars, is disposed after the nozzle 71 to give the wick the voltage necessary for the correct construction of the coil which must reach a density of 400 kg / m 3 .
- a second spray system 61 is provided (FIG. 3), positioned downstream of the pre-spinning assembly 50 and upstream of the deposit line L filaments to coat the surface 21 of the cylinder 20 to ensure a perfect sizing of the inner surface of the sheet of filaments that stick to the same the surface 21 of said cylinder.
- an articulated arm not shown is provided for mechanically positioning the filaments on the cylinder.
- each spinning assembly comprises a doctor blade whose blade 31a has a length which corresponds to the number of filaments desired to be peeled off to separate the filament web into two separate parts so winding, respectively, with two separate tractive wires, two wicks on two individual winders.
- the arrangement of the pre-spinning assembly 50 downstream of the two sets In particular, spinning makes it possible to operate only one spinning assembly for winding only a part of the sheet if necessary, for example for tests, the other part of the sheet being recovered by the pre-spinning assembly to be directly thrown into the waste pit 14.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Textile Engineering (AREA)
- Spinning Methods And Devices For Manufacturing Artificial Fibers (AREA)
- Yarns And Mechanical Finishing Of Yarns Or Ropes (AREA)
- Manufacture, Treatment Of Glass Fibers (AREA)
- Spinning Or Twisting Of Yarns (AREA)
- Glass Compositions (AREA)
Abstract
Description
L'invention concerne l'obtention d'un enroulement d'une mèche de verre, constituée en particulier de filaments de verre issus directement d'une filière. Cette filière peut être indifféremment alimentée soit en billes ou morceaux de verre d'autres formes (procédé de fibrage par refusion), soit en verre fondu provenant d'un four (procédé de fibrage par fusion directe). Le verre peut être du verre E, du verre C, ou de toute autre composition susceptible d'être fibrée.The invention relates to obtaining a winding of a glass wick, made in particular of glass filaments directly from a die. This die can be indifferently fed either in balls or pieces of glass other shapes (reflow fiber-drawing process), either in molten glass from of a furnace (direct fusion fiberization process). The glass may be glass E, glass C, or any other composition likely to be fibered.
Un dispositif connu, tel que décrit en partie dans la demande de brevet EP 0 928 840 consiste en un cylindre d'étirage, situé sensiblement à la verticale de la filière et autour duquel sont enroulés sous forme de nappe les filaments de verre tombant depuis la filière, en un ensemble de filage transformant la nappe de filaments en une mèche, et en un bobinoir destiné à l'enroulement de la mèche.A known device, as partially described in the patent application EP 0 928 840 consists of a drawing cylinder, located substantially vertically of the die and around which are wound in the form of a tablecloth the filaments of glass falling from the die, into a spinning assembly transforming the sheet of filaments in a wick, and in a winder for winding the wick.
L'ensemble de filage comporte une racle, ou outil destiné à racler, pivotant, apte à venir en butée contre la surface du cylindre pour décoller les filaments dudit cylindre après une rotation d'environ 270°, et un élément oblong de forme conique parallèle à l'axe de rotation du cylindre, situé au-dessus du cylindre et présentant une ouverture longitudinale qui est disposée dans la continuité de la racle et par laquelle sont dirigés les filaments après leur décollement du cylindre, l'élément oblong étant traversé d'une extrémité à l'autre, de manière centrale, par un fil d'âme autour duquel s'enroulent sous forme d'une mèche les filaments projetés depuis le cylindre. La mèche sort de l'extrémité conique ouverte de l'élément oblong pour être enroulée sur le bobinoir placé latéralement à l'élément oblong. Dans ce document, le fil d'âme est en matière plastique et utilisé pour fournir une mèche composite résistant davantage à la traction qu'une mèche composée uniquement de verre.The spinning assembly comprises a squeegee, or tool intended to scrape, swivel, adapted to abut against the surface of the cylinder to loosen the filaments of said cylinder after a rotation of approximately 270 °, and an elongated conical element parallel to the axis of rotation of the cylinder, located above the cylinder and presenting a longitudinal opening which is arranged in the continuity of the doctor blade and by which are directed the filaments after their detachment of the cylinder, the element oblong being traversed from one end to the other, centrally, by a wire of soul around which wrap the projected filaments in the form of a wick from the cylinder. The wick comes out of the open conical end of the element oblong to be wound on the winder placed laterally to the oblong element. In this document, the core wire is made of plastic material and used to provide a composite wick more resistant to traction than a composite wick only glass.
Non décrit dans ce document mais de manière connue, il est avantageusement prévu dans un tel dispositif de l'art antérieur, un ensemble de pré-filage qui est disposé en amont de l'ensemble de filage, à sensiblement 180° par rapport à l'arrivée des filaments sur le cylindre d'étirage. L'emplacement de l'ensemble de pré-filage est ainsi considéré à l'arrière du cylindre, l'avant étant défini par l'endroit de dépôt des filaments sur le cylindre. Dans la description qui suit, les termes amont et aval sont définis par rapport au sens de défilement des filaments sur le cylindre depuis la filière.Not described in this document but in known manner, it is advantageously provided in such a device of the prior art, a set of pre-spinning which is disposed upstream of the spinning assembly, at substantially 180 ° relative to the arrival of the filaments on the drawing cylinder. The location of the pre-spinning assembly is thus considered at the rear of the cylinder, the front being defined by the location of deposition of the filaments on the cylinder. In the description that follows, the terms upstream and downstream are defined with respect to the direction of scrolling filaments on the cylinder from the die.
L'ensemble de pré-filage est essentiellement mis en fonctionnement au démarrage de l'étirage des filaments lors de la montée en vitesse du cylindre. L'arrivée des filaments jusqu'à l'ensemble de filage est court-circuitée, évitant ainsi l'obtention d'un enroulement qui présenterait à son début une mèche au titre non conforme à celui prévu par les normes.The pre-spinning assembly is essentially operated at beginning of the drawing of the filaments during the rise in speed of the cylinder. The arrival of the filaments to the spinning assembly is short-circuited, thus avoiding obtaining a winding that would present at the beginning a wick in the title not conform to that provided by the standards.
L'ensemble de pré-filage est muni d'une racle pivotante apte à venir en butée sur le cylindre d'étirage et d'un tambour pourvu d'une broche interne d'enroulement des filaments. Lorsque l'ensemble de pré-filage est opérationnel, la racle de pré-filage décolle la nappe de filaments, avant par conséquent son arrivée sur la racle de filage, les filaments venant se bobiner autour de la broche du tambour de pré-filage. La racle de pré-filage est écartée du cylindre d'étirage lorsque la vitesse du cylindre a atteint un régime établissant le diamètre souhaité des filaments.The pre-spinning assembly is provided with a swivel squeegee capable of coming into stop on drawing cylinder and drum with internal spindle winding of the filaments. When the pre-spinning assembly is operational, the pre-spinning scraper takes off the filament web, therefore before its arrival on the squeegee, the filaments coming to wind around the spindle pre-spinning drum. Pre-spinning squeegee is removed from the draw roll when the speed of the cylinder has reached a regime establishing the desired diameter filaments.
Afin d'éviter une trop grosse accumulation des filaments autour de la broche du tambour de pré-filage, l'opérateur doit procéder à l'extraction à l'arrière du cylindre; cependant il devrait pouvoir simultanément surveiller à l'avant du cylindre toute casse occasionnelle des filaments délivrés par la filière, qui justifierait une intervention immédiate. Ainsi, au démarrage du dispositif d'enroulement ou lors d'une relance de l'enroulement après une casse des filaments, deux opérateurs sont en fait nécessaires, un opérateur qui est sollicité pour être présent à l'arrière du cylindre d'étirage afin d'aider à l'extraction manuel du tambour de pré-filage, tandis que l'autre se trouve à l'avant pour veiller à l'étirage des filaments.In order to avoid too much accumulation of filaments around the spindle of the pre-spinning drum, the operator must proceed with the extraction at the back cylinder; however it should be able to simultaneously monitor in front of the cylinder any occasional breakage of the filaments delivered by the die, which would justify immediate intervention. So, at the start of the device winding or during a recovery of the winding after a breakage of filaments, two operators are in fact required, an operator who is solicited to be present at the back of the draw cylinder to assist manual extraction pre-spin drum, while the other is at the front to ensure the stretching of the filaments.
Par ailleurs, le dispositif existant s'avère trop encombrant pour permettre une intégration de plusieurs d'entre eux disposés côte à côte dans une installation de fusion directe.Moreover, the existing device proves too bulky to allow an integration of several of them arranged side by side in an installation direct fusion.
L'invention a pour but d'obvier à ces inconvénients en fournissant un dispositif d'enroulement d'un fil de verre dont le fonctionnement engendre une main d'oeuvre réduite et une productivité élevée.The object of the invention is to obviate these disadvantages by providing a winding device of a glass wire whose operation generates a reduced manpower and high productivity.
Un autre but de l'invention est de réduire l'encombrement du dispositif de filage, permettant d'insérer un ou plusieurs dispositifs dans une installation de fibrage par fusion directe dont les dimensions sont imposées par diverses contraintes techniques et économiques.Another object of the invention is to reduce the size of the device of spinning, allowing the insertion of one or more devices into a direct fusion fiberization, the dimensions of which are imposed by various technical and economic constraints.
Selon l'invention, le dispositif d'obtention de l'enroulement d'au moins une mèche de filaments de verre sur un bobinoir à partir d'une multitude de filaments, comportant
- un cylindre d'étirage autour duquel sont enroulés sous forme de nappe les filaments;
- un ensemble de filage qui comprend d'une part, une racle de filage escamotable apte à venir en butée contre la surface du cylindre de façon à décoller les filaments et pourvu d'une surface de glissement, et d'autre part, un élément de réception des filaments décollés par la racle;
- des moyens de guidage des filaments dans l'élément de réception et jusqu'au bobinoir sous forme de mèche, et
- un ensemble de pré-filage pour les filaments destinés à être mis au rebut, l'ensemble de pré-filage étant muni d'un tambour de pré-filage et d'une racle de pré-filage apte à soulever les filaments du cylindre d'étirage afin qu'ils soient projetés dans ledit tambour,
- a drawing cylinder around which the filaments are wound in sheet form;
- a spinning assembly which comprises, on the one hand, a retractable spinning doctor capable of abutting against the surface of the roll so as to loosen the filaments and provided with a sliding surface, and, on the other hand, an element of reception of the filaments detached by the doctor blade;
- means for guiding the filaments in the receiving element and to the winder in the form of a wick, and
- a pre-spinning assembly for the filaments to be discarded, the pre-spinning assembly being provided with a pre-spinning drum and a pre-spinning squeegee capable of lifting the filaments of the spinning cylinder; stretching so that they are projected into said drum,
L'ensemble de pré-filage est ainsi situé à l'avant du cylindre, un seul opérateur suffit à la gestion et au contrôle du fonctionnement du dispositif. Cette disposition à l'avant du cylindre d'étirage présente également l'avantage de n'avoir à disposer et à gérer qu'un seul puits à déchets du verre qui reçoit à la fois les filaments de casse de la filière et la bourre formée autour de la broche du tambour de pré-filage.The pre-spinning assembly is thus located at the front of the cylinder, a single operator is sufficient to manage and control the operation of the device. This provision at the front of the drawing cylinder also has the advantage of not having to dispose of and manage only one glass waste sink that receives both the breakage filaments of the die and the flock formed around the drum spindle pre-spinning.
Selon une caractéristique, l'élément de réception de l'ensemble de filage comporte un fond abouté à la surface de glissement de la racle, une paroi arrière à concavité cylindrique d'axe longitudinal parallèle à l'axe de rotation du cylindre et une ouverture de façade longitudinale. De préférence, l'élément de réception est solidaire de la racle de filage et est agencé de sorte que son fond et la surface de glissement de la racle sont coplanaires, le déplacement de la racle contre la surface du cylindre étant réalisé par le pivotement de l'ensemble de filage.According to one characteristic, the receiving element of the spinning assembly has a bottom abutting the sliding surface of the doctor blade, a rear wall cylindrical concavity of longitudinal axis parallel to the axis of rotation of the cylinder and a longitudinal façade opening. Preferably, the receiving element is integral with the spin doctor and is arranged so that its bottom and the surface of slip of the squeegee are coplanar, moving the squeegee against the cylinder surface being realized by the pivoting of the spinning assembly.
Avantageusement, le fond de l'élément de réception et la surface de glissement de la racle sont gaufrés pour aider à la glisse des filaments. Advantageously, the bottom of the receiving element and the surface of slip of the squeegee are embossed to help slip the filaments.
Selon une autre caractéristique, les moyens de guidage dans l'élément de réception de l'ensemble de filage sont prévus pour traverser d'un côté à l'autre ledit élément de réception selon une ligne diagonale allant d'une extrémité inférieure avant de l'ouverture longitudinale jusqu'à un point latéral supérieur de l'élément de réception. Les moyens de guidage consistent plutôt en un fil tracteur, qui peut être en verre ou en matière thermoplastique par exemple. Ce fil tracteur peut être soit coupé après la relance, soit conservé à l'intérieur de la mèche, constituant dans ce dernier cas un fil d'âme pour la mèche dont il augmente la résistance à la traction.According to another characteristic, the guide means in the element of receiving the spinning assembly are provided to cross from one side to the other said receiving element in a diagonal line from one end lower front of the longitudinal opening to an upper lateral point of the receiving element. The guide means consist rather in a traction wire, which may be glass or thermoplastic for example. This tractor wire can be either cut after the raise, or kept inside the wick, constituting in the latter case a core wire for the wick which he increases the tensile strength.
Avantageusement, un tube de Venturi apte à aspirer le fil tracteur est disposé de manière à le projeter dans l'élément de réception de l'ensemble de filage. De préférence, une guillotine est associée à la sortie du tube de Venturi pour couper le fil tracteur après le commencement de l'enroulement de la mèche.Advantageously, a Venturi tube capable of sucking the towing wire is arranged so as to project it into the receiving element of the set of spinning. Preferably, a guillotine is associated with the outlet of the Venturi tube to cut the towing wire after the beginning of winding of the wick.
Selon encore une autre caractéristique, un dispositif annulaire tournant est prévu à la sortie de l'élément de réception de l'ensemble de filage en direction du bobinoir afin d'arrondir la mèche. Juste en aval de ce dispositif annulaire, est placée une buse d'injection d'air devant laquelle passe la mèche pour achever son lissage.According to yet another characteristic, a rotating annular device is provided at the exit of the receiving element of the spinning assembly towards the winder to round the wick. Just downstream of this ring device, is placed an air injection nozzle in front of which the wick passes to complete its smoothing.
Des moyens d'ensimage sont prévus disposés respectivement en amont du dépôt des filaments sur le cylindre et en amont de l'ensemble de filage pour enduire respectivement la surface du cylindre avant le dépôt des filaments et les filaments avant leur décollement du cylindre, ce qui permet d'assurer l'ensimage des filaments sur l'ensemble de leur périphérie externe.Sizing means are provided arranged respectively upstream of the deposition of the filaments on the cylinder and upstream of the spinning assembly for coat the surface of the roll before depositing the filaments and filaments before their detachment of the cylinder, which ensures the sizing filaments over their entire outer periphery.
Enfin, il peut être avantageux que le dispositif comporte au moins deux ensembles de filage disposés en amont du dispositif de pré-filage et aptes à fonctionner ensemble ou séparément. Chaque ensemble de filage comporte dans ce cas une racle de filage dont la largeur de la lame correspond à une largeur partielle du cylindre et complémentaire de la largeur de l'autre lame de façon à séparer et décoller en deux parties la nappe de filaments.Finally, it may be advantageous if the device comprises at least two spinning assemblies arranged upstream of the pre-spinning device and suitable for work together or separately. Each spinning set includes in this case a spinning squeegee whose width of the blade corresponds to a width part of the cylinder and complementary to the width of the other blade so as to separate and take off in two parts the filament web.
D'autres caractéristiques et avantages de l'invention apparaítront à la lecture de la description qui suit, en regard des dessins annexés sur lesquels :
- la figure 1 illustre schématiquement une vue en coupe et de côté d'un dispositif de l'art antérieur;
- la figure 2 est une vue de dessus de la figure 1;
- la figure 3 illustre schématiquement une vue en coupe et de côté d'un dispositif selon l'invention;
- la figure 4 est une vue de dessus de la figure 3;
- la figure 5 est une vue agrandie de l'ensemble de filage de la figure 3;
- la figure 6 représente une vue en perspective de l'ensemble de filage du dispositif;
- la figure 7 illustre schématiquement une vue en coupe et de côté d'une variante du dispositif de l'invention;
- la figure 8 est une vue de dessus de la figure 7.
- Figure 1 schematically illustrates a sectional and side view of a device of the prior art;
- Figure 2 is a top view of Figure 1;
- Figure 3 schematically illustrates a sectional and side view of a device according to the invention;
- Figure 4 is a top view of Figure 3;
- Fig. 5 is an enlarged view of the spinning assembly of Fig. 3;
- Figure 6 shows a perspective view of the spinning assembly of the device;
- Figure 7 schematically illustrates a sectional view and side of a variant of the device of the invention;
- Figure 8 is a top view of Figure 7.
Sur les figures 1 et 2 est illustré le dispositif de l'art antérieur, il permet
l'étirage de filaments de verre 10 issus d'une filière 11 et leur enroulement sur un
bobinoir 12.In FIGS. 1 and 2 is illustrated the device of the prior art, it allows
Ce dispositif comporte un tire-fil 13 qui permet de pré-étirer les filaments
lorsqu'ils tombent de la filière 11, un cylindre d'étirage 20 rotatif autour duquel
s'enroulent sous forme de nappe les filaments 10 amenés du tire-fil et plaqués
contre la surface 21 du cylindre, sensiblement sur la totalité de sa largeur et selon
une ligne de dépôt L, un ensemble de filage 30 comprenant d'une part, une racle
de filage 31 escamotable, disposée sensiblement à 270° de la ligne de dépôt L
des filaments et servant au décollement des filaments lorsqu'il est mis en butée
contre la surface 21 du cylindre, et d'autre part, un élément de réception 32 pour
les filaments décollés qui est de forme conique, ainsi qu'un fil d'âme 40 traversant
l'élément de réception 32 et autour duquel s'entortillent les filaments 10, le fil
d'âme entouré des filaments étant bobiné sur le bobinoir 12.This device comprises a
Le dispositif de l'art antérieur comporte également un ensemble de pré-filage
50 consistant en un tambour de pré-filage 51 rotatif, et en une racle de pré-filage
52 apte à être déplacée ou à pivoter entre une position de repos et une
position de fonctionnement pour laquelle la racle est appuyée contre la surface 21
du cylindre au début de l'étirage des filaments ou lors d'une relance de l'étirage
des filaments après une casse de ces derniers. Le tambour rotatif 51 comprend
une broche interne 53 autour de laquelle s'enroulent les filaments projetés dans le
tambour via la racle 52.The device of the prior art also comprises a set of pre-spinning
50 consisting of a rotary pre-spinning
Un système d'ensimage 60 des filaments, par exemple du type spray, est
prévu en aval de l'ensemble de pré-filage 50 et en amont de l'ensemble de filage
30, ce système présentant un mouvement de translation en va-et-vient
parallèlement à l'axe de rotation du cylindre 20 de manière à asperger l'ensemble
de la nappe de filaments tournant sur le cylindre.A sizing
Le dispositif de l'art antérieur fonctionne comme suit : le fil d'âme 40
provenant d'une bobine de fil non représentée sur les figures 1 et 2 est tiré
jusqu'au bobinoir 12 en traversant l'élément de réception 32 de l'ensemble de
filage d'une extrémité à l'autre, parallèlement à l'axe de rotation et de manière
centrale, tandis que les filaments 10 tombant de la filière 11 sont amenés
manuellement contre la surface 21 du cylindre pour y être plaqués. Les filaments
s'enroulent autour du cylindre 20 en rotation et l'ensemble de pré-filage 50 est
rendu opérationnel au démarrage de l'étirage des filaments, c'est-à-dire au début
de la mise en rotation du cylindre. La nappe de filaments est décollée au moyen
de la racle 52, les filaments étant projetés dans le tambour 51 par la force
centrifuge qui leur a été transmise au cours de leur rotation autour du cylindre 20.
Ils sont alors réceptionnés autour de la broche 53 interne au tambour 52 et
forment rapidement de la bourre, qui est tirée manuellement par un opérateur, au
moyen par exemple d'un tire-fil, pour éviter une accumulation trop importante dans
le tambour 51.The device of the prior art operates as follows: the
Lorsque l'étirage est considéré convenable, c'est-à-dire que la vitesse de
rotation du cylindre a atteint la valeur de consigne de sorte que le diamètre des
filaments présente la taille souhaitée, la racle 52 de l'ensemble de pré-filage 50
est relevée en position de repos de manière que la nappe de filaments continue sa
rotation jusqu'à la racle de filage 31. La racle de filage 31 pivotante a été amenée
en position abaissée de façon que sa lame appuie sur la surface 21 du cylindre de
sorte que les filaments se décollent de la surface 21 et cheminent sur la surface
de glissement 33 de la racle, cette surface de glissement étant inclinée en
direction de l'élément de réception 32 vers lequel sont guidés les filaments, la
projection des filaments étant favorisée par la force centrifuge qui leur a été
transmise lors de leur rotation sur le cylindre. L'élément de réception 32 présente
une paroi de renvoi 34 apte à renvoyer les filaments sur le fil d'âme 40 traversant
de part en part et longitudinalement ledit élément de réception. Les filaments
s'enroulant autour du fil d'âme constituent alors une mèche M qui est tirée
jusqu'au bobinoir 12 pour y être bobinée.When stretching is considered suitable, that is, the speed of
rotation of the cylinder reached the set point so that the diameter of the
filaments has the desired size, the
Les figures 3 à 6 illustrent le dispositif de l'invention, les éléments communs au dispositif de l'art antérieur sont repérés par des références identiques. FIGS. 3 to 6 illustrate the device of the invention, the common elements to the device of the prior art are identified by identical references.
Le dispositif de l'invention muni de son cylindre d'étirage 20 comprend de
même un ensemble de filage 30 et ensemble de pré-filage 50, ainsi que des
moyens 40 de guidage de la nappe de l'ensemble de filage jusqu'au bobinoir, qui
sont constitués par un fil tracteur. A la différence toutefois, que l'ensemble de pré-filage
50 a été disposé en aval de l'ensemble de filage 30, et de préférence au-delà
des 270° de la ligne de dépôt L de façon que les filaments, amorçant ainsi la
descente du cylindre, soient happés plus facilement par la racle de pré-filage 52.The device of the invention provided with its
Cette nouvelle disposition propre à l'invention permet de ne solliciter qu'un
seul opérateur, puisque celui-ci peut rester positionné à l'avant du cylindre 20 de
manière à tirer sur la bourre enroulée autour de la broche 53 de l'ensemble de
pré-filage 50 lors de la mise en route du dispositif tout en surveillant l'étirage des
filaments depuis la filière 11 afin de pouvoir intervenir immédiatement en cas de
casse des filaments. La bourre s'enroule aussi beaucoup plus facilement car les
filaments sont entraínés dans le sens descendant du cylindre. Un puits à déchets
commun 14 suffit pour recueillir la bourre et le verre en cas de casse.This new provision of the invention makes it possible to solicit only one
only operator, since it can remain positioned at the front of the
En outre, l'emplacement de l'ensemble de pré-filage de l'art antérieur en amont de l'ensemble de filage présentait comme inconvénient qu'au moment de relever la racle de pré-filage pour laisser la nappe parvenir jusqu'à la racle de filage, le risque que la lame de la racle de pré-filage accroche quelques filaments existait, endommageant la nappe de filaments arrivant vers l'ensemble de filage.In addition, the location of the pre-spinning assembly of the prior art in upstream of the spinning assembly had the disadvantage that at the time of raise the pre-spinning doctor to allow the tablecloth to reach the squeegee spinning, the risk that the blade of the pre-spinning squeegee hangs some filaments existed, damaging the sheet of filaments arriving towards the spinning assembly.
Par ailleurs, l'ensemble de filage 30 comprenant la racle 31 et l'élément de
réception 32 se distingue de celui de l'art antérieur en ce que l'élément de
réception 32 ne présente pas une forme conique. La forme conique de l'art
antérieur vers la sortie du fil d'âme en direction du bobinoir permet de canaliser
l'air en circulation pour faciliter l'enroulement des filaments autour du fil d'âme et
favorise le guidage du fil entourés des filaments. L'invention parvient à ce but
différemment.Furthermore, the spinning
L'ensemble de filage visible sur les figures 5 et 6 comporte un fond 36 de
largeur équivalente à celle du cylindre 20, des parois latérales 35 et une paroi
arrière longitudinale 34 de forme cylindrique qui délimitent une ouverture de
façade 37 longitudinale, la paroi arrière 34 présentant une fonction identique à la
paroi de renvoi de l'art antérieur.The spinning assembly visible in FIGS. 5 and 6 comprises a bottom 36 of
width equivalent to that of the
Le fond 36 est incliné selon la pente de la surface de glissement 33 de la
rade de filage. De préférence, la racle 31 est solidaire dudit fond 36 afin d'assurer
une parfaite continuité de surface de glissement pour les filaments; et par ailleurs,
cette solidarisation a l'avantage de ne faire pivoter qu'une seule pièce. De plus,
pour optimiser la glisse des filaments, le fond 36 comme la surface 33 de la racle
sont avantageusement gaufrés.The bottom 36 is inclined according to the slope of the sliding
La forme cylindrique de la paroi arrière 34 engendre une concavité qui
constitue une surface de renvoi de l'air en circulation pour faciliter l'enroulement
des filaments projetés autour du fil tracteur 40.The cylindrical shape of the
La paroi latérale 35 située du côté du bobinoir 12 est dotée d'un orifice 38
autorisant la sortie du fil tracteur entouré des filaments vers le bobinoir, le fil
tracteur 40 étant dévidé depuis une bobine 41, et cheminant dans l'élément de
réception 32 selon une diagonale qui part de l'extrémité inférieure latérale 39 de
l'ouverture 37 située à l'opposé de la paroi latérale 35 pourvue de l'orifice 38 et qui
débouche au niveau de l'orifice 38. Le fil tracteur 40 peut avantageusement être
amené au niveau de l'extrémité 39 grâce à un tube de Venturi 42 assurant
l'aspiration et la projection du fil pour être récupéré manuellement au niveau de
l'orifice 38 par un goupillon non illustré.The
Le chemin en diagonale suivi par le fil tracteur implique que la distance
entre la nappe de filaments et le fil tracteur passant au niveau de l'extrémité 39 est
minimisée de sorte que dès l'arrivée de la nappe sur la surface de glissement 33
de la racle après son décollement par la lame 31a de la racle, des premiers
filaments puissent commencer à s'enrouler afin d'entraíner les suivants de la
nappe comme un effet boule de neige ce qui garantit un meilleur enroulement des
filaments, au contraire de l'art antérieur montrant un fil d'âme disposé de manière
centrale dans l'élément oblong accueillant les filaments de verre.The diagonal path followed by the tractor wire implies that the distance
between the sheet of filaments and the tow wire passing at the
Le fil tracteur de l'invention n'est pas nécessairement en matière plastique comme dans l'art antérieur mais peut être constitué simplement de verre. Le fil tracteur n'a pas pour objectif premier de garantir l'obtention d'un fil plus résistant mais sert avant tout de fil de guidage et de relance. En effet, ce fil tracteur est nécessaire à la formation de la mèche pour être ensuite tirée jusqu'au bobinoir afin d'y être enroulée.The towing wire of the invention is not necessarily plastic as in the prior art but may be simply glass. Thread tractor is not primarily intended to guarantee a stronger wire but primarily serves as a guide wire and stimulus. Indeed, this tractor wire is necessary for the formation of the wick to then be pulled to the winder in order to be rolled up.
Dès que l'enroulement de la mèche a débuté sur le bobinoir, le fil tracteur
ou de guidage ne devient plus indispensable puisque les filaments de la mèche
tirés par l'enroulement de cette dernière entraínent automatiquement les filaments
se décollant du cylindre. A cet effet, il est prévu à la sortie du tube de Venturi 42
une guillotine 43 qui sert à couper le fil tracteur après le commencement de
l'enroulement de la mèche.As soon as the winding of the wick has started on the winder, the towing wire
or guidance becomes no longer indispensable since the filaments of the wick
pulled by the winding of the latter automatically lead the filaments
peeling off the cylinder. For this purpose, it is provided at the outlet of the Venturi tube 42
a
Bien entendu, en cas de casse de la mèche, le fil tracteur, dit alors de relance, est à nouveau indispensable pour relancer l'enroulement des filaments autour de celui-ci dès leur décollement du cylindre.Of course, in case of breakage of the wick, the tow wire, then called recovery, is again essential to revive the winding of the filaments around it as soon as they detach from the cylinder.
Le fil tracteur 40 présente également l'avantage d'autoriser la disposition du
bobinoir 12 à un emplacement quelconque par rapport à l'ensemble de filage, que
ce soit sur le même niveau ou à un étage différent rendant le trajet de la mèche
non rectiligne en sortie de l'ensemble de filage, le fil tracteur constituant donc un fil
de guidage et de support total pour l'ensemble de la mèche qui facilite sa conduite
selon un trajet plus sinueux abaissant le risque de casser la mèche. Le fil 40
constitue avant tout un fil tracteur selon l'invention et non nécessairement un fil
d'âme puisqu'il est généralement sectionné dès le commencement du bobinage
de la mèche.
Enfin, grâce à deux ou plusieurs fils tracteurs, l'opérateur unique pourra relancer deux ou plusieurs mèches en une seule opération, ce qui permet d'augmenter considérablement la productivité de l'installation.Finally, thanks to two or more tractors, the single operator restart two or more strands in a single operation, allowing significantly increase the productivity of the facility.
D'autres particularités complètent le dispositif de l'invention. A la sortie de
l'orifice 38 est disposé un dispositif 70 dit "de fausse torsion" constitué par un
organe annulaire tournant à grande vitesse que traverse la mèche afin de la rouler
sur elle-même pour l'arrondir. Toutefois, il est encore nécessaire en sortie du
dispositif 70 d'ajuster le volume de la mèche de sorte qu'elle ne soit pas hirsute la
rendant sinon inutilisable, mais que les filaments restent dans l'alignement de la
mèche. Une buse d'injection d'air 71 située immédiatement en aval du dispositif 70
est donc prévue pour emmêler davantage les filaments et lisser la surface externe
de la mèche.Other features complete the device of the invention. At the exit of
the
Un système de mise sous tension 72, bien connu de l'état de la technique,
constitué par des barres mises en quinconce de façon que la mèche passe à
cheval sur ces barres, est disposé après la buse 71 pour donner à la mèche la
tension nécessaire à la construction correcte de la bobine qui doit atteindre une
densité de 400 kg/m3.A power-
Avantageusement un second système de spray 61 est prévu (figure 3),
positionné en aval de l'ensemble de pré-filage 50 et en amont de la ligne de dépôt
L des filaments afin d'enduire la surface 21 du cylindre 20 pour garantir un parfait
ensimage de la surface intérieure de la nappe de filaments qui se collent à même
la surface 21 dudit cylindre.Advantageously, a
De plus, si dans l'art antérieur, l'amenée des filaments du tire-fil 13 jusqu'au
cylindre 20 se fait manuellement, dans l'invention au contraire, un bras articulé
non représenté est prévu pour positionner mécaniquement les filaments sur le
cylindre.Moreover, if in the prior art, the supply of the filaments of the
Enfin, il est possible d'envisager une variante du dispositif, telle qu'illustrée
sur les figures 7 et 8, où sont agencés un seul ensemble de pré-filage 50 et deux
ensembles de filage 30, chaque ensemble de filage comporte une racle dont la
lame 31 a présente une longueur qui correspond au nombre de filaments souhaités
à être décollés pour séparer la nappe de filaments en deux parties distinctes afin
de bobiner respectivement, à l'aide de deux fils tracteurs distincts, deux mèches
sur deux bobinoirs individuels.Finally, it is possible to envisage a variant of the device, as illustrated
in FIGS. 7 and 8, where are arranged a single
La disposition de l'ensemble de pré-filage 50 en aval des deux ensembles
de filage permet en particulier de ne mettre en fonctionnement qu'un seul
ensemble de filage pour ne bobiner qu'une seule partie de la nappe si nécessaire,
par exemple pour des essais, l'autre partie de la nappe étant récupérée par
l'ensemble de pré-filage pour être directement jetée dans le puits à déchet 14.The arrangement of the
Un cas de figure similaire, à savoir deux ensembles de filage disposés l'un après l'autre dont un seul mis en fonctionnement, ne pourrait être réalisé par le dispositif de l'art antérieur puisque l'ensemble de pré-filage, situé en amont des deux ensembles de filage, décollerait par conséquent la totalité de la nappe et non une partie seulement pour réserver l'autre partie au bobinage.A similar case, namely two sets of spinning arranged one after the other, of which only one put into operation, could not be realized by the device of the prior art since the pre-spinning assembly, located upstream of two sets of spinning, would therefore take off the entire web and not only one part to reserve the other part for winding.
De la même manière, on peut envisager toutes variantes constituées d'un ensemble de pré-filage et de plus de deux ensembles de filage pour fabriquer simultanément autant de mèches sur autant de bobinoirs individuels, au moyen d'autant de fils tracteur.In the same way, it is possible to envisage all variants consisting of a set of pre-spinning and more than two sets of spinning to manufacture simultaneously as many locks on as many individual winders, by means of as many tractor wires.
Claims (16)
- An apparatus for obtaining a package of at least one strand (M) comprising glass filaments (10) wound on at least one winder (12), the apparatus comprising:a drawing roll (20) around which the filaments are wound in web form;a spinning unit (30) which comprises, on the one hand, a retractable spinning scraper (31) capable of butting against the surface (21) of the roll so as to remove the filaments therefrom, and is provided with a sliding surface (33), and on the other hand, a unit (32) for taking up the filaments removed by the scraper;means (40) for guiding the filaments in the take-up element (32) and as far as the winder (12) in the form of a strand (M); anda prespinning unit (50) for the filaments intended to be scrapped, the prespinning unit being provided with a prespinning drum (51) and with a prespinning scraper (52) capable of lifting the filaments off the drawing roll so that they are thrown into the said drum,
the prespinning unit (50) is placed downstream of the spinning unit (30). - The apparatus as claimed in claim 1, characterized in that the take-up element (32) of the spinning unit has a bottom (36) joined to the sliding surface (33) of the spinning scraper, a rear wall (34) of cylindrical concavity with a longitudinal axis parallel to the rotation axis of the roll and a longitudinal front opening (37).
- The apparatus as claimed in claim 2, characterized in that the take-up element (32) is fastened to the spinning scraper (31) and is arranged so that its bottom (36) and the sliding surface (33) of the scraper are coplanar, the movement of the scraper against the surface of the roll being produced by the pivoting of the spinning unit.
- The apparatus as claimed in claim 2 or 3, characterized in that the bottom (36) of the take-up element and the sliding surface (33) of the scraper are goffered.
- The apparatus as claimed in any one of claims 2 to 4, characterized in that the guiding means (40) in the take-up element (32) of the spinning unit are provided so as to traverse from one side of said take-up element to the other along a diagonal line going from a front lower end (39) of the longitudinal opening (37) as far as an upper lateral point (38).
- The apparatus as claimed in any one of the preceding claims, characterized in that the guiding means (40) consist of a haul-off yarn.
- The apparatus as claimed in claim 6, characterized in that the haul-off yarn is made of glass.
- The apparatus as claimed in claim 6, characterized in that the haul-off yarn is made of a thermoplastic.
- The apparatus as claimed in claim 6, characterized in that it includes a Venturi tube (42) capable of sucking up and throwing the haul-off yarn (40) into the take-up element (32).
- The apparatus as claimed in claim 9, characterized in that a guillotine (43) is associated with the outlet of the Venturi tube (42) in order to cut the haul-off yarn (40) after the strand has started to be wound on the winder.
- The apparatus as claimed in claim 5, characterized in that a rotating annular device (70) is provided at the outlet of the take-up element (32) in the direction of the winder (12).
- The apparatus as claimed in claim 11, characterized in that it includes, after the annular device (70), an air injection nozzle (71) past which the strand runs.
- The apparatus as claimed in any one of the preceding claims, characterized in that it includes sizing means (61, 60), these being placed upstream of the point where the filaments are deposited on the roll (20) and upstream of the spinning unit (30) respectively, in order to coat the surface of the roll before the filaments are deposited and to coat the filaments before they are removed from the roll, respectively.
- The apparatus as claimed in any one of the preceding claims, characterized in that it comprises at least two spinning units (30) placed upstream of the prespinning device (50) and capable of operating together or separately.
- The apparatus as claimed in claim 14, characterized in that each spinning unit (30) has a spinning scraper (31) the width of whose blade corresponds to a partial width of the cylinder which is complementary to the width of the other blade so as to divide and remove the web of filaments in two parts.
- The apparatus as claimed in any one of the preceding claims, characterized in that the glass forming the filaments is E-glass or C-glass.
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
FR0015743 | 2000-12-05 | ||
FR0015743A FR2817548B1 (en) | 2000-12-05 | 2000-12-05 | METHOD AND DEVICE FOR MANUFACTURING A WICK COMPRISING GLASS FILAMENTS |
PCT/FR2001/003298 WO2002046506A1 (en) | 2000-12-05 | 2001-10-24 | Method and device for making a strand comprising glass filaments |
Publications (2)
Publication Number | Publication Date |
---|---|
EP1339902A1 EP1339902A1 (en) | 2003-09-03 |
EP1339902B1 true EP1339902B1 (en) | 2005-04-06 |
Family
ID=8857249
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP01982538A Expired - Lifetime EP1339902B1 (en) | 2000-12-05 | 2001-10-24 | Method and device for making a strand comprising glass filaments |
Country Status (18)
Country | Link |
---|---|
US (1) | US20040025543A1 (en) |
EP (1) | EP1339902B1 (en) |
JP (1) | JP2004515659A (en) |
KR (1) | KR20030060107A (en) |
CN (1) | CN1330807C (en) |
AT (1) | ATE292701T1 (en) |
AU (1) | AU2002214092A1 (en) |
BR (1) | BR0115922A (en) |
CZ (1) | CZ20031426A3 (en) |
DE (1) | DE60109957T2 (en) |
ES (1) | ES2240536T3 (en) |
FR (1) | FR2817548B1 (en) |
MX (1) | MXPA03004304A (en) |
NO (1) | NO20032536L (en) |
PL (1) | PL362353A1 (en) |
RU (1) | RU2238353C1 (en) |
SK (1) | SK286546B6 (en) |
WO (1) | WO2002046506A1 (en) |
Families Citing this family (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
FR2842516B1 (en) | 2002-07-18 | 2004-10-15 | Saint Gobain Vetrotex | SIZING COMPOSITION FOR VERRANNE, METHOD USING THE SAME AND RESULTING PRODUCTS |
GB0220434D0 (en) | 2002-09-03 | 2004-03-17 | Qinetiq Ltd | Detection device |
CN103935838A (en) * | 2014-03-27 | 2014-07-23 | 吴江明佳织造有限公司 | Venturi tube doubling machine |
JP6324632B2 (en) * | 2015-01-06 | 2018-05-16 | フィリップス ライティング ホールディング ビー ヴィ | Printer head for 3D printing |
CN106283220B (en) * | 2016-11-08 | 2018-12-04 | 北京化工大学 | A kind of double electrostatic field electrostatic spinning apparatus of thermal current auxiliary |
CN110845136B (en) * | 2019-12-11 | 2024-01-05 | 杭州天启机械有限公司 | Non-head and tail yarn adhesion mechanism for changing tube of wire drawing machine |
Family Cites Families (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2621444A (en) * | 1948-04-21 | 1952-12-16 | Schuller Werner | Process and apparatus for the continuous production of a sliver or roving from fibers of glass, plastic, or like substances |
IT8423739V0 (en) * | 1984-11-09 | 1984-11-09 | Rockwell Rimoldi Spa | CHAIN SIZE DEVICE WITH PERFECT STRUCTURE, IN PARTICULAR FOR INDUSTRIAL SEWING MACHINE. |
DE3634904A1 (en) * | 1986-10-14 | 1988-04-28 | Schuller Gmbh Glaswerk | METHOD FOR PRODUCING A MIXED FIBER TAPE FROM GLASS FIBERS AND FIBERS OR FASTENING OTHER MATERIALS |
FR2698038B1 (en) * | 1992-11-19 | 1995-01-27 | Vetrotex France Sa | Method and device for forming a composite wire. |
FR2750979B1 (en) * | 1996-07-10 | 1998-10-02 | Vetrotex France Sa | DEVICE FOR MANUFACTURING A COMPOSITE YARN |
DE19800725C2 (en) * | 1998-01-12 | 2001-06-13 | Schuller Gmbh | Fiber composite in strand form and method and device for its production |
-
2000
- 2000-12-05 FR FR0015743A patent/FR2817548B1/en not_active Expired - Fee Related
-
2001
- 2001-10-24 EP EP01982538A patent/EP1339902B1/en not_active Expired - Lifetime
- 2001-10-24 ES ES01982538T patent/ES2240536T3/en not_active Expired - Lifetime
- 2001-10-24 DE DE60109957T patent/DE60109957T2/en not_active Expired - Lifetime
- 2001-10-24 WO PCT/FR2001/003298 patent/WO2002046506A1/en active IP Right Grant
- 2001-10-24 CZ CZ20031426A patent/CZ20031426A3/en unknown
- 2001-10-24 US US10/432,604 patent/US20040025543A1/en not_active Abandoned
- 2001-10-24 AT AT01982538T patent/ATE292701T1/en active
- 2001-10-24 BR BR0115922-4A patent/BR0115922A/en not_active IP Right Cessation
- 2001-10-24 SK SK667-2003A patent/SK286546B6/en not_active IP Right Cessation
- 2001-10-24 MX MXPA03004304A patent/MXPA03004304A/en unknown
- 2001-10-24 RU RU2003120066/12A patent/RU2238353C1/en not_active IP Right Cessation
- 2001-10-24 CN CNB018200508A patent/CN1330807C/en not_active Expired - Fee Related
- 2001-10-24 KR KR10-2003-7007432A patent/KR20030060107A/en not_active Application Discontinuation
- 2001-10-24 AU AU2002214092A patent/AU2002214092A1/en not_active Abandoned
- 2001-10-24 PL PL01362353A patent/PL362353A1/en unknown
- 2001-10-24 JP JP2002548217A patent/JP2004515659A/en not_active Withdrawn
-
2003
- 2003-06-04 NO NO20032536A patent/NO20032536L/en not_active Application Discontinuation
Also Published As
Publication number | Publication date |
---|---|
AU2002214092A1 (en) | 2002-06-18 |
FR2817548A1 (en) | 2002-06-07 |
CZ20031426A3 (en) | 2003-08-13 |
CN1330807C (en) | 2007-08-08 |
US20040025543A1 (en) | 2004-02-12 |
ATE292701T1 (en) | 2005-04-15 |
DE60109957D1 (en) | 2005-05-12 |
NO20032536L (en) | 2003-07-08 |
DE60109957T2 (en) | 2006-02-16 |
JP2004515659A (en) | 2004-05-27 |
SK6672003A3 (en) | 2003-11-04 |
CN1478157A (en) | 2004-02-25 |
BR0115922A (en) | 2003-09-16 |
EP1339902A1 (en) | 2003-09-03 |
SK286546B6 (en) | 2008-12-05 |
WO2002046506A1 (en) | 2002-06-13 |
ES2240536T3 (en) | 2005-10-16 |
PL362353A1 (en) | 2004-10-18 |
KR20030060107A (en) | 2003-07-12 |
NO20032536D0 (en) | 2003-06-04 |
FR2817548B1 (en) | 2003-01-10 |
MXPA03004304A (en) | 2003-08-19 |
RU2238353C1 (en) | 2004-10-20 |
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