CN1061631A - The production method of adhesive formed non-woven fabrics and equipment - Google Patents

The production method of adhesive formed non-woven fabrics and equipment Download PDF

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Publication number
CN1061631A
CN1061631A CN91111073A CN91111073A CN1061631A CN 1061631 A CN1061631 A CN 1061631A CN 91111073 A CN91111073 A CN 91111073A CN 91111073 A CN91111073 A CN 91111073A CN 1061631 A CN1061631 A CN 1061631A
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silk
roller
mentioned
passage
flow
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CN1036539C (en
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L·格金
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Karl Fischer Industrieanlagen GmbH
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Karl Fischer Industrieanlagen GmbH
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    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04HMAKING TEXTILE FABRICS, e.g. FROM FIBRES OR FILAMENTARY MATERIAL; FABRICS MADE BY SUCH PROCESSES OR APPARATUS, e.g. FELTS, NON-WOVEN FABRICS; COTTON-WOOL; WADDING ; NON-WOVEN FABRICS FROM STAPLE FIBRES, FILAMENTS OR YARNS, BONDED WITH AT LEAST ONE WEB-LIKE MATERIAL DURING THEIR CONSOLIDATION
    • D04H3/00Non-woven fabrics formed wholly or mainly of yarns or like filamentary material of substantial length
    • D04H3/005Synthetic yarns or filaments
    • D04H3/009Condensation or reaction polymers
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04HMAKING TEXTILE FABRICS, e.g. FROM FIBRES OR FILAMENTARY MATERIAL; FABRICS MADE BY SUCH PROCESSES OR APPARATUS, e.g. FELTS, NON-WOVEN FABRICS; COTTON-WOOL; WADDING ; NON-WOVEN FABRICS FROM STAPLE FIBRES, FILAMENTS OR YARNS, BONDED WITH AT LEAST ONE WEB-LIKE MATERIAL DURING THEIR CONSOLIDATION
    • D04H3/00Non-woven fabrics formed wholly or mainly of yarns or like filamentary material of substantial length
    • D04H3/005Synthetic yarns or filaments
    • D04H3/007Addition polymers
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04HMAKING TEXTILE FABRICS, e.g. FROM FIBRES OR FILAMENTARY MATERIAL; FABRICS MADE BY SUCH PROCESSES OR APPARATUS, e.g. FELTS, NON-WOVEN FABRICS; COTTON-WOOL; WADDING ; NON-WOVEN FABRICS FROM STAPLE FIBRES, FILAMENTS OR YARNS, BONDED WITH AT LEAST ONE WEB-LIKE MATERIAL DURING THEIR CONSOLIDATION
    • D04H3/00Non-woven fabrics formed wholly or mainly of yarns or like filamentary material of substantial length
    • D04H3/005Synthetic yarns or filaments
    • D04H3/009Condensation or reaction polymers
    • D04H3/011Polyesters
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04HMAKING TEXTILE FABRICS, e.g. FROM FIBRES OR FILAMENTARY MATERIAL; FABRICS MADE BY SUCH PROCESSES OR APPARATUS, e.g. FELTS, NON-WOVEN FABRICS; COTTON-WOOL; WADDING ; NON-WOVEN FABRICS FROM STAPLE FIBRES, FILAMENTS OR YARNS, BONDED WITH AT LEAST ONE WEB-LIKE MATERIAL DURING THEIR CONSOLIDATION
    • D04H3/00Non-woven fabrics formed wholly or mainly of yarns or like filamentary material of substantial length
    • D04H3/08Non-woven fabrics formed wholly or mainly of yarns or like filamentary material of substantial length characterised by the method of strengthening or consolidating
    • D04H3/16Non-woven fabrics formed wholly or mainly of yarns or like filamentary material of substantial length characterised by the method of strengthening or consolidating with bonds between thermoplastic filaments produced in association with filament formation, e.g. immediately following extrusion

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Nonwoven Fabrics (AREA)
  • Spinning Methods And Devices For Manufacturing Artificial Fibers (AREA)

Abstract

The invention provides the method and apparatus of the adhesive formed non-woven fabrics that a kind of production is made up of the material of fusable links spinning.Wherein, these are processed in parallel with each other basically before arriving heap folding operation as the silk sheet.Above-mentioned silk is carried out machinery---pneumatic stretching, and above-mentioned silk sheet is by trying one's best big cornerite at least one pair of stretching roller, and directed in the air duct by last roller.And the inlet of this air duct is directly arranged near the silk sheet dispersal point on last roller.

Description

The production method of adhesive formed non-woven fabrics and equipment
The present invention relates to a kind of production method of adhesive formed non-woven fabrics, and the equipment of carrying out this method.This nonwoven is made by the material of fusable links spinning.From spinning head, spin silk and come, stretch then, and heap is converted into to non-woven silk screen, be cured at last.
In the production process of adhesive formed non-woven fabrics, spinning head spins a synnema, and this material is a kind of material (also can use the Organic Ingredients of solvent spinning, but up to now, people knowing little about it to this) that carries out melt spinning.The power that is applied on the tow that has solidified makes the tow distortion, reaches certain level of stretch, and thus, this synnema has obtained a kind of molecularly oriented along filament length degree direction.The power that is applied on the tow can mechanically apply by roller, also can pneumatically apply by air-flow.Then, utilize air-flow that this synnema is piled folding as far as possible equably on the conveyer belt of a running below being positioned at tow, like this, air flows through this conveyer belt or to this conveyer belt next door skew.By means of adhesive, pin seam, but mainly be that by heat cure this synnema to be solidified into plane, heat cure occurs between two hot pressing rollers in satinage stage, perhaps also can adopt mobile hot-air.
DE1965054 discloses a kind of method, and tow pneumatically is stretched to the limit of tensility in the silk sheet, but more commonly produces tow by means of the annular injection channel that air current flow is arranged, and then, this tow is converted into a non-woven silk screen by heap.For this reason, needing very high air velocity, is very low because with air-flow power is delivered to last its energy efficiency, and like this, concerning this method, high energy requirement and a large amount of air are vital.These air can produce stronger turbulent flow, disturb the storage of tow.In addition, following method also is known, above-mentioned tow is carried out mechanical stretching by a pair of draw roll, after the injection channel below leaving, this tow must use Pneumatic method (US3314122) or electrostatic charge (US338992) to do to loose, and is not to be the thread attitude of line but to cover equably on the non-woven silk screen as far as possible so that make silk.
The shortcoming of said method is quite tangible.Spinning head spreads to the fused mass of synthetic on the big plane, makes silk.These silks are at first spun respectively and cooling, and tensile force assembles the line silk to these silks again then, and will do diffusing to them again very arduously, so that these silks cover on the big plane equably as far as possible.
Therefore, or can produce the good silk that stretches, or use low-flow speed that silk is evenly distributed on the non-woven silk screen, both can not get both.
So people transfer to produce microscler or rectangular spinnerets, this spinning head extends on the overall with of non-woven silk screen, so that produce a kind of sheet.But, in case air velocity is higher, the non-uniform phenomenon that air-flow will occur increasing gradually, thus cause non-woven silk screen quality inhomogeneous.Up to now, also do not see a kind of sheet drawing process like this, it stretches on the overall with of spinning head and non-woven silk screen.
When adopting the rectangular jet passage to fall thread, high gas flow speed can cause occurring channel width overdraught problem of uneven distribution.This problem is not only because the slot width equates with channel width and inaccuracy to cause, and be since in the operating process spinning smog and similar pollutant in slot, at first be on conduit wall, gather cause.These problems cause spun silk not distribute uniformly on this width.
The purpose of this invention is to provide and a kind ofly produce adhesive formed non-woven fabrics and be the method and apparatus of the adhesive formed non-woven fabrics of big width.In the present invention, the silk after fully stretching as requested is evenly distributed on the overall with of non-woven silk screen, and energy consumption and required air capacity are all less.
According to the present invention, the foregoing invention purpose is achieved in that according to method of the present invention carries out machinery and pneumatic stretching continuously to silk, and these extend before heap folding in a flash basically in parallel to each other as the silk sheet.According to equipment of the present invention, its drafting system comprise at least a pair of rotation, by an above-mentioned silk roller (5a, 5b) that sheet held and an adjacent setting, the drawing-off passage of a sheet being taken off from roller with air-flow (6); Described roller (5a, 5b) and drawing-off passage are at the width at upper area 16 places that link to each other with roller (5b), and be suitable with the width of the silk sheet of being made up of parallel spun silk.
In the present invention, the defective that exists in the at present known method and apparatus is avoided to a great extent, because the silk sheet that can extend on non-woven silk screen overall with has carried out the machinery-pneumatic stretching of one-time continuous.To providing, extend on the spinning head width in other words on whole piece silk sheet by this pair of rollers by roller for main tensile force.This ***ine is guided by an air duct that is directly installed on second roller next door, and in this air duct, under air velocity was tried one's best little condition, this ***ine was pre-formed in the non-woven silk screen three-dimensional kink structure afterwards.Said flow speed should just enough guide this ***ine from second roller, and transporting is to the storage silk device.Above-mentioned drafting system comprise roller to and air duct, the spinning head that spins a sheet can be equipped with separately, so above-mentioned non-woven silk screen finished product can be produced from more this unit-spinning head and drafting system.Article one, spin the spinning head that the silk sheet also can be arranged continuously from one or more along a line, make the silk sheet that many silks are gathered into, and this silk sheet is directed in a pair of roller and the storage silk air duct.Do like this and have its advantage, when spinning fault such as hole plug occurring, can change single spinning head, and needn't be only because this fault takes place and just change spinning head big, that extend on non-woven silk screen overall with in one or a few spinneret orifice.In a word, these independent spinning heads must be arranged like this: make those silk sheets that leave spinning head only run into first draw roll, and the silk spacing of two adjacent filaments sheets do not have difference, therefore, in afterwards seam crossing not accumulation or space.Everything is achieved in the geometrical arrangements by equipment at the very start, and therefore, this ***ine to be meeting on first roller at interval uniformly each other, and keeps this uniform layout, because roller is not to all applying side force with ensuing air duct.In the air duct bottom that leads to the storage silk device, because the lateral movement of the decelerating effect silk of air-flow just occurs.The decelerating effect of said flow is predetermined by the expansion of air duct, and this decelerating effect ends at the storage silk plane of the silk that is loaded with stagnation.
According to method of the present invention, it is characterized in that: above-mentioned this ***ine keeps motion in parallel to each other basically after spinning head spins, by the stretching roller to entering in the air duct.This ***ine just is plugged when arriving the passage lower end, and twists together into three-dimensional structure mutually.The silk of the horizontal expansion width of every long measure, the width of spinning head horizontal expansion in other words and the silk screen that forms thus is by the heap folding, spun in the silk sheet as the silk of unit length, the clinkering phenomenon both do not occurred when the storage silk, also do not have a sheet attenuation.When the width of non-woven silk screen hour, only relate to a spinning nozzle that on this silk screen width, extends on the equipment.And when the width of non-woven silk screen was big, it was favourable adopting a plurality of independent spinning heads to spin the integrated silk sheet of aforesaid assembly.
The stretching roller to and the air duct that joins should stably all extend on the silk sheets, in citation form of the present invention, these rollers and air duct extend on the overall with of non-woven silk screen.For the mechanical stretching of the bigger silk sheet of width, only after satisfying following requirement, be only feasible and economy; When breaking down, when filament failure takes place the silk of particularly reeling on being directed to roller (so-called spinning is deviate from), these wire rings can remove and joint again rapidly simply.Utilize equipment of the present invention can realize aforesaid operations.
A pair of roller is installed in spinning head and cooling section below rotationally.This sheet is passing between two rollers under the tractive of air duct during beginning.These two rollers are driven revolution, so that the silk sheet surrounds on this pair of rollers.Way with advantage is to make that to hold the angle big as much as possible, but because can increase the power that is applied to the mechanical transfer on this ***ine like this.Contact force between the pivoted pulley in this power and the known belt transmission and the belt of motion is identical.Therefore, be delivered to power and e on the silk μ αBe directly proportional, μ is the coefficient of friction between silk and the roller here, and α is a cornerite.When speed is higher, also must take centrifugal force into account, this centrifugal force will weaken the rubbing action between silk and the roller upper surface.
As the hawser transmission, leave second roller of roller centering when silk after, a power must be applied on this silk.This power is produced by air duct.When stretching this with air duct in suction or squeeze operation, when perhaps utilizing the effect of spray silk to stretch this, above-mentioned power is much smaller when independent.This air duct is set directly near the dispersal point of silk sheet on last roller.This air duct separates air that is driven by roller and silk together on rotation direction.This is a kind of energy-conservation especially form to air duct supply additional air flow.But, mainly be to store up an air of below, plane and produce by taking out to the swabbing action of silk.To test employed wind-tunnel similar to aerodynamics, and a kind of air-flow that is sucked is at first more even than the air-flow that the air blast that generally is connected with anemostat blows out.In the aspirator district, cause the interference of gas motion can be very little, be left in the basket and disregard.The top that is right after the air duct of last roller setting can be very little, because this moment, this ***ine was cooled off fully, and no longer adhesion, therefore, the air capacity that is driven is less, and air-flow can flow with laminar flow or weak turbulent mode.After this, above-mentioned passage enlarges becomes the anemostat shape, this anemostat is restive when the ratio of cross section of outlet and inlet is very big, because occur the silk break-off this moment easily, so on channel cross-section, no longer included uniform air flow, rectangular channel especially can this thing happens, and this just rectangular channel that the present invention relates to.But, there is enough big resistance in this passage one end, and this resistance is to be provided by the silk screen of heap folding and storage silk plane.Because this resistance, air-flow can spread better, and causes this ***ine to be distributed on the certain width better along the traffic direction of non-woven silk screen.In any case, cause hank knotting and the cloud-shaped strong turbulent flow that stores to be avoided, because an air velocity and the air capacity that siphons away from below, storage silk plane only remain on the very low level.How could suck anemostat to boundary layer or with the airflow layer of the additional air flow that reduces in proportion towards the nearly roller wall of blown joint, throw off from following anemostat passage to avoid silk, this is a known supplementary means in the aerodynamics.Here also can use and impact anemostat (size of this pipe can increase suddenly) and such air-flow, this air-flow is gone up diffusion " wall flows " of the eddy current of sealing.This air-flow should spread on channel cross-section uniformly, and irregular transverse movement should not occur in the main flow of eddy current form.Have only this ***ine to pile up, and beginning kink mutually in passage.
With respect to known method and equipment so far, the present invention has following advantage: a silk sheet is not to spin the spinning head that non-woven silk screen total length is extended from one.The width of this spinning head depends on the requirement or the economy reason of finished product, and its width can reach more than 5 meters.It is also conceivable that and allow silk from rectangular spinnerets plurality of single, that be parallel to the manifold axis arranged, spin.Identical with the practice common in the synthetic fiber production, these sheets with the crossflow cooling, are blown to side at this spinning smog below spinning head, otherwise, these smog can cover in stretched operation subsequently on roller and the contaminated air passage, influence equipment work.This ***ine flow on first roller in parallel to each other, and holds certain angle on this roller, and this ***ine moves on the next roller then.On this roller, this ***ine still is parallel to each other basically but has curvature ground and extends, and enters air duct then, and air duct is these the same separating of table from roller.Opposite with simple pneumatic seal wire, roller has " face is made in rectification " of silk.Perhaps the dashing to blow down and depart from its main direction of advance slightly of horizontal cooling blast, then these silks are fallen on the roller basically in parallel to each other for these.In air duct, just allow silk side direction from its traffic direction depart from wittingly, even allow silk kink each other, because will in one plane carry out this kink work after a while.Like this, can on silk, apply sizable power and produce the silk of high degree of drawing thus, and in the operation of ensuing storage silk, not need a large amount of rough airs, need a large amount of air also not resembling when stretching according to prior art.The friendship node of silk and space be because the right accurate guiding of roller, occurring yet in a flash before these arrive storage wire process.
Because degree of drawing of the present invention is also even when adopting pure pneumatic stretching, therefore, makes silk have more homogeneous mechanical characteristic, as diameter (fiber number), TENSILE STRENGTH, percentage elongation and shrinkage factor etc.
Continuously elongated by means of machinery-pneumatic type of using suction channel, can be with producing adhesive formed non-woven fabrics by super drawing equably and along the equally distributed silk of nonwoven width.For the suction channel that is full of the most uniform passage air-flow basically, it must have enough big power, so as this ***ine from the stretching roller to separating.Up to now, the existing method side that has suction channel below spinning head can only stretch on a small quantity to silk.Though the working pressure passage can obtain a stretching than high power,, drawing effect is compared still with the effect that mechanical stretching is reached and is differed greatly.At present known the sort of mechanical stretching also is confined to tow or the silk ribbon be made up of the silk that is close together are handled with the combination of the injection channel drawing-off that is right after, and this tow or silk ribbon always cause the hank knotting shape and the cloud-shaped deposition of silk on non-woven silk screen in follow-up processing.
That produce according to the present invention, that be made up of the super drawing silk, uniform adhesive formed non-woven fabrics can be deposited on the collection conveyer belt of a common level running, it is a screen cloth conveyer belt as a rule, and air is taken away below this conveyer belt.In a specific embodiment of the present invention, silk stores on a rotary screen.Do its advantage like this: although this rotary screen have one be the circle but the face of rigidity.Under the surface of this rotation, can arrange some gas-flow resistances fixing or that change or that form by the decorative pattern on the rotating surface.By means of ascending effect on the air-flow of this resistance generation, this ***ine is back and forth blown, and can obtain the non-woven preferably silk screen of uniformity like this.
Accompanying drawing is represented embodiment, and this embodiment will further explain below.Among the figure:
Fig. 1 is the front elevation of the equipment of first embodiment of the invention, looks from silk sheet direction, and equipment has from the air duct of bottom suction.
Fig. 2 is the roller of another one embodiment and the view of tractive passage, and in the present embodiment, air blows in this tractive passage along the upper surface of draw roll.
Among Fig. 1, by the polymer of melting spinning, the tow of making as polyamide, polyester, polypropylene flows out from rectangular spinnerets 1, forms silk sheet 2.Each spinneret orifice is arranged in order in spinning head 1.The silk of these melt-flow also can be provided with the air-flow that passes outwards through two-layer silk sheet from the lining herein by the cooling of the crossflow shown in the arrow 3.In the extension below, because these mainly move downward together, therefore from top view, the silk sheet can only be represented with line 4 or 4a.4a along the line extended when these silks were in original state, and they are through a pair of roller 5a, 5b, and the right initial position of this roller also dots, and then, this ***ine arrives in the passage 6.This feeder connection place is narrow, and is the diffusion tubulose and increases gradually, and its tail end is positioned in the heap folding district 7 of rotary screen 8.In rotary screen, the silk of rolling over through this group heap from the air of passage 6 is inhaled into the case 9, and is guided out from the side by path 10.In the original state of this method of operation, this ***ine only deforms under the pneumatic swabbing action of cylinder inside, and is stretched to a certain degree.Above-mentioned that pair of rollers, its upper surface meet the requirement of spin-drawing method to draw roll, and this pair of rollers and drive unit thereof support rotationally, to this, are not described further here.Roller rotates around the public center of circle 13 along direction shown in the arrow 12 and track 11 5a, 5b, originally is offset now from the silk sheet that contactlessly passes between two rollers, and finally this sheet coiled S shape.When roller is to operation or afterwards, above-mentioned passage together with heap folding cylinder or rotary screen together along arrow 14 and 15 to the side and above move, make passage 6 closely adjacent with roller 5b.The import of passage 6 is to constitute like this: this import can be shunted the air (this layer of air is called as boundary layer) that a part is together moved around roller, and these air are directed in the passage 6, has so just improved the function of passage 6.In ensuing anemostat part, air velocity reduces gradually, until the speed that is not more than this ***ine.This ***ine piles wavy earlier, and piles round.The power that the air-flow that pass passage, particularly passes the highest suction casing of air velocity 16 acts on this ***ine is enhanced by means of the rubbing action of roller, and the peripheral speed of this roller is identical with tow.When not wanting to utilize the momentum of roller boundary layer, should shift near this roller to air duct as far as possible, so just can not produce the silk of unnecessary length, because the braking action of ambient gas, power on the silk is weakened, in district 17, and zone between roller pair and the spinning head 1 and obstruction not in this section zone between two roller 5a, the 5b, therefore, roller 5a, 5b should be at a distance of not far settings.Remaining power will be produced by air duct, strengthens by the friction that roller is right.This power can at first be weakened by the braking action on this section way between spinning head 1 and roller 5a, the 5b.This part remaining power is used to stretch and this ***ine of drawing-off in the zone below spinning head 1, and in this zone, this ***ine also is in melt-flow state and deformable state.For what wish as people, obtain a kind of high molecularly oriented and under the condition of little percentage elongation, obtain high strength thus, resulting energy should be big as far as possible in the above-mentioned zone, therefore, this just require spinning head 1 and roller to the length in zone between 5a, the 5b if satisfy the cooling of silk group and action need just passable.
The upper end 16 of air duct is made narrow as far as possible, and for example, its bore is 2mm, but also can be 1mm, so that form the tiny air flow of trying one's best, this strand air flow will be disturbed when the heap silk.This bore depends on the quantity and the fiber number of silk, and
Be the additive types that attaches for the purpose of the safety in production.Drawing-off and heap device for folding are made up of 5a, 5b and passage 6 above-mentioned roller, and they are to arrange like this: make silk produce the big cornerite of trying one's best on this pair of rollers, so that can apply corresponding high power to this ***ine.But, silk can not be stretched between roller is to 5a and 5b, because cornerite and consequent frictional force are generally big inadequately.The sleeve of rotary screen can be used hexagon honeycomb wall 18, and promptly so-called honeycomb structure is made.This honeycomb sleeve wall is laid perpendicular to airflow direction.This wall can be made very thinly, and the air-flow that passes it so only can be subjected to some influence.Though this barrel is thin, but still has constituted a hard sleeve.For example having, the honeycomb wall 18 of 6-8mm size hole is covered by one deck thinner metal or plastic mesh.In the embodiment of back, this screen cloth can be used as a cylinder and is retracted and is enclosed within on the cylinder, has avoided seam thus, and this seam might stay trace on non-woven silk screen.
The top of the suction chamber 9 below heap folding district 7 can be provided with some parts with holes 19, and these parts dot among the figure.The effect of these apertured plate member is to reduce suction intensity because this intensity (left side in heap folding district 7 in as Fig. 1) should be too not strong when heap folding operation beginning, to avoid sucking too much unnecessary air here.This with holes has less permeability, and along with the increase of Chu Siliang, this permeability of with holes increases to the right gradually.In addition, the position of having aimed at can also be removed.A honeycomb cylinder rotates on holes, has only a small amount of heap to fold up cell walls is covered in, and this is because the air-flow effect of increasing in this enclosed area causes.The reciprocally swinging by a small margin of this ***ine so just can be realized in this air flow direction side.Have only this honeycomb wall to swing by a small margin when thickness is not too big on airflow direction to be only possible, otherwise the rising of air-flow can be hindered, and becomes fully inoperative at last.
Fig. 1 represents: the silk screen of being made by the silk sheet 20 is that the storage silk that how to pass through rotary screen 8 is received by roller 21 afterwards.This silk screen is walked around roller 21 with certain cornerite, is drawn towards a pair of calender 21a, 21b then, carries out the pressure and temperature welding by calender.Then this silk screen is with a technology that does not further describe, and promptly the batching apparatus that is widely known by the people in band-shaped fabric processing is wound up into a silk screen and rolls up on 22.
Fig. 2 represent a kind of by means of injection channel from the fall deployment scenarios of mechanism of silk of roller 5b.What extend on the overall with at silk screen is not a silk sheet, but from the spinning head that is parallel to each other separately during a spun ***ine sheet, the hot reeling machine structure particularly suitable of this band injection channel.When suction operation, these injection channels do not rerun, and fold up because must pile from the tow of spinning position and drawing-off position separately, and for this reason, this ***ine must be swung in a non-jet area.For this purpose, can connect a common injection channel on second roller 5b next door.Carry the momentum of silk sheet to be provided by the jet among Fig. 2 23, this strand jet faces toward roller 5b, and flows out from the opening of passage 24.Under certain pressure and uniform temperature, air offers passage 24 along the direction of arrow 25.
Above-mentioned injection channel has inhomogeneities, and this is owing to its opening is to change.This injection channel has following advantage, can be near inhomogeneous jet 23 homogenising the roller 5b that rotates with silk speed.The speed of air-spray 23 does not need high more too many than the peripheral speed of roller 5b.The air interface layer that moves with roller 5b has very strong homogenising effect.
Between pure suction operation shown in Figure 1 and pressurized operation shown in Figure 2, also there is the married operation form that has two kinds of operating features concurrently, they can guess out from design of the present invention and specialized technical knowledge, needn't describe one by one more here.For instance, in passage shown in Figure 16 one additive air stream can with mode shown in Figure 2 from above blow down.
As can be seen from Figure 1: passage 6 moves to the side from its resting position earlier, moves to the final position on roller next door then on short transverse, and like this, rotary screen 8 just becomes the memory unit of this ***ine.Equally, when the drawing-off passage was arranged on the screen cloth conveyer belt, this drawing-off passage 6 also can move out from its resting position, and changed its height.This Height Adjustment and those are begun between roller is to 5a, 5b to extend, can also realize by following mode the lateral adjustment that 5a, 5b change the silk sheet that direction is displaced sideways with roller again afterwards: this roller moves 5a, 5b are corresponding, be reduced on the passage 6, so this passage and thread-storing roller 8 thereof or screen cloth conveyer belt needn't move.In suction operation,, can in passage 6, introduce secondary air if this passage 6 is not placed in 7 tops, heap folding district when beginning.
Above-mentioned roller drives 5a, the most handy frequency modulation motor of 5b, and here, frequency adjustment is realized by a unshowned control device.Another control device control roller is to the skew of 5a, 5b and to the location of passage 6.Finish by means of sensor this location.The speed of roller can be controlled like this, and when requiring silk when tension force is arranged, second roller turns round sooner, when perhaps considering influencing that silk shrinks, allows this roller 5b change more slowly, thereby has realized the tension and relaxation of silk.Aforesaid operations only is the additional effect that obtains, and in general, two rollers have identical diameter, identical revolution, and promptly two rollers are with identical peripheral speed running, and therefore, the power that is delivered on the silk is applied on the silk along cornerite.
In the time will reaching higher degree of drawing, adopt a pair of roller and air duct just can realize, but it is right to put a plurality of rollers to this following line of fall of heap device for folding at spinning head, and these rollers are to changing direction in aforesaid mode.
When the stretching roller extended on a bigger silk screen fabric width 5a, 5b, this pair of rollers might be supported from both sides.Compare with draw-off godet one-sided supporting fast turn-around, that have big face width, significantly simplify the structure.The simplification of this supporting structure is possible, because the silk sheet forms the state that holds by means of the right rotation of roller as previously mentioned.According to design code, checkout gear has the element of light barrier thing and so on.When existing operation to disturb, checkout gear cuts off the coiling driving force of roller, and reeling condition is eliminated, and continues the top that spun tow is blocked in this pair of rollers.When joint was operated, roller was to being in initial position shown in Figure 1 again, and the silk sheet is transported in the passage by a slice with connecing a slice, and by stretching and the swing of heap folding, above-mentioned silk sheet forms a silk screen again.
The thermal welding of non-woven silk screen is normally favourable, when having various silk, wherein a part does not have during welding or rare variation, this part silk makes silk screen have certain intensity, and a welding takes place the sub-fraction silk mutually in addition, this shows, this sub-fraction silk has lower fusing point, perhaps only carried out stretching in a small amount, thereby crystallization is less, fusing also early.When these carried out in various degree stretching in the silk section, above-mentioned that sub-fraction silk still can exist with constant filiform form.According to equipment of the present invention, also can process silk from two spinning heads, it is just passable only to need the spinning head among Fig. 11 is swapped round.
In this case, second spinning head is installed in first spinning head next door.The silk (for example low melting point polymer or copolymer silk sheet) identical with 1 spun classification of spinning head is directed on line 4a or 4, and stretched with structural filaments.Say in principle, following situation may occur: told from the part of the spun silk of same spinning head, without roller to 5 mechanical stretching, a silk sheet just enters in the air-flow 23 on the air duct next door in other words, and this part sheet lumps together with a silk sheet that passes through mechanical stretching in air duct then.On the other hand, also can spin the bi-component silk of being made up of two kinds of compositions from a special spinning head, identical with aforementioned manner then, drawn device and heap device for folding are made a silk screen at last.
Basic embodiment of the present invention can be carried out other variation and be replenished.If important or hope can be carried out preliminary treatment to the silk group below air blast cooling section 3.
Above-mentioned roller can be heated, and so especially can control the shrinkage factor of many polymer better.

Claims (18)

1, a kind of production method of adhesive formed non-woven fabrics of fusable links spinning material, wherein spinning silk with spinning head comes, stretch these silks, these heaps are converted into non-woven silk screen and being solidified, it is characterized in that: above-mentioned silk is carried out continuous machinery and pneumatic stretching, these extend basically in parallel to each other as the silk sheet, and above-mentioned heap folding is in a flash preoperative up to carrying out.
2, the method for claim 1 is characterized in that: when original state, above-mentioned silk is being drawn by one air-flow, contactlessly passes through between at least one pair of roller; Follow above-mentioned roller and swung, make above-mentioned silk to try one's best big cornerite on above-mentioned roller; And above-mentioned silk is separated on last roller of air-flow.
3, method as claimed in claim 1 or 2, it is characterized in that: said flow is guided by a drawing-off passage, and above-mentioned roller to the swing in or afterwards, above-mentioned drawing-off passage is drawn close to relevant roller as far as possible, perhaps above-mentioned roller is drawn close to above-mentioned drawing-off passage as far as possible, to avoid the drawing-off passage long.
4, according to the described method of one of claim 1-3, it is characterized in that: the speed of the said flow in the drawing-off passage is to select according to the right peripheral speed of roller.
5, according to the described method of one of claim 1-4, it is characterized in that: in the drawing-off passage, produce said flow thereby preferably see through a rotary screen formula heap folding face intake-gas.
6, method according to claim 5 is characterized in that: the intensity of above-mentioned suction is controlled by a throttling element.
7, according to the described method of one of claim 1-6, it is characterized in that: said flow is a high pressure draught.
8, a kind of production equipment of adhesive formed non-woven fabrics of melt spinning material comprises: at least one spins the spinning head of a ***ine that is arranged in parallel into a silk sheet; The stretching device of the above-mentioned silk that stretches; A heap device for folding that silk is paved into a silk screen; The solidification equipment that silk screen is solidified, it is characterized in that: above-mentioned stretching device have at least a pair of rotation, by the above-mentioned silk roller (5a, 5b) that sheet held, and drawing-off passage (a 6) adjacent setting, that the silk sheet is separated from roller (5b) by air-flow; The width that described roller (5a, 5b) and drawing-off passage (6) are located in the upper zone (16) that links to each other with roller (5b) is suitable with the width of a sheet of being made up of parallel spun silk.
9, equipment according to Claim 8 is characterized in that: above-mentioned roller is mounted to such an extent that can the run-on point (13) on roller mid point connecting line rotate to (5a, 5b).
10, according to Claim 8 or 9 equipment, it is characterized in that: the top of above-mentioned drawing-off passage (6) makes very narrowly, and this passage expansion becomes and is the anemostat shape.
11, according to Claim 8 described equipment one of-10, it is characterized in that: above-mentioned heap device for folding has a rotary screen (8), and this rotary screen inside is provided with a suction channel (9), attracts air-flow to pass drawing-off passage (6).
12, according to Claim 8 described equipment-11, it is characterized in that: above-mentioned heap device for folding has throttling element (19), is used to the throughput of controlling suction intensity or flowing through drawing-off passage (6).
13, according to the equipment of claim 11 or 12, it is characterized in that: above-mentioned rotary screen (8) has a honeycomb structure.
14, according to Claim 8 described equipment one of-13, it is characterized in that: have a tracking means, when above-mentioned roller rotates (5a, 5b) or afterwards, it moves drawing-off passage (6), the upper end of this drawing-off passage (6) directly is near the roller (5b).
15, according to Claim 8 described equipment one of-13, it is characterized in that: have a tracking means, when above-mentioned roller rotates (5a, 5b) or afterwards, it moves these rollers, the upper end of drawing-off passage (6) directly is near the roller (5b).
16, according to Claim 8 described equipment one of-15, it is characterized in that: a plurality of spinning heads abut one another the setting that forms a line, and are used to produce a ***ine sheet.
17, according to Claim 8 described equipment one of-16, it is characterized in that: above-mentioned drawing-off passage (6) is filled into high pressure draught.
18, according to Claim 8 described equipment one of-17 is characterized in that: above-mentioned roller (5a, 5b) is by from two-side supporting.
CN91111073A 1990-10-11 1991-10-11 Method and apparatus for producing non-woven fabrics by woving and adhering Expired - Fee Related CN1036539C (en)

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DEP4032523.7 1990-10-11
DEP4032523,7 1990-10-11
DE4032523A DE4032523C2 (en) 1990-10-11 1990-10-11 Method and device for producing spunbonded nonwovens

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* Cited by examiner, † Cited by third party
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CN103459694A (en) * 2011-04-06 2013-12-18 旭化成纤维株式会社 Thermoplastic non-woven fabric
CN103789927A (en) * 2014-01-24 2014-05-14 廊坊中纺新元无纺材料有限公司 Spun-laid non-woven fabric and manufacturing method thereof
CN110331521A (en) * 2019-06-13 2019-10-15 大连华阳新材料科技股份有限公司 Improve the method for spun-bonded non-woven product of production line uniformity

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4237298C2 (en) * 1992-10-05 1996-04-18 Silver Plastics Gmbh & Co Kg Hydrophobic composite material made of non-woven layers made of thermoplastic
DE4236514C2 (en) * 1992-10-26 1997-03-27 Fischer Karl Ind Gmbh Method and device for conveying and depositing sheets of endless threads by means of air forces
US5665300A (en) * 1996-03-27 1997-09-09 Reemay Inc. Production of spun-bonded web
DE10322460B4 (en) * 2003-05-16 2007-02-08 Corovin Gmbh Method and apparatus for producing a spunbonded web of filaments of broken fibers, filaments of broken fibers and nonwoven web
DE20308475U1 (en) 2003-05-16 2003-09-18 Corovin Gmbh, 31224 Peine Fleece fibers burst into numerous filaments caused by internal buildup of hydrostatic pressure greater than that of ambient gas pressure

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3338992A (en) * 1959-12-15 1967-08-29 Du Pont Process for forming non-woven filamentary structures from fiber-forming synthetic organic polymers
NL296015A (en) * 1962-05-16
US3314122A (en) * 1963-07-01 1967-04-18 Du Pont Apparatus for forming non-woven web structures
US3384944A (en) * 1965-02-10 1968-05-28 Du Pont Apparatus for extruding and blending
US3394435A (en) * 1966-05-31 1968-07-30 Du Pont Apparatus for making a nonwoven web
DE2022943A1 (en) * 1969-07-31 1971-02-11 Schwarza Chemiefaser Spin - drawing polyamides, polyesters and - polyolefins, to non-woven fabric
DE1965054C3 (en) * 1969-12-27 1979-06-07 Lueder Dr.-Ing. 1000 Berlin Gerking Process for the production of nonwovens from continuous filaments
NL7710470A (en) * 1977-09-26 1979-03-28 Akzo Nv METHOD AND EQUIPMENT FOR THE MANUFACTURE OF A NON-WOVEN FABRIC FROM SYNTHETIC FILAMENTS.
DE3603814A1 (en) * 1986-02-07 1987-08-13 Reifenhaeuser Masch Apparatus for the production of a thread nonwoven and process for operating such an apparatus

Cited By (5)

* Cited by examiner, † Cited by third party
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CN103459694A (en) * 2011-04-06 2013-12-18 旭化成纤维株式会社 Thermoplastic non-woven fabric
CN103459694B (en) * 2011-04-06 2015-08-12 旭化成纤维株式会社 thermoplastic non-woven fabric
CN103789927A (en) * 2014-01-24 2014-05-14 廊坊中纺新元无纺材料有限公司 Spun-laid non-woven fabric and manufacturing method thereof
CN103789927B (en) * 2014-01-24 2017-02-15 廊坊中纺新元无纺材料有限公司 Manufacturing method of spun-laid non-woven fabric
CN110331521A (en) * 2019-06-13 2019-10-15 大连华阳新材料科技股份有限公司 Improve the method for spun-bonded non-woven product of production line uniformity

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DE4032523A1 (en) 1992-04-16
DE4032523C2 (en) 1995-04-27
EP0480550A1 (en) 1992-04-15
CN1036539C (en) 1997-11-26
DE59107241D1 (en) 1996-02-22

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