CN106283685A - Manufacture method at glass fiber cloth surface-coated polyacrylate resin - Google Patents

Manufacture method at glass fiber cloth surface-coated polyacrylate resin Download PDF

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Publication number
CN106283685A
CN106283685A CN201610650211.9A CN201610650211A CN106283685A CN 106283685 A CN106283685 A CN 106283685A CN 201610650211 A CN201610650211 A CN 201610650211A CN 106283685 A CN106283685 A CN 106283685A
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China
Prior art keywords
glass fiber
acrylic resin
facings
fiber facings
manufacture method
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Granted
Application number
CN201610650211.9A
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Chinese (zh)
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CN106283685B (en
Inventor
沈海平
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Jiaxing Jiete New Material Co.,Ltd.
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Haining Jiete Glass Fabric Industry Co Ltd
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Priority to CN201610650211.9A priority Critical patent/CN106283685B/en
Publication of CN106283685A publication Critical patent/CN106283685A/en
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    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06NWALL, FLOOR, OR LIKE COVERING MATERIALS, e.g. LINOLEUM, OILCLOTH, ARTIFICIAL LEATHER, ROOFING FELT, CONSISTING OF A FIBROUS WEB COATED WITH A LAYER OF MACROMOLECULAR MATERIAL; FLEXIBLE SHEET MATERIAL NOT OTHERWISE PROVIDED FOR
    • D06N3/00Artificial leather, oilcloth or other material obtained by covering fibrous webs with macromolecular material, e.g. resins, rubber or derivatives thereof
    • D06N3/04Artificial leather, oilcloth or other material obtained by covering fibrous webs with macromolecular material, e.g. resins, rubber or derivatives thereof with macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds
    • D06N3/042Acrylic polymers
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06CFINISHING, DRESSING, TENTERING OR STRETCHING TEXTILE FABRICS
    • D06C7/00Heating or cooling textile fabrics
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06GMECHANICAL OR PRESSURE CLEANING OF CARPETS, RUGS, SACKS, HIDES, OR OTHER SKIN OR TEXTILE ARTICLES OR FABRICS; TURNING INSIDE-OUT FLEXIBLE TUBULAR OR OTHER HOLLOW ARTICLES
    • D06G1/00Beating, brushing, or otherwise mechanically cleaning or pressure cleaning carpets, rugs, sacks, hides, or other skin or textile articles or fabrics
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06NWALL, FLOOR, OR LIKE COVERING MATERIALS, e.g. LINOLEUM, OILCLOTH, ARTIFICIAL LEATHER, ROOFING FELT, CONSISTING OF A FIBROUS WEB COATED WITH A LAYER OF MACROMOLECULAR MATERIAL; FLEXIBLE SHEET MATERIAL NOT OTHERWISE PROVIDED FOR
    • D06N3/00Artificial leather, oilcloth or other material obtained by covering fibrous webs with macromolecular material, e.g. resins, rubber or derivatives thereof
    • D06N3/0002Artificial leather, oilcloth or other material obtained by covering fibrous webs with macromolecular material, e.g. resins, rubber or derivatives thereof characterised by the substrate
    • D06N3/0015Artificial leather, oilcloth or other material obtained by covering fibrous webs with macromolecular material, e.g. resins, rubber or derivatives thereof characterised by the substrate using fibres of specified chemical or physical nature, e.g. natural silk
    • D06N3/0022Glass fibres
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06NWALL, FLOOR, OR LIKE COVERING MATERIALS, e.g. LINOLEUM, OILCLOTH, ARTIFICIAL LEATHER, ROOFING FELT, CONSISTING OF A FIBROUS WEB COATED WITH A LAYER OF MACROMOLECULAR MATERIAL; FLEXIBLE SHEET MATERIAL NOT OTHERWISE PROVIDED FOR
    • D06N3/00Artificial leather, oilcloth or other material obtained by covering fibrous webs with macromolecular material, e.g. resins, rubber or derivatives thereof
    • D06N3/007Artificial leather, oilcloth or other material obtained by covering fibrous webs with macromolecular material, e.g. resins, rubber or derivatives thereof characterised by mechanical or physical treatments
    • D06N3/0077Embossing; Pressing of the surface; Tumbling and crumbling; Cracking; Cooling; Heating, e.g. mirror finish
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06NWALL, FLOOR, OR LIKE COVERING MATERIALS, e.g. LINOLEUM, OILCLOTH, ARTIFICIAL LEATHER, ROOFING FELT, CONSISTING OF A FIBROUS WEB COATED WITH A LAYER OF MACROMOLECULAR MATERIAL; FLEXIBLE SHEET MATERIAL NOT OTHERWISE PROVIDED FOR
    • D06N3/00Artificial leather, oilcloth or other material obtained by covering fibrous webs with macromolecular material, e.g. resins, rubber or derivatives thereof
    • D06N3/0086Artificial leather, oilcloth or other material obtained by covering fibrous webs with macromolecular material, e.g. resins, rubber or derivatives thereof characterised by the application technique
    • D06N3/0088Artificial leather, oilcloth or other material obtained by covering fibrous webs with macromolecular material, e.g. resins, rubber or derivatives thereof characterised by the application technique by directly applying the resin

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Mechanical Engineering (AREA)
  • Treatments For Attaching Organic Compounds To Fibrous Goods (AREA)
  • Surface Treatment Of Glass Fibres Or Filaments (AREA)

Abstract

The invention provides a kind of manufacture method at glass fiber cloth surface-coated polyacrylate resin, belong to spraying technology field.It solve the technical problems such as glass fiber facings service life of existing band acrylic resin coating is relatively low.This comprises the following steps in the manufacture method of glass fiber cloth surface-coated polyacrylate resin: a, go out cloth;B, dust;C, preheating;D, sizing;E, binder;F, cooling;G, receipts cloth.The present invention has can form acrylic resin coating the advantage improving service life on glass fiber facings.

Description

Manufacture method at glass fiber cloth surface-coated polyacrylate resin
Technical field
The invention belongs to technical field of composite materials, relate to a kind of at glass fiber cloth surface-coated polyacrylate The manufacture method of resin.
Background technology
The mesh fabric that fiberglass gridding cloth glass fiber yarn or roving are made.Due to fiberglass gridding Cloth has multiple superperformance, therefore the most at home and abroad obtains extensively application, occupies the biggest market part especially in building field Volume.For improving usability (such as alkali resistance etc.) further, glass screen cloth usually can process through surface or face coat processing.
In glass fiber mesh coating agent, polyacrylate resin have transparent, against weather good, corrosion-resistant, film forming Property the feature such as good, and the adhesive property with fabric is good, and cost is relatively low, and the most conventional polyacrylate resin is as glass fibers The coating material of dimensional fabric.
At present, glass fiber facings is formed the commonly used mode smeared of acrylic resin coating, will melt Acrylic resin is coated on glass fiber facings, owing to acrylic resin viscosity in the molten state is higher, and therefore acrylic acid Resin often can only be bonded in the top layer of glass fiber facings, and it is easy that this results in acrylic resin coating after a long time use Come off, and be all the mode using directly cooling in acrylic resin cooling procedure, i.e. directly colder air is connect third Olefin(e) acid resin is lowered the temperature, and causes the outer layer moment of acrylic resin to solidify, but internal layer does not solidifies, and inside and outside setting time has difference Not so that the quality of acrylic resin reduces, and causes service life relatively low.
Summary of the invention
It is an object of the invention to there are the problems referred to above for existing technology, it is proposed that a kind of on glass fiber cloth surface The manufacture method of polyacrylic acid coating ester resin, present invention solves the technical problem that it is to form propylene on glass fiber facings Acid resin coating.
The purpose of the present invention can be realized by following technical proposal:
Manufacture method at glass fiber cloth surface-coated polyacrylate resin, it is characterised in that include following step Rapid:
A, go out cloth: the pull-out of tubular glass fiber facings will be wound, existed by glass fiber facings during pull-out Warp-wise and broadwise are tightened;
B, dust: the glass fiber facings after tightening passes through dust-blowing device by that may be present on glass fiber facings Dust is removed;
C, preheating: preheated by baking box by glass fiber facings, the temperature of preheating is 300 DEG C~350 DEG C;
D, sizing: by the glass fiber facings after preheating by equipped with the charging basket of acrylic resin, glass under molten condition Fabric lining is no less than 2s~3s by the time in container;The bottom of charging basket is provided with agitating device, described agitating device bag Including stirring motor, stirring motor is arranged at the bottom of charging basket, and the output shaft of stirring motor is through the bottom of charging basket, stirring motor Output shaft on be fixed with some groups of stirring vanes, the quantity of stirring vane is three, the i.e. first stirring vane, the second paddle Sheet and the 3rd stirring vane, the first stirring vane, the second stirring vane and the 3rd stirring vane be from top to bottom arranged in order, and first The shape of stirring vane becomes W shape, the shape of the second stirring vane to become S-shaped, and the shape of the 3rd stirring vane becomes Y shape;
E, binder: the glass fiber facings being bonded with molten condition acrylic resin is passed through swager, is passing through binder Time on machine between two preheated pressure rollers, acrylic resin can be pressed into the gap in glass fiber facings, by scraper plate by glass The acrylic resin that glass fabric lining surface is more than strikes off and stays on glass fiber facings surface thickness to be 0.3mm~0.6mm Acrylic resin coating;
F, cooling: will be cooled down by cooler with the glass fiber facings of acrylic resin coating, cooling procedure is gradually Entering formula, after by cooler, acrylic resin condenses on glass fiber facings;
G, receive cloth: be cylinder by the glass fiber facings rolling with acrylic resin coating.
Being tightened by glass fiber facings and can ensure the smooth of acrylic resin coating when coating, dust is avoided that dust Affect coating;Due to the acrylic resin temperature under molten condition 400 DEG C~450 DEG C, in order to avoid glass fiber facings is entering Enter charging basket deformation because of the most violent variations in temperature, before entering charging basket, glass fiber facings is preheated so that glass Fabric lining can preferably bear the temperature of the acrylic resin under molten condition so that acrylic resin is preferably attached on glass On glass fabric lining;It is more sticky for acrylic resin under molten condition, can cannot ensure when being attached on glass fiber facings Fill the gap between warp and parallel on full glass fiber facings, therefore by pressure roller, acrylic resin can be pressed into glass fiber Gap between warp and parallel on fabric, pressure roller, through preheating, is avoided that and causes acrylic resin solidify because temperature is relatively low, guarantor Card acrylic resin during binder is appointed for molten condition, finally by scraper plate by the acrylic resin that is more than from glass fibre Striking off on fabric, now acrylic resin i.e. fills the gap on full glass fiber facings between warp and parallel, covers the most completely Cover glass fabric lining surface;By above-mentioned steps can make acrylic resin fabulous be attached on glass fiber facings surface, Improve the service life of product.
Above-mentioned in the manufacture method of glass fiber cloth surface-coated polyacrylate resin, in step e, pressure roller Temperature between 320 DEG C~350 DEG C.The pressure roller of this temperature is avoided that when with acrylic contact and causes acrylic resin Solidification.
Above-mentioned in the manufacture method of glass fiber cloth surface-coated polyacrylate resin, described cooler bag Including and be available for the cooler bin that glass fiber facings passes through, one end of cooler bin has fabric input mouth, and the other end of cooler bin has cloth Mouthful, if being arranged in sequence with dry cooling fan from fabric input mouth to the bearing of trend of exit slot in described cooler bin, cooling fan has Two row, two row cooling fans lay respectively at the two ends up and down of cooler bin and are oppositely arranged, and go out near fabric input mouth in described cooler bin Be fixed with some heating wire, described heating wire two row cooling fans between, the heat production interval of described heating wire be 80 DEG C~ The power of 150 DEG C and some heating wire is gradually reduced to exit slot side near fabric input mouth.
In cooling procedure, the glass fiber facings with acrylic resin coating enters in cooler bin from fabric input mouth, this Time cooler bin in acrylic resin coating can be lowered the temperature near the cooling fan of fabric input mouth, owing to entering cloth near cooler bin Being provided with heating wire at Kou, the air themperature therefore acting on acrylic resin coating can be of a relatively high, but this temperature is relative to third The temperature of olefin(e) acid resinous coat itself is relatively low, therefore slowly can lower the temperature acrylic resin coating, before glass fiber facings Entering, the air themperature acting on acrylic resin coating can be gradually lowered, thus when glass fiber facings moves out cooler Acrylic resin coating can be the most cooled, and owing to using the gradual type of cooling, the internal layer of acrylic resin coating is with outer Layer synchronizes cooling, and therefore adhesion effect and quality are all optimal, improves the quality of glass fiber facings.
Above-mentioned in the manufacture method of glass fiber cloth surface-coated polyacrylate resin, in described cooler bin Being positioned at stage casing and be fixed with baffle plate, the middle part of described baffle plate has and is available for the mouth of stepping down that glass fiber facings passes through, described heating wire Being positioned at the baffle plate side near fabric input mouth, the both sides of described cooler bin have some air outlets.Can be stopped near cold by baffle plate But the hot-air of chamber cloth feeding port side enters cooler bin near exit slot side so that advancing at glass fiber facings is to act on The air themperature of acrylic resin coating can be gradually lowered, it is achieved the gradual type of cooling, improves the product of glass fiber facings Matter;Air in cooler bin can be discharged heat radiation by air outlet, it is achieved cooler bin and the circulation of outside air.
Above-mentioned in the manufacture method of glass fiber cloth surface-coated polyacrylate resin, described swager bag Including the binder assembly that about two mirror images are arranged, binder assembly includes portal frame and the installing rack being arranged in portal frame, described The two ends of portal frame are equipped with roller, and the roller on upper and lower binder assembly is oppositely arranged and glass fiber facings is clamped in it Between, the middle part of portal frame is provided with lead, and described installing rack is fixed on one end of lead, and described lead can relative portal frame Relative movement, described pressure roller is rotatably connected on installing rack, and described installing rack and portal frame are provided with spring, and spring housing is at lead On, the pressure roller on upper and lower binder assembly is oppositely arranged and spring make two pressure rollers relatively against, on described scraper plate connect have spiral shell Tightening latch, described shank of bolt is threaded on portal frame.By two binder assemblies, the glass fiber facings of levels is carried out Binder and scraper, two pressure rollers are clamped on glass fiber facings the gap that acrylic resin can be pressed into glass fiber facings In;The position of scraper plate can be regulated by rotating bolt bar, therefore can realize acrylic resin thickness on glass fiber facings Different demands.
Above-mentioned in the manufacture method of glass fiber cloth surface-coated polyacrylate resin, described scraper plate is relative Pressure roller is obliquely installed, and one end of described scraper plate is near pressure roller, and the other end of described scraper plate is away from pressure roller.The scraper plate of this structure can be Strike off the acrylic resin being more than when glass fiber facings moves and be so that the acrylic resin incline direction along scraper plate simultaneously Move out scraper plate.
Above-mentioned in the manufacture method of glass fiber cloth surface-coated polyacrylate resin, described dust-blowing device The air gun connected including high pressure gas holder and the dust binding plate scribbling mucus, air gun is positioned at glass fiber facings side, and dust binding plate is positioned at Glass fiber facings opposite side.The gases at high pressure alignment glass fiber facings of air gun blowout in stepb, by glass fiber facings On dust blow off, the dust blown off flies to dust binding plate and is sticked by dust binding plate, it is to avoid the secondary pollution of dust.
Compared with prior art, this has energy in the manufacture method of glass fiber cloth surface-coated polyacrylate resin Glass fiber facings is formed acrylic resin coating the advantage improving service life.
Accompanying drawing explanation
Fig. 1 is the block diagram of the manufacture method at glass fiber cloth surface-coated polyacrylate resin.
Fig. 2 is the sectional structure schematic diagram of this cooler.
Fig. 3 is the side-looking structural representation of swager.
In figure, 1, cooler bin;11, fabric input mouth;12, exit slot;13, cooling fan;14, heating wire;15, baffle plate;151、 Step down mouth;16, air outlet;2, binder assembly;21, portal frame;211, roller;22, installing rack;221, lead;23, spring; 24, scraper plate;241, shank of bolt;25, pressure roller.
Detailed description of the invention
The following is the specific embodiment of the present invention and combine accompanying drawing, technical scheme is further described, But the present invention is not limited to these embodiments.
As it is shown in figure 1, in the manufacture method of glass fiber cloth surface-coated polyacrylate resin, including following step Rapid:
A, go out cloth: the pull-out of tubular glass fiber facings will be wound, existed by glass fiber facings during pull-out Warp-wise and broadwise are tightened;
B, dust: the glass fiber facings after tightening passes through dust-blowing device by that may be present on glass fiber facings Dust is removed;
C, preheating: preheated by baking box by glass fiber facings, the temperature of preheating is 320 DEG C;
D, sizing: by the glass fiber facings after preheating by equipped with the charging basket of acrylic resin, glass under molten condition Fabric lining is 2.5s by the time in container;The bottom of charging basket is provided with agitating device, and described agitating device includes stirring Motor, stirring motor is arranged at the bottom of charging basket, and the output shaft of stirring motor is through the bottom of charging basket, the output of stirring motor Being fixed with some groups of stirring vanes on axle, the quantity of stirring vane is three, the i.e. first stirring vane, the second stirring vane and Three stirring vanes, the first stirring vane, the second stirring vane and the 3rd stirring vane be from top to bottom arranged in order, the first paddle The shape of sheet becomes W shape, the shape of the second stirring vane to become S-shaped, and the shape of the 3rd stirring vane becomes Y shape;
E, binder: the glass fiber facings being bonded with molten condition acrylic resin is passed through swager, is passing through binder Time on machine between two preheated pressure rollers 25, acrylic resin can be pressed into the gap in glass fiber facings, by scraper plate 24 The acrylic resin that glass fiber facings surface is more than is struck off and stays on glass fiber facings surface thickness be 0.3mm~ The acrylic resin coating of 0.6mm;In step e, the temperature of pressure roller 25 is between 320 DEG C~350 DEG C.Pressure roller 25 energy of this temperature Avoid causing acrylic resin to solidify when with acrylic contact.
F, cooling: will be cooled down by cooler with the glass fiber facings of acrylic resin coating, cooling procedure is gradually Entering formula, after by cooler, acrylic resin condenses on glass fiber facings;
G, receive cloth: be cylinder by the glass fiber facings rolling with acrylic resin coating.
As in figure 2 it is shown, cooler includes being available for the cooler bin 1 that glass fiber facings passes through, one end of cooler bin 1 have into Cloth mouth 11, the other end of cooler bin 1 has exit slot 12, depends on to the bearing of trend of exit slot 12 from fabric input mouth 11 in cooler bin 1 If being arranged with dry cooling fan 13 secondary, cooling fan 13 has two row, and two row cooling fans 13 lay respectively at the upper and lower of cooler bin 1 Two ends are also oppositely arranged, and go out to be fixed with some heating wire 14 near fabric input mouth 11 in cooler bin 1, and heating wire 14 is positioned at two row coolings Between fan 13, the heat production interval of heating wire 14 is the most close fabric input mouth 11 of power of 80 DEG C~150 DEG C and some heating wire 14 It is gradually reduced to exit slot 12 side.
Being positioned at stage casing in cooler bin 1 and be fixed with baffle plate 15, the middle part of baffle plate 15 has and is available for what glass fiber facings passed through Stepping down mouth 151, heating wire 14 is positioned at the baffle plate 15 side near fabric input mouth 11, and the both sides of cooler bin 1 have some air outlets 16. In cooling procedure, the glass fiber facings with acrylic resin coating enters in cooler bin 1 from fabric input mouth 11, now cools down In case 1 near fabric input mouth 11 cooling fan 13 acrylic resin coating can be lowered the temperature, due near cooler bin 1 enter cloth Being provided with heating wire 14 at mouth 11, the air themperature therefore acting on acrylic resin coating can be of a relatively high, but this temperature phase Relatively low to the temperature of acrylic resin coating itself, therefore can slowly acrylic resin coating be lowered the temperature, along with glass fibre face Material advances, and the air themperature acting on acrylic resin coating can be gradually lowered, thus moves out cooling at glass fiber facings During device, acrylic resin coating can be the most cooled, owing to using the gradual type of cooling, sticking of acrylic resin coating Best results, improves the quality of glass fiber facings.Can stop that the heat near cooler bin 1 fabric input mouth 11 side is empty by baffle plate 15 Gas enters cooler bin 1 near exit slot 12 side so that advancing at glass fiber facings acts on acrylic resin coating Air themperature can be gradually lowered, it is achieved the gradual type of cooling, improves the quality of glass fiber facings;Air outlet 16 can be by cold But the air in case 1 discharges heat radiation, it is achieved cooler bin 1 and the circulation of outside air.
As it is shown on figure 3, swager includes the binder assembly 2 that about two mirror images are arranged, binder assembly 2 includes portal frame 21 With the installing rack 22 being arranged in portal frame 21, the two ends of portal frame 21 are equipped with roller 211, the rolling on upper and lower binder assembly 2 Between wheel 211 is oppositely arranged and is clamped in by glass fiber facings, the middle part of portal frame 21 is provided with lead 221, installing rack 22 Being fixed on one end of lead 221, lead 221 energy portal frame 21 relative movement relatively, pressure roller 25 is rotatably connected on installing rack On 22, installing rack 22 and portal frame 21 are provided with spring 23, and spring 23 is enclosed within lead 221, the pressure roller on upper and lower binder assembly 2 25 be oppositely arranged and spring 23 make two pressure rollers 25 relatively against, scraper plate 24 connects and has shank of bolt 241, shank of bolt 241 spiral shell Stricture of vagina is connected on portal frame 21.By two binder assemblies 2 glass fiber facings of levels carried out binder and scraper, two Pressure roller 25 is clamped on glass fiber facings and can be pressed in the gap of glass fiber facings by acrylic resin;Pass through rotating bolt Bar 241 can regulate the position of scraper plate 24, therefore can realize the different demands of acrylic resin thickness on glass fiber facings.
The relative pressure roller 25 of scraper plate 24 is obliquely installed, and one end of scraper plate 24 is near pressure roller 25, and the other end of scraper plate 24 is away from pressure Roller 25.The scraper plate 24 of this structure can strike off the acrylic resin being more than and be so that acrylic acid simultaneously when glass fiber facings moves Resin moves out scraper plate 24 along the incline direction of scraper plate 24.
Stirring motor is running all the time, and three difform stirring vanes are rotating all the time so that acrylic resin begins Being evenly distributed on eventually in charging basket, the shape of the first stirring vane is designed to W shape, the shape of the second stirring vane is designed to S-shaped, The shape of the 3rd stirring vane is designed to Y shape, and make that acrylic resin stirs is the most uniform.
Dust-blowing device includes the air gun that high pressure gas holder connects and the dust binding plate scribbling mucus, and air gun is positioned at glass fiber facings Side, dust binding plate is positioned at glass fiber facings opposite side.The gases at high pressure alignment glass fibre face of air gun blowout in stepb Material, blows off the dust on glass fiber facings, and the dust blown off flies to dust binding plate and sticked by dust binding plate, it is to avoid the two of dust Secondary pollution.
Being tightened by glass fiber facings and can ensure the smooth of acrylic resin coating when coating, dust is avoided that dust Affect coating;Due to the acrylic resin temperature under molten condition 400 DEG C~450 DEG C, in order to avoid glass fiber facings is entering Enter charging basket deformation because of the most violent variations in temperature, before entering charging basket, glass fiber facings is preheated so that glass Fabric lining can preferably bear the temperature of the acrylic resin under molten condition so that acrylic resin is preferably attached on glass On glass fabric lining;It is more sticky for acrylic resin under molten condition, can cannot ensure when being attached on glass fiber facings Fill the gap between warp and parallel on full glass fiber facings, therefore by pressure roller 25, acrylic resin can be pressed into glass fine Tieing up the gap between warp and parallel on fabric, pressure roller 25, through preheating, is avoided that and causes because temperature is relatively low acrylic resin to coagulate Gu, it is ensured that during binder, acrylic resin is appointed for molten condition, finally by scraper plate 24 by the acrylic resin that is more than from Striking off on glass fiber facings, now acrylic resin i.e. fills the gap on full glass fiber facings between warp and parallel, Also glass fiber facings surface is completely covered.
Specific embodiment described herein is only to present invention spirit explanation for example.Technology neck belonging to the present invention Described specific embodiment can be made various amendment or supplements or use similar mode to replace by the technical staff in territory Generation, but without departing from the spirit of the present invention or surmount scope defined in appended claims.

Claims (7)

1. in the manufacture method of glass fiber cloth surface-coated polyacrylate resin, it is characterised in that comprise the following steps:
A, go out cloth: the pull-out of tubular glass fiber facings will be wound, by glass fiber facings at warp-wise during pull-out Tighten with broadwise;
B, dust: the glass fiber facings after tightening passes through dust-blowing device by dust that may be present on glass fiber facings Remove;
C, preheating: preheated by baking box by glass fiber facings, the temperature of preheating is 300 DEG C~350 DEG C;
D, sizing: by the glass fiber facings after preheating by equipped with the charging basket of acrylic resin, glass fibre under molten condition Fabric is no less than 2s~3s by the time in container;The bottom of charging basket is provided with agitating device, and described agitating device includes stirring Mixing motor, stirring motor is arranged at the bottom of charging basket, the output shaft of stirring motor through the bottom of charging basket, stirring motor defeated Being fixed with some groups of stirring vanes on shaft, the quantity of stirring vane is three, the i.e. first stirring vane, the second stirring vane and 3rd stirring vane, the first stirring vane, the second stirring vane and the 3rd stirring vane be from top to bottom arranged in order, the first stirring The shape of blade becomes W shape, the shape of the second stirring vane to become S-shaped, and the shape of the 3rd stirring vane becomes Y shape;
E, binder: the glass fiber facings being bonded with molten condition acrylic resin is passed through swager, by swager Time between two preheated pressure rollers, acrylic resin can be pressed into the gap in glass fiber facings, by scraper plate by glass fibers The dimension acrylic resin that is more than of web surface strike off and stay thickness to be 0.3mm~0.6mm on glass fiber facings surface third Olefin(e) acid resinous coat;
F, cooling: will be cooled down by cooler with the glass fiber facings of acrylic resin coating, cooling procedure is gradual , after by cooler, acrylic resin condenses on glass fiber facings;
G, receive cloth: be cylinder by the glass fiber facings rolling with acrylic resin coating.
Manufacture method at glass fiber cloth surface-coated polyacrylate resin the most according to claim 1, it is special Levying and be, in step e, the temperature of pressure roller is between 320 DEG C~350 DEG C.
Manufacture method at glass fiber cloth surface-coated polyacrylate resin the most according to claim 1, it is special Levying and be, described cooler includes being available for the cooler bin that glass fiber facings passes through, and one end of cooler bin has fabric input mouth, cooling The other end of case has exit slot, if being arranged in sequence with dry cooling from fabric input mouth to the bearing of trend of exit slot in described cooler bin Fan, cooling fan has two row, and two row cooling fans lay respectively at the two ends up and down of cooler bin and are oppositely arranged, described cooling Going out to be fixed with some heating wire near fabric input mouth in case, described heating wire cools down between fans at two row, described heating wire Heat production interval is that the power of 80 DEG C~150 DEG C and some heating wire is gradually reduced to exit slot side near fabric input mouth.
Manufacture method at glass fiber cloth surface-coated polyacrylate resin the most according to claim 3, it is special Levying and be, be positioned at stage casing and be fixed with baffle plate in described cooler bin, the middle part of described baffle plate has and is available for glass fiber facings and passes through Mouth of stepping down, described heating wire is positioned at the baffle plate side near fabric input mouth, and the both sides of described cooler bin have some air outlets.
Manufacture method at glass fiber cloth surface-coated polyacrylate resin the most according to claim 1, it is special Levying and be, described swager includes the binder assembly that about two mirror images are arranged, and binder assembly includes portal frame and is arranged on dragon Installing rack in door frame, the two ends of described portal frame are equipped with roller, and the roller on upper and lower binder assembly is oppositely arranged and by glass Between glass fabric lining is clamped in, the middle part of portal frame is provided with lead, and described installing rack is fixed on one end of lead, described Lead energy portal frame relative movement relatively, described pressure roller is rotatably connected on installing rack, and described installing rack and portal frame are provided with Spring, spring housing on lead, the pressure roller on upper and lower binder assembly is oppositely arranged and spring make two pressure rollers relatively against, Connecting on described scraper plate has shank of bolt, described shank of bolt to be threaded on portal frame.
Manufacture method at glass fiber cloth surface-coated polyacrylate resin the most according to claim 5, it is special Levying and be, described scraper plate is obliquely installed relative to pressure roller, and one end of described scraper plate is near pressure roller, and the other end of described scraper plate is away from pressure Roller.
Manufacture method at glass fiber cloth surface-coated polyacrylate resin the most according to claim 1, it is special Levying and be, described dust-blowing device includes the air gun that high pressure gas holder connects and the dust binding plate scribbling mucus, and air gun is positioned at glass fibre Fabric side, dust binding plate is positioned at glass fiber facings opposite side.
CN201610650211.9A 2016-08-10 2016-08-10 In the production method of glass fabric surface polyacrylic acid coating ester resin Active CN106283685B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610650211.9A CN106283685B (en) 2016-08-10 2016-08-10 In the production method of glass fabric surface polyacrylic acid coating ester resin

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610650211.9A CN106283685B (en) 2016-08-10 2016-08-10 In the production method of glass fabric surface polyacrylic acid coating ester resin

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CN106835727A (en) * 2017-03-17 2017-06-13 浙江显昱纤维织染制衣有限公司 A kind of environmental protection printing waterproof oxford
CN106868690A (en) * 2017-02-21 2017-06-20 朱军 A kind of preparation technology of glass fiber compound material
CN111905981A (en) * 2020-08-12 2020-11-10 常熟市迅达亿针纺织有限公司 Preparation method of knitted fabric coating fabric

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CN101509201A (en) * 2008-12-30 2009-08-19 福建思嘉环保材料科技有限公司 Preparation process for superaqueous surrounding-separating coating material of PVC
CN102002862A (en) * 2010-10-09 2011-04-06 江苏长海复合材料股份有限公司 Method for preparing novel non-woven composite chopped strand mat
CN103521002A (en) * 2013-10-28 2014-01-22 营口创世纪滤材有限公司 Glass fiber filter material and preparation method therefor

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Publication number Priority date Publication date Assignee Title
CN2526343Y (en) * 2001-03-02 2002-12-18 刘学锋 Coated cloth of glass fibre and high-silica fibre
CN101509201A (en) * 2008-12-30 2009-08-19 福建思嘉环保材料科技有限公司 Preparation process for superaqueous surrounding-separating coating material of PVC
CN102002862A (en) * 2010-10-09 2011-04-06 江苏长海复合材料股份有限公司 Method for preparing novel non-woven composite chopped strand mat
CN103521002A (en) * 2013-10-28 2014-01-22 营口创世纪滤材有限公司 Glass fiber filter material and preparation method therefor

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106868690A (en) * 2017-02-21 2017-06-20 朱军 A kind of preparation technology of glass fiber compound material
CN106835727A (en) * 2017-03-17 2017-06-13 浙江显昱纤维织染制衣有限公司 A kind of environmental protection printing waterproof oxford
CN111905981A (en) * 2020-08-12 2020-11-10 常熟市迅达亿针纺织有限公司 Preparation method of knitted fabric coating fabric
CN111905981B (en) * 2020-08-12 2022-03-25 常熟市迅达亿针纺织有限公司 Preparation method of knitted fabric coating fabric

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