CN217973664U - Dyeing apparatus is used in fiber filament production - Google Patents

Dyeing apparatus is used in fiber filament production Download PDF

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Publication number
CN217973664U
CN217973664U CN202221291470.4U CN202221291470U CN217973664U CN 217973664 U CN217973664 U CN 217973664U CN 202221291470 U CN202221291470 U CN 202221291470U CN 217973664 U CN217973664 U CN 217973664U
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dyeing
fiber filament
case
template
groove
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CN202221291470.4U
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Chinese (zh)
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赵建华
沈柏锦
许林君
周君民
王月根
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Hangzhou Guanchen Industrial Co ltd
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Hangzhou Guanchen Industrial Co ltd
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Abstract

The utility model relates to a fiber filament produces technical field, and discloses a dyeing apparatus is used in fiber filament production, including the working plate, the working plate level sets up, the fixed dyeing case that is provided with of working plate top surface level, the lateral symmetry level has been seted up about the dyeing case that the feeding leads to groove one and the logical groove of ejection of compact, the inside vertical L template that is provided with of dyeing case. According to the dyeing device for producing the fiber filaments, the dyeing liquid in the dyeing box is uniformly stirred by the stirring roller arranged at the bottom end of the dyeing box, so that the dyeing effect is improved; the squeezing rollers are arranged in the top end of the dyeing box, and two sides of the fiber filament are squeezed by the two squeezing rollers, so that the dyeing liquid on the surface of the fiber filament is pressed into the fiber filament, and the dyeing efficiency of the fiber filament is improved; through being provided with the L template at dyeing incasement portion, set up the air-out frame at L template inboard and carry out drying process to the fibre filament, effectively avoid the dyeing liquor to drop to the equipment outside.

Description

Dyeing apparatus is used in fiber filament production
Technical Field
The utility model relates to a fiber filament production technical field specifically is a fiber filament production is with dyeing apparatus.
Background
Filaments, also known as continuous filaments, are a class of chemical fiber forms. The filaments are continuous long strands. In the manufacturing process of chemical fibers, spinning fluid is continuously extruded from a spinneret orifice, is cooled by air or is solidified into filaments in a solidification bath to form continuous filament yarns, and then is subjected to post-processing procedures such as stretching, twisting or deformation for further processing and application. The filaments thus produced have lengths of several kilometers or tens of kilometers, both monofilament and multifilament. Chemical fiber filament generally is applied to various clothing, is decorated and is used and other industrial departments, and when current fiber filament production, need pass through the dyeing process, the inside stoving structure that does not set up mostly of current dyeing process equipment leads to the dyeing liquor can not in time adhere on the fiber filament surface thereby drop to the equipment outside, consequently provides a dyeing apparatus for fiber filament production.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a dyeing apparatus is used in fiber filament production to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a dyeing device for producing fiber filaments comprises a working plate, wherein the working plate is horizontally arranged, a dyeing box is horizontally and fixedly arranged on the top surface of the working plate, a first feeding through groove and a first discharging through groove are symmetrically and horizontally formed in the side surfaces of the left side and the right side of the dyeing box, an L-shaped plate is vertically arranged in the dyeing box, and the four side surfaces of the L-shaped plate are fixedly connected with the inner wall of the dyeing box;
the utility model discloses a dyeing box, including dyeing box, door type pipe top surface and hot-blast pump, dyeing box top surface correspond L template position level and fixedly be provided with the filter screen, the fixed hot-blast pump that is provided with of dyeing box left end top surface, the hot-blast pump goes out the tuber pipe and runs through the filter screen top surface and extend to L template inboard, vertically around the L template inboard is provided with out the air frame, two go out the inside cavity setting of air frame, two it all with dyeing incasement wall fixed connection, two to go out the air frame and be close to the equal fixed shower nozzle that link up of terminal surface mutually, two it is vertical to be provided with a type pipe to go out the air frame top, door type pipe front and back end respectively with two fixed link up in air frame top that go out, door type pipe top surface and hot-blast pump are gone out tuber pipe bottom fixed link up and are connected, through being provided with the L template in dyeing incasement portion, set up the air frame at L template inboard and carry out drying process to the fibre filament, effectively avoid dyeing liquid to drop to the equipment outside.
Preferably, the working plate is vertically provided with supporting legs below, the top surfaces of the supporting legs are fixedly connected with the bottom surface of the working plate, and the four supporting legs are uniformly arranged at four corners of the bottom surface of the working plate.
Preferably, L template left surface level link up and has seted up feeding through groove two, L template lateral surface corresponds feeding through groove two position levels and fixes to link up and be provided with the protecting frame, the inside symmetry from top to bottom of protecting frame is provided with L type wringing board, two the wringing board right-hand member of L type extends to feeding through groove two insides.
Preferably, the feeding is led to the equal vertical flexible groove of having seted up of terminal surface about the groove two is inside, two the crowded water board outer end of L type slides respectively and extends to flexible inslot portion and is connected through connecting spring and flexible inslot portion terminal surface.
Preferably, the dyeing box is internally provided with a first guide roller in the outer side of the L-shaped plate through horizontal rotation of a bearing seat, the outer side of the first guide roller is horizontally provided with an anti-moving arc plate, the front end face and the rear end face of the anti-moving arc plate are fixedly connected with the inner wall of the dyeing box, a guide ring groove is sequentially formed in the front and the rear surface of the first guide roller, and a partition plate is vertically and fixedly arranged on the inner side surface of the anti-moving arc plate corresponding to the guide ring groove.
Preferably, the level is provided with the squeeze roll about dyeing case upper end is inside, two the squeeze roll rear end all rotates with dyeing incasement wall through bearing frame two to be connected, two the squeeze roll front end runs through dyeing incasement wall and extends to the dyeing incasement outside, squeeze roll surface rotates with dyeing incasement wall seal to be connected, two the equal fixed cover in squeeze roll front end surface is equipped with gear one, two a gear side intermeshing.
Preferably, the level is provided with the stirring roller about dyeing bottom of the case portion is inside, two the stirring roller rear end all rotates through bearing frame three and dyeing incasement wall to be connected, two the stirring roller front end runs through dyeing incasement wall and extends to the dyeing incasement outside, the stirring roller surface rotates with dyeing incasement wall is sealed to be connected, two the equal fixed cover in stirring roller front end surface is equipped with gear two, two gear two side intermeshing, the positive fixed motor that is provided with of dyeing case, the fixed cover of motor output pole is equipped with gear three, gear three side and right side gear two side intermeshing are through being provided with the squeeze roll in dyeing incasement top inside, through two the squeeze roll extrudees fibre filament both sides, inside pressing into fibre filament with the dyeing liquid on fibre filament surface, improves the dyeing efficiency of fibre filament.
Preferably, the inboard level of L template is provided with guide roller two, guide roller two front and back ends pass through bearing frame four and dye the incasement wall and rotate and be connected, the left side the equal fixed cover in squeeze roll front end surface and left side stirring roller front end surface is equipped with the belt pulley, and two belt pulleys pass through belt drive and connect, dye the fixed link up in case side and be provided with the drain pipe, the sealed screw thread in drain pipe outer end is provided with out the drain pipe lid, evenly stirs the dyeing liquid of dyeing incasement portion through being provided with the stirring roller at dyeing bottom of the case end inside, improves the dyeing effect.
Compared with the prior art, the beneficial effects of the utility model are that: according to the dyeing device for producing the fiber filaments, the dyeing liquid in the dyeing box is uniformly stirred by the stirring roller arranged at the bottom end of the dyeing box, so that the dyeing effect is improved; the squeezing rollers are arranged in the top end of the dyeing box, and two sides of the fiber filament are squeezed by the two squeezing rollers, so that the dyeing liquid on the surface of the fiber filament is pressed into the fiber filament, and the dyeing efficiency of the fiber filament is improved; through being provided with the L template at dyeing incasement portion, set up the air-out frame at L template inboard and carry out drying process to the fibre filament, effectively avoid the dyeing liquor to drop to the equipment outside.
Drawings
FIG. 1 is a schematic view of the overall front structure of the present invention;
FIG. 2 is a sectional view of the overall front structure of the present invention;
FIG. 3 is a schematic view of the front structure of the anti-moving arc plate of the present invention;
fig. 4 is an enlarged view of the area a in fig. 2 according to the present invention.
In the figure: working plate 1, supporting leg 2, dyeing box 3, hot-blast pump 4, L type board 5, filter screen 6, air-out frame 7, door type pipe 8, guide roller two 9, stirring roller 10, guide roller one 11, squeeze roll 12, prevent moving arc board 14, baffle 15, gear one 16, gear two 17, motor 18, feeding through groove two 19, expansion tank 20, L type wringing board 21, protection frame 22.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a dyeing device for producing fiber filaments comprises a working plate 1, wherein the working plate 1 is horizontally arranged, a dyeing box 3 is horizontally and fixedly arranged on the top surface of the working plate 1, a feeding through groove I and a discharging through groove are symmetrically and horizontally formed in the side surfaces of the left side and the right side of the dyeing box 3, an L-shaped plate 5,L is vertically arranged in the dyeing box 3, four side surfaces of a template 5 are fixedly connected with the inner wall of the dyeing box 3, a supporting leg 2 is vertically arranged below the working plate 1, the top surface of the supporting leg 2 is fixedly connected with the bottom surface of the working plate 1, four supporting legs 2 are uniformly arranged at four corners of the bottom surface of the working plate 1, a feeding through groove II 19 is horizontally communicated with the left side surface of the L-shaped plate 5, a protective frame 22 is horizontally and fixedly communicated with the outer side surface of the L-shaped plate 5 corresponding to the position of the feeding through groove II 19, L-shaped water squeezing plates 21 are symmetrically arranged up and down in the protective frame 22, the right ends of the two L-shaped water squeezing plates 21 extend into the feeding through groove II 19, telescopic grooves 20 are vertically formed in the feeding through grooves, and the two L-shaped water squeezing plates 21, the outer ends extend into the telescopic grooves 20 respectively in a sliding manner and are connected with the telescopic grooves 20 through a connecting spring;
a filter screen 6 is horizontally and fixedly arranged on the top surface of the dyeing box 3 corresponding to the position of the L-shaped plate 5, a hot air pump 4 is fixedly arranged on the top surface of the left end of the dyeing box 3, an air outlet pipe of the hot air pump 4 penetrates through the top surface of the filter screen 6 and extends to the inner side of the L-shaped plate 5, air outlet frames 7 are vertically arranged at the front and the back of the inner side of the L-shaped plate 5, the inner parts of the two air outlet frames 7 are hollow, the outer side surfaces of the two air outlet frames 7 are fixedly connected with the inner wall of the dyeing box 3, spray heads are fixedly communicated and arranged on the end surfaces of the two air outlet frames 7, the L-shaped plate 5 is arranged in the dyeing box 3, the air outlet frames 7 are arranged on the inner side of the L-shaped plate 5 for drying fiber filaments, the dyeing liquid is effectively prevented from falling to the outer side of the equipment, a door-shaped pipe 8 is vertically arranged above the two air outlet frames 7, the front and back ends of the door-shaped pipe 8 are respectively fixedly communicated and connected with the top ends of the two air outlet frames 7, the top surface of the door-shaped pipe 8 is fixedly communicated and connected with the bottom end of the air outlet pipe of the hot air pump 4, a guide roller I11 is horizontally and rotatably arranged on the outer side of an L-shaped plate 5 in the dyeing box 3 through a bearing seat I, an anti-moving arc plate 14 is horizontally arranged on the outer side of the guide roller I11, the front end face and the rear end face of the anti-moving arc plate 14 are fixedly connected with the inner wall of the dyeing box 3, guide ring grooves are sequentially formed in the surface of the guide roller I11 from front to back, a partition plate 15 is vertically and fixedly arranged on the inner side of the guide ring groove corresponding to the position of the inner side of the anti-moving arc plate 14, extrusion rollers 12 are horizontally arranged on the left and right sides of the upper end of the dyeing box 3, the rear ends of the two extrusion rollers 12 are rotatably connected with the inner wall of the dyeing box 3 through a bearing seat II, the front ends of the two extrusion rollers 12 penetrate through the inner wall of the dyeing box 3 and extend to the outer side of the dyeing box 3, the surface of the extrusion rollers 12 is rotatably connected with the inner wall of the dyeing box 3 in a sealing manner, gears I16 are fixedly sleeved on the surfaces of the two extrusion rollers 12, and are mutually meshed with each other, the horizontal stirring roller 10 that is provided with about dyeing case 3 bottom is inside, through being provided with squeeze roller 12 at dyeing case 3 top inside, extrude the fibre filament both sides through two squeeze rollers 12, press the dyeing liquid on fibre filament surface inside the fibre filament, improve the dyeing efficiency of fibre filament, two stirring roller 10 rear ends all rotate with dyeing case 3 inner wall through bearing frame three and are connected, two stirring roller 10 front ends run through dyeing case 3 inner wall and extend to the dyeing case 3 outside, stirring roller 10 surface and dyeing case 3 inner wall sealed rotation are connected, through being provided with stirring roller 10 inside dyeing case 3 bottom and evenly stirring the dyeing liquid inside dyeing case 3, improve the dyeing effect, two stirring roller 10 front end surfaces all fixed cover are equipped with gear two 17, two gear two 17 side intermeshing, dyeing case 3 front fixed is provided with motor 18, motor 18 output pole fixed cover is equipped with gear three, gear three side and right side intermeshing, the inboard horizontal guide roller two 9 that is provided with of L5, guide roller two ends rotate with four through the belt pulley and is connected with dyeing case 3 front and output pole fixed cover and is equipped with the left side through the belt pulley 3 front end inner wall and the fixed surface is provided with the extrusion roller 12, the left side of the belt wheel and the sealed extrusion roller is connected with the extrusion roller, the left side of the extrusion roller 12, the front end of the fixed belt wheel is provided with the extrusion roller through the side of the belt pulley and is connected with the dyeing case 3.
When in use, the stirring roller 10 is arranged in the bottom end of the dyeing box 3 to uniformly stir the dyeing liquid in the dyeing box 3, so that the dyeing effect is improved; the squeezing rollers 12 are arranged in the top end of the dyeing box 3, the two sides of the fiber filament are squeezed through the two squeezing rollers 12, the dyeing liquid on the surface of the fiber filament is pressed into the fiber filament, and the dyeing efficiency of the fiber filament is improved; through being provided with L template 5 in dyeing case 3 inside, set up air-out frame 7 and carry out drying process to the fibre filament in L template 5 inboard, effectively avoid the dyeing liquor to drop to the equipment outside.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in the embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (8)

1. The utility model provides a fiber filament production is with dyeing apparatus, includes working plate (1), its characterized in that: the dyeing machine is characterized in that the working plate (1) is horizontally arranged, the top surface of the working plate (1) is horizontally and fixedly provided with a dyeing box (3), the side surfaces of the left side and the right side of the dyeing box (3) are symmetrically and horizontally provided with a feeding through groove I and a discharging through groove, an L-shaped plate (5) is vertically arranged in the dyeing box (3), and four side surfaces of the L-shaped plate (5) are fixedly connected with the inner wall of the dyeing box (3);
dyeing case (3) top surface corresponds L template (5) position level and is fixed to be provided with filter screen (6), dyeing case (3) left end top surface is fixed and is provided with hot-blast pump (4), hot-blast pump (4) play tuber pipe runs through filter screen (6) top surface and extends to L template (5) inboard, vertical being provided with out fan frame (7), two around L template (5) inboard go out the inside cavity setting of fan frame (7), two it all with dyeing case (3) inner wall fixed connection, two to go out fan frame (7) lateral surface equal fixed link up of terminal surface mutually and be provided with the shower nozzle, two it is vertical to be provided with door type pipe (8) to go out fan frame (7) top, door type pipe (8) front and back end respectively with two play fan frame (7) top fixed link up connections, door type pipe (8) top surface and hot-blast pump (4) play tuber pipe bottom fixed link up connection.
2. The dyeing apparatus for producing a fiber filament according to claim 1, characterized in that: the supporting legs (2) are vertically arranged below the working plate (1), the top surfaces of the supporting legs (2) are fixedly connected with the bottom surface of the working plate (1), and the four supporting legs (2) are evenly arranged at four corners of the bottom surface of the working plate (1).
3. The dyeing apparatus for producing a fiber filament according to claim 1, characterized in that: l template (5) left surface level link up and has seted up the feeding and lead to groove two (19), L template (5) lateral surface corresponds feeding and leads to groove two (19) position level and fixes to link up and be provided with protecting frame (22), the inside upper and lower symmetry of protecting frame (22) is provided with L type wringing plate (21), two L type wringing plate (21) right-hand member extends to the feeding and leads to inside groove two (19).
4. The dyeing apparatus for producing a fiber filament according to claim 3, characterized in that: the feeding through groove two (19) is internally provided with an upper end face and a lower end face which are vertically provided with a telescopic groove (20), and the outer ends of the L-shaped water squeezing plates (21) respectively slide and extend into the telescopic groove (20) and are connected with the inner end face of the telescopic groove (20) through connecting springs.
5. The dyeing apparatus for producing a fiber filament according to claim 1, characterized in that: dye case (3) inside is located L template (5) outside and rotates through a bearing frame level and is provided with guide roller (11), guide roller (11) outside level is provided with prevents moving arc board (14), prevent moving arc board (14) around the terminal surface all with dyeing case (3) inner wall fixed connection, guide roller (11) surface has been seted up the guide annular from the front backward in proper order, prevent moving arc board (14) medial surface and correspond the vertical fixed baffle (15) that are provided with in guide annular groove position.
6. The dyeing apparatus for producing a fiber filament according to claim 1, characterized in that: dye case (3) upper end inside level of controlling and be provided with squeeze roll (12), two squeeze roll (12) rear end all rotates through bearing frame two and dyeing case (3) inner wall and is connected, two squeeze roll (12) front end runs through dyeing case (3) inner wall and extends to the dyeing case (3) outside, squeeze roll (12) surface rotates with dyeing case (3) inner wall sealing and is connected, two squeeze roll (12) front end surface all fixed cover is equipped with gear (16), two gear (16) side intermeshing.
7. The dyeing apparatus for producing a fiber filament according to claim 6, characterized in that: dye case (3) bottom inside left and right sides level and be provided with stirring roller (10), two stirring roller (10) rear end all rotates through bearing frame three and dyeing case (3) inner wall and is connected, two stirring roller (10) front end runs through dyeing case (3) inner wall and extends to dyeing case (3) outside, stirring roller (10) surface rotates with dyeing case (3) inner wall sealing and is connected, two stirring roller (10) front end surface all fixed cover is equipped with two (17) of gear, two (17) side intermeshing, dyeing case (3) openly fixed being provided with motor (18), the fixed cover of motor (18) output shaft is equipped with three of gear, the gear three sides and two (17) side intermeshing of right side gear.
8. The dyeing apparatus for producing a fiber filament according to claim 7, characterized in that: l template (5) inboard level is provided with guide roller two (9), the guide roller two (9) front and back end is connected with dyeing case (3) inner wall rotation through bearing frame four, the left side the equal fixed cover in squeeze roll (12) front end surface and left side stirring roller (10) front end surface is equipped with the belt pulley, and two belt pulleys pass through belt transmission and connect, dyeing case (3) side is fixed to be link up and is provided with the drain pipe, and the sealed screw thread in drain pipe outer end is provided with out the drain pipe lid.
CN202221291470.4U 2022-05-24 2022-05-24 Dyeing apparatus is used in fiber filament production Active CN217973664U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221291470.4U CN217973664U (en) 2022-05-24 2022-05-24 Dyeing apparatus is used in fiber filament production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221291470.4U CN217973664U (en) 2022-05-24 2022-05-24 Dyeing apparatus is used in fiber filament production

Publications (1)

Publication Number Publication Date
CN217973664U true CN217973664U (en) 2022-12-06

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ID=84268213

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Application Number Title Priority Date Filing Date
CN202221291470.4U Active CN217973664U (en) 2022-05-24 2022-05-24 Dyeing apparatus is used in fiber filament production

Country Status (1)

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CN (1) CN217973664U (en)

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