CN213570842U - Modular continuous spinning machine for spinning acrylic filaments by one-groove four-filament wet method - Google Patents
Modular continuous spinning machine for spinning acrylic filaments by one-groove four-filament wet method Download PDFInfo
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- CN213570842U CN213570842U CN202021577013.2U CN202021577013U CN213570842U CN 213570842 U CN213570842 U CN 213570842U CN 202021577013 U CN202021577013 U CN 202021577013U CN 213570842 U CN213570842 U CN 213570842U
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Abstract
The utility model relates to a spinning technical field provides a four silk wet spinning acrylic fibre filament modular continuous spinning machine in groove, which comprises a frame, the spinning mechanism monomer, be provided with a plurality of groups spinning mechanism monomers in the frame, the spinning mechanism monomer is including setting gradually, stoste conveyor, the setting is in the frame, stoste forming device is including setting gradually, first coagulation bath, through pipeline and stoste conveyor intercommunication, the air bath device, the setting is in the frame, the air bath device is located first coagulation bath one side, the second coagulation bath, the setting is in the frame, the second coagulation bath is located air bath device one side, winding device, the setting is in the frame, be located one side of second coagulation bath, winding device is used for coiling the silk thread after being formed by the second coagulation bath. Through the technical scheme, the problems of large occupied space and low efficiency of the spinning machine in the prior art are solved.
Description
Technical Field
The utility model relates to a spinning technical field, it is specific, relate to a four silk wet processes in a groove spin acrylic fibre long filament modular continuous spinning machine.
Background
The acrylic filament is a shortage product at home, and is currently produced by Mitsubishi yang corporation, a japan enterprise, and the annual production is about 5000T. The quality of domestic acrylic fiber filaments and the quality of Japanese spinning have a great difference, and in the face of increasing demands, besides the need of further exploration and improvement of chemical fiber processes, the structure updating of a spinning device plays a very critical role in improving the quality of filament bundles and replacing spinning varieties, and the existing spinning machines occupy a large amount of space and have relatively low efficiency.
SUMMERY OF THE UTILITY MODEL
The utility model provides a four silk wet process spinning acrylic fibre filament modular continuous spinning machines in a groove has solved the relatively poor problem of spinning machine spinning quality among the prior art.
The technical scheme of the utility model as follows:
the method comprises the following steps:
a machine frame, a plurality of guide rails and a plurality of guide rails,
a plurality of groups of spinning mechanism single bodies are arranged on the frame, the spinning mechanism single bodies comprise a plurality of groups of spinning mechanism single bodies which are arranged in sequence,
a stock solution conveying device arranged on the frame,
a stock solution forming device arranged on the frame, the stock solution forming device comprises a plurality of units which are arranged in sequence,
the first coagulation bath is communicated with the stock solution conveying device through a pipeline,
an air bath device arranged on the frame and positioned on one side of the first coagulation bath groove,
a second coagulation bath provided on the frame, the second coagulation bath being located on one side of the air bath device,
and the winding device is arranged on the frame and positioned on one side of the second coagulation bath and is used for winding the silk yarns formed by the second coagulation bath.
As a further technical proposal, the air bath device comprises,
the traction roller is rotatably arranged on the frame and is positioned above the first coagulation bath and the second coagulation bath and used for drawing the silk threads to perform air bath.
As a further technical proposal, the stoste conveying device comprises,
a heat preservation stock solution pipe arranged on the frame and used for storing and conveying stock solution,
the pump is arranged on the rack, the inlet end of the pump is communicated with the outlet end of the heat-preservation stock solution pipe through a pipeline, and the output end of the pump is communicated with the first coagulation bath through a pipeline.
As a further technical solution, the winding device comprises,
a plurality of rotating rollers are arranged in a rotating way and arranged in parallel, the rotating rollers are used for conveying the silk threads formed by the stock solution forming device,
and the winding machine is arranged on the rack and used for winding and accommodating the silk threads passing through the rotating roller.
As a further technical proposal, the stoste conveying device also comprises,
and the filter is arranged on a pipeline of the pump communicated with the first coagulation bath.
As a further technical solution, it is proposed that,
the roller is positioned above the stock solution forming device,
also comprises the following steps of (1) preparing,
and the turning wheel is rotatably arranged on the second coagulating bath and is used for turning the formed silk threads through the turning wheel and then passing through the rotating roller.
As a further technical solution, it also includes,
and the drying device is arranged on the rack and is positioned between the rotary roller and the winding machine.
As a further technical proposal, the drying device comprises,
two panels are arranged in parallel, through holes are arranged on the surfaces of the two panels, the through holes are arranged in an inclined manner, silk threads are used for passing through the two panels,
the heating wires are arranged on the back sides of the two panels,
and the fan is arranged on one side of the panel, and the heating wire is positioned between the fan and the panel.
The utility model discloses a theory of operation and beneficial effect do:
in the utility model, the stock solution conveying device conveys high-temperature stock solution to the stock solution forming device, the stock solution forming device carries out forming operation on the high-temperature stock solution to form silk threads, then the silk threads formed after the stock solution forming device are wound and stored through the winding device to complete spinning operation, a plurality of spinning mechanism monomers are arranged on the frame and can work simultaneously, compared with the situation that one spinning mechanism monomer is arranged on each frame, the space can be saved, the efficiency is correspondingly improved, the stock solution forming device consists of a first coagulation bath, an air bath device and a second coagulation bath which are sequentially arranged, the stock solution conveying device firstly conveys the high-temperature stock solution to the first coagulation bath, then the silk threads are formed after the first coagulation bath, and then the silk threads enter the air bath device to carry out air bath, and then corresponding reaction change and liquid removal occur, the silk threads are made to be relatively firmer, and then the silk threads are further solidified through the second solidification bath groove, so that the more compact silk threads are obtained, and the quality of the corresponding silk threads is improved.
Drawings
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the present invention, partially enlarged in FIG. 1;
FIG. 3 is a schematic view of the structure of the present invention;
fig. 4 is a schematic top view of the present invention;
FIG. 5 is a schematic view of the structure of the drying device of the present invention;
in the figure: 1-frame, 2-spinning mechanism monomer, 3-stock solution conveying device, 31-heat preservation stock solution pipe, 32-pump, 33-filter, 4-stock solution forming device, 41-first coagulating bath, 42-air bath device, 421-drawing roll, 43-second coagulating bath, 5-winding device, 51-rotating roll, 52-winding machine, 6-turning wheel, 7-drying device, 71-panel, 72-through hole, 73-electric heating wire and 74-fan.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to 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. All other embodiments, which can be obtained by a person skilled in the art without any inventive work, are related to the scope of the present invention.
As shown in fig. 1-5, the utility model provides a modular continuous spinning machine for spinning acrylic filaments by a one-groove four-filament wet method, comprising:
the machine frame (1) is provided with a frame,
a plurality of groups of spinning mechanism single bodies 2 are arranged on a frame 1, the spinning mechanism single bodies 2 are arranged in sequence,
a stock solution conveying device 3 arranged on the frame 1,
a stock solution forming device 4 arranged on the frame 1, the stock solution forming device 4 comprises a plurality of components which are connected in sequence,
a first coagulation bath 41 which is communicated with the stock solution conveying device 3 through a pipeline,
an air bath device 42 provided on the frame 1, the air bath device 42 being located on the first coagulation bath 41 side,
a second coagulation bath 43 provided on the frame 1, the second coagulation bath 43 being located on the air bath device 42 side,
and a winding device 5 provided on the frame 1 and located on one side of the second coagulation bath 43, the winding device 5 being configured to wind the yarn formed in the second coagulation bath 43.
In this embodiment, the dope delivery device 3 delivers the high temperature dope to the dope forming device 4, the dope forming device 4 performs a forming operation on the high temperature dope to form a filament, and then the filament formed by the dope forming device 4 is wound and stored by the winding device 5 to complete a spinning operation, the frame 1 is provided with a plurality of spinning mechanism monomers 2, the plurality of spinning mechanism monomers 2 can simultaneously operate, a space can be saved and efficiency is correspondingly improved compared with the case where one spinning mechanism monomer 2 is provided on each frame 1, the dope forming device 4 is composed of a first coagulation bath 41, an air bath device 42 and a second coagulation bath 43 which are sequentially provided, the dope delivery device 3 delivers the high temperature dope to the first coagulation bath 41, and then forms a filament after passing through the first coagulation bath 41, and then the filament is subjected to an air bath by the air bath device 42, the silk threads are correspondingly firmer due to the corresponding reaction change and the liquid removal, and then the silk threads are further solidified through the second solidification bath 43, so that more compact silk threads are obtained, and the quality of the corresponding silk threads is improved.
Further, the air bath device 42 includes,
and the drawing roller 421 is rotatably arranged on the frame 1, is positioned above the first coagulation bath 41 and the second coagulation bath 43 and is used for drawing the silk threads to perform air bath.
Further, the dope delivery means 3 comprises,
a heat preservation stock solution pipe 31 arranged on the frame 1 for storing and conveying stock solution,
and the pump 32 is arranged on the frame 1, the inlet end of the pump is communicated with the outlet end of the heat preservation raw liquid pipe 31 through a pipeline, and the output end of the pump 32 is communicated with the first coagulation bath 41 through a pipeline.
In this embodiment, the heat-preserving raw liquid pipe 31 is used for conveying the high-temperature raw liquid, and then the pump 32 is connected to the heat-preserving raw liquid pipe 31, and the pump 32 is used for pumping and conveying the raw liquid in the heat-preserving raw liquid pipe 31.
Further, the winding device 5 comprises, in addition,
a plurality of rotating rollers 51 are arranged in a rotating way, the plurality of rotating rollers 51 are arranged in parallel, the rotating rollers 51 are used for conveying the silk threads formed by the stock solution forming device 4,
and a winding machine 52 provided on the frame 1 for winding and housing the yarn passing through the rotating roller 51.
In this embodiment, the roller 51 is located above the stock solution forming device 4, and then the stock solution passes through the roller 51 after being formed into a filament by the stock solution forming device 4, and the filament can be washed, sized, etc. at the roller 51 and then enters the winding machine 52 to form a finished cake.
Further, the stock solution conveying device 3 further comprises,
and a filter 33 provided in a pipe through which the pump 32 communicates with the first coagulation bath 41.
In this embodiment, when the stock solution is conveyed to the first coagulation bath 41, the stock solution is filtered first, so that impurities and impurities in the stock solution can be greatly reduced, and the stock solution entering the first coagulation bath 41 is finer and smoother, and the quality of the silk threads is correspondingly improved.
Further, the roller 51 is positioned above the stock solution forming apparatus 4,
also comprises the following steps of (1) preparing,
and the change wheel 6 is rotatably arranged on the second coagulating bath 43 and is used for changing the direction of the formed silk threads through the change wheel 6 and then passing through the rotating roller 51.
In this embodiment, the direction changing wheel 6 is arranged to change the direction of the yarn, so that the yarn is conveyed to the roller 51.
Further, the method also comprises the following steps of,
and a drying device 7 which is arranged on the frame 1 and is positioned between the rotating roller 51 and the winding machine 52.
In this embodiment, drying device 7's setting can carry out more thorough drying to the silk thread to make at the silk thread twine in coiler 52 department and accomplish to become dry finished product behind the spinning cake, prevent to take place to milden and rot the scheduling problem, also can improve the independence of silk thread, prevent to produce the problem of adhesion between the silk thread.
Further, the drying device 7 includes,
two panels 71 are arranged in parallel, through holes 72 are arranged on the surfaces of the two panels 71, the through holes 72 are arranged in an inclined manner, silk threads are used for passing between the two panels 71,
and a blower fan 74 disposed at one side of the panel 71, and the heating wire 73 is positioned between the blower fan 74 and the panel 71.
In this embodiment, the two panels 71 are parallel to each other and symmetrically arranged, the through holes 72 on the panels 71 are inclined towards one side, the fan 74 and the heating wires 73 are started, the wind generated by the fan 74 can blow the hot wind generated by the heating wires 73 to the silk threads between the two panels 71 through the through holes 72, so that the drying operation of the silk threads is completed, the heating wires 73 are closer to the panels 71, heat can be radiated to the panels 71, the whole panels 71 can simultaneously realize the baking effect, the silk threads can be guaranteed to be dried and prevented from being damaged as long as the temperature of the heating wires 73 is controlled not to be too high, small fans are arranged in the through holes 72, the blown wind can be dispersed when the fan 74 acts to blow, so that the drying of the silk threads is softer and more uniform, and the quality of the silk threads is correspondingly improved.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (8)
1. A modular continuous spinning machine for spinning acrylic filaments by a one-groove four-filament wet method is characterized by comprising,
a machine frame (1),
the spinning mechanism single body (2), a plurality of groups of spinning mechanism single bodies (2) are arranged on the frame (1), the spinning mechanism single bodies (2) are arranged in sequence,
a stock solution conveying device (3) arranged on the frame (1),
a stock solution forming device (4) arranged on the frame (1), the stock solution forming device (4) comprises a plurality of components which are arranged in sequence,
a first coagulation bath (41) which is communicated with the stock solution conveying device (3) through a pipeline,
an air bath device (42) provided on the frame (1), the air bath device (42) being located on the first coagulation bath (41) side,
a second coagulation bath (43) provided on the frame (1), the second coagulation bath (43) being located on the air bath device (42) side,
and the winding device (5) is arranged on the frame (1) and positioned on one side of the second coagulation bath (43), and the winding device (5) is used for winding the silk threads formed by the second coagulation bath (43).
2. The modular continuous spinning machine for wet spinning acrylic filaments with one bath and four filaments according to claim 1, characterized in that the air bath device (42) comprises,
the drawing roller (421) is rotatably arranged on the machine frame (1), and the drawing roller (421) is positioned above the first coagulating bath (41) and the second coagulating bath (43) and used for drawing the silk threads to perform air bath.
3. The modular continuous spinning machine for wet spinning acrylic filaments by one-bath four-filament method according to claim 1, characterized in that the dope delivery device (3) comprises,
a heat preservation stock solution pipe (31) arranged on the frame (1) and used for storing and conveying stock solution,
the pump (32) is arranged on the rack (1), the inlet end of the pump is communicated with the outlet end of the heat preservation original liquid pipe (31) through a pipeline, and the output end of the pump (32) is communicated with the first coagulation bath (41) through a pipeline.
4. The modular continuous spinning machine for wet spinning acrylic filaments with one bath and four filaments according to claim 1, characterized in that the winding device (5) comprises,
a plurality of rotating rollers (51) are arranged in a rotating way, the plurality of rotating rollers (51) are arranged in parallel, the rotating rollers (51) are used for conveying the silk threads formed by the stock solution forming device (4),
and the winding machine (52) is arranged on the frame (1) and is used for winding and containing the silk threads passing through the rotating roller (51).
5. The modular continuous spinning machine for wet spinning acrylic filaments by one-bath four-filament method according to claim 3, characterized in that the dope delivery device (3) further comprises,
a filter (33) provided on a pipe through which the pump (32) communicates with the first coagulation bath (41).
6. The modular continuous spinning machine for wet spinning acrylic filaments with one groove and four filaments as claimed in claim 4,
the roller (51) is positioned above the stock solution forming device (4),
also comprises the following steps of (1) preparing,
and the direction changing wheel (6) is rotatably arranged on the second coagulating bath (43), and the direction changing wheel (6) is used for changing the formed silk threads through the direction changing wheel (6) and then passing through the rotating roller (51).
7. The modular continuous spinning machine for wet spinning acrylic filaments with one groove and four filaments as claimed in claim 4, further comprising,
and the drying device (7) is arranged on the rack (1) and is positioned between the rotating roller (51) and the winding machine (52).
8. The modular continuous spinning machine for wet spinning acrylic filaments with one bath and four filaments according to claim 7, characterized in that the drying device (7) comprises,
two panels (71) are arranged in parallel, through holes (72) are formed in the surfaces of the two panels (71), the through holes (72) are obliquely arranged, silk threads are used for passing between the two panels (71),
the heating wires (73) are arranged on the back sides of the two panels (71),
a fan (74) disposed at one side of the panel (71), and the heating wire (73) is positioned between the fan (74) and the panel (71).
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CN202021577013.2U CN213570842U (en) | 2020-08-03 | 2020-08-03 | Modular continuous spinning machine for spinning acrylic filaments by one-groove four-filament wet method |
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CN202021577013.2U CN213570842U (en) | 2020-08-03 | 2020-08-03 | Modular continuous spinning machine for spinning acrylic filaments by one-groove four-filament wet method |
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CN213570842U true CN213570842U (en) | 2021-06-29 |
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CN202021577013.2U Active CN213570842U (en) | 2020-08-03 | 2020-08-03 | Modular continuous spinning machine for spinning acrylic filaments by one-groove four-filament wet method |
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