CN219099418U - Automatic edulcoration carding machine - Google Patents
Automatic edulcoration carding machine Download PDFInfo
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- CN219099418U CN219099418U CN202223537607.2U CN202223537607U CN219099418U CN 219099418 U CN219099418 U CN 219099418U CN 202223537607 U CN202223537607 U CN 202223537607U CN 219099418 U CN219099418 U CN 219099418U
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- licker
- carding machine
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02W—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
- Y02W30/00—Technologies for solid waste management
- Y02W30/50—Reuse, recycling or recovery technologies
- Y02W30/66—Disintegrating fibre-containing textile articles to obtain fibres for re-use
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Abstract
The utility model discloses an automatic impurity removal carding machine which comprises a carding machine body, a separation assembly, a screening assembly and a feeding box arranged on the outer side of the carding machine body. According to the automatic impurity removal carding machine, the first licker-in and the second licker-in synchronously rotate in the feeding box at the outer end of the carding machine body, the cotton masses can be broken into small blocks before being added into the carding machine body through the plurality of groups of licker-in strips at the upper end of the carding machine body, and then the separation of impurities in the cotton masses is realized after the cotton masses are broken into small blocks so as to facilitate the subsequent filtration of the separated impurities, and under the action of springs at four corners and a vibrating motor at the bottom of the first licker-in and the second licker-in, the broken small block cotton masses can be vibrated after falling down, and the impurities separated from the cotton masses can be effectively collected to the bottom of the sieve plate in the feeding box when the small block cotton masses flow into the carding machine body conveniently.
Description
Technical Field
The utility model relates to the technical field of textile equipment, in particular to an automatic impurity removal carding machine.
Background
The carding machine is mainly used for processing cotton fibers and chemical fibers, belongs to textile machinery, and is an important process according to the spinning process flow, wherein the former process of the carding machine is a cotton opening and picking combination machine, and the latter process is a drawing frame (carding process flow) or a sliver machine (combing process flow).
When the impurities in cotton masses are removed, the existing carding machine generally performs impurity removal in the cotton carding process when the cotton masses are used for carding the cotton in the carding machine, such as the automatic impurity removal carding machine disclosed in publication No. CN207227623U, and the impurity removal of the cotton masses is performed when the cotton masses are used for carding the cotton in the carding machine, so that the impurity removal effect on the cotton masses is limited, and therefore, the automatic impurity removal carding machine is provided.
Disclosure of Invention
The utility model mainly aims to provide an automatic impurity removal carding machine which can effectively solve the problems in the background technology.
In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows:
the utility model provides an automatic edulcoration carding machine, includes carding machine organism, separation subassembly and screening subassembly to and the feeding case of carding machine organism outside installation, separation subassembly includes first licker-in and second licker-in of feeding case upper and lower extreme range installation, and the equal fixed mounting's of first licker-in and second licker-in outer end intermeshing's gear, the outside of second licker-in outer end gear still is connected with the motor that carries out its drive to and motor bottom fixed mounting's backup pad that supports it.
Preferably, the separation assembly further comprises a plurality of groups of mutually separated thorn strips which are arranged at the outer ends of the first thorn roller and the second thorn roller.
Preferably, the separation assembly further comprises a baffle and an inclined plate respectively arranged at the upper ends and the rear parts of one side of the first licker-in and the second licker-in the feeding box, and a feeding hole formed between the baffle and the inclined plate in the feeding box.
Preferably, the screening component comprises a discharge hole which is formed in the inner side of the feeding box in a penetrating manner, and a plurality of groups of supporting columns which are fixedly arranged at four corners of the inner side of the feeding box.
Preferably, the screening component further comprises a plurality of groups of springs fixedly installed at the upper ends of the plurality of groups of support columns, and a plurality of groups of fixing blocks fixedly installed at the tops of the plurality of groups of springs.
Preferably, the screening assembly further comprises a plurality of groups of screening plates fixedly mounted at the upper ends of the fixing blocks and a vibrating motor fixedly mounted at the bottoms of the screening plates, and the screening plates are obliquely arranged.
Compared with the prior art, the utility model has the following beneficial effects:
1. the first licker-in and the second licker-in synchronously rotate in a feeding box at the outer end of the carding machine body, a plurality of groups of licker-in strips at the upper end of the first licker-in and the second licker-in can crush cotton masses into small blocks before the cotton masses are added into the carding machine body, and further, after the cotton masses are crushed into the small blocks, the separation of impurities in the cotton masses is realized, so that the impurities separated later are filtered, the licker-in strips with the upper ends separated from each other at the first licker-in and the second licker-in are inconvenient to wind at the upper ends of the first licker-in and the second licker-in the crushing process of the cotton masses, and further, the cleaning time of the first licker-in and the second licker-in can be prolonged;
2. the utility model provides an automatic edulcoration carding machine, first licker-in and the inboard sieve of second licker-in, under the effect of four corners department spring and bottom vibrating motor, can be behind broken little cubic cotton group whereabouts, shake it, in the time of the cotton group inflow carding machine organism of being convenient for in, also can effectively collect the impurity of cotton group separation in the feeding incasement sieve bottom.
Drawings
FIG. 1 is a schematic view of the overall structure of an automatic impurity removal carding machine according to the present utility model;
FIG. 2 is a block diagram of a feed bin of an automatic edulcoration carding machine in accordance with the present utility model;
FIG. 3 is a side cross-sectional view of the feed bin of the automatic impurity removal carding machine of the present utility model;
FIG. 4 is an enlarged view of A in FIG. 2 of an automatic impurity removal carding machine according to the present utility model;
fig. 5 is an enlarged view of B in fig. 3 of an automatic impurity removing carding machine according to the present utility model.
Reference numerals:
100. a carding machine body; 110. a feed box;
200. a separation assembly; 210. a first licker-in; 220. a second licker-in; 211. puncturing strips; 230. a gear; 240. a motor; 250. a support plate; 260. a baffle; 270. a sloping plate; 280. a feed inlet;
300. a screen assembly; 310. a discharge port; 320. a support column; 330. a spring; 340. a fixed block; 350. a sieve plate; 360. a vibration motor.
Detailed Description
The utility model is further described in connection with the following detailed description, in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the utility model easy to understand.
Embodiment one:
as shown in fig. 1 to 4, the present embodiment provides an automatic impurity removing carding machine, which comprises a carding machine body 100, a separating assembly 200 and a screening assembly 300, and a feeding box 110 installed at the outer side of the carding machine body 100, wherein the separating assembly 200 comprises a first licker-in 210 and a second licker-in 220 installed at the upper and lower ends of the feeding box 110 in a row, and mutually meshed gears 230 fixedly installed at the outer ends of the first licker-in 210 and the second licker-in 220, a motor 240 for driving the outer end gear 230 of the second licker-in 220 is further connected to the outer end of the second licker-in 220, and a supporting plate 250 fixedly installed at the bottom of the motor 240 for supporting the same, the separating assembly 200 further comprises a plurality of groups of separated licker-in strips 211 arranged at the outer ends of the first licker-in 210 and the second licker-in 220, and the separating assembly 200 further comprises baffles 260 and 270 respectively installed at the upper and rear ends of one side of the first licker-in the feeding box 110, and a feeding inlet 280 formed between the baffles 260 and the inclined plates 270 inside the feeding box 110.
Specifically, the carding machine body 100 is mainly used for processing cotton fibers and chemical fibers, and belongs to textile machinery, according to spinning process flow, cotton carding is an important process, the former process of the carding machine is a cotton opening and picking combination machine, the latter process is a drawing frame or a ribbon winder, the feeding box 110 arranged on the outer side of the carding machine body 100 is mainly used for removing impurities during feeding of cotton masses, the first licker-in 210 and the second licker-in 220 synchronously rotate in the feeding box 110 at the outer end of the carding machine body 100 can pass through a plurality of groups of licker-in 211 at the upper end of the carding machine body, cotton masses can be broken into small blocks in the feeding box 110 before the cotton masses are added into the carding machine body 100, and then separation of impurities in the cotton masses is realized after the cotton masses are broken into small blocks, so that the separated impurities are filtered later, and the licker-in 211 separated from each other at the upper ends of the first licker-in 210 and the second licker-in 220 are inconvenient to wind at the upper ends of the first licker-in 210 and the second licker-in 220 in the cotton mass breaking process, and further cleaning time of the first licker-in 220 can also be prolonged.
Embodiment two:
on the basis of the first embodiment, as shown in fig. 5, the screening assembly 300 includes a discharge hole 310 penetrating through the inner side of the feeding box 110, a plurality of groups of supporting columns 320 fixedly installed at four corners inside the feeding box 110, a plurality of groups of springs 330 fixedly installed at the upper ends of the plurality of groups of supporting columns 320, a plurality of groups of fixing blocks 340 fixedly installed at the tops of the plurality of groups of springs 330, a screen plate 350 fixedly installed at the upper ends of the plurality of groups of fixing blocks 340, and a vibrating motor 360 fixedly installed at the bottom of the screen plate 350, wherein the screen plate 350 is obliquely arranged.
Specifically, the sieve plate 350 inside the first licker-in 210 and the second licker-in 220 inside the feeding box 110 can vibrate the crushed small block cotton masses after falling under the action of the springs 330 and the bottom vibration motors 360 at four corners of the bottom, and can effectively vibrate and collect impurities separated from the cotton masses to the bottom of the sieve plate 350 inside the feeding box 110 when the small block cotton masses conveniently flow into the inside of the carding machine body 100 through the discharge hole 310 inside the feeding box 110.
The working principle and the using flow of the utility model are as follows:
after the carding machine body 100 starts up, firstly, the vibrating motor 360 and the motor 240 at the inner end and the outer end of the feeding box 110 at the outer side of the carding machine body 100 are started up, cotton masses are crushed into small blocks through the vibrating motor 360 and the motor 240 at the inner end and the outer end of the feeding box 110, the cotton masses are added into the feeding box 110 through the feeding inlet 280 at the upper end of the feeding box 110, the cotton masses in the feeding box 110 are conveyed along the inclined plate 270 at the bottom of the feeding inlet 280 and are blocked by the baffle 260 at one side of the upper end of the inclined plate 270, and then move between the first licker-in 210 and the second licker-in 220 which synchronously rotate at the bottom of the inclined plate 270, the first licker-in 210 and the second licker-in 220 which synchronously rotate are arranged at the upper end through the licker-in 211 which are arranged, the cotton masses are crushed into small blocks through the first licker-in 210 and the second licker-in 220 which are continuously rotated, the cotton masses are crushed into the small blocks, the cotton masses are input into the upper ends of the first licker-in 210 and the second licker-in 350, the vibrating motor 360 at the bottom of the inclined plate 270 is started up, and then moved to the four corners of the vibrating motor 360 at the bottom of the inclined plate 270, the cotton masses are synchronously rotated through the springs 350, and the small blocks 350 are arranged at the bottom of the small blocks 350, and the small blocks 350 are separated through the small blocks 350, and the vibration cotton masses are separated through the vibration bodies, and the small blocks 350.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the spirit and scope of the utility model as defined by the appended claims and their equivalents.
Claims (6)
1. The utility model provides an automatic edulcoration carding machine, includes carding machine organism (100), separation subassembly (200) and screening subassembly (300) to and feeding case (110) of carding machine organism (100) outside installation, a serial communication port, separation subassembly (200) are including first licker-in (210) and second licker-in (220) of feeding case (110) upper and lower extreme range installation, and first licker-in (210) and second licker-in (220) outer end all fixed mounting's intermeshing gear (230), the outside of second licker-in (220) outer end gear (230) still is connected with motor (240) to its drive, and backup pad (250) that support it of motor (240) bottom fixed mounting.
2. An automatic trash removal carding machine according to claim 1, wherein the separating assembly (200) further comprises a plurality of sets of spaced apart licker-in strips (211) arranged at the outer ends of the first licker-in (210) and the second licker-in (220).
3. The automatic impurity removing carding machine according to claim 1, wherein the separating assembly (200) further comprises a baffle plate (260) and an inclined plate (270) respectively arranged at the upper ends and the rear ends of one side of the first licker-in (210) and the second licker-in (220) inside the feeding box (110), and a feed inlet (280) formed between the baffle plate (260) and the inclined plate (270) inside the feeding box (110).
4. The automatic impurity removal carding machine according to claim 1, wherein the screening assembly (300) comprises a discharge hole (310) penetrating through the inner side of the feeding box (110), and a plurality of groups of support columns (320) fixedly installed at four corners inside the feeding box (110).
5. The automatic trash removal carding machine according to claim 1, wherein the screening assembly (300) further comprises a plurality of groups of springs (330) fixedly installed at the upper ends of the plurality of groups of support columns (320), and a plurality of groups of fixing blocks (340) fixedly installed at the tops of the plurality of groups of springs (330).
6. The automatic impurity removal carding machine according to claim 1, wherein the screening assembly (300) further comprises a plurality of groups of screening plates (350) fixedly installed at the upper ends of the fixing blocks (340), and vibrating motors (360) fixedly installed at the bottoms of the screening plates (350), and the screening plates (350) are obliquely arranged.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223537607.2U CN219099418U (en) | 2022-12-29 | 2022-12-29 | Automatic edulcoration carding machine |
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CN202223537607.2U CN219099418U (en) | 2022-12-29 | 2022-12-29 | Automatic edulcoration carding machine |
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CN219099418U true CN219099418U (en) | 2023-05-30 |
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CN202223537607.2U Active CN219099418U (en) | 2022-12-29 | 2022-12-29 | Automatic edulcoration carding machine |
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- 2022-12-29 CN CN202223537607.2U patent/CN219099418U/en active Active
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