Raw material cleaning equipment for collagen thread production
By designing the coordination of the cleaning shaft, sliding baffle and rolling brush, the problems of low cleaning efficiency and wall adhesion of existing equipment are solved, and efficient and uniform cleaning of multiple pigskin raw materials is achieved.
Patent Information
- Application Number
- CN202411484683.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-23
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2044-10-23
AI Technical Summary
Existing collagen raw material cleaning equipment has low efficiency, and the rotating cleaning method easily causes the pigskin raw material to stick to the inner wall of the cleaning shell, making it impossible to fully clean it.
A cleaning device including a cleaning shaft, a sliding baffle, a rolling brush and a limiting slider is designed. The cleaning shaft is driven by a rotating motor. Combined with the sliding baffle and the extrusion structure, multiple pig skin raw materials can be cleaned simultaneously. The forward and reverse rotation of the cleaning shaft ensures that both sides of the pig skin raw materials are cleaned evenly.
It achieves the simultaneous cleaning of multiple pigskin raw materials, avoids the phenomenon of sticking to the wall, improves the cleaning efficiency, ensures that both sides of the pigskin raw materials are cleaned evenly, and improves the cleaning effect.
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Figure CN119184140B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of collagen raw material cleaning, and specifically relates to a raw material cleaning equipment for collagen thread production. BACKGROUND
[0002] Collagen is a main structural protein and exists in skin, bone, muscle, ligament and connective tissue, and is also a main component in animal connective tissue, and main sources and raw materials include animal skin, animal bone, animal connective tissue, fish scale, fish bone and synthetic collagen, such as pigskin, cowhide and fish skin.
[0003] Collagen raw materials need to be cleaned before production, such as pigskin, which needs to remove adhering substances and blood fat and other impurities on the pigskin, and generally, pigskin cleaning is performed by manual or machine, and such a cleaning process can only clean one piece of pigskin raw material, and the cleaning efficiency is low, and some cleaning equipment cleans pigskin raw material by rotating, which may cause the pigskin to stick to the inner wall of the cleaning shell and cannot be fully cleaned. SUMMARY
[0004] To solve the problems of cleaning one piece of pigskin raw material at a time, low cleaning efficiency and the pigskin raw material sticking to the inner wall of the cleaning shell in the background technology, the application provides a raw material cleaning equipment for collagen thread production.
[0005] To achieve the above purpose, the application provides the following technical scheme: a raw material cleaning equipment for collagen thread production, comprising a cleaning shell, a motor fixing frame is fixedly connected to the cleaning shell, a rotating motor is installed in the motor fixing frame, a cleaning rotating shaft is fixedly connected to the lower side of the rotating motor, a circumferential array distributed storage device is fixedly connected to the outer contour of the cleaning rotating shaft, an upper bidirectional slide and a lower bidirectional slide are fixedly connected between adjacent storage devices, a rolling brush is slidingly connected in the upper bidirectional slide and the lower bidirectional slide, a rotating gear is fixedly connected to the rolling brush, a limiting sliding groove is fixedly connected to the storage device, a limiting sliding block is slidingly connected in the limiting sliding groove, and a symmetrically distributed rotating rack is fixedly connected to the storage device.
[0006] Preferably, the stock device comprises a rotating connecting plate fixedly connected symmetrically on the cleaning rotating shaft, a sliding baffle rotatingly connected in the rotating connecting plate, an arc-shaped sliding groove fixedly connected on the side of the rotating connecting plate away from the cleaning rotating shaft, a vertical sliding groove fixedly connected on the side of the arc-shaped sliding groove away from the rotating connecting plate, a rotating baffle rotatingly connected on the side of the sliding baffle away from the cleaning rotating shaft, and a connecting crank rotatingly connected on the sliding baffle and the rotating baffle.
[0007] Preferably, the rotating baffle is slidingly connected with the vertical sliding groove, the sliding baffle is slidingly connected with the arc-shaped sliding groove, and a shell fixing frame is fixedly connected on the cleaning shell.
[0008] Preferably, a plurality of through grooves are arranged on the sliding baffle, and the size of the rotating baffle is greater than the size of the raw material.
[0009] Preferably, a limiting spring is arranged around the limiting sliding groove, the limiting spring is connected with a limiting sliding block, a semicircular through groove is arranged on the limiting sliding block, and the semicircular through groove of the limiting sliding block is matched with the rolling brush.
[0010] Preferably, the bristles of the rolling brush are made of flexible material, the rotating gear is meshingly connected with the rotating rack, and a feeding port is fixedly connected on the cleaning shell.
[0011] Preferably, a plurality of partition baffles are fixedly connected in the cleaning shell in a circumferential array, symmetrically distributed extrusion baffles are slidingly connected on the two sides of the partition baffles, a sliding crank is fixedly connected on the side of the extrusion baffle away from the cleaning rotating shaft, the sliding crank is slidingly connected with the cleaning shell, an extrusion sleeve ring is fixedly connected on the side of the sliding crank close to the partition baffle, the extrusion sleeve ring is slidingly connected with the partition baffle, and a first return spring is arranged between the partition baffle and the extrusion sleeve ring.
[0012] Preferably, a driven wedge-shaped block is fixedly connected on the side of the sliding crank away from the partition baffle, a sliding shaft corresponding to the partition baffle is slidingly connected in the cleaning shell, a transmission wedge-shaped block is fixedly connected on the sliding shaft, and the transmission wedge-shaped block is wedge-shaped matched with the driven wedge-shaped block.
[0013] Preferably, a fixed ring is fixedly connected on the sliding shaft, a second return spring is arranged around the sliding shaft, and the second return spring is connected with the fixed ring and the cleaning shell.
[0014] Preferably, a hemispherical extrusion shaft is fixedly connected on the lower end of the sliding shaft, a plurality of extrusion hemispherical cranks are fixedly connected on the outer contour of the cleaning rotating shaft on the lower side of the cleaning shell in a circumferential array, the extrusion hemispherical cranks are extrusion matched with the hemispherical extrusion shaft, and the extrusion hemispherical cranks are staggered with the stock device.
[0015] Compared with the prior art, the present application has the following advantages:
[0016] The present application is characterized in that the cleaning shaft and the sliding baffle are arranged in cooperation, the cleaning shaft is driven to rotate by the rotating motor, the rotating connecting plate and the sliding baffle are driven to rotate, the sliding baffle slides along the arc-shaped sliding groove, the rotating baffle is driven to slide along the vertical sliding groove by the connecting crank, and the pigskin raw material enters the sliding baffle and the rotating baffle, so that the pigskin raw material is cleaned by the circumferential array of the sliding baffle and the rotating baffle.
[0017] The present application is characterized in that the cleaning shaft and the sliding baffle are arranged in cooperation, the cleaning shaft is driven to rotate by the rotating motor, the cleaning shaft is driven to rotate by the rotating motor, the rotating connecting plate and the sliding baffle are driven to rotate, the sliding baffle slides along the arc-shaped sliding groove, the rotating baffle is driven to slide along the vertical sliding groove by the connecting crank, and the pigskin raw material enters the sliding baffle and the rotating baffle, so that the pigskin raw material is cleaned by the circumferential array of the sliding baffle and the rotating baffle.
[0018] The present application is characterized in that the cleaning shaft and the sliding baffle are arranged in cooperation, the cleaning shaft is driven to rotate by the rotating motor, the cleaning shaft is driven to rotate by the rotating motor, the rotating connecting plate and the sliding baffle are driven to rotate, the sliding baffle slides along the arc-shaped sliding groove, the rotating baffle is driven to slide along the vertical sliding groove by the connecting crank, and the pigskin raw material enters the sliding baffle and the rotating baffle, so that the pigskin raw material is cleaned by the circumferential array of the sliding baffle and the rotating baffle. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 The present application is characterized in that the cleaning shaft and the sliding baffle are arranged in cooperation, the cleaning shaft is driven to rotate by the rotating motor, the cleaning shaft is driven to rotate by the rotating motor, the rotating connecting plate and the sliding baffle are driven to rotate, the sliding baffle slides along the arc-shaped sliding groove, the rotating baffle is driven to slide along the vertical sliding groove by the connecting crank, and the pigskin raw material enters the sliding baffle and the rotating baffle, so that the pigskin raw material is cleaned by the circumferential array of the sliding baffle and the rotating baffle.
[0020] Figure 2 The present application is characterized in that the cleaning shaft and the sliding baffle are arranged in cooperation, the cleaning shaft is driven to rotate by the rotating motor, the cleaning shaft is driven to rotate by the rotating motor, the rotating connecting plate and the sliding baffle are driven to rotate, the sliding baffle slides along the arc-shaped sliding groove, the rotating baffle is driven to slide along the vertical sliding groove by the connecting crank, and the pigskin raw material enters the sliding baffle and the rotating baffle, so that the pigskin raw material is cleaned by the circumferential array of the sliding baffle and the rotating baffle.
[0021] Figure 3 The present application is characterized in that the cleaning shaft and the sliding baffle are arranged in cooperation, the cleaning shaft is driven to rotate by the rotating motor, the cleaning shaft is driven to rotate by the rotating motor, the rotating connecting plate and the sliding baffle are driven to rotate, the sliding baffle slides along the arc-shaped sliding groove, the rotating baffle is driven to slide along the vertical sliding groove by the connecting crank, and the pigskin raw material enters the sliding baffle and the rotating baffle, so that the pigskin raw material is cleaned by the circumferential array of the sliding baffle and the rotating baffle.
[0022] Figure 4 The present application is characterized in that the cleaning shaft and the sliding baffle are arranged in cooperation, the cleaning shaft is driven to rotate by the rotating motor, the cleaning shaft is driven to rotate by the rotating motor, the rotating connecting plate and the sliding baffle are driven to rotate, the sliding baffle slides along the arc-shaped sliding groove, the rotating baffle is driven to slide along the vertical sliding groove by the connecting crank, and the pigskin raw material enters the sliding baffle and the rotating baffle, so that the pigskin raw material is cleaned by the circumferential array of the sliding baffle and the rotating baffle.
[0023] Figure 5 The present application is characterized in that the cleaning shaft and the sliding baffle are arranged in cooperation, the cleaning shaft is driven to rotate by the rotating motor, the cleaning shaft is driven to rotate by the rotating motor, the rotating connecting plate and the sliding baffle are driven to rotate, the sliding baffle slides along the arc-shaped sliding groove, the rotating baffle is driven to slide along the vertical sliding groove by the connecting crank, and the pigskin raw material enters the sliding baffle and the rotating baffle, so that the pigskin raw material is cleaned by the circumferential array of the sliding baffle and the rotating baffle.
[0024] Figure 6 The present application is characterized in that the cleaning shaft and the sliding baffle are arranged in cooperation, the cleaning shaft is driven to rotate by the rotating motor, the cleaning shaft is driven to rotate by the rotating motor, the rotating connecting plate and the sliding baffle are driven to rotate, the sliding baffle slides along the arc-shaped sliding groove, the rotating baffle is driven to slide along the vertical sliding groove by the connecting crank, and the pigskin raw material enters the sliding baffle and the rotating baffle, so that the pigskin raw material is cleaned by the circumferential array of the sliding baffle and the rotating baffle.
[0025] Figure 7The schematic diagram of the separation structure of the present application;
[0026] Figure 8 The explosion schematic diagram of the separation structure of the present application.
[0027] In the figure: 100, cleaning shell; 101, shell fixing frame; 102, feeding port; 200, rotating motor; 201, motor fixing frame; 202, cleaning rotating shaft; 300, rotating connecting plate; 301, sliding baffle; 302, arc-shaped sliding groove; 303, vertical sliding groove; 304, rotating baffle; 305, connecting crank; 306, limiting sliding groove; 307, limiting sliding block; 308, limiting spring; 309, rotating rack; 400, rolling brush; 401, rotating gear; 402, upper bidirectional slide; 403, lower bidirectional slide; 500, separation baffle; 501, extrusion baffle; 502, sliding crank; 503, extrusion collar; 504, first reset spring; 505, sliding shaft; 506, transmission wedge block; 507, driven wedge block; 508, hemispherical extrusion shaft; 509, fixed ring; 510, second reset spring; 511, extrusion hemispherical crank. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0029] As Figures 1 to 8 shown, the present application provides a raw material cleaning equipment for collagen thread production, which comprises a cleaning shell 100, a motor fixing frame 201 is fixedly connected to the cleaning shell 100, a rotating motor 200 is installed in the motor fixing frame 201, a cleaning rotating shaft 202 is fixedly connected to the lower side of the rotating motor 200, a plurality of storage devices are fixedly connected to the outer contour of the cleaning rotating shaft 202 in a circumferential array, an upper bidirectional slide 402 and a lower bidirectional slide 403 are fixedly connected between adjacent storage devices, a rolling brush 400 is slidably connected in the upper bidirectional slide 402 and the lower bidirectional slide 403, a rotating gear 401 is fixedly connected to the rolling brush 400, a limiting sliding groove 306 is fixedly connected to the storage device, a limiting sliding block 307 is slidably connected in the limiting sliding groove 306, and a plurality of rotating racks 309 are fixedly connected to the storage device in a symmetrical distribution.
[0030] The stock device comprises a rotating connecting plate 300 fixedly connected symmetrically on the cleaning rotating shaft 202, a sliding baffle 301 rotatably connected in the rotating connecting plate 300, an arc-shaped sliding groove 302 fixedly connected to the side of the rotating connecting plate 300 away from the cleaning rotating shaft 202, a vertical sliding groove 303 fixedly connected to the side of the arc-shaped sliding groove 302 away from the rotating connecting plate 300, a rotating baffle 304 rotatably connected to the side of the sliding baffle 301 away from the cleaning rotating shaft 202, and a connecting crank 305 rotatably connected on the sliding baffle 301 and the rotating baffle 304.
[0031] The rotating baffle 304 is slidingly connected with the vertical sliding groove 303, the sliding baffle 301 is slidingly connected with the arc-shaped sliding groove 302, and the cleaning shell 100 is fixedly connected with a shell fixing frame 101.
[0032] A plurality of through grooves are arranged on the sliding baffle 301, and the size of the rotating baffle 304 is greater than that of the raw material.
[0033] A limiting spring 308 is arranged in the limiting sliding groove 306 and connected with a limiting sliding block 307, a semicircular through groove is arranged on the limiting sliding block 307, and the semicircular through groove of the limiting sliding block 307 is matched with a rolling brush 400.
[0034] The bristles of the rolling brush 400 are made of flexible material, the rotating gear 401 is meshingly connected with the rotating rack 309, and the cleaning shell 100 is fixedly connected with a feeding port 102.
[0035] Adopt the above scheme: through rotating motor 200 drive cleaning shaft 202 rotation, and drive rotating connecting plate 300 and sliding baffle 301 synchronous rotation, and then make sliding baffle 301 along the arc sliding groove 302 sliding, and then through the connecting crank 305 drive rotating baffle 304 synchronous along the vertical sliding groove 303 sliding, make sliding baffle 301 and rotating baffle 304 form the structure of the included angle less than one hundred and eighty degrees, and then store raw pigskin in the structure formed by sliding baffle 301 and rotating baffle 304, sliding baffle 301 and rotating baffle 304 form structure can only store one raw pigskin, due to the oil dirt on the surface of raw pigskin, the excess pigskin raw material slides outwards under the rotation, and the corresponding limiting sliding block 307 direction of rolling brush 400 is slid, and the semicircular through slot of limiting sliding block 307 is fitted, the rotating speed of cleaning shaft 202 is further accelerated, the centrifugal force received by limiting sliding block 307 is greater than the elastic force of limiting spring 308, and then rolling brush 400 is driven to slide to the direction away from cleaning shaft 202, and then the rolling brush 400 is rotated through the meshing of rotating rack 309 and rotating gear 401, so that one side of raw pigskin is cleaned, and the cleaning shaft 202 is reversely rotated, the above steps are repeated, the rolling brush 400 slides to the limiting sliding block 307 in the other direction, and the other side of raw pigskin is cleaned.
[0036] As shown in Figures 6 to 8 The cleaning shell 100 is fixedly connected with the circumferentially arrayed separation baffles 500, the separation baffles 500 are slidably connected with the symmetrically distributed extrusion baffles 501 on both sides, the extrusion baffles 501 are fixedly connected with sliding cranks 502 on the sides away from the cleaning shaft 202, the sliding cranks 502 are slidably connected with the cleaning shell 100, the sliding cranks 502 are fixedly connected with extrusion sleeve rings 503 on the sides close to the separation baffles 500, the extrusion sleeve rings 503 are slidably connected with the separation baffles 500, and the first return springs 504 are arranged between the separation baffles 500 and the extrusion sleeve rings 503.
[0037] The sliding cranks 502 are fixedly connected with driven wedge blocks 507 on the sides away from the separation baffles 500, the cleaning shell 100 is slidably connected with sliding shafts 505 corresponding to the separation baffles 500, the sliding shafts 505 are fixedly connected with transmission wedge blocks 506, and the transmission wedge blocks 506 are wedge-shapedly matched with the driven wedge blocks 507.
[0038] The sliding shafts 505 are fixedly connected with fixed rings 509, and the second return springs 510 are arranged around the sliding shafts 505, and the second return springs 510 are connected with the fixed rings 509 and the cleaning shell 100.
[0039] The lower end of the sliding shaft 505 is fixedly connected with a hemispherical extrusion shaft 508, the cleaning rotating shaft 202 is fixedly connected with a circumferential array distributed extrusion hemispherical crank 511 on the outer contour of the lower side of the cleaning shell 100, the extrusion hemispherical crank 511 is extrusion matched with the hemispherical extrusion shaft 508, and the extrusion hemispherical crank 511 is dislocated with the material storage device.
[0040] By adopting the above scheme: through the dislocation of the extrusion hemispherical crank 511 and the material storage device, when the extrusion hemispherical crank 511 rotates to the hemispherical extrusion shaft 508, the pigskin raw material adhered to the inner wall of the cleaning shell 100 between the adjacent partition baffles 500 is extruded by the extrusion baffle 501, and then slides into the space between the adjacent material storage devices, and then is stored by the sliding baffle 301 and the rotating baffle 304, if the space between the adjacent material storage devices has pigskin raw material, then it is slid again to the inner wall of the cleaning shell 100, and is extruded by the extrusion baffle 501 again.
[0041] The working principle and use flow of the present application are as follows:
[0042] Before the raw material is cleaned, the operator injects cleaning liquid of no more than sixty degrees into the cleaning shell 100 through the feed inlet 102, and then puts the corresponding amount of raw material pigskin into the cleaning shell 100 through the feed inlet 102, and then starts the rotating motor 200 to drive the cleaning rotating shaft 202 to rotate at low speed, thereby driving the rotating connecting plate 300 and the sliding baffle 301 to rotate synchronously, and then the sliding baffle 301 slides along the arc-shaped sliding groove 302 through the cleaning liquid in the cleaning shell 100, and the rotating baffle 304 is driven to slide along the vertical sliding groove 303 synchronously through the connecting crank 305, so that the sliding baffle 301 and the rotating baffle 304 form an angle less than one hundred and eighty degrees, and then the raw material pigskin enters between the sliding baffle 301 and the rotating baffle 304, if multiple raw material pigskins enter between the sliding baffle 301 and the rotating baffle 304, the excess raw material pigskin will slide outward due to the oil on the surface of the raw material pigskin, and then enter another sliding baffle 301 and rotating baffle 304, or be pushed to the inner wall of the cleaning shell 100 by the cleaning liquid in the cleaning shell 100 agitated by the cleaning rotating shaft 202 and the sliding baffle 301, and then with the rotation of the cleaning rotating shaft 202, the extrusion hemispherical crank 511 is driven to rotate, when the extrusion hemispherical crank 511 is extruded by the hemispherical extrusion shaft 508, the hemispherical extrusion shaft 508 and the hemispherical extrusion shaft 508 are extruded in the cleaning shell 100, and then the transmission wedge block 506 and the driven wedge block 507 are extruded, the driven wedge block 507 and the sliding crank 502 are separated from the direction of the sliding baffle 500, and then the extrusion baffle 501 is extruded and the pigskin raw material is extruded and fitted on the inner wall of the cleaning shell 100, due to the extrusion hemispherical crank 511 and the storage device are dislocated, and then the pigskin raw material is extruded and slides to the adjacent storage device, and then enters between the sliding baffle 301 and the rotating baffle 304, if there is pigskin raw material between the sliding baffle 301 and the rotating baffle 304, the above steps are repeated again, until there is a pigskin raw material between each sliding baffle 301 and rotating baffle 304.
[0043] With the rotation of the cleaning shaft 202, the rolling brush 400 is pushed by the cleaning liquid in the cleaning shell 100 to slide onto the corresponding limiting sliding block 307, and is fitted with the semicircular through slot of the limiting sliding block 307, then the rotating speed of the cleaning shaft 202 is increased, so that the centrifugal force of the limiting sliding block 307 is greater than the elastic force of the limiting spring 308, and then the limiting sliding block 307 drives the rolling brush 400 to slide along the limiting sliding groove 306 and the upper bidirectional sliding rail 402, and then the rotating gear 401 is engaged with the rotating rack 309, with the sliding of the limiting sliding block 307 and the rolling brush 400, the rotating gear 401 and the rolling brush 400 rotate synchronously, so that the rolling brush 400 cleans one side of the pigskin raw material, when the cleaning of one side of the pigskin raw material is completed, the rotating speed of the cleaning shaft 202 is reduced, so that the limiting spring 308 presses the limiting sliding block 307 to reset, and then drives the rolling brush 400 to slide synchronously, and cleans one side of the pigskin raw material again, then the cleaning shaft 202 is rotated reversely at low speed, so that the pigskin raw material enters the adjacent sliding baffle 301 and rotating baffle 304, then the cleaning shaft 202 is accelerated to rotate, so that the limiting sliding block 307 drives the rolling brush 400 to clean the other side of the pigskin raw material, and then the cleaning shaft 202 is decelerated, so that the limiting spring 308 drives the limiting sliding block 307 and the rolling brush 400 to reset while cleaning the other side of the pigskin raw material again.
[0044] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one entity or action from another, without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0045] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A raw material cleaning device for collagen thread production, comprising a cleaning housing (100), characterized in that: The cleaning housing (100) is fixedly connected to a motor fixing frame (201), a rotating motor (200) is installed in the motor fixing frame (201), a cleaning shaft (202) is fixedly connected to the lower side of the rotating motor (200), a circumferentially arrayed material storage device is fixedly connected to the outer contour of the cleaning shaft (202), an upper bidirectional slideway (402) and a lower bidirectional slideway (403) are fixedly connected between adjacent material storage devices, a rolling brush (400) is slidably connected in the upper bidirectional slideway (402) and the lower bidirectional slideway (403), a rotating gear (401) is fixedly connected to the rolling brush (400), a limiting slide groove (306) is fixedly connected to the material storage device, a limiting slider (307) is slidably connected in the limiting slide groove (306), and a symmetrically distributed rotating rack (309) is fixedly connected to the material storage device; The material storage device comprises a rotating connecting plate (300) symmetrically fixedly connected to the cleaning rotating shaft (202), a sliding baffle (301) rotatably connected inside the rotating connecting plate (300), an arcuate chute (302) fixedly connected to the side of the rotating connecting plate (300) away from the cleaning rotating shaft (202), a vertical chute (303) fixedly connected to the side of the arcuate chute (302) away from the rotating connecting plate (300), a rotating baffle (304) rotatably connected to the side of the sliding baffle (301) away from the cleaning rotating shaft (202), and a connecting crank (305) rotatably connected to the sliding baffle (301) and the rotating baffle (304); A circumferentially arrayed partition baffle (500) is fixedly connected inside the cleaning housing (100), and symmetrically distributed extrusion baffles (501) are slidably connected to both sides of the partition baffle (500). A sliding crank (502) is fixedly connected to the side of the extrusion baffle (501) away from the cleaning shaft (202), and the sliding crank (502) is slidably connected to the cleaning housing (100). An extrusion collar (503) is fixedly connected to the side of the sliding crank (502) close to the partition baffle (500), and the extrusion collar (503) is slidably connected to the partition baffle (500). A first return spring (504) is provided between the partition baffle (500) and the extrusion collar (503).
2. The raw material cleaning equipment for collagen thread production according to claim 1, characterized in that: The rotating baffle (304) is slidably connected to the vertical slide groove (303), the sliding baffle (301) is slidably connected to the arcuate slide groove (302), and the cleaning shell (100) is fixedly connected to a shell fixing frame (101).
3. The raw material cleaning equipment for collagen thread production according to claim 1, characterized in that: The sliding baffle (301) is provided with a plurality of through slots, and the size of the rotating baffle (304) is larger than the size of the raw material.
4. The raw material cleaning equipment for collagen thread production according to claim 1, characterized in that: A limiting spring (308) is wound inside the limiting slide groove (306), and the limiting spring (308) is connected to the limiting slider (307). A semicircular through groove is provided on the limiting slider (307), and the semicircular through groove of the limiting slider (307) cooperates with the rolling brush (400).
5. The raw material cleaning equipment for collagen thread production according to claim 4, characterized in that: The bristles of the rolling brush (400) are made of a flexible material, the rotating gear (401) is meshedly connected to the rotating rack (309), and a feed port (102) is fixedly connected to the cleaning housing (100).
6. The raw material cleaning equipment for collagen thread production according to claim 5, characterized in that: A driven wedge block (507) is fixedly connected to the side of the sliding crank (502) away from the partition baffle (500), and a sliding shaft (505) corresponding to the partition baffle (500) is slidably connected in the cleaning shell (100). A driving wedge block (506) is fixedly connected to the sliding shaft (505), and the driving wedge block (506) is wedge-matched with the driven wedge block (507).
7. The raw material cleaning equipment for collagen thread production according to claim 6, characterized in that: A fixed ring (509) is fixedly connected to the sliding shaft (505), and a second return spring (510) is wound around the sliding shaft (505). The second return spring (510) is connected to the fixed ring (509) and the cleaning shell (100).
8. The raw material cleaning equipment for collagen thread production according to claim 7, characterized in that: The lower end of the sliding shaft (505) is fixedly connected to a hemispherical extrusion shaft (508), and the cleaning shaft (202) is fixedly connected to an extrusion hemispherical crank (511) distributed in a circumferential array on the outer contour of the lower side of the cleaning shell (100). The extrusion hemispherical crank (511) is extruded and matched with the hemispherical extrusion shaft (508), and the extrusion hemispherical crank (511) is offset from the storage device.
Citation Information
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