Cleaning structure for collecting cup of protein separator
By designing a cleaning structure in the protein separator that allows the main shaft to drive the scraper to make close contact with the collection cup and foam climbing tube, combined with a spray assembly, the problem of stain residue in traditional cleaning methods is solved, improving cleaning effect and equipment performance.
Patent Information
- Application Number
- CN202520277574.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-02-20
AI Technical Summary
Traditional cleaning methods are ineffective at cleaning the protein separator's collection cup and foam crawler, resulting in residue that affects separation efficiency and equipment lifespan.
Design a cleaning structure including a main shaft, connecting arm and scraper. The scraper makes close contact with the foam crawler and the wall of the collection cup, and is combined with the spray assembly for cleaning. The main shaft drives the scraper to rotate to remove stains.
It effectively removes stains from the collection cup and foam crawler, improving the performance of the separator and extending the equipment life.
Smart Images

Figure CN223862486U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of protein separator, especially to protein separator collection cup cleaning structure. BACKGROUND
[0002] The protein separator is a kind of air floatation device, utilize the surface tension of bubble in water to adsorb various particulate pollutants and organic matter such as colloid particles mixed in water, generally adopt jet device or needle brush pump to carry out gas-liquid mixing to generate a large amount of bubble, and the pollutant adsorbed in the form of foam enters the dirt collection cup (if any) along the pipe and is discharged. Since the dirt is generally very fine and has very strong viscosity, the pipe and the collection cup are very easy to be attached by dirt, and once the pipe is attached by dirt, it will affect the pipe climbing of subsequent dirt and further affect the separation efficiency of the protein separator, and once the collection cup is attached by dirt, it will affect the discharge of dirt, and the accumulation to a certain extent will affect the dirt climbing out of the pipe, so a set of efficient cleaning device is crucial to the normal operation of the protein separator, and the traditional cleaning mainly adopts the method of spray washing, by installing a cleaning water pipe connected with a cleaning pipe with punching holes or installing a spray head to spray and flush, in practice, the cleaning efficiency is low and the cleaning effect is poor for high-viscosity pollutants, especially after the dirt accumulates with the increase of use time, the cleaning effect will become weaker and weaker, until regular manual cleaning is needed, which increases the maintenance difficulty, and the cleaning device itself is very fragile and easy to be blocked and damaged (such as shaft). SUMMARY
[0003] The utility model solves the technical problems that: provide a kind of protein separator collection cup cleaning structure, avoid that the pipe wall of collection cup cup wall and foam is not completely cleaned and is easy to remain dirt.
[0004] In order to solve the above technical problems, the utility model adopts the technical scheme that: the protein separator collection cup cleaning structure comprises:
[0005] The collection cup main body comprises a top cover and a foam climbing pipe arranged in the inner cavity.
[0006] The main shaft is rotatably connected with the top cover, and the main shaft is provided with a connecting arm, one end of the connecting arm is provided with a first scraper, the other end of the connecting arm is provided with a second scraper and a third scraper, the first scraper abuts against the circumferential inner wall of the collection cup main body, the second scraper abuts against the circumferential inner wall of the foam climbing pipe, and the third scraper abuts against the circumferential outer wall of the foam climbing pipe.
[0007] Further, one end of the connecting arm is provided with an elastic support, the first scraper is slidably connected with the connecting arm, and the first scraper abuts against the circumferential inner wall of the collection cup main body through the elastic support.
[0008] Further, the other end of the connecting arm is provided with an elastic tensioning piece, the second scraper and the third scraper are both in sliding connection with the connecting arm, the two ends of the elastic tensioning piece are connected with the second scraper and the third scraper respectively, and the second scraper and the third scraper clamp the side wall of the foam climbing pipe through the elastic tensioning piece.
[0009] Further, the surfaces of the first scraper, the second scraper and the third scraper are all provided with silica gel scraping strips.
[0010] Further, the main shaft is provided with a spraying assembly, and the inside of the main shaft is provided with a spraying medium channel in communication with the spraying assembly.
[0011] Further, the spraying assembly comprises a box body, an inclined spraying head and an omnidirectional spraying head, the box body is arranged on the main shaft, the inclined spraying head and the omnidirectional spraying head are arranged on the box body, the inclined spraying head and the omnidirectional spraying head are in communication with the spraying medium channel through the box body, the inclined spraying head faces the circumferential inner wall of the collecting cup body and the outer wall of the foam climbing pipe, and the omnidirectional spraying head is used for cleaning the inner wall of the foam climbing pipe.
[0012] Further, the top cover is provided with an electric actuator, and the electric actuator is connected with the main shaft.
[0013] The beneficial effects of the utility model lie in that the protein separator collecting cup cleaning structure, the collecting cup includes a top cover arranged at the top and a foam climbing pipe arranged in the inside, a main shaft is installed on the top cover, when the main shaft rotates, the connecting arm rotates on the radial surface of the inner cavity of the collecting cup, and the first scraper, the second scraper and the third scraper arranged on the connecting arm are driven to rotate, the first scraper, the second scraper and the third scraper are in close abutment on the circumferential inner wall of the collecting cup body, the circumferential inner wall and the outer wall of the foam climbing pipe respectively, can guarantee that the foam, stains and the like remaining on the cup wall of the collecting cup and the pipe wall of the foam climbing pipe are completely removed, so that the cleaning effect is improved, the use performance of the protein separator is improved and the service life of the equipment is prolonged. BRIEF DESCRIPTION OF DRAWINGS
[0014] Fig. 1 It is a structural schematic view of the protein separator collecting cup cleaning structure;
[0015] Fig. 2 It is a structural schematic view of the collecting cup body;
[0016] Fig. 3 It is another structural schematic view of the collecting cup body;
[0017] REFERENCE SIGNS:
[0018] 1, collection cup main body;11, top cover;12, foam pipe;2, main shaft;21, connecting arm;211, elastic support;212, elastic tensioning member;22, first scraper;221, silica gel scraper;23, second scraper;24, third scraper;25, spraying assembly;251, box body;252, inclined shower head;253, omnidirectional shower head. DETAILED DESCRIPTION
[0019] To illustrate the technical content of the utility model, the purposes and effects achieved, the following will be described in conjunction with the embodiments and the accompanying drawings.
[0020] The utility model provides a protein separator collection cup cleaning structure, be applicable to the collection cup self -cleaning device of protein separator in factoryization aquaculture.
[0021] Please refer to Figs. 1-3 The utility model discloses a protein separator collection cup cleaning structure, which comprises:
[0022] The collection cup main body 1 comprises a top cover 11 and a foam pipe 12 arranged in an inner cavity.
[0023] The main shaft 2 is rotationally connected with the top cover 11, and the main shaft 2 is provided with a connecting arm 21. One end of the connecting arm 21 is provided with a first scraper 22, and the other end of the connecting arm 21 is provided with a second scraper 23 and a third scraper 24. The first scraper 22 abuts against the circumferential inner wall of the collection cup main body 1, the second scraper 23 abuts against the circumferential inner wall of the foam pipe 12, and the third scraper 24 abuts against the circumferential outer wall of the foam pipe 12.
[0024] From the above description, the utility model has the beneficial effects that the protein separator collection cup cleaning structure comprises a top cover 11 arranged at the top and a foam pipe 12 arranged inside. The main shaft 2 is installed on the top cover 11. When the main shaft 2 rotates, the connecting arm 21 rotates on the radial surface of the inner cavity of the collection cup, and the first scraper 22, the second scraper 23 and the third scraper 24 arranged on the connecting arm 21 also rotate. The first scraper 22, the second scraper 23 and the third scraper 24 firmly abut against the circumferential inner wall of the collection cup main body 1, the circumferential inner wall of the foam pipe 12 and the outer wall of the foam pipe 12, respectively. This can ensure that the foam and stains remaining on the cup wall of the collection cup and the pipe wall of the foam pipe 12 are completely removed, thereby improving the cleaning effect, enhancing the use performance of the protein separator and prolonging the service life of the equipment.
[0025] In an optional embodiment, one end of the connecting arm 21 is provided with an elastic support 211, and the first scraper 22 is slidably connected with the connecting arm 21. The first scraper 22 abuts against the circumferential inner wall of the collection cup main body 1 through the elastic support 211.
[0026] As can be seen from the above description, the elastic support 211 ensures that the first scraper 22 is always pressed against the inner circumferential wall of the collection cup body 1, thus preventing the first scraper 22 from leaving stains when cleaning the inner circumferential wall of the collection cup body 1.
[0027] In an optional embodiment, the other end of the connecting arm 21 is provided with an elastic tensioning member 212. The second scraper 23 and the third scraper 24 are both slidably connected to the connecting arm 21. The two ends of the elastic tensioning member 212 are respectively connected to the second scraper 23 and the third scraper 24. The second scraper 23 and the third scraper 24 clamp the side wall of the foam climbing pipe 12 through the elastic tensioning member 212.
[0028] As can be seen from the above description, the second scraper 23 and the third scraper 24 are pulled closer by the elastic tensioner 212, so that they are firmly clamped on the inner and outer side walls of the foam climbing tube 12, so as to avoid incomplete cleaning due to gaps during cleaning.
[0029] In an optional embodiment, the surfaces of the first scraper 22, the second scraper 23, and the third scraper 24 are all provided with silicone scraper strips 221.
[0030] As can be seen from the above description, the silicone scraper 221 has a certain elastic deformation ability, which can ensure that the cleaning surface is always in close contact with the wall to be cleaned, thus ensuring the cleaning effect.
[0031] In an optional embodiment, the main shaft 2 is provided with a spray assembly 25, and the interior of the main shaft 2 is provided with a spray medium channel communicating with the spray assembly 25.
[0032] As can be seen from the above description, the function of the spray assembly 25 is to spray cleaning medium onto the wall to be cleaned, and to improve the cleaning effect in conjunction with the scraper assembly.
[0033] In an optional embodiment, the spray assembly 25 includes a housing 251, an inclined spray head 252, and an omnidirectional spray head 253. The housing 251 is mounted on the main shaft 2, and the inclined spray head 252 and the omnidirectional spray head 253 are mounted on the housing 251. The inclined spray head 252 and the omnidirectional spray head 253 are connected to the spray medium channel through the housing 251. The inclined spray head 252 faces the inner circumferential wall of the collection cup body 1 and the outer wall of the foam climbing tube 12, and the omnidirectional spray head 253 is used to clean the inner wall of the foam climbing tube 12.
[0034] As can be seen from the above description, the inclined spray head 252 is used in conjunction with the first scraper 22 to improve the cleaning effect, and the omnidirectional spray head 253 is used in conjunction with the second scraper 23 and the third scraper 24 to improve the cleaning quality.
[0035] Please refer to Figs. 1-3 As shown, Embodiment 1 of this utility model is: a cleaning structure for the protein separator collection cup, comprising:
[0036] The collection cup body 1 includes a top cover 11 and a foam crawler tube 12 disposed in the inner cavity;
[0037] The main shaft 2 is rotatably connected to the top cover 11. The top cover 11 is equipped with an electric actuator connected to the main shaft 2. The main shaft 2 is equipped with a connecting arm 21. One end of the connecting arm 21 is equipped with a first scraper 22, and the other end of the connecting arm 21 is equipped with a second scraper 23 and a third scraper 24. The first scraper 22 abuts against the inner circumference of the collecting cup body 1, the second scraper 23 abuts against the inner circumference of the foam climbing tube 12, and the third scraper 24 abuts against the outer circumference of the foam climbing tube 12.
[0038] One end of the connecting arm 21 is provided with an elastic support member 211. The first scraper 22 is slidably connected to the connecting arm 21, and the first scraper 22 abuts against the inner circumferential wall of the collecting cup body 1 through the elastic support member 211. The other end of the connecting arm 21 is provided with an elastic tension member 212. The second scraper 23 and the third scraper 24 are both slidably connected to the connecting arm 21. The two ends of the elastic tension member 212 are respectively connected to the second scraper 23 and the third scraper 24. The second scraper 23 and the third scraper 24 clamp the side wall of the foam climbing tube 12 through the elastic tension member 212. In this embodiment, both the elastic support member 211 and the elastic tension member 212 are springs. The surfaces of the first scraper 22, the second scraper 23 and the third scraper 24 are all provided with silicone scraper strips 221. The main shaft 2 is provided with a spray assembly 25, and the interior of the main shaft 2 is provided with a spray medium channel communicating with the spray assembly 25. The spray assembly 25 includes a housing 251, an inclined spray head 252, and an omnidirectional spray head 253. The housing 251 is mounted on the main shaft 2, and the inclined spray head 252 and the omnidirectional spray head 253 are mounted on the housing 251. The housing 251 is hollow inside. The inclined spray head 252 and the omnidirectional spray head 253 are connected to the spray medium channel through the housing 251. The inclined spray head 252 faces the inner circumferential wall of the collection cup body 1 and the outer wall of the foam climbing tube 12. The omnidirectional spray head 253 is used to clean the inner wall of the foam climbing tube 12.
[0039] In summary, the cleaning structure of the protein separator collection cup of this utility model includes a top cover and a foam crawler tube inside. A main shaft is installed on the top cover. When the main shaft rotates, it drives the connecting arm to rotate on the radial surface of the inner cavity of the collection cup. At the same time, it drives the first scraper, second scraper, and third scraper installed on the connecting arm to rotate. The first scraper, second scraper, and third scraper are firmly abutted against the inner circumference of the collection cup body, the inner circumference of the foam crawler tube, and the outer wall, respectively. This ensures that residual foam, stains, etc. on the cup wall and the wall of the foam crawler tube are completely removed, thereby improving the cleaning effect, enhancing the performance of the protein separator, and extending the service life of the equipment.
[0040] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent modifications made based on the content of this utility model specification and drawings, or direct or indirect applications in related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A cleaning structure for the collection cup of a protein separator, characterized in that, include: The main body of the collection cup includes a top cover and a foam crawler tube set in the inner cavity; The main shaft is rotatably connected to the top cover. A connecting arm is provided on the main shaft. One end of the connecting arm is provided with a first scraper, and the other end of the connecting arm is provided with a second scraper and a third scraper. The first scraper abuts against the inner circumference of the main body of the collection cup, the second scraper abuts against the inner circumference of the foam crawler tube, and the third scraper abuts against the outer circumference of the foam crawler tube.
2. The protein separator collection cup cleaning structure according to claim 1, characterized in that, One end of the connecting arm is provided with an elastic support member. The first scraper is slidably connected to the connecting arm and abuts against the inner circumference of the collecting cup body through the elastic support member.
3. The protein separator collection cup cleaning structure according to claim 1, characterized in that, The other end of the connecting arm is provided with an elastic tensioning member. The second scraper and the third scraper are slidably connected to the connecting arm. The two ends of the elastic tensioning member are connected to the second scraper and the third scraper respectively. The second scraper and the third scraper clamp the side wall of the foam climbing pipe through the elastic tensioning member.
4. The protein separator collection cup cleaning structure according to claim 1, characterized in that, The surfaces of the first, second, and third scrapers are all equipped with silicone scraper strips.
5. The protein separator collection cup cleaning structure according to claim 1, characterized in that, The main shaft is equipped with a spray assembly, and the inside of the main shaft is equipped with a spray medium channel that communicates with the spray assembly.
6. The protein separator collection cup cleaning structure according to claim 5, characterized in that, The spray assembly includes a housing, an inclined spray head, and an omnidirectional spray head. The housing is mounted on the main shaft, and the inclined and omnidirectional spray heads are mounted on the housing. The inclined and omnidirectional spray heads are connected to the spray medium channel through the housing. The inclined spray head faces the inner circumference of the collection cup body and the outer wall of the foam climbing tube, while the omnidirectional spray head is used to clean the inner wall of the foam climbing tube.
7. The protein separator collection cup cleaning structure according to claim 1, characterized in that, The top cover is equipped with an electric actuator, which is connected to the main shaft.