Slag-liquid separation device for bean product processing

By designing a residue-liquid separation acceleration mechanism and an oblique stirring and separation mechanism in the residue-liquid separation device for soy products processing, the problems of poor separation effect of existing devices and inconvenient automatic cleaning and processing are solved, and efficient residue-liquid separation and equipment life are achieved.

CN120054089AInactive Publication Date: 2025-05-30WEIFANG ZHONGHE FOOD CO LTD
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Patent Information

Application Number
CN202510534943.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-27
Publication Date
2025-05-30
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing residue-liquid separation device for soy products processing has poor separation effect, easy blockage of the filter net, and inconvenient automatic cleaning and processing, resulting in low separation efficiency and inability to meet the actual use needs.

Method used

A residue-liquid separation device for soy products processing, including a residue-liquid separation acceleration mechanism and an oblique stirring and separation mechanism, is designed. The slag-liquid separation acceleration mechanism improves the solid-liquid separation efficiency through coordinated operations of vibration, extrusion and cleaning groups; the oblique stirring and separation mechanism improves the efficiency of slag-liquid separation through oblique stirring.

Benefits of technology

It significantly improves the efficiency of residue separation of soy products processing, extends equipment life, reduces labor costs, and ensures thoroughness of residue separation and automated cleaning.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a residue-liquid separation device for bean product processing, which belongs to the technical field of bean product processing, and has the technical key points that the residue-liquid separation device comprises a device body, through an arranged residue-liquid separation acceleration mechanism, residue-liquid surface tension can be destroyed through vibrating screening, solid-liquid separation is accelerated, mechanical pressure is synchronously applied to extrusion and filtration, and residual slurry in residues is discharged; by means of the collaborative operation mechanism of cleaning, vibration and filter pressing, the bean product processing residue-liquid separation efficiency is remarkably improved, the inclined stirring treatment on the residue-liquid can be completed through the arranged inclined stirring and separating mechanism, radial and axial flow is synchronously generated during rotation, and the residue-liquid separation efficiency is greatly improved. A vortex is easily formed in the center of a container by traditional vertical stirring, and materials can be forced to migrate from the edge to the center by spiral flow of oblique stirring, so that no dead angle coverage is ensured, the slag-liquid separation efficiency is further improved, and the self-cleaning slag-liquid separator has the advantages of self-cleaning and convenience in slag-liquid separation.
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Description

Technical Field

[0001] The present invention relates to the field of soy product processing, and specifically relates to a residue-liquid separation device for soy product processing. Background Art

[0002] Soy products are foods processed mainly from beans such as soybeans, adzuki beans, green beans, peas, and broad beans. Most soy products are tofu and its reprocessed products coagulated from soy milk of soybeans. During the processing and production of soy products, it is necessary to separate the crushed soybean residue and soy milk, and extract the soy milk for further processing. In real life, when processing soy products, it is necessary to separate the residue slurry of soy products.

[0003] Currently, the common residue-liquid separation devices for soy product processing on the market have poor separation effects when separating the residue slurry of soy products, and the residue slurry separation is not thorough enough. At the same time, during the actual use process, the filter screen is prone to blockage, resulting in the device being unable to effectively separate the residue liquid of soy products better, not facilitating the corresponding automatic cleaning treatment, greatly affecting the separation efficiency, and unable to meet the actual use requirements.

[0004] Therefore, it is necessary to provide a residue-liquid separation device for soy product processing, aiming to solve the above problems. Summary of the Invention

[0005] Aiming at the deficiencies of the existing technology, the purpose of the embodiment of the present invention is to provide a residue-liquid separation device for soy product processing, aiming to solve the technical problems raised in the background art.

[0006] To achieve the above purpose, the present invention provides the following technical solutions: A residue-liquid separation device for soy product processing, including a device body, a box cover is arranged on the device body, a centrifugal cylinder for residue-liquid separation is arranged inside the device body, a plurality of first sieve holes are opened on the centrifugal cylinder, a sieve plate and a filter screen for step-by-step screening are arranged below the centrifugal cylinder, and further includes: A residue-liquid separation acceleration mechanism, which is installed at the internal connection of the centrifugal cylinder and the device body, and is used to promote the acceleration of the separation operation of the centrifugal cylinder and the sieve plate. The residue-liquid separation acceleration mechanism includes a vibration group for vibrating and accelerating screening, a squeezing group for squeezing and screening, and a cleaning group for cleaning the outside of the centrifugal cylinder. The residue-liquid separation acceleration mechanism further includes a first stirring shaft and a rotating cylinder for driving the vibration group, the squeezing group, and the cleaning group to perform synchronous operations. The first stirring shaft and the rotating cylinder rotate coaxially, and a rotating disk for controlling the driving of vibration, squeezing, and cleaning is arranged on one side of the rotating cylinder. The rotating disk is rotatably installed inside a fixed seat through a rotating ball; The diagonal stirring and separating mechanism is synchronously driven by the slag-liquid separation and acceleration mechanism and is used for diagonal stirring and separating treatment of soy products above the filter screen. The diagonal stirring and separating mechanism includes a second stirring shaft for diagonal stirring, and the second stirring shaft is diagonally rotatably connected to the inside of the fixed seat through a rotating ball.

[0007] As a further solution of the present invention, the cleaning group includes a cleaning brush for cleaning the outer side of the centrifugal cylinder and a Z-shaped moving rod. The cleaning brush is fixedly installed on the Z-shaped moving rod. The Z-shaped moving rod is limited and slidably connected to the inside of the fixed seat through a lifting column. The fixed seat is fixedly installed inside the device body through a sieve plate, and a lifting chute adapted to slidably connect with the lifting column is opened inside the fixed seat. A return spring is arranged at the connection between the lifting column and the fixed seat.

[0008] As a further solution of the present invention, the cleaning group further includes a rotating disk and a traction rod for driving the Z-shaped moving rod to reciprocally lift and move. The traction rod is fixedly installed on the rotating disk through a first frustum. A docking hole adapted to slidably connect with the traction rod is opened on the rotating cylinder. The rotating disk is obliquely installed on one side of the lifting column.

[0009] As a further solution of the present invention, the extrusion group includes an extrusion plate for extrusion filtration at the sieve plate. A number of perforated cones are arranged on the extrusion plate. The extrusion plate is fixedly installed on the Z-shaped moving rod through a connecting frame. A number of second sieve holes for filtration and adapted to be penetrated and connected with the perforated cones are arranged on the sieve plate.

[0010] As a further solution of the present invention, the vibration group includes an L-shaped connecting plate and a ball-headed knocking rod for connecting to one side of the centrifugal cylinder. The ball-headed knocking rod is rotatably installed on the support plate through a second connecting shaft. The support plate is fixedly installed on the fixed seat. A third gear is fixedly connected to the second connecting shaft. A second gear is meshed with the third gear. The second gear is rotatably installed on the support plate through a first connecting shaft. One end of the first connecting shaft is fixedly connected with a first gear. The L-shaped connecting plate is fixedly installed on the Z-shaped moving rod. A number of teeth meshed with the first gear are arranged on the L-shaped connecting plate, and the L-shaped connecting plate is slidably connected to one side of the fixed seat.

[0011] As a further solution of the present invention, the slag-liquid separation and acceleration mechanism further includes a driving motor for driving the rotation of the first stirring shaft and a one-way bearing for controlling the rotation of the centrifugal cylinder. The first stirring shaft is fixedly connected to the output shaft of the driving motor. The driving motor is fixedly installed on the device body through a support frame. The first stirring shaft is rotatably installed on the top of the centrifugal cylinder through a one-way bearing, and a number of first stirring blades for centrifugal stirring are arranged on the first stirring shaft.

[0012] As a further solution of the present invention, the slag-liquid separation acceleration mechanism further includes a limit sliding ring for driving the centrifugal cylinder to rotate and guide. The limit sliding ring is fixedly installed on the centrifugal cylinder. A limit sliding groove adapted to rotationally guide and connect the limit sliding ring is provided on the box cover. A feed pipe is provided on the centrifugal cylinder, and a cover is provided on the feed pipe.

[0013] As a further solution of the present invention, the oblique stirring separation mechanism further includes a second frustum for oblique shunting. The second frustum is fixedly installed on the filter screen. A plurality of second stirring blades are provided on the second stirring shaft. A liquid collecting box is provided below the filter screen. A drain pipe is fixedly communicated with the liquid collecting box, and a valve is provided on the drain pipe.

[0014] In summary, the embodiments of the present invention have the following beneficial effects compared with the prior art: Through the slag-liquid separation acceleration mechanism provided by the present invention, the surface tension of the slag-liquid can be destroyed by vibration screening to accelerate the solid-liquid separation. Mechanical pressure is applied synchronously during extrusion filtration to further discharge the residual slurry in the residue, and at the same time, the cleaning treatment outside the centrifugal cylinder is completed correspondingly. Through this cooperative operation mechanism of cleaning, vibration and pressure filtration, the efficiency of slag-liquid separation in soybean product processing is significantly improved, and the service life of the equipment is correspondingly extended, and the labor cost is reduced.

[0015] The oblique stirring separation mechanism provided is synchronously driven by the slag-liquid separation acceleration mechanism to complete the oblique stirring treatment of the slag-liquid. During rotation, radial and axial flows are generated synchronously to form a strong countercurrent mixing effect. Traditional vertical stirring is prone to form vortices in the center of the container, while the spiral flow of oblique stirring can force the material to migrate from the edge to the center, ensuring no dead angle coverage. And compared with vertical stirring, when processing high-viscosity soybean product raw materials, the mixing efficiency of oblique stirring is significantly improved, thereby further improving the efficiency of slag-liquid separation.

[0016] To more clearly illustrate the structural features and functions of the present invention, the present invention will be described in detail below with reference to the drawings and specific embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic structural diagram of an embodiment of the invention.

[0018] Figure 2 It is an exploded structural diagram of the connection of the box cover in an embodiment of the invention.

[0019] Figure 3 It is a schematic internal structure diagram of an embodiment of the invention.

[0020] Figure 4 It is a schematic cross-sectional internal structure diagram of an embodiment of the invention.

[0021] Figure 5 Schematic diagram of the upward view of the internal sectional connection of the invention embodiment.

[0022] Figure 6 Schematic diagram of the side view of the internal sectional connection of the invention embodiment.

[0023] Figure 7 It is Figure 6 Enlarged schematic diagram of A in

[0024] Figure 8 Schematic diagram of the sectional structure inside the fixing seat in the invention embodiment.

[0025] Figure 9 Schematic diagram of the side view of the internal sectional connection of the fixing seat in the invention embodiment.

[0026] Figure 10 Schematic diagram of the sectional structure of the connection of the rotating cylinder in the invention embodiment.

[0027] Reference numerals: 1, device body; 2, box cover; 3, limit sliding groove; 4, centrifugal cylinder; 5, limit sliding ring; 6, feed pipe; 7, sealing cover; 8, support frame; 9, driving motor; 10, one-way bearing; 11, first stirring shaft; 12, first stirring blade; 13, first sieve hole; 14, sieve plate; 15, second sieve hole; 16, cleaning brush; 17, Z-shaped moving rod; 18, connecting frame; 19, extrusion plate; 20, perforating cone; 21, L-shaped connecting plate; 22, teeth; 23, first gear; 24, first connecting shaft; 25, support plate; 26, second gear; 27, third gear; 28, second connecting shaft; 29, ball head knocking rod; 30, rotating cylinder; 31, traction rod; 32, first frustum; 33, docking hole; 34, rotating disc; 35, rotating ball; 36, second stirring shaft; 37, second stirring blade; 38, second frustum; 39, lifting column; 40, lifting sliding groove; 41, return spring; 42, liquid collecting box; 43, drain pipe; 44, valve; 45, fixing seat; 46, filter screen. Detailed implementation manners

[0028] In order to make the purpose, technical solutions and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0029] The following describes the specific implementation of the present invention in detail with specific embodiments.

[0030] Embodiment 1

[0031] See Figures 1 to 10, a residue-liquid separation device for soy product processing, including a device body 1, a box cover 2 is arranged on the device body 1, a centrifugal cylinder 4 for residue-liquid separation is arranged inside the device body 1, a plurality of first sieve holes 13 are formed on the centrifugal cylinder 4, and a sieve plate 14 and a filter screen 46 for step-by-step screening are arranged below the centrifugal cylinder 4. It further includes: A residue-liquid separation acceleration mechanism, which is installed at the internal connection of the centrifugal cylinder 4 and the device body 1 and is used to promote the acceleration of the separation operation of the centrifugal cylinder 4 and the sieve plate 14. The residue-liquid separation acceleration mechanism includes a vibration group for accelerating screening by vibration, an extrusion group for extrusion screening, and a cleaning group for cleaning the outside of the centrifugal cylinder 4. The residue-liquid separation acceleration mechanism also includes a first stirring shaft 11 and a rotating cylinder 30 for driving the vibration group, the extrusion group, and the cleaning group to perform synchronous operations. The first stirring shaft 11 and the rotating cylinder 30 are coaxially rotated and driven. A rotating disk 34 for controlling the driving of vibration, extrusion, and cleaning is arranged on one side of the rotating cylinder 30. The rotating disk 34 is rotatably installed inside a fixed seat 45 through a rotating ball 35.

[0032] Furthermore, the cleaning group includes a cleaning brush 16 for cleaning the outside of the centrifugal cylinder 4 and a Z-shaped moving rod 17. The cleaning brush 16 is fixedly installed on the Z-shaped moving rod 17. The Z-shaped moving rod 17 is limited and slidably connected inside the fixed seat 45 through a lifting column 39. The fixed seat 45 is fixedly installed inside the device body 1 through the sieve plate 14, and a lifting chute 40 adapted to the lifting column 39 for sliding connection is opened inside the fixed seat 45. A return spring 41 is arranged at the connection between the lifting column 39 and the fixed seat 45.

[0033] Furthermore, the cleaning group also includes a rotating disk 34 and a traction rod 31 for driving the Z-shaped moving rod 17 to reciprocate up and down. The traction rod 31 is fixedly installed on the rotating disk 34 through a first frustum 32. A docking hole 33 adapted to the traction rod 31 for sliding connection is opened on the rotating cylinder 30. The rotating disk 34 is inclined and installed on one side of the lifting column 39.

[0034] Furthermore, the extrusion group includes an extrusion plate 19 for extrusion filtration at the sieve plate 14. A plurality of perforated cones 20 are arranged on the extrusion plate 19. The extrusion plate 19 is fixedly installed on the Z-shaped moving rod 17 through a connecting frame 18. A plurality of second sieve holes 15 for filtration and adapted to be penetrated and connected with the perforated cones 20 are arranged on the sieve plate 14.

[0035] Further, the vibration group includes an L-shaped connecting plate 21 for connecting one side of the centrifuge tube 4 and a ball-headed knocking rod 29. The ball-headed knocking rod 29 is rotatably mounted on the support plate 25 through a second connecting shaft 28. The support plate 25 is fixedly mounted on the fixed seat 45. A third gear 27 is fixedly connected to the second connecting shaft 28. A second gear 26 is meshed with the third gear 27. The second gear 26 is rotatably mounted on the support plate 25 through a first connecting shaft 24. One end of the first connecting shaft 24 is fixedly connected with a first gear 23. The L-shaped connecting plate 21 is fixedly mounted on the Z-shaped moving rod 17. A plurality of teeth 22 meshed with the first gear 23 are arranged on the L-shaped connecting plate 21. And the L-shaped connecting plate 21 is slidably connected to one side of the fixed seat 45 in a matching manner.

[0036] Further, the slag-liquid separation acceleration mechanism further includes a driving motor 9 for driving the first stirring shaft 11 to rotate and a one-way bearing 10 for controlling the rotation of the centrifuge tube 4. The first stirring shaft 11 is fixedly connected to the output shaft of the driving motor 9. The driving motor 9 is fixedly mounted on the device body 1 through a support frame 8. The first stirring shaft 11 is rotatably mounted on the top of the centrifuge tube 4 through the one-way bearing 10. And a plurality of first stirring blades 12 for centrifugal stirring are arranged on the first stirring shaft 11.

[0037] Further, the slag-liquid separation acceleration mechanism further includes a limit sliding ring 5 for guiding the rotation of the centrifuge tube 4. The limit sliding ring 5 is fixedly mounted on the centrifuge tube 4. A limit sliding groove 3 for rotatably guiding and connecting the limit sliding ring 5 in a matching manner is formed on the box cover 2. A feed pipe 6 is arranged on the centrifuge tube 4. A cover 7 is arranged on the feed pipe 6.

[0038] Preferably, when carrying out the slag-liquid separation treatment of soy products, the cover 7 is opened, and the soy product raw materials to be treated are injected into the interior of the centrifuge tube 4 through the feed pipe 6. The output shaft of the driving motor 9 rotates forward. At this time, under the connection relationship of the one-way bearing 10, the first stirring blades 12 on the first stirring shaft 11 are driven to rotate. At this time, the centrifuge tube 4 remains in a relatively static state under the action of the one-way bearing 10 and the limit sliding ring 5, so as to facilitate the stirring and centrifugation treatment in the centrifuge tube 4.

[0039] While the first stirring shaft 11 rotates, it correspondingly drives the rotating cylinder 30 to rotate synchronously. Under the condition that the rotating cylinder 30 is adaptively connected to the traction rod 31 on the first frustum 32, it drives the rotating disk 34 to eccentrically reciprocate around the rotating ball 35, thereby correspondingly driving the cleaning brush 16 on the Z-shaped moving rod 17 to reciprocate up and down under the elastic action of the return spring 41. Thus, the cleaning brush 16 on the Z-shaped moving rod 17 can simply clean the side of the centrifugal cylinder 4. And while the Z-shaped moving rod 17 reciprocates up and down, it correspondingly drives the teeth 22 on the L-shaped connecting plate 21 to reciprocate up and down. Then, under the condition that the teeth 22 on the L-shaped connecting plate 21 are meshed with the first gear 23, it drives the second gear 26 on the first connecting shaft 24 to rotate. Under the condition that the second gear 26 is meshed with the third gear 27, it drives the ball-headed knocking rod 29 on the second connecting shaft 28 to reciprocate and rotate, thereby completing the reciprocating knocking treatment on the bottom side of the centrifugal cylinder 4, facilitating further centrifugal separation treatment on the centrifugal cylinder 4, separating the slag liquid further, and significantly improving the efficiency of slag liquid separation.

[0040] The slag liquid centrifugally separated through the first sieve holes 13 on the centrifugal cylinder 4 falls onto the sieve plate 14 for further screening and filtering treatment. Due to the reciprocating lifting movement of the Z-shaped moving rod 17, under the action of the Z-shaped moving rod 17, it correspondingly drives the perforated cone 20 on the pressing plate 19 to reciprocate up and down, not only realizing the extrusion and filtering treatment of the slag liquid on the sieve plate 14, but also further avoiding the blockage at the second sieve holes 15 on the sieve plate 14, improving the screening and filtering efficiency of the sieve plate 14, thus facilitating the subsequent separation and filtering treatment and significantly improving the working efficiency.

[0041] At the same time and more importantly, in order to clean the centrifugal cylinder 4, the output shaft of the driving motor 9 rotates in the reverse direction. At this time, under the one-way action of the one-way bearing 10, it correspondingly drives the centrifugal cylinder 4 to rotate synchronously with the first stirring shaft 11 under the limiting and guiding action of the limiting slip ring 5. Since the centrifugal cylinder 4 is in a state of continuous rotation and at the same time the cleaning brush 16 on the Z-shaped moving rod 17 reciprocates up and down, it can well complete the cleaning treatment of the outer side of the centrifugal cylinder 4, and the cleaning of the centrifugal cylinder 4 can be completed without disassembly, significantly improving the service life of the device.

[0042] The vibration screening set in this device destroys the surface tension of the slag liquid through high-frequency vibration, accelerates the solid-liquid separation, synchronously applies mechanical pressure during extrusion and filtration, further discharges the residual slurry in the residue, and simultaneously completes the cleaning treatment of the outer side of the centrifugal cylinder 4. Through this collaborative operation mechanism of cleaning, vibration and pressure filtration, it significantly improves the efficiency of separating the slag liquid in soybean product processing, correspondingly extends the service life of the equipment, and reduces the labor cost.

[0043] Embodiment 2

[0044] As Figures 1 to 10 shown, on the basis of Embodiment 1, this embodiment further includes an inclined stirring and separating mechanism, which is synchronously driven by a slag-liquid separation acceleration mechanism and is used for performing inclined stirring and separating treatment on the soy products above the filter screen 46. The inclined stirring and separating mechanism includes a second stirring shaft 36 for inclined stirring, and the second stirring shaft 36 is obliquely rotatably connected to the inside of the fixed seat 45 through a rotating ball 35.

[0045] Furthermore, the inclined stirring and separating mechanism further includes a second frustum 38 for inclined flow diversion, the second frustum 38 is fixedly installed on the filter screen 46, several second stirring blades 37 are arranged on the second stirring shaft 36, a liquid collecting box 42 is arranged below the filter screen 46, a drain pipe 43 is fixedly communicated with the liquid collecting box 42, and a valve 44 is arranged on the drain pipe 43.

[0046] Preferably, in this embodiment, the slag-liquid filtered by the second sieve holes 15 on the sieve plate 14 falls onto the filter screen 46 for further screening and filtering treatment. Moreover, due to the movable connection between the traction rod 31 on the first frustum 32 and the rotating cylinder 30, and the connection relationship between the rotating disk 34 and the rotating ball 35 driving the second stirring blades 37 on the second stirring shaft 36 to rotate obliquely, the inclined stirring treatment of the slag-liquid is realized.

[0047] By this inclined stirring method, radial and axial flows are synchronously generated during rotation, forming a strong countercurrent mixing effect. Traditional vertical stirring is prone to forming vortices in the center of the container, while the spiral flow of inclined stirring can force the material to migrate from the edge to the center, ensuring no dead-angle coverage. Moreover, compared with vertical stirring, when processing soy product raw materials with high viscosity, the mixing efficiency of inclined stirring is significantly improved, thereby further enhancing the efficiency of slag-liquid separation.

[0048] It should be particularly noted that the components in this application are all common standard components or components well-known to those skilled in the art, and it effectively solves the technical problems proposed in the background art.

[0049] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A slag-liquid separation device for bean product processing, comprising a device body (1), a box cover (2) being arranged on the device body (1), characterized in that: The device body (1) is provided with a centrifugal cylinder (4) for separating slag from liquid, the centrifugal cylinder (4) is provided with a plurality of first sieve holes (13), a sieve plate (14) and a filter screen (46) for step-by-step screening are provided below the centrifugal cylinder (4), and further comprises: a slag-liquid separation acceleration mechanism, which is installed at the internal connection between the centrifugal cylinder (4) and the device body (1), and is used to promote the centrifugal cylinder (4) and the screen plate (14) to accelerate the separation operation, the slag-liquid separation acceleration mechanism comprising a vibration group for vibration acceleration screening, an extrusion group for extrusion screening, and a cleaning group for cleaning the outside of the centrifugal cylinder (4), the slag-liquid separation acceleration mechanism also comprising a first stirring shaft (11) and a rotating cylinder (30) for driving the vibration group, the extrusion group, and the cleaning group to perform synchronous operations, the first stirring shaft (11) and the rotating cylinder (30) are coaxially driven for rotation, a rotating disk (34) for controlling vibration, extrusion, and cleaning drive is provided on one side of the rotating cylinder (30), and the rotating disk (34) is rotatably mounted inside a fixed seat (45) via a rotating ball (35); The oblique stirring and separation mechanism is synchronously driven by the slag-liquid separation acceleration mechanism and is used to perform oblique stirring and separation processing on the bean products above the filter screen (46). The oblique stirring and separation mechanism comprises a second stirring shaft (36) for oblique stirring. The second stirring shaft (36) is connected to the inside of the fixed seat (45) by means of a rotating ball (35) for oblique rotation.

2. The slag-liquid separation device for bean product processing according to claim 1, characterized in that: The cleaning group comprises a cleaning brush (16) for cleaning the outside of the centrifugal cylinder (4) and a Z-shaped movable rod (17); the cleaning brush (16) is fixedly mounted on the Z-shaped movable rod (17); the Z-shaped movable rod (17) is slidably connected to the inside of a fixed seat (45) via a lifting column (39); the fixed seat (45) is fixedly mounted to the inside of the device body (1) via a sieve plate (14); a lifting slot (40) adapted to be slidably connected to the lifting column (39) is provided in the fixed seat (45); and a return spring (41) is provided at the connection between the lifting column (39) and the fixed seat (45).

3. The slag-liquid separation device for bean product processing according to claim 2, characterized in that: The cleaning group further comprises a rotating disk (34) and a traction rod (31) for driving the Z-shaped moving rod (17) to move up and down reciprocatingly; the traction rod (31) is fixedly mounted on the rotating disk (34) via a first cone (32); a docking hole (33) adapted to be slidably connected to the traction rod (31) is provided on the rotating cylinder (30); and the rotating disk (34) is obliquely mounted on one side of a lifting column (39).

4. The slag-liquid separation device for bean product processing according to claim 2, characterized in that: The extrusion group comprises an extrusion plate (19) for extrusion filtration at the sieve plate (14), a plurality of perforated cones (20) being arranged on the extrusion plate (19), the extrusion plate (19) being fixedly mounted on the Z-shaped moving rod (17) via a connecting frame (18), and a plurality of second sieve holes (15) for filtration and adapted to be connected with the perforated cones (20) being arranged on the sieve plate (14).

5. The slag-liquid separation device for bean product processing according to claim 2, characterized in that: The vibration group comprises an L-shaped connecting plate (21) and a ball-head knocking rod (29) for connecting to one side of a centrifugal cylinder (4); the ball-head knocking rod (29) is rotatably mounted on a support plate (25) via a second connecting shaft (28); the support plate (25) is fixedly mounted on a fixing seat (45); a third gear (27) is fixedly connected to the second connecting shaft (28); a second gear (26) is meshingly connected to the third gear (27); the second gear (26) is rotatably mounted on the support plate (25) via a first connecting shaft (24); one end of the first connecting shaft (24) is fixedly connected to a first gear (23); the L-shaped connecting plate (21) is fixedly mounted on a Z-shaped moving rod (17); a plurality of teeth (22) meshingly connected to the first gear (23) are provided on the L-shaped connecting plate (21); and the L-shaped connecting plate (21) is adapted to be slidably connected to one side of the fixing seat (45).

6. The slag-liquid separation device for bean product processing according to claim 1, characterized in that: The slag-liquid separation acceleration mechanism further comprises a driving motor (9) for driving a first stirring shaft (11) to rotate and a one-way bearing (10) for controlling the rotation of a centrifugal cylinder (4); the first stirring shaft (11) is fixedly connected to an output shaft of the driving motor (9); the driving motor (9) is fixedly mounted on a device body (1) via a support frame (8); the first stirring shaft (11) is rotatably mounted on the top of the centrifugal cylinder (4) via the one-way bearing (10); and a plurality of first stirring blades (12) for centrifugal stirring are arranged on the first stirring shaft (11).

7. The slag-liquid separation device for bean product processing according to claim 6, characterized in that: The slag-liquid separation acceleration mechanism further comprises a limit slip ring (5) for driving the centrifugal cylinder (4) to perform rotational guidance, the limit slip ring (5) being fixedly mounted on the centrifugal cylinder (4), the box cover (2) being provided with a limit slide groove (3) adapted to be connected to the rotational guidance limit slip ring (5), the centrifugal cylinder (4) being provided with a feed pipe (6), and the feed pipe (6) being provided with a sealing cover (7).

8. The slag-liquid separation device for bean product processing according to claim 3, characterized in that: The oblique stirring and separation mechanism further comprises a second cone (38) for oblique flow separation, the second cone (38) being fixedly mounted on a filter screen (46), a plurality of second stirring blades (37) being arranged on the second stirring shaft (36), a liquid collecting box (42) being arranged below the filter screen (46), a liquid discharge pipe (43) being fixedly connected to the liquid collecting box (42), and a valve (44) being arranged on the liquid discharge pipe (43).

Citation Information

Patent Citations

  • Textile sewage filtering equipment

    CN112807822A

  • Integrated treatment equipment for breeding sewage and operation method of integrated treatment equipment

    CN117886383A

  • Gear oil processing multistage filtering device

    CN215539065U

  • Centrifugal separation device for producing powdered oil by enzymic method

    CN216910620U

  • Special residue-liquid separation equipment for bean product processing

    CN222788651U