Multi-angle cleaning equipment for shrimp tail processing
By designing a multi-angle cleaning device and utilizing the combination of an elastic filter and brush components, the problem of impurities adhering during shrimp tail cleaning was solved, resulting in better cleaning and separation effects and improving the processing quality of shrimp tails.
Patent Information
- Application Number
- CN202411767549.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2044-12-04
AI Technical Summary
In existing shrimp tail cleaning devices, impurities easily adhere to the shrimp tails during the cleaning process, affecting the cleaning effect and the taste of subsequent processing.
Design a multi-angle cleaning device, including a cleaning tank, an inlet pipe, an outlet pipe, a connecting frame, a cylinder, cleaning components, brushes, an elastic filter, and a winding component. Through multi-angle cleaning and separation of impurities, the elastic filter separates impurities from the shrimp tails. Combined with the design of brushes and stirring rods, it achieves simultaneous cleaning inside and out.
It improves the cleaning effect of shrimp tails, effectively separates impurities from shrimp tails, ensures the quality of shrimp tails after cleaning, and enhances the taste of subsequent processing.
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Figure CN119563694B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of shrimp tail processing, and particularly relates to a multi-angle cleaning device for shrimp tail processing. BACKGROUND
[0002] The shrimp tail is the tail region of a lobster, and shrimp tail processing can not only improve the utilization rate of shrimp, but also meet the market demand for shrimp products. The processed shrimp tail can be used in various dishes. During the production of shrimp tail, the shrimp tail needs to be cleaned.
[0003] For example, a high-efficiency cleaning device for shrimp tail processing is disclosed in Chinese patent CN22075639U. The scraper provided in the cleaning device can clean and remove the impurities remaining on the inner wall of the cleaning barrel while stirring and cleaning the shrimp tail in the cleaning barrel. However, the cleaning device still has some problems.
[0004] The impurities and shrimp tail are discharged through the discharge port. During the process of discharging the impurities with the cleaning water, a part of the impurities will adhere to the shrimp tail, resulting in poor cleaning effect of the shrimp tail and affecting the taste of the processed shrimp tail. Therefore, we propose a multi-angle cleaning device for shrimp tail processing. SUMMARY
[0005] The purpose of the present application is to provide a multi-angle cleaning device for shrimp tail processing, which has the advantages of conveniently separating impurities and shrimp tail and achieving better cleaning effect.
[0006] The above technical purpose of the present application is achieved by the following technical scheme: a multi-angle cleaning device for shrimp tail processing, comprising a cleaning pool body, a liquid inlet pipe and a liquid outlet pipe connected to the cleaning pool body, two connecting frames movably installed on the inner wall of the cleaning pool body, and a gas cylinder installed on the cleaning pool body and pushing the connecting frames to move up and down, a cleaning assembly is installed on the connecting frame, a brush is installed between the two connecting frames, an upper connecting plate is installed between the two connecting frames, a rectangular slot is formed in the upper connecting plate, a connecting horizontal groove and a connecting vertical groove are formed in the upper connecting plate and are in communication with each other, the connecting vertical groove is provided with two connecting horizontal grooves, and the connecting horizontal groove and the connecting vertical groove are in communication with the rectangular slot, a winding assembly is installed in the connecting horizontal groove, an elastic filter screen is wound outside the winding assembly, a connecting block is installed on the side of the elastic filter screen away from the winding assembly and moves with the connecting vertical groove, a spreading assembly is installed in one of the connecting vertical grooves to drive the connecting block to move, the spreading assembly is engaged with the winding assembly, and a cleaning assembly is installed in the connecting horizontal groove and is in close contact with the surface of the elastic filter screen.
[0007] By adopting the technical scheme, water is injected into the inside of the cleaning pool body through the liquid inlet pipe, and then the shrimp tails to be cleaned are placed in the cleaning assembly, the air cylinder drives the cleaning assembly on the connecting frame to immerse in the water to clean the shrimp tails, and the outside of the cleaning assembly is in contact with the bristles during the cleaning process of the shrimp tails, so that the inside and outside of the shrimp tails are cleaned at the same time, multi-angle cleaning is realized, the cleaning effect is better, the elastic filter screen is wound outside the winding assembly when the shrimp tails are cleaned, at this time, the rectangular strip holes are in an open state, the heavy impurities cleaned out will sink to the bottom of the water, and the light impurities will float on the water surface, when the shrimp tails are taken out after cleaning, the winding assembly releases the elastic filter screen wound outside, at this time, the spreading assembly drives the connecting block to move away from the winding assembly, the released elastic filter screen is spread in the rectangular strip holes to close the rectangular strip holes, and then the air cylinder drives the connecting frame to move upwards, when the connecting frame moves upwards, the elastic filter screen will first remove the impurities floating on the surface, so that the impurities are prevented from adhering to the cleaning assembly, the impurities cleaned out can be well separated from the shrimp tails, the cleaning effect is better, when the shrimp tails are taken out, the winding assembly rotates reversely, the spreading assembly drives the connecting block to move close to the winding assembly, and the winding assembly synchronously cooperates to wind and arrange the elastic filter screen, the rectangular strip holes are opened, and when the elastic filter screen is wound, the cleaning assembly can clean the surface of the elastic filter screen to remove the impurities adhered to the surface of the elastic filter screen, when the shrimp tails are continuously cleaned, the filtering effect of the elastic filter screen is improved, the impurities are separated from the cleaned shrimp tails, and the cleaning effect of the shrimp tails is improved.
[0008] Further provided in the application is that the cleaning assembly comprises a side plate installed on one of the connecting frames, a rotating shaft rotatably connected to the other side plate, a driving motor installed on the side plate and driving the rotating shaft to rotate, a cleaning basket installed outside the rotating shaft, a sleeve shaft rotatably connected outside the rotating shaft, a stirring rod installed outside the sleeve shaft, a partition plate and a gear one installed outside the sleeve shaft, and a tooth ring installed inside the cleaning basket.
[0009] Further provided in the application is that the tooth ring and the gear one are drivingly connected through a transmission assembly.
[0010] Further provided in the application is that the transmission assembly comprises a supporting rod rotatably connected to the inner wall of the cleaning basket and a gear two installed outside the supporting rod, and the gear two is engaged with the tooth ring and the gear one.
[0011] By adopting the technical scheme, the shelled prawn tails to be cleaned are placed in the cleaning basket, the driving motor is started to drive the rotating shaft to rotate, and then the rotating shaft drives the cleaning basket to rotate, the cleaning basket can be in contact with the brush on the connecting frame during rotation to brush and clean the impurities attached to the shelled prawn tails, and the cleaning basket drives the gear ring to rotate when rotating, the gear ring meshes with the gear two to drive the gear two to rotate, the gear two meshes with the gear one to drive the sleeve shaft to rotate, and then the stirring rod rotates in the interior of the cleaning basket, the shelled prawn tails located at the center of the cleaning basket are continuously pushed to the outer edge of the cleaning basket, and the shelled prawn tails in the cleaning basket can be in contact with the brush to be brushed and cleaned, the shelled prawn tails are cleaned at multiple angles, and the cleaning effect is better.
[0012] Further provided in the application is that a storage opening is formed in the inner wall of the cleaning basket, and a cover plate is hingedly connected in the storage opening.
[0013] By adopting the technical scheme, the cover plate is opened to conveniently pour the shelled prawn tails to be cleaned into the cleaning basket through the storage opening or take out the cleaned shelled prawn tails from the cleaning basket.
[0014] Further provided in the application is that the winding assembly comprises two supporting plates installed in the inner side of the connecting transverse groove, a rotating shaft rotating on the supporting plates, a rotating motor installed on one of the supporting plates and driving the rotating shaft to rotate, and a bevel gear one installed on the rotating shaft, and the elastic filter screen is wound on the exterior of the rotating shaft.
[0015] By adopting the technical scheme, the supporting plates support the rotating shaft, the rotating motor is started to drive the rotating shaft to rotate clockwise or counterclockwise, and the elastic filter screen wound on the exterior of the rotating shaft is wound or unwound.
[0016] Further provided in the application is that the unwinding assembly comprises a threaded column rotatingly connected to the inner side of one of the connecting vertical grooves, and a bevel gear two installed on the exterior of the threaded column and meshing with the bevel gear one, and the connecting block in the connecting vertical groove is threadedly connected to the exterior of the threaded column.
[0017] By adopting the technical scheme, when the rotating shaft rotates to wind or unwind the elastic filter screen, the threaded column is synchronously rotated due to the meshing of the bevel gear one and the bevel gear two, the connecting block is threadedly connected to the exterior of the threaded column, the connecting block drives the elastic filter screen to approach or move away from the rotating shaft, the connecting block drives the elastic filter screen to approach the rotating shaft when the elastic filter screen is wound, the connecting block drives the elastic filter screen to move away from the rotating shaft when the elastic filter screen is unwound, the cylinder is started to drive the connecting frame to move up after the shelled prawn tails are cleaned, the elastic filter screen first removes the impurities floating on the surface when the connecting frame moves up, and the impurities are prevented from being attached to the cleaned shelled prawn tails in the cleaning basket, the cleaned impurities can be well separated from the shelled prawn tails, and the cleaning effect is better.
[0018] The further arrangement of the present application is that the cleaning assembly comprises a bottom plate installed on the inner wall of the connecting transverse groove, a connecting spring installed on the bottom plate, a top plate installed on the top of the connecting spring and movably connected with the inner wall of the connecting transverse groove, and a block and a brush installed on the bottom of the top plate.
[0019] The further arrangement of the present application is that the bottom of the block and the brush is in close contact with the surface of the elastic filter screen.
[0020] By adopting the above technical scheme, when the rotating shaft rotates to wind or release the elastic filter screen, the size of the rotating shaft outside is increased or reduced, and the brush and the surface of the elastic filter screen can always be kept in close contact by the connecting spring, so that the impurities attached to the surface of the elastic filter screen are removed, the filtering effect of the elastic filter screen is improved during continuous cleaning of the shrimp tails, the impurities are separated from the cleaned shrimp tails, and the cleaning effect of the shrimp tails is further improved.
[0021] The further arrangement of the present application is that the upper connecting plate is further provided with a guide-out inclined hole communicated with the connecting transverse groove, and a discharge guide plate is installed in the guide-out inclined hole below the elastic filter screen.
[0022] By adopting the above technical scheme, the discharge guide plate is arranged to facilitate the discharge of the impurities falling into the connecting transverse groove.
[0023] The present application has the following advantages:
[0024] 1. When the shrimp tails are cleaned, the elastic filter screen is wound outside the winding assembly, at this time the rectangular slot is opened, the heavy impurities cleaned out will sink to the bottom of the water, and the light impurities will float on the water surface. When the shrimp tails are taken out after cleaning, the winding assembly releases the elastic filter screen wound outside, at this time the laying assembly drives the connecting block away from the winding assembly, the released elastic filter screen is laid in the rectangular slot to close the rectangular slot, and then the connecting frame is driven upward by the cylinder. When the connecting frame moves upward, the elastic filter screen will first remove the impurities floating on the surface, so that the impurities are not attached to the cleaning assembly, the cleaned impurities can be well separated from the shrimp tails, and the cleaning effect is better.
[0025] 2. The shrimp tails to be cleaned are placed in the cleaning basket, the driving motor is started to drive the rotating shaft to rotate, and then the rotating shaft drives the cleaning basket to rotate. The cleaning basket can contact the brush during rotation to brush the impurities attached to the shrimp tails. At the same time, the cleaning basket drives the gear ring to rotate, the gear ring meshes with the gear two to drive the gear two to rotate, the gear two meshes with the gear one to drive the sleeve shaft to rotate, and then the stirring rod rotates in the inside of the cleaning basket. The shrimp tails located at the center of the cleaning basket are continuously pushed to the outside edge of the cleaning basket, so that the shrimp tails in the cleaning basket can contact the brush for brushing, and the shrimp tails are cleaned at multiple angles, so that the cleaning effect is better.
[0026] 3. When the shrimp tails are taken out, the winding assembly reverses rotation, the laying open assembly drives the connecting block to approach the winding assembly, the winding assembly synchronously cooperates to wind and arrange the elastic filter screen, opens the rectangular strip hole, and when the elastic filter screen is wound, the cleaning assembly can clean the surface of the elastic filter screen to remove impurities attached to the surface of the elastic filter screen, improve the filtering effect of the elastic filter screen when continuously cleaning the shrimp tails, separate the impurities from the cleaned shrimp tails, and further improve the cleaning effect of the shrimp tails. BRIEF DESCRIPTION OF DRAWINGS
[0027] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the following embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative effort.
[0028] Fig. 1 is a structural schematic diagram of the present application;
[0029] Fig. 2 is a sectional structural schematic diagram of the connection of the connecting frame and the cleaning assembly of the present application;
[0030] Fig. 3 is a sectional structural schematic diagram of the cleaning assembly of the present application;
[0031] Fig. 4 is a side sectional view of the connecting structure of the winding assembly and the elastic filter screen of the present application;
[0032] Fig. 5 is an enlarged view of A in Fig. 1 of the present application; Figure 4
[0033] Fig. 6 is a schematic diagram of the meshing state of the winding assembly and the laying open assembly of the present application.
[0034] In the drawings, 1 is a cleaning pool body; 2 is an inlet pipe; 3 is an outlet pipe; 4 is a connecting frame; 5 is a gas cylinder; 6 is a cleaning assembly; 61 is a side plate; 62 is a rotating shaft; 63 is a driving motor; 64 is a cleaning basket; 65 is a sleeve shaft; 66 is a stirring rod; 67 is a partition plate; 68 is a gear one; 69 is a gear ring; 7 is a brush one; 8 is an upper connecting plate; 9 is a rectangular strip hole; 10 is a connecting horizontal groove; 11 is a connecting vertical groove; 12 is a transmission assembly; 121 is a support rod; 122 is a gear two; 13 is a storage port; 14 is a cover plate; 15 is a winding assembly; 151 is a support plate; 152 is a rotating shaft; 153 is a rotating motor; 154 is a bevel gear one; 16 is an elastic filter screen; 17 is a connecting block; 18 is a laying open assembly; 181 is a threaded column; 182 is a bevel gear two; 19 is a cleaning assembly; 191 is a bottom plate; 192 is a connecting spring; 193 is a top plate; 194 is a resisting block; 195 is a brush two; 20 is a discharging inclined hole; 21 is a discharging guide plate. DETAILED DESCRIPTION
[0035] The technical solutions of the present application will be described clearly and completely in combination with specific embodiments. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0036] Please refer to Figures 1-6 The present application provides a multi-angle cleaning equipment for shrimp tail processing, comprising a cleaning pool body 1, a liquid inlet pipe 2 and a liquid outlet pipe 3 connected to the cleaning pool body 1, two connecting frames 4 movably installed on the inner wall of the cleaning pool body 1, and a gas cylinder 5 installed on the cleaning pool body 1 and pushing the connecting frames 4 to move up and down, a cleaning assembly 6 is installed on the connecting frames 4, a brush 7 is installed between the two connecting frames 4 and adheres to the outer side of the cleaning assembly 6, an upper connecting plate 8 is installed between the two connecting frames 4, a rectangular slot 9 is formed on the upper connecting plate 8, a connecting horizontal groove 10 and a connecting vertical groove 11 are formed on the upper connecting plate 8 and are in communication with each other, the connecting vertical groove 11 is provided with two and the connecting horizontal groove 10 and the connecting vertical groove 11 are both in communication with the rectangular slot 9, a winding assembly 15 is installed in the connecting horizontal groove 10, an elastic filter screen 16 is wound outside the winding assembly 15, a connecting block 17 is installed on the side of the elastic filter screen 16 away from the winding assembly 15 and moves with the connecting vertical groove 11, a spreading assembly 18 is installed in one of the connecting vertical grooves 11 and drives the connecting block 17 to move, the spreading assembly 18 is engaged with the winding assembly 15, and a cleaning assembly 19 is also installed in the connecting horizontal groove 10 and adheres to the surface of the elastic filter screen 16.
[0037] The water is injected into the inside of the cleaning pool body 1 through the liquid inlet pipe 2, and then the shrimp tails to be cleaned are placed in the cleaning assembly 6. The air cylinder 5 drives the cleaning assembly 6 on the connecting frame 4 to immerse in the water to clean the shrimp tails. The inside of the cleaning assembly 6 is cleaned, and the outside of the cleaning assembly 6 is also in contact with the bristles 17, so that the inside and outside of the cleaning assembly 6 are cleaned at the same time, and the cleaning effect is better. When the shrimp tails are cleaned, the elastic filter screen 16 is wound outside the winding assembly 15. At this time, the rectangular strip hole 9 is in an open state. The heavy impurities cleaned out will sink to the bottom of the water, and the light impurities will float on the water surface. When the shrimp tails are taken out after cleaning, the winding assembly 15 releases the elastic filter screen 16 wound outside. At this time, the spreading assembly 18 drives the connecting block 17 to move away from the winding assembly 15, and the released elastic filter screen 16 is spread in the rectangular strip hole 9 to close the rectangular strip hole 9. Then the air cylinder 5 drives the connecting frame 4 to move upwards. When the connecting frame 4 moves upwards, the elastic filter screen 16 will first remove the impurities floating on the surface, so that the impurities are not attached to the cleaning assembly 6, the impurities cleaned out can be well separated from the shrimp tails, and the cleaning effect is better. When the shrimp tails are taken out, the winding assembly 15 rotates in the opposite direction, the spreading assembly 18 drives the connecting block 17 to move close to the winding assembly 15, and the winding assembly 15 synchronously cooperates to wind and arrange the elastic filter screen 16, and the rectangular strip hole 9 is opened. When the elastic filter screen 16 is wound, the cleaning assembly 19 can clean the surface of the elastic filter screen 16 to remove the impurities attached to the surface of the elastic filter screen 16. When the shrimp tails are continuously cleaned, the filtering effect of the elastic filter screen 16 is improved, the impurities are separated from the cleaned shrimp tails, and the cleaning effect of the shrimp tails is improved.
[0038] The cleaning assembly 6 comprises a side plate 61 mounted on one of the connecting frames 4, a rotating shaft 62 rotatably connected to the other side plate 61, a driving motor 63 mounted on the side plate 61 and driving the rotating shaft 62 to rotate, a cleaning basket 64 mounted outside the rotating shaft 62, a sleeve shaft 65 rotatably connected outside the rotating shaft 62, a stirring rod 66 mounted outside the sleeve shaft 65, a partition plate 67 and a gear one 68 mounted outside the sleeve shaft 65, and a gear ring 69 mounted inside the cleaning basket 64.
[0039] The gear ring 69 and the gear one 68 are drivingly connected through the transmission assembly 12. The transmission assembly 12 comprises a supporting rod 121 rotatably connected to the inner wall of the cleaning basket 64 and a gear two 122 mounted outside the supporting rod 121. The gear two 122 is engaged with the gear ring 69 and the gear one 68.
[0040] The shelled prawn tails to be cleaned are placed in the cleaning basket 64, the driving motor 63 is started to drive the rotating shaft 62 to rotate, and then the rotating shaft 62 drives the cleaning basket 64 to rotate. The cleaning basket 64 can contact the brush 17 on the connecting frame 4 in the process of rotation to brush and clean the impurities attached to the shelled prawn tails. At the same time, the cleaning basket 64 drives the gear ring 69 to rotate when rotating, the gear ring 69 meshes with the gear two 122 to drive the gear two 122 to rotate, the gear two 122 meshes with the gear one 68 to drive the sleeve shaft 65 to rotate, and then the stirring rod 66 rotates in the inside of the cleaning basket 64. The shelled prawn tails located at the center of the cleaning basket 64 are continuously pushed to the outer edge part of the cleaning basket 64, so that the shelled prawn tails in the cleaning basket 64 can contact the brush 17 for brushing and cleaning. The shelled prawn tails are cleaned at multiple angles, and the cleaning effect is better.
[0041] The inner wall of the cleaning basket 64 is provided with a storage opening 13, and the storage opening 13 is hingedly provided with a cover plate 14. The cover plate 14 is opened to facilitate pouring the shelled prawn tails to be cleaned into the cleaning basket 64 through the storage opening 13 or taking the cleaned shelled prawn tails out of the cleaning basket 64.
[0042] Further, the cover plate 14 and the outer wall of the cleaning basket 64 can be fixed by a latch or the like. When the shelled prawn tails are placed for cleaning, the cover plate 14 is prevented from being automatically opened.
[0043] The winding assembly 15 includes two supporting plates 151 installed on the inner side of the connecting transverse groove 10, a rotating shaft 152 rotating on the supporting plate 151, a rotating motor 153 installed on one of the supporting plates 151 and driving the rotating shaft 152 to rotate, and a bevel gear one 154 installed on the rotating shaft 152. The elastic filter screen 16 is wound on the outside of the rotating shaft 152. The supporting plate 151 supports the rotating shaft 152. The rotating motor 153 is started to drive the rotating shaft 152 to rotate clockwise or counterclockwise, and the elastic filter screen 16 wound on the outside of the rotating shaft 152 is wound or released.
[0044] The spreading assembly 18 comprises a threaded column 181 rotatably connected to the inner side of one of the connecting vertical grooves 11, a bevel gear 182 installed outside the threaded column 181 and meshing with the bevel gear 1 54, and a connecting block 17 threadedly connected to the outside of the threaded column 181 corresponding to the connecting block 17 in the connecting vertical groove 11. When the rotating shaft 152 rotates to wind or unwind the elastic filter screen 16, the threaded column 181 rotates synchronously due to the meshing of the bevel gear 1 54 and the bevel gear 182, the connecting block 17 threadedly connected to the outside of the threaded column 181 drives the elastic filter screen 16 to move close to or away from the rotating shaft 152, the elastic filter screen 16 is wound when the connecting block 17 drives the elastic filter screen 16 to move close to the rotating shaft 152, and the elastic filter screen 16 is unwound when the connecting block 17 drives the elastic filter screen 16 to move away from the rotating shaft 152. After the shrimp tails are cleaned, the cylinder 5 drives the connecting frame 4 to move upwards, the elastic filter screen 16 first removes the impurities floating on the surface when the connecting frame 4 moves upwards, so that the impurities are prevented from adhering to the cleaned shrimp tails in the cleaning basket 64, the impurities and the shrimp tails are well separated, and the cleaning effect is better.
[0045] The cleaning assembly 19 comprises a bottom plate 191 installed on the inner wall of the connecting horizontal groove 10, a connecting spring 192 installed on the bottom plate 191, a top plate 193 installed on the top of the connecting spring 192 and movably connected with the inner wall of the connecting horizontal groove 10, and a resisting block 194 and brush 2 195 installed on the bottom of the top plate 193, the bottom of the resisting block 194 and the brush 2 195 are in close contact with the surface of the elastic filter screen 16.
[0046] When the rotating shaft 152 rotates to wind or unwind the elastic filter screen 16, the size of the rotating shaft 152 outside increases or decreases, the brush 2 195 and the surface of the elastic filter screen 16 can always be in close contact state by the connecting spring 192, the impurities adhering to the surface of the elastic filter screen 16 are removed, the filtering effect of the elastic filter screen 16 is improved during continuous cleaning of the shrimp tails, the impurities and the cleaned shrimp tails are separated, and the cleaning effect of the shrimp tails is improved.
[0047] The upper connecting plate 8 is further provided with a guide inclined hole 20 communicating with the connecting horizontal groove 10, and a discharge guide plate 21 located below the elastic filter screen 16 is installed in the guide inclined hole 20. The discharge guide plate 21 is arranged to facilitate the discharge of the impurities falling into the connecting horizontal groove 10.
[0048] Further, in order to improve the stability of the elastic filter screen 16 when filtering impurities, magnetic strips (not shown in the figure) can be installed on the inner wall of the rectangular hole 9, and at the same side of the elastic filter screen 16 away from the winding assembly 15, magnetic strips that attract each other are provided, reducing the impact of water flow on the elastic filter screen 16 when closing the rectangular hole 9, resulting in a gap between the elastic filter screen 16 and the inner wall of the rectangular hole 9. The filtered impurities can be more completely filtered out, and the impurities can be prevented from adhering to the cleaned shrimp tails.
Claims
1. A multi-angle cleaning device for shrimp tail processing, comprising a cleaning tank body (1), a liquid inlet pipe (2) and a liquid outlet pipe (3) connected to the cleaning tank body (1), two connecting frames (4) movably installed on the inner wall of the cleaning tank body (1), and a pneumatic cylinder (5) installed on the cleaning tank body (1) and pushing the connecting frames (4) to move up and down, characterized in that, The connecting frame (4) is provided with a cleaning assembly (6), two connecting frames (4) are provided with a brush (7) adhering to the outer side of the cleaning assembly (6), two connecting frames (4) are provided with an upper connecting plate (8), the upper connecting plate (8) is provided with a rectangular slot (9), the upper connecting plate (8) is provided with a connecting horizontal groove (10) and a connecting vertical groove (11) in communication with each other, the connecting vertical groove (11) is provided with two connecting horizontal grooves (10) and connecting vertical grooves (11) in communication with the rectangular slot (9), the connecting horizontal groove (10) is provided with a winding assembly (15), the outer part of the winding assembly (15) is provided with an elastic screen (16), the side of the elastic screen (16) away from the winding assembly is provided with a connecting block (17) moving with the connecting vertical groove (11), one of the connecting vertical grooves (11) is provided with a spreading assembly (18) driving the connecting block (17) to move, the spreading assembly (18) is engaged with the winding assembly (15), the connecting horizontal groove (10) is further provided with a cleaning assembly (19) adhering to the surface of the elastic screen (16). The winding assembly (15) comprises two supporting plates (151) mounted on the inner side of the connecting horizontal groove (10), a rotating shaft (152) rotating on the supporting plate (151), a rotating motor (153) mounted on one of the supporting plates (151) and driving the rotating shaft (152) to rotate, and a bevel gear (154) mounted on the rotating shaft (152), and the elastic screen (16) is wound around the outer part of the rotating shaft (152). The spreading assembly (18) comprises a threaded column (181) rotatingly connected to the inner side of one of the connecting vertical grooves (11), and a bevel gear (182) mounted on the outer part of the threaded column (181) and engaged with the bevel gear (154), and the connecting block (17) in the connecting vertical groove (11) is threadedly connected to the outer part of the threaded column (181).
2. The multi-angle cleaning apparatus for shrimp tail processing according to claim 1, characterized in that: The cleaning assembly (6) comprises a side plate (61) mounted on one of the connecting frames (4), a rotating shaft (62) rotatingly connected to the other side plate (61), a driving motor (63) mounted on the side plate (61) and driving the rotating shaft (62) to rotate, a cleaning basket (64) mounted on the outer part of the rotating shaft (62), a sleeve shaft (65) rotatingly connected to the outer part of the rotating shaft (62), a stirring rod (66) mounted on the outer part of the sleeve shaft (65), a partition plate (67) and a gear (68) mounted on the outer part of the sleeve shaft (65), and a gear ring (69) mounted on the inner side of the cleaning basket (64).
3. The multi-angle cleaning apparatus for shrimp tail processing according to claim 2, characterized in that: The gear ring (69) and the gear (68) are drivingly connected through a transmission assembly (12).
4. The multi-angle cleaning apparatus for shrimp tail processing according to claim 3, characterized in that: The transmission assembly (12) comprises a supporting rod (121) rotatingly connected to the inner wall of the cleaning basket (64), and a gear (122) mounted on the outer part of the supporting rod (121), and the gear (122) is engaged with the gear ring (69) and the gear (68).
5. The multi-angle cleaning apparatus for shrimp tail processing according to claim 4, characterized in that: The inner wall of the cleaning basket (64) is provided with a storage opening (13), and a cover plate (14) is hingedly connected in the storage opening (13).
6. The multi-angle cleaning apparatus for shrimp tail processing according to claim 5, characterized in that: The cleaning assembly (19) comprises a bottom plate (191) mounted on the inner wall of the connecting transverse groove (10), a connecting spring (192) mounted on the bottom plate (191), a top plate (193) mounted on the top of the connecting spring (192) and movably connected with the inner wall of the connecting transverse groove (10), and a resisting block (194) and brush hair two (195) mounted on the bottom of the top plate (193).
7. The multi-angle cleaning apparatus for shrimp tail processing according to claim 6, characterized in that: The bottom of the resisting block (194) and the brush hair two (195) are attached to the surface of the elastic filter screen (16).
8. The multi-angle cleaning apparatus for shrimp tail processing according to claim 7, characterized in that: The upper connecting plate (8) is further provided with a guide-out inclined hole (20) which is in communication with the connecting transverse groove (10), and a discharging guide plate (21) is mounted in the guide-out inclined hole (20) and located below the elastic filter screen (16).
Citation Information
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