Dehydration device for continuous centrifugal separation of starch milk
Through the design of the centrifugal component, scraper and shaking component, the problem of starch milk adhering to the inner wall of the centrifuge cylinder is solved, efficient dehydration and convenient operation are achieved, and the use effect of the device is improved.
Patent Information
- Application Number
- CN202511036125.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-26
- Publication Date
- 2025-09-16
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the existing continuous centrifugal separation and dehydration device for starch milk, starch milk tends to adhere to the inner wall of the centrifugal cylinder during the centrifugal process, which affects the material removal operation and results in poor performance.
The combined design of centrifugal components, scrapers, shaking components and lifting components is adopted. The scrapers are used to scrape off the attached starch, the shaking components prevent it from sticking, and the lifting components facilitate the removal of the centrifugal cylinder. Combined with the motor and gear transmission, efficient dehydration and convenient operation are achieved.
It effectively prevents starch milk from adhering to the inner wall of the centrifuge cylinder, improves the dehydration effect, simplifies the material taking process, and enhances the convenience and efficiency of operation.
Smart Images

Figure CN120644322A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of starch liquid, in particular to a dehydration device for continuous centrifugal separation of starch milk. Background Art
[0002] After being cleaned, crushed, filtered, desanded, demudded, concentrated and refined, the starch enters the dehydration stage. Dehydration is a key step in producing starch. Because the water content of the refined starch slurry is too high, it cannot be dried directly. Therefore, it is necessary to dehydrate it before drying to remove excess water, reduce the drying load, save energy, lay the foundation for rapid drying, reduce the moisture content, facilitate drying, and ensure quality. At present, most domestic factories use centrifuges to dehydrate refined starch milk. This centrifuge has efficient dehydration capacity and good separation effect.
[0003] When using the existing continuous centrifugal separation starch milk dehydration device, starch milk is usually added into the centrifugal cylinder for centrifugal separation. However, during the centrifugal process, the water content of the starch emulsion is continuously reduced, and the starch milk is easily attached to the inner wall of the centrifugal cylinder, affecting the subsequent material removal operation and resulting in poor use effect.
[0004] In view of the above problems, a dehydration device for continuous centrifugal separation of starch milk is proposed. Summary of the Invention
[0005] The object of the present invention is to provide a dehydration device for continuous centrifugal separation of starch milk, and the above-mentioned problems are solved by using the device to work.
[0006] To achieve the above-mentioned object, the present invention provides the following technical solution: a dehydration device for continuous centrifugal separation of starch milk, comprising a base and a fixed seat arranged above the top of the base, a fixed cylinder fixedly installed through the middle of the upper portion of the fixed seat, a cylinder cover affixed to the top of the fixed cylinder, a feeding hopper fixedly installed through the middle of the top of the cylinder cover, a collection trough movably provided at the lower portion of the outer side of the fixed cylinder, a centrifugal assembly installed near the bottom of the inner cavity of the fixed cylinder, a lifting assembly installed near the rear side of the top of the cylinder cover, and a shaking assembly installed near the top of the inner cavity of the fixed cylinder;
[0007] Two L-shaped rods are fixedly installed on the left and right sides of the fixing seat, and the L-shaped rods are arranged front and back, and the lower ends of the L-shaped rods are fixedly installed on the base;
[0008] The centrifugal assembly includes a centrifugal cylinder arranged near the bottom of the inner cavity of the fixed cylinder and a rotating seat attached to the top of the centrifugal cylinder, and a circular opening is opened in the middle of the rotating seat, the lower end of the feeding hopper passes through the circular opening and extends into the inner cavity of the centrifugal cylinder, a hollow gear is provided in the middle of the top of the rotating seat, and the outer side of the feeding hopper is located in the inner cavity of the hollow gear, the rear side of the hollow gear is engaged with a transmission gear, a driving motor is provided near the rear side of the top of the cylinder cover, and the output end of the driving motor movably extends through the inner cavity of the cylinder cover and is fixedly mounted on the transmission gear, scrapers are attached to the four sides of the inner cavity of the centrifugal cylinder, and a fixed shaft is commonly provided at the middle of the inner side of the scraper;
[0009] The bottom of the rotating seat is fixedly installed with a clamping plate near the front and rear sides, and the clamping plate is threadedly installed with a T-shaped bolt B near the bottom, and the output ends of the T-shaped bolt B are respectively inserted into the outer wall of the outer side of the centrifugal cylinder through threads.
[0010] Furthermore, a fixing bracket is fixedly mounted at the middle portion of the top of the driving motor, and a lower end of the fixing bracket is fixedly mounted on the cylinder cover.
[0011] Furthermore, a fixing rod is fixedly installed on the inner side of the scraper near the bottom, and one end of the fixing rod away from the adjacent scraper is fixedly installed on the fixed shaft.
[0012] Furthermore, a connecting ring frame is fixedly installed above the outer side of the fixed shaft, and the upper part of the outer side of the connecting ring frame is fixedly sleeved on the outer side of the feeding hopper.
[0013] Furthermore, connecting blocks are fixedly installed on the bottom of the hollow gear near the left and right sides, and the bottoms of the connecting blocks are fixedly installed on the rotating seat.
[0014] Furthermore, the lifting assembly includes a lifting plate arranged at the top of the cylinder cover near the rear side and a U-shaped rod fixedly installed at the middle part of the rear side of the lifting plate, a threaded sleeve is fixedly installed at one end of the U-shaped rod away from the lifting plate, and a threaded rod is installed through the thread at the middle part of the threaded sleeve, the lower end of the threaded rod is movably installed on the base, a driven bevel gear is fixedly sleeved on the outer side of the threaded rod near the lower end, the rear side of the driven bevel gear is meshed with the driving bevel gear, and a servo motor is provided at the rear side of the driving bevel gear, and the output end of the servo motor is fixedly connected to the rear side of the driving bevel gear;
[0015] An L-shaped plate is fixedly mounted on the rear side of the servo motor, and the front side of the L-shaped plate is fixedly mounted on the base;
[0016] Vertical plates are fixedly installed on the bottom of the lifting plate near the left and right sides, and the bottoms of the vertical plates are fixedly installed on the cylinder cover.
[0017] Furthermore, guide plates are fixedly installed at the middle of the left and right sides of the threaded sleeve, and guide rods are slidably installed on the guide plates. The lower ends of the guide rods are fixedly installed on the base, and the upper ends of the guide rods are commonly fixedly installed with a flat plate, and the upper ends of the threaded rods are movably installed on the flat plate.
[0018] Furthermore, L-shaped connecting plates are fixedly installed near the top on both sides of the aggregate trough, and T-shaped bolts A are threaded through the L-shaped connecting plates near the top, and the output ends of the T-shaped bolts A are threadedly inserted into the outer wall outside the fixing seat.
[0019] Furthermore, the shaking assembly includes a plurality of semicircular blocks arranged at equal intervals near the top of the inner cavity of the fixed cylinder, the inner sides of the semicircular blocks are fixedly mounted on the centrifugal cylinder, a shaking plate is provided near the upper right corner of the inner cavity of the fixed cylinder, and the left side of the shaking plate is inserted between two adjacent semicircular blocks, a rotating rod is fixedly installed through the shaking plate near the right side, a fixed plate is movably installed at the lower end of the rotating rod, and the right side of the fixed plate is fixedly mounted on the inner wall of the inner cavity of the fixed cylinder, a volute spring is sleeved on the outer side of the rotating rod near the upper end, and one end of the volute spring is fixedly mounted on the rotating rod;
[0020] The other end of the spiral spring is fixedly mounted with a vertical rod, and the lower end of the vertical rod is fixedly mounted on a fixed plate.
[0021] Furthermore, a circular ring A is fixedly sleeved on the upper portion of the outer side of the fixed cylinder, and a positioning groove is provided on the top of the circular ring A;
[0022] A circular ring B is fixedly sleeved at the lower part of the outer side of the cylinder cover, and a positioning ring is fixedly sleeved at the bottom of the circular ring B. The outer side of the positioning ring is inserted into the inner cavity of the positioning groove.
[0023] Compared with the prior art, the present invention has the following beneficial effects:
[0024] 1. Through the mutual cooperation among the centrifugal cylinder, the rotating seat, the clamping plate, the T-shaped bolt B, the hollow gear, the connecting block, the transmission gear, the driving motor, the fixed frame, the scraper, the fixed rod, the fixed shaft and the connecting ring frame, the added starch milk can be rotated and centrifuged to achieve the dehydration effect, and the provided scraper can scrape off the starch attached to the inner wall of the centrifugal cylinder during centrifugation to avoid affecting the subsequent removal operation, and the rotating seat seals the centrifugal cylinder to avoid splashing, and the centrifugal effect is good. In addition, through the mutual cooperation among the semicircular block, the shaking plate, the rotating rod, the fixed plate, the scroll spring and the vertical rod, the semicircular block can be driven to continuously contact the shaking plate back and forth when the centrifugal cylinder rotates, which plays a role in vibrating the screening cylinder when it rotates, further preventing starch from adhering to the inner wall of the centrifugal cylinder.
[0025] 2. Through the mutual cooperation among the lifting plate, vertical plate, U-shaped rod, threaded sleeve, guide plate, guide rod, flat plate, threaded rod, driven bevel gear, active bevel gear, servo motor and L-shaped plate, the cylinder cover and centrifugal cylinder can be driven to move upward to the outside of the fixed cylinder after centrifugation is completed, which is convenient for the staff to disassemble and remove the centrifugal cylinder and also to remove the starch therein, and the operation is convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is an overall three-dimensional diagram of the present invention;
[0027] Figure 2 It is a rear side perspective view of the present invention;
[0028] Figure 3 It is a partial bottom-view cross-sectional expanded perspective view of the present invention;
[0029] Figure 4 It is a partial cross-sectional perspective view of the present invention;
[0030] Figure 5 It is a partial cross-sectional expanded perspective view of the centrifuge cylinder of the present invention;
[0031] Figure 6 A partial structural perspective view of the threaded rod of the present invention;
[0032] Figure 7 A partial structural perspective view of the rotating seat of the present invention;
[0033] Figure 8 It is a partial structural perspective view of the centrifuge cylinder of the present invention;
[0034] Figure 9 It is a partial structural stereogram of the scraper of the present invention.
[0035] In the figure: 1. Base; 2. Fixed seat; 21. L-shaped rod; 3. Fixed cylinder; 31. Ring A; 32. Positioning groove; 4. Cylinder cover; 41. Ring B; 42. Positioning ring; 5. Feeding hopper; 6. Collecting trough; 61. L-shaped connecting plate; 62. T-shaped bolt A; 7. Centrifugal assembly; 71. Centrifugal cylinder; 72. Rotating seat; 721. Snap plate; 722. T-shaped bolt B; 73. Hollow gear; 731. Connecting block; 74. Transmission gear; 75. Drive motor; 751. Fixed bracket; 76. Scraper 761. Fixed rod; 77. Fixed shaft; 771. Connecting ring frame; 8. Lifting assembly; 81. Lifting plate; 811. Vertical plate; 82. U-shaped rod; 83. Threaded sleeve; 831. Guide plate; 832. Guide rod; 833. Flat plate; 84. Threaded rod; 85. Driven bevel gear; 86. Driving bevel gear; 87. Servo motor; 871. L-shaped plate; 9. Shaking assembly; 91. Semicircular block; 92. Shaking plate; 93. Rotating rod; 94. Fixed plate; 95. Volute spring; 951. Vertical rod. DETAILED DESCRIPTION
[0036] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0037] To solve technical problems such as Figures 1-9 As shown, the following preferred technical solutions are provided: a dehydration device for continuous centrifugal separation of starch milk, comprising a base 1 and a fixed base 2 arranged above the top of the base 1, a fixed cylinder 3 is fixedly installed through the middle of the upper part of the fixed base 2, and a cylinder cover 4 is attached to the top of the fixed cylinder 3, a feeding hopper 5 is fixedly installed through the middle of the top of the cylinder cover 4, a collecting trough 6 is movably provided at the lower part of the outer side of the fixed cylinder 3, and a centrifugal component 7 is installed near the bottom of the inner cavity of the fixed cylinder 3, a lifting component 8 is installed near the rear side of the top of the cylinder cover 4, and a shaking component 9 is installed near the top of the inner cavity of the fixed cylinder 3.
[0038] Specifically, two L-shaped rods 21 are fixedly installed on the left and right sides of the fixing base 2, and the L-shaped rods 21 are arranged front and back. The lower ends of the L-shaped rods 21 are fixedly installed on the base 1 to support the fixing base 2.
[0039] In this embodiment, the centrifugal assembly 7 includes a centrifugal cylinder 71 arranged near the bottom of the inner cavity of the fixed cylinder 3 and a rotating seat 72 attached to the top of the centrifugal cylinder 71, and a circular opening is opened in the middle of the rotating seat 72. The lower end of the feeding hopper 5 passes through the circular opening and extends into the inner cavity of the centrifugal cylinder 71. A hollow gear 73 is provided in the middle of the top of the rotating seat 72, and the outer side of the feeding hopper 5 is located in the inner cavity of the hollow gear 73. The rear side of the hollow gear 73 is engaged with a transmission gear 74. The top of the cylinder cover 4 is provided near the rear side. A driving motor 75 is provided, and the output end of the driving motor 75 is movable and extends through the inner cavity of the cylinder cover 4 and is fixedly mounted on the transmission gear 74. Scrapers 76 are attached to the four sides of the inner cavity of the centrifugal cylinder 71. A fixed shaft 77 is commonly provided at the middle part of the inner side of the scraper 76, which can drive the centrifugal cylinder 71 to rotate, so as to centrifugally dehydrate the added starch milk. The setting of the scraper 76 serves to scrape off the starch attached to the inner wall of the centrifugal cylinder 71 when it rotates, so as to avoid affecting the subsequent cleaning, and also facilitate the removal of water.
[0040] Specifically, a clamping plate 721 is fixedly installed on the bottom of the rotating seat 72 near the front and rear sides, and a T-shaped bolt B722 is threaded through the clamping plate 721 near the bottom. The output ends of the T-shaped bolt B722 are respectively inserted into the outer wall of the outside of the centrifugal cylinder 71 through threads, so that the centrifugal cylinder 71 can be disassembled and assembled, which is convenient for the staff to remove the internal starch and clean it.
[0041] Specifically, a fixing bracket 751 is fixedly installed at the middle of the top of the driving motor 75 , and the lower end of the fixing bracket 751 is fixedly installed on the cylinder cover 4 , thereby supporting and fixing the driving motor 75 .
[0042] Specifically, a fixing rod 761 is fixedly installed on the inner side of the scraper 76 near the bottom, and the end of the fixing rod 761 away from the adjacent scraper 76 is fixedly installed on the fixing shaft 77 to support and fix the scraper 76.
[0043] Specifically, a connecting ring frame 771 is fixedly installed above the outer side of the fixed shaft 77, and the upper part of the outer side of the connecting ring frame 771 is fixedly sleeved on the outer side of the feeding hopper 5, which plays a role in fixing the fixed shaft 77 and preventing it from hanging in the air.
[0044] Specifically, connecting blocks 731 are fixedly installed on the bottom of the hollow gear 73 near the left and right sides, and the bottoms of the connecting blocks 731 are fixedly installed on the rotating base 72, which can drive the rotating base 72 to rotate synchronously with the hollow gear 73.
[0045] The cam 82 is fixedly mounted on the rear end of the base 1 and the cam 83 is fixedly mounted on the rear end of the base 1. The cam 82 is fixedly mounted on the rear end of the base 1 and the cam 83 is fixedly mounted on the rear end of the base 1. The cam 82 is fixedly mounted on the rear end of the base 1 and the cam 83 is fixedly mounted on the rear end of the base 1. The cam 82 is fixedly mounted on the rear end of the base 1 and the cam 83 is fixedly mounted on the rear end of the base 1. The cam 83 is fixedly mounted on the rear end of the base 1 and the cam 83 is fixedly mounted on the rear end of the base 1. The cam 83 is fixedly mounted on the rear end of the base 1 and the cam 83 is fixedly mounted on the rear end of the base 1. The cam 83 is fixedly mounted on the rear end of the base 1. The cam 83 is fixedly mounted on the rear end of the base 1. The cam 83 is fixedly mounted on the rear end of the base 1. The cam 83 is fixedly mounted on the rear end of the base 1. The cam 83 is fixedly mounted on the rear end of the base 1. The cam 83 is fixedly mounted on the rear end of the base 1.
[0046] Specifically, an L-shaped plate 871 is fixedly mounted on the rear side of the servo motor 87 , and the front side of the L-shaped plate 871 is fixedly mounted on the base 1 , thereby supporting and fixing the servo motor 87 .
[0047] Specifically, vertical plates 811 are fixedly installed on the bottom of the lifting plate 81 near the left and right sides, and the bottoms of the vertical plates 811 are fixedly installed on the cylinder cover 4, which can drive the cylinder cover 4 to move up and down synchronously with the lifting plate 81.
[0048] Specifically, guide plates 831 are fixedly installed in the middle of the left and right sides of the threaded sleeve 83, and guide rods 832 are slidably installed on the guide plates 831. The lower ends of the guide rods 832 are fixedly installed on the base 1, and the upper ends of the guide rods 832 are jointly fixedly installed with a flat plate 833. The upper end of the threaded rod 84 is movably installed on the flat plate 833, which serves as a guide and limit for the threaded sleeve 83 when it moves, allowing it to slide up and down stably, and also serves as a rotational support for the threaded rod 84.
[0049] Specifically, L-shaped connecting plates 61 are fixedly installed near the top on both sides of the left and right sides of the aggregate trough 6, and T-shaped bolts A62 are threaded through the L-shaped connecting plates 61 near the top. The output ends of the T-shaped bolts A62 are threadedly inserted into the outer wall of the outer side of the fixing seat 2, so that the aggregate trough 6 can be disassembled, which is convenient for the staff to handle the separated water.
[0050] In this embodiment, the shaking assembly 9 includes several semicircular blocks 91 arranged at equal intervals near the top of the inner cavity of the fixed cylinder 3. The inner sides of the semicircular blocks 91 are fixedly mounted on the centrifugal cylinder 71. A shaking plate 92 is provided near the upper right corner of the inner cavity of the fixed cylinder 3, and the left side of the shaking plate 92 is inserted between two adjacent semicircular blocks 91. A rotating rod 93 is fixedly installed through the shaking plate 92 near the right side. A fixed plate 94 is movably installed at the lower end of the rotating rod 93, and the right side of the fixed plate 94 is fixedly mounted on the inner wall of the inner cavity of the fixed cylinder 3. A vortex spring 95 is sleeved on the outer side of the rotating rod 93 near the upper end. One end of the vortex spring 95 is fixedly mounted on the rotating rod 93, which is beneficial to continuously drive the semicircular blocks 91 to contact the shaking plate 92 when the centrifugal cylinder 71 rotates, thereby generating vibration under the action of the vortex spring 95, which helps to prevent starch from adhering to the inner wall of the centrifugal cylinder 71.
[0051] Specifically, a vertical rod 951 is fixedly mounted on the other end of the spiral spring 95 , and a lower end of the vertical rod 951 is fixedly mounted on the fixed plate 94 , which facilitates the normal operation of the spiral spring 95 .
[0052] Specifically, a circular ring A31 is fixedly sleeved on the upper portion of the outer side of the fixed cylinder 3 , and a positioning groove 32 is formed on the top of the circular ring A31 .
[0053] Specifically, a circular ring B41 is fixedly sleeved at the lower part of the outer side of the cylinder cover 4, and a positioning ring 42 is fixedly sleeved at the bottom of the circular ring B41. The outer side of the positioning ring 42 is inserted into the inner cavity of the positioning groove 32 to position the fixed cylinder 3 and the cylinder cover 4 when they are fitted together.
[0054] Working principle: When in use, the staff can add starch milk into the centrifugal cylinder 71 through the feeding hopper 5. After the addition is completed, the driving motor 75 can be operated. When the driving motor 75 is running, it will drive the transmission gear 74 to rotate. When the transmission gear 74 rotates, it will drive the hollow gear 73 to rotate. When the hollow gear 73 rotates, it will drive the rotating seat 72 to rotate through the connecting block 731. When the rotating seat 72 rotates, it will drive the centrifugal cylinder 71 to rotate through the clamping plate 721 and the T-shaped bolt B722. You can rotate it slowly at the beginning to make the starch milk The milk is relatively dispersed, and it can be rotated quickly after slow rotation, which is beneficial to centrifugal separation of the water contained in the starch milk. The centrifugal cylinder 71 will continuously release the internal scraper 76 when rotating, so as to scrape off the starch attached to the inner wall. At the same time, the centrifugal cylinder 71 will also drive several semicircular blocks 91 to rotate synchronously when rotating. The semicircular blocks 91 will continuously contact the shaking plate 92 when rotating and deflect it forward. Under the action of the spiral spring 95, the shaking plate 92 will continuously recover, which can play the role of knocking and vibrating the outer side of the centrifugal cylinder 71. To help prevent starch from adhering to the inner wall, the detached water will be thrown out into the aggregate trough 6 through the centrifugal cylinder 71 to collect the starch. After centrifugation is completed, the drive motor 75 can be stopped, and then the servo motor 87 can be operated. When the servo motor 87 is running, it will drive the active bevel gear 86 to rotate. When the active bevel gear 86 rotates, it will drive the threaded rod 84 to rotate through the driven bevel gear 85. When the threaded rod 84 rotates, it will drive the threaded sleeve 83 to move upward. When the threaded sleeve 83 moves upward, it will drive the lifting plate 81 to move upward through the U-shaped rod 82. When the lifting plate 81 moves upward, it will drive the cylinder cover 4 to move upward through the vertical plate 811. At this time, the centrifugal cylinder 71 can be driven to move upward to the outside of the fixed cylinder 3. The staff can rotate the T-bolts B722 on the front and rear sides to disassemble the centrifugal cylinder 71, which is beneficial for the staff to collect and process the starch therein. At the same time, the T-bolts A62 on both sides can also be rotated to disassemble the aggregate trough 6, which is beneficial for processing the detached water. Otherwise, the centrifugal cylinder 71 and the aggregate trough 6 can be installed.
[0055] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.
[0056] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A dehydration device for continuous centrifugal separation of starch milk, comprising a base (1) and a fixing seat (2) arranged above the top of the base (1), characterized in that: A fixed cylinder (3) is fixedly installed through the middle of the upper portion of the fixed seat (2), and a cylinder cover (4) is attached to the top of the fixed cylinder (3), a feeding hopper (5) is fixedly installed through the middle of the top of the cylinder cover (4), a collecting trough (6) is movably provided at the lower portion of the outer side of the fixed cylinder (3), a centrifugal assembly (7) is installed near the bottom of the inner cavity of the fixed cylinder (3), a lifting assembly (8) is installed near the rear side of the top of the cylinder cover (4), and a shaking assembly (9) is installed near the top of the inner cavity of the fixed cylinder (3); Two L-shaped rods (21) are fixedly mounted on both the left and right sides of the fixing seat (2), and the L-shaped rods (21) are arranged front and back, and the lower ends of the L-shaped rods (21) are fixedly mounted on the base (1); The centrifugal assembly (7) comprises a centrifugal cylinder (71) arranged near the bottom of the inner cavity of the fixed cylinder (3) and a rotating seat (72) attached to the top of the centrifugal cylinder (71), and a circular opening is opened in the middle of the upper portion of the rotating seat (72), and the lower end of the feeding hopper (5) passes through the circular opening and extends into the inner cavity of the centrifugal cylinder (71), a hollow gear (73) is provided in the middle of the top of the rotating seat (72), and the outer side of the feeding hopper (5) is located on the hollow gear ( 73), a transmission gear (74) is meshed on the rear side of the hollow gear (73), a driving motor (75) is provided at the top of the cylinder cover (4) near the rear side, and the output end of the driving motor (75) is movably extended through the inner cavity of the cylinder cover (4) and fixedly mounted on the transmission gear (74), scrapers (76) are attached to the four sides of the inner cavity of the centrifugal cylinder (71), and a fixed shaft (77) is commonly provided at the middle of the inner side of the scraper (76); The bottom of the rotating seat (72) is fixedly mounted with a clamping plate (721) near the front and rear sides, and the clamping plate (721) is threadedly penetrated and mounted with a T-shaped bolt B (722) near the bottom, and the output ends of the T-shaped bolt B (722) are respectively threadedly inserted into the outer wall of the centrifugal cylinder (71).
2. The dehydration device for continuous centrifugal separation of starch milk according to claim 1, characterized in that: A fixing frame (751) is fixedly mounted at the middle portion of the top of the driving motor (75), and the lower end of the fixing frame (751) is fixedly mounted on the cylinder cover (4).
3. The dehydration device for continuous centrifugal separation of starch milk according to claim 1, characterized in that: A fixing rod (761) is fixedly mounted on the inner side of each scraper (76) near the bottom, and one end of the fixing rod (761) away from the adjacent scraper (76) is fixedly mounted on a fixing shaft (77).
4. The dehydration device for continuous centrifugal separation of starch milk according to claim 1, characterized in that: A connecting ring frame (771) is fixedly mounted above the outer side of the fixed shaft (77), and the outer side of the connecting ring frame (771) is fixedly sleeved on the outer side of the feeding hopper (5).
5. The dehydration device for continuous centrifugal separation of starch milk according to claim 1, characterized in that: The bottom of the hollow gear (73) is fixedly mounted with connecting blocks (731) near the left and right sides, and the bottoms of the connecting blocks (731) are fixedly mounted on the rotating seat (72).
6. The dehydration device for continuous centrifugal separation of starch milk according to claim 1, characterized in that: The lifting assembly (8) comprises a lifting plate (81) arranged at the top of the cylinder cover (4) near the rear side and a U-shaped rod (82) fixedly installed at the middle part of the rear side of the lifting plate (81); a threaded sleeve (83) is fixedly installed at one end of the U-shaped rod (82) away from the lifting plate (81); a threaded rod (84) is threadedly installed at the middle part of the threaded sleeve (83); the lower end of the threaded rod (84) is movably installed on the base (1); a driven bevel gear (85) is fixedly sleeved on the outer side of the threaded rod (84) near the lower end; a driving bevel gear (86) is meshed with the rear side of the driven bevel gear (85); a servo motor (87) is provided at the rear side of the driving bevel gear (86); an output end of the servo motor (87) is fixedly connected to the rear side of the driving bevel gear (86); An L-shaped plate (871) is fixedly mounted on the rear side of the servo motor (87), and the front side of the L-shaped plate (871) is fixedly mounted on the base (1); Vertical plates (811) are fixedly mounted on the bottom of the lifting plate (81) near the left and right sides, and the bottoms of the vertical plates (811) are fixedly mounted on the cylinder cover (4).
7. The dehydration device for continuous centrifugal separation of starch milk according to claim 6, characterized in that: Guide plates (831) are fixedly installed at the middle of the left and right sides of the threaded sleeve (83), and guide rods (832) are slidably installed on the guide plates (831). The lower ends of the guide rods (832) are fixedly installed on the base (1), and the upper ends of the guide rods (832) are fixedly installed with a flat plate (833). The upper end of the threaded rod (84) is movably installed on the flat plate (833).
8. The dehydration device for continuous centrifugal separation of starch milk according to claim 1, characterized in that: L-shaped connecting plates (61) are fixedly installed near the top on both sides of the collecting trough (6), and T-shaped bolts A (62) are threadedly installed on the L-shaped connecting plates (61) near the top, and the output ends of the T-shaped bolts A (62) are threadedly inserted into the outer wall of the outer side of the fixing seat (2).
9. The dehydration device for continuous centrifugal separation of starch milk according to claim 1, characterized in that: The shaking assembly (9) comprises a plurality of semicircular blocks (91) arranged at equal intervals near the top of the inner cavity of the fixed cylinder (3), the inner sides of the semicircular blocks (91) are fixedly mounted on the centrifugal cylinder (71), a shaking plate (92) is arranged near the upper right corner of the inner cavity of the fixed cylinder (3), and the left side of the shaking plate (92) is inserted between two adjacent semicircular blocks (91), a rotating rod (93) is fixedly installed through the shaking plate (92) near the right side, a fixed plate (94) is movably installed at the lower end of the rotating rod (93), and the right side of the fixed plate (94) is fixedly mounted on the inner wall of the inner cavity of the fixed cylinder (3), a spiral spring (95) is sleeved on the outer side of the rotating rod (93) near the upper end, and one end of the spiral spring (95) is fixedly mounted on the rotating rod (93); The other end of the spiral spring (95) is fixedly mounted with a vertical rod (951), and the lower end of the vertical rod (951) is fixedly mounted on a fixed plate (94).
10. The dehydration device for continuous centrifugal separation of starch milk according to claim 1, characterized in that: A circular ring A (31) is fixedly sleeved on the upper portion of the outer side of the fixed cylinder (3), and a positioning groove (32) is provided on the top of the circular ring A (31); A circular ring B (41) is fixedly sleeved at the lower portion of the outer side of the cylinder cover (4), and a positioning ring (42) is fixedly sleeved at the bottom of the circular ring B (41), and the outer side of the positioning ring (42) is inserted into the inner cavity of the positioning groove (32).