Sorting machine capable of preventing feeding blockage
Through the design of separation components and pretreatment components, the rotating motor cuts garbage and uses the centrifugal force of the drying cylinder to perform solid-liquid separation, the problems of blockage of the feed port of the sorter and low sorting efficiency are solved, and efficient solid-liquid separation and a safe working environment are achieved.
Patent Information
- Application Number
- CN202422421657.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The feed port of the existing sorting machine is easily blocked by large-diameter garbage, resulting in inefficient sorting. It is easy to cause liquid splash when manually disposing of garbage bags, affecting the working environment and health.
Using a combination design of separation components, pretreatment components and barrier components, the solid-liquid separation is performed by rotating the motor to drive the push plate and using the centrifugal force of the rotating cylinder to prevent the garbage from falling out.
It effectively solves the problem of inlet blockage, improves sorting efficiency, reduces manual intervention, and improves solid-liquid separation effect and working environment safety.
Smart Images

Figure CN223234696U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of garbage recycling and processing, in particular to a sorting machine capable of preventing feed blockage. Background Art
[0002] A sorting machine is a device that classifies garbage according to its characteristics during the garbage recycling process.
[0003] Existing sorting machines are often used in the recycling process of kitchen waste. Due to the needs of subsequent waste treatment and recycling, the kitchen waste needs to be separated into solid and liquid, and then the liquid and solid are separately recycled and processed. However, when using existing sorting machines for solid-liquid separation, the following problems exist:
[0004] 1. The feed port of the sorting machine is of fixed size, and the kitchen waste is sometimes wrapped in plastic bags, which sometimes causes the overall diameter to be much larger than the feed port size and causes blockage. During sorting, manual operation is required to remove the plastic bags and shake out the garbage in the garbage bags, which can easily cause the liquid in the bags to splash and cause a foul smell in the working environment. Since the liquid in the kitchen waste is harmful to the human body after fermentation over time, the existing sorting machine needs to be manually handled to resolve the blocked garbage, which affects the health of the staff.
[0005] 2. After the sorting is completed, the sorting machine needs to manually cut the garbage that is completely wrapped in some plastic bags, and squeeze out the liquid in the bags separately. This manual cutting and drainage method greatly reduces the sorting efficiency. Utility Model Content
[0006] In order to solve the above problems, the purpose of the present invention is to provide a sorting machine that is resistant to feed blockage, and its purpose is to solve the problem that the feed port of the sorting machine is easily blocked by large-diameter garbage.
[0007] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0008] A sorting machine for preventing feed blockage includes a separation component for separating solid and liquid waste, a support member fixedly arranged at the bottom of the separation component, a pre-processing component arranged on the separation component and used to cut the material and press it into the separation component, and a blocking component arranged at the bottom of the separation component and used to prevent the waste from falling out of the bottom of the separation component;
[0009] The separation assembly includes a water storage cylinder fixedly mounted on a support member, a spin drying cylinder rotatably mounted in the water storage cylinder, a plurality of drainage holes arranged at intervals around the inner sidewall of the spin drying cylinder and arranged along the length direction of the spin drying cylinder and used to drain liquid into the water storage cylinder, a plurality of blades arranged on the inner wall of the spin drying cylinder, a feed chute rotatably mounted on the upper end of the spin drying cylinder and used to pour garbage into the spin drying cylinder, a rotating subassembly mounted at the bottom of the water storage cylinder and used to drive the spin drying cylinder to rotate, and a drain pipe mounted at the bottom of the water storage cylinder and used to drain liquid from the water storage cylinder; each blade is arranged between any two adjacent drainage hole groups and extends along the length direction of the spin drying cylinder;
[0010] A first limiting track is fixedly provided at the lower end of the feeding trough, and a first limiting ring is provided at the upper end of the drying drum and slides in the first limiting track;
[0011] The pre-processing assembly includes a height adjustment screw arranged along the height direction of the drying drum and rotatably arranged in the drying drum, a push plate movably sleeved on the height adjustment screw along the height direction of the drying drum, a rotating motor fixed on the support column and used to drive the height adjustment screw to rotate axially, and a cutting knife fixed on the lower end surface of the push plate and used to cut and break the materials accumulated in the feeding trough;
[0012] The output shaft of the rotating motor is axially fixedly connected to the height adjustment screw;
[0013] The upper end of the height-adjusting screw rod extends out of the top of the feeding trough, and a fixing rod for preventing the push plate from rotating is fixed in the drying cylinder, and the upper section of the fixing rod passes through the push plate.
[0014] More preferably, the blocking assembly includes a rotating member movably provided at the bottom of the water storage cylinder, a blocking member rotatably sleeved within the rotating member and sealedly connected to the inner wall of the lower section of the spin drying cylinder, a height adjustment subassembly provided at one end of the rotating member and used to drive the blocking member to move upward in the height direction of the spin drying cylinder and extend into the spin drying cylinder, and a locking subassembly provided at the other end of the rotating member and used to keep the rotating member and the water storage cylinder stationary or movable relative to each other.
[0015] A second limiting track is provided on the inner wall of the rotating member, and a second limiting ring is provided on the outer wall of the lower section of the blocking member to slide in the second limiting track.
[0016] More preferably, the height adjustment subassembly includes a first fixing plate fixedly provided on one side of the outer wall of the water storage cylinder, an adjusting screw movably provided on the first fixing plate along the height direction of the drying cylinder and threadedly connected to the first fixing plate, and an abutting plate provided at the bottom of the adjusting screw and used to drive the rotating member to move upward;
[0017] The lower end of the adjusting screw passes through the rotating member and is arranged at one end of the first fixed plate, and the upper end surface of the abutting plate abuts against the lower end surface of the rotating plate.
[0018] More preferably, the locking subassembly includes a second fixing plate provided on one side of the outer wall of the water storage cylinder, a locking plate provided on one end of the rotating member relative to the first fixing plate, and a fastening screw for fastening the second fixing plate and the locking plate.
[0019] More preferably, an elastic sealing ring is fixedly provided on the outer wall of the upper section of the blocking member.
[0020] More preferably, the rotating subassembly includes a toothed ring provided on the outer wall of the lower section of the drying drum, a driving gear rotatably provided in the water storage drum and meshing with the toothed ring, and a driving motor provided in the water storage drum and used to drive the driving gear to rotate;
[0021] The output shaft of the driving motor is fixedly connected to the axis of the driving gear.
[0022] More preferably, a protective shell that wraps the gear ring and the driving gear is fixedly provided in the water storage cylinder.
[0023] The utility model has the following beneficial effects:
[0024] 1. When the feed chute is clogged with large-diameter garbage, the utility model starts the rotating motor to move the push plate downward, and the cutting blade at the lower end of the push plate contacts the garbage, cutting and pressing the garbage, breaking it up and pressing it into the spin drying drum, thus solving the problem of manually cutting and separating the clogged garbage.
[0025] 2. The utility model squeezes out the water from the garbage in the spin drying drum by continuously pressing the push plate downward during the rotation of the spin drying drum, thereby increasing the separation effect and improving the drainage efficiency compared to the operation of draining water by the centrifugal force of rotation alone;
[0026] 3. The utility model pushes out all the garbage in the spin-drying drum by pressing down the push plate after the separation is completed, thereby solving the problem of manually removing the garbage stuck inside after the separation is completed. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 This is a schematic diagram of the structure of the utility model as a whole from the side of the lower axis;
[0028] Figure 2 This is a schematic diagram of the structure of the utility model as a whole from an axial side view;
[0029] Figure 3 This is a partial enlarged schematic diagram of point A of the present utility model;
[0030] Figure 4 This is a schematic structural diagram of the utility model in a vertically cut axial side view;
[0031] Figure 5 This is a partial enlarged schematic diagram of point B of the present utility model;
[0032] Figure 6 This is a partial enlarged schematic diagram of point C of the present utility model;
[0033] Figure 7 This is a schematic structural diagram of the utility model in a lower axis side view with a whole horizontal section;
[0034] Figure 8 This is a schematic diagram of the structure of a transverse section of a rotating subassembly of the present invention.
[0035] Explanation of reference numerals: 1. Support column; 2. Separation assembly; 21. Water storage cylinder; 22. Drying cylinder; 221. First limiting ring; 222. Fixing rod; 23. Drain hole group; 24. Scratching knife; 25. Feed trough; 251. First limiting rail; 26. Rotating subassembly; 261. Toothed ring; 262. Driving gear; 263. Driving motor; 27. Drain pipe; 3. Pretreatment assembly; 31. Height adjustment screw; 32. Pushing plate; 33. Rotating motor; 34. Cutting knife; 4. Blocking assembly; 41. Rotating member; 411. Second limiting track; 42. Blocking member; 421. Second limiting ring; 43. Height adjustment subassembly; 431. First fixed plate; 432. Adjusting screw; 433. Abutment plate; 44. Locking subassembly; 441. Second fixed plate; 442. Locking plate; 443. Fastening screw; 5. Sealing ring; 6. Protective shell. DETAILED DESCRIPTION
[0036] The following is a further detailed description of the present invention in conjunction with the accompanying drawings and specific embodiments.
[0037] like Figure 1 、 Figure 2 、 Figure 4 and Figure 5 As shown, a feed-blocking prevention sorting machine of this embodiment includes a separation assembly 2 for separating solid and liquid waste, a support member 1 fixedly disposed at the bottom of the separation assembly 2, a pre-processing assembly 3 disposed on the separation assembly 2 and used to cut the material and press it into the separation assembly 2, and a blocking assembly 4 disposed at the bottom of the separation assembly 2 and used to prevent the waste from falling out of the bottom of the separation assembly 2.
[0038] The separation assembly 2 includes a water storage cylinder 21 fixedly mounted on the support member 1, a spin-drying cylinder 22 rotatably mounted within the water storage cylinder 21, a plurality of drainage hole groups 23 spaced apart and arranged around the inner sidewall of the spin-drying cylinder 22 and arranged along the length of the spin-drying cylinder 22 for draining liquid into the water storage cylinder 21, a plurality of blades 24 mounted on the inner wall of the spin-drying cylinder 22, a feed chute 25 rotatably mounted at the upper end of the spin-drying cylinder 22 for pouring garbage into the spin-drying cylinder 22, a rotating subassembly 26 mounted at the bottom of the water storage cylinder 21 for driving the spin-drying cylinder 22 to rotate, and a drain pipe 27 mounted at the bottom of the water storage cylinder 21 for draining liquid from the water storage cylinder 21; each blade is disposed between any two adjacent drainage hole groups 23 and extends along the length of the spin-drying cylinder 22;
[0039] A first limiting track 251 is fixedly provided at the lower end of the feeding chute 25, and a first limiting ring 221 is provided at the upper end of the drying drum 22 to slide within the first limiting track 251;
[0040] The pre-treatment assembly 3 includes a height adjustment screw 31 arranged along the height direction of the drying drum 22 and rotatably arranged in the drying drum 22, a push plate 32 movably mounted on the height adjustment screw 31 along the height direction of the drying drum 22, a rotating motor 33 fixed to the support column 1 and used to drive the height adjustment screw 31 to axially rotate, and a cutting knife 34 fixed to the lower end surface of the push plate 32 and used to cut and break the material accumulated in the feed chute 25;
[0041] The output shaft of the rotating motor 33 is axially fixedly connected to the height adjustment screw 31;
[0042] The upper end of the height-adjusting screw rod 31 extends out of the top of the feeding trough 25 , and a fixed rod 222 is fixed in the drying drum 22 to prevent the pushing plate 32 from rotating. The upper section of the fixed rod 222 passes through the pushing plate 32 .
[0043] When using this product, the garbage is dumped into the feed chute 25, so that the smaller garbage directly enters the drying drum 22. When the larger diameter garbage blocks the feed chute 25, the rotating motor 33 is started, thereby driving the height adjustment screw 31 to rotate, causing the push plate 32 to move downward along the height adjustment screw 31, so that the cutting blade 34 on the lower end surface of the push plate 32 abuts against the blocked garbage and applies pressure to the blocked garbage, so that the blocked garbage is cut and broken, and is squeezed into the drying drum 22 under the pressure of the push plate 32. The garbage entering the drying drum 22 contacts the cutting blade 24 on the side wall. , causing some of the smaller garbage bags to be cut and ruptured, so that the liquid inside them can flow out along the cut openings. When the spin drying drum 22 is full of garbage, the rotating subassembly 26 is started, causing the spin drying drum 22 to rotate, so that the liquid in the spin drying drum 22 is thrown out of the drainage hole group 23 by centrifugal force and enters the water storage drum 21. During the rotation of the spin drying drum 22, the rotating motor 33 is continued to be started to drive the height adjustment screw rod 31 to rotate, causing the push plate 32 to continue to press down, thereby further squeezing out the water in the garbage in the spin drying drum 22, solving the problem that the feed port of the sorting machine is easily blocked by large-diameter garbage.
[0044] like Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 6 As shown, the blocking assembly 4 includes a rotating member 41 movably disposed at the bottom of the water storage cylinder 21, a blocking member 42 rotatably sleeved within the rotating member 41 and sealedly connected to the inner wall of the lower section of the spin-drying cylinder 22, a height adjustment subassembly 43 disposed at one end of the rotating member 41 and configured to cause the rotating member 41 to drive the blocking member 42 to move upward in the height direction of the spin-drying cylinder 22 and extend into the spin-drying cylinder 22, and a locking subassembly 44 disposed at the other end of the rotating member 41 and configured to keep the rotating member 41 and the water storage cylinder 21 stationary or movable relative to each other.
[0045] A second limiting track 411 is formed on the inner wall of the rotating member 41 , and a second limiting ring 421 that slides within the second limiting track 411 is formed on the outer wall of the lower section of the blocking member 42 .
[0046] When the product is in use, the locking effect of the locking subassembly 44 is released, and then the height adjustment subassembly 43 is adjusted downward, so that the blocking member 42 slides downward and can be rotated along one end of the height adjustment subassembly 43, so that the blocking member 42 is disengaged from the blocking seal at the lower section of the spin-drying drum 22, so that the garbage in the spin-drying drum 22 can fall out along the lower section of the spin-drying drum 22, and the second limiting ring 421 is embedded in the second limiting track 411 and is slidably arranged, so that when the spin-drying drum 22 rotates, the garbage on the blocking member 42 rotates together, thereby preventing the problem of the rotation rate of the garbage on the blocking member 42 being reduced due to the friction between the garbage and the blocking member 42, which affects the separation efficiency.
[0047] like Figure 1 、 Figure 2 and Figure 3 As shown, the height adjustment subassembly 43 includes a first fixing plate 431 fixed to one side of the outer wall of the water storage cylinder 21, an adjusting screw 432 movably provided on the first fixing plate 431 along the height direction of the spin drying cylinder 22 and threadedly connected to the first fixing plate 431, and an abutting plate 433 provided at the bottom of the adjusting screw 432 and used to drive the rotating member 41 to move upward;
[0048] The lower end of the adjusting screw 432 passes through the rotating member 41 and is arranged at one end corresponding to the first fixed plate 431 , and the upper end surface of the abutting plate 433 abuts against the lower end surface of the rotating plate.
[0049] When using this product, after unlocking the locking subassembly 44 and loosening the adjusting screw 432 downward, the rotating part 41 moves downward under the action of its own gravity and the pressure of garbage on the blocking part 42, so that the rotating part 41 drives the blocking part 42 to slide down and extend out of the lower section of the spin drying drum 22.
[0050] like Figure 1 、 Figure 2 and Figure 3 As shown, the locking subassembly 44 includes a second fixing plate 441 arranged on one side of the outer wall of the water storage cylinder 21, a locking plate 442 arranged at one end of the rotating member 41 relative to the first fixing plate 431, and a fastening screw 443 for fastening the second fixing plate 441 and the locking plate 442.
[0051] When using this product, after pushing and pulling the locking plate 442 until the blocking member 42 is aligned with the spin-drying drum 22, the fastening screw 443 is tightened to fix the position of the locking plate 442, and then the fastening screw 443 and the adjusting screw 432 are tightened simultaneously to move the rotating member 41 upward, so that the blocking member 42 extends into the spin-drying drum 22 and is sealed and connected to the inner wall of the spin-drying drum 22.
[0052] like Figure 4 and Figure 7 As shown, an elastic sealing ring 5 is fixedly provided on the outer wall of the upper section of the blocking member 42 .
[0053] When the product is in use, the outer wall of the blocking member 42 is sealed to the inner wall of the drying drum 22 by means of the sealing ring 5, thereby preventing liquid from flowing out of the gap between the blocking member 42 and the drying drum 22.
[0054] like Figure 4 、 Figure 7 and Figure 8 As shown, the rotating subassembly 26 includes a toothed ring 261 provided on the outer wall of the lower section of the spin-drying drum 22, a driving gear 262 rotatably provided in the water storage drum 21 and meshing with the toothed ring 261, and a driving motor 263 provided in the water storage drum 21 and used to drive the driving gear 262 to rotate;
[0055] The output shaft of the driving motor 263 is fixedly connected to the axis of the driving gear 262 .
[0056] When this product is in use, when the spin drying drum 22 is filled with garbage, the drive motor 263 is started, so that the drive motor 263 drives the drive gear 262 to rotate, thereby rotating the toothed ring 261 engaged with the drive gear 262, causing the spin drying drum 22 to rotate, so that the liquid in the spin drying drum 22 is thrown out of the drainage hole group 23 by centrifugal force and enters the water storage drum 21.
[0057] like Figure 4 、 Figure 7 and Figure 8 As shown, a protective shell 6 that wraps the gear ring 261 and the driving gear 262 is fixedly provided in the water storage cylinder 21 .
[0058] When the product is in use, the protective shell 6 prevents the waste liquid in the water storage cylinder 21 from coming into contact with the gears, thereby preventing the gears from being corroded and causing transmission jams.
[0059] The working principle of this device is:
[0060] The first step is to dump the garbage into the feeding chute 25 so that the smaller garbage directly enters the drying drum 22.
[0061] Step 2: When garbage with a larger diameter blocks the feed chute 25, the rotating motor 33 is started, thereby driving the height adjustment screw 31 to rotate, causing the push plate 32 to move downward along the height adjustment screw 31, so that the cutting knife 34 on the lower end surface of the push plate 32 abuts against the blocked garbage and applies pressure to the blocked garbage, so that the blocked garbage is cut and broken, and squeezed into the spin-drying drum 22 under the pressure of the push plate 32.
[0062] Step 3: The garbage entering the drying drum 22 contacts the cutter 24 on the side wall, causing some smaller garbage bags to be cut and ruptured, allowing the liquid inside to flow out along the cut opening.
[0063] Step 4: When the spin drying drum 22 is full of garbage, the drive motor 263 is started, so that the drive motor 263 drives the drive gear 262 to rotate, thereby rotating the toothed ring 261 meshing with the drive gear 262, causing the spin drying drum 22 to rotate, so that the liquid in the spin drying drum 22 is thrown out of the drainage hole group 23 by centrifugal force and enters the water storage drum 21. During the rotation of the spin drying drum 22, the rotating motor 33 is continued to be started to drive the height adjustment screw 31 to rotate, causing the push plate 32 to continue to press down, thereby further squeezing out the water in the garbage in the spin drying drum 22.
[0064] Step 5: The operator places the drain pipe 27 in a collection bucket for collecting waste liquid, so that the waste liquid in the water storage cylinder 21 flows into the collection bucket through the drain pipe 27 for separate collection.
[0065] Step 6: After the separation is completed, a storage box for collecting dehydrated garbage is placed under the spin-drying drum 22, and then by loosening the fastening screw 443 and the adjusting screw 432, the rotating member 41 falls under the influence of gravity, so that the blocking member 42 slides out of the bottom of the spin-drying drum 22, and the locking plate 442 is pushed to drive the rotating member 41 to rotate, so that the bottom of the spin-drying drum 22 is free from the obstruction, and the dehydrated garbage inside the spin-drying drum 22 falls out from the bottom of the spin-drying drum 22, and the pushing plate 32 continues to press down so that all the garbage in the spin-drying drum 22 is squeezed out.
[0066] Step 7: After the discharge is completed, the rotating motor 33 is started in the reverse direction to drive the height adjustment screw 31 to rotate in the reverse direction, thereby driving the push plate 32 to slide upward and extend out of the top of the feed chute 25, and pulling the locking plate 442 to rotate the rotating member 41 until the blocking member 42 is aligned with the spin-drying drum 22, and then tightening the fastening screw 443 and the adjusting screw 432 to make the rotating member 41 drive the blocking member 42 to slide upward, causing the elastic sealing ring 5 on the upper side wall of the blocking member 42 to abut against the inner wall of the lower section of the spin-drying drum 22, and then the operator continues to pour in garbage for the next sorting.
[0067] The above description is only a specific embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformation made using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, is also included in the patent protection scope of the present invention.
Claims
1. A separator for preventing feed blockage, characterized in that: The invention comprises a separation component (2) for separating solid and liquid garbage, a support column (1) fixedly arranged at the bottom of the separation component (2), a pre-processing component (3) arranged on the separation component (2) and used for cutting the material and pressing it into the separation component (2), and a blocking component (4) arranged at the bottom of the separation component (2) and used for preventing the garbage from falling out of the bottom of the separation component (2); The separation assembly (2) comprises a water storage cylinder (21) fixedly arranged on a support member (1), a spin drying cylinder (22) rotatably sleeved in the water storage cylinder (21), a plurality of drainage hole groups (23) arranged at intervals around the inner side wall of the spin drying cylinder (22) and arranged along the length direction of the spin drying cylinder (22) and used for discharging liquid into the water storage cylinder (21), a plurality of cutters (24) arranged on the inner wall of the spin drying cylinder (22), a feed trough (25) rotatably arranged at the upper end of the spin drying cylinder (22) and used for pouring garbage into the spin drying cylinder (22), a rotating subassembly (26) arranged at the bottom of the water storage cylinder (21) and used for driving the spin drying cylinder (22) to rotate, and a drainage pipe (27) arranged at the bottom of the water storage cylinder (21) and used for discharging liquid in the water storage cylinder (21); each cutter is arranged between any two adjacent drainage hole groups (23) and extends along the length direction of the spin drying cylinder (22); A first limiting track (251) is fixedly provided at the lower end of the feeding trough (25), and a first limiting ring (221) is provided at the upper end of the drying drum (22) so as to slide in the first limiting track (251); The pre-treatment component (3) comprises a height adjustment screw (31) arranged along the height direction of the drying drum (22) and rotatably arranged in the drying drum (22), a push plate (32) movably sleeved on the height adjustment screw (31) along the height direction of the drying drum (22), a rotating motor (33) fixed on the support column (1) and used to drive the height adjustment screw (31) to rotate axially, and a cutting knife (34) fixed on the lower end surface of the push plate (32) and used to cut and break materials accumulated at the feeding trough (25); The output shaft of the rotating motor (33) is axially fixedly connected to the height adjustment screw rod (31); The upper end of the height-adjusting screw rod (31) extends out of the top of the feeding trough (25), and a fixing rod (222) for preventing the push plate (32) from rotating is fixed in the drying drum (22), and the upper section of the fixing rod (222) passes through the push plate (32).
2. The feed-blocking-preventing separator according to claim 1, characterized in that: The blocking assembly (4) comprises a rotating member (41) movably arranged at the bottom of the water storage cylinder (21), a blocking member (42) rotatably sleeved inside the rotating member (41) and sealedly connected to the inner wall of the lower section of the drying cylinder (22), a height adjustment subassembly (43) arranged at one end of the rotating member (41) and used to drive the blocking member (42) to move upward along the height direction of the drying cylinder (22) and extend into the drying cylinder (22), and a locking subassembly (44) arranged at the other end of the rotating member (41) and used to keep the rotating member (41) and the water storage cylinder (21) relatively immobile or relatively movable. The inner wall of the rotating member (41) is provided with a second limiting track (411), and the outer wall of the lower section of the blocking member (42) is provided with a second limiting ring (421) sliding in the second limiting track (411).
3. The feed-blocking-preventing separator according to claim 2, characterized in that: The height adjustment subassembly (43) comprises a first fixing plate (431) fixedly arranged on one side of the outer wall of the water storage cylinder (21), an adjusting screw (432) movably arranged on the first fixing plate (431) along the height direction of the drying cylinder (22) and threadedly connected to the first fixing plate (431), and an abutting plate (433) arranged at the bottom of the adjusting screw (432) and used to drive the rotating member (41) to move upward. The lower end of the adjusting screw (432) passes through the rotating member (41) and is arranged corresponding to one end of the first fixed plate (431), and the upper end surface of the abutting plate (433) abuts against the lower end surface of the rotating plate.
4. The feed-blocking-preventing separator according to claim 2, characterized in that: The locking subassembly (44) comprises a second fixing plate (441) provided on one side of the outer wall of the water storage cylinder (21), a locking plate (442) provided on one end of the rotating member (41) relative to the first fixing plate (431), and a fastening screw (443) for fastening the second fixing plate (441) and the locking plate (442).
5. The feed-blocking-preventing separator according to claim 2, characterized in that: An elastic sealing ring (5) is fixedly provided on the outer wall of the upper section of the blocking member (42).
6. The feed-blocking-preventing separator according to claim 1, characterized in that: The rotating subassembly (26) comprises a toothed ring (261) disposed on the outer wall of the lower section of the drying drum (22), a driving gear (262) rotatably disposed in the water storage drum (21) and meshing with the toothed ring (261), and a driving motor (263) disposed in the water storage drum (21) and used to drive the driving gear (262) to rotate. The output shaft of the driving motor (263) is fixedly connected to the axis of the driving gear (262).
7. The feed-blocking-preventing separator according to claim 6, characterized in that: A protective shell (6) enclosing the toothed ring (261) and the driving gear (262) is fixedly provided in the water storage cylinder (21).