Sorting mechanism for separating flaky products
By designing a sorting mechanism for separating sheet-like products, and utilizing a combination of agitation, sieving, and ventilation components, the problems of low sorting efficiency and sieve clogging for small sheet-like products were solved, achieving highly efficient sorting of sheet-like products.
Patent Information
- Application Number
- CN202423272916.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing sheet-like product sorting equipment is difficult to effectively sort small sheet-like products, and the sieve holes are easily clogged during the screening process, affecting the sorting efficiency.
A sorting mechanism including a stirring component, a screening component, and a ventilation component was designed. The mechanism uses a motor-driven rotating rod for stirring, a support rod to drive the screen cylinder to rotate, and a screw plate to push the screen. Combined with a blower, the mechanism tumbles the sheet products and clears the screen holes, ensuring sorting efficiency.
It improves the sorting efficiency of small, flaky products, avoids screen clogging, ensures screening effect, and enhances the efficiency and adaptability of the sorting equipment.
Smart Images

Figure CN223761452U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of sorting equipment for sheet products, specifically a sorting mechanism for separating sheet products. Background Technology
[0002] When sorting sheet-like products, sorting equipment is often required. Utility model patent application CN202222014442.4 discloses a sheet-like material sorting device capable of detecting warp and warp in sheet-like materials and performing visual recognition detection. Based on the detection results, the device classifies the sheet-like materials and also cleans, counts, and stacks them. This utility model's sheet-like material sorting device automates the classification, cleaning, counting, stacking, and warp detection of sheet-like materials, effectively saving labor costs and solving problems such as material mixing and miscounting in the final inspection workshop. According to its disclosed technical solution, existing sheet-like product sorting equipment often fails to sort very small sheet-like products, and the individual analysis of sheet-like products significantly reduces sorting efficiency. Furthermore, when sorting sheet-like products by sieving, the sheet-like products easily clog the sieve holes, which is detrimental to ensuring the sieving effect and sorting efficiency.
[0003] Therefore, how to design a sorting mechanism for separating sheet-like products has become a problem we need to solve. Utility Model Content
[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a sorting mechanism for separating sheet products, so as to solve the problems mentioned in the background art. This utility model is reasonably designed, convenient to use, and suitable for sorting and processing sheet products.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a sorting mechanism for separating sheet-like products, comprising a support and a sleeve, a feeding assembly mounted on the sleeve, the feeding assembly comprising a hopper and a connecting pipe, a stirring assembly mounted on the hopper, the stirring assembly comprising a motor and a rotating rod, a screening assembly mounted on the inner side of the sleeve, the screening assembly comprising a screen cylinder and a motor, a pushing assembly mounted on the screen cylinder, the pushing assembly comprising a support rod and a screw plate, a ventilation assembly mounted on the sleeve, the ventilation assembly comprising an air duct and a filter screen, and an air blowing assembly mounted on the air duct, the air blowing assembly comprising an air duct and a fan.
[0006] Furthermore, the hopper and the sleeve are both welded to the top of the support, the top end of the connecting pipe is welded to the bottom of the hopper, the bottom end of the connecting pipe is welded to one end of the sleeve, the screen cylinder is installed on the inner side of the sleeve through a bearing, and the hopper is connected to the inner side of one end of the screen cylinder through the connecting pipe.
[0007] Furthermore, a partition is welded to the inner wall of the sleeve, and the partition is sleeved on the outer side of the screen cylinder through a bearing. A drain pipe is welded to the bottom of the sleeve, and an outlet pipe is welded to the other end of the sleeve. The outlet pipe is connected to the bottom of the other end of the screen cylinder. The drain pipe is located at the bottom of one side of the partition. A discharge valve is installed on the connecting pipe, the outlet pipe, and the drain pipe.
[0008] Furthermore, an external switch assembly is connected to the bracket, and the switch assembly is connected to motor one, motor two, the feeding valve and the fan via wires.
[0009] Furthermore, the motor is bolted to the top of the hopper, the rotating rod is mounted on the inside of the hopper, and the top end of the rotating rod passes through the inner wall of the top of the hopper and is keyed to the output shaft of the motor.
[0010] Furthermore, the support rod is welded to the inner wall of one end of the screen cylinder, the second motor is installed on the outer side of one end of the sleeve by bolts, the output shaft of the second motor passes through the sleeve and is keyed to the support rod, the screw plate is welded to the outer side of the screen cylinder, and the outer side of the screw plate is clamped on the inner wall of the sleeve.
[0011] Furthermore, the filter screen is bolted to one end of the sleeve, the air duct is welded to the top of the sleeve, the top of the sleeve has an air outlet, and the air duct is connected to the sleeve through the air outlet.
[0012] Furthermore, the air duct is welded to the top of the air pipe, the air duct is connected to the air pipe, and the fan is installed inside the air duct by bolts.
[0013] Beneficial effects: 1. When using this sorting mechanism for separating sheet products, the sheet products are poured into the hopper. Motor 1 stirs the material through a rotating rod, ensuring that the sheet products can fall smoothly into the inner side of the screen cylinder through the discharge valve in the connecting pipe. Motor 2 drives the screen cylinder to rotate through a support rod, causing the sheet products to tumble continuously inside the screen cylinder. Smaller sheet products fall into the inner side of the sleeve through the screen cylinder. The screen cylinder pushes the sheet products in the sleeve to the left through a screw plate and discharges them downward through the discharge pipe. While tumbling in the inclined screen cylinder, the sheet products move continuously to the left until they are discharged outward through the discharge pipe. This greatly improves the sorting efficiency of sheet products, can adapt to the sorting of small sheet products, and overcomes the defect of sheet products not being able to roll by using the rotation of the rotating rod, the rolling of the screen cylinder, and the pushing of the screw plate, thus improving the sorting efficiency of sheet products.
[0014] 2. When the sorting mechanism for separating sheet products is in use, if sheet products block the screen holes in the drum due to compression and their own elasticity, the sheet products blocked in the screen holes are driven to the top of the screen cylinder by the second motor driving the screen cylinder to rotate via the support rod. The blower then draws in air through the air duct and blows it to the inside of the air duct. The air is then blown rapidly downwards through the nozzle at the top of the sleeve, blowing the sheet products blocked in the screen holes to the inside of the screen cylinder. The air flows out from one end of the sleeve through the filter screen, effectively preventing sheet products from blocking the screen cylinder and ensuring the screening effect and efficiency of sheet products.
[0015] 3. The sorting mechanism for separating sheet products is reasonably designed, highly efficient and convenient to use, and suitable for sorting and processing sheet products. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of a sorting mechanism for separating sheet-like products according to the present invention;
[0017] Figure 2 This is a cross-sectional view of a sorting mechanism for separating sheet-like products according to the present invention;
[0018] Figure 3 This is a schematic diagram of the structure of a sieve cylinder for a sorting mechanism for separating sheet-like products according to the present invention;
[0019] In the diagram: 1. Support; 2. Sleeve; 3. Hopper; 4. Connecting pipe; 5. Motor 1; 6. Rotating rod; 7. Screen cylinder; 8. Support rod; 9. Motor 2; 10. Partition plate; 11. Pipeline; 12. Outlet pipe; 13. Discharge valve; 14. Screw plate; 15. Air duct; 16. Air duct; 17. Fan; 18. Filter screen. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0021] Please see Figures 1 to 3This utility model provides a technical solution: a sorting mechanism for separating sheet-like products, including a support 1 and a sleeve 2. A feeding assembly is installed on the sleeve 2, the feeding assembly including a hopper 3 and a connecting pipe 4. A stirring assembly is installed on the hopper 3, the stirring assembly including a motor 5 and a rotating rod 6. A screening assembly is installed on the inner side of the sleeve 2, the screening assembly including a screen cylinder 7 and a second motor 9. A pushing assembly is installed on the screen cylinder 7, the pushing assembly including a support rod 8 and a screw plate 14. A ventilation assembly is installed on the sleeve 2, the ventilation assembly including an air duct 15 and a filter screen 18. An air blowing assembly is installed on the air duct 15, the air blowing assembly including an air duct 16 and a blower 17. The support rod 8 is welded to the inner wall of one end of the screen cylinder 7. The second motor 9 is bolted to the outer side of one end of the sleeve 2. The output shaft of the second motor 9 passes through the sleeve 2 and is keyed to the support rod 8. The screw plate 14 is welded to the outer side of the screen cylinder 7, and the outer side of the screw plate 14 is engaged with... On the inner wall of sleeve 2, the filter screen 18 is bolted to one end of sleeve 2. The air duct 15 is welded to the top of sleeve 2. The top of sleeve 2 has an air outlet. The air duct 15 is connected to sleeve 2 through the air outlet. The air duct 16 is welded to the top of air duct 15 and is connected to air duct 15. The fan 17 is bolted to the inside of air duct 16. When sheet-like products are compressed inside drum 7 and block the screen cylinder 7 due to their own elasticity, etc. When the screen is being sieved, as the motor 29 drives the screen cylinder 7 to rotate via the support rod 8, the sheet-like products blocked in the screen holes are moved to the top of the screen cylinder 7. The blower 17 then draws in air through the air duct 16 and blows it to the inside of the air pipe 15. The air is then blown rapidly downwards through the nozzle at the top of the sleeve 2, causing the sheet-like products blocked in the screen holes to fall to the inside of the screen cylinder 7. The air then flows outwards from one end of the sleeve 2 through the filter screen 18, effectively preventing the sheet-like products from clogging the screen cylinder 7 and ensuring the screening effect and efficiency of the sheet-like products.
[0022] In this embodiment, the hopper 3 and the sleeve 2 are both welded to the top of the support 1. The top end of the connecting pipe 4 is welded to the bottom of the hopper 3, and the bottom end of the connecting pipe 4 is welded to one end of the sleeve 2. The screen cylinder 7 is mounted on the inner side of the sleeve 2 via a bearing. The hopper 3 is connected to the inner side of one end of the screen cylinder 7 via the connecting pipe 4. A partition 10 is welded to the inner wall of the sleeve 2. The partition 10 is sleeved on the outer side of the screen cylinder 7 via a bearing. A drain pipe 11 is welded to the bottom of the sleeve 2. The other end of the sleeve 2 is welded with an outlet pipe 12, which is connected to the bottom of the other end of the screen cylinder 7. The discharge pipe 11 is located at the bottom of one side of the partition plate 10. A discharge valve 13 is installed on the connecting pipe 4, the outlet pipe 12, and the discharge pipe 11. A switch assembly is externally connected to the bracket 1. The switch assembly is connected to motor 5, motor 9, discharge valve 13, and blower 17 via wires. Motor 5 is bolted to the top of the hopper 3. The rotating rod 6 is mounted on the hopper 3. Inside, the top of the rotating rod 6 passes through the inner wall of the top of the hopper 3 and is keyed to the output shaft of the motor 5. In use, the flake product is poured into the hopper 3, and the motor 5 stirs it through the rotating rod 6 to ensure that the flake product can fall smoothly through the discharge valve 13 in the connecting pipe 4 into the inner side of the screen cylinder 7. The motor 9 drives the screen cylinder 7 to rotate through the support rod 8, so that the flake product rolls continuously inside the screen cylinder 7. Smaller flake products fall through the screen cylinder 7 into the inner side of the sleeve 2. The screen cylinder 7 pushes the flake product in the sleeve 2 to the left through the screw plate 14 and discharges it downward through the discharge pipe 11. While the flake product rolls in the inclined screen cylinder 7, it moves continuously to the left until it is discharged outward through the discharge pipe 12. This can greatly improve the sorting efficiency of flake products, adapt to the sorting of small flake products, and overcome the defect that the flake product cannot roll by using the rotation of the rotating rod 6, the rolling of the screen cylinder 7 and the pushing of the screw plate 14, thus improving the sorting efficiency of flake products.
[0023] This sorting mechanism for separating sheet-like products is powered by an external power supply. During operation, the sheet-like products are poured into the hopper 3. Motor 5, via a rotating rod 6, stirs the product, ensuring it falls smoothly through the discharge valve 13 in the connecting pipe 4 into the inner side of the screen cylinder 7. Motor 9, via a support rod 8, drives the screen cylinder 7 to rotate, causing the sheet-like products to tumble continuously inside. Smaller sheet-like products fall through the screen cylinder 7 into the inner side of the sleeve 2. The screen cylinder 7, via a screw plate 14, pushes the sheet-like products in the sleeve 2 to the left and discharges them downwards through the discharge pipe 11. As the sheet-like products tumble within the inclined screen cylinder 7, they continuously move to the left until they are discharged outwards through the outlet pipe 12. This significantly improves the sorting efficiency for sheet-like products and can accommodate even small sheet-like products. The product sorting process utilizes the rotation of the rotating rod 6, the rolling of the screen cylinder 7, and the pushing of the screw plate 14 to overcome the defect of sheet products not being able to roll, thereby improving the sorting efficiency of sheet products. When sheet products block the screen holes in the screen cylinder 7 due to compression and their own elasticity, the motor 2 9 drives the screen cylinder 7 to rotate through the support rod 8. The sheet products blocked in the screen holes are then driven to the top of the screen cylinder 7. The blower 17 draws in air through the air duct 16 and blows it to the inside of the air pipe 15. Then, it blows rapidly downward through the nozzle at the top of the sleeve 2, blowing the sheet products blocked in the screen holes to the inside of the screen cylinder 7. The air flows out from one end of the sleeve 2 through the filter screen 18, effectively preventing sheet products from blocking the screen cylinder 7 and ensuring the screening effect and efficiency of sheet products.
[0024] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A sorting mechanism for separating sheet products, comprising a support (1) and a sleeve (2) on which a feeding assembly is mounted, said feeding assembly comprising a hopper (3) and a connecting pipe (4), characterized in that: The hopper (3) is provided with a stirring assembly comprising a motor (5) and a rotating rod (6), the inside of the sleeve (2) is provided with a screening assembly comprising a screening cylinder (7) and a motor (9), the screening cylinder (7) is provided with a pushing assembly comprising a supporting rod (8) and a screw plate (14), the sleeve (2) is provided with a ventilation assembly comprising an air pipe (15) and a filter screen (18), the air pipe (15) is provided with a blowing assembly comprising an air cylinder (16) and a fan (17).
2. A sorting mechanism for separating sheet-like products according to claim 1, characterized in that: The hopper (3) and the sleeve (2) are welded on the top of the support (1), the top end of the connecting pipe (4) is welded on the bottom of the hopper (3), the bottom end of the connecting pipe (4) is welded on one end of the sleeve (2), the screening cylinder (7) is installed on the inside of the sleeve (2) through a bearing, and the hopper (3) is connected with the inside of one end of the screening cylinder (7) through the connecting pipe (4).
3. A sorting mechanism for separating sheet-like products according to claim 2, characterized in that: A partition plate (10) is welded on the inner wall of the sleeve (2), the partition plate (10) is sleeved on the outer side of the screening cylinder (7) through a bearing, the bottom of the sleeve (2) is welded with a discharge pipe (11), the other end of the sleeve (2) is welded with an outlet pipe (12), the outlet pipe (12) is connected with the bottom of the other end of the screening cylinder (7), the discharge pipe (11) is located at the bottom of one side of the partition plate (10), and the connecting pipe (4), the outlet pipe (12) and the discharge pipe (11) are all provided with a discharging valve (13).
4. A sorting mechanism for separating sheet products according to claim 3, characterised in that: A switch group is externally connected on the support (1), and the switch group is connected with the motor (5), the motor (9), the discharging valve (13) and the fan (17) through wires.
5. A sorting mechanism for separating sheet products according to claim 1, characterized in that: The motor (5) is bolted on the top of the hopper (3), the rotating rod (6) is installed on the inside of the hopper (3), and the top end of the rotating rod (6) penetrates through the inner wall of the top of the hopper (3) and is in key connection with the output shaft of the motor (5).
6. A sorting mechanism for separating sheet products according to claim 5, characterised in that: The supporting rod (8) is welded on the inner wall of one end of the screening cylinder (7), the motor (9) is bolted on the outer side of one end of the sleeve (2), the output shaft of the motor (9) penetrates through the sleeve (2) and is in key connection with the supporting rod (8), and the screw plate (14) is welded on the outer side of the screening cylinder (7) and clamped on the inner wall of the sleeve (2).
7. A sorting mechanism for separating sheet products according to claim 6, characterised in that: The filter screen (18) is bolted on one end of the sleeve (2), the air pipe (15) is welded on the top of the sleeve (2), the top of the sleeve (2) is provided with a blowing opening, and the air pipe (15) is connected with the sleeve (2) through the blowing opening.
8. A sorting mechanism for separating sheet products according to claim 7, characterised in that: The air cylinder (16) is welded on the top of the air pipe (15), the air cylinder (16) is connected with the air pipe (15), and the fan (17) is bolted on the inside of the air cylinder (16).
Citation Information
Patent Citations
Sheet material sorting equipment
CN218079116U