Screening machine for bread processing
By introducing multiple baffles and diverting rods into the flour sifter for bread processing, combined with a vibrating motor to disperse the flour, and using a ramp structure to guide the flour to the storage box, the problems of sifting blockage and low efficiency are solved, achieving efficient sifting and storage.
Patent Information
- Application Number
- CN202423252559.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-26
AI Technical Summary
Existing flour sieving machines for bread processing are prone to clogging during sieving, and the accumulation of flour leads to low sieving efficiency, making it impossible to effectively disperse and distribute the flour.
A flour sifting machine for bread processing was designed, which includes multiple partitions and diverting rods. Combined with a vibrating motor, the flour is dispersed by a diverting plate on the diverting rod and guided to the storage box by a ramp structure, ensuring sifting effect and quality.
It effectively disperses flour, improves sieving efficiency and quality, prevents storage boxes from falling off, and ensures that flour is sieved and stored evenly.
Smart Images

Figure CN223683942U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to flour screening field, in particular to a kind of flour screening machine for bread processing. BACKGROUND
[0002] A kind of flour screening machine is used to process flour, wheat flour or other powder, powder is screened by the screen in flour screening machine, and the impurities in powder can be discharged to improve the fineness of powder.
[0003] Prior art has specially developed some flour screening machines for bread processing, for example, the Chinese patent with the publication number "CN218517192U" discloses "a multi-stage filtering flour screening machine for bread making", which can effectively remove the impurities contained in bread flour by installing two sets of screens, increase the practicability of the device, and simultaneously collect bread flour of different particle sizes through three sets of discharge pipes, and collect the impurities screened by the device, and simultaneously form a closed whole by installing a sealing cover, prevent dust generated during screening from spreading into the air, ensure the safety of working environment, and make the device more labor-saving when moving by installing a moving structure, and increase the stability of the device by installing a lifting adjusting cylinder.
[0004] Although the two sets of screens can effectively remove the impurities contained in bread flour by installing two sets of screens, increase the practicability of the device, but the upper end of the above-mentioned structure of the screening plate is not provided with a partition plate, and the flour will accumulate on the upper end of the screening plate during screening, which will cause blockage and cannot effectively improve the screening effect, and the flour cannot be effectively dispersed when pouring into the screening box, which will cause blockage due to flour accumulation. UTILITY MODEL CONTENT
[0005] In view of the problems mentioned in the background art, the utility model aims to provide a flour screening machine for bread processing to solve the problem of flour screening.
[0006] The above technical purpose of the utility model is realized by the following technical scheme:
[0007] The application discloses a flour screening machine for bread processing, which comprises a bottom plate, a square box movably arranged at the upper end of the bottom plate, a screening box fixedly arranged at the end of the square box away from the bottom plate, a feeding pipe arranged at the end of the screening box away from the square box, a second screening plate fixedly arranged in the screening box, a plurality of partitions fixedly arranged at the upper end of the second screening plate, a first screening plate fixedly arranged at the end of each partition away from the second screening plate, a partition same as the upper end of the second screening plate fixedly arranged at the end of each first screening plate away from the second screening plate, a plurality of shunt rods fixedly arranged above the first screening plate in the screening box, a shunt disc fixedly arranged at the upper end of one of the shunt rods, two convex boxes arranged at one side of the screening box, a storage box slidingly arranged in the interior of each convex box, and a vibrating motor fixedly arranged at the end of the square box away from the screening box.
[0008] As a preferred technical scheme, four supports are fixedly arranged at the upper end of the bottom plate, a first buffer spring is fixedly arranged in the interior of each support, and a supporting block is fixedly arranged at the end of the first buffer spring away from the support.
[0009] As a preferred technical scheme, a second buffer spring is fixedly arranged at the end of the supporting block away from the first buffer spring, a support same as the upper end of the bottom plate is fixedly arranged at the bottom of the square box, and the second buffer spring is fixedly arranged in the support at the bottom of the square box.
[0010] As a preferred technical scheme, telescopic rods are fixedly arranged at the upper and lower ends of the supporting block, and the ends of the two telescopic rods away from the supporting block are fixedly arranged in the interior of the support.
[0011] As a preferred technical scheme, a storage space is arranged in the interior of the square box, a discharging port is arranged at the end of the square box close to the convex box, an inclined slope is arranged in the interior of the storage space, and the discharging port and the storage space are in communication.
[0012] As a preferred technical scheme, a rectangular port is arranged in the interior of the end of the convex box close to the screening box, and the two convex boxes are in communication with the screening box through the rectangular ports.
[0013] As a preferred technical scheme, convex mounting plates are integrally formed at the upper ends of the sides of the two storage boxes away from the convex boxes, grooves are formed in the interiors of the two sides of the convex mounting plates, two convex blocks are fixedly arranged at the end of the convex box close to the storage box, and clamping ports are formed in the interiors of the two convex blocks.
[0014] As a preferred technical scheme, limiting springs are fixedly arranged in the interiors of the two grooves, clamping blocks are fixedly arranged at the ends of the limiting springs away from the grooves, and the clamping blocks are clamped in the clamping ports.
[0015] As a preferred technical solution, the inner part of one of the shunt rods is fixedly installed with a fixed block, and the shunt disc is fixedly installed on the upper end of the shunt rod through the fixed block.
[0016] In summary, the utility model mainly has the following beneficial effects:
[0017] First, when the flour is poured into the sifting box, the flour will flow into the sifting box from the feeding pipe, and the shunt rods are fixedly installed on the upper end of the sifting box, and the upper end of one of the shunt rods is fixedly installed with a shunt disc, so that the flour will be scattered when the flour contacts the shunt disc, so that the flour will be dispersed to improve the efficiency and quality of sifting, and the dispersed flour will be distributed to different areas by the partition plate, so that the flour will be effectively screened on the upper end of the first sifting plate.
[0018] Second, when the staff needs to pull out the storage box, the staff can press the slidingly installed clamping blocks on both sides of the convex mounting plate to make the clamping blocks disengage from the clamping interface, so that the storage box can be effectively pulled out, and since the storage box is clamped on one side of the convex box, the storage box can be prevented from falling off during vibration to improve the fixing effect of the storage box. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 is a structural schematic diagram of the utility model;
[0020] Figure 2 is a structural schematic diagram of the vibration motor of the utility model;
[0021] Figure 3 is a structural schematic diagram of the internal section of the square box of the utility model;
[0022] Figure 4 is an enlarged structural schematic diagram of part A of the utility model; Figure 3
[0023] Figure 5 is a structural schematic diagram of the internal section of the sifting box of the utility model;
[0024] Figure 6 is a structural schematic diagram of the partition plate of the utility model;
[0025] Figure 7 is a structural schematic diagram of the internal section of the convex mounting plate of the utility model;
[0026] Figure 8 is an enlarged structural schematic diagram of part B of the utility model. Figure 7
[0027] Label: 1, feed pipe; 2, sifting box; 3, storage box; 4, square box; 6, bottom plate; 7, convex box; 8, vibration motor; 9, discharge port; 10, distribution disc; 11, distribution rod; 12, fixed block; 13, rectangular port; 14, slope; 15, storage interval; 16, telescopic rod; 17, support block; 18, first buffer spring; 19, second buffer spring; 20, support; 21, first sifting plate; 22, second sifting plate; 23, partition; 24, clamping port; 25, convex block; 26, convex mounting plate; 27, notch; 28, limit spring; 29, clamping block. DETAILED DESCRIPTION
[0028] EMBODIMENT
[0029] REFERENCE Figures 1-8 The bread processing sifting machine comprises a bottom plate 6, a square box 4 movably mounted on the upper end of the bottom plate 6, a sifting box 2 fixedly mounted at the end of the square box 4 away from the bottom plate 6, a feed pipe 1 provided at the end of the sifting box 2 away from the square box 4, a second sifting plate 22 fixedly mounted in the sifting box 2, a plurality of partitions 23 fixedly mounted on the upper end of the second sifting plate 22, a first sifting plate 21 fixedly mounted at the end of each of the plurality of partitions 23 away from the second sifting plate 22, a same partition 23 fixedly mounted at the end of each of the first sifting plates 21 away from the second sifting plate 22, a plurality of distribution rods 11 fixedly mounted in the sifting box 2 above the first sifting plates 21, a distribution disc 10 fixedly mounted at the upper end of one of the plurality of distribution rods 11, two convex boxes 7 provided on one side of the sifting box 2, a storage box 3 slidingly mounted in each of the two convex boxes 7, and a vibration motor 8 fixedly mounted at the end of the square box 4 away from the sifting box 2.
[0030] REFERENCE Figure 1 , Figures 3-4 The upper end of the bottom plate 6 is fixedly mounted with four supports 20, the inside of each of the four supports 20 is fixedly mounted with a first buffer spring 18, the end of the first buffer spring 18 away from the support 20 is fixedly mounted with a support block 17, the end of the support block 17 away from the first buffer spring 18 is fixedly mounted with a second buffer spring 19, the bottom of the square box 4 is fixedly mounted with a same support 20 as the upper end of the bottom plate 6, the end of the second buffer spring 19 away from the support block 17 is fixedly mounted in the support 20 at the bottom of the square box 4, the upper and lower ends of the support block 17 are fixedly mounted with telescopic rods 16, the ends of the two telescopic rods 16 away from the support block 17 are fixedly mounted in the inside of the support 20, and when the square box 4 is driven to vibrate, the first buffer spring 18 and the second buffer spring 19 can effectively prevent the square box 4 and the sifting box 2 from falling off and deviating.
[0031] REFERENCE Figures 3-5The square box 4 has a storage chamber 15 inside. The square box 4 has a discharge port 9 at one end near the raised box 7. The storage chamber 15 has a ramp 14 inside. The discharge port 9 is connected to the storage chamber 15. The raised box 7 has a rectangular opening 13 at one end near the sieving box 2. Both raised boxes 7 are connected to the sieving box 2 at one end near the sieving box 2 through the rectangular opening 13. Since the first sieving plate 21 and the second sieving plate 22 are both set as ramps 14, the flour that has not been sifted will be guided by the inclined end of the ramp 14 into the storage box 3 that is slidably installed inside the raised box 7 for storage.
[0032] refer to Figure 5 , Figures 7-8 Two storage boxes 3 have integrally formed raised mounting plates 26 on the upper part of the side away from the raised box 7. The two raised mounting plates 26 have slots 27 on both sides inside. Two raised blocks 25 are fixedly installed on the end of the raised box 7 that is close to the storage box 3. The two raised blocks 25 have locking interfaces 24 inside. Limiting springs 28 are fixedly installed inside the slots 27 on both sides. The locking blocks 29 are fixedly installed on the end of the limiting springs 28 away from the slots 27. The locking blocks 29 are locked inside the locking interfaces 24. When the staff needs to pull out the storage box 3, the staff can press the locking blocks 29 that are slidably installed on both sides of the raised mounting plate 26 to disengage the locking blocks 29 from the locking interfaces 24. This can effectively pull out the storage box 3. Since the storage box 3 is locked on the side of the raised box 7, it can prevent the storage box 3 from falling off during vibration and improve the fixing effect of the storage box 3.
[0033] refer to Figure 3 One of the diverting rods 11 has a fixed block 12 installed inside it. The diverting plate 10 is fixedly installed on the upper end of the diverting rod 11 through the fixed block 12. When the flour is poured into the sieving box 2, the flour will flow into the sieving box 2 from the feed pipe 1. The diverting rod 11 is fixedly installed on the upper end of the sieving box 2, and the diverting plate 10 is fixedly installed on the upper end of one of the diverting rods 11. When the flour comes into contact with the diverting plate 10, the flour will be dispersed. In this way, the flour will be dispersed to improve the efficiency and quality of sieving. The dispersed flour will be distributed to different areas by the partition 23.
[0034] Principle and advantages: in use, the staff first start the vibration motor 8, then the staff can be screened from the flour into the sieve box 2 upper end provided with feed pipe 1 inside into the sieve box 2 inside, in the flour into the sieve box 2 inside when the flour will flow into the sieve box 2 inside from the feed pipe 1, and the upper end of the sieve box 2 is fixedly installed with shunt rod 11, and one of the shunt rod 11 is fixedly installed with shunt disc 10, when the flour contacts the shunt disc 10, the flour will be scattered, so the flour will be dispersed to improve the efficiency and quality of screening, the dispersed flour will be distributed to different areas by the partition plate 23, so the flour will be effectively screened on the upper end of the first screening plate 21, because the first screening plate 21 and the second screening plate 22 are provided with slope 14, so the unfiltered flour will be drained to the storage box 3 inside the slide installation of the convex box 7 inside by the slope 14 of the slope end in order to store up, after the flour passes through the second screening plate 22, the flour will be effectively filtered clean, the flour needed will flow into the square box 4, so the screened flour will flow out from the discharge port 9, effectively improving the efficiency and quality of screening, when the staff needs to pull out the storage box 3, the staff can press the slide installation of the clamping block 29 on both sides of the convex installation plate 26, so that the clamping block 29 is separated from the clamping interface 24, so the storage box 3 can be effectively pulled out, because the storage box 3 is clamped on one side of the convex box 7, so it can prevent the storage box 3 from falling off when vibrating to improve the fixing effect of the storage box 3.
Claims
1. A flour sifting machine for bread making comprising a base plate (6) characterised in that: The upper end of the bottom plate (6) is movably provided with a square box (4), and the end away from the bottom plate (6) of the square box (4) is fixedly provided with a screening box (2), and the end away from the square box (4) of the screening box (2) is provided with a feeding pipe (1), and the inside of the screening box (2) is fixedly provided with a second screening plate (22), and the upper end of the second screening plate (22) is fixedly provided with a plurality of partitions (23), and the end away from the second screening plate (22) of the plurality of partitions (23) is fixedly provided with a first screening plate (21), and the end away from the second screening plate (22) of the first screening plate (21) is fixedly provided with the same partition (23) as the upper end of the second screening plate (22), and the inside of the screening box (2) is fixedly provided with a plurality of shunt rods (11) above the first screening plate (21), and the upper end of one of the shunt rods (11) is fixedly provided with a shunt disc (10), and one side of the screening box (2) is provided with two protruding boxes (7), and the inside of the two protruding boxes (7) is slidably provided with a storage box (3), and the end away from the screening box (2) of the square box (4) is fixedly provided with a vibration motor (8).
2. A flour sifting machine for bread making as claimed in claim 1 wherein: The upper end of the bottom plate (6) is movably provided with a square box (4), and the end away from the bottom plate (6) of the square box (4) is fixedly provided with a screening box (2), and the end away from the square box (4) of the screening box (2) is provided with a feeding pipe (1), and the inside of the screening box (2) is fixedly provided with a second screening plate (22), and the upper end of the second screening plate (22) is fixedly provided with a plurality of partitions (23), and the end away from the second screening plate (22) of the plurality of partitions (23) is fixedly provided with a first screening plate (21), and the end away from the second screening plate (22) of the first screening plate (21) is fixedly provided with the same partition (23) as the upper end of the second screening plate (22), and the inside of the screening box (2) is fixedly provided with a plurality of shunt rods (11) above the first screening plate (21), and the upper end of one of the shunt rods (11) is fixedly provided with a shunt disc (10), and one side of the screening box (2) is provided with two protruding boxes (7), and the inside of the two protruding boxes (7) is slidably provided with a storage box (3), and the end away from the screening box (2) of the square box (4) is fixedly provided with a vibration motor (8).
3. A flour sifting machine for bread making as claimed in claim 2 wherein: The upper end of the bottom plate (6) is movably provided with a square box (4), and the end away from the bottom plate (6) of the square box (4) is fixedly provided with a screening box (2), and the end away from the square box (4) of the screening box (2) is provided with a feeding pipe (1), and the inside of the screening box (2) is fixedly provided with a second screening plate (22), and the upper end of the second screening plate (22) is fixedly provided with a plurality of partitions (23), and the end away from the second screening plate (22) of the plurality of partitions (23) is fixedly provided with a first screening plate (21), and the end away from the second screening plate (22) of the first screening plate (21) is fixedly provided with the same partition (23) as the upper end of the second screening plate (22), and the inside of the screening box (2) is fixedly provided with a plurality of shunt rods (11) above the first screening plate (21), and the upper end of one of the shunt rods (11) is fixedly provided with a shunt disc (10), and one side of the screening box (2) is provided with two protruding boxes (7), and the inside of the two protruding boxes (7) is slidably provided with a storage box (3), and the end away from the screening box (2) of the square box (4) is fixedly provided with a vibration motor (8).
4. A flour sifting machine for bread making as claimed in claim 3 wherein: The upper end of the bottom plate (6) is movably provided with a square box (4), and the end away from the bottom plate (6) of the square box (4) is fixedly provided with a screening box (2), and the end away from the square box (4) of the screening box (2) is provided with a feeding pipe (1), and the inside of the screening box (2) is fixedly provided with a second screening plate (22), and the upper end of the second screening plate (22) is fixedly provided with a plurality of partitions (23), and the end away from the second screening plate (22) of the plurality of partitions (23) is fixedly provided with a first screening plate (21), and the end away from the second screening plate (22) of the first screening plate (21) is fixedly provided with the same partition (23) as the upper end of the second screening plate (22), and the inside of the screening box (2) is fixedly provided with a plurality of shunt rods (11) above the first screening plate (21), and the upper end of one of the shunt rods (11) is fixedly provided with a shunt disc (10), and one side of the screening box (2) is provided with two protruding boxes (7), and the inside of the two protruding boxes (7) is slidably provided with a storage box (3), and the end away from the screening box (2) of the square box (4) is fixedly provided with a vibration motor (8).
5. A flour sifting machine for bread making as claimed in claim 1 wherein: 6. A flour sifting machine for bread making as claimed in claim 1 wherein: 7. A flour sifting machine for bread making as claimed in claim 1 wherein: 8. A flour sifting machine for bread making as claimed in claim 7 wherein: The inner part of the notches (27) is fixedly installed with a limiting spring (28), and the end of the limiting spring (28) away from the notch (27) is fixedly installed with a clamping block (29), which is clamped in the inner part of the clamping port (24).
9. A flour sifting machine for bread making as claimed in claim 1 wherein: The inner part of one of the shunt rods (11) is fixedly installed with a fixed block (12), and the shunt disc (10) is fixedly installed on the upper end of the shunt rod (11) through the fixed block (12).
Citation Information
Patent Citations
Multi-stage filtering powder screening machine for bread making
CN218517192U