Efficient starch feeding equipment
By designing a dust-proof mechanism in the starch processing equipment, using wind power to suck in and collect dust in the air, the problem of serious dust during the feeding process is solved, the risk of fire and dust explosion is reduced, and the safety and efficiency of feeding is improved.
Patent Information
- Application Number
- CN202421589589.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-05
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-07-05
AI Technical Summary
Existing starch processing equipment is prone to severe dust during feeding, resulting in dust accumulation and fire hazards, and at the same time there is a risk of dust explosion.
A starch efficient feeding equipment is designed, and a dust-proof mechanism including a fan, an open sleeve, a connecting pipe, a collection box, a recycling piece and a ventilation board is designed to suck dust in the air through wind and collect it in the recycling piece to prevent the diffusion of the dust and reduce the dust concentration in the working environment.
Effectively prevent the diffusion of dust generated during feeding, reduce the dust concentration in the working environment, reduce the hidden dangers of fires and dust explosions, and improve the safety and efficiency of feeding.
Smart Images

Figure CN222877165U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of starch processing equipment, and more specifically, to a starch high-efficiency feeding device. Background Art
[0002] Starch processing and products are made from cereals such as corn, sorghum and wheat, and tuber crops such as potatoes, sweet potatoes and cassava. Starch is obtained by soaking, grinding, and separating and removing non-starch substances such as protein, fat, and cellulose. Starch products are made from starch as raw material through mechanical, chemical or biochemical processing. There are many types of starch products, and the classification methods vary.
[0003] At present, a Chinese patent with application number 202120757048.2 on the market discloses a feeding device for modified starch processing, including a storage tank, a motor and two feed ports are arranged above the storage tank, the motor is located between the two feed ports, and a stirring blade is rotatably connected to the motor at the bottom through a rotating shaft, a power switch is arranged on one side of the storage tank, and a discharge port is arranged at the bottom of the storage tank, a connecting pipe is fixedly connected to the bottom of the discharge port by bolts, four feed pipes and a connecting rod are arranged below the connecting pipe, the connecting rod is located between the four feed pipes, a bearing is provided on the outer sleeve of the connecting rod, a bearing seat is installed on the outside of the bearing, a base is installed at the bottom of the bearing seat, and the motor and the power switch are electrically connected.
[0004] In the above patent, although the material discharged from the discharge port can be divided into four parts by connecting the connecting pipe to the discharge port, and respectively fed to four processing equipment through four feeding pipes, multiple equipment can be fed at one time, which is convenient and quick to use and increases the feeding efficiency, but when the starch is poured into the feed port, the starch will cause serious dust, resulting in dust accumulation in on-site equipment, pipelines, etc., and thus there is a fire hazard. At the same time, during the process of adding starch, there is a risk of dust explosion due to the large amount of dust on site. Utility Model Content
[0005] In view of the deficiencies in the prior art, the utility model aims to provide a starch efficient feeding device.
[0006] In order to achieve the above purpose, the utility model provides the following technical solutions:
[0007] A starch efficient feeding device comprises a feeder body, a hopper and a dustproof mechanism are arranged on the feeder body, the hopper is located below the dustproof mechanism, the dustproof mechanism comprises a fan, an open sleeve, a connecting pipe, a collecting box, a recovery piece and a ventilation plate, a bracket plate is arranged on the feeder body, the bracket plate is L-shaped, a connecting hole is arranged on the bracket plate, the collecting box is placed on the bracket plate, an air inlet hole is arranged on the collecting box, one end of the connecting pipe is fixed to the collecting box and communicated with the air inlet hole, the other end of the connecting pipe passes through the connecting hole and is fixed to the open sleeve, the recovery piece is movably connected to the collecting box, the collecting box is provided with ventilation holes, the fan is fixed in the ventilation holes, the ventilation plate is fixed in the collecting box and is arranged between the fan and the recovery piece.
[0008] The utility model is further configured such that the recovery piece is detachably connected to the collection box, the recovery piece comprises a fixing ring, a recovery bag, a spring and a positioning pin, the fixing ring is fixedly connected to the recovery bag, the fixing ring extends into the air inlet, a plurality of positioning holes arranged in a ring shape are opened on the fixing ring, the spring is placed in the positioning hole and the two ends of the spring are respectively fixed to the positioning hole and the positioning pin, a plurality of grooves corresponding to the positioning holes are opened on the inner wall of the air inlet, and the positioning pin extends into the grooves.
[0009] The utility model is further configured that the bracket plate is provided with a plurality of clamping rings arranged in sequence, and the plurality of clamping rings are respectively clamped with the connecting pipes.
[0010] The utility model is further configured that a stirring member is provided on the hopper, the stirring member comprises a motor and a stirring rod, the motor is fixed on the hopper, the motor comprises a rotating shaft, the rotating shaft extends into the hopper and the stirring rod is fixed on the rotating shaft.
[0011] The utility model is further configured that a storage groove is opened on the collection box, the storage groove is communicated with the collection box, a door body is hinged on the collection box and the door body is placed in the storage groove.
[0012] By adopting the above technical solution, the beneficial effects of the utility model are:
[0013] By turning on the power, the fan is driven to rotate, and then the fan generates wind, and the dust in the air is sucked into the connecting pipe through the open sleeve, and then enters the recovery part from the connecting pipe, thereby collecting the dust in the air, and effectively preventing the dust generated during the feeding process from spreading, and reducing the dust concentration in the working environment. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a schematic diagram of the structure of a starch efficient feeding equipment.
[0015] Figure 2 This is a cross-sectional view of a starch efficient feeding device.
[0016] Figure 3 This is a cross-sectional view of the dust-proof mechanism.
[0017] Figure 4 This is the AA cross-sectional view of the dust protection mechanism.
[0018] Figure 5 is a partial enlarged view of A.
[0019] Description of the drawings: 1-feeder body, 2-hopper, 3-dust prevention mechanism, 31-fan, 32-open sleeve, 33-connecting pipe, 34-collecting box, 35-recovery part, 36-ventilation plate, 4-bracket plate, 5-connecting hole, 6-air inlet hole, 7-ventilation hole, 8-fixing ring, 9-recovery bag, 10-spring, 11-locating pin, 12-locating hole, 13-groove, 14-clamping ring, 15-stirring part, 151-motor, 152-stirring rod, 16-rotating shaft, 17-storage slot, 18-door body. DETAILED DESCRIPTION
[0020] Reference Figures 1 to 4 The embodiments of the utility model are further described.
[0021] A starch efficient feeding device comprises a feeder body 1, a hopper 2, a support plate 4, a stirring member 15 and a dust prevention mechanism 3. The feeder body 1 is provided with a hopper 2 and a support plate 4, the stirring member 15 is fixed on the hopper 2, the support plate 4 is L-shaped, and the dust prevention mechanism 3 is placed on the support plate 4.
[0022] The stirring member 15 includes a motor 151 and a stirring rod 152. The motor 151 is fixed on the hopper 2. The motor 151 includes a rotating shaft 16. The rotating shaft 16 extends into the hopper 2 and the stirring rod 152 is fixed on the rotating shaft 16.
[0023] The motor 151 drives the shaft 16 to rotate, and then the shaft 16 rotates the stirring rod 152, so that the stirring rod 152 can stir the starch, making it easier for the starch to flow out of the hopper 2, thereby preventing the feeding blockage caused by starch adhesion, and improving the smoothness and efficiency of the feeding.
[0024] The dust prevention mechanism 3 includes a fan 31, an open sleeve 32, a connecting pipe 33, a collection box 34, a recovery member 35 and a ventilation plate 36. A connecting hole 5 is provided on the bracket plate 4. The collection box 34 is placed on the bracket plate 4. The bracket plate 4 is provided with a plurality of snap rings 14 arranged in sequence. The plurality of snap rings 14 are respectively engaged with the connecting pipe 33. An air inlet 6 is provided on the collection box 34. One end of the connecting pipe 33 is fixed to the collection box 34 and communicates with the air inlet 6. The other end of the connecting pipe 33 passes through the connecting hole 5 and is fixed to the open sleeve 32. The recovery member 35 is movably connected to the collection box 34. A ventilation hole 7 is provided on the collection box 34. The fan 31 is fixed in the ventilation hole 7. The ventilation plate 36 is fixed in the collection box 34 and is placed between the fan 31 and the recovery member 35.
[0025] By turning on the power, the fan 31 is driven to rotate, and the fan 31 generates wind force, and the dust in the air is sucked into the connecting pipe 33 through the open sleeve 32, and then enters the recovery part 35 from the connecting pipe 33, thereby playing the role of collecting dust in the air, and effectively preventing the dust generated during the feeding process from spreading, and reducing the dust concentration in the working environment;
[0026] At the same time, a plurality of clamping rings 14 are provided to fix the connecting pipe 33 on the bracket plate 4, thereby preventing the connecting pipe 33 from moving around during the vacuuming operation.
[0027] The collection box 34 is also provided with a storage groove 17, which is communicated with the collection box 34. A door body 18 is hinged on the collection box 34 and the door body 18 is placed in the storage groove 17. The recovery part 35 is detachably connected to the collection box 34. The recovery part 35 includes a fixing ring 8, a recovery bag 9, a spring 10 and a positioning pin 11. The fixing ring 8 is fixedly connected to the recovery bag 9, and the fixing ring 8 extends into the air inlet 6. The fixing ring 8 is provided with a plurality of positioning holes 12 arranged in a ring shape. The spring 10 is placed in the positioning hole 12 and the two ends of the spring 10 are respectively fixed to the positioning hole 12 and the positioning pin 11. A plurality of grooves 13 corresponding to the positioning holes 12 are provided on the inner wall of the air inlet 6, and the positioning pin 11 extends into the groove 13.
[0028] The inner wall of the collecting box 34 is exposed by opening the door 18, and then the fixing ring 8 is grabbed and pulled out of the air inlet 6, and then the positioning pin 11 is separated from the groove 13, and then the fixing ring 8 together with the recovery bag 9 is removed from the collecting box 34. The ventilation plate 36 is provided to prevent the recovery bag 9 from being stirred into the fan of the fan 31, thereby preventing the fan 31 from being damaged. At the same time, through the coordinated use of the spring 10 and the positioning pin 11, the fixing ring 8 can be more firmly fixed in the air inlet 6.
[0029] Working principle: First, the fan 31 is started to generate wind force, and then the starch is poured into the hopper 2, and then the motor 151 is started, and then the motor 151 drives the shaft 16 to rotate, and then the shaft 16 rotates the stirring rod 152, and then the stirring rod 152 stirs the starch in the hopper 2, so that the starch is easier to flow out of the hopper 2. At the same time, when the starch is poured into the hopper 2, dust is generated, and the dust in the air is sucked into the connecting pipe 33 through the open sleeve 32 by the fan 31, and then from the connecting pipe 33 Hole 5 passes through the air inlet hole 6 and enters the recovery bag 9 for collection. When the work is completed, the door body 18 is opened to expose the interior of the collection box 34, and then the hand is put into the collection box 34, and the fixing ring 8 is pulled out from the air inlet hole 6, and then the fixing ring 8 and the recovery bag 9 are taken out from the collection box 34. After the dust in the recovery bag 9 is poured out, the fixing ring 8 is inserted into the air inlet hole 6 again until the spring 10 clamps the positioning pin 11 into the groove 13, and then the fixing ring 8 is clamped into the air inlet hole 6.
[0030] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any common changes and substitutions made by those skilled in the art within the technical solution of the present invention should be included in the protection scope of the present invention.
Claims
1. A starch efficient feeding device, comprising a feeding machine body (1), characterized in that: The feeder body (1) is provided with a hopper (2) and a dust prevention mechanism (3), the hopper (2) being located below the dust prevention mechanism (3), the dust prevention mechanism (3) comprising a fan (31), an open sleeve (32), a connecting pipe (33), a collecting box (34), a recycling member (35) and a ventilation plate (36), the feeder body (1) is provided with a bracket plate (4), the bracket plate (4) being L-shaped, the bracket plate (4) being provided with a connecting hole (5), the collecting box (34) being placed on the bracket plate (4), the collecting box (34) being The collecting box (34) is provided with an air inlet hole (6), one end of the connecting pipe (33) is fixed to the collecting box (34) and communicates with the air inlet hole (6), the other end of the connecting pipe (33) passes through the connecting hole (5) and is fixed to the open sleeve (32), the recovery member (35) is movably connected to the collecting box (34), the collecting box (34) is provided with a ventilation hole (7), the fan (31) is fixed in the ventilation hole (7), and the ventilation plate (36) is fixed in the collecting box (34) and is placed between the fan (31) and the recovery member (35).
2. A starch efficient feeding equipment according to claim 1, characterized in that: The recovery component (35) is detachably connected to the collection box (34), and comprises a fixing ring (8), a recovery bag (9), a spring (10) and a positioning pin (11). The fixing ring (8) is fixedly connected to the recovery bag (9), and the fixing ring (8) extends into the air inlet hole (6). The fixing ring (8) is provided with a plurality of positioning holes (12) arranged in a ring shape. The spring (10) is placed in the positioning hole (12), and the two ends of the spring (10) are respectively fixed to the positioning hole (12) and the positioning pin (11). The inner wall of the air inlet hole (6) is provided with a plurality of grooves (13) corresponding to the positioning holes (12), and the positioning pin (11) extends into the groove (13).
3. A starch efficient feeding equipment according to claim 1, characterized in that: The support plate (4) is provided with a plurality of clamping rings (14) arranged in sequence, and the plurality of clamping rings (14) are respectively clamped with the connecting pipes (33).
4. A starch efficient feeding equipment according to claim 1, characterized in that: The hopper (2) is provided with a stirring member (15), the stirring member (15) comprising a motor (151) and a stirring rod (152), the motor (151) being fixed on the hopper (2), the motor (151) comprising a rotating shaft (16), the rotating shaft (16) extending into the hopper (2) and the stirring rod (152) being fixed on the rotating shaft (16).
5. A starch efficient feeding equipment according to claim 1, characterized in that: The collection box (34) is provided with a storage groove (17), the storage groove (17) is in communication with the collection box (34), and a door body (18) is hingedly connected to the collection box (34), and the door body (18) is placed in the storage groove (17).
Citation Information
Patent Citations
Feeding device for modified starch processing
CN214915869U