Be used for rice husk production storage facilities
Technical Field
The utility model relates to the technical field of rice hull production and storage equipment, in particular to storage equipment for rice hull production.
Background
In some production operations using rice hulls as raw materials, the rice hulls need to be collected and stored for subsequent production operations;
One Chinese patent with the publication number of CN218318545U discloses a rice hull storage device, which comprises a barrel, wherein a feeding port, a first chamber, a connecting channel, a second chamber and a first discharging port which are sequentially communicated are arranged on the barrel, a discharging gate is arranged at the first discharging port, the rice hull storage device also comprises a winnowing component, a stirring component and a drying component, the winnowing component comprises a fan and a wind dividing plate, the barrel is provided with the second discharging port, the wind dividing plate and the second discharging port are respectively positioned at two opposite sides of the connecting channel, the stirring component comprises a stirring shaft and a driving piece for driving the stirring shaft to rotate, the stirring shaft stretches into the second chamber and is provided with a plurality of stirring blades, the drying component comprises a hot air blower and a hot air pipe matched with the hot air blower, and a plurality of air outlet holes are formed in the hot air pipe at intervals. The rice hull storage method solves the technical problems that the existing rice hull storage mode is not beneficial to rice hull storage, and environmental pollution is easy to cause when the rice hulls are taken out, and has the technical effects of effectively removing dust in the rice hulls and preventing the rice hulls from being damped, polluted or mildewed;
When the rice hull production storage device is used, the temperature of the rice hull storage space is changed, the rice hulls in a stacked state are more prone to mildew, dust particles with smaller sizes exist in the rice hulls, the quality of the rice hull stack is low, the rice hulls are blocked in the process of being sent into the storage device, and the device is required to be dredged, so that the rice hull production storage device is provided for solving the problems.
Disclosure of utility model
In order to overcome the defects of the prior art and solve some existing problems of rice hull production and storage equipment, the utility model provides the storage equipment for rice hull production.
The storage equipment for rice husk production comprises a storage box body, wherein a storage cavity is formed in the storage box body, support rods are fixedly connected to the four corners of the bottom of the storage box body, an auxiliary storage device is mounted on the storage box body and comprises a storage barrel, the storage barrel is arranged in the storage cavity, the storage barrel is enclosed in the storage barrel, a mesh is formed in a barrel plate body of the storage barrel, a fixed ring is fixedly connected to a position, which is located on the upper side of an arc surface of the inner wall of the storage cavity, of the fixed ring, a fixed rod is fixedly connected to the fixed ring, a fixed barrel is fixedly connected to the bottom center position of the fixed rod, air outlet holes are formed in the fixed barrel and the rotary barrel, and the horizontal plane of the bottom end face of the fixed ring is higher than the horizontal plane of the top end face of the storage barrel;
The top of the storage box body is provided with a cover plate, the top of the fixing rod is provided with an air inlet pipe, the end part of the air inlet pipe penetrates through the cover plate and extends out of the storage box body, a fan is arranged on a pipe body of the air inlet pipe extending out of the storage box body, a filtering device is arranged on the air inlet pipe and close to the fan, a rotating seat is arranged on the end face of the bottom of the inner wall of the storage cavity, the top of the rotating seat is connected to the end face of the bottom of the storage barrel, the bottom of the storage box body is provided with a rotating mechanism, a connecting rod piece of the rotating mechanism is connected with the rotating seat, moisture in a storage space is discharged, and the phenomenon that rice hulls are mildewed due to temperature rise in the storage space is avoided.
Preferably, the outer cambered surface of the storage box body is symmetrically provided with exhaust pipes, the exhaust pipes are provided with exhaust nozzles, structural holes are formed in the arc plates of the storage box body in a penetrating mode, the exhaust nozzles penetrate through the structural holes and are inserted into the storage cavity, a filter screen is arranged on the acting end face of each exhaust nozzle, the exhaust pipes are provided with connecting pipes, the exhaust pumps are arranged on the connecting pipes, the rotating track of each storage barrel is not contacted with the installation position of each exhaust nozzle, and smooth operation of the exhaust nozzles is guaranteed.
Preferably, a feeding hole is formed in one side of the top of the cover plate in a penetrating mode, a feeding barrel is mounted at the top of the feeding hole, a feeding hopper is fixedly connected to the top of the feeding barrel, a feeding cavity is formed in the feeding barrel, an inclined screen is mounted in the feeding cavity, an air inlet is formed in the barrel body of the feeding barrel in a penetrating mode, a screen is mounted in the air inlet, a guide pipe is mounted at the bottom of the feeding barrel, the bottom of the guide pipe is inserted into the operation range of the storage barrel, and dust particles in rice hulls are screened out.
Preferably, an air inlet box is arranged at the position of the air inlet on the feeding cylinder, a connecting frame is arranged on the acting surface of the air inlet box, and air supply equipment is arranged on the connecting frame, so that the screen mesh can work smoothly.
Preferably, a communicating hole is formed in a structural surface of one side, far away from the air inlet, of the feeding barrel in a penetrating mode, a guide plate is installed in the communicating hole, the top of the guide plate is in contact with the bottom of the screen, a collecting box is installed at the position, located at an opening of the communicating hole, of the feeding barrel, and the auxiliary collection effect is achieved.
Preferably, a rotating shaft is arranged at a position, close to the bottom of the screen, inside the feeding cavity, a rotating plate is arranged on the rotating shaft, a small motor is arranged on the cylinder body of the feeding cylinder, an output shaft of the small motor is connected with the rotating shaft, and the phenomenon that rice hulls are blocked in the conveying process is avoided.
The utility model has the advantages that:
According to the rice husk drying machine, through the structural design of the auxiliary storage device, the screened rice husk can initially fall into the operation range of the rotating plate, the small motor operates, the rotating shaft drives the rotating plate to rotate, the rice husk is prevented from being blocked at the position of the conveying feeding hole, the feeding operation is ensured to be carried out smoothly, the fan on the air inlet pipe is started, the flowing air is removed by the action of the filtering equipment, the dried air enters the rotating cylinder structural cavity of the fixed cylinder through the air inlet pipe and enters the stacked rice husk through the air outlet hole, the dried air moves in the rice husk and adsorbs water vapor with a certain temperature, the drying effect on the rice husk is achieved, meanwhile, the air suction pump is started, the air flowing in the storage cavity is pumped out through the air suction nozzle, the air containing the water vapor is pumped out through the connecting pipe under the action of the screen mesh, the effect of uniformly drying the rice husk is achieved, and the phenomenon that the rice husk is mildewed due to the temperature rise is avoided.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions of the prior art, the drawings which are used in the description of the embodiments or the prior art will be briefly described, it being obvious that the drawings in the description below are only some embodiments of the utility model, and that other drawings can be obtained from these drawings without inventive faculty for a person skilled in the art.
FIG. 1 is a schematic diagram of an auxiliary memory device;
FIG. 2 is a schematic view of a rotating drum;
FIG. 3 is a schematic structural view of a cartridge;
FIG. 4 is a schematic diagram of a rescreening apparatus;
fig. 5 is a schematic structural view of the anti-clogging apparatus.
The device comprises a storage box body, a storage cavity, a support rod, 401, a storage cylinder, 402, a storage cavity, 403, a rotary seat, 404, a rotary mechanism, 405, a fixed ring, 406, a fixed rod, 407, a fixed cylinder, 408, a rotary cylinder, 409, an air outlet hole, 410, a cover plate, 411, an air inlet pipe, 412, a fan, 413, a filtering device, 414, an air exhaust pipe, 415, an air suction nozzle, 416, a structural hole, 417, a filter, 418, a connecting pipe, 419, an air exhaust pump, 501, a feed inlet, 502, a feed cylinder, 503, a feed hopper, 504, a feed cavity, 505, a screen, 506, an air inlet, 507, a screen, 508, an air inlet box, 509, a connecting frame, 510, an air supply device, 511, a communication hole, 512, a guide plate, 513, a rotary shaft, 514, a rotary plate, 515, a small motor, 516, a collection box, 517 and a guide pipe.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, a storage device for rice husk production comprises a storage box body 1, wherein a storage cavity 2 is formed in the storage box body 1, support rods 3 are fixedly connected to four corners of the bottom of the storage box body 1, an auxiliary storage device is mounted on the storage box body 1, the auxiliary storage device comprises a storage barrel 401, the storage barrel 401 is arranged in the storage cavity 2, a storage cavity 402 is enclosed in the storage barrel 401, a mesh is formed in a barrel plate of the storage barrel 401, a fixed ring 405 is fixedly connected to a position, above an arc surface of the inner wall of the storage cavity 2, of the storage barrel, a fixed rod 406 is fixedly connected to the fixed ring 405, a fixed barrel 407 is fixedly connected to the bottom center position of the fixed rod 406, a rotating barrel 408 is fixedly connected to the fixed barrel 407, air outlet holes 409 are formed in the rotating barrel 408 and the fixed barrel 407, and the horizontal plane of the bottom end face of the fixed ring 405 is higher than the horizontal plane of the top end face of the storage barrel 401;
The top of the storage box body 1 is provided with a cover plate 410, the top of a fixed rod 406 is provided with an air inlet pipe 411, the end part of the air inlet pipe 411 penetrates through the cover plate 410 to extend outside, a fan 412 is arranged on a pipe body of the air inlet pipe 411 extending outside, a filtering device 413 is arranged on the position, close to the fan 412, of the air inlet pipe 411, a rotating seat 403 is arranged on the bottom end face of the inner wall of the storage cavity 2, the top of the rotating seat 403 is connected to the bottom end face of the storage barrel 401, the bottom of the storage box body 1 is provided with a rotating mechanism 404, a connecting rod piece of the rotating mechanism 404 is connected with the rotating seat 403, the outer arc surface of the storage box body 1 is symmetrically provided with an air exhaust pipe 414, an air exhaust nozzle 415 is arranged on the air exhaust pipe 414, a structural hole 416 is formed in an arc plate of the storage box body 1 in a penetrating manner, the air exhaust nozzle 415 penetrates through the structural hole 416 to be inserted into the storage cavity 2, a filter screen 417 is arranged on the acting end face of the air exhaust nozzle 415, a connecting pipe 418 is arranged on the connecting pipe 418, a pump 419 is arranged on the rotating track of the storage barrel 401 is arranged on the connecting pipe 419, and the rotating track of the storage barrel 401 is not contacted with the mounting position of the air exhaust nozzle 415;
During working, in some production operations using rice hulls as raw materials, the rice hulls need to be collected and stored so as to facilitate the subsequent production operations; when the existing rice husk production and storage equipment is used, the temperature of a rice husk storage space is changed, so that rice husk in a stacked state is more prone to mildew, the rice husk production and storage equipment is acted through the auxiliary storage device, screened rice husk enters the storage cavity 402 of the storage cylinder 401 through the guide pipe 517, a fan 412 on the air inlet pipe 411 can be started according to storage requirements, flowing gas is removed from the storage cavity through the action of the filtering equipment 413, dry gas enters the structural cavity of the rotating cylinder 408 of the fixed cylinder 407 through the air inlet pipe 411 and enters the stacked rice husk through the air outlet hole 409, the dry gas moves in the rice husk and adsorbs water vapor with a certain temperature, the rice husk is dried, meanwhile, the air pump 419 is started, the air suction nozzle 415 is started to pump the gas flowing in the storage cavity 402, the gas containing the water vapor is pumped out through the connecting pipe 418 under the action of the screen 505, and the rotating seat 403 drives the storage cylinder 401 to rotate according to storage requirements, so that the fixed cylinder 407 and the rotating cylinder 408 relatively move in the rice husk, the rice husk is uniformly dried, and the rice husk is prevented from mildew due to the temperature rising.
Referring to fig. 4-5, a feed inlet 501 is formed through one side of the top of a cover plate 410, a feed drum 502 is mounted on the top of the feed inlet 501, a feed hopper 503 is fixedly connected to the top of the feed drum 502, a feed cavity 504 is formed inside the feed drum 502, a sloped screen 505 is mounted inside the feed cavity 504, an air inlet 506 is formed through the drum body of the feed drum 502, a screen 507 is mounted inside the air inlet 506, a guide pipe 517 is mounted at the bottom of the feed drum 502, the bottom of the guide pipe 517 is inserted into the operation range of the storage drum 401, an air inlet box 508 is mounted at the position of the air inlet 506 on the feed drum 502, a connecting frame 509 is mounted on the acting surface of the air inlet box 508, an air supply device 510 is mounted on the connecting frame 509, a communication hole 511 is formed through the structure surface of one side of the feed drum 502 away from the air inlet 506, a guide plate 512 is mounted in the communication hole 511, the top of the guide plate 512 is contacted with the bottom of the screen 505, a collection box 516 is mounted at the position of the feed drum 502 at the opening of the communication hole 511, a rotating shaft 513 is mounted at the position of the inner part near the bottom of the screen 505, a rotating shaft 514 is mounted at the rotating shaft 514, a rotating shaft 514 is mounted at the rotating shaft, a small motor 515 mounted on the drum body of the motor 515 is mounted on the drum 515 is connected with the small motor 515;
In the application, rice hulls to be stored are sent into the feeding cavity 504 of the feeding cylinder 502 through the feeding hopper 503, the air supply device 510 on the connecting frame 509 is started, wind force is slowly blown into the feeding cylinder 502 through the air inlet 506, dust particles in the rice hulls are sieved through the screen 505 and fall on the guide plate 512 and are collected by the collecting box 516, so that the rice hulls are secondarily screened, the quality of the stored rice hulls is improved, the screened rice hulls can primarily fall into the operation range of the rotating plate 514, the rotating plate 514 is driven to rotate by the rotating shaft 513, and the rice hulls are prevented from being blocked at the position of the feeding hole.
In some production operations using rice hulls as raw materials, the rice hulls need to be collected and stored so as to facilitate the subsequent production operation; when the existing rice husk production storage equipment is used, the temperature of a rice husk storage space is changed, so that the rice husk in a stacked state is more easy to mildew, dust particles with smaller sizes exist in the rice husk, the quality of a rice husk pile is not high, the rice husk is blocked in the process of being sent into the storage equipment, and the equipment is required to be dredged, the rice husk to be stored is sent into a feeding cavity 504 of a feeding barrel 502 through a feeding hopper 503 by virtue of an auxiliary storage device, an air supply device 510 on a connecting frame 509 is started, wind force is slowly blown into the feeding barrel 502 through an air inlet 506, the dust particles in the rice husk are sieved by a screen 505 and fall on a guide plate 512, and are collected by a collecting box 516, so that the rice husk is secondarily screened, the quality of the stored rice husk is improved, the screened rice husk can be primarily in the operation range of a rotating plate 514, the rotating shaft 515 is driven to rotate, the rice husk plate 514 is prevented from being blocked at the feeding port, and the feeding operation is ensured to be smoothly carried out;
The rice hulls after being screened enter the storage cavity 402 of the storage barrel 401 through the guide pipe 517, a fan 412 on the air inlet pipe 411 can be started according to storage requirements, flowing gas is removed of moisture through the action of the filter equipment 413, dry gas enters the structural cavity of the rotating barrel 408 of the fixed barrel 407 through the air inlet pipe 411 and enters stacked rice hulls through the air outlet holes 409, the dry gas moves in the rice hulls and adsorbs moisture with a certain temperature, drying of the rice hulls is achieved, meanwhile, the air suction pump 419 is started, the air suction nozzle 415 is started, the gas flowing in the storage cavity 402 is extracted, the air containing the moisture is pumped out through the connecting pipe 418 through the air suction pipe 414 under the action of the screen 505, the rotating mechanism 404 is started, the rotating seat 403 drives the storage barrel 401 to rotate, the fixed barrel 407 and the rotating barrel 408 do relative motion in the rice hulls, the effect of uniformly drying the rice hulls is achieved, the phenomenon that the temperature of the rice hulls is increased due to stacking is avoided, and the phenomenon that the temperature of the rice hulls is increased is avoided.
In the description of the present specification, the descriptions of the terms "one embodiment," "example," "specific example," and the like, mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present utility model. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiments or examples. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims.