CN222069194U - Corn wide-width dewatering double-tower continuous drying equipment - Google Patents
Corn wide-width dewatering double-tower continuous drying equipment Download PDFInfo
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- CN222069194U CN222069194U CN202421100093.0U CN202421100093U CN222069194U CN 222069194 U CN222069194 U CN 222069194U CN 202421100093 U CN202421100093 U CN 202421100093U CN 222069194 U CN222069194 U CN 222069194U
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- 238000001035 drying Methods 0.000 title claims abstract description 125
- 240000008042 Zea mays Species 0.000 title claims abstract description 46
- 235000002017 Zea mays subsp mays Nutrition 0.000 title claims abstract description 46
- 235000005824 Zea mays ssp. parviglumis Nutrition 0.000 title claims abstract description 41
- 235000005822 corn Nutrition 0.000 title claims abstract description 41
- 238000012216 screening Methods 0.000 claims abstract description 56
- 230000007246 mechanism Effects 0.000 claims description 40
- 238000001556 precipitation Methods 0.000 claims description 18
- 238000001816 cooling Methods 0.000 claims description 16
- 239000000428 dust Substances 0.000 claims description 14
- 238000005192 partition Methods 0.000 claims description 9
- 238000003756 stirring Methods 0.000 claims description 7
- 238000012546 transfer Methods 0.000 claims description 6
- 238000000034 method Methods 0.000 abstract description 7
- 230000008569 process Effects 0.000 abstract description 6
- 238000013461 design Methods 0.000 abstract description 3
- 235000017166 Bambusa arundinacea Nutrition 0.000 description 20
- 235000017491 Bambusa tulda Nutrition 0.000 description 20
- 241001330002 Bambuseae Species 0.000 description 20
- 235000015334 Phyllostachys viridis Nutrition 0.000 description 20
- 239000011425 bamboo Substances 0.000 description 20
- 235000013339 cereals Nutrition 0.000 description 13
- 239000000463 material Substances 0.000 description 8
- 241000196324 Embryophyta Species 0.000 description 6
- 235000016383 Zea mays subsp huehuetenangensis Nutrition 0.000 description 5
- 238000007599 discharging Methods 0.000 description 5
- 235000009973 maize Nutrition 0.000 description 5
- 239000007789 gas Substances 0.000 description 3
- 230000009471 action Effects 0.000 description 2
- 239000008187 granular material Substances 0.000 description 2
- 239000012535 impurity Substances 0.000 description 2
- 230000009467 reduction Effects 0.000 description 2
- 238000005496 tempering Methods 0.000 description 2
- 230000001154 acute effect Effects 0.000 description 1
- 230000006978 adaptation Effects 0.000 description 1
- 230000004075 alteration Effects 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000005540 biological transmission Effects 0.000 description 1
- 230000008859 change Effects 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
- 230000008878 coupling Effects 0.000 description 1
- 238000010168 coupling process Methods 0.000 description 1
- 238000005859 coupling reaction Methods 0.000 description 1
- 230000006866 deterioration Effects 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 238000009792 diffusion process Methods 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012544 monitoring process Methods 0.000 description 1
- 238000007873 sieving Methods 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
- 238000009423 ventilation Methods 0.000 description 1
- 239000002912 waste gas Substances 0.000 description 1
- 239000002699 waste material Substances 0.000 description 1
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- Drying Of Solid Materials (AREA)
Abstract
The utility model discloses corn broad-width dewatering double-tower continuous drying equipment, which relates to the technical field of drying equipment and comprises a screening device, a discharge pipe, a conveying belt, a front drying tower and a rear drying tower, wherein the front drying tower and the rear drying tower are arranged at intervals along the conveying direction of the conveying belt; the bottom of the drying tower is provided with a discharge pipe. The corn wide-width dewatering double-tower continuous drying equipment adopts a double-tower drying design, has strong adaptability, adopts a double-tower serial process to dry corn with the dewatering range of more than 17 percent, adopts a parallel process to dry corn with the dewatering range of less than 17 percent, improves the adaptability of the drying equipment, and can achieve the purposes of quality guarantee and high-efficiency drying in a larger dewatering range.
Description
Technical Field
The utility model relates to the technical field of drying equipment, in particular to corn wide-width dewatering double-tower continuous drying equipment.
Background
The current continuous drying towers in northeast areas are designed with 15% -17% of precipitation amplitude, but the current corn moisture harvested in different years is obviously different along with the change of purchase mode and external conditions, the moisture of raw grains is usually changed between 25% -36%, the precipitation amplitude is changed between 11% -22% (target moisture 14%), if the precipitation amplitude is lower than 17%, the drying parameters can be adjusted, the corresponding yield can be adjusted, but the precipitation amplitude exceeds 17%, the yield is obviously reduced, the efficiency is reduced, the quality is poor, and if the drying towers with larger precipitation amplitude are designed and used, surplus and waste are caused for drying low-moisture corn, so that the development and design of drying process equipment with larger adaptation to the precipitation amplitude range are needed.
Therefore, it is necessary to provide a continuous drying device for corn wide-width dewatering double towers to solve the above problems.
Disclosure of utility model
The technical problems to be solved are as follows: the utility model aims to provide a corn wide-range dewatering double-tower continuous drying device, which aims to solve the problems that the existing drying device provided in the background technology is easy to cause obvious reduction of yield, reduction of efficiency and deterioration of quality when used for drying corn with a dewatering range exceeding 17%.
The technical scheme is as follows: in order to achieve the above purpose, the utility model is realized by the following technical scheme: the utility model provides a maize broad width precipitation twin-tower continuous type drying equipment, includes screening plant, row material pipe and conveyer belt, still includes two preceding drying towers of following the direction of delivery interval setting of conveyer belt, screening plant's output intercommunication has the three-way pipe, and two other ports of three-way pipe all communicate there is conveying mechanism, and two conveying mechanism's output communicates with the top of two drying towers respectively; the bottom of the drying tower is provided with a discharge pipe, an online moisture meter and an electromagnetic valve are sequentially arranged in the discharge pipe from top to bottom, the online moisture meter is in control connection with the electromagnetic valve, and the output end of the discharge pipe is positioned above the conveying belt; a transfer mechanism is arranged on the conveyor belt between the two drying towers, the transfer mechanism comprises baffle plates fixedly arranged on two sides of the conveyor belt, a fixed plate is fixedly arranged on one side, close to the rear drying tower, of the two baffle plates, and a discharge hole is formed in the bottom of the fixed plate; one end of the discharge pipe is communicated with the surrounding area between the two baffles, the other end of the discharge pipe is communicated with the input end of the conveying mechanism on the rear drying tower, and the opening and closing mechanisms are arranged in the discharge hole, the input end of the discharge pipe and the other two ports of the three-way pipe.
Preferably, the screening plant includes support frame, motor and screening section of thick bamboo, and screening section of thick bamboo level is placed at the top of support frame, and the upper portion of screening section of thick bamboo left end is equipped with the feed inlet, and the lower part of screening section of thick bamboo right-hand member is equipped with the bin outlet, bin outlet and three-way pipe intercommunication, and the drive shaft is installed in screening section of thick bamboo internal rotation, and the drive shaft is connected with motor drive, and along axial interval fixed mounting there being a plurality of stirring leaves in the drive shaft, the below fixed mounting of screening section of thick bamboo has the dust cover, and a plurality of screening holes have evenly been seted up to screening section of thick bamboo bottom in the dust cover surrounding area, and the below of dust cover is equipped with the collecting box.
Preferably, the support frame includes two pneumatic cylinders that set up in screening section of thick bamboo left end along longitudinal symmetry, still includes two bracing pieces that set up in screening section of thick bamboo right-hand member along longitudinal symmetry, and the top of pneumatic cylinder and bracing piece all is articulated with screening section of thick bamboo, and pneumatic cylinder and bracing piece are rectangle symmetric distribution.
Preferably, two the drying tower all adopts three independent air heaters to introduce the hot-blast air that the hot-blast furnace produced into the drying tower in, and three air heaters all have the air distribution door, and adjustable every fan is introduced the hot-blast temperature in the tower, all is equipped with waste gas exhaust passage on two drying towers, is equipped with 6 dry sections from the top down in the drying tower in proper order, and every air heater all communicates with two adjacent dry sections through U type pipe, and every dry section below all is equipped with the tempering section.
Preferably, the lower part of the drying tower is a cooling section, external cold air is introduced into the drying tower by an air cooler, the air cooler is connected with the cooling section of the drying tower through a cold air inlet pipe, one end of the U-shaped pipe, which is far away from the input end, of the cold air inlet pipe is sealed, and ventilation holes are uniformly formed in the part, which extends into the drying section, of the U-shaped pipe and the part, which extends into the cooling section, of the cold air inlet pipe.
Preferably, a material level indicator is arranged on the upper part of the uppermost drying section of the drying tower, and an electronic thermometer is arranged at the inlet end of the U-shaped pipe and the lower part of the cooling section of the drying tower.
Preferably, the conveying mechanism comprises a conveying belt and a bucket elevator, the input end of the conveying belt is positioned below the port of the three-way pipe, the output end of the conveying belt is positioned above the input end of the bucket elevator, the output end of the bucket elevator is communicated with a connecting pipe, and the other end of the connecting pipe is communicated with the drying tower.
Preferably, the output of three-way pipe is gone up the cover and is equipped with the cardboard, and the cavity has been seted up along vertical to cardboard, baffle and fixed plate's top, cavity and the inside intercommunication of three-way pipe on the cardboard, cavity and row material pipe intercommunication on the baffle, cavity and discharge gate intercommunication on the fixed plate, opening and shutting mechanism setting in the cavity.
Preferably, the opening and closing mechanism comprises two bosses, the two bosses are symmetrically and fixedly arranged on two opposite faces of the cavity, a connecting plate is slidably arranged above the bosses, clamping components are arranged on two sides of the connecting plate and are clamped in the cavity through the clamping components, a first spring is arranged between the bosses and the connecting plate, a partition plate is slidably arranged below the bosses, a T-shaped block is slidably arranged in the partition plate, the upper portion of the T-shaped block is fixedly connected with the connecting plate, and a plurality of third springs are arranged at intervals at the bottom of the T-shaped block.
Preferably, the clamping assembly comprises a clamping block and a moving block, wherein a sliding groove is vertically formed in the connecting plate, the moving block is slidably mounted in the sliding groove, an upper stop block and a lower stop block are arranged in the sliding groove above the moving block at vertical intervals, the upper stop block is fixedly connected with the side wall of the cavity, the lower stop block is fixedly connected with the connecting plate, a rubber band is fixedly connected between the lower stop block and the moving block, a mounting groove and an avoidance groove are horizontally arranged on the side wall of the cavity close to the sliding groove at intervals, the avoidance groove is communicated with the sliding groove, the clamping block is slidably mounted in the avoidance groove, a connecting rod is fixedly mounted on one side, away from the sliding groove, of the clamping block, the other end of the connecting rod extends into the mounting groove and is fixedly provided with a sliding block, and a second spring is arranged on one side, away from the connecting rod, of the sliding block.
The beneficial effects are that: compared with the prior art, the utility model provides the corn wide-range dewatering double-tower continuous drying equipment which is unique in structure, convenient to use, strong in adaptability and capable of achieving the purposes of quality guarantee and efficient drying in a larger dewatering range by adopting a double-tower drying design, adopting a double-tower serial process for drying corn with more than 17% of dewatering amplitude and adopting a parallel process for drying corn with less than 17% of dewatering amplitude.
Drawings
FIG. 1 is a schematic perspective view of the structure of the present utility model;
FIG. 2 is a schematic side perspective view of the structure of the present utility model;
FIG. 3 is a schematic cross-sectional view of a screen drum construction of the present utility model;
FIG. 4 is a schematic cross-sectional view of the opening and closing mechanism of the present utility model;
FIG. 5 is an enlarged schematic view of the structure of area A of FIG. 4 in accordance with the present utility model;
Fig. 6 is a schematic diagram of the working principle of the present utility model.
In the figure: 1. a sieving cylinder; 2. a drying tower; 3. a connecting pipe; 4. a conveyor belt; 5. bucket elevator; 6. a three-way pipe; 7. a baffle; 8. a motor; 9. a drive shaft; 10. stirring the leaves; 11. a dust cover; 12. screening holes; 13. a collection box; 14. a hydraulic cylinder; 15. a clamping plate; 16. a conveyor belt; 17. a material conveying pipe; 18. a fixing plate; 19. a boss; 20. a connecting plate; 21. a first spring; 22. a stop block; 23. a moving block; 24. an elastic band; 25. a slide block; 26. a second spring; 27. a connecting rod; 28. a clamping block; 29. a partition plate; 30. a T-shaped block; 31. and a third spring.
Detailed Description
The utility model will be further described with reference to the drawings and examples.
Example 1: this embodiment 1 provides a maize broad width precipitation twin tower continuous type drying equipment, directly improves on current drying equipment, and the structure is unique, please see the fig. 1-6 and show, including screening plant, conveying pipeline 17 and conveyer belt 4, still include two drying towers 2 around along the direction of delivery interval setting of conveyer belt 4, screening plant's output intercommunication has three-way pipe 6, and three-way pipe 6's other two ports all communicate there is conveying mechanism, and two conveying mechanism's output communicates with the top of two drying towers 2 respectively.
The screening plant includes support frame, motor 8 and screening section of thick bamboo 1, screening section of thick bamboo 1 level is placed at the top of support frame, screening section of thick bamboo 1 left end's upper portion is equipped with the feed inlet, screening section of thick bamboo 1 right-hand member's lower part is equipped with the bin outlet, bin outlet and three-way pipe intercommunication, screening section of thick bamboo 1 internal rotation is installed drive shaft 9, drive shaft 9 is connected with motor 8 transmission, there are a plurality of stirring leaf 10 along axial interval fixed mounting on drive shaft 9, screening section of thick bamboo 1's below fixed mounting has dust cover 11, a plurality of screening holes 12 have evenly been seted up to screening section of thick bamboo 1 bottom in the dust cover 11 surrounding area, the below of dust cover 11 is equipped with collecting box 13.
There are various ways in which the motor 8 is drivingly connected to the drive shaft 9, for example: the motor 8 fixed mounting is in the left end of screening section of thick bamboo 1, the left end of drive shaft 9 runs through screening section of thick bamboo 1, and pass through shaft coupling and the output fixed connection of motor 8, motor 8 orders about drive shaft 9 rotation, thereby drive stirring leaf 10 stir the maize in the screening section of thick bamboo 1, the maize is in the stirring in-process, the impurity granule that mixes in the maize can be separated out through screening hole 12, during operation, the lower extreme of dust cover 11 contradicts with the feed inlet of collecting box 13, thereby prevent the dust diffusion in the air during screening, and then make dust and granule impurity get into in the collecting box 13 through dust cover 11.
The conveying mechanism comprises a conveying belt 16 and a bucket elevator 5, the input end of the conveying belt 16 is positioned below the port of the three-way pipe 6, the output end of the conveying belt 16 is positioned above the input end of the bucket elevator 5, the output end of the bucket elevator 5 is communicated with a connecting pipe 3, and the other end of the connecting pipe 3 is communicated with the drying tower 2; the support frame comprises two hydraulic cylinders 14 which are symmetrically arranged at the left end of the screening cylinder 1 along the longitudinal direction, and two support rods which are symmetrically arranged at the right end of the screening cylinder 1 along the longitudinal direction, wherein the top ends of the hydraulic cylinders 14 and the support rods are hinged with the screening cylinder 1, and the hydraulic cylinders 14 and the support rods are symmetrically distributed in a rectangular shape; when screening is completed, the hydraulic cylinder 14 is started, and the output end of the hydraulic cylinder 14 extends out, so that the left end of the screening cylinder 1 is lifted, and corn in the screening cylinder 1 is completely discharged through a discharge port.
The bottom of the drying tower 2 is provided with a discharge pipe, an online moisture meter and an electromagnetic valve are sequentially arranged in the discharge pipe from top to bottom, the online moisture meter is in control connection with the electromagnetic valve, and the output end of the discharge pipe is positioned above the conveying belt 4; two drying towers 2 all adopt three independent air heaters to introduce the hot-blast air that the hot-blast furnace produced into the drying tower in, and three air heaters all have the air distribution door, and adjustable every fan is introduced the hot-blast temperature in the tower, all is equipped with the exhaust emission passageway on two drying towers 2, from the top down is equipped with 6 dry sections in proper order in the drying tower 2, and every air heater all communicates with two adjacent dry sections through U type pipe, and every dry section below all is equipped with the tempering section for balanced grain seed grain moisture guarantees dry quality.
The lower part of drying tower 2 is the cooling section, in introducing the drying tower with external cold wind by the air-cooler, for the high temperature grain cooling after the drying, guarantee to store safely, the air-cooler is connected with the cooling section of drying tower 2 through cold wind inlet tube, U type pipe and cold wind inlet tube keep away from the one end of input and seal, and the U type pipe is in the part that stretches into the drying section and cold wind inlet tube evenly be equipped with the bleeder vent in the part that stretches into the cooling section, the bottom of two drying towers 2 all is equipped with grain discharging mechanism, grain discharging mechanism belongs to prior art, for the motor drives the mode of dialling the material roller downwards pay-off through chain mechanism.
A transfer mechanism is arranged on the conveyor belt 4 between the two drying towers 2 and comprises baffle plates 7 fixedly arranged on two sides of the conveyor belt 4, a fixed plate 18 is fixedly arranged on one side, close to the rear drying tower, of the two baffle plates 7, and a discharge hole is formed in the bottom of the fixed plate 18; one end of the conveying pipe 17 is communicated with the surrounding area between the two baffles 7, the other end of the conveying pipe is communicated with the input end of a conveying mechanism on the rear drying tower, an opening and closing mechanism is arranged in the other two ports of the discharge hole, the input end of the conveying pipe 17 and the three-way pipe 6, one end of the conveying pipe 17 is communicated with the input end of the bucket elevator 5 on the rear drying tower, through holes are formed in the baffles 7 close to the bucket elevator 5, the other end of the conveying pipe 17 penetrates through the through holes and the surrounding area between the two baffles 7, and an included angle between the fixed plate 18 and the baffles 7 close to the bucket elevator 5 is an acute angle, so that corn can be gathered in the through holes.
The clamping plate 15 is sleeved on the output end of the three-way pipe 6, the clamping plate 15, the baffle 7 and the top of the fixed plate 18 are vertically provided with cavities, the cavities on the clamping plate 15 are communicated with the inside of the three-way pipe 6, the cavities on the baffle 7 are communicated with the conveying pipe 17, the cavities on the fixed plate 18 are communicated with the discharge hole, and the opening and closing mechanism is arranged in the cavities; the opening and closing mechanism comprises two bosses 19, the two bosses 19 are symmetrically and fixedly arranged on two opposite surfaces of the cavity, a connecting plate 20 is slidably arranged above the bosses 19, clamping components are arranged on two sides of the connecting plate 20 and are clamped in the cavity through the clamping components, a first spring 21 is arranged between the bosses 19 and the connecting plate 20, a partition 29 is slidably arranged below the bosses 19, a T-shaped block 30 is slidably arranged in the partition 29, the upper portion of the T-shaped block 30 is fixedly connected with the connecting plate 20, and a plurality of third springs 31 are arranged at intervals at the bottom of the T-shaped block 30.
The clamping assembly comprises a clamping block 28 and a moving block 23, wherein a sliding groove is formed in the connecting plate 20 along the vertical direction, the moving block 23 is slidably mounted in the sliding groove, an upper stop block 22 and a lower stop block 22 are arranged in the sliding groove above the moving block 23 along the vertical direction at intervals, the upper stop block is fixedly connected with the side wall of the cavity, the lower stop block is fixedly connected with the connecting plate 20, a rubber band 24 is fixedly connected between the lower stop block and the moving block 23, a mounting groove and an avoidance groove are formed in the side wall of the cavity, which is close to the sliding groove, of the sliding groove at intervals, the avoidance groove is communicated with the sliding groove, the clamping block 28 is slidably mounted in the avoidance groove, a connecting rod 27 is fixedly mounted on one side, which is far away from the sliding groove, of the clamping block 28, the other end of the connecting rod 27 extends into the mounting groove and is fixedly mounted with a sliding block 25, a second spring 26 is arranged on one side, which is far away from the connecting rod 27, and in an initial state, the second spring 26 pushes the clamping block 28 to extend into the sliding groove, and the moving block 23 is close to the lower stop block under the action of the rubber band 24.
If the corn with the dewatering amplitude lower than 17% is conveyed into a feed inlet of a screening cylinder 1 through a lifting machine, screened by the screening cylinder 1, enters a three-way pipe 6 through a discharge port, at the moment, the opening and closing mechanisms on two ports of a fixed plate 18 and the three-way pipe 6 are opened, the opening and closing mechanisms on a baffle 7 are closed, the corn is respectively conveyed into two drying towers 2 through a conveying belt 16 and a bucket type lifting machine 5 and filled with the corn, hot air provided in a hot air furnace is extracted by a hot air machine, enters the drying towers through air holes on a U-shaped pipe, and is fully contacted with grains, and moisture in the grains is evaporated, discharged into an exhaust gas discharge channel along with the exhaust gas and discharged through the exhaust gas discharge channel; corn in two drying towers top-down is 6 drying sections and is slow Su Duan respectively, and the corn is the drying of drying section, is introducing external cold wind into the drying tower by the air-cooler through the cooling section and cooling the corn, and the moisture appearance can detect the moisture of corn, and after moisture is qualified, the solenoid valve in two row material pipes is opened, discharges the tower body with corn through grain discharging mechanism, then carries the grain to the reservation place through conveyer belt 4.
In the initial state, the opening and closing mechanism is in a closed state, when the opening and closing mechanism is opened, the connecting plate 20 is only required to be pressed to move downwards, because in the initial state, the second spring 26 pushes the clamping block 28 to extend into the chute, so that in the downward movement process of the connecting plate 20, the lower stop block pushes the moving block 23 to abut against the inclined surface of the clamping block 28 until the clamping block 28 is extruded into the avoidance groove, then the connecting plate 20 is continuously moved downwards, the moving block 23 is positioned below the clamping block 28, at the moment, the clamping block 28 extends out, the connecting plate 20 is released, the first spring 21 pushes the connecting plate 20 to move upwards, in the upward movement process of the connecting plate 20, the clamping block 28 abuts against the inclined surface of the moving block 23, the moving block 23 is extruded, the moving block 23 abuts against the bottom surface of the chute, then under the action of the first spring 21, the moving block 23 presses the moving block 28 into the avoidance groove again, the connecting plate 20 continues to move upwards until the upper stop block 22 and the lower stop block 22 abut together, at the moment, the partition 29 enters into the cavity, and when the opening and closing mechanism is required to be closed, the connecting plate 28 is only required to be pressed again, so that the connecting plate 28 can be pushed into the chute to close, and the partition 29 can be closed.
If the corn with the dewatering amplitude being more than 17% is conveyed into a feed inlet of a screening cylinder 1 through a lifting machine, is screened by the screening cylinder 1, enters a three-way pipe 6 through a discharge hole, at the moment, opens an opening and closing mechanism on a baffle 7, opens an opening and closing mechanism on a port corresponding to a front drying tower, and enters the front drying tower through a conveying belt 16 and a bucket elevator 5 on the front drying tower, 6 drying sections and a buffer Su Duan are sequentially arranged in the front drying tower, at the moment, an air cooler in the front drying tower is closed, an electromagnetic valve in the front drying tower is opened after the corn is dried, the corn is discharged onto a conveying belt 4 through a grain discharging mechanism, the corn is conveyed into the bucket elevator 5 on a rear drying tower through a transfer mechanism, is conveyed into the rear drying tower through the bucket elevator 5 on the rear drying tower, is dried continuously in the rear drying tower, the extremely high air cooler in the rear drying tower is cooled through a cooling section, reaches target moisture, and is conveyed to a reserved place through the conveying belt 4, and the corn is equivalent to two drying towers 2, and the corn moisture flow can be dried in series.
Example 2: the difference between the embodiment 2 and the embodiment 1 is that as shown in fig. 6, the upper part of the uppermost drying section of the drying tower 2 is provided with a material level indicator, and the inlet end of the U-shaped pipe and the lower part of the cooling section of the drying tower 2 are provided with an electronic thermometer; the material level is used for detecting the height of grains in the drying tower 2 and the connecting pipe 3, so that the feeding and discharging are kept balanced, and the electronic thermometer is used for monitoring the temperature of hot air entering the tower and the temperature of grains when the drying tower 2 and the connecting pipe 3 are discharged.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (10)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421100093.0U CN222069194U (en) | 2024-05-20 | 2024-05-20 | Corn wide-width dewatering double-tower continuous drying equipment |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421100093.0U CN222069194U (en) | 2024-05-20 | 2024-05-20 | Corn wide-width dewatering double-tower continuous drying equipment |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222069194U true CN222069194U (en) | 2024-11-26 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202421100093.0U Active CN222069194U (en) | 2024-05-20 | 2024-05-20 | Corn wide-width dewatering double-tower continuous drying equipment |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222069194U (en) |
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2024
- 2024-05-20 CN CN202421100093.0U patent/CN222069194U/en active Active
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