CN119256781B - Segmented cultivation management unit of farm - Google Patents
Segmented cultivation management unit of farmInfo
- Publication number
- CN119256781B CN119256781B CN202411410732.8A CN202411410732A CN119256781B CN 119256781 B CN119256781 B CN 119256781B CN 202411410732 A CN202411410732 A CN 202411410732A CN 119256781 B CN119256781 B CN 119256781B
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- CN
- China
- Prior art keywords
- sleeve
- tower body
- feeding pipeline
- pipeline
- cultivation
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01F—PROCESSING OF HARVESTED PRODUCE; HAY OR STRAW PRESSES; DEVICES FOR STORING AGRICULTURAL OR HORTICULTURAL PRODUCE
- A01F25/00—Storing agricultural or horticultural produce; Hanging-up harvested fruit
- A01F25/16—Arrangements in forage silos
- A01F25/163—Arrangements in forage silos in tower silos
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01F—PROCESSING OF HARVESTED PRODUCE; HAY OR STRAW PRESSES; DEVICES FOR STORING AGRICULTURAL OR HORTICULTURAL PRODUCE
- A01F25/00—Storing agricultural or horticultural produce; Hanging-up harvested fruit
- A01F25/16—Arrangements in forage silos
- A01F25/18—Loading or distributing arrangements
- A01F25/183—Loading arrangements
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01F—PROCESSING OF HARVESTED PRODUCE; HAY OR STRAW PRESSES; DEVICES FOR STORING AGRICULTURAL OR HORTICULTURAL PRODUCE
- A01F25/00—Storing agricultural or horticultural produce; Hanging-up harvested fruit
- A01F25/16—Arrangements in forage silos
- A01F25/20—Unloading arrangements
- A01F25/2018—Bottom unloading units for tower silos
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01F—PROCESSING OF HARVESTED PRODUCE; HAY OR STRAW PRESSES; DEVICES FOR STORING AGRICULTURAL OR HORTICULTURAL PRODUCE
- A01F25/00—Storing agricultural or horticultural produce; Hanging-up harvested fruit
- A01F25/16—Arrangements in forage silos
- A01F25/22—Ventilating arrangements
Landscapes
- Life Sciences & Earth Sciences (AREA)
- Environmental Sciences (AREA)
- Feeding And Watering For Cattle Raising And Animal Husbandry (AREA)
- Fodder In General (AREA)
Abstract
The invention relates to a segmented cultivation management unit of a cultivation farm, which designs silage equipment aiming at a cultivation mode of the segmented cultivation management unit, and comprises a tower body structure formed by combining a metal shell and a nonmetal lining, wherein a feeding pipeline extending to the top is arranged at the center in the tower body, a discharging pipeline is arranged at the bottom of the tower body, the whole of the tower body adopts a working mode of center feeding, top lifting and bottom discharging in the tower, and an automatic material pressing device for compacting materials is arranged outside the feeding pipeline in the tower body.
Description
Technical Field
The invention relates to the technical field of livestock raising, in particular to a segmented cultivation management unit of a farm.
Background
The traditional livestock raising generally adopts an integrated raising mode, namely, the livestock in all areas and different raising periods in a field are mixed together for raising, certain adverse factors exist for actual raising effects, the feeds required for raising the livestock in different raising periods comprise different growing environments, and the raising mode advocated by modern fine raising is a raising mode, so that the concept of segmented raising is introduced, the livestock in different raising periods are raised in segments, and the functional areas of the livestock are divided. Wherein, the preparation area of the breeding feed needs to be improved.
The fodder is a very important link, in the season of fodder growth, fresh fodder is good natural fodder, but in the season of hay, high-quality fodder can be relatively deficient, in order to solve this phenomenon, a silage method is selected in livestock raising, it is to compact and seal fresh plant variety, make the stored fodder isolate with outside air, ferment with the lactic acid of plant itself, change the soluble nutrient substance therein into organic acid, and keep its moisture content, in order to achieve the purpose of preserving fodder. For domestic animals with different cultivation periods, silage of different types and fermentation periods of the silage can be matched according to a plan, but the conventional silage has certain difficulty in matching domestic animals with different cultivation periods.
At present, a plurality of silage facilities and modes mainly comprise a silage pit, a silage tower and a silage bag, wherein the silage pit is one of the most widely applied modes, and the silage pit is in a piling mode, or is built on the ground surface or is partly built underground, piled fermentation is carried out on forage grass, the silage bag is a fermentation mode of filling the forage grass into the silage tower through a plastic bag, and the silage tower is a fermentation mode of filling the forage grass into the tower body.
The whole silage tower area is smaller, the packing is compact, the air content is low, and the storage quality is better, but the silage tower is a tower body built by adopting concrete, so that the manufacturing cost is relatively high, and the silage tower is difficult to move once built, so that more silage towers are applied to large pastures, medium pastures and small pastures are difficult to bear, and the advantages of the silage tower cannot be well exerted.
The above description of the silage tower also proves that silage has certain difficulty in matching the specific situation of the breeding population when the silage is bred by the zoned breeding management unit.
Disclosure of Invention
The invention relates to a segmented cultivation management unit of a cultivation farm, which designs silage equipment aiming at a cultivation mode of the segmented cultivation management unit, and comprises a tower body structure formed by combining a metal shell and a nonmetal lining, wherein a feeding pipeline extending to the top is arranged at the center in the tower body, a discharging pipeline is arranged at the bottom of the tower body, the whole of the tower body adopts a working mode of center feeding, top lifting and bottom discharging in the tower, and an automatic material pressing device for compacting materials is arranged outside the feeding pipeline in the tower body.
In order to achieve the above purpose, the present invention adopts the following technical scheme:
A sheet-region cultivation management unit of a cultivation farm comprises a feed preparation area and a silage tower arranged in the area, wherein the silage tower comprises a tower body, a feeding part, a discharging part and an automatic material pressing device, the tower body comprises a metal shell and a nonmetal lining, the lining is combined with the shell and is arranged, the feeding part comprises a feeding pipeline arranged at the center of the inside of the tower body, the top of the feeding pipeline extends to the top of the tower body, an umbrella-shaped blanking plate with a downward opening is arranged at the top of the feeding pipeline to drive materials to be thrown downwards from the top of the tower body, the discharging part is arranged at the bottom of the tower body, and the automatic material pressing device is arranged outside the feeding pipeline.
The automatic material pressing device comprises a plurality of annular pressing rollers which are uniformly distributed, wherein the pressing rollers alternately lift to realize compaction operation of materials, and the pressing rollers alternately lift and rotate around a feeding pipeline to enable the pressing rollers to perform omnibearing compaction operation on the materials.
Further, the automatic material pressing device also comprises a sleeve and a support arm arranged on the sleeve, a plurality of support arms corresponding to the press roller are arranged on the sleeve, and a lever arm is hinged below the end part of the support arm; the middle part of the lever arm is hinged to the lower part of the support arm, a connecting rod vertically arranged is hinged to the lower part of the outer end part of the lever arm, the lower part of the connecting rod is hinged to the upper part of the middle part of the press roller, a supporting sleeve is further arranged on the sleeve, the supporting sleeve supports and drives the inner end part of the lever arm, and the press roller is driven to lift through the leverage of the lever arm.
Further, a shaft sleeve is arranged at a position, close to the sleeve, on the support arm, a support rod is arranged in the shaft sleeve, the support rod slides up and down in the shaft sleeve, a strip-shaped groove corresponding to the bottom of the support rod is arranged above the inner side of the lever arm, the top of the support rod corresponds to the bottom of the support sleeve, the bottom of the support sleeve is provided with bulges and pits which are uniformly distributed, the support sleeve is driven by a driving motor arranged on the sleeve, and the driving motor and the support sleeve are driven by a gear set.
Further, the press rollers and the corresponding support arms, lever arms, connecting rods and support rods are provided with even groups which are uniformly distributed, the number of protrusions corresponding to the bottom surface of the support sleeve is half of the number of the press rollers, namely, the tops of the support rods corresponding to the adjacent press rollers respectively correspond to the protrusions and the depressions of the bottom surface of the support sleeve.
Furthermore, a locating sleeve is arranged outside the feeding pipeline, guide rails which are vertically and uniformly distributed are arranged inside the locating sleeve, guide grooves corresponding to the guide rails are formed in the feeding pipeline, the locating sleeve slides up and down outside the feeding pipeline through the matching of the guide rails and the guide grooves, the top of the sleeve is sleeved at the bottom of the locating sleeve, and the outer side of the sleeve is also provided with another driving motor which enables the sleeve and the locating sleeve to rotate relatively through gear transmission.
The inner lining is integrally made of plastic materials, is of a double-layer structure, and is supported by uniformly distributed reinforcing ribs.
Further, each reinforcing rib comprises a plurality of groups which are uniformly distributed, each group of reinforcing ribs is provided with two V-shaped symmetrically arranged cavities which are formed by the reinforcing ribs and are used for forming two groups of opposite cavities at intervals, each group of cavities comprises a plurality of triangular cavities which are uniformly distributed, guide cylinders are arranged at the tops of the cavities, the guide cylinders corresponding to the two groups of cavities are respectively connected to two annular pipelines, and the pipelines are led out of the shell through the guide pipes.
Further, the inner wall of the lining is provided with uniformly distributed air holes, the air holes are vertically arranged, the air holes correspond to the cavity on the outer side, and the air holes penetrate through to the top point of the cavity on the outer side.
The discharging part comprises a square pipeline which is transversely arranged, the square pipeline corresponds to an area between the feeding pipeline and the inner wall of the lining, a baffle which is vertically arranged is arranged at a position, corresponding to the shell, on the square pipeline, the baffle is movable up and down to close and open the shell, a push plate is arranged on one side of the pipeline, and the push plate is supported by a hydraulic rod.
The technical scheme adopted by the invention has the following beneficial effects:
The device abandons the traditional masonry type silage tower structure, can firstly perform prefabrication production and field installation, can adjust the size according to the requirement, greatly reduces the overall manufacturing cost compared with the traditional masonry structure, can adjust the installation position according to the requirement, has stronger flexibility, has excellent advantages when cultivating in a slice region, can set a plurality of silage towers for fermenting different types of feeds, or can select feeds with different fermentation periods and fermentation degrees according to domestic animals in different slice regions for feeding.
The automatic pressing device is further arranged in the silage tower, compaction operation is automatically achieved in actual use, and good automatic effect is achieved by the whole equipment.
In addition, bilayer structure's inside lining combines the inside cavity structure of inside lining can realize the regulation to the interior material environment of tower, if pours into the water of different temperatures into in the cavity and realizes the regulation of interior material temperature of tower into, perhaps pours into the tower through the cavity and does not contain oxygen gas in order to take away the high gas etc. in the tower into, compares with traditional silage mode, has realized controllable regulation effect.
Drawings
FIG. 1 is a schematic diagram of the present invention.
Fig. 2 is a schematic view of an automatic pressing device.
Fig. 3 is a schematic diagram illustrating the disassembly of the automatic pressing device.
Fig. 4 is a partial cross-sectional view of the present invention.
Fig. 5 is a schematic view of the liner.
Fig. 6 is a schematic view of the liner disassembled.
Detailed Description
The present application will be further described with reference to the accompanying drawings and examples, it being understood that the following examples are only one or more of the forms of the application and are not intended to limit the application to the full scope of the application, and any modifications known to those skilled in the art based on the application or the technical solutions described herein shall fall within the scope of the application claimed.
The directions such as up, down, left, right, front, back, etc. presented in the embodiments are merely for convenience of description of the technical solution, and are not absolutely limited unless otherwise stated.
A segmented cultivation management unit of a cultivation farm comprises a feed preparation area and a silage tower arranged in the area, wherein the silage tower comprises a tower body 1, a feeding part 2, a discharging part 3 and an automatic material pressing device 4, the tower body 1 comprises a metal shell 101 and a nonmetallic lining 102, the lining 102 is combined with the shell 101 and is arranged, the feeding part 2 comprises a feeding pipeline 201 arranged in the center of the inside of the tower body 1, the top of the feeding pipeline 201 extends to the top of the tower body 1, an umbrella-shaped blanking plate 202 with a downward opening is arranged at the top of the feeding pipeline 201 and drives materials to be thrown downwards from the top of the tower body 1, the discharging part 3 is arranged at the bottom of the tower body 1, and the automatic material pressing device 4 is arranged outside the feeding pipeline 201.
The automatic material pressing device 4 comprises a plurality of annular pressing rollers 401 which are uniformly distributed, wherein the pressing rollers 401 alternately lift to realize compaction operation of materials, and the pressing rollers 401 rotate around the feeding pipeline 201 while alternately lifting, so that the pressing rollers 401 perform omnibearing compaction operation on the materials.
Further, the automatic material pressing device 4 further comprises a sleeve 402 and support arms 403 arranged on the sleeve 402, the support arms 403 are provided with a plurality of support arms 404 corresponding to the press roller 401 on the sleeve 402, the lower parts of the end parts of the support arms 403 are hinged with lever arms 404, the middle parts of the lever arms 404 are hinged with the lower parts of the support arms 403, the lower parts of the outer side end parts of the lever arms 404 are hinged with connecting rods 405 which are vertically arranged, the lower parts of the connecting rods 405 are hinged with the upper parts of the middle parts of the press roller 401, the sleeve 402 is further provided with a supporting sleeve 406, the supporting sleeve 406 supports and drives the inner side end parts of the lever arms 404, and the press roller 401 is driven to lift through the leverage of the lever arms 404.
Further, a shaft sleeve 407 is disposed on the support arm 403 near the sleeve 402, a support rod 408 is disposed in the shaft sleeve 407, the support rod 408 slides up and down in the shaft sleeve 407, a strip-shaped groove 409 corresponding to the bottom of the support rod 408 is disposed above the inner side of the lever arm 404, the top of the support rod 408 corresponds to the bottom of the support sleeve 407, the bottom of the support sleeve 407 is uniformly distributed with protrusions and depressions, the support sleeve 407 is driven by a first driving motor 410 disposed on the sleeve 402, and the first driving motor 410 and the support sleeve 407 are driven by a gear set.
Further, the pressing roller 401 and the corresponding arms 403, lever arms 404, connecting rods 405, and supporting rods 408 are provided with even groups which are uniformly distributed, and the number of protrusions corresponding to the bottom surface of the supporting sleeve 406 is half of the number of the pressing roller 401, that is, the tops of the supporting rods 408 corresponding to the adjacent pressing roller 401 respectively correspond to the protrusions and the depressions on the bottom surface of the supporting sleeve 406.
Furthermore, a positioning sleeve 411 is further arranged outside the feeding pipeline 201, a guide rail 412 which is vertically and uniformly distributed is arranged inside the positioning sleeve 411, a guide groove 203 corresponding to the positioning sleeve is arranged on the feeding pipeline 201, the positioning sleeve 411 slides up and down outside the feeding pipeline 201 through the matching of the guide rail 412 and the guide groove 203, the top of the sleeve 402 is sleeved at the bottom of the positioning sleeve 411, a second driving motor 413 is further arranged outside the sleeve 402, the second driving motor 413 enables the sleeve 402 and the positioning sleeve 411 to rotate relatively through gear transmission, namely, the first driving motor 410 and the second driving motor 413 are symmetrically arranged on the sleeve 402, the second driving motor 413 faces to the upper portion, an external gear is arranged outside the positioning sleeve 411, a gear meshed with the external gear is arranged on a motor shaft of the second driving motor 413, and further relative rotation of the sleeve 402 and the positioning sleeve 411 is achieved through the second driving motor 413.
The whole lining 102 adopts plastic material to prepare, and lining 102 is bilayer structure, adopts evenly distributed's strengthening rib 103 to support between two-layer lining 102.
Further, the reinforcing ribs 103 comprise a plurality of groups which are uniformly distributed, each group of reinforcing ribs 103 is provided with two V-shaped symmetrically arranged cavities 104 which are formed by two groups of opposite double-layer inner liners 102 at intervals by the reinforcing ribs 103, each group of cavities 104 comprises a plurality of triangular cavities 104 which are uniformly distributed, guide barrels 105 are arranged at the tops of the cavities 104, the guide barrels 105 corresponding to the two groups of cavities 104 are respectively connected to two annular pipelines 106, and the pipelines 106 are led out of the shell 101 through the guide barrels 107.
Further, uniformly distributed air holes 108 are formed in the inner wall of the liner 102, the air holes 108 are vertically arranged, the air holes 108 correspond to the outer cavity 104, and the air holes 108 penetrate to the top of the outer cavity 104.
The two groups of cavities 104 are oppositely arranged, the contact area between the inner cavity 104 and the internal materials is larger, so that the temperature regulation can be realized by injecting water with corresponding temperature into the inner cavity, the contact area between the outer cavity 104 and the internal materials is smaller, and the air holes 108 communicated with the inside of the tower are arranged.
The discharging part 3 comprises a square pipeline 301 which is transversely arranged, the square pipeline 301 corresponds to an area between the feeding pipeline 201 and the inner wall of the lining 102, a baffle 302 which is vertically arranged is arranged at a position, corresponding to the shell 101, on the square pipeline 301, the baffle 302 is vertically movable to close and open the shell 101, a push plate 303 is arranged on one side of the pipeline 301, and the push plate 303 is supported through a hydraulic rod 304.
When the device is used, materials are fed into the tower body from the feeding pipeline in a manner of pneumatic conveying, the materials are thrown downwards from the top in the tower, the automatic pressing device works, the pressing rollers reciprocate up and down under the driving of the supporting rods, the up-and-down motions of the adjacent pressing rollers are opposite, the effect similar to that of a person stepping is formed, meanwhile, the pressing wheels rotate along the feeding pipeline under the driving of the sleeve, and all-round compaction operation is carried out on surrounding materials.
The material can monitor the environmental condition in the process of silage fermentation, and perform relevant operation of auxiliary heating or cooling according to the situation, mainly fill water into the cavity through the pipeline, or realize through the form of pipeline to the internal air supply of tower, when not needing above operation, with the pipe shutoff can, carry out corresponding operation to it when required. When the air hole is used for blowing air into the tower, the feeding pipeline can be opened, and when the tower is required to be sealed, the feeding pipeline and the corresponding guide pipe of the air hole are plugged.
When the discharging, open the baffle, then control the hydraulic stem with the push pedal push into the tower in carry out the pushing away the material can, the material is sent out from the opposite direction pipeline to in the discharging process, if after pushing out some materials, when other materials are too tight inconvenient to discharge, also can open automatic press device, carry the material of bottom through press device's vibration.
In the process of the zoned cultivation management, a plurality of groups of silage towers can be arranged, different feeds are filled in the silage towers, the silage towers are fermented to different degrees, and the feed in the corresponding towers is selected for feeding according to the requirements during feeding. Silage towers can be made into different sizes and are of movable structures, so that flexibility in installation and use is improved.
Claims (5)
1. The zoned cultivation management unit of the cultivation farm comprises a feed preparation area and a silage tower arranged in the area, and is characterized in that the silage tower comprises a tower body, a feeding part, a discharging part and an automatic material pressing device, wherein the tower body comprises a metal shell and a nonmetallic lining, and the lining is combined with the shell; the feeding part comprises a feeding pipeline arranged at the center of the inside of the tower body, the top of the feeding pipeline extends to the top of the tower body, an umbrella-shaped blanking plate with a downward opening is arranged at the top of the feeding pipeline to drive materials to drop downwards from the top of the tower body, the discharging part is arranged at the bottom of the tower body, the automatic material pressing device is arranged outside the feeding pipeline, the automatic material pressing device comprises a plurality of annular pressure rollers which are uniformly distributed, the pressure rollers alternately lift to realize compaction operation on the materials, the pressure rollers alternately lift and rotate around the feeding pipeline to enable the pressure rollers to perform omnibearing compaction operation on the materials, the automatic material pressing device also comprises a sleeve and a support arm arranged on the sleeve, a plurality of support arms corresponding to the pressure rollers are arranged on the sleeve, a lever arm is hinged below the end part of the support arm, a connecting rod vertically arranged below the outer end part of the lever arm is hinged above the middle part of the pressure roller, a supporting sleeve is further arranged on the sleeve and supports and drives the inner end part of the lever arm to lift through the lever arm, the upper part of the upper side of the lever arm is provided with a shaft sleeve which is close to the bottom of the support rod, the support rod is arranged on the bottom of the support arm corresponding to the support rod sleeve, the bottom surface of the supporting sleeve is provided with evenly distributed protrusions and depressions, the supporting sleeve is driven by a driving motor arranged on a sleeve, the driving motor and the supporting sleeve are driven by a gear set, the pressing rollers, corresponding supporting arms, lever arms, connecting rods and supporting rods are provided with evenly distributed even groups, the number of protrusions corresponding to the bottom surface of the supporting sleeve is one half of that of the pressing rollers, namely the tops of the supporting rods corresponding to the adjacent pressing rollers are respectively corresponding to the protrusions and depressions on the bottom surface of the supporting sleeve, a positioning sleeve is further arranged outside a feeding pipeline, guide rails which are vertically and evenly distributed are arranged inside the positioning sleeve, the feeding pipeline is provided with guide grooves corresponding to the positioning sleeve, the positioning sleeve slides up and down outside the feeding pipeline through the cooperation of the guide rails and the guide grooves, the top of the sleeve is sleeved at the bottom of the positioning sleeve, and the other driving motor is further arranged outside the sleeve and drives the sleeve and the positioning sleeve to rotate relatively through gear transmission.
2. The segmented cultivation management unit of the cultivation farm according to claim 1, wherein the inner lining is integrally made of plastic materials, the inner lining is of a double-layer structure, and reinforcing ribs which are uniformly distributed are used for supporting the inner lining.
3. The segmented cultivation management unit of the cultivation farm according to claim 2, wherein the reinforcing ribs comprise a plurality of groups which are uniformly distributed, each group of reinforcing ribs is provided with two cavities which are symmetrically arranged in a V shape and are arranged in a two-layer inner lining mode at intervals, each group of cavities comprises a plurality of cavities which are uniformly distributed and are in a triangular shape, guide cylinders are arranged at the tops of the cavities, the guide cylinders corresponding to the two groups of cavities are respectively connected to two annular pipelines, and the pipelines are led out of the shell through the guide pipes.
4. A segmented cultivation management unit of a farm according to claim 3, wherein the inner wall of the liner is provided with uniformly distributed air holes, the air holes are vertically arranged, the air holes correspond to the outer cavity, and the air holes penetrate to the top points of the outer cavity.
5. The segmented cultivation management unit of a cultivation farm according to claim 4, wherein the discharging portion comprises a square pipeline which is transversely arranged, the square pipeline corresponds to an area between the feeding pipeline and the inner wall of the lining, a baffle which is vertically arranged is arranged on the square pipeline and corresponds to the shell, the baffle is movable up and down to close and open the shell, a push plate is arranged on one side of the pipeline, and the push plate is supported through a hydraulic rod.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202411410732.8A CN119256781B (en) | 2024-10-10 | 2024-10-10 | Segmented cultivation management unit of farm |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202411410732.8A CN119256781B (en) | 2024-10-10 | 2024-10-10 | Segmented cultivation management unit of farm |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| CN119256781A CN119256781A (en) | 2025-01-07 |
| CN119256781B true CN119256781B (en) | 2026-04-14 |
Family
ID=94109339
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202411410732.8A Active CN119256781B (en) | 2024-10-10 | 2024-10-10 | Segmented cultivation management unit of farm |
Country Status (1)
| Country | Link |
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| CN (1) | CN119256781B (en) |
Citations (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN206963965U (en) * | 2017-06-08 | 2018-02-06 | 商丘职业技术学院 | A kind of humulus grass ensilage process equipment |
Family Cites Families (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| FR2443796A1 (en) * | 1978-12-12 | 1980-07-11 | Bourrieu Philippe | PROCESS AND DEVICE FOR SILAGE FORAGE |
| CN207612696U (en) * | 2017-12-08 | 2018-07-17 | 湖北旺发粮油有限公司 | Cereal storage facilities |
| KR101936015B1 (en) * | 2018-05-25 | 2019-01-07 | 문관형 | Formulated feed mixture silo for pig farm |
| CN215223245U (en) * | 2021-07-02 | 2021-12-21 | 广西壮族自治区畜牧研究所 | a silage facility |
| CN217850257U (en) * | 2022-05-10 | 2022-11-22 | 清涧亿蓬食品有限公司 | Silage device for livestock breeding |
| CN116491309A (en) * | 2023-05-12 | 2023-07-28 | 酒泉阿树农牧生物科技有限公司 | Silage preparation tower of livestock-raising |
-
2024
- 2024-10-10 CN CN202411410732.8A patent/CN119256781B/en active Active
Patent Citations (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN206963965U (en) * | 2017-06-08 | 2018-02-06 | 商丘职业技术学院 | A kind of humulus grass ensilage process equipment |
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| CN119256781A (en) | 2025-01-07 |
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