CN214709490U - Motorized modular multipurpose piglet breeding system - Google Patents
Motorized modular multipurpose piglet breeding system Download PDFInfo
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- CN214709490U CN214709490U CN202121187250.2U CN202121187250U CN214709490U CN 214709490 U CN214709490 U CN 214709490U CN 202121187250 U CN202121187250 U CN 202121187250U CN 214709490 U CN214709490 U CN 214709490U
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Abstract
The utility model relates to a multi-purpose piglet farming systems of machine-moving modularization belongs to livestock farming technical field. The utility model comprises a container, which comprises a fan plate at the rear end, a door plate at the front end and box plates surrounding the periphery; the inner cavity of the container is divided into the following modules from bottom to top in sequence: the breeding columns are positioned on the bottom box plate, the water supply pipelines are positioned on the side box plates, and the ventilation pipelines are positioned on the top box plate, and each breeding column comprises a step column, a dung leaking plate and a guardrail, wherein the dung leaking plate and the guardrail are arranged on the column; the water supply pipeline comprises a water pipe laid along the inner wall of the container and a water feeder extending to the column position along the water pipe; the ventilation pipeline comprises a fan and an air pipe which is connected with the fan and laid along the top wall of the container, and two sides of the air pipe are respectively communicated with a fan plate and a door plate; by optimizing the container structure and adopting a motorized modular assembly mode, the occupied area is small; improve ventilation and drinking water pipeline, more accord with the high requirement that the porkling was bred.
Description
Technical Field
The utility model relates to a multi-purpose piglet farming systems of machine-moving modularization belongs to livestock farming technical field.
Background
In China, the development of the pig raising industry is always carried out in a mode of family contracting and scattered feeding, the method has limited yield, and a large amount of labor force is wasted. The death of the suckling piglets brings great loss to pig farmers, the most dangerous period of the newborn piglets is the first 3 days after birth, and about 60-80% of the deaths of the suckling piglets occur in the critical 3 days. Traditional piglet breeding has high requirements on environment, particularly difficulties caused by room temperature and drinking water temperature, and has large occupied area and waste of land resources. Therefore, a need exists for a versatile piglet farming system that solves the problems found in the prior art.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects in the prior art, the utility model provides a motorized modular multipurpose piglet breeding system, which optimizes the container structure, adopts a motorized modular assembly mode and has small occupied area; improve ventilation and drinking water pipeline, more accord with the high requirement that the porkling was bred.
The utility model discloses a motorized modular multipurpose piglet breeding system, which comprises a container for piglet breeding, wherein the container comprises a fan plate positioned at the rear end, a door plate positioned at the front end and a box plate surrounding the periphery; the inner cavity of the container is divided into the following modules from bottom to top in sequence: a cultivation column located on the bottom box plate, a water supply line located on the side box plate and a ventilation line located on the top box plate, wherein: the breeding columns comprise step columns, and dung leaking plates and guardrails which are arranged on the columns; the water supply pipeline comprises a water pipe laid along the inner wall of the container and a water feeder extending to the column position along the water pipe; the ventilation pipeline comprises a fan and air pipes which are connected with the fan and laid along the top wall of the container, and the two sides of each air pipe are respectively communicated with a fan plate and a door plate.
Preferably, the cultivation columns are divided into a plurality of cultivation areas at equal intervals, a corridor is arranged on one side of each cultivation area, and the corridor is isolated from the cultivation areas through guardrails; columns are arranged between the adjacent culture areas at intervals, and the excrement leaking plate is located below the steps of the columns and moves back and forth along the bottoms of the adjacent culture areas.
Preferably, the water feeder in the culture area is connected with a water tank arranged on one side of the door plate through a water pipe, a temperature sensor and a heating wire are installed in the water feeder, and the temperature of drinking water flowing out of the water feeder is kept constant.
Preferably, the fan plate comprises a plate body and a fan positioned on the plate body, and the fan uniformly discharges outside air into the container through a ventilation pipeline.
Preferably, the ventilation pipeline is further provided with a heat exchange fan, and the temperature difference of the indoor air is kept small by the heat exchange fan through the air entering the ventilation pipeline by the fan.
Preferably, the container, the cultivation columns, the water supply pipeline and the ventilation pipeline are all arranged in a modularized mode and are assembled and installed on site.
The utility model has the advantages that: the utility model discloses a motorized modular multipurpose piglet breeding system, which takes a container as a unit, effectively ensures the smooth growth of piglets and reduces the infection sources; the average space of the breeding columns is large, so that the piglets are prevented from being extruded; the ventilation and drinking water pipeline is improved, the heat exchange fan and the constant-temperature water feeder are added, the room temperature and the water temperature are controlled in a high-precision environment, and the high requirements of piglet breeding are met.
Drawings
Fig. 1 is a schematic structural view of a module in a container cavity before assembly.
Fig. 2 is a schematic view of the assembled modules in the container cavity.
Fig. 3 is a schematic view of the structure of the container.
In the figure: 1. a boxboard; 2. a fan plate; 3. a door panel; 4. a ventilation line; 5. a water supply line; 6. and (5) breeding columns.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Example 1:
as shown in fig. 1 to 3, the motorized modular multi-purpose piglet cultivation system of the present invention comprises a container for piglet cultivation, wherein the container comprises a blower plate 2 at the rear end, a door plate 3 at the front end and a box plate 1 surrounding the periphery; the inner cavity of the container is divided into the following modules from bottom to top in sequence: a breeding column 6 on the bottom box board 1, a water supply line 5 on the side box board 1 and a ventilation line 4 on the top box board 1, wherein: the breeding column 6 comprises a step column, a dung leaking plate and a guardrail which are arranged on the column; the water supply pipeline 5 comprises a water pipe laid along the inner wall of the container and a water feeder extending to the column position along the water pipe; the ventilation pipeline 4 comprises a fan and air pipes which are connected with the fan and laid along the top wall of the container, and the two sides of each air pipe are respectively communicated with the fan plate 2 and the door plate 3.
The cultivation columns 6 are divided into a plurality of cultivation areas at equal intervals, and a corridor is arranged on one side of each cultivation area and is isolated from the cultivation areas through guardrails; columns are arranged between the adjacent culture areas at intervals, and the excrement leaking plate is located below the steps of the columns and moves back and forth along the bottoms of the adjacent culture areas. The main structure uses a 20-size standard container, the column is placed on one side, the living space of piglets is large, and the piglets are effectively prevented from being extruded; a certain height is reserved at the bottom to serve as a feces leakage space, and feces can be automatically discharged only by connecting a pipe for supplying water.
The water feeder in the breeding area is connected with a water tank arranged on one side of the door plate 3 through a water pipe, a temperature sensor and a heating wire are installed in the water feeder, and the temperature of drinking water flowing out of the water feeder is kept constant. The high-grade piglet lactation machine is used for feeding piglets, so that sows can be simulated to call to attract the piglets to drink milk, and each machine can supply 14 piglets to drink milk at most at the same time; the machine is heated at constant temperature and automatically stirred; the bottom is equipped with religion silo, and supplementary piglet ablactates sooner.
The fan plate 2 comprises a plate body and a fan positioned on the plate body, and the fan uniformly discharges outside air into the container through the ventilation pipeline 4. Use a 18 cun negative-pressure air fan side wall to exhaust in summer and spring and autumn, the cooperation blast pipe carries out the negative pressure air supply, uses the blast pipe can evenly send into the air, effectively prevents that summer wind from blowing to lead to the piglet to loose.
The ventilation pipeline is also provided with a heat exchange fan, and the air entering the ventilation pipeline 4 through the fan keeps the indoor air temperature difference small through the heat exchange fan. Considering that the piglets are sensitive to temperature and wind speed changes, the wind system in winter uses the Haier high-efficiency heat exchange fan as winter ventilation, so that the breathing capacity of the piglets in winter is ensured, meanwhile, the temperature difference of air fed into a room in winter is small, and the piglets are prevented from being cooled to cause diseases.
The container, the breeding columns 6, the water supply pipeline 5 and the ventilation pipeline 4 are all arranged in a modularized mode and are assembled and installed on site. And a motorized modular assembly mode is adopted, so that the occupied area is small.
The utility model discloses a motorized modular multipurpose piglet breeding system, which takes a container as a unit, effectively ensures the smooth growth of piglets and reduces the infection sources; the average space of the breeding columns 6 is large, so that piglets are prevented from being extruded; the ventilation and drinking water pipeline is improved, the heat exchange fan and the constant-temperature water feeder are added, the room temperature and the water temperature are controlled in a high-precision environment, and the high requirements of piglet breeding are met.
The utility model discloses can extensively apply to the livestock-raising system occasion.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (6)
1. A kind of mechanical module multi-purpose piglet breeding system, including the container used for piglet to breed, characterized by that, the container includes the blower board (2) located in rear end, door plant (3) located in front end and surrounding the boxboard (1); the inner cavity of the container is divided into the following modules from bottom to top in sequence: -a cultivation column (6) on the bottom box board (1), -a water supply line (5) on the side box board (1) and-a ventilation line (4) on the top box board (1), wherein: the breeding column (6) comprises a step column, a dung leaking plate and a guardrail which are arranged on the column; the water supply pipeline (5) comprises a water pipe laid along the inner wall of the container and a water feeder extending to the column position along the water pipe; the ventilation pipeline (4) comprises a fan and air pipes which are connected with the fan and laid along the top wall of the container, and the two sides of each air pipe are respectively communicated with the fan plate (2) and the door plate (3).
2. The motorized modular multi-purpose piglet farming system according to claim 1, wherein the farming columns (6) are equally spaced into farming zones, one side of which is provided with a corridor isolated from the farming zones by guardrails; columns are arranged between the adjacent culture areas at intervals, and the excrement leaking plate is located below the steps of the columns and moves back and forth along the bottoms of the adjacent culture areas.
3. The motorized modular multi-purpose piglet cultivation system according to claim 2, wherein the water feeder in the cultivation area is connected with a water tank placed on one side of the door panel (3) through a water pipe, a temperature sensor and a heating wire are installed in the water feeder, and the temperature of drinking water flowing out of the water feeder is kept constant.
4. The motorized modular multi-purpose piglet farming system according to claim 1, wherein the fan board (2) comprises a board body and a fan on the board body that discharges ambient air evenly into the container via the ventilation pipe (4).
5. Motorized modular multi-purpose porkling breeding system according to claim 1, characterized in that said ventilation pipe is further fitted with a heat exchange fan via which the air entering the ventilation pipe (4) through the fan keeps the indoor air temperature difference small.
6. The motorized modular multi-purpose piglet farming system according to claim 1, wherein the containers, the farming columns (6), the water supply lines (5), and the ventilation lines (4) are all modularly arranged and assembled and installed on site.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121187250.2U CN214709490U (en) | 2021-05-31 | 2021-05-31 | Motorized modular multipurpose piglet breeding system |
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CN202121187250.2U CN214709490U (en) | 2021-05-31 | 2021-05-31 | Motorized modular multipurpose piglet breeding system |
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CN214709490U true CN214709490U (en) | 2021-11-16 |
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CN202121187250.2U Active CN214709490U (en) | 2021-05-31 | 2021-05-31 | Motorized modular multipurpose piglet breeding system |
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2021
- 2021-05-31 CN CN202121187250.2U patent/CN214709490U/en active Active
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