CN210382222U - Dry wet silo of intelligence - Google Patents
Dry wet silo of intelligence Download PDFInfo
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- CN210382222U CN210382222U CN201920929912.5U CN201920929912U CN210382222U CN 210382222 U CN210382222 U CN 210382222U CN 201920929912 U CN201920929912 U CN 201920929912U CN 210382222 U CN210382222 U CN 210382222U
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- pipeline
- electric control
- wet
- drinking nozzle
- control valve
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Abstract
The application discloses an intelligent dry and wet trough which comprises a material basin, a material barrel, a first pipeline, a second pipeline, a first sensor, a drinking nozzle and an electric control valve, wherein the material barrel comprises a discharge port; and when the electric control valve is in a power-on state, the second pipeline is in circuit break with the drinking nozzle, and when the electric control valve is in a power-off state, the second pipeline is in circuit break with the drinking nozzle. The utility model provides a wet silo is done to intelligence all can normally supply water under power supply or outage state.
Description
Technical Field
The application relates to a feeding equipment especially relates to a wet silo is done to intelligence.
Background
Along with the expansion of the breeding scale of the breeding households, more and more breeding households start to carry out the mode of timed feeding and free food intake, taking live pigs as an example, a trough is arranged in a breeding area, feed and a water source are released quantitatively, and the pigs in the breeding area can freely eat and drink water through the trough, so that good work and rest are bred, and the breeding efficiency is improved. However, in order to save cost, farmers who use the dry-wet trough can turn off the power supply when having a rest at night, and live pigs cannot drink water in time under the condition of power failure, so that the consumption of the pigs is increased, and the growth speed of the pigs is reduced.
SUMMERY OF THE UTILITY MODEL
In view of this, the embodiment of the present application is expected to provide an intelligent dry and wet silo that can normally supply water when power is supplied or power is cut off.
In order to achieve the above purpose, the technical solution of the embodiment of the present application is implemented as follows:
an intelligent dry and wet trough comprises a material basin, a material barrel, a first pipeline, a second pipeline, a first sensor, a drinking nozzle and an electric control valve, wherein the material barrel comprises a discharge port; and when the electric control valve is in a power-on state, the second pipeline is in circuit break with the drinking nozzle, and when the electric control valve is in a power-off state, the second pipeline is in circuit break with the drinking nozzle.
Furthermore, the intelligent dry and wet trough further comprises a support, the feed barrel is erected on the support, the drinking nozzle is arranged on the support, and the drinking nozzle is aligned to the feed basin.
Further, the support includes two stands and the horizontal pole of establishing relatively, the storage bucket is the infundibulate, the both sides of the big diameter end of storage bucket are connected with two respectively the stand, the discharge gate sets up the minor diameter end of storage bucket, the both ends of horizontal pole are connected two respectively the stand, the middle part of horizontal pole with the minor diameter end is fixed.
Furthermore, the upright post and the cross rod are hollow tubes, a small hole is formed in the small-diameter end, the first pipeline extends downwards from the inside of the upright post, turns into the cross rod, and extends into the charging barrel from the small hole.
Furthermore, the bracket comprises a hanging plate, two ends of the hanging plate are respectively and fixedly connected with the upright post and the cross rod, the electric control valve is arranged on the upper side of the hanging plate, and the drinking nozzle is arranged on the lower side of the hanging plate; the upright post and the cross rod are hollow tubes, the second pipeline extends downwards from the inside of the upright post, and the second pipeline is connected with the electric control valve after extending into the cross rod.
Further, the drinking nozzle is a duckbilled type drinking nozzle.
Further, the storage bucket includes staving, motor and automatically controlled floodgate, the motor is fixed in the staving, automatically controlled floodgate sets up in the discharge gate.
Furthermore, the intelligent dry-wet trough further comprises a second sensor used for sensing the food in the feed basin, and the second sensor is in control connection with the electric control brake and the motor.
Further, the storage bucket includes the perforated plate, the perforated plate setting is in the top of discharge gate.
Further, the electric control valve is a normally open type electromagnetic valve.
The beneficial effects are that:
compared with the prior art, the intelligent dry and wet trough is provided with the first pipeline, the second pipeline, the electric control valve and the drinking nozzle, and under the normal working state of electrifying the electric control valve, the electric control valve can disconnect the second pipeline from the drinking nozzle, so that the livestock cannot drink water through the drinking nozzle but only can drink water from the first pipeline; under the automatically controlled valve outage dormancy state, no water supply in the first pipeline, automatically controlled valve intercommunication second pipeline and drinking water mouth, poultry is direct to be drunk water through drinking water mouth for no matter can normally supply water under power supply or outage condition.
Drawings
Fig. 1 is the utility model discloses a wet silo structural schematic is done to intelligence.
Detailed Description
It should be noted that, in the case of conflict, the technical features in the examples and examples of the present application may be combined with each other, and the detailed description in the specific embodiments should be interpreted as an explanation of the present application and should not be construed as an improper limitation of the present application.
As shown in fig. 1, an intelligent dry and wet trough comprises a feed basin 1 for feeding raised livestock, a feed barrel 2 for containing feed, a first pipeline 3 and a second pipeline 4 for connecting external water sources, a first sensor 5, a drinking nozzle 6 and an electric control valve 7, wherein the feed barrel 2 comprises a discharge port 21, the feed basin 1 is arranged below the discharge port 21, and when the livestock needs to feed, the feed stored in the feed barrel 2 enters the feed basin 1 from the discharge port 21; the first sensor 5 extends into the feed basin 1 and is used for sensing the water quantity in the feed basin 1, the first sensor 5 is connected with the first pipeline 3 in a control mode, when the water quantity in the feed basin 1 is insufficient and drinking water is needed, water of an external water source is introduced into the feed barrel 2 from the first pipeline 3 and then flows into the feed basin 1 from the discharge port 21, the processes are achieved through electric control, feeding personnel do not need to pay attention to the culture condition constantly, intelligent control is achieved, and time and labor are saved;
the second pipeline 4 is connected with the drinking nozzle 6 through the electric control valve 7, the electric control valve 7 can be a normally open type electromagnetic valve, and the second pipeline 4 and the drinking nozzle 6 are disconnected under the power-on state of the electric control valve 7, so that the livestock cannot drink water through the drinking nozzle 6, and only water from the first pipeline 3 can be drunk in the feed basin 1; under 7 outage state of automatically controlled valve, no water supply is to the basin 1 in the first pipeline 3, and second pipeline 4 and the 6 passageways of drinking water mouth, poultry are direct to be drunk water through drinking water mouth 6 for no matter can normally supply water under the power supply or the outage condition.
In a preferred embodiment, as shown in fig. 1, the intelligent dry-wet trough further comprises a support 8, the bucket 2 is erected on the support 8 to be fixed, the drinking nozzle 6 is arranged on the support 8, and the drinking nozzle 6 is aligned to the bowl 1, so that when the drinking nozzle 6 is used for drinking water for livestock, the drinking water cannot flow to a breeding area in a mess, and the dryness and sanitation are kept.
In a preferred embodiment, as shown in fig. 1, the support 8 includes two opposite upright columns 81 and a cross rod 82, the material barrel 2 is funnel-shaped and facilitates discharging, two sides of the large diameter end 22 of the material barrel 2 are respectively connected with the two upright columns 81, the discharge port 21 is disposed at the small diameter end 23 of the material barrel 2, two ends of the cross rod 82 are respectively connected with the two upright columns 81, the middle of the cross rod 82 is fixed with the small diameter end 23, so that double-point fixation of the large diameter end 22 and the small diameter end 23 of the material barrel 2 is realized, and shaking when animal husbandry accidentally hits the material barrel 2 is prevented.
In a preferred embodiment, as shown in fig. 1, the upright column 81 and the cross bar 82 are hollow tubes, the small diameter end 23 is provided with a small hole 231, the first pipeline 3 extends downwards from the upright column 81, then turns into the cross bar 82, and extends into the material barrel 2 from the small hole 231, so as to prevent the first pipeline 3 from being exposed outside, which is beautiful and cannot be damaged by rats or livestock.
In a preferred embodiment, as shown in fig. 1, the bracket 8 comprises a hanging plate 83, two ends of the hanging plate 83 are fixedly connected with the upright 81 and the cross bar 82 respectively, the electric control valve 7 is arranged on the upper side of the hanging plate 83 to facilitate connection with the second pipeline 4, and the drinking nozzle 6 is arranged on the lower side of the hanging plate 83, so that the outlet of the drinking nozzle 6 can be directly opposite to the material basin 1 and can not be blocked by the hanging plate 83; stand 81 and horizontal pole 82 are the hollow tube, and second pipeline 4 extends downwards from stand 81, and the turn extends to be connected with automatically controlled valve 7 behind the entering horizontal pole 82, prevents that second pipeline 4 from exposing outside, not only beautifully but also can not gnaw by the mouse or poultry and eat and lead to damaging.
In the preferred embodiment, the drinking nozzle 6 is a duckbilled drinking nozzle, which is low in cost and stable in function and is not easy to damage.
In a preferred embodiment, as shown in fig. 1, the material barrel 2 includes a barrel body 24, a motor 25 and an electrically controlled gate (not shown), the motor 25 is fixed in the barrel body 24 for stirring the fodder and pushing the fodder in the barrel body 24 to be discharged from the discharge port 21, and the electrically controlled gate is disposed in the discharge port 21 for controlling the on-off of the fodder discharge in the barrel body 24.
In a preferred embodiment, as shown in fig. 1, the intelligent dry-wet trough further comprises a second sensor 9 for sensing food in the basin 1, the second sensor 9 is connected to the electrically controlled gate and the motor 25 in a controlled manner, when the amount of food in the basin 1 is insufficient, the second sensor 9 sends a signal to the electrically controlled gate to open, and the motor 25 operates to push the feed in the barrel 24 to be discharged from the discharge hole 21.
In a preferred embodiment, as shown in fig. 1, the material barrel 2 includes a perforated plate 26, the perforated plate 26 is disposed above the discharge port 21, on one hand, the perforated plate has a filtering effect, and on the other hand, the caked feed becomes granular when passing through, and is suitable for livestock.
The various embodiments/implementations provided herein may be combined with each other without contradiction.
The above description is only a preferred embodiment of the present application and is not intended to limit the present application, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, improvement and the like made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims (10)
1. The utility model provides a wet silo is done to intelligence which characterized in that: the feed tank comprises a feed basin (1), a feed barrel (2), a first pipeline (3), a second pipeline (4), a first inductor (5), a drinking nozzle (6) and an electric control valve (7), wherein the feed barrel (2) comprises a discharge hole (21), the feed basin (1) is arranged below the discharge hole (21), the first pipeline (3) is introduced into the feed barrel (2), the first inductor (5) extends into the feed basin (1), the first inductor (5) is in control connection with the first pipeline (3), and the second pipeline (4) is connected with the drinking nozzle (6) through the electric control valve (7);
and when the electric control valve (7) is in a power-on state, the second pipeline (4) and the drinking nozzle (6) are in a circuit-breaking state, and when the electric control valve (7) is in a power-off state, the second pipeline (4) and the drinking nozzle (6) are in a passage.
2. The intelligent dry-wet silo according to claim 1, characterized in that: the intelligent dry and wet trough further comprises a support (8), the charging basket (2) is erected on the support (8), the drinking nozzle (6) is arranged on the support (8), and the drinking nozzle (6) is aligned to the charging basin (1).
3. The intelligent dry-wet silo according to claim 2, characterized in that: support (8) include two stand (81) and horizontal pole (82) of establishing relatively, storage bucket (2) are the infundibulate, the both sides of the big diameter end (22) of storage bucket (2) respectively with two stand (81) are connected, discharge gate (21) set up the little diameter end (23) of storage bucket (2), two are connected respectively at the both ends of horizontal pole (82) stand (81), the middle part of horizontal pole (82) with little diameter end (23) are fixed.
4. The intelligent dry-wet silo according to claim 3, characterized in that: the upright column (81) and the cross rod (82) are hollow pipes, a small hole (231) is formed in the small-diameter end (23), the first pipeline (3) extends downwards from the inside of the upright column (81), turns to enter the cross rod (82), and extends into the charging basket (2) from the small hole (231).
5. The intelligent dry-wet silo according to claim 3, characterized in that: the bracket (8) comprises a hanging plate (83), two ends of the hanging plate (83) are respectively fixedly connected with the upright post (81) and the cross rod (82), the electric control valve (7) is arranged on the upper side of the hanging plate (83), and the drinking nozzle (6) is arranged on the lower side of the hanging plate (83); the upright column (81) and the cross rod (82) are hollow tubes, the second pipeline (4) extends downwards from the inside of the upright column (81), and the second pipeline is connected with the electric control valve (7) after extending into the cross rod (82).
6. The intelligent dry and wet trough of any one of claims 1 to 5, wherein: the drinking nozzle (6) is a duckbilled type drinking nozzle.
7. The intelligent dry and wet trough of any one of claims 1 to 5, wherein: the charging bucket (2) comprises a bucket body (24), a motor (25) and an electric control brake, wherein the motor (25) is fixed in the bucket body (24), and the electric control brake is arranged in the discharge hole (21).
8. The intelligent dry-wet silo according to claim 7, characterized in that: the intelligent dry-wet trough further comprises a second sensor (9) used for sensing food in the feed basin (1), and the second sensor (9) is in control connection with the electric control brake and the motor (25).
9. The intelligent dry and wet trough of any one of claims 1 to 5, wherein: the charging basket (2) comprises a porous plate (26), and the porous plate (26) is arranged above the discharge hole (21).
10. The intelligent dry and wet trough of any one of claims 1 to 5, wherein: the electric control valve (7) is a normally open type electromagnetic valve.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920929912.5U CN210382222U (en) | 2019-06-19 | 2019-06-19 | Dry wet silo of intelligence |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920929912.5U CN210382222U (en) | 2019-06-19 | 2019-06-19 | Dry wet silo of intelligence |
Publications (1)
Publication Number | Publication Date |
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CN210382222U true CN210382222U (en) | 2020-04-24 |
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Family Applications (1)
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CN201920929912.5U Active CN210382222U (en) | 2019-06-19 | 2019-06-19 | Dry wet silo of intelligence |
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2019
- 2019-06-19 CN CN201920929912.5U patent/CN210382222U/en active Active
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