Feed processing device for raising pork pigs
Technical Field
The utility model relates to the technical field of pork pig feeding, in particular to a feed processing device for pork pig feeding.
Background
In the feeding of pork pigs, the processing of the feed is a crucial step, which directly affects the growth and health of the pork pigs, which feed is usually composed of several components, including protein feed, energy feed, roughage, green feed, mineral feed and feed additives. These components play an important role in the growth and development of pork pigs.
Traditional fodder processing method mainly relies on manual operation, processes green fodder etc. in advance, in adding the mixing drum simultaneously with multiple prefabricated fodder in proportion when using, through stirring and add the processing operation of proper amount moisture realization fodder, but this kind of mode needs to carry out a plurality of steps in proper order to need a large amount of manpowers and time, inefficiency, and directly empty the condition that very easily takes place misce bene when carrying out the interpolation operation of powdered fodder, in order to solve these problems, we propose a fodder processingequipment for pork pig raising, can realize the high-efficient, the high quality processing to the fodder.
Disclosure of utility model
The utility model aims to overcome the technical defects and provide a high-efficiency feed processing device for raising pork pigs.
In order to solve the technical problems, the technical scheme includes that the feed processing device for pork pig feeding comprises a mixing barrel, a stirrer is arranged in the mixing barrel, a discharging opening is formed in the outer wall of one side of the mixing barrel in a communicated mode, a crushing mechanism is arranged at the top end of the outer wall of one side of the mixing barrel and comprises a crushing box body, a supporting frame connected with the crushing box body is arranged on the outer wall of the mixing barrel, a plurality of crushing rollers are rotatably arranged in the crushing box body, a material guide pipe extending into the mixing barrel is arranged on the crushing box body in a communicated mode, a group of bearing plates are symmetrically arranged on the top surface of the mixing barrel, a screening barrel extending into the mixing barrel is connected between the bearing plates, a screen is fixedly arranged in the screening barrel, and a vibrating motor is fixedly arranged on the outer wall of the screening barrel.
As an improvement, the horizontal division board that is equipped with in the blending tank, the division board bottom surface is equipped with the agitator motor of drive agitator, evenly be equipped with the toper blade on the agitator, the feed opening closely pastes the division board setting, and the toper blade makes the misce bene.
As an improvement, the top end of the outer wall of one side of the mixing drum is provided with a water supply pipe, the bottom surface of the water supply pipe is uniformly provided with a plurality of spray pipes, and the outer wall of the mixing drum is provided with a liquid flowmeter communicated with the mixing drum, so that automatic quantitative water supply can be realized.
As an improvement, the bottom ends of the outer walls of the two sides of the mixing barrel are respectively provided with a stabilizing block which is clung to the ground, and the stability of the device can be improved through the arrangement of the stabilizing blocks.
As an improvement, the outer wall of the mixing drum is symmetrically provided with a group of connecting plates positioned on two sides of the blanking opening, the blanking opening is rotationally provided with a blanking plate, a rotating motor for driving the blanking plate is arranged in the blanking opening, and one side, close to the blanking plate, of the connecting plates is provided with an arc-shaped limiting groove in sliding connection with the blanking plate, so that automatic blanking is convenient after machining is finished.
Compared with the prior art, the utility model has the advantages that the crushing mechanism and the mixing barrel are used for collecting dust, so that the direct processing and use of raw materials are realized, the operation complexity is greatly reduced, and the processing efficiency is improved;
The screening cylinder that sets up can sieve powdered fodder, makes it can evenly get into in the mixing drum, improves mixing efficiency and quality.
Drawings
FIG. 1 is a first perspective view of a feed processing apparatus for raising pork pigs according to the present utility model.
FIG. 2 is a second perspective view of a feed processing apparatus for raising pork pigs according to the present utility model.
FIG. 3 is a third perspective view of a feed processing apparatus for raising pork pigs according to the present utility model.
FIG. 4 is a sectional perspective view of a feed processing apparatus for raising pork pigs according to the present utility model.
The device comprises a mixing drum, a stirrer, a discharging opening, a crushing mechanism, a crushing box, a supporting frame, a crushing roller, a material guiding pipe, a supporting plate, a screening drum, a screen, a vibrating motor, a partition plate, a stirring motor, a conical blade, a water feeding pipe, a spraying pipe, a liquid flowmeter, a stabilizing block, a connecting plate, a discharging plate, a curved limiting groove and an arc limiting groove.
Detailed Description
The present utility model will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1-4, a feed processing device for pork pig raising comprises a mixing barrel 1, wherein stabilizing blocks 19 which are closely attached to the ground are arranged at the bottom ends of the outer walls of two sides of the mixing barrel 1, a stirrer 2 is arranged in the mixing barrel 1, a partition plate 13 is horizontally arranged in the mixing barrel 1, a stirring motor 14 for driving the stirrer 2 is arranged at the bottom surface of the partition plate 13, conical blades 15 are uniformly arranged on the stirrer 2, a crushing mechanism 4 is arranged at the top end of the outer wall of one side of the mixing barrel 1, the crushing mechanism 4 comprises a crushing box 5, a supporting frame 6 connected with the crushing box 5 is arranged on the outer wall of the mixing barrel 1, a plurality of crushing rollers 7 are rotationally arranged in the crushing box 5, a guide pipe 8 which extends into the mixing barrel 1 is communicated with the crushing box 5, a group of bearing plates 9 are symmetrically arranged on the top surface of the mixing barrel 1, a screening barrel 10 which extends into the mixing barrel 1 is connected between the bearing plates 9, a screen 11 is fixedly arranged in the screening barrel 10, a vibrating motor 12 is fixedly arranged on the outer wall of the screening barrel 10, a supporting frame 6 is arranged at the outer wall of the side of the mixing barrel 1, a plurality of water pipes 16 are uniformly arranged on the bottom surfaces of the mixing barrel 1, and a plurality of water flow meters 18 are uniformly arranged on the outer walls of the mixing barrel 1;
Through the structure, firstly, feed with a structure to be crushed is placed in a crushing box body 5, a crushing roller 7 rotates to uniformly crush the feed, the crushed uniform feed enters a mixing barrel 1 through a material guide pipe 8, a stirring motor 14 drives a stirrer 2 to rotate, the feed is uniformly mixed under the cooperation of a conical blade 15, a proper amount of water is poured into the mixing barrel 1 through the cooperation of a water supply pipe 16 and a liquid flowmeter 18, the powdery feed is placed in a screening barrel 10, a vibrating motor 12 drives the screening barrel 10 to shake, the powdery feed is uniformly released into the mixing barrel 1 through a screen 11, the stirrer 2 drives the powdery feed to uniformly mix until the powdery feed is completely screened into the mixing barrel 1, and the stirrer 2 completes the mixing operation;
The outer wall of one side of the mixing drum 1 is communicated with a feed opening 3, the feed opening 3 is closely attached to the partition plate 13, a group of connecting plates 20 positioned on two sides of the feed opening 3 are symmetrically arranged on the outer wall of the mixing drum 1, a feed plate 21 is rotationally arranged in the feed opening 3, a rotating motor for driving the feed plate 21 is arranged in the feed opening 3, and an arc-shaped limiting groove 22 which is in sliding connection with the feed plate 21 is formed in one side, close to the feed plate 21, of the connecting plates 20;
Through the structure, after the mixing operation is completed, the rotating motor drives the blanking plate 21 to rotate to be far away from the blanking opening 3 under the cooperation of the arc-shaped limiting groove 22, so that the blanking opening 3 is in an open state, and then the mixed and processed feed is released and taken out for use, so that the pork pig can be fed.
In the concrete implementation of the utility model, firstly, the feed with a structure to be crushed is placed in a crushing box body 5, a crushing roller 7 rotates to uniformly crush the feed, the crushed uniform feed enters a mixing barrel 1 through a material guide pipe 8, then a stirring motor 14 drives a stirrer 2 to rotate, the feed is uniformly mixed under the cooperation of a conical blade 15, a proper amount of water is poured into the mixing barrel 1 through the cooperation of a water supply pipe 16 and a liquid flowmeter 18, the powdery feed is placed in a screening barrel 10, a vibrating motor 12 drives the screening barrel 10 to shake, the powdery feed is uniformly released into the mixing barrel 1 through a screen 11, the stirrer 2 drives the powdery feed to be uniformly mixed until the powdery feed is completely screened into the mixing barrel 1, and the stirrer 2 completes the mixing operation;
After the mixing operation is completed, the rotating motor drives the blanking plate 21 to rotate to be far away from the blanking opening 3 under the cooperation of the arc-shaped limiting groove 22, so that the blanking opening 3 is in an open state, and then the mixed and processed feed is released and taken out for use, so that the pork pig can be fed.
The utility model and its embodiments have been described above with no limitation, and the actual construction is not limited to the embodiments of the utility model as shown in the drawings. In summary, if one of ordinary skill in the art is informed by this disclosure, a structural manner and an embodiment similar to the technical solution should not be creatively devised without departing from the gist of the present utility model.