A high-efficient fermenting installation for feed additive
Technical Field
The utility model relates to the technical field of feed additive fermentation, in particular to a high-efficiency fermentation device for a feed additive.
Background
The microbial feed additive is a feed additive fermented by microorganisms, cultured strains can be added into feed raw materials and fermented together with the feed raw materials, in the fermentation process, the strains can grow and reproduce by utilizing nutrients such as carbohydrates and proteins in the feed raw materials to generate beneficial metabolites, and the microbial feed additive can increase the nutritive value of the feed, improve the digestion and absorption of animals, improve the utilization rate of the feed and simultaneously help to maintain the microbial balance of animal intestinal tracts. Fermentation equipment is needed in the production and preparation process of the feed additive.
The fermentation equipment for the microecological feed additive with the authorized bulletin number of CN221296917U comprises a mounting frame, wherein a fermentation box is movably arranged in the mounting frame, a through hole is formed in the top end of the fermentation box, a box cover is movably arranged at the top of the through hole, the box cover is in threaded connection with the fermentation box, a rotating assembly is arranged on the fermentation box and comprises two U-shaped plates, a second motor, two rotating shafts and two connecting frames, one opposite sides of the two connecting frames are fixedly connected with the fermentation box, and one opposite ends of the two rotating shafts are respectively fixedly connected with the two connecting frames.
However, the efficient fermentation device for the feed additive has the defects that the efficient stirring and mixing of the feed additive raw materials in the fermentation tank are inconvenient, so that the feed additive raw materials cannot fully contact the fermentation reaction, the fermentation effect and efficiency are reduced, meanwhile, the microorganisms need to inject oxygen, and the oxygen is inconvenient to inject to further reduce the fermentation effect, so that the efficient fermentation device for the feed additive is provided for solving the problems.
Disclosure of utility model
The utility model aims to solve the defects in the prior art and provides a high-efficiency fermentation device for a feed additive.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
the utility model provides a high-efficient fermenting installation for feed additive, is including the fermentation cylinder that is used for feed additive fermentation to use, be provided with temperature control mechanism on the fermentation cylinder, the top fixedly connected with cover body of fermentation cylinder, fixedly connected with sealed cowling on the top inner wall of fermentation cylinder, be provided with high-efficient rabbling mechanism between fermentation cylinder, cover body and the sealed cowling, be provided with oxygen supply mechanism on the cover body.
As the preferable mode of the utility model, the temperature control mechanism comprises a heater fixedly sleeved on the outer side of the fermentation tank, one side of the fermentation tank is fixedly provided with a controller and a temperature sensor, and the temperature sensor and the heater are electrically connected with the controller.
As the preferable one of the utility model, the high-efficiency stirring mechanism comprises a driving motor fixedly connected to the inner wall of one side of the cover body, a hollow shaft rotatably connected to the top of the fermentation tank, and an inner gear ring fixedly connected to the inner gear ring in the sealing cover, wherein the output shaft of the driving motor is fixedly connected with a driving shaft, one end of the driving shaft is fixedly connected with a driving bevel gear, the outer side of the hollow shaft is fixedly sleeved with a driven bevel gear, the driving bevel gear is meshed with the driven bevel gear, the outer side of the hollow shaft is fixedly sleeved with a rotary table, the top of the rotary table is rotatably connected with two stirring shafts, the top ends of the stirring shafts are fixedly connected with gears, the two gears are meshed with the inner gear ring, and the two sides of the stirring shafts are fixedly connected with a plurality of stirring rods.
In the utility model, preferably, the sealing cover is internally and fixedly sleeved with a sealing bearing, and the turntable is fixedly sleeved in an inner ring of the sealing bearing.
As the preferable mode of the utility model, the oxygen supply mechanism comprises an air pump fixedly connected to the top of the cover body, one side of the air pump is fixedly communicated with an oxygen inlet pipe, the bottom of the air pump is fixedly communicated with an air supply pipe, the top end of the hollow shaft is fixedly connected with a bearing, the air supply pipe is fixedly sleeved in the inner ring of the bearing, and a plurality of air outlet holes are formed in the outer side of the hollow shaft.
Preferably, the hollow shaft is provided with a one-way valve.
As the preferable mode of the utility model, the top of the fermentation tank is fixedly communicated with a feed pipe, and the top of the fermentation tank is fixedly communicated with a pressure release valve.
As the preferable mode of the utility model, the bottom of the fermentation tank is fixedly connected with four supporting plates, and the bottom of the fermentation tank is fixedly communicated with a discharge pipe.
According to the efficient fermentation device for the feed additive, the fermentation tank can be heated through the heater, the temperature in the fermentation tank can be measured through the temperature sensor, when the fermentation tank is heated to the specified temperature, the controller is used for closing the heater, when the temperature is in butt joint with the specified temperature, the heater is started to heat, the temperature can be controlled in the specified fermentation zone, the fermentation effect and efficiency are improved, the driving motor drives the driving shaft and the driving bevel gear to rotate, the driving bevel gear drives the driven bevel gear and the hollow shaft to rotate, the hollow shaft drives the turntable to rotate, the turntable drives the two stirring shafts and the gear to revolve around the hollow shaft as the axis, and when the gear revolves, the gear rotates through the inner gear ring which is fixedly arranged, and drives the stirring shaft and the stirring rod to rotate, so that the stirring effect is greatly improved under the condition that the stirring shaft and the stirring rod revolve around the rotation, the stirring shaft is fully mixed, the raw materials of the feed additive can fully contact and react, and the fermentation effect and efficiency are improved;
According to the efficient fermentation device for the feed additive, when oxygen is needed to be supplied, oxygen can be pumped into the oxygen inlet pipe, the air supply pipe and the hollow shaft through the air pump, and finally the oxygen is sprayed out from the plurality of air outlet holes, so that the hollow shaft can rotate, and further oxygen can be uniformly and comprehensively supplied, the microbial feed additive has a better fermentation effect and higher efficiency, air bubbles can be formed under the condition of blowing, the stirring and mixing effects can be further improved under the condition of turning the air bubbles, the feed additive raw materials can be fully contacted for reaction fermentation, and the fermentation effect and efficiency are improved;
The utility model has reasonable structural design, greatly improves the stirring effect by revolution and rotation of the stirring shaft and the stirring rod, ensures that the stirring effect is more complete and thorough, ensures that the feed additive raw materials can fully contact the reaction fermentation, improves the fermentation effect and efficiency, simultaneously can accelerate the fermentation of the microbial feed additive under the oxygen supply, can turn the feed additive raw materials under the air blowing, and further improves the stirring and mixing effects.
Drawings
FIG. 1 is a schematic structural diagram of a high-efficiency fermentation device for feed additives according to the present utility model;
FIG. 2 is a cross-sectional view of a high efficiency fermentation apparatus for a feed additive according to the present utility model;
FIG. 3 is a schematic view of the portion A in FIG. 2;
Fig. 4 is a schematic structural diagram of a portion B in fig. 2.
The device comprises a fermentation tank 1, a temperature control mechanism 2, a cover body 3, a feed pipe 4, a feed pipe 5, a discharge pipe 6, an oxygen supply mechanism 7, a relief valve 8, a support plate 9, a high-efficiency stirring mechanism 10, a sealing cover 21, a heater 22, a temperature sensor 23, a controller 61, an air pump 62, an oxygen inlet pipe 63, an air outlet hole 64, an air supply pipe 65, a bearing 66, a one-way valve 901, a stirring rod 902, a stirring shaft 903, a hollow shaft 904, a driving motor 905, a driving shaft 906, a driving bevel gear 907, a driven bevel gear 908, an inner gear ring 909, a gear 910, a sealing bearing 911 and a turntable.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments.
Referring to fig. 1-4, a high-efficient fermenting installation for feed additive, including being used for fermentation cylinder 1 that feed additive fermented and use, be provided with temperature control mechanism 2 on the fermentation cylinder 1, the top fixedly connected with cover body 3 of fermentation cylinder 1, fixedly connected with sealed cowling 10 on the top inner wall of fermentation cylinder 1, be provided with high-efficient rabbling mechanism 9 between fermentation cylinder 1, cover body 3 and the sealed cowling 10, be provided with oxygen supply mechanism 6 on the cover body 3, the top of fermentation cylinder 1 is fixed to be linked together and is had inlet pipe 4, the top of fermentation cylinder 1 is fixed to be linked together and is had relief valve 7.
Specifically, referring to fig. 1 and 2, the temperature control mechanism 2 includes a heater 21 fixedly sleeved on the outer side of the fermentation tank 1, and a controller 23 and a temperature sensor 22 are fixedly arranged on one side of the fermentation tank 1, wherein the temperature sensor 22 and the heater 21 are electrically connected with the controller 23.
By adopting the scheme, the heater 21 can be used for heating the fermentation tank 1, the temperature sensor 22 can be used for measuring the temperature in the fermentation tank 1, after the fermentation tank 1 is heated to the specified temperature, the controller 23 is used for closing the heater 21, and when the temperature is abutted against the specified temperature, the heater 21 is started for heating, so that the temperature can be controlled in the specified fermentation zone, and the fermentation effect and efficiency are improved.
Specifically, referring to fig. 1-4, the efficient stirring mechanism 9 includes a driving motor 904 fixedly connected to an inner wall at one side of the cover body 3, a hollow shaft 903 rotatably connected to the top of the fermentation tank 1, and an inner gear ring 908 fixedly connected to the inner wall of the sealing cover 10, a driving shaft 905 is fixedly connected to an output shaft of the driving motor 904, one end of the driving shaft 905 is fixedly connected to a driving bevel gear 906, a driven bevel gear 907 is fixedly sleeved on the outer side of the hollow shaft 903, the driving bevel gear 906 is meshed with the driven bevel gear 907, a rotary disc 911 is fixedly sleeved on the outer side of the hollow shaft 903, two stirring shafts 902 are rotatably connected to the top of the rotary disc 911, gears 909 are fixedly connected to the top of the stirring shafts 902, the two gears 909 are meshed with the inner gear ring 908, and a plurality of stirring rods 901 are fixedly connected to two sides of the stirring shafts 902.
By adopting the scheme, the driving motor 904 drives the driving shaft 905 and the driving bevel gear 906 to rotate, the driving bevel gear 906 drives the driven bevel gear 907 and the hollow shaft 903 to rotate, the hollow shaft 903 drives the rotary table 911 to rotate, the rotary table 911 drives the two stirring shafts 902 and the gear 909 to revolve around the hollow shaft 903 as the axis, when the gear 909 revolves, the gear 909 rotates through the fixedly arranged inner gear ring 908, the gear 909 drives the stirring shaft 902 and the stirring rod 901 to rotate, and then under the condition that the stirring shaft 902 and the stirring rod 901 revolve and rotate, the stirring effect is greatly improved, the stirring is more complete, the feed additive raw materials can fully contact, react and ferment, and the fermenting effect and efficiency are improved.
Specifically, the seal housing 10 is fixedly sleeved with a seal bearing 910, and the turntable 911 is fixedly sleeved in an inner ring of the seal bearing 910, so that the turntable 911 is supported, and the rotation of the turntable 911 is more stable and smooth.
Specifically, referring to fig. 1-4, the oxygen supply mechanism 6 includes an air pump 61 fixedly connected to the top of the cover 3, an oxygen inlet pipe 62 is fixedly connected to one side of the air pump 61, an air supply pipe 64 is fixedly connected to the bottom of the air pump 61, a bearing 65 is fixedly connected to the top end of a hollow shaft 903, the air supply pipe 64 is fixedly sleeved in an inner ring of the bearing 65, a plurality of air outlet holes 63 are formed in the outer side of the hollow shaft 903, and a check valve 66 is arranged on the hollow shaft 903.
By adopting the scheme, when oxygen is needed to be supplied, oxygen can be pumped into the oxygen inlet pipe 62, the air supply pipe 64 and the hollow shaft 903 through the air pump 61, and finally oxygen is sprayed out from the plurality of air outlet holes 63, and the hollow shaft 903 can rotate, so that oxygen can be uniformly and comprehensively supplied, the microbial feed additive has better fermentation effect and higher efficiency, air bubbles can be formed under the blowing, the stirring and mixing effects can be further improved under the turning of the air bubbles, the feed additive raw materials can fully contact the reaction and fermentation, and the fermentation effect and efficiency are improved.
Specifically, four backup pads 8 of bottom fixedly connected with of fermentation cylinder 1, the bottom fixed intercommunication of fermentation cylinder 1 has row material pipe 5, and convenient row material supports fermentation cylinder 1 simultaneously can be stable.
According to the utility model, when the fermentation tank 1 is used, the heater 21 is used, the fermentation tank 1 can be heated, the temperature sensor 22 is used for measuring the temperature in the fermentation tank 1, after the fermentation tank 1 is heated to the specified temperature, the controller 23 is used for closing the heater 21, when the temperature is in butt joint with the specified temperature, the heater 21 is started to heat, the temperature can be controlled in the specified fermentation interval, the fermentation effect and efficiency are improved, the driving motor 904 is used for driving the rotation of the driving shaft 905 and the driving bevel gear 906, the driving bevel gear 906 is used for driving the rotation of the driven bevel gear 907 and the hollow shaft 903, the hollow shaft 903 is used for driving the rotation of the rotary disc 911, the rotary disc 911 is used for driving the rotation of the two stirring shafts 902 and the gear 909 to revolve around the axis, the gear 909 is used for rotating through the inner gear ring 908 which is fixedly arranged, the gear 909 is used for driving the rotation of the stirring shaft 902 and the stirring rod 901, further, the stirring effect is greatly improved under the condition that the stirring shaft 902 and the stirring rod 901 is in the butt joint with the specified temperature, the fermentation shaft is further fully and thoroughly mixed, the raw material additive can be fully contacted with the fermentation reaction, the rotation of the driving bevel gear 903 is driven by the driving motor 904, the rotation of the driving bevel gear 906 is driven bevel gear 903, the rotation of the driven bevel gear 903 is used for carrying out revolution on the axes of the rotation of the rotary shaft 903, the rotary shaft is further oxygen supply hole is required, the rotary air pump 64 is further fully formed, and the oxygen supply effect can be fully is fully improved, and can be fully blown out through the oxygen supply effect is fully and can be fully blown out through the air pump and can be fully blown into the air pump.