V-shaped mixer for feed production
Technical Field
The utility model relates to the technical field of feed production, in particular to a V-shaped mixer for feed production.
Background
The V-shaped mixer series product is a high-efficiency asymmetric mixer, is suitable for mixing powder or granular materials in the industries of chemical industry, food, medicine, feed and the like, has reasonable and simple structure, is closed in operation, adopts a cylinder made of stainless steel materials, is convenient to clean, and is one of basic equipment of feed production enterprises.
But in the in-service use, traditional V type mixes the machine and just carries out rotatory mixture through the connecting axle at its both ends, and rotatory mode is comparatively single, and its mixing efficiency is lower, simultaneously because the both ends outer wall of V type mixes the machine all with pivot interconnect, and then can not conveniently adjust the reinforced position, still need the reinforced position of adjustment back and forth when consequently the manual work is reinforced, and the operation is inconvenient enough.
Disclosure of utility model
The utility model aims to provide a V-shaped mixer for feed production, which solves the problems that the existing rotation mode is single, the mixing is not efficient enough, the feeding position is fixed and cannot be adjusted, and the manual operation feeding is inconvenient.
In order to achieve the purpose, the utility model provides the technical scheme that the V-shaped mixer for feed production comprises a bottom plate, mixing drums and rotating assemblies, wherein the top of the bottom plate is provided with a rotating ring, the mixing drums are obliquely arranged at the two inner sides of the rotating ring towards the center of the bottom end, the rotating assemblies are arranged at one side, close to the bottom of the mixing drums, of the inner bottom end of the rotating ring, and a rotating motor is arranged at the center of the top of the rotating ring;
the bottom center of the rotating ring is provided with a discharging pipe, the bottom ends of the two mixing drums are fixedly connected with each other in a communicated manner, and the top ends of the discharging pipes penetrate through the inside of the bottom ends of the two mixing drums;
The mixing drum is fixedly connected with a rotating block close to the outer wall of the top of the rotating ring, the rotating block is connected with the top of the rotating ring in a sliding mode, and two ends of the outer wall of the rotating ring are fixedly connected with mounting shafts.
Preferably, the rotating assembly comprises a driven toothed ring and a driving gear, the driving gear is meshed with the driven toothed ring, and the driven toothed ring is sleeved and fixed with the outer wall of the discharging pipe.
Preferably, the support plates are fixedly connected at the two ends of the top of the bottom plate, the installation shaft and the support plates are connected in a penetrating and rotating mode, and one end, far away from the rotating ring, of the installation shaft is connected with the driving motor.
Preferably, a rotary motor is arranged on one side, far away from the discharging pipe, of the driving gear, a power output end of the rotary motor is mutually fixed with the driving gear, and the rotary motor is mutually fixedly connected with the inner wall of the rotary ring.
Preferably, a sliding groove which slides correspondingly to the top of the rotating ring is formed in the bottom of the rotating block, and a through hole which penetrates correspondingly to the outer wall of the mixing drum is formed in the center of the rotating block.
Preferably, the top of the mixing drum is connected with a sealing cover, the outer wall of the rotating motor is fixedly connected with the outer wall of the mixing drum, the bottom extending end of the rotating motor penetrates through the top of the mixing drum and is internally connected with a stirring rod, and a switch valve is arranged in the discharging pipe.
Preferably, the stirring rod outer wall is located the inside position of mixing drum and encircles fixedly connected with a plurality of stirring vane, and stirring vane's blade is the slope form.
In the technical scheme, the utility model has the technical effects and advantages that:
1. The rotating motor drives the driving gear to rotate, and then the driving gear drives the driven gear ring to rotate, and then the driven gear ring drives the mixing drum at top through the discharging pipe to rotate, and then can make a mixing drum rotated to the bottom that is close to user one side, and then rotate again and open the closing cap, in just can be convenient pour the feed raw materials that needs to mix into the mixing drum, can seal the mixing drum of one end after the pouring is accomplished, the rethread rotating assembly drives the discharging pipe to rotate for the mixing drum of the other end rotates the position that is close to operating personnel, can conveniently open the closing cap and add feed raw materials, and the operation is more convenient, need not the operator and makes a round trip to remove adjustment position.
2. The installation axle drives the rotation of swivel becket, and then the swivel becket has driven the rotation of mixing drum through rotating block and rotating assembly, and then realize that the mixing drum rotates around the axle center of installation axle, realize the mixing of material, and then can also start rotating assembly, and then the rotation motor drives driven ring gear through the driving gear and rotate, and then make the output pipe rotatory drive mixing drum rotate, thereby realize that the mixing drum rotates around the axle center of discharging pipe, and can also restart rotating electrical machines and rotate, drive the puddler through the rotating electrical machines and rotate, and then drive stirring vane rotation, can be more direct drive the inside material realization of mixing drum and remove the stirring, and then can effectively improve the fodder mixing efficiency of mixing drum through multiple rotation means.
Drawings
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings required for the embodiments will be briefly described below, and it is apparent that the drawings in the following description are only some embodiments described in the present utility model, and other drawings may be obtained according to these drawings for a person having ordinary skill in the art.
FIG. 1 is a schematic illustration of the present utility model;
FIG. 2 is a top view of the present utility model;
FIG. 3 is a schematic view of the inner structure of the rotary ring according to the present utility model;
FIG. 4 is a front view of the inner structure of the rotary ring of the present utility model;
fig. 5 is a schematic view of the internal structure of the mixing drum of the present utility model.
Reference numerals illustrate:
1. The mixing device comprises a bottom plate, 101, a supporting plate, 2, a mixing drum, 201, a sealing cover, 202, a discharging pipe, 3, a rotating assembly, 301, a driven toothed ring, 302, a driving gear, 303, a rotating motor, 4, a rotating motor, 401, a stirring rod, 402, stirring blades, 5, a rotating ring, 501, a rotating block and 502, and a mounting shaft.
Detailed Description
In order to make the technical scheme of the present utility model better understood by those skilled in the art, the present utility model will be further described in detail with reference to the accompanying drawings.
The utility model provides a V-shaped mixer for feed production, which is shown in figures 1-5, and comprises a bottom plate 1, mixing drums 2 and a rotating assembly 3, wherein a rotating ring 5 is arranged at the top of the bottom plate 1, the mixing drums 2 are obliquely arranged at the centers of the bottom ends of the inner sides of the rotating ring 5, the rotating assembly 3 is arranged at one side, close to the bottom of the mixing drums 2, of the inner bottom end of the rotating ring 5, a rotating motor 4 is arranged at the center of the top of the rotating ring 5, a discharging pipe 202 is arranged at the center of the bottom of the rotating ring 5, the bottom ends of the two mixing drums 2 are fixedly connected with each other in a communicating manner, the top ends of the discharging pipe 202 penetrate through the inner parts of the bottom ends of the two mixing drums 2, a rotating block 501 is fixedly connected with the top of the rotating ring 5 in a sliding manner, two ends of the outer wall of the rotating ring 5 are fixedly connected with a mounting shaft 502, the rotating assembly 3 comprises a driven gear ring 301 and a driving gear 302, the driving gear 302 is meshed with the driven gear 301, and the outer wall of the driven gear ring 301 is fixedly sleeved with the discharging pipe 202.
As shown in fig. 1 and 3, the support plate 101 is fixedly connected to two ends of the top of the bottom plate 1, the mounting shaft 502 and the support plate 101 are connected in a penetrating and rotating manner, one end, away from the rotating ring 5, of the mounting shaft 502 is connected with a driving motor, a sliding groove corresponding to the top of the rotating ring 5 is formed in the bottom of the rotating block 501, a penetrating hole corresponding to the outer wall of the mixing drum 2 is formed in the center of the rotating block 501, the mounting shaft 502 is driven to rotate through power equipment, the mounting shaft 502 drives the rotating ring 5 to rotate, the rotating ring 5 drives the mixing drum 2 to rotate through the rotating block 501, the mixing drum 2 rotates around the axis of the mounting shaft 502, and mixing of materials is achieved.
As shown in fig. 3 and 4, a rotary motor 303 is installed on a side of the driving gear 302 away from the discharging pipe 202, a power output end of the rotary motor 303 is fixed with the driving gear 302, the rotary motor 303 is fixedly connected with an inner wall of the rotary ring 5, and the rotary assembly 3 is started, so that the rotary motor 303 drives the driving gear 302 to rotate, and the driving gear 302 drives the driven gear ring 301 to rotate.
As shown in fig. 1 and 5, the top end of the mixing drum 2 is connected with a sealing cover 201, the outer wall of the rotating motor 4 is fixedly connected with the outer wall of the mixing drum 2, the bottom extending end of the rotating motor 4 penetrates through the top end of the mixing drum 2 and is internally connected with a stirring rod 401, a switch valve is arranged in the discharging tube 202, the outer wall of the stirring rod 401 is located at the position inside the mixing drum 2 and surrounds a plurality of stirring blades 402 fixedly connected with the stirring rod, the blades of the stirring blades 402 are inclined, the discharging tube 202 rotates to drive the mixing drum 2 to rotate, so that the mixing drum 2 rotates around the axis of the discharging tube 202, the rotating motor 4 can be restarted to rotate, the stirring rod 401 is driven to rotate through the rotating motor 4, the stirring blades 402 are driven to rotate, and materials inside the mixing drum 2 can be driven to move and stir more directly, and then the feed mixing efficiency of the mixing drum 2 can be effectively improved through various rotation modes.
When using, can be convenient make installation axle 502 rotate, and then drive the tilting of swivel becket 5, drive the mixing drum 2 slope through swivel becket 5 simultaneously, restart rotation subassembly 3, make rotating electric machine 303 drive driving gear 302 rotatory, and then make driving gear 302 drive driven ring gear 301 rotatory, and then driven ring gear 301 has driven the mixing drum 2 rotation at top through discharging pipe 202, and then can make a mixing drum 2 be rotated to the bottom that is close to user one side, and then rotatory open closing cap 201 again, in just can be convenient pour the fodder raw materials that need mix into mixing drum 2, can seal mixing drum 2 of one end after the pouring is accomplished, rethread rotating assembly 3 drives discharging pipe 202 rotation, make mixing drum 2 of the other end rotate to the position that is close to operating personnel, can conveniently open closing cap 201 and add the fodder raw materials, it is more convenient to operate, need not the removal adjustment position of operator round trip.
Can be rotatory through power equipment drive installation axle 502 after adding the fodder, and then installation axle 502 drives rotation ring 5 rotatory, and then rotation ring 5 has driven the rotation of mixing drum 2 through rotating block 501, and then realize mixing drum 2 and rotate round the axle center of installation axle 502, realize the mixing of material, and simultaneously can also start rotating assembly 3, and then rotating motor 303 drives driven ring gear 301 through driving gear 302 and rotate, and then make the rotation of play material pipe 202 drive mixing drum 2, thereby realize that mixing drum 2 rotates round the axle center of play material pipe 202, and can also restart rotating electrical machines 4 and rotate, drive puddler 401 through rotating electrical machines 4 and rotate, and then drive stirring vane 402 and rotate, can more direct drive the inside material of mixing drum 2 and realize removing the stirring, and then can effectively improve the fodder mixing efficiency of mixing drum 2 through multiple rotation means.
While certain exemplary embodiments of the present utility model have been described above by way of illustration only, it will be apparent to those of ordinary skill in the art that modifications may be made to the described embodiments in various different ways without departing from the spirit and scope of the utility model. Accordingly, the drawings and description are to be regarded as illustrative in nature and not as restrictive of the scope of the utility model, which is defined by the appended claims.