Five cereals meal replacement powder dosing unit
Technical Field
The utility model belongs to the technical field of meal replacement powder processing, and particularly relates to a five-cereal meal replacement powder batching device.
Background
The five-cereal meal replacement powder is a powdery food prepared by taking a plurality of grains as raw materials, refining, finely grinding and mixing, and is also called multi-cereal powder or whole grain powder. It contains rich nutrients such as protein, cellulose, vitamins and minerals, and has low calorie and easy absorption. Therefore, the five-cereal meal replacement powder is widely considered as a healthy, nutritional and convenient meal replacement food.
The existing five-cereal meal replacement powder is usually prepared by workers manually during production, the workers are required to weigh and throw raw materials one by one, more manpower investment and time cost are required for manual preparation, the production period is prolonged, and the production efficiency is reduced.
Disclosure of utility model
The utility model aims to provide a five-cereal meal replacement powder batching device, which aims to solve the problem of lower manual batching efficiency in the prior art.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
The five-cereal meal replacing and batching device comprises a bottom plate, wherein a conveying table is arranged at the top of the bottom plate, and a plurality of batching mechanisms are arranged on one side of the bottom plate;
The batching mechanism comprises a supporting plate, one side of the supporting plate is fixedly provided with a blanking cylinder through a bracket, the inside of the blanking cylinder is provided with a batching piece, the batching piece comprises a batching cylinder, the batching cylinder is rotatably arranged in the blanking cylinder, the outer surface of the batching cylinder is provided with a trough, and one side of the blanking cylinder is provided with a driving piece for driving the batching cylinder to rotate;
The bottom of the blanking cylinder is provided with a blanking opening, and the top of the blanking cylinder is provided with a feeding opening.
Preferably, the upper end of the supporting plate is fixedly provided with a storage box through a connecting frame, and the storage box is erected at the top of the blanking barrel.
Preferably, the driving piece comprises a motor, the motor is fixedly arranged on the support, the output end of the motor is fixedly connected with a first gear, one side of the batching barrel is fixedly connected with a rotating shaft, the outer surface of the rotating shaft is fixedly sleeved with a second gear, and the second gear is meshed with the first gear.
Preferably, the arc length of the feed opening is greater than that of the trough.
Preferably, the inside of silo is provided with sweeps a, it includes the brush to sweep a, the brush rotates the inside of installing in the silo, and the one end of brush passes batching section of thick bamboo fixedly connected with gear III.
Preferably, the inside wall fixedly connected with barrel casing of unloading section of thick bamboo, the tip fixedly connected with gear IV of barrel casing, gear IV and gear three-phase engagement, the outside of pivot is connected with the inner wall rotation of barrel casing.
Compared with the prior art, the utility model has the beneficial effects that:
According to the utility model, the charging barrel can be driven to rotate through the driving piece, raw materials can quantitatively fall into the material groove through the rotation of the charging barrel, and the raw materials falling into the material groove can be automatically put along with the rotation of the charging barrel, so that the quantitative automatic putting of the raw materials is realized, and the quantitative automatic putting of various raw materials can be realized through the arrangement of the plurality of batching mechanisms.
Drawings
FIG. 1 is one of the perspective views of the present utility model;
FIG. 2 is a schematic diagram of a dispensing mechanism according to the present utility model;
FIG. 3 is a second schematic diagram of the dispensing mechanism of the present utility model;
FIG. 4 is a schematic view of the partial structure shown in FIG. 3;
fig. 5 is a schematic view of the structure of the cartridge of the present utility model.
In the figure:
1. A bottom plate;
2. a transfer station;
3. A batching mechanism;
31. A support plate;
32. A bracket;
33. A blanking cylinder;
34. the material mixing device comprises a material mixing piece, 341, a material mixing cylinder, 342, a rotating shaft, 343 and a material groove;
35. Driving part 351, motor 352, first gear 353, second gear;
36. A feed opening;
37. a storage tank;
38. A feed inlet;
39. The device comprises a sweeping piece, 391, brushes, 392, a third gear, 393, a fourth gear, 394 and a cylinder sleeve;
310. And a connecting frame.
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. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-5, a five-cereal meal replacing and batching device comprises a bottom plate 1, wherein a conveying table 2 is arranged at the top of the bottom plate 1, a plurality of throwing boxes are arranged on the conveying table 2, a plurality of batching mechanisms 3 are arranged on one side of the bottom plate 1, and the batching mechanisms 3 are used for throwing various raw materials respectively;
Specifically, the batching mechanism 3 comprises a supporting plate 31, one side of the supporting plate 31 is fixedly provided with a blanking barrel 33 through a bracket 32, the bracket 32 is composed of three connecting rods, the bracket 32 is used for fixing the blanking barrel 33, a batching piece 34 is arranged in the blanking barrel 33, the batching piece 34 comprises a batching barrel 341, the batching barrel 341 is rotatably arranged in the blanking barrel 33, a trough 343 is formed in the outer surface of the batching barrel 341, the size of the trough 343 in the batching mechanisms 3 can be different, the specific capacity of the trough 343 can be set according to the actual proportioning requirements of various raw materials, and a driving piece 35 used for driving the batching barrel 341 to rotate is arranged on one side of the blanking barrel 33;
The bottom of the blanking barrel 33 is provided with a blanking opening 36, the top of the blanking barrel 33 is provided with a feeding opening 38, the feeding opening 38 corresponds to a material groove 343, a driving piece 35 drives a material mixing barrel 341 to rotate in the blanking barrel 33, the rotation speed of the material mixing barrel 341 needs to be set according to the conveying speed of the conveying table 2 and the interval between the feeding boxes on the conveying table 2, and when the material groove 343 rotates to the blanking opening 36, raw materials in the material groove 343 can fall into the feeding boxes from the blanking opening 36 through self gravity, so that automatic feeding of the raw materials is completed.
More specifically, the upper end of backup pad 31 is through link 310 fixed mounting has bin 37, and bin 37 is used for depositing the raw materials, and bin 37 erects at the top of feed cylinder 33, and the bottom of bin 37 is provided with the unloading pipe, and the unloading pipe is linked together with feed inlet 38, and when driving piece 35 drove silo 343 and rotate to feed inlet 38 department, the raw materials in the bin 37 can enter into silo 343 inside through unloading pipe and feed inlet 38, because the size of silo 343 and the rotational speed of feed cylinder are all fixed, so the volume of the raw materials that falls into silo 343 at every turn is fixed, can realize quantitative batching.
Referring to fig. 4 and 5, the driving member 35 includes a motor 351, the motor 351 is fixedly mounted on the bracket 32, an output end of the motor 351 is fixedly connected with a first gear 352, one side of the batching barrel 341 is fixedly connected with a rotating shaft 342, a second gear 353 is fixedly sleeved on an outer surface of the rotating shaft 342, an end portion of the rotating shaft 342 passes through the blanking barrel 33 and extends to the supporting plate 31, the rotating shaft 342 passes through the exterior of the blanking barrel 33 and is rotationally connected with the blanking barrel 33, an end portion of the rotating shaft 342 is rotationally connected with the supporting plate 31, the second gear 353 is meshed with the first gear 352, the driving motor 351 drives the first gear 352 to rotate, the first gear 352 rotates to drive the second gear 353 to rotate, the second gear 353 rotates to drive the rotating shaft 342 to rotate to drive the batching barrel 341 to rotate, when the batching barrel 343 rotates to the upper side, raw materials in the storage box 37 can fall into the batching barrel 343, and when the batching barrel 343 falls into the feeding box, the automatic batching of raw materials can be achieved in a reciprocating manner.
In order to ensure that the raw materials can sufficiently fall from the trough 343, the following arrangement is made, and the arc length of the feed opening 36 is greater than that of the trough 343.
Further, the inside of silo 343 is provided with sweeps piece 39, sweeps piece 39 includes brush 391, brush 391 rotates to install in the inside of silo 343, and the one end of brush 391 passes batching section of thick bamboo 341 fixedly connected with gear three 392, brush 391 contacts with the interior bottom wall of silo 343, gear three 392 is used for sweeping the raw materials in the silo 343, when the raw materials falls into silo 343, batching section of thick bamboo 341 is in the pivoted in-process, feed cylinder 33 can prevent that the raw materials from leaking outward, the inner wall of feed cylinder 33 can cause the extrusion to the raw materials, lead to the raw materials to be compacted in silo 343, in order to guarantee that the raw materials drops smoothly, can stir the raw materials through brush 391 at batching section of thick bamboo 341 pivoted in-process, prevent that the raw materials from being compacted.
Further, the inner sidewall of the blanking barrel 33 is fixedly connected with a barrel sleeve 394, the end portion of the barrel sleeve 394 is fixedly connected with a gear four 393, the gear four 393 is meshed with the gear three 392, the outer portion of the rotating shaft 342 is rotatably connected with the inner wall of the barrel sleeve 394, fig. 5 is a sectional view of the barrel sleeve 394 and the rotating shaft 342 (the connection portion of the barrel sleeve 394 and the inner sidewall of the blanking barrel 33 is not shown), the gear three 392 is driven to rotate around the gear four 393 in the rotating process of the rotating shaft 342, and due to the meshing effect of the gear three 392 and the gear four 393, the gear three 392 can roll along the gear four 393, so that the brush 391 is driven to rotate.
When the automatic dosing device is used, the dosing cylinder 341 is driven to rotate through the driving piece 35, when the material tank 343 rotates to the feeding hole 38, raw materials in the storage box 37 can fall into the material tank 343, when the material tank 343 rotates to the discharging hole 36, the raw materials falling into the material tank 343 can fall into the dosing box to finish the dosing of the raw materials, the automatic dosing of the equipment to the raw materials can be realized along with the rotation of the dosing cylinder 341, the automatic dosing of various raw materials can be realized through the arrangement of the plurality of dosing mechanisms 3, and the amount of the raw materials falling into the material tank 343 each time is fixed due to the fact that the size of the material tank 343 and the rotation speed of the material tank are fixed, so that automatic dosing is realized.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.