Composite seasoning production and processing device
Technical Field
The invention relates to the technical field of composite seasoning production, in particular to a composite seasoning production and processing device.
Background
The compound seasoning is generally formed by mixing and processing a plurality of raw materials, and the prior compound seasoning has the following defects in the production and processing processes:
firstly, in the process of mixing raw materials, the omnibearing stirring effect cannot be realized, more stirring dead angles exist, so that the raw materials cannot be fully mixed, and the processing quality of the composite seasoning is reduced;
secondly, after the raw materials are prepared, a large amount of raw materials are always poured into the stirring mechanism for mixing at one time, so that the workload of the stirring mechanism is increased instantly due to the fact that the excessive raw materials are poured into the stirring mechanism at one time, and the stirring efficiency of the stirring mechanism is seriously affected.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides a composite seasoning production and processing device. In order to achieve the above purpose, the present invention adopts the following technical scheme:
the utility model provides a compound seasoning production processingequipment, includes support base, welds in proper order in mixing drum and the mounting bracket of support base top outer wall, still includes rabbling mechanism, ration liquid feeding mechanism, conveying mechanism and actuating mechanism, and rabbling mechanism includes:
the connecting frame is welded on the outer wall of the middle of the mounting frame, and the universal ball is movably embedded in the connecting frame;
the stirring motor is fixed on the upper outer wall of the top of the mounting frame through bolts, and the bevel gear is fixed on the lower outer wall of the top of the mounting frame through bolts;
one end of the connecting inclined arm is fixedly connected to an output shaft of the stirring motor, the other end of the connecting inclined arm is connected with the inclined rotating shaft through a bearing, and the inclined rotating shaft is also connected with the inner wall of the universal ball through the bearing;
the inclined gear is fixedly sleeved at the top end of the inclined rotating shaft and meshed with the bevel gear, and the stirrer is fixedly connected to the bottom end of the inclined rotating shaft and located in the mixing barrel.
As a preferable technical solution, the quantitative liquid feeding mechanism includes:
the liquid feeding pump is fixed on the outer wall of the top of the supporting base through bolts, and a liquid feeding end of the liquid feeding pump is fixedly communicated with the mixing barrel through a liquid feeding pipe;
the liquid flow sensor and the electromagnetic valve are sequentially arranged on the liquid conveying pipe;
and the controller is fixed on one side outer wall of the supporting base through bolts.
As a preferable technical solution, the number of the conveying mechanisms is two, and both the conveying mechanisms include:
the conveying cylinder is fixedly communicated with the mixing barrel, and the feeding hopper is fixedly communicated with the conveying cylinder;
the transmission shaft is connected with one side inner wall of the transmission cylinder in a penetrating way through the bearing, and the spiral transmission blades are welded on the outer wall of the transmission shaft.
As a preferred embodiment, the driving mechanism includes:
the supporting plate is welded between the two conveying cylinders, and the driving motor is fixed on one side outer wall of the supporting plate through bolts;
the two transmission gears are fixedly sleeved on the two transmission shafts respectively, and the two transmission gears are meshed with the driving gears.
As a preferable technical scheme, the outer wall of the bottom of the connecting frame is fixed with two ultraviolet sterilizing lamps through bolts.
As a preferable technical scheme, a discharge pipe is fixedly communicated with the bottom of the mixing barrel, penetrates through the supporting base, and is provided with a control valve.
As a preferable technical scheme, dodging holes are formed in the mounting frame and the bevel gear, the two dodging holes are arranged concentrically, and the output shaft of the stirring motor sequentially penetrates through the two dodging holes.
As a preferable technical scheme, the driving gear is located between the two transmission gears, and an output shaft of the driving motor is connected with the inner wall of the supporting plate in a penetrating manner through a bearing.
The beneficial effects of the invention are as follows:
1. according to the stirring mechanism designed by the invention, the oblique arm is connected to rotate through the stirring motor, then the oblique rotating shaft and the oblique gear do circular motion around the bevel gear under the action of the universal ball, so that the stirrer connected to the bottom end of the oblique rotating shaft rotates in 360 degrees in the mixing barrel, and the stirrer rotates on the oblique rotating shaft under the meshing effect of the oblique gear and the fixedly arranged bevel gear, so that the omnibearing rotary stirring effect is realized, the condition of stirring dead angles is reduced, the mixing among raw materials is more uniform, and the processing quality of the composite seasoning is improved;
2. according to the quantitative liquid feeding mechanism designed by the invention, the liquid quantity conveyed by the liquid feeding pump is detected and recorded in real time through the liquid flow sensor, when the liquid conveying quantity reaches a required value, the electromagnetic valve and the liquid feeding pump are controlled to be closed by the controller, so that the effect of accurately controlling the liquid conveying quantity can be realized, and the taste quality of compound seasoning is ensured;
3. according to the conveying mechanism designed by the invention, the prepared raw materials are continuously poured into the two conveying drums from the two feed hoppers, and the spiral conveying blades are controlled to rotate by the transmission shafts in the conveying drums, so that the entered raw materials can be added into the mixing drum for mixing a little by little, the problem that the workload of the stirring mechanism is increased due to the fact that excessive raw materials are poured at one time can be solved, and the stirring efficiency of the stirring mechanism is improved conveniently;
4. according to the driving mechanism designed by the invention, the driving motor is used for controlling the driving gear to rotate, and then the two transmission gears meshed with the driving gear rotate in the same direction, so that the two transmission shafts in the two conveying cylinders drive the two spiral conveying blades to work together, and therefore, the driving mechanism is controlled by only one driving source, the space occupation and the use cost of driving equipment are effectively reduced, and the driving mechanism is more economical and practical.
Drawings
FIG. 1 is a schematic perspective view of the whole front view of the present invention;
FIG. 2 is a schematic perspective view of the whole bottom view of the present invention;
FIG. 3 is a schematic perspective view of the stirring mechanism in the present invention;
FIG. 4 is a schematic perspective view of a portion of the components of the stirring mechanism of the present invention;
FIG. 5 is a schematic view of a three-dimensional enlarged structure of a quantitative liquid feeding mechanism in the present invention;
FIG. 6 is a schematic perspective view of two conveying mechanisms and a driving mechanism according to the present invention;
FIG. 7 is a schematic perspective view of the interior of the delivery cartridge of the present invention;
FIG. 8 is a schematic view showing a three-dimensional enlarged structure of two ultraviolet germicidal lamps in the present invention;
fig. 9 is a schematic perspective view of two avoidance holes according to the present invention.
In the figure: 1. a support base; 2. a mixing drum; 3. a mounting frame; 4. a connecting frame; 5. a stirring motor; 6. bevel gears; 7. connecting the oblique arms; 8. an inclined rotating shaft; 9. an oblique gear; 10. a stirrer; 11. a universal ball; 12. a liquid feeding pump; 13. a liquid feeding pipe; 14. a liquid flow sensor; 15. an electromagnetic valve; 16. a controller; 17. a delivery cylinder; 18. a feed hopper; 19. a transmission shaft; 20. spiral conveying blades; 21. a transmission gear; 22. a support plate; 23. a driving motor; 24. a drive gear; 25. an ultraviolet germicidal lamp; 26. a discharge pipe; 27. a control valve; 28. avoiding the hole.
Detailed Description
The following description of the embodiments of the present invention 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 invention, but not all embodiments.
1, referring to fig. 1 to 4 and 9, a composite seasoning production and processing device comprises a support base 1, a stirring mechanism, a mixing drum 2 and a mounting frame 3 which are welded on the outer wall of the top of the support base 1 in sequence;
the stirring mechanism comprises a connecting frame 4, a universal ball 11, a stirring motor 5, a bevel gear 6, a connecting bevel arm 7, a bevel rotating shaft 8, a bevel gear 9 and a stirrer 10;
specifically, the connecting frame 4 is welded on the middle outer wall of the mounting frame 3, the universal ball 11 is movably embedded in the connecting frame 4, the stirring motor 5 is fixed on the upper outer wall of the top of the mounting frame 3 through a bolt, the bevel gear 6 is fixed on the lower outer wall of the top of the mounting frame 3 through a bolt, one end of the connecting bevel arm 7 is fixedly connected to the output shaft of the stirring motor 5, the other end of the connecting bevel arm 7 is connected with the bevel shaft 8 through a bearing, the bevel shaft 8 is also connected with the inner wall of the universal ball 11 through a bearing, the bevel gear 9 is fixedly sleeved on the top end of the bevel shaft 8 and meshed with the bevel gear 6, and the stirrer 10 is fixedly connected to the bottom end of the bevel shaft 8 and positioned in the mixing drum 2;
when the stirring device is used, the stirring motor 5 is used for driving the connecting bevel arm 7 to rotate, then under the action of the universal ball 11, the bevel shaft 8 and the bevel gear 9 can do circular motion around the bevel gear 6, the stirrer 10 connected with the bottom end of the bevel shaft 8 can rotate in 360 degrees in the mixing barrel 2, and under the meshing effect of the bevel gear 9 and the fixedly arranged bevel gear 6, the stirrer 10 can rotate on the bevel shaft 8, so that the omnibearing rotary stirring effect is realized, the condition of stirring dead angles is reduced, and the raw materials are mixed more fully and uniformly;
in addition, the bottom of the mixing drum 2 is fixedly communicated with a discharge pipe 26, the discharge pipe 26 penetrates through the supporting base 1, a control valve 27 is installed on the discharge pipe 26, avoidance holes 28 are formed in the mounting frame 3 and the bevel gear 6, the two avoidance holes 28 are concentrically arranged, and an output shaft of the stirring motor 5 sequentially penetrates through the two avoidance holes 28.
Example 2, referring to fig. 1, 5 and 8, this example is optimized based on example 1, specifically: the device for producing and processing the composite seasonings further comprises a quantitative liquid feeding mechanism;
the quantitative liquid feeding mechanism comprises a liquid feeding pump 12, a liquid flow sensor 14, an electromagnetic valve 15 and a controller 16;
specifically, the liquid-feeding pump 12 is fixed on the top outer wall of the support base 1 through bolts, the liquid-feeding end of the liquid-feeding pump 12 is fixedly communicated with the mixing drum 2 through a liquid-feeding pipe 13, the liquid flow sensor 14 and the electromagnetic valve 15 are sequentially arranged on the liquid-feeding pipe 13, the controller 16 is fixed on one side outer wall of the support base 1 through bolts, and the liquid flow sensor 14, the electromagnetic valve 15 and the liquid-feeding pump 12 are electrically connected with the controller 16 through wires and are controlled by the controller 16;
when the intelligent seasoning system is used, the liquid quantity conveyed by the liquid conveying pump 12 is detected and recorded in real time through the liquid flow sensor 14, and when the liquid conveying quantity reaches a required value, the electromagnetic valve 15 and the liquid conveying pump 12 are controlled to be closed by the controller 16, so that the effect of accurately controlling the liquid conveying quantity can be realized, and the taste quality of composite seasoning is ensured;
in addition, two ultraviolet germicidal lamps 25 are fixed on the outer wall of the bottom of the connecting frame 4 through bolts, and raw materials in the mixing drum 2 can be sufficiently sterilized through the two ultraviolet germicidal lamps 25.
Example 3, with reference to fig. 1 and 6-7, this example is optimized on the basis of example 1, specifically: the composite seasoning production and processing device further comprises a conveying mechanism and a driving mechanism;
wherein the number of the conveying mechanisms is two, and each conveying mechanism comprises a conveying cylinder 17, a feed hopper 18, a transmission shaft 19 and a spiral conveying blade 20;
specifically, the conveying cylinder 17 is fixedly communicated with the mixing barrel 2, the feed hopper 18 is fixedly communicated with the conveying cylinder 17, the transmission shaft 19 is in penetrating connection with one side inner wall of the conveying cylinder 17 through a bearing, and the spiral conveying blades 20 are welded on the outer wall of the transmission shaft 19;
when the stirring mechanism is used, the prepared raw materials are continuously poured into the two conveying drums 17 from the two feed hoppers 18, the spiral conveying blades 20 are controlled to rotate by the transmission shafts 19 in the conveying drums 17, and then the entered raw materials can be added into the mixing drum 2 to be mixed little by little, so that the problem that the workload of the stirring mechanism is increased due to the fact that excessive raw materials are poured at one time can be solved, and the stirring efficiency of the stirring mechanism is improved conveniently;
wherein the driving mechanism comprises a supporting plate 22, a driving motor 23, two transmission gears 21 and a driving gear 24;
specifically, the supporting plate 22 is welded between the two conveying drums 17, the driving motor 23 is fixed on one side outer wall of the supporting plate 22 through bolts, the two transmission gears 21 are respectively and fixedly sleeved on the two transmission shafts 19, the two transmission gears 21 are meshed with the driving gear 24, the driving gear 24 is positioned between the two transmission gears 21, and an output shaft of the driving motor 23 is connected with the inner wall of the supporting plate 22 in a penetrating manner through a bearing;
when the spiral conveying device is used, the driving gear 24 is controlled to rotate through the driving motor 23, then the two transmission gears 21 meshed with the driving gear 24 rotate in the same direction, so that the two transmission shafts 19 in the two conveying drums 17 drive the two spiral conveying blades 20 to work together, and therefore the spiral conveying device is controlled by only one driving source, the space occupation and the use cost of the driving device are effectively reduced, and the spiral conveying device is more economical and practical.
The working mode of the invention is as follows:
firstly, the liquid quantity conveyed by the liquid conveying pump 12 is detected and recorded in real time through the liquid flow sensor 14, when the liquid conveying quantity reaches a required value, the electromagnetic valve 15 and the liquid conveying pump 12 are controlled to be closed by the controller 16, so that the effect of accurately controlling the liquid conveying quantity can be realized, and the quality of the compound seasoned taste is ensured;
secondly, the prepared raw materials are continuously poured into the two conveying drums 17 from the two feed hoppers 18, the driving gear 24 is controlled to rotate through the driving motor 23, then the two transmission gears 21 meshed with the driving gear 24 rotate in the same direction, so that the two transmission shafts 19 in the two conveying drums 17 drive the two spiral conveying blades 20 to work together, and the entered raw materials can be added into the mixing drum 2 for mixing a little by little, thus the problem that the workload of a stirring mechanism is increased due to the fact that excessive raw materials are poured at one time can be solved, and the stirring efficiency of the stirring mechanism is convenient to improve;
subsequently, the oblique arm 7 is connected to rotate through the driving of the stirring motor 5, then under the action of the universal ball 11, the oblique rotating shaft 8 and the oblique gear 9 can do circular motion around the bevel gear 6, and then the stirrer 10 connected with the bottom end of the oblique rotating shaft 8 rotates in 360 degrees in the mixing barrel 2, and under the meshing effect of the oblique gear 9 and the fixedly arranged bevel gear 6, the stirrer 10 rotates on the oblique rotating shaft 8, so that the omnibearing rotary stirring effect is realized, the condition of stirring dead angles is reduced, and the raw materials are mixed more fully and uniformly;
finally, the raw materials in the mixing tub 2 can be sufficiently sterilized by the two ultraviolet sterilizing lamps 25, and after the production is completed, the composite seasoning can be discharged from the discharge pipe 26 by opening the control valve 27.
The foregoing is only a preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art, who is within the scope of the present invention, should make equivalent substitutions or modifications according to the technical scheme of the present invention and the inventive concept thereof, and should be covered by the scope of the present invention.