Preparation facilities of mulberry leaf powder
Technical Field
The utility model relates to the technical field of mulberry leaf powder preparation equipment, in particular to a mulberry leaf powder preparation device.
Background
The preparation method comprises the steps of preparing sodium bisulphite for color protection, preparing sodium bisulphite into a solution with the concentration of 0.25%, soaking 50 kg of mulberry leaves and 10 kg of lotus fog into a stainless steel barrel with 80 kg of sodium bisulphite solution with the concentration of 0.25% for color protection, then putting the mulberry leaves and lotus fog immersed into the color protection liquid into a pulverizer with the rotating speed of 1000 revolutions per minute for pulverizing and stirring, so that the mulberry leaves, the lotus fog and the color protection agent are completely and uniformly mixed, pulping by using a pulping machine, and removing incompletely pulverized mulberry leaves through sieve holes of the pulping machine.
In the process of uniformly mixing broken mulberry leaves, wax apple and color fixative, the inner wall of the stirring box is inevitably adhered with more raw materials due to certain viscosity after the fermented mulberry leaf powder, wax apple and color fixative are mixed, so that the waste of the raw materials is caused, and the manufacturing cost of the mulberry leaf powder is increased. Therefore, a preparation device of mulberry leaf powder is needed to solve the above problems.
Disclosure of Invention
The present utility model is directed to solving the problems set forth in the background art.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
the utility model provides a preparation facilities of mulberry leaf powder, includes the mount, the mount top is installed through the bolt and is mixed a section of thick bamboo, the mixed section of thick bamboo includes a chamber section of thick bamboo, chamber section of thick bamboo left side is connected with the auxiliary material and adds the pipe, chamber section of thick bamboo right side is connected with the feed inlet, the feed inlet top is provided with prevents stifled part, chamber section of thick bamboo bottom is connected with the solenoid valve pipe, chamber section of thick bamboo top buckle closure has the top cap, chamber section of thick bamboo internally mounted has mixing element.
Preferably, the bottom cover is installed through the bolt to the top cap bottom, the inside main gear that rotates of bottom is installed, the main gear top is provided with drive arrangement, the main gear bottom is connected with main pivot, just main pivot bottom is connected with cleans the leaf, and main pivot can drive cleans the leaf and scrapes in a chamber section of thick bamboo inside, makes the raw materials after mixing then can stir the unloading fast after solenoid valve pipe opens.
Preferably, the driving device is a driving motor, the driving motor is mounted at the top end of the cavity cylinder, the outer side of the main gear is meshed with the auxiliary gear through teeth, the bottom end of the auxiliary gear penetrates through the bottom cover through the shaft end and then is connected and fixed with the auxiliary rotating shaft, a plurality of blade groups are arranged on the outer sides of the main rotating shaft and the auxiliary rotating shaft, the main gear and the auxiliary gear are mutually matched and then drive the main rotating shaft and the auxiliary rotating shaft to oppositely rotate, and then the two blade groups are controlled to rotate and mix.
Preferably, the vertical section of the cleaning blade is in a triangular structure, and the sharp corner end of the cleaning blade is abutted against the inner wall of the cavity cylinder, so that the friction force during rotation of the cleaning blade can be reduced through the triangular structural design of the cleaning blade.
Preferably, the leaf group includes stirring leaf, stirring leaf vertical section is L shape structure, stirring leaf passes through the bolt fastening in main pivot and assists the pivot outside, and a plurality of stirring leaves are in opposite directions and are rotated, can further improve the mixing effect to the raw materials.
Preferably, the stirring She Deduan has the slider through guide slot sliding connection, just the slider bottom is connected with the connecting rod, there is the scraper blade in the connecting rod outside through bolted connection, just the scraper blade is contradicted at chamber section of thick bamboo inner wall, the connecting rod top is connected fixedly through bolt and stirring leaf, and the scraper blade rotates the time, and the scraper blade can scrape the remaining raw materials of chamber section of thick bamboo inner wall, avoids appearing the residual of raw materials.
Preferably, the anti-blocking component comprises a beam frame, the beam frame is fixed on the left side and the right side of the feeding hole, an electric telescopic rod is connected to the center position of the bottom end of the beam frame, a steel wire rod is connected to the output end of the electric telescopic rod, a cone block is connected to the bottom end of the steel wire rod, the cone block can be pushed to move through the steel wire rod, and then the cone block can be pushed down to block the mulberry leaves after moving up and down.
The utility model has at least the following beneficial effects:
1. through setting up mixing element, realize the scraping and mixing with higher speed to the chamber section of thick bamboo inner wall, compare in traditional structure, this device can drive main pivot and auxiliary shaft rotation after through main gear and auxiliary gear cooperation, makes stirring leaf can mix with higher speed to multiple raw materials with the scraper blade cooperation, and the scraper blade can scrape the chamber section of thick bamboo inner wall in rotating simultaneously, has guaranteed to glue the clearance of gluing raw and other materials to the chamber section of thick bamboo inner wall, has reduced the extravagant degree of raw and other materials, has reduced the cost of manufacture of mulberry leaf powder.
2. Through setting up anti-blocking part, realize preventing stifled unloading to broken mulberry leaf, this device is through flexible accessible wire rod drive awl piece of electric telescopic handle's output removes, and the awl piece is at the inside removal of feed inlet to push down the broken mulberry leaf of the inside jam of feed inlet, the flexible design of wire rod simultaneously can make the awl piece can be at the inside removal of bend of feed inlet, further improves stability.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for the description of the embodiments will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present utility model, and other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic diagram of the external structure of a device for preparing mulberry leaf powder according to the present utility model;
fig. 2 is a schematic diagram of a three-dimensional burst structure of a mixing drum in a mulberry leaf powder preparation device according to the present utility model;
FIG. 3 is a schematic view of a three-dimensional burst of anti-blocking components in a device for preparing mulberry leaf powder according to the present utility model;
FIG. 4 is a schematic diagram showing the three-dimensional burst of a mixing part in a device for preparing mulberry leaf powder according to the present utility model;
fig. 5 is an enlarged schematic view of the structure a of fig. 4 according to the present utility model.
In the figure: 1. a placing frame; 2. a mixing drum; 21. a cavity cylinder; 22. a solenoid valve tube; 23. a top cover; 24. an auxiliary material adding pipe; 25. a feed inlet; 3. a mixing member; 31. a driving motor; 32. a main gear; 33. a main rotating shaft; 34. cleaning leaves; 35. an auxiliary gear; 36. an auxiliary rotating shaft; 37. a leaf group; 371. stirring the leaves; 372. a slide block; 373. a connecting rod; 374. a scraper; 38. a bottom cover; 4. an anti-blocking member; 41. a beam frame; 42. an electric telescopic rod; 43. a steel wire rod; 44. and (5) a cone block.
Detailed Description
The present utility model will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present utility model more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
Referring to fig. 1 to 5, a preparation facilities of mulberry leaf powder, including mount 1, mount 1 installs mixing drum 2 through the bolt in top, and mixing drum 2 includes chamber section of thick bamboo 21, and chamber section of thick bamboo 21 left side is connected with auxiliary material and adds pipe 24, and chamber section of thick bamboo 21 right side is connected with feed inlet 25, and the feed inlet 25 top is provided with prevents stifled part 4, and chamber section of thick bamboo 21 bottom is connected with solenoid valve pipe 22, and chamber section of thick bamboo 21 top buckle closure has top cap 23, and chamber section of thick bamboo 21 internally mounted has mixing part 3.
The bottom cover 38 is installed to top cap 23 bottom through the bolt, and bottom cover 38 inside rotation installs master gear 32, and master gear 32 top is provided with drive arrangement, and master gear 32 bottom is connected with main pivot 33, and main pivot 33 bottom is connected with cleans leaf 34.
The driving device is a driving motor 31, the driving motor 31 is arranged at the top end of the cavity cylinder 21, the outer side of the main gear 32 is meshed with the auxiliary gear 35 through teeth, the bottom end of the auxiliary gear 35 penetrates through the bottom cover 38 through the shaft end and then is connected and fixed with the auxiliary rotating shaft 36, and a plurality of blade groups 37 are arranged on the outer sides of the main rotating shaft 33 and the auxiliary rotating shaft 36.
The vertical section of the cleaning blade 34 is in a triangular structure, and the sharp corner end of the cleaning blade 34 is abutted against the inner wall of the cavity cylinder 21.
The blade group 37 includes stirring blades 371, the vertical section of the stirring blades 371 is in an L-shaped structure, and the stirring blades 371 are fixed on the outer sides of the main rotating shaft 33 and the auxiliary rotating shaft 36 through bolts.
The stirring leaf 371 bottom is connected with the slider 372 through the guide slot sliding connection, and the slider 372 bottom is connected with the connecting rod 373, and the connecting rod 373 outside is connected with the scraper blade 374 through the bolt, and the scraper blade 374 is contradicted at chamber section of thick bamboo 21 inner wall, and the connecting rod 373 top is connected fixedly with stirring leaf 371 through the bolt.
The anti-blocking component 4, the anti-blocking component 4 comprises a beam frame 41, the beam frame 41 is fixed at the left side and the right side of the feed inlet 25, an electric telescopic rod 42 is connected at the center position of the bottom end of the beam frame 41, the output end of the electric telescopic rod 42 is connected with a steel wire rod 43, and the bottom end of the steel wire rod 43 is connected with a cone block 44.
The main rotating shaft 33 is controlled to rotate by taking the driving motor 31 as a power source, so that the main rotating shaft 33 can drive the cleaning blade 34 to scrape in the cavity drum 21, then the mixed raw materials can be rapidly stirred for discharging after the electromagnetic valve tube 22 is opened, so that the discharging speed is improved, the main rotating shaft 33 and the auxiliary rotating shaft 36 are driven to rotate oppositely after the main rotating shaft 32 and the auxiliary rotating shaft 35 are mutually matched through the main rotating shaft 32 and the auxiliary rotating shaft 35, then the two blade groups 37 are controlled to rotate and mix, the mixing effect of the raw materials is further improved, the friction force of the cleaning blade 34 during rotation can be reduced, the cleaning blade 34 is prevented from generating larger resistance during rotation, meanwhile, the cleaning blade 34 can push the mixed raw materials, the discharging speed of the raw materials is conveniently improved, when the main rotating shaft 33 and the auxiliary rotating shaft 36 rotate, the stirring blades 371 rotate oppositely, the mixing effect of the raw materials can be further improved, the position of the scraping blade 374 can be changed through the inner movement of the guide groove of the sliding block 372, the scraping blade 374 can be matched with the inner wall of the cavity drum 21, the rolling of the scraping blade can be prevented from being damaged by the rolling down of the electric screw rod, the rolling rod 43 can be prevented from being damaged when the inner wall of the cleaning blade 34 is pushed by the inner wall of the cavity drum 374, the rolling rod is prevented from being damaged, and the rolling down of the rolling rod 43 can be simultaneously, and the rolling rod is prevented from being blocked by the rolling rod 43, and the rolling rod is replaced by the rolling rod 43, the free addition of the wax apple and the color fixative can be conveniently carried out by the staff through the auxiliary material adding pipe 24.
Working principle: according to the drawings 1 and 2, the crushed Sang Shecong feeding hole 25 is put into, so that mulberry leaves can fall into the cavity barrel 21 in a moving way, meanwhile, according to the drawings 3, the electric telescopic rod 42 is started, the output end of the electric telescopic rod 42 stretches and stretches to push the cone block 44 to move through the steel screw 43, then the cone block 44 can press down crushed mulberry leaves blocked in the feeding hole 25, when the crushed mulberry leaves fall into the cavity barrel 21, the driving motor 31 is started, the output end of the driving motor 31 can drive the main gear 32 to rotate, the main gear 32 drives the auxiliary gear 35 to rotate in the rotating way, the main gear 32 and the auxiliary gear 35 can respectively drive the main rotating shaft 33 and the auxiliary rotating shaft 36 to rotate, the main rotating shaft 33 and the auxiliary rotating shaft 36 can drive the leaf group 37 to rotate to mix the mulberry leaves, the wax and the toner, and the scraping blade 374 can scrape the inner wall of the cavity barrel 21;
secondly, according to fig. 5, the worker can move the slider 372 inside the guide groove of the stirring blade 371, so as to change the position of the connecting rod 373, so that the connecting rod 373 can push the scraper 374 to move, the scraper 374 can conveniently abut against the inner walls of the cavity cylinders 21 with various inner diameters, and the attaching compactness of the scraper 374 is improved.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made therein without departing from the spirit and scope of the utility model, which is defined by the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.