Beverage production equipment convenient to clearance residue
Technical Field
The utility model relates to the technical field of beverage production and processing, in particular to beverage production equipment convenient for cleaning residues.
Background
In the beverage processing process, a series of production devices are often used to achieve the purpose of beverage processing production, and the beverage production devices refer to devices for producing various beverages, and generally, a production line is composed of a plurality of devices to process various beverages, such as a water treatment device, a bottle flushing machine, a filling machine, a sealing machine, a sterilizing device, a CIP cleaning in place machine, a filtering device, a packaging device, a mixing device, and the like. However, the efficient mixing device for beverage processing in the market still has certain defects in the use process, such as low mixing efficiency, long mixing processing time and increased processing cost.
The prior patent (bulletin number: CN 216826034U) discloses a stirring device for beverage processing production, which comprises a stirring barrel, the control box is installed on the right side of the stirring barrel, and feed inlets are all arranged on two sides of the upper end of the stirring barrel, two stirring shafts are arranged inside the stirring barrel, and stirring plates which are arranged in a staggered manner are arranged on the two stirring shafts, so that uniform stirring of materials can be realized, the working efficiency is improved, a connecting shaft is arranged at the bottom of the stirring barrel, and stirring blades on two sides of the connecting shaft can uniformly stir the materials at the bottom, so that the materials are fully mixed.
However, in the above scheme, there is still a certain disadvantage, in the beverage production process, solid additives can be added into the raw materials, and in the discharging process, the raw materials remain on the inner wall of the mixing drum, so that not only is the resource wasted, but also bacteria can be easily bred in the mixing drum, and the practicability is reduced.
In view of this, the present utility model proposes a beverage production device that facilitates cleaning of residues.
Disclosure of Invention
The utility model provides beverage production equipment convenient for cleaning residues, which solves the problems that raw materials remain on the inner wall of a mixing drum in the discharging process of the mixing drum in the prior beverage production equipment in the related art, so that not only is the resource wasted, but also bacteria are easily bred in the mixing drum.
The beverage production equipment convenient for cleaning residues comprises a mixing barrel and a barrel bottom fixedly connected to the lower end of the mixing barrel, wherein a stirring wall scraping mechanism is arranged in the mixing barrel and used for cleaning the inner walls of the mixing barrel and the barrel bottom and stirring materials in the mixing barrel and the barrel bottom, and a transmission mechanism is arranged at the top of the mixing barrel and used for rotating and lifting the stirring wall scraping mechanism;
the stirring wall scraping mechanism comprises:
The scraping wall shaking assemblies are arranged inside the mixing barrel in a sliding manner, two adjacent scraping wall shaking assemblies are parallel to each other, and the periphery of each scraping wall shaking assembly is provided with a cutting edge which is attached to the inner wall of the mixing barrel;
the lifting cylinder penetrates through the top of the mixing cylinder in a sliding manner and is fixedly sleeved at the centers of the plurality of scraping and sloshing components, and the plurality of scraping and sloshing components are connected in series;
The stirring panels are sleeved in the scraping wall shaking assembly in a sliding manner and distributed on the scraping wall shaking assembly in an annular array manner;
The scraping bottom plates are in one-to-one correspondence with the stirring panels, are fixedly connected to the bottoms of the stirring panels, and the edges of the lower sides of the scraping bottom plates are attached to the inner wall of the barrel bottom;
The star-shaped groove is arranged in the lifting cylinder and is spliced with the transmission mechanism.
Preferably, the transmission mechanism comprises a first transmission part, a second transmission part, a third transmission part, a motor, a bracket and a mounting frame;
The mounting frame is fixedly connected to the upper end of the mixing barrel and is of a right-angle frame structure;
The bracket is fixedly connected to the upper end of the mixing cylinder and is of a right-angle frame structure;
the motor is fixedly arranged at the upper end of the bracket;
The second transmission part is rotatably arranged on the lower side of the mounting frame transverse plate and rotates under the cooperation of the motor shaft;
the first transmission part is rotationally arranged at the lower side of the mounting frame transverse plate, synchronously rotates under the transmission fit of the first transmission part and drives the lifting cylinder to synchronously rotate under the fit of the star-shaped groove;
And the third transmission part is arranged between the stirring wall scraping mechanism and the motor and drives the stirring wall scraping mechanism to move up and down under the transmission of the motor shaft.
Preferably, the first transmission part comprises a first gear rotatably connected to the lower side of the mounting frame transverse plate, a star-shaped shaft is fixed at the lower end of the center of the first gear, and the star-shaped shaft extends into the star-shaped groove and is in sliding connection with the star-shaped groove.
Preferably, the second transmission part comprises a second gear which is rotationally connected to the lower side of the mounting frame transverse plate, the second gear is meshed with the first gear, a shaft lever is fixed at the lower end of the center of the second gear, a first bevel gear is fixedly connected to the lower end of the shaft lever, a second bevel gear is connected to the lower side of the first bevel gear in a meshed mode, and the second bevel gear is fixedly sleeved on the outer wall of a shaft on the motor.
Preferably, the third transmission part comprises two trays rotatably sleeved on the outer wall of the lifting cylinder, and the two trays are fixedly connected with a transmission frame.
Preferably, a transmission column is sleeved in the transmission frame in a sliding manner, a swing rod is connected between the transmission column and a shaft on the motor, one end of the swing rod is fixedly connected with the shaft, and the other end of the swing rod is rotatably connected with the transmission column.
Preferably, the wall scraping and sloshing assembly comprises a wall scraping plate, a plurality of through holes are formed in the wall scraping plate in a penetrating mode, a plurality of through grooves are formed in the wall scraping plate in a penetrating mode, and the stirring panel is in sliding fit with the through grooves.
Preferably, the upper end of the mixing cylinder is provided with a feed inlet, and the bottom of the cylinder bottom is provided with a blanking pipe.
Preferably, the fixed cover of outer wall of compounding section of thick bamboo is equipped with solid fixed ring, gu fixed ring's lower extreme equidistance fixedly connected with a plurality of is used for carrying out the post leg that supports to the compounding section of thick bamboo.
The working principle and the beneficial effects of the utility model are as follows:
In the utility model, the stirring wall scraping mechanism is arranged in the mixing barrel, the transmission mechanism is arranged at the top of the mixing barrel, and the stirring wall scraping mechanism can be driven to rotate under the action of the transmission mechanism. In the stirring wall scraping mechanism rotating process, the wall scraping disc can be driven to rotate, the wall scraping disc drives the stirring panel to revolve, materials inside the mixing drum are stirred and mixed through the stirring panel, and meanwhile, the bottom scraping panel at the lower end of the stirring panel can scrape and clean the inner wall of the drum bottom. Under drive mechanism's effect, also can carry out the up-and-down motion when can driving the stirring and scrape wall mechanism and rotate to can drive and scrape the wall and shake the subassembly and reciprocate, utilize the periphery of scraping the wall dish and can scrape clean to the compounding section of thick bamboo inner wall, and, scrape the wall and shake the in-process that the subassembly reciprocated, under the effect of through-hole, can shake the inside material of compounding section of thick bamboo, carry out intensive mixing to the solution. The utility model has simple operation and convenient use, can sufficiently stir and mix materials, can scrape and clean the inner wall of the mixing cylinder, effectively avoids the influence of the inside of the mixing cylinder on the subsequent beverage preparation caused by a large amount of residual dirt after long-time work, ensures that bacteria are easy to breed in the mixing cylinder, and has good practical performance.
Drawings
The utility model will be described in further detail with reference to the drawings and the detailed description.
FIG. 1 is a schematic perspective view of a beverage production device for facilitating residue cleaning in accordance with the present utility model;
FIG. 2 is a schematic plan view of a transmission mechanism according to the present utility model;
FIG. 3 is a schematic diagram of an assembling structure of a transmission mechanism according to the present utility model;
FIG. 4 is a schematic diagram showing the structure of a stirring scraping mechanism according to the present utility model;
FIG. 5 is a schematic view illustrating the structure of a wall scraping and sloshing assembly according to the present utility model;
In the figure, 1, a transmission mechanism; 11, a first transmission part, 111, a first gear, 112, a star-shaped shaft, 12, a second transmission part, 121, a second gear, 122, a shaft rod, 123, a first bevel gear, 124, a second bevel gear, 13, a third transmission part, 131, a swing rod, 132, a transmission column, 133, a transmission frame, 134, a tray, 14, a motor, 15, a bracket, 16, a mounting rack, 2, a stirring wall scraping mechanism, 21, a star-shaped groove, 22, a lifting cylinder, 23, a wall scraping swing assembly, 231, a wall scraping disc, 232, a through hole, 233, a through groove, 24, a bottom scraping panel, 25, a stirring panel, 3, a mixing cylinder, 4, a fixed ring, 5, a column leg, 6, a blanking pipe, 7, a cylinder bottom, 8 and a feed inlet.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below in conjunction with the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, not all embodiments. All other embodiments, which can be made by one of ordinary skill 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 and 4, a beverage production device capable of cleaning residues conveniently comprises a mixing barrel 3 and a barrel bottom 7 fixedly connected to the lower end of the mixing barrel 3, wherein a feed inlet 8 is formed in the upper end of the mixing barrel 3 and used for feeding materials for preparing beverages into the mixing barrel 3, and a blanking pipe 6 is arranged at the bottom of the barrel bottom 7 and used for discharging the prepared beverages. The outer wall fixed cover of compounding section of thick bamboo 3 is equipped with solid fixed ring 4, and solid fixed ring 4's lower extreme equidistance fixedly connected with a plurality of is used for carrying out the post leg 5 that supports to compounding section of thick bamboo 3. The inside of compounding section of thick bamboo 3 is provided with stirring and scrapes wall mechanism 2 for clean compounding section of thick bamboo 3 and barrel head 7 inner wall, and stir compounding section of thick bamboo 3 and the inside material of barrel head 7, the top of compounding section of thick bamboo 3 is provided with drive mechanism 1, is used for stirring and scrapes wall mechanism 2 and rotates and go up and down.
Referring to fig. 4 and 5, the stirring and scraping mechanism 2 includes a plurality of scraping and sloshing components 23, a lifting cylinder 22, a plurality of stirring panels 25, a plurality of scraping bottom panels 24 and a star-shaped groove 21. Wherein, a plurality of scrapes wall and shakes the subassembly 23 and slide and set up in compounding section of thick bamboo 3 inside, and adjacent two scrape and shake and be parallel to each other between the subassembly 23, and every scrapes wall and shake the periphery of subassembly 23 and all be provided with the cutting edge that laminates mutually with compounding section of thick bamboo 3 inner wall. The lifting cylinder 22 penetrates through the top of the mixing cylinder 3 in a sliding mode, is fixedly sleeved at the centers of the plurality of wall scraping and shaking components 23, and is used for connecting the plurality of wall scraping and shaking components 23 in series. The stirring panels 25 are slidably sleeved inside the wall scraping and swinging assembly 23, and are distributed on the wall scraping and swinging assembly 23 in an annular array. The plurality of scraping bottom plates 24 are in one-to-one correspondence with the stirring panels 25 and fixedly connected to the bottoms of the stirring panels 25, and edges of the lower sides of the scraping bottom plates 24 are attached to the inner wall of the barrel bottom 7. The star-shaped groove 21 is formed in the lifting cylinder 22. The scraping and sloshing assembly 23 includes a scraping plate 231, a plurality of through holes 232 are formed in the scraping plate 231 in a penetrating manner, a plurality of through grooves 233 are formed in the scraping plate 231 in a penetrating manner, and the stirring panel 25 is in sliding fit with the through grooves 233. When the lifting cylinder 22 moves up and down, the scraping wall sloshing assembly 23 can be driven to move up and down, the inner wall of the mixing cylinder 3 can be scraped and cleaned by the periphery of the scraping wall plate 231, and the material inside the mixing cylinder 3 can be sloshed under the action of the through hole 232 in the process of moving up and down the scraping wall sloshing assembly 23, so that the solution is fully mixed. And when the lifting cylinder 22 rotates, the scraping plate 231 can be driven to rotate, the scraping plate 231 drives the stirring panel 25 to revolve, materials in the mixing cylinder 3 are stirred and mixed through the stirring panel 25, and at the moment, the scraping bottom panel 24 can scrape and clean the inner wall of the cylinder bottom 7.
Referring to fig. 2, 3 and 4, the transmission mechanism 1 includes a first transmission member 11, a second transmission member 12, a third transmission member 13, a motor 14, a bracket 15 and a mounting frame 16. The mounting bracket 16 fixed connection is in the upper end of compounding section of thick bamboo 3, and the mounting bracket 16 is right angle frame construction. The bracket 15 is fixedly connected to the upper end of the mixing cylinder 3, and the bracket 15 is of a right-angle frame structure. The motor 14 is fixedly mounted on the upper end of the bracket 15. The second transmission part 12 is rotatably arranged on the lower side of the transverse plate of the mounting frame 16 and rotates under the cooperation of the shaft of the motor 14. The first transmission part 11 is rotatably arranged on the lower side of the transverse plate of the mounting frame 16, synchronously rotates under the transmission fit of the first transmission part 12, and drives the lifting cylinder 22 to synchronously rotate under the fit of the star-shaped groove 21. The third transmission part 13 is arranged between the stirring wall scraping mechanism 2 and the motor 14, and drives the stirring wall scraping mechanism 2 to move up and down under the transmission of the shaft of the motor 14.
The first transmission part 11 comprises a first gear 111 rotatably connected to the lower side of the transverse plate of the mounting frame 16, and a star-shaped shaft 112 is fixed to the lower end of the center of the first gear 111, and the star-shaped shaft 112 extends into the star-shaped groove 21 and is slidably connected with the star-shaped groove. The second transmission part 12 comprises a second gear 121 rotatably connected to the lower side of the transverse plate of the mounting frame 16, the second gear 121 is meshed with the first gear 111, a shaft lever 122 is fixed at the lower end of the center of the second gear 121, a first bevel gear 123 is fixedly connected to the lower end of the shaft lever 122, a second bevel gear 124 is connected to the lower side of the first bevel gear 123 in a meshed manner, and the second bevel gear 124 is fixedly sleeved on the outer wall of the shaft of the motor 14. The third transmission part 13 comprises two trays 134 rotatably sleeved on the outer wall of the lifting cylinder 22, and a transmission frame 133 is fixedly connected with the two trays 134 together. The transmission column 132 is sleeved in the transmission frame 133 in a sliding manner, the transmission column 132 and the lifting cylinder 22 cannot slide up and down, a swing rod 131 is connected between shafts on the motor 14, one end of the swing rod 131 is fixedly connected with the shafts, and the other end of the swing rod 131 is rotatably connected with the transmission column 132. When the motor 14 is started, the motor 14 drives the second bevel gear 124 to rotate through the shaft thereof, the second bevel gear 124 drives the shaft lever 122 to rotate through the first bevel gear 123, the shaft lever 122 drives the first gear 111 to rotate through the second gear 121, and the first gear 111 drives the lifting cylinder 22 to rotate through the star-shaped shaft 112. The swing rod 131 can be driven to rotate while the machine shaft rotates, the swing rod 131 drives the transmission column 132 to slide in the transmission frame 133, so that the transmission frame 133 is driven to move up and down, and the lifting cylinder 22 is driven to move up and down under the action of the tray 134.
When the beverage is made, the material for preparing the beverage is fed into the mixing drum 3 through the feed inlet 8, then the motor 14 is started, the motor 14 drives the second bevel gear 124 to rotate through the shaft of the motor, the second bevel gear 124 drives the shaft lever 122 to rotate through the first bevel gear 123, the shaft lever 122 drives the first gear 111 to rotate through the second gear 121, the first gear 111 drives the lifting drum 22 to rotate through the star-shaped shaft 112, the scraping wall disc 231 can be driven to rotate in the rotating process of the lifting drum 22, the stirring panel 25 is driven by the scraping wall disc 231 to revolve, and the material in the mixing drum 3 is stirred and mixed through the stirring panel 25, and at the moment, the scraping bottom plate 24 can scrape and clean the inner wall of the drum bottom 7. Meanwhile, when the machine shaft rotates, the swing rod 131 can be driven to rotate, the swing rod 131 drives the transmission column 132 to slide in the transmission frame 133, so that the transmission frame 133 is driven to move up and down, the lifting cylinder 22 is driven to move up and down under the action of the tray 134, the scraping wall sloshing assembly 23 can be driven to move up and down, the inner wall of the mixing cylinder 3 can be scraped and cleaned by the periphery of the scraping wall plate 231, and in the process of the vertical movement of the scraping wall sloshing assembly 23, the material in the mixing cylinder 3 can be sloshed under the action of the through hole 232, and the solution is fully mixed.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.