CN112677535A - Lees processing mechanism with crowded water function in beer brewing process - Google Patents

Lees processing mechanism with crowded water function in beer brewing process Download PDF

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Publication number
CN112677535A
CN112677535A CN202011589104.2A CN202011589104A CN112677535A CN 112677535 A CN112677535 A CN 112677535A CN 202011589104 A CN202011589104 A CN 202011589104A CN 112677535 A CN112677535 A CN 112677535A
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wall
vinasse
plate
rotating rod
drying
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薛美存
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Abstract

The invention discloses a vinasse processing mechanism with a water squeezing function in the beer brewing process, which belongs to the technical field of vinasse processing equipment and comprises a case, wherein a vinasse drying mechanism, a liquid collecting box and a vinasse water squeezing component are sequentially arranged in the inner cavity of the case from left to right, a fine filter screen is arranged in the inner cavity of the liquid collecting box, a chamfer is arranged at the top of the liquid collecting box, the left side of the chamfer is lower than the right side of the chamfer, the chamfer is obliquely arranged, the water squeezing and the scattering of the vinasse are realized, firstly, the vinasse can be squeezed out of liquid between an upper squeezing plate and a lower squeezing plate, then, a driving motor drives a transmission gear, a gear ring and a rotary drum to rotate, the rotary drum drives a grinding roller to rotate, the vinasse passing through a grinding head and the grinding teeth can be crushed and scattered, so that the scattered vinasse enters the drying, the drying of the wrung stillage is also faster than the direct drying of the stillage.

Description

Lees processing mechanism with crowded water function in beer brewing process
Technical Field
The invention relates to the technical field of vinasse processing equipment, in particular to a vinasse processing mechanism with a water squeezing function in a beer brewing process.
Background
In the wine brewing process, the processing flow of vinasse is the forming after drying, crushing, carbonizing and carbonizing, in the vinasse processing flow, particularly in the drying and crushing process, because a large amount of liquid is doped in the newly-produced vinasse, the drying efficiency is too slow when the vinasse is directly dried, the liquid doped in the vinasse can be wasted, in order to reduce the waste of the liquid and the production cost, the drying and crushing sequence needs to be adjusted, and a water squeezing process is added before crushing to reduce the waste of the liquid, so that the vinasse processing mechanism with the water squeezing function in the beer brewing process is provided.
Disclosure of Invention
The invention aims to provide a vinasse processing mechanism with a water squeezing function in a beer brewing process, so as to solve the problems in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme: a lees processing mechanism with wringing function in the beer brewing process comprises a case, wherein a lees drying mechanism, a liquid collecting box and a lees wringing component are sequentially installed in the inner chamber of the case from left to right, the lees wringing component comprises a hydraulic cylinder welded on the inner wall of the bottom of the case, two sets of hydraulic cylinders are arranged on the left and right sides of the hydraulic cylinder, a lower stripper plate is welded on the top of the hydraulic cylinder, supporting strips are respectively attached to the left and right sides of the bottom of the lower stripper plate, the supporting strips are respectively fixed on the outer wall of the right side of the liquid collecting box and the inner wall of the right side of the case, a mounting groove is formed in the right side of the liquid collecting box and the upper part of the connecting part of the supporting strips, a coarse strainer is fixed in the mounting groove, a fine strainer is arranged in the inner chamber, the liquid collecting box is characterized in that a chamfer is arranged at the top of the liquid collecting box, the chamfer is obliquely arranged in a left-low-right mode, a U-shaped mounting frame is installed on the right side of the top of the case, four groups of electric telescopic rods are welded on the rectangular array of the inner wall of the top of the U-shaped mounting frame, and an upper extrusion assembly is welded at the bottom of each electric telescopic rod.
Further, lees drying mechanism includes the connection shell, connection shell top and bottom are provided with top cap and lees drying component respectively, the mounting hole has been seted up at top cap top center, installs the bearing in the mounting hole, installs the rotary drum in the bearing inner circle, rotary drum outer wall top cover is equipped with the ring gear, driving motor is installed in top cap top left side, drive gear is installed at the driving motor top, drive gear meshes with the relative one side of ring gear, connection shell bottom center has seted up the unloading passageway, unloading passageway inner chamber middle part is provided with the plate, the plate top is provided with the mounting hole that link up from top to bottom, installs the bearing in the mounting hole, installs lower transfer lever in the bearing inner circle, lower transfer lever top is fixed with the grinding roller, the outside of grinding roller is equidistant to be provided with a plurality of grinding heads, the inboard equidistant of connection shell is provided with a plurality of grinding teeth with grinding head looks adaptation, and the specification of the grinding head is decreased progressively from top to bottom, the top cover top right side is provided with the lees import, grinding roller top rectangle array is provided with four groups of jacks, and the jack interpolation is equipped with the gag lever post, four groups the welding of gag lever post top is in the rotary drum bottom.
Further, the lees drying component comprises a drying box installed at the bottom of the connecting shell, an anti-blocking discharge port is installed on the left side of the bottom of the drying box, the bottom of the lower rotating rod extends to the lower part of the drying box, the lower rotating rod is connected with the bottom of the drying box through a bearing, the bottom of the lower rotating rod is of a hollow structure, a gas pipe is connected with the bottom of the lower rotating rod through a rotary joint, a small turntable is fixed in the middle of the outer wall of the lower rotating rod, three groups of ejector rods are arranged on the annular array at the top of the small turntable, a sieve plate is sleeved above the joint of the outer wall of the lower rotating rod and the small turntable, hemispherical bulges matched with the ejector rods are arranged at the bottom of the sieve plate, guide rods are welded on the left side and the right side of the bottom of the sieve plate, springs and fixed blocks, the outer wall of the lower rotating rod is provided with a stirring shaft, the stirring shaft is positioned on the outer sides of the small rotating disc and the sieve plate, the joint of the stirring shaft and the lower rotating rod is communicated, and the outer wall of the stirring shaft is provided with micropores.
Further, the anti-blocking discharge port comprises a frame body connected to the bottom of the drying oven, the middle part of the outer wall of the right side of the frame body is provided with a mounting hole, a bearing is arranged in the mounting hole, a rotating rod is arranged in an inner ring of the bearing, a rotary table and a transmission bevel gear are respectively arranged at the left end and the right end of the rotating rod, the bottom of the outer wall of the lower rotating rod is provided with a bevel gear, the left side of the top of the bevel gear is meshed with the bottom of the transmission bevel gear, the inner walls of the front side and the rear side of the frame body are respectively provided with a sliding groove, two groups of sliding grooves are provided with a left-right through limiting groove, a sliding rod is arranged in the limiting groove in a sliding manner, the right side of the sliding rod is fixed on the rotary table, the left side of the top of the sealing plate is provided with a magnet block, and the magnet block is attracted to the outer wall of the left side of the frame body.
Further, go up the extrusion subassembly including fixing the shell in electric telescopic handle bottom, the shell bottom is provided with the screen cloth, the screen cloth bottom is provided with the stripper plate, it is provided with the sand grip to go up the stripper plate bottom, it is provided with the through-hole with the inboard of adjacent two sets of sand grip junctions to go up the stripper plate bottom, sand grip length is prolonged left right direction and is set up, the through-hole inner chamber is provided with cellular sprue, go up the stripper plate and the equal low high slope in right side setting of stripper plate down, just stripper plate and chamfer parallel arrangement down.
Further, the inner wall of the top of the shell is provided with a supporting block, the bottom of the supporting block is attached to the screen, positioning blocks are arranged at four corners of the bottom of the screen, a positioning groove matched with the positioning blocks is formed in the top of the upper extrusion plate, a flange is arranged at the bottom of the outer wall of the shell, screw holes are formed in four corners of the top of the flange, bolts are sleeved in the screw holes, connecting screw holes matched with the bolts are formed in the screen and the upper extrusion plate, and the bolts are located on the outer side of the positioning blocks.
Compared with the prior art, the invention has the beneficial effects that:
1. the method comprises the following steps of (1) squeezing and scattering vinasse, wherein liquid is squeezed between an upper squeezing plate and a lower squeezing plate by vinasse, then a driving motor drives a transmission gear, a gear ring and a rotary drum to rotate, the rotary drum drives a grinding roller to rotate, the vinasse passing through a grinding head and a grinding tooth can be crushed and scattered, and scattered vinasse enters a drying assembly to be dried, so that the scattered vinasse is dried more quickly compared with the direct drying of vinasse blocks formed by squeezing, and the drying of the vinasse after squeezing is also quicker compared with the direct drying of the vinasse;
2. broken up and the drying of lees, when the roller of milling is rotatory, can also drive lower transfer lever and rotate, lower transfer lever drives the (mixing) shaft and stirs the lees that gets into the drying cabinet inner chamber, and the dry gas that the trachea let in, can carry out abundant drying process to lees, and lower transfer lever can also rotate the rotating small carousel and the ejector pin is rotatory, when the ejector pin is rotatory to hemispherical protruding position, can be with the sieve jacking, when the ejector pin is from hemispherical protruding soon, the spring resets and drives the sieve decline, the sieve of upper and lower shake can sieve and break up lees, can be with lees fully dry, be convenient for store.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the upper press assembly of the present invention;
FIG. 3 is a schematic view of the distiller's grains drying mechanism of the present invention;
FIG. 4 is a schematic view of the distiller's grains drying assembly of the present invention;
FIG. 5 is a schematic view of the structure of the anti-blocking discharge port of the present invention.
In the figure: 1. a chassis; 2. a vinasse drying mechanism; 201. a connecting shell; 202. a top cover; 203. a rotating drum; 204. a ring gear; 205. a drive motor; 206. a transmission gear; 207. a blanking channel; 208. a plate member; 209. rotating the rod downwards; 210. a limiting rod; 211. grinding heads; 212. grinding the teeth; 213. a vinasse drying component; 21301. a drying oven; 21302. a blockage-preventing discharge hole; 213021 and a frame body; 213022, a closing plate; 213023, a magnet block; 213024, rotating the rod; 213025, a turntable; 213026, drive bevel gear; 213027, a lifting plate; 213028, a slide bar; 213029, a material guide rod; 21303. a stirring shaft; 21304. an air tube; 21305. a bevel gear; 21306. a small turntable; 21307. a top rod; 21308. a sieve plate; 21309. hemispherical bulges; 21310. a fixed block; 21311. a guide bar; 21312. a spring; 214. a vinasse inlet; 215. grinding the roller; 3. a liquid collection tank; 4. a vinasse wringing component; 41. a hydraulic cylinder; 42. a lower stripper plate; 43. supporting the strip; 44. a U-shaped mounting frame; 45. an electric telescopic rod; 46. an upper extrusion assembly; 461. a housing; 462. screening a screen; 463. an upper stripper plate; 464. positioning blocks; 465. a convex strip; 466. a through hole; 467. a honeycomb shaped block; 468. a support block; 469. a bolt; 5. chamfering; 6. a sealing plug; 7. a fine filter screen; 8. and (5) coarse filtering.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
The invention provides a technical scheme that: a vinasse processing mechanism with a water squeezing function in a beer brewing process, please refer to fig. 1, and comprises a case 1, wherein a vinasse drying mechanism 2, a liquid collecting box 3 and a vinasse water squeezing component 4 are sequentially arranged in the inner cavity of the case 1 from left to right, the liquid collecting box 3 is inserted into the case 1 and is used as a container for collecting liquid and also can be used as a material guide device for vinasse, the vinasse water squeezing component 4 comprises hydraulic cylinders 41 welded on the inner wall of the bottom of the case 1, two groups of hydraulic cylinders 41 are arranged on the left and right sides, a lower squeezing plate 42 is welded on the top of the two groups of hydraulic cylinders 41, supporting strips 43 are respectively attached on the left and right sides of the bottom of the lower squeezing plate 42, the left and right groups of supporting strips 43 are respectively fixed on the outer wall of the right side of the liquid collecting box 3 and the inner wall of the right side of the case, the fine filter screen 7 is positioned below the coarse filter screen 8, the bottom of the liquid collection box 3 is provided with a mounting hole, a sealing plug 6 is sleeved in the mounting hole in a threaded manner, the top of the liquid collection box 3 is provided with a chamfer 5, the chamfer 5 is arranged in a manner of inclining to a low left and a high right, the right side of the top of the case 1 is provided with a U-shaped mounting rack 44, four groups of electric telescopic rods 45 are welded on the inner wall of the top of the U-shaped mounting rack 44 in a rectangular array manner, the bottom of each group of electric telescopic rods 45 is welded with an upper extrusion component 46, firstly, vinasse is placed on the top of a lower extrusion plate 42, then, the electric telescopic rods 46 are started to lower the upper extrusion component 46 for water extrusion, water extruded from the vinasse enters the liquid collection box 3 through the coarse filter screen 8, after being extruded for a period of time, the upper extrusion component 46 is lifted and, the liquid collecting box 3 has limited capacity, and after the liquid collecting box is used for a period of time, the liquid is required to be upwards drawn out, and then the sealing plug 6 is screwed out to discharge the extruded liquid;
referring to fig. 3, the distiller's grain drying mechanism 2 includes a connecting casing 201, a top cover 202 and a distiller's grain drying assembly 213 are respectively disposed at the top and bottom of the connecting casing 201, a mounting hole is disposed at the top center of the top cover 202, a bearing is mounted in the mounting hole, a rotary drum 203 is mounted in an inner ring of the bearing, a gear ring 204 is sleeved on the top of an outer wall of the rotary drum 203, a driving motor 205 is mounted at the left side of the top cover 202, a driving gear 206 is mounted at the top of the driving motor 205, the driving gear 206 is engaged with one side of the gear ring 204 opposite to the gear ring, a blanking channel 207 is disposed at the bottom center of the connecting casing 201, a plate 208 is disposed in the middle of an inner cavity of the blanking channel 207, a vertically through mounting hole is disposed at the top of the plate 208, a bearing is mounted in the mounting hole, a lower rotating rod 209 is mounted in, the specification of the grinding head 211 is decreased progressively from top to bottom, the right side of the top cover 202 is provided with a vinasse inlet 214, a rectangular array at the top of the grinding roller 215 is provided with four groups of jacks, limiting rods 210 are inserted into the jacks, the tops of the four groups of limiting rods 210 are welded at the bottom of the rotary drum 203, the driving motor 205 drives the transmission gear 206, the gear ring 204 and the rotary drum 203 to rotate, the rotary drum 203 drives the grinding roller 215 to rotate, vinasse passing through the grinding head 211 and the grinding teeth 212 can be crushed and scattered, the scattered vinasse enters the drying assembly 213 to be dried, and compared with directly drying and extruding the blocky vinasse blocks, the scattered vinasse is dried more quickly;
referring to fig. 4, the distillers 'grains drying assembly 213 includes a drying box 21301 installed at the bottom of the connecting shell 201, the drying box 21301 is a conventional apparatus, and mainly dries distillers' grains without detailed expansion, an anti-blocking discharge port 21302 is installed at the left side of the bottom of the drying box 21301, the bottom of the lower rotating rod 209 extends to the lower side of the drying box 21301, the lower rotating rod 209 is connected with the bottom of the drying box 21301 through a bearing, the lower rotating rod 209 is a hollow structure, the bottom of the lower rotating rod 209 is connected with an air pipe 21304 through a rotary joint, a small turntable 21306 is fixed at the middle part of the outer wall of the lower rotating rod 209, three groups of ejector rods 21307 are arranged in an annular array at the top of the small turntable 21306, a sieve plate 21308 is sleeved above the joint of the outer wall of the lower rotating rod 209 and the small turntable 21306, hemispherical protrusions 21309 adapted to the ejector rods 21307 are arranged at the bottom of the sieve 213, fixing block 21310 is welded on the inner wall of drying box 21301, two ends of spring 21312 are fixed on sieve plate 21308 and fixing block 21310, stirring shaft 21303 is arranged on the outer wall of lower rotating rod 209, stirring shaft 21303 is positioned on the outer side of small rotating disk 21306 and sieve plate 21308, the joint of stirring shaft 21303 and lower rotating rod 209 is communicated, conical blades are arranged on the outer wall of stirring shaft 21303, micropores are arranged on the outer wall of stirring shaft 21303, grinding roller 215 can drive lower rotating rod 209 to rotate, lower rotating rod 209 can drive stirring shaft 21303 to stir vinasse entering the inner cavity of drying box 21301, dry gas introduced into air pipe 21304 can fully dry vinasse, lower rotating rod 209 can also rotate small rotating disk 06, when ejector rod 21307 rotates to the position of hemispherical projection 21309, sieve plate 21308 is lifted, spring 21312 is stretched, when ejector rod 21307 rotates away from hemispherical projection 21309, spring 21312 is reset to drive sieve plate 21308 to descend, the up-and-down shaking sieve plate 21308 can sieve and scatter the vinasse, so that the vinasse can be fully dried and is convenient to store;
referring to fig. 5, the anti-blocking discharge port 21302 includes a frame 213021 connected to the bottom of the drying box 21301, a mounting hole is formed in the middle of the right outer wall of the frame 213021, a bearing is mounted in the mounting hole, a rotating rod 213024 is mounted in an inner ring of the bearing, a turntable 213025 and a transmission bevel gear 213026 are mounted at the left and right ends of the rotating rod 213024 respectively, a bevel gear 21305 is disposed at the bottom of the outer wall of the lower rotating rod 209, the left top of the bevel gear 21305 is engaged with the bottom of the transmission bevel gear 213026, sliding grooves are formed in the inner walls at the front and rear sides of the frame 213021, lifting plate members 213027 are slidably disposed in the two groups of sliding grooves, a left and right through limiting groove is formed in the left side of the lifting plate 213027, a sliding rod 213028 is slidably disposed in the limiting groove, the right side of the sliding rod 213028 is fixed on the turntable 213025, a guide rod, a magnet block 213023 is arranged on the left side of the top of the sealing plate 213022, a magnet block 213023 is attracted to the outer wall of the left side of the frame body 213021, the lower rotating rod 209 can also drive the bevel gear 21305, the transmission bevel gear 213026, the rotating rod 213024 and the rotating disk 213025 to rotate, the rotating disk 213025 drives the sliding rod 213028 to slide in the limiting groove, so that the lifting plate 213027 drives the material guide rod 213029 to swing up and down, the vinasse blocked in the frame body 213021 is dredged, and the situation that the vinasse is blocked in the frame body 213021;
referring to fig. 1-2, the upper extrusion assembly 46 includes a housing 461 fixed at the bottom of the electric telescopic rod 45, the bottom of the housing 461 is provided with a screen 462, the bottom of the screen 462 is provided with an upper extrusion plate 463, the lower extrusion plate 42 is also provided with raised lines 465, the upper and lower sets of raised lines 465 are engaged with each other to facilitate the liquid in the distiller's grains to flow down, the bottom of the upper extrusion plate 463 is provided with raised lines 465, the inner side of the joint of the bottom of the upper extrusion plate 463 and the adjacent two sets of raised lines 465 is provided with through holes 466, the raised lines 465 are arranged along the left and right directions to facilitate the extruded distiller's grains to fall down along the inclined planes, the inner cavity of the through holes 466 is provided with a honeycomb-shaped block 467, the honeycomb-shaped block 467 mainly prevents the distiller's grains from being stuck in the through;
referring to fig. 2, a support block 468 is arranged on the inner wall of the top of the housing 461, the bottom of the support block 468 is attached to the screen mesh 462, the support block 468 mainly functions to support the screen mesh 462 and the upper squeeze plate 463, when the vinasse is prevented from being squeezed, the screen mesh 462 and the upper squeeze plate 463 deform, the four corners of the bottom of the screen mesh 462 are provided with positioning blocks 464, the top of the upper squeeze plate 463 is provided with positioning grooves matched with the positioning blocks 464, the bottom of the outer wall of the housing 461 is provided with flanges, the four corners of the top of the flanges are provided with screw holes, the screw holes are internally threaded with bolts 469, the screen mesh 462 and the upper squeeze plate 463 are provided with connecting screw holes matched with;
example (b):
1) the lees squeezing operation comprises the steps of firstly putting lees into the top of a lower squeezing plate 42, then starting an electric telescopic rod 46 to lower an upper squeezing component 46 for squeezing water, enabling the water squeezed from the lees to enter a liquid collecting box 3 through a coarse filter screen 8, after squeezing for a period of time, lifting and resetting the upper squeezing component 46, then starting a hydraulic cylinder 41 to push out the lower squeezing plate 42 and the lees, enabling the lower squeezing plate 42 to shake up and down to shake out the lees, enabling the lees to enter a lees drying mechanism 2 through a chamfer 5, limiting the capacity of the liquid collecting box 3, after using for a period of time, upwards pumping out a sealing plug, and then screwing out a sealing plug 6 to discharge the squeezed liquid;
2) vinasse is scattered, a driving motor 205 drives a transmission gear 206, a gear ring 204 and a rotary drum 203 to rotate, the rotary drum 203 drives a grinding roller 215 to rotate, vinasse passing through a space between a grinding head 211 and a grinding tooth 212 can be crushed and scattered, scattered vinasse enters a drying assembly 213 to be dried, and compared with the direct drying of vinasse blocks formed by extrusion, the scattered vinasse is dried more quickly;
3) lees drying process, grinding roller 215 can also drive lower rotation pole 209 and rotate, lower rotation pole 209 drives (mixing) shaft 21303 and stirs the lees that gets into drying cabinet 21301 inner chamber, and the dry gas that trachea 21304 lets in, can carry out abundant drying process to lees, and lower rotation pole 209 can also rotate small turntable 21306 and rotate, when ejector pin 21307 rotated to hemispherical protruding 21309 position, can be with sieve 21308 jacking, stretch spring 21312, when ejector pin 21307 revolves away from hemispherical protruding 21309, spring 21312 resets and drives sieve 21308 and descend, the sieve 21308 of shaking from top to bottom can sieve and break up the lees, can be with fully dry lees, be convenient for store lees.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a lees processing mechanism in beer brewing process with crowded water function, includes quick-witted case (1), its characterized in that: the distiller's grain drying mechanism (2), the liquid collecting box (3) and the distiller's grain wringing component (4) are sequentially installed in the inner cavity of the case (1) from left to right, the distiller's grain wringing component (4) comprises hydraulic cylinders (41) welded on the inner wall of the bottom of the case (1), two sets of hydraulic cylinders (41) are arranged on the left and right sides, lower extrusion plates (42) are welded on the top of the hydraulic cylinders (41), support strips (43) are respectively attached to the left and right sides of the bottom of the lower extrusion plates (42), the left and right sets of support strips (43) are respectively fixed on the outer wall of the right side of the liquid collecting box (3) and the inner wall of the right side of the case (1), a mounting groove is formed above the joint of the right side of the liquid collecting box (3) and the support strips (43), a coarse strainer (8) is fixed in the mounting groove, a fine strainer (7), liquid collecting box (3) bottom is provided with the mounting hole, and the threaded sleeve is equipped with sealing plug (6) in the mounting hole, liquid collecting box (3) top is provided with chamfer (5), the high slope setting in the low right side in chamfer (5) left side, U type mounting bracket (44) is installed on quick-witted case (1) top right side, U type mounting bracket (44) top inner wall rectangle array welding has four electric telescopic handle of group (45), four groups electric telescopic handle (45) bottom welding has last extrusion subassembly (46).
2. The mechanism for processing distiller's grains in the beer brewing process with the function of squeezing water according to claim 1, wherein: the lees drying mechanism (2) comprises a connecting shell (201), wherein a top cover (202) and a lees drying component (213) are respectively arranged at the top and the bottom of the connecting shell (201), a mounting hole is formed in the center of the top cover (202), a bearing is arranged in the mounting hole, a rotary drum (203) is arranged in a bearing inner ring, a gear ring (204) is sleeved on the top of the outer wall of the rotary drum (203), a driving motor (205) is arranged on the left side of the top cover (202), a transmission gear (206) is arranged at the top of the driving motor (205), the transmission gear (206) is meshed with one side opposite to the gear ring (204), a blanking channel (207) is formed in the center of the bottom of the connecting shell (201), a plate (208) is arranged in the middle of an inner cavity of the blanking channel (207), a mounting, install down transfer pole (209) in the bearing inner race, down transfer pole (209) top is fixed with grinding roller (215), the outside equidistant of grinding roller (215) is provided with a plurality of grinding heads (211), the inboard equidistant of connecting shell (201) is provided with a plurality of and grinding teeth (212) of grinding head (211) looks adaptation, just the specification of grinding head (211) from top to bottom steadilys decrease, top cap (202) top right side is provided with lees import (214), grinding roller (215) top rectangle array is provided with four groups of jacks, and the jack interpolation is equipped with gag lever post (210), four groups gag lever post (210) top welding is in rotary drum (203) bottom.
3. The mechanism for processing distiller's grains in the beer brewing process with the function of squeezing water according to claim 2, wherein: the vinasse drying component (213) comprises a drying box (21301) arranged at the bottom of a connecting shell (201), an anti-blocking discharge hole (21302) is formed in the left side of the bottom of the drying box (21301), the bottom of a lower rotating rod (209) extends to the lower side of the drying box (21301), the lower rotating rod (209) is connected with the bottom of the drying box (21301) through a bearing, the lower rotating rod (209) is of a hollow structure, the bottom of the lower rotating rod (209) is connected with an air pipe (21304) through a rotary joint, a small turntable (21306) is fixed in the middle of the outer wall of the lower rotating rod (209), three groups of ejector rods (21307) are arranged in an annular array on the top of the small turntable (21306), a sieve plate (21308) is sleeved above the joint of the outer wall of the lower rotating rod (209) and the small turntable (21306), hemispherical bulges (21309) matched with the ejector rods, the sieve plate (21308) is characterized in that guide rods (21311) are welded on the left side and the right side of the bottom of the sieve plate (21308), springs (21312) and fixing blocks (21310) are sleeved on the outer walls of the guide rods (21311) from top to bottom, the fixing blocks (21310) are welded on the inner wall of the drying box (21301), two ends of each spring (21312) are respectively fixed on the sieve plate (21308) and the corresponding fixing block (21310), a stirring shaft (21303) is arranged on the outer wall of the lower rotating rod (209), the stirring shaft (21303) is located on the outer sides of the small rotating disc (21306) and the sieve plate (21308), the joint of the stirring shaft (21303) and the lower rotating rod (209) is communicated.
4. The mechanism for processing distiller's grains in the beer brewing process with the function of squeezing water according to claim 3, wherein: the anti-blocking discharge hole (21302) comprises a frame body (213021) connected to the bottom of a drying box (21301), a mounting hole is formed in the middle of the outer wall of the right side of the frame body (213021), a bearing is mounted in the mounting hole, a rotating rod (213024) is mounted in an inner ring of the bearing, a turntable (213025) and a transmission bevel gear (213026) are respectively mounted at the left end and the right end of the rotating rod (213024), a bevel gear (21305) is arranged at the bottom of the outer wall of a lower rotating rod (209), the left side of the top of the bevel gear (21305) is meshed with the bottom of the transmission bevel gear (213026), sliding grooves are formed in the inner walls of the front side and the rear side of the frame body (213021), lifting plate members (213027) are arranged in two groups of sliding grooves in a sliding mode, a left through limiting groove and a right through limiting groove are formed in the left side of each lifting plate member (213027), a, the bottom of the left side and the right side of the frame body (213021) are respectively provided with an inserting groove, two groups of inserting grooves are movably inserted with a sealing plate (213022), the sealing plate (213022) is positioned below the lifting plate (213027), the left side of the top of the sealing plate (213022) is provided with a magnet block (213023), and the magnet block (213023) is attracted to the outer wall of the left side of the frame body (213021).
5. The mechanism for processing distiller's grains in the beer brewing process with the function of squeezing water according to claim 4, wherein: go up extrusion subassembly (46) including fixing shell (461) in electric telescopic handle (45) bottom, shell (461) bottom is provided with screen cloth (462), screen cloth (462) bottom is provided with stripper plate (463), it is provided with sand grip (465) to go up stripper plate (463) bottom, the inboard of going up stripper plate (463) bottom and adjacent two sets of sand grip (465) junctions is provided with through-hole (466), sand grip (465) length is prolonged left right direction and is set up, through-hole (466) inner chamber is provided with cellular jam (467), it sets up with lower stripper plate (42) equal low left right high slope to go up stripper plate (463), just lower stripper plate (42) and chamfer (5) parallel arrangement.
6. The mechanism for processing distiller's grains in the beer brewing process with the function of squeezing water according to claim 5, wherein: the inner wall of the top of the shell (461) is provided with a supporting block (468), the bottom of the supporting block (468) is attached to the screen (462), the four corners of the bottom of the screen (462) are respectively provided with a positioning block (464), the top of the upper extrusion plate (463) is provided with a positioning groove matched with the positioning block (464), the bottom of the outer wall of the shell (461) is provided with a flange, the four corners of the top of the flange are respectively provided with a screw hole, a bolt (469) is sleeved in the screw hole, the screen (462) and the upper extrusion plate (463) are respectively provided with a connecting screw hole matched with the bolt (469), and the bolt (469) is positioned outside the.
CN202011589104.2A 2020-12-29 2020-12-29 Lees processing mechanism with crowded water function in beer brewing process Pending CN112677535A (en)

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