CN107446737B - White spirit processing is with raw materials stirring smashes integrated device - Google Patents

White spirit processing is with raw materials stirring smashes integrated device Download PDF

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CN107446737B
CN107446737B CN201710642334.2A CN201710642334A CN107446737B CN 107446737 B CN107446737 B CN 107446737B CN 201710642334 A CN201710642334 A CN 201710642334A CN 107446737 B CN107446737 B CN 107446737B
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crushing
stirring
raw materials
plate
rotating shaft
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CN107446737A (en
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闫存
梁灿昕
王聪
孟鸽
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Fulichun Group Co., Ltd
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Fulichun Group Co Ltd
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    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12GWINE; PREPARATION THEREOF; ALCOHOLIC BEVERAGES; PREPARATION OF ALCOHOLIC BEVERAGES NOT PROVIDED FOR IN SUBCLASSES C12C OR C12H
    • C12G3/00Preparation of other alcoholic beverages

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Abstract

The invention belongs to the technical field of liquor processing, and particularly relates to a raw material stirring and crushing integrated device for liquor processing. The invention aims to solve the technical problem of providing a raw material stirring and crushing integrated device for processing white spirit, which can shorten the turnover time, improve the efficiency of white spirit processing and reduce the processing cost of white spirit. In order to solve the technical problem, the invention provides a raw material stirring and crushing integrated device for processing white spirit, which comprises a bottom plate, a first support plate, a crushing box, a sieve plate, a second support plate, a stirring box, a discharging hopper and the like; the left side and the right side of the top of the bottom plate are both vertically connected with first support plates through bolts, the tops of the two first support plates are connected with a crushing box through bolts, and the bottom of the crushing box is provided with a first discharge hole. The method and the device have the advantages that the turnover time can be shortened, the white spirit processing efficiency can be improved, and the white spirit processing cost can be reduced.

Description

White spirit processing is with raw materials stirring smashes integrated device
Technical Field
The invention belongs to the technical field of liquor processing, and particularly relates to a raw material stirring and crushing integrated device for liquor processing.
Background
The white spirit is prepared by using grain as main material, Daqu, Xiaoqu or bran koji and yeast as saccharifying ferment and through steaming, saccharifying, fermenting and distilling. Also known as distilled liquor, old white spirit, knife, etc. The wine is colorless (or yellowish) and transparent, has aromatic and pure smell, is sweet and clean in mouth, has high alcohol content, and has compound fragrance with esters as main body after being stored and aged. The yeast and yeast are used as saccharifying ferment, starchiness (saccharine) raw material is used, and various wines are brewed by steaming, saccharifying, fermenting, distilling, ageing and blending. Strictly speaking, the blended wine blended by edible alcohol and edible perfume cannot be calculated as white spirit. The liquor is mainly concentrated in Guizhou renhuai, Sichuan Yibin and Mianzhu in the upper reaches of Yangtze river and Chishui river basin, and has the largest distilled liquor producing area with the global scale and the best quality, which are Mao Wu Jian of three famous liquors [2] in China respectively, and the liquor industry group carries the half-wall river mountain of the Chinese liquor industry.
The raw materials for brewing the white spirit are sorghum, rice, sticky rice, wheat and corn, the five grains are accurately proportioned according to a proportion and then fully stirred, and the five grains are crushed to brew the white spirit. Stirring and the smashing of present white spirit raw materials are generally gone on step by step, so need stir the raw materials earlier with the mixer, reuse rubbing crusher smashes the raw materials, so need spend more time at the in-process of turnover, thereby can reduce the efficiency of white spirit processing, and need purchase mixer and rubbing crusher simultaneously, thereby can increase white spirit processing cost, consequently need urgent need to develop one kind and can shorten the turnover time, can improve the efficiency of white spirit processing, can reduce the white spirit processing of white spirit processing cost and use raw materials stirring and smash integrated device.
Disclosure of Invention
(1) Technical problem to be solved
In order to overcome the defects that more time is needed for stirring and crushing white spirit raw materials step by step, the white spirit processing efficiency is reduced, two machines are needed to be purchased simultaneously, and the white spirit processing cost is increased, the technical problem to be solved by the invention is to provide the raw material stirring and crushing integrated device for white spirit processing, which can shorten the turnover time, improve the white spirit processing efficiency and reduce the white spirit processing cost.
(2) Technical scheme
In order to solve the technical problems, the invention provides a raw material stirring and crushing integrated device for processing white spirit, which comprises a bottom plate, first support plates, crushing boxes, a sieve plate, second support plates, a stirring box, a blanking hopper, a baffle plate, a stirring device, a crushing device and a driving device, wherein the left side and the right side of the top of the bottom plate are vertically connected with the first support plates through bolts, the crushing boxes are connected between the tops of the two first support plates through bolts, the bottom of each crushing box is provided with a first discharge hole, the bottom of the crushing box at the upper side of the first discharge hole is horizontally provided with a first chute, the first chute is communicated with the first discharge hole, the sieve plate is arranged in the first chute, the middle of the top of each crushing box is provided with a feed hole, the left side and the right side of the top of each crushing box are vertically connected with the second support plates through bolts, the stirring box is connected between, the middle of the bottom of the stirring box is provided with a second discharge port, the bottom of the stirring box at the left side of the second discharge port is horizontally provided with a second chute, a baffle is arranged in the second chute, a stirring device is arranged in the stirring box, a crushing device is arranged in the crushing box, and the upper part of the right side face of the stirring box is provided with a driving device.
Preferably, agitating unit is including first bearing frame, first pivot and stirring vane, and first bearing frame is equipped with two, and two first bearing frames are embedded installing on the left side and the right side of agitator tank respectively, are connected with first pivot between two first bearing frames, and first pivot is connected with the bearing of first bearing frame through the mode of interference connection, and even spaced being connected with a plurality of stirring vane in the first pivot in the agitator tank.
Preferably, the crushing device comprises two second bearing seats, two second rotating shafts, a roller and crushing teeth, the two second bearing seats are respectively installed on the left side and the right side of the crushing box in an embedded mode, the second rotating shafts are connected between the two second bearing seats, the second rotating shafts are connected with bearings of the second bearing seats in an interference connection mode, the roller is connected to the second rotating shafts in the crushing box, and the plurality of crushing teeth are connected to the roller at uniform intervals.
Preferably, the driving device comprises a mounting plate, a first motor, a first belt pulley, a second belt pulley and a flat belt, the left side surface of the mounting plate is connected with the upper portion of the right side surface of the stirring box through a bolt, the bottom of the mounting plate is provided with the first motor, an output shaft of the first motor is connected with the first belt pulley through a coupling, the periphery of the right side of the first rotating shaft is connected with the first belt pulley through a flat key, the periphery of the right side of the second rotating shaft is connected with the second belt pulley through a flat key, and the flat belt is connected between the second belt pulley and the first belt pulley.
Preferably, the stirring device further comprises a vibrating device, the vibrating device comprises a first guide sleeve, a first disc, a first connecting rod, a first wedge-shaped block, a vertical plate, a guide rod, a first contact wheel, a hammer and a first spring, the right side surface of the first guide sleeve is connected with the upper part of the left side surface of the stirring box through a bolt, the left end of a first rotating shaft is connected with the first disc through a bolt, the eccentric position of the left side surface of the first disc is hinged with the first connecting rod through a hinged part, the top end of the first connecting rod penetrates through the first guide sleeve and is connected with the first wedge-shaped block through a bolt, the left side of the top of the stirring box is connected with the vertical plate through a bolt, a guide hole is formed in the vertical plate, the guide rod is arranged in the guide hole, the left end of the guide rod is connected with the first contact wheel, the first contact wheel is in contact with the first wedge-shaped block, the right end of the guide rod is connected with, the right end of the first spring is connected with the left side surface of the hammer.
Preferably, the movable type crushing box comprises a left moving device, the left moving device comprises a second guide sleeve, a second disc, a second connecting rod, a second wedge block, a cross rod, a second contact wheel and a second spring, the left side surface of the second guide sleeve is connected with the lower portion of the right side surface of the crushing box through a bolt, the right side of the second belt pulley is connected with the second disc, the eccentric position of the right side surface of the second disc is hinged with the second connecting rod through a hinged part, the bottom end of the second connecting rod penetrates through the second guide sleeve and is connected with the second wedge block through a bolt, the right side surface of the sieve plate is connected with the cross rod through a bolt, the right end of the cross rod is connected with the second contact wheel, the second contact wheel is in contact with the second wedge block, and the second spring is connected between the left side surface of the sieve plate and the.
Preferably, still including diaphragm and play hopper, the medial surface of second extension board all has the diaphragm through bolted connection, is connected with out the hopper between two diaphragms.
Preferably, the support device further comprises a first inclined plate and a second inclined plate, the first inclined plate is connected between the upper portion of the left side face of the left first support plate and the top of the bottom plate through a bolt, and the second inclined plate is connected between the upper portion of the right side face of the right first support plate and the top of the bottom plate through a bolt.
Preferably, the first motor is installed at the bottom of the mounting plate in a bolt connection mode, and the first motor is a servo motor.
The working principle is as follows: place a collection frame on the bottom plate of first discharge gate below earlier, in the hopper was poured into down to the manual work again white spirit raw materials, the raw materials falls into the agitator tank through hopper down in, then manual start drive arrangement, drive arrangement can start agitating unit and reducing mechanism simultaneously, agitating unit stirs the raw materials in the agitator tank thereupon, manual left shift baffle exposes the second discharge gate after the raw materials stirring is accomplished, the raw materials that the stirring was accomplished falls into the reducing mechanism incasement through second discharge gate and feed inlet thereupon. The crushing device crushes the raw materials in the crushing box, and the crushed raw materials fall into the collecting frame through the sieve plate and the first discharge hole. After all the raw materials in the stirring box fall into the crushing box, the baffle plate is moved rightwards manually to block the second discharge hole again. And then pouring another batch of raw materials into the stirring box through the discharging hopper for stirring, repeating the operation, and closing the driving device after the raw materials are completely stirred and crushed. Therefore, the stirring device and the crushing device can be driven simultaneously by the driving device, and the raw materials can be stirred and crushed simultaneously, so that the turnover time can be shortened, the efficiency of white spirit processing can be improved, and the white spirit processing cost can be reduced.
Because agitating unit is including first bearing frame, first pivot and stirring vane, first bearing frame is equipped with two, and two first bearing frames are embedded installing on the left side and the right side of agitator tank respectively, are connected with first pivot between two first bearing frames, and first pivot is connected with the bearing of first bearing frame through the mode of interference connection, and even spaced is connected with a plurality of stirring vane in the first pivot in the agitator tank. Therefore, the driving device is manually started to drive the first rotating shaft to rotate, the first rotating shaft rotates the stirring blade to rotate along with the first rotating shaft, the stirring blade rotates to stir the raw materials in the stirring box, and after the raw materials are completely stirred and crushed, the driving device is closed.
Because reducing mechanism is including the second bearing frame, the second pivot, cylinder and crushing tooth, the second bearing frame is equipped with two, two second bearing frame respectively embedded install on the left side and the right side of smashing the case, be connected with the second pivot between two second bearing frames, the second pivot is connected with the bearing of second bearing frame through the mode of interference connection, be connected with the cylinder in the second pivot of smashing the incasement, even spaced being connected with a plurality of crushing teeth on the cylinder. Therefore, the second rotating shaft is driven to rotate by the manual starting driving device, the second rotating shaft rotates the roller and the crushing teeth rotate along with the roller, the crushing teeth rotate to crush the raw materials in the crushing box, and after the raw materials are completely crushed, the driving device is closed.
Because drive arrangement is including the mounting panel, first motor, first belt pulley, the flat belt of second belt pulley, the left surface of mounting panel passes through the bolt to be connected with the right flank upper portion of agitator tank, the bottom of mounting panel is equipped with first motor, the output shaft of first motor has first belt pulley through the coupling joint, the right side periphery of first pivot is connected with first belt pulley through the mode of flat key connection, the right side periphery of second pivot is connected with the second belt pulley through the mode of flat key connection, be connected with the flat belt between second belt pulley and the first belt pulley. Therefore, the first motor is started manually to enable the first belt pulley to rotate, the first belt pulley rotates the first rotating shaft to rotate along with the first rotating shaft, and therefore raw materials can be stirred. First belt pulley rotates and makes the second belt pulley rotate through flat belt, and the second belt pulley rotates the second pivot and rotates thereupon, so can smash the raw materials. And after the raw materials are completely stirred and crushed, the first motor is turned off.
Because the vibration device also comprises a vibration device, the vibration device comprises a first guide sleeve, a first disc, a first connecting rod, a first wedge block, a vertical plate, a guide rod, a first contact wheel, a hammer and a first spring, the right side surface of the first guide sleeve is connected with the upper part of the left side surface of the stirring box through a bolt, the left end of a first rotating shaft is connected with the first disc through a bolt, the eccentric position of the left side surface of the first disc is hinged with the first connecting rod through a hinged part, the top end of the first connecting rod passes through the first guide sleeve and is connected with the first wedge block through a bolt, the left side of the top of the stirring box is connected with the vertical plate through a bolt, a guide hole is arranged on the vertical plate, the guide rod is arranged in the guide hole, the left end of the guide rod is connected with the first contact wheel, the first contact wheel is contacted with the first wedge block, the right end of the guide rod is connected with the hammer through a bolt, the right end of the first spring is connected with the left side surface of the hammer. The first rotating shaft rotates the first disc to rotate along with the first rotating shaft, the first disc rotates to enable the first wedge-shaped block to continuously move up and down through the first connecting rod, the first wedge-shaped block continuously moves up and down to enable the guide rod to continuously move left and right through the first contact wheel, the hammer continuously moves left and right to continuously move left and right, and the first spring stretches and retracts along with the hammer. The hammer is continuous to be moved about and can be continuous beat down the hopper and make hopper vibration down to can make the raw materials fall down from hopper down fast, can prevent down that the hopper from blockking up, can prevent that the raw materials from gluing under on the hopper.
Because still including controlling the mobile device, controlling the mobile device including the second guide pin bushing, the second disc, the second connecting rod, the second wedge, the horizontal pole, second contact wheel and second spring, the left surface of second guide pin bushing passes through bolt and smashes the right flank sub-unit connection of case, the right side of second belt pulley is connected with the second disc, it is connected with the second connecting rod through articulated part is articulated on the eccentric position of second disc right flank, the second guide pin bushing is passed through to the bottom of second connecting rod, and there is the second wedge through bolted connection, the right flank of sieve has the horizontal pole through bolted connection, the right-hand member of horizontal pole is connected with the second contact wheel, second contact wheel and second wedge contact, be connected with the second spring between the left surface of sieve and the left crushing bottom of the case in the first spout. The second belt pulley rotates the second disc to rotate along with the second belt pulley, the second disc rotates to enable the second wedge-shaped block to continuously move up and down through the second connecting rod, the second wedge-shaped block continuously moves up and down and enables the cross rod to continuously move left and right through the second contact wheel, the screen plate continuously moves left and right along with the cross rod, and the second spring stretches along with the screen plate. The continuous left-right movement of the sieve plate can enable the crushed raw materials to fall into the collecting frame through the sieve plate, so that the working efficiency can be improved.
Because still including diaphragm and play hopper, the medial surface of second extension board all has the diaphragm through bolted connection, is connected with out the hopper between two diaphragms. Go out the hopper and can make the raw materials after the stirring more concentrated fall into crushing incasement, prevent that the raw materials from spilling over extravagantly.
Because still including first swash plate and second swash plate, there is first swash plate through bolted connection between the top of the left surface upper portion of the first extension board of left side and bottom plate, and there is the second swash plate through bolted connection between the top of the right side upper portion of the first extension board of right side and the bottom plate. The first inclined plate and the second inclined plate can prevent the first support plate from deforming after being used for a long time, the service life of the first support plate can be prolonged, and safety can be improved.
Because the first motor is installed in the bottom of mounting panel through bolted connection's mode, first motor is servo motor. The rotating speed of the servo motor can be controlled more accurately, and the operation is more stable.
(3) Advantageous effects
According to the invention, the stirring device and the crushing device can be simultaneously driven by the driving device, so that raw materials can be simultaneously stirred and crushed, and the effects of shortening the turnover time, improving the white spirit processing efficiency and reducing the white spirit processing cost are achieved.
Drawings
Fig. 1 is a first front view structure diagram of the present invention.
Fig. 2 is a second front view structure diagram of the present invention.
Fig. 3 is a third schematic view of the present invention.
Fig. 4 is a schematic diagram of a fourth front view structure according to the present invention.
The labels in the figures are: 1-bottom plate, 2-first support plate, 3-crushing box, 4-first discharge port, 5-first chute, 6-sieve plate, 7-feed port, 8-second support plate, 9-stirring box, 10-discharge hopper, 11-second discharge port, 12-second chute, 13-baffle, 14-stirring device, 15-crushing device, 16-driving device, 141-first bearing seat, 142-first rotating shaft, 143-stirring blade, 151-second bearing seat, 152-second rotating shaft, 153-roller, 154-crushing tooth, 161-mounting plate, 162-first motor, 163-first belt pulley, 164-second belt pulley, 165-flat belt, 17-vibrating device, 171-first guide sleeve, 172-first disk, 173-first connecting rod, 174-first wedge block, 175-vertical plate, 176-guide hole, 177-guide rod, 178-first contact wheel, 179-hammer, 1710-first spring, 18-left-right moving device, 181-second guide sleeve, 182-second disk, 183-second connecting rod, 184-second wedge block, 185-cross rod, 186-second contact wheel, 187-second spring, 19-cross plate, 20-discharge hopper, 21-first inclined plate and 22-second inclined plate.
Detailed Description
The invention is further described below with reference to the figures and examples.
Example 1
A white spirit processing raw material stirring and crushing integrated device is shown in figures 1-4 and comprises a bottom plate 1, first support plates 2, crushing boxes 3, a sieve plate 6, second support plates 8, stirring boxes 9, a blanking hopper 10, a baffle plate 13, a stirring device 14, a crushing device 15 and a driving device 16, wherein the left side and the right side of the top of the bottom plate 1 are vertically connected with the first support plates 2 through bolts, the tops of the two first support plates 2 are connected with the crushing boxes 3 through bolts, the bottom of each crushing box 3 is provided with a first discharge hole 4, the bottom of the crushing box 3 on the upper side of each first discharge hole 4 is horizontally provided with a first chute 5, the first chutes 5 are communicated with the first discharge holes 4, the sieve plate 6 is arranged in the first chute 5, the middle of the top of each crushing box 3 is provided with a feed inlet 7, the left side and the right side of the top of each crushing box 3 are vertically connected with the second support plates 8 through bolts, the stirring boxes 9, hopper 10 is installed down at the top of agitator tank 9, and it has second discharge gate 11 to open in the middle of the bottom of agitator tank 9, and the left agitator tank 9 bottom level of second discharge gate 11 is opened there is second spout 12, is equipped with baffle 13 in the second spout 12, is equipped with agitating unit 14 in the agitator tank 9, is equipped with reducing mechanism 15 in the reducing mechanism 3, and the right flank upper portion of agitator tank 9 is equipped with drive arrangement 16.
Example 2
A white spirit processing raw material stirring and crushing integrated device is shown in figures 1-4 and comprises a bottom plate 1, first support plates 2, crushing boxes 3, a sieve plate 6, second support plates 8, stirring boxes 9, a blanking hopper 10, a baffle plate 13, a stirring device 14, a crushing device 15 and a driving device 16, wherein the left side and the right side of the top of the bottom plate 1 are vertically connected with the first support plates 2 through bolts, the tops of the two first support plates 2 are connected with the crushing boxes 3 through bolts, the bottom of each crushing box 3 is provided with a first discharge hole 4, the bottom of the crushing box 3 on the upper side of each first discharge hole 4 is horizontally provided with a first chute 5, the first chutes 5 are communicated with the first discharge holes 4, the sieve plate 6 is arranged in the first chute 5, the middle of the top of each crushing box 3 is provided with a feed inlet 7, the left side and the right side of the top of each crushing box 3 are vertically connected with the second support plates 8 through bolts, the stirring boxes 9, hopper 10 is installed down at the top of agitator tank 9, and it has second discharge gate 11 to open in the middle of the bottom of agitator tank 9, and the left agitator tank 9 bottom level of second discharge gate 11 is opened there is second spout 12, is equipped with baffle 13 in the second spout 12, is equipped with agitating unit 14 in the agitator tank 9, is equipped with reducing mechanism 15 in the reducing mechanism 3, and the right flank upper portion of agitator tank 9 is equipped with drive arrangement 16.
The stirring device 14 includes two first bearing seats 141, two first bearing seats 141 respectively installed on the left and right sides of the stirring box 9 in an embedded manner, a first rotating shaft 142 is connected between the two first bearing seats 141, the first rotating shaft 142 is connected with the bearings of the first bearing seats 141 in an interference connection manner, and a plurality of stirring blades 143 are uniformly connected to the first rotating shaft 142 in the stirring box 9 at intervals.
Example 3
A white spirit processing raw material stirring and crushing integrated device is shown in figures 1-4 and comprises a bottom plate 1, first support plates 2, crushing boxes 3, a sieve plate 6, second support plates 8, stirring boxes 9, a blanking hopper 10, a baffle plate 13, a stirring device 14, a crushing device 15 and a driving device 16, wherein the left side and the right side of the top of the bottom plate 1 are vertically connected with the first support plates 2 through bolts, the tops of the two first support plates 2 are connected with the crushing boxes 3 through bolts, the bottom of each crushing box 3 is provided with a first discharge hole 4, the bottom of the crushing box 3 on the upper side of each first discharge hole 4 is horizontally provided with a first chute 5, the first chutes 5 are communicated with the first discharge holes 4, the sieve plate 6 is arranged in the first chute 5, the middle of the top of each crushing box 3 is provided with a feed inlet 7, the left side and the right side of the top of each crushing box 3 are vertically connected with the second support plates 8 through bolts, the stirring boxes 9, hopper 10 is installed down at the top of agitator tank 9, and it has second discharge gate 11 to open in the middle of the bottom of agitator tank 9, and the left agitator tank 9 bottom level of second discharge gate 11 is opened there is second spout 12, is equipped with baffle 13 in the second spout 12, is equipped with agitating unit 14 in the agitator tank 9, is equipped with reducing mechanism 15 in the reducing mechanism 3, and the right flank upper portion of agitator tank 9 is equipped with drive arrangement 16.
The stirring device 14 includes two first bearing seats 141, two first bearing seats 141 respectively installed on the left and right sides of the stirring box 9 in an embedded manner, a first rotating shaft 142 is connected between the two first bearing seats 141, the first rotating shaft 142 is connected with the bearings of the first bearing seats 141 in an interference connection manner, and a plurality of stirring blades 143 are uniformly connected to the first rotating shaft 142 in the stirring box 9 at intervals.
The crushing device 15 comprises a second bearing seat 151, a second rotating shaft 152, a roller 153 and crushing teeth 154, wherein the second bearing seat 151 is provided with two second bearing seats 151, the two second bearing seats 151 are respectively installed on the left side and the right side of the crushing box 3 in an embedded mode, the second rotating shaft 152 is connected between the two second bearing seats 151, the second rotating shaft 152 is connected with bearings of the second bearing seats 151 in an interference connection mode, the roller 153 is connected onto the second rotating shaft 152 in the crushing box 3, and the roller 153 is connected with the crushing teeth 154 at uniform intervals.
Example 4
A white spirit processing raw material stirring and crushing integrated device is shown in figures 1-4 and comprises a bottom plate 1, first support plates 2, crushing boxes 3, a sieve plate 6, second support plates 8, stirring boxes 9, a blanking hopper 10, a baffle plate 13, a stirring device 14, a crushing device 15 and a driving device 16, wherein the left side and the right side of the top of the bottom plate 1 are vertically connected with the first support plates 2 through bolts, the tops of the two first support plates 2 are connected with the crushing boxes 3 through bolts, the bottom of each crushing box 3 is provided with a first discharge hole 4, the bottom of the crushing box 3 on the upper side of each first discharge hole 4 is horizontally provided with a first chute 5, the first chutes 5 are communicated with the first discharge holes 4, the sieve plate 6 is arranged in the first chute 5, the middle of the top of each crushing box 3 is provided with a feed inlet 7, the left side and the right side of the top of each crushing box 3 are vertically connected with the second support plates 8 through bolts, the stirring boxes 9, hopper 10 is installed down at the top of agitator tank 9, and it has second discharge gate 11 to open in the middle of the bottom of agitator tank 9, and the left agitator tank 9 bottom level of second discharge gate 11 is opened there is second spout 12, is equipped with baffle 13 in the second spout 12, is equipped with agitating unit 14 in the agitator tank 9, is equipped with reducing mechanism 15 in the reducing mechanism 3, and the right flank upper portion of agitator tank 9 is equipped with drive arrangement 16.
The stirring device 14 includes two first bearing seats 141, two first bearing seats 141 respectively installed on the left and right sides of the stirring box 9 in an embedded manner, a first rotating shaft 142 is connected between the two first bearing seats 141, the first rotating shaft 142 is connected with the bearings of the first bearing seats 141 in an interference connection manner, and a plurality of stirring blades 143 are uniformly connected to the first rotating shaft 142 in the stirring box 9 at intervals.
The crushing device 15 comprises a second bearing seat 151, a second rotating shaft 152, a roller 153 and crushing teeth 154, wherein the second bearing seat 151 is provided with two second bearing seats 151, the two second bearing seats 151 are respectively installed on the left side and the right side of the crushing box 3 in an embedded mode, the second rotating shaft 152 is connected between the two second bearing seats 151, the second rotating shaft 152 is connected with bearings of the second bearing seats 151 in an interference connection mode, the roller 153 is connected onto the second rotating shaft 152 in the crushing box 3, and the roller 153 is connected with the crushing teeth 154 at uniform intervals.
The driving device 16 comprises a mounting plate 161, a first motor 162, a first belt pulley 163, a second belt pulley 164 and a flat belt 165, the left side surface of the mounting plate 161 is connected with the upper part of the right side surface of the stirring box 9 through a bolt, the bottom of the mounting plate 161 is provided with the first motor 162, the output shaft of the first motor 162 is connected with the first belt pulley 163 through a coupling, the right periphery of the first rotating shaft 142 is connected with the first belt pulley 163 through a flat key, the right periphery of the second rotating shaft 152 is connected with the second belt pulley 164 through a flat key, and the flat belt 165 is connected between the second belt pulley 164 and the first belt pulley 163.
The vibration device 17 comprises a first guide sleeve 171, a first disc 172, a first connecting rod 173, a first wedge-shaped block 174, a vertical plate 175, a guide rod 177, a first contact wheel 178, a hammer 179 and a first spring 1710, the right side surface of the first guide sleeve 171 is connected with the upper part of the left side surface of the stirring box 9 through a bolt, the left end of the first rotating shaft 142 is connected with the first disc 172 through a bolt, the eccentric position of the left side surface of the first disc 172 is hinged with the first connecting rod 173 through a hinged part, the top end of the first connecting rod 173 penetrates through the first guide sleeve 171 and is connected with the first wedge-shaped block 174 through a bolt, the left side of the top of the stirring box 9 is connected with the vertical plate 175 through a bolt, a guide hole 176 is formed in the vertical plate 175, the guide rod 177 is arranged in the guide hole 176, the left end of the guide rod 177 is connected with the first contact wheel 178, the first contact wheel 178 is in contact with the first wedge-shaped block 174, a first spring 1710 is wound around the guide rod 177, the left end of the first spring 1710 is connected to the right side surface of the riser 175, and the right end of the first spring 1710 is connected to the left side surface of the hammer 179.
The left-right moving device 18 is also included, the left-right moving device 18 comprises a second guide sleeve 181, a second disc 182, a second connecting rod 183, a second wedge-shaped block 184, a cross bar 185, a second contact wheel 186 and a second spring 187, the left side surface of the second guide sleeve 181 is connected with the lower part of the right side surface of the crushing box 3 through a bolt, the right side of the second belt wheel 164 is connected with the second disc 182, the eccentric position of the right side surface of the second disc 182 is hinged with the second connecting rod 183 through a hinge component, the bottom end of the second connecting rod 183 passes through the second guide sleeve 181, and is connected with the second wedge block 184 through the bolt, and the right flank of sieve 6 is connected with the horizontal pole 185 through the bolt, and the right-hand member of horizontal pole 185 is connected with the second contact wheel 186, and the second contact wheel 186 contacts with second wedge block 184, is connected with the second spring 187 between the left flank of sieve 6 and the left crushing box 3 bottom in the first spout 5.
The device also comprises a transverse plate 19 and a discharge hopper 20, the inner side surface of the second support plate 8 is connected with the transverse plate 19 through bolts, and the discharge hopper 20 is connected between the two transverse plates 19.
The support is characterized by further comprising a first inclined plate 21 and a second inclined plate 22, the first inclined plate 21 is connected between the upper portion of the left side face of the left first support plate 2 and the top of the bottom plate 1 through a bolt, and the second inclined plate 22 is connected between the upper portion of the right side face of the right first support plate 2 and the top of the bottom plate 1 through a bolt.
The first motor 162 is installed at the bottom of the mounting plate 161 by means of bolt connection, and the first motor 162 is a servo motor.
The working principle is as follows: place a collection frame on bottom plate 1 of first discharge gate 4 below earlier, in artifical pouring the white spirit raw materials into hopper 10 down, the raw materials falls into agitator tank 9 through hopper 10 down, then artifical starting drive arrangement 16, drive arrangement 16 can start agitating unit 14 and reducing mechanism 15 simultaneously, agitating unit 14 stirs the raw materials in agitator tank 9 thereupon, artifical removal baffle 13 left after the raw materials stirring is accomplished exposes second discharge gate 11, the raw materials that the stirring was accomplished falls into in reducing tank 3 through second discharge gate 11 and feed inlet 7 thereupon. The crushing device 15 then crushes the raw materials in the crushing box 3, and the crushed raw materials fall into the collecting frame through the sieve plate 6 and the first discharge port 4. When all the raw materials in the stirring box 9 fall into the crushing box 3, the baffle 13 is manually moved rightwards to block the second discharge hole 11 again. Then another batch of raw materials is poured into the stirring box 9 through the discharging hopper 10 to be stirred, the operation is repeated, and when the raw materials are completely stirred and crushed, the driving device 16 is closed. Thus, the stirring device 14 and the crushing device 15 can be simultaneously driven by the driving device 16, and the raw materials can be simultaneously stirred and crushed, so that the turnover time can be shortened, the efficiency of white spirit processing can be improved, and the white spirit processing cost can be reduced.
Because the stirring device 14 includes the first bearing seat 141, the first rotating shaft 142 and the stirring blades 143, there are two first bearing seats 141, the two first bearing seats 141 are respectively installed at the left side and the right side of the stirring box 9 in an embedded manner, the first rotating shaft 142 is connected between the two first bearing seats 141, the first rotating shaft 142 is connected with the bearings of the first bearing seats 141 in an interference connection manner, and the first rotating shaft 142 in the stirring box 9 is evenly connected with the plurality of stirring blades 143 at intervals. Therefore, the driving device 16 is manually started to drive the first rotating shaft 142 to rotate, the first rotating shaft 142 rotates the stirring blade 143, the stirring blade 143 rotates to stir the raw materials in the stirring tank 9, and after the raw materials are completely stirred and crushed, the driving device 16 is closed.
Because reducing mechanism 15 is including second bearing frame 151, second pivot 152, cylinder 153 and crushing tooth 154, second bearing frame 151 is equipped with two, two second bearing frames 151 are respectively embedded installs on the left side and the right side of crushing case 3, be connected with second pivot 152 between two second bearing frames 151, second pivot 152 is connected with the bearing of second bearing frame 151 through the mode of interference connection, be connected with cylinder 153 on the second pivot 152 in crushing case 3, evenly spaced being connected with a plurality of crushing teeth 154 on the cylinder 153. Therefore, the second rotating shaft 152 is driven to rotate by manually starting the driving device 16, the second rotating shaft 152 rotates the roller 153 and the crushing teeth 154, the crushing teeth 154 rotate to crush the raw materials in the crushing box 3, and after the raw materials are completely crushed, the driving device 16 is closed.
Because the driving device 16 comprises an installation plate 161, a first motor 162, a first belt pulley 163, a second belt pulley 164 and a flat belt 165, the left side surface of the installation plate 161 is connected with the upper part of the right side surface of the stirring box 9 through a bolt, the bottom of the installation plate 161 is provided with the first motor 162, the output shaft of the first motor 162 is connected with the first belt pulley 163 through a coupling, the right periphery of the first rotating shaft 142 is connected with the first belt pulley 163 through a flat key, the right periphery of the second rotating shaft 152 is connected with the second belt pulley 164 through a flat key, and the flat belt 165 is connected between the second belt pulley 164 and the first belt pulley 163. Therefore, the first pulley 163 is rotated by manually starting the first motor 162, and the first pulley 163 rotates the first rotating shaft 142, thereby stirring the raw material. The rotation of the first pulley 163 causes the second pulley 164 to rotate via the flat belt 165, and the second pulley 164 rotates the second rotating shaft 152, thereby pulverizing the raw material. After the raw materials are completely stirred and crushed, the first motor 162 is turned off.
Because the vibration device 17 is further included, the vibration device 17 includes a first guide sleeve 171, a first disc 172, a first connecting rod 173, a first wedge-shaped block 174, a vertical plate 175, a guide rod 177, a first contact wheel 178, a hammer 179 and a first spring 1710, the right side surface of the first guide sleeve 171 is connected with the upper part of the left side surface of the stirring box 9 through a bolt, the left end of the first rotating shaft 142 is connected with the first disc 172 through a bolt, the eccentric position of the left side surface of the first disc 172 is hinged with the first connecting rod 173 through a hinge component, the top end of the first connecting rod 173 passes through the first guide sleeve 171 and is connected with the first wedge-shaped block 174 through a bolt, the left side of the top of the stirring box 9 is connected with the vertical plate 175 through a bolt, a guide hole 176 is formed on the vertical plate 175, the guide rod 177 is arranged in the guide hole 176, the left end of the guide rod 177 is connected with the first contact wheel 178, the first contact wheel 178 is in contact, a first spring 1710 is wound around the guide rod 177, the left end of the first spring 1710 is connected to the right side surface of the riser 175, and the right end of the first spring 1710 is connected to the left side surface of the hammer 179. The first rotating shaft 142 rotates the first disc 172, the first disc 172 rotates through the first connecting rod 173 to enable the first wedge-shaped block 174 to continuously move up and down, the first wedge-shaped block 174 continuously moves up and down and enables the guide rod 177 to continuously move left and right through the first contact wheel 178, the guide rod 177 continuously moves left and right, the hammer 179 continuously moves left and right, and the first spring 1710 expands and contracts. The hammer 179 can continuously strike the lower hopper 10 to vibrate the lower hopper 10 by continuously moving left and right, so that the raw material can be rapidly dropped from the lower hopper 10, the lower hopper 10 can be prevented from being blocked, and the raw material can be prevented from being stuck on the lower hopper 10.
Because the left-right moving device 18 is also included, the left-right moving device 18 comprises a second guide sleeve 181, a second disk 182, a second connecting rod 183, a second wedge-shaped block 184, a cross bar 185, a second contact wheel 186 and a second spring 187, the left side surface of the second guide sleeve 181 is connected with the lower part of the right side surface of the crushing box 3 through a bolt, the right side of the second belt wheel 164 is connected with the second disk 182, the eccentric position of the right side surface of the second disk 182 is hinged with the second connecting rod 183 through a hinge component, the bottom end of the second connecting rod 183 passes through the second guide sleeve 181, and is connected with the second wedge block 184 through the bolt, and the right flank of sieve 6 is connected with the horizontal pole 185 through the bolt, and the right-hand member of horizontal pole 185 is connected with the second contact wheel 186, and the second contact wheel 186 contacts with second wedge block 184, is connected with the second spring 187 between the left flank of sieve 6 and the left crushing box 3 bottom in the first spout 5. The second pulley 164 rotates the second disc 182 to rotate therewith, the second disc 182 rotates to enable the second wedge-shaped block 184 to continuously move up and down through the second connecting rod 183, the second wedge-shaped block 184 continuously moves up and down and enables the cross bar 185 to continuously move left and right through the second contact wheel 186, the cross bar 185 continuously moves left and right, the screen plate 6 continuously moves left and right, and the second spring 187 extends and retracts accordingly. The continuous left-right movement of the sieve plate 6 can enable the crushed raw materials to fall into the collecting frame through the sieve plate 6, so that the working efficiency can be improved.
Because still including diaphragm 19 and play hopper 20, the medial surface of second extension board 8 all has diaphragm 19 through bolted connection, is connected with out hopper 20 between two diaphragm 19. Go out hopper 20 and can make the raw materials after the stirring more concentrated fall into crushing case 3 in, prevent that the raw materials from spilling over extravagantly.
Because the portable multifunctional support is also provided with the first inclined plate 21 and the second inclined plate 22, the first inclined plate 21 is connected between the upper part of the left side surface of the left first support plate 2 and the top of the bottom plate 1 through a bolt, and the second inclined plate 22 is connected between the upper part of the right side surface of the right first support plate 2 and the top of the bottom plate 1 through a bolt. The first swash plate 21 and the second swash plate 22 can prevent the first brace 2 from being deformed after long-term use, can extend the service life of the first brace 2, and can improve safety.
Because the first motor 162 is installed at the bottom of the mounting plate 161 by means of bolts, the first motor 162 is a servo motor. The rotating speed of the servo motor can be controlled more accurately, and the operation is more stable.
The above examples are merely representative of preferred embodiments of the present invention, and the description thereof is more specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, various changes, modifications and substitutions can be made without departing from the spirit of the present invention, and these are all within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (1)

1. A raw material stirring and crushing integrated device for processing white spirit is characterized by comprising a base plate (1), first support plates (2), crushing boxes (3), a sieve plate (6), second support plates (8), stirring boxes (9), a discharging hopper (10), a baffle plate (13), a stirring device (14), a crushing device (15) and a driving device (16), wherein the left side and the right side of the top of the base plate (1) are vertically connected with the first support plates (2) through bolts, the crushing boxes (3) are connected between the tops of the two first support plates (2) through bolts, a first discharging hole (4) is formed in the bottom of each crushing box (3), a first chute (5) is horizontally formed in the bottom of each crushing box (3) on the upper side of each first discharging hole (4), the first chute (5) is communicated with the first discharging hole (4), the sieve plate (6) is arranged in each first chute (5), a feeding holes (7) are formed in the middles of the tops of the crushing boxes (3, the left side and the right side of the top of the crushing box (3) are both vertically connected with second support plates (8) through bolts, a stirring box (9) is connected between the tops of the two second support plates (8) through bolts, a blanking hopper (10) is installed at the top of the stirring box (9), a second discharge hole (11) is formed in the middle of the bottom of the stirring box (9), a second sliding groove (12) is horizontally formed in the bottom of the stirring box (9) on the left side of the second discharge hole (11), a baffle (13) is arranged in the second sliding groove (12), a stirring device (14) is arranged in the stirring box (9), a crushing device (15) is arranged in the crushing box (3), and a driving device (16) is arranged on the upper portion of the right side;
the stirring device (14) comprises two first bearing seats (141), a first rotating shaft (142) and stirring blades (143), the two first bearing seats (141) are respectively installed on the left side and the right side of the stirring box (9) in an embedded mode, the first rotating shaft (142) is connected between the two first bearing seats (141), the first rotating shaft (142) is connected with bearings of the first bearing seats (141) in an interference connection mode, and the first rotating shaft (142) in the stirring box (9) is uniformly connected with the stirring blades (143) at intervals;
the crushing device (15) comprises two second bearing seats (151), two second rotating shafts (152), a roller (153) and crushing teeth (154), the two second bearing seats (151) are respectively installed on the left side and the right side of the crushing box (3) in an embedded mode, the second rotating shafts (152) are connected between the two second bearing seats (151), the second rotating shafts (152) are connected with bearings of the second bearing seats (151) in an interference connection mode, the roller (153) is connected onto the second rotating shafts (152) in the crushing box (3), and the plurality of crushing teeth (154) are uniformly connected onto the roller (153) at intervals;
the driving device (16) comprises a mounting plate (161), a first motor (162), a first belt pulley (163), a second belt pulley (164) and a flat belt (165), the left side surface of the mounting plate (161) is connected with the upper part of the right side surface of the stirring box (9) through a bolt, the bottom of the mounting plate (161) is provided with the first motor (162), the output shaft of the first motor (162) is connected with the first belt pulley (163) through a coupling, the right periphery of the first rotating shaft (142) is connected with the first belt pulley (163) in a flat key connection mode, the right periphery of the second rotating shaft (152) is connected with the second belt pulley (164) in a flat key connection mode, and the flat belt (165) is connected between the second belt pulley (164) and the first belt pulley (163);
the stirring box also comprises a vibrating device (17), the vibrating device (17) comprises a first guide sleeve (171), a first disc (172), a first connecting rod (173), a first wedge block (174), a vertical plate (175), a guide rod (177), a first contact wheel (178), a hammer (179) and a first spring (1710), the right side surface of the first guide sleeve (171) is connected with the upper part of the left side surface of the stirring box (9) through a bolt, the left end of the first rotating shaft (142) is connected with the first disc (172) through a bolt, the eccentric position of the left side surface of the first disc (172) is hinged with the first connecting rod (173) through a hinge part, the top end of the first connecting rod (173) penetrates through the first guide sleeve (171) and is connected with the first wedge block (174) through a bolt, the left side of the top of the stirring box (9) is connected with the vertical plate (175) through a bolt, a guide hole (176) is formed, a guide rod (177) is arranged in the guide hole (176), the left end of the guide rod (177) is connected with a first contact wheel (178), the first contact wheel (178) is in contact with a first wedge-shaped block (174), the right end of the guide rod (177) is connected with a hammer (179) through a bolt, a first spring (1710) is wound on the guide rod (177), the left end of the first spring (1710) is connected with the right side face of a vertical plate (175), and the right end of the first spring (1710) is connected with the left side face of the hammer (179);
the crushing device further comprises a left-right moving device (18), the left-right moving device (18) comprises a second guide sleeve (181), a second disc (182), a second connecting rod (183), a second wedge-shaped block (184), a cross rod (185), a second contact wheel (186) and a second spring (187), the left side surface of the second guide sleeve (181) is connected with the lower part of the right side surface of the crushing box (3) through bolts, the right side of the second belt pulley (164) is connected with the second disc (182), the eccentric position of the right side surface of the second disc (182) is hinged with the second connecting rod (183) through a hinge component, the bottom end of the second connecting rod (183) penetrates through the second guide sleeve (181) and is connected with the second wedge-shaped block (184) through bolts, the right side surface of the sieve plate (6) is connected with the cross rod (185) through bolts, the right end of the cross rod (185) is connected with the second contact wheel (186), and the second contact wheel (186, a second spring (187) is connected between the left side surface of the sieve plate (6) and the bottom of the left crushing box (3) in the first chute (5);
the device also comprises transverse plates (19) and a discharge hopper (20), the inner side surfaces of the second support plates (8) are connected with the transverse plates (19) through bolts, and the discharge hopper (20) is connected between the two transverse plates (19);
the device is characterized by further comprising a first inclined plate (21) and a second inclined plate (22), wherein the first inclined plate (21) is connected between the upper part of the left side surface of the left first support plate (2) and the top of the bottom plate (1) through a bolt, and the second inclined plate (22) is connected between the upper part of the right side surface of the right first support plate (2) and the top of the bottom plate (1) through a bolt;
the first motor (162) is installed at the bottom of the mounting plate (161) in a bolt connection mode, and the first motor (162) is a servo motor;
when the device is used, a collecting frame is placed on the bottom plate below the first discharge port, then white spirit raw materials are manually poured into the blanking hopper, the raw materials fall into the stirring box through the blanking hopper, then the driving device is manually started, the driving device can simultaneously start the stirring device and the crushing device, the stirring device is used for stirring the raw materials in the stirring box, the baffle is manually moved leftwards after the raw materials are stirred to expose the second discharge port, and the stirred raw materials fall into the crushing box through the second discharge port and the feed port; the crushing device is used for crushing the raw materials in the crushing box, and the crushed raw materials fall into the collecting frame through the sieve plate and the first discharge hole; when all the raw materials in the stirring box fall into the crushing box, the baffle plate is manually moved rightwards to block the second discharge hole again; then pouring another batch of raw materials into the stirring box through the discharging hopper for stirring, repeating the operation, and closing the driving device after the raw materials are completely stirred and crushed;
the driving device is manually started to drive the first rotating shaft to rotate, the first rotating shaft rotates the stirring blade to rotate along with the first rotating shaft, the stirring blade rotates to stir the raw materials in the stirring box, and after the raw materials are completely stirred and crushed, the driving device is closed;
the driving device is manually started to drive the second rotating shaft to rotate, the second rotating shaft rotating roller and the crushing teeth rotate along with the second rotating shaft rotating roller, the crushing teeth rotate to crush the raw materials in the crushing box, and the driving device is closed after the raw materials are completely crushed; the first motor is manually started to enable the first belt pulley to rotate, and the first belt pulley rotates the first rotating shaft to rotate along with the first rotating shaft, so that the raw materials can be stirred; the first belt pulley rotates to enable the second belt pulley to rotate through the flat belt, and the second belt pulley rotates to enable the second rotating shaft to rotate along with the second belt pulley, so that the raw materials can be crushed; and after the raw materials are completely stirred and crushed, the first motor is turned off.
CN201710642334.2A 2017-07-31 2017-07-31 White spirit processing is with raw materials stirring smashes integrated device Active CN107446737B (en)

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