CN110523476A - A kind of bilayer multichannel cereal mill pulverizer - Google Patents
A kind of bilayer multichannel cereal mill pulverizer Download PDFInfo
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- CN110523476A CN110523476A CN201910946167.XA CN201910946167A CN110523476A CN 110523476 A CN110523476 A CN 110523476A CN 201910946167 A CN201910946167 A CN 201910946167A CN 110523476 A CN110523476 A CN 110523476A
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- tube
- grinding mechanism
- cereal
- casing
- grinding
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- 235000013339 cereals Nutrition 0.000 title claims abstract description 86
- 238000000227 grinding Methods 0.000 claims abstract description 203
- 238000003801 milling Methods 0.000 claims abstract description 49
- 230000001105 regulatory effect Effects 0.000 claims abstract description 18
- 238000012545 processing Methods 0.000 claims abstract description 12
- 230000005540 biological transmission Effects 0.000 claims description 42
- 239000000463 material Substances 0.000 claims description 41
- 239000003638 chemical reducing agent Substances 0.000 claims description 23
- 238000003756 stirring Methods 0.000 claims description 19
- 230000000694 effects Effects 0.000 claims description 14
- 238000007599 discharging Methods 0.000 claims description 8
- 230000000903 blocking effect Effects 0.000 claims description 3
- 238000007789 sealing Methods 0.000 claims description 3
- 230000005611 electricity Effects 0.000 claims description 2
- 239000004744 fabric Substances 0.000 claims description 2
- 230000008450 motivation Effects 0.000 claims description 2
- 238000005299 abrasion Methods 0.000 claims 1
- 238000010586 diagram Methods 0.000 description 16
- 238000007667 floating Methods 0.000 description 8
- 235000013312 flour Nutrition 0.000 description 5
- 239000000843 powder Substances 0.000 description 4
- 238000007670 refining Methods 0.000 description 4
- 235000013305 food Nutrition 0.000 description 3
- 240000007594 Oryza sativa Species 0.000 description 2
- 235000007164 Oryza sativa Nutrition 0.000 description 2
- 240000008042 Zea mays Species 0.000 description 2
- 235000005824 Zea mays ssp. parviglumis Nutrition 0.000 description 2
- 235000002017 Zea mays subsp mays Nutrition 0.000 description 2
- 235000005822 corn Nutrition 0.000 description 2
- 230000007547 defect Effects 0.000 description 2
- 238000000034 method Methods 0.000 description 2
- 235000009566 rice Nutrition 0.000 description 2
- 244000068988 Glycine max Species 0.000 description 1
- 235000010469 Glycine max Nutrition 0.000 description 1
- 244000046052 Phaseolus vulgaris Species 0.000 description 1
- 235000010627 Phaseolus vulgaris Nutrition 0.000 description 1
- 241000209140 Triticum Species 0.000 description 1
- 235000021307 Triticum Nutrition 0.000 description 1
- 239000000654 additive Substances 0.000 description 1
- 230000000996 additive effect Effects 0.000 description 1
- 238000003491 array Methods 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 239000004566 building material Substances 0.000 description 1
- 238000005119 centrifugation Methods 0.000 description 1
- 230000007812 deficiency Effects 0.000 description 1
- 230000005484 gravity Effects 0.000 description 1
- 229910052500 inorganic mineral Inorganic materials 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 238000005272 metallurgy Methods 0.000 description 1
- 239000011707 mineral Substances 0.000 description 1
- 239000000203 mixture Substances 0.000 description 1
- 239000007787 solid Substances 0.000 description 1
- 210000002784 stomach Anatomy 0.000 description 1
- 239000000126 substance Substances 0.000 description 1
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B02—CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
- B02C—CRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
- B02C11/00—Other auxiliary devices or accessories specially adapted for grain mills
- B02C11/04—Feeding devices
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B02—CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
- B02C—CRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
- B02C7/00—Crushing or disintegrating by disc mills
- B02C7/11—Details
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B02—CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
- B02C—CRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
- B02C7/00—Crushing or disintegrating by disc mills
- B02C7/18—Disc mills specially adapted for grain
- B02C7/184—Disc mills specially adapted for grain with vertical axis
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B02—CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
- B02C—CRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
- B02C7/00—Crushing or disintegrating by disc mills
- B02C7/18—Disc mills specially adapted for grain
- B02C7/186—Adjusting, applying pressure to, or controlling distance between, discs
Landscapes
- Engineering & Computer Science (AREA)
- Food Science & Technology (AREA)
- Crushing And Grinding (AREA)
Abstract
The present invention provides a kind of double-deck multichannel cereal mill pulverizers, it includes mounting rack, the feed pieces for being fixedly installed on mounting rack and successively from top to bottom arranging, grinding mechanism, discharge component and motor, grinding mechanism includes the corase grinding mechanism for carrying out corase grinding processing to cereal, regulating mechanism for carrying out the fine grinding mechanism of fine grinding to cereal and for adjusting corase grinding mechanism refiner structure milling granularity, the input terminal opening upwards of feed pieces are arranged, output end connect connection with the input terminal of corase grinding mechanism, the output end for roughly grinding mechanism connect connection with the input terminal of fine grinding mechanism, the output end of fine grinding mechanism connect connection with the input terminal of discharge component, the output end of discharge component is directed toward emission point, motor provides motive power for feed pieces and grinding mechanism.
Description
Technical field
The present invention relates to a kind of pulverizers, and in particular to a kind of bilayer multichannel cereal mill pulverizer.
Background technique
Flour mill is applied to the grinding processing of mineral products material in the fields such as food processing, metallurgy, building materials, chemical industry, mine,
Wherein the milling of five cereals is most commonly seen, and flour is made, rice is carried out milling crushing for example, wheat be milled to crush
Be made rice flour, by soybean carry out milling crush be made bean powder, by corn carry out milling crush corn flour is made, due to smashed
Five cereals receive the favor of infant, old man, stomach patient, smashed five cereals can convenient for digesting and assimilating
It is processed into diversified food, it is also possible to as the additive in other food processings, still, five cereals at present
Flour mill have the defects that it is certain, for example, same type it is applicable cereal it is single, can only be disposably milled to cereal,
And the granularity of cereal milling is unable to control, and in order to overcome above-mentioned defect, the present inventor designs a kind of clever structure, principle letter
It is single, operate with that range that is convenient, being applicable in cereal is wide, can cereal be roughly ground and be refined simultaneously, and cereal milling
The adjustable double-deck multichannel cereal mill pulverizer of granularity.
Summary of the invention
To solve the deficiencies in the prior art, the object of the present invention is to provide a kind of clever structure, principles simply, operates with
Range that is convenient, being applicable in cereal is wide, can cereal be roughly ground and be refined simultaneously, and the granularity of cereal milling is adjustable
The double-deck multichannel cereal mill pulverizer.
To realize the above-mentioned technical purpose, the technical solution adopted in the present invention is as follows.
A kind of bilayer multichannel cereal mill pulverizer comprising mounting rack, be fixedly installed on mounting rack and successively by
Up to the feed pieces of lower arrangement, grinding mechanism, discharge component and motor, grinding mechanism includes thick for carrying out to cereal
Grind the corase grinding mechanism of processing, the fine grinding mechanism for carrying out fine grinding to cereal and for adjusting corase grinding mechanism refiner structure
The regulating mechanism for the granularity that is milled, the input terminal opening upwards arrangement of feed pieces, output end are connect with the input terminal of corase grinding mechanism
It connects, the output end for roughly grinding mechanism connect connection with the input terminal of fine grinding mechanism, refines the output end and discharge component of mechanism
Input terminal connection is connected, and the output end of discharge component is directed toward emission point, and motor is provided for feed pieces and grinding mechanism
Motive power.
Further optimize or improve as this programme.
The feed pieces include the material storage tube arranged straight up that is fixedly installed on mounting rack and is open, storing
The medium position at cylinder cylinder bottom is fixedly installed hollow casing one, spacing arrangement and between the two between casing one and material storage tube
Storing area is constituted, the opening of material storage tube is coaxially fixedly installed the taper loading hopper for being connected thereto connection, loading hopper
Big opening be located at the top of small opening, be fixedly installed on the periphery of the material storage tube and its internal conveying for connect connection
Cylinder, the radial direction for being axially parallel to material storage tube and transport tube of transport tube arrange that transport tube is away from storage close to the bottom of material storage tube
Barrel one end is provided with for the end cap to its sealing blocking, and there are four and along circumference where material storage tube for the transport tube setting
Direction array is arranged, is fixedly installed to connect connection with its inside and be open on the periphery of transport tube and be arranged down straight down
Barrel, blanking tube leans on proximal cover arrangement and its output end connect connection with mechanism is roughly ground, living between the end cap and casing one
Dynamic to be provided with the auger coaxially arranged with transport tube, auger is adapted with transport tube, auger one end and end cap rotation connection cooperate,
The other end and the rotation connection of casing one cooperation and the end are driving end;
The feed pieces include being provided with the planetary reducer below material storage tube and being firmly connected with it, planet tooth
Input shaft, output shaft in wheel decelerator is coaxially arranged with material storage tube, and the input terminal of planetary reducer is for receiving electricity
The driving power of motivation, the input shaft of planetary reducer are located at the lower section of its output shaft, the output of planetary reducer
The coaxial fixing sleeve in inside and the end that axis activity passes through material storage tube, casing one extends to casing one is twisted equipped with drive bevel gear
The driving end of dragon extends in casing one and the coaxial fixing sleeve in the end is equipped with driven wheel of differential, drive bevel gear with from mantle tooth
Wheel is meshed.
Further optimize or improve as this programme.
Be coaxially arranged with agitating shaft in the loading hopper, agitating shaft extend upwardly to loading hopper big opening part, to
Lower expanding activity passes through casing one and is fixedly and coaxially connected with drive bevel gear, is provided with stirring rod on the periphery of agitating shaft
Group, the setting of stirring rod group arrange that stirring rod group includes being fixedly installed in agitating shaft there are five and along the axial array of agitating shaft
Stirring rod on periphery, stirring rod axially along agitating shaft radial direction arrange, stirring rod setting there are four and along agitating shaft
Place circumferencial direction array arrangement.
Further optimize or improve as this programme.
The corase grinding mechanism includes the opening annular milling case coaxially arranged straight up and with material storage tube, and be milled case
Opening be provided with matched case lid, between case lid and the inner headed face for the case that is milled spacing arrangement and the two form with
Be milled the isodiametric annular mouth of case inner headed face, and coaxial fixing sleeve is equipped with retainer plate and retainer plate and peace on the periphery for the case that is milled
It shelves and is fixedly connected, the annular slab being provided with for being blocked to it, annular slab and the case that is milled are rotated coaxially in annular mouth
Inner headed face, case lid inner headed face fit and annular slab can float up and down along the vertical direction, it is same on the periphery of annular slab
Axis fixing sleeve is equipped with annular rotary grinding disk, and rotary grinding disk is extended in milling case by annular mouth and the diameter of rotary grinding disk is less than
The diameter of milling case periphery, rotary grinding disk can float up and down along annular mouth, and milling is constituted between rotary grinding disk and case lid
Area M, the blanking tube is located at the surface of case lid and the output end of blanking tube connect connection with milling area M, the case lid
Lower end surface is coaxially fixedly installed the ring baffle with rotary grinding disk equal diameter arrangement, and use is formd between baffle and rotary grinding disk
In the blanking gap that powdered cereal slides;
The upper surface of the rotary grinding disk offers frictional groove one, and frictional groove one is through to its inner circle by the periphery of rotary grinding disk
Face, if frictional groove one is provided with dry doubling, it is inclined along circumferencial direction array arrangement, the length direction of frictional groove one where rotary grinding disk
It is 30 degree radial to transfer movable grinding disc, the lower end surface of the case lid offers frictional groove two, and frictional groove two is provided with several and edge
Circumferencial direction array arrangement, frictional groove two are corresponding with about one frictional groove where case lid;
It is provided with fixed frame on the inner headed face of the annular slab, the socket coaxially arranged with annular slab is fixedly installed on fixed frame
Cylinder, the input shaft of planetary reducer is plugged in socket tube and the two constitutes spline connection cooperation, and socket tube can
It is slided up and down along the input shaft of planetary reducer.
Further optimize or improve as this programme.
Structure, shape, size, the connection relationship of the fine grinding mechanism and corase grinding mechanism are completely the same, and refiner
The distance between rotary grinding disk and case lid are less than corase grinding the distance between mechanism transfer movable grinding disc and case lid in structure, roughly grind in mechanism
It is provided between milling area M for connecting the blanking channel one for connecting the two in the bottom of milling case and fine grinding mechanism, blanking is led to
There are four and along circumferencial direction array arrangements where end cap for the setting of road one.
Further optimize or improve as this programme.
The wear device further includes for adjusting regulating mechanism that rotary grinding disk floats up and down, for driving rotation mill
The transmission main shaft that disk is rotated and is fixedly and coaxially connected with motor output end, transmission main shaft is coaxially arranged with socket tube, kibbling mill
Socket tube in structure is socketed on the top of transmission main shaft and the two constitutes spline connection cooperation, and the socket tube can be along out
Transmission main shaft slides up and down, and refines the socket tube in mechanism and is socketed on transmission main shaft along its axial medium position and the two structure
Cooperation is connected at spline and the socket tube can be slided up and down along transmission main shaft;
The regulating mechanism includes that circle of the coaxial pivot bush unit outside transmission main shaft pushes plate, pushes plate and is located at refiner
The lower section of structure, the external activity of transmission main shaft, which is socketed with the first support spring and the first support spring and is located at, pushes plate and refiner
Between fixed frame in structure, first support spring one end contradicts simultaneously with the fixed frame pushed in plate conflict, the other end and grinding machine structure
And first support spring elastic force always by push plate be directed toward grinding machine structure in fixed frame, pivot bush unit is gone back in the outside of transmission main shaft
There is the second support spring and the second support spring is located between the fixed frame in the fixed frame in fine grinding mechanism and corase grinding mechanism, the
In two support spring one end and fine grinding mechanism fixed frame is inconsistent, the fixed frame in the other end and corase grinding mechanism is inconsistent and
The elastic force of second support spring is directed toward the fixed frame in corase grinding mechanism, the first support spring by the fixed frame in fine grinding mechanism always
It is equal with the equal length of the second support spring, coefficient of elasticity.
Further optimize or improve as this programme.
The regulating mechanism further includes being fixedly connected with mounting rack and circle of the coaxial pivot bush unit outside transmission main shaft
Cylindricality casing two, casing two, which is located at, pushes the lower section of plate, is fixedly installed on the periphery of casing two and extends to straight up
Guide rod, guide rod setting is arranged there are four and along two place circumferencial direction array of casing, is pushed sleeve-board and is connected to guide rod simultaneously
And the two constitutes slide-and-guide cooperation along the vertical direction, the outer, coaxial turning set of the transmission main shaft be equipped with hollow screw rod and
Hollow screw rod can be slided up and down along transmission main shaft, and hollow screw rod is fixedly connected with the lower end surface for pushing plate, under hollow screw rod
End activity pass through casing two extend to inside it, rotated coaxially in the casing two be provided be socketed on outside hollow screw rod from
Dynamic adjustment gear, driven adjustment gear are threadedly coupled cooperation with hollow screw rod composition, and rotation is provided with axial parallel in casing two
In the active adjustment gear that it is radially arranged, active adjustment gear is bevel gear with driven adjustment gear and the two is mutually nibbled
It closes, rotation is provided with radially and the adjusting rod for the arrangement that extends outwardly, adjusting rod one end and driven tune on the casing two
Gear is fixedly and coaxially connected section, the other end is coaxially fixedly installed handwheel.
Further optimize or improve as this programme.
The discharge component includes being socketed on the hopper being fixedly connected outside regulating mechanism and with mounting rack, discharge
Bucket is arranged to the ring structure coaxially arranged with transmission main shaft and opening is arranged straight up, the opening fixed setting of hopper
There is the annular plugging plate for constituting with it and being tightly connected cooperation, refines and be provided between the bottom and plugging plate of the milling case in mechanism
For connecting the blanking channel two for connecting the two, there are four and along circumferencial direction arrays where plugging plate for the setting of blanking channel two
The lower end surface of arrangement, the hopper is in tilted layout and inclined angle is greater than 30 degree less than 60 degree, and hopper is along it
The lower end of inclined direction is provided with the discharging channel of the two opening arrangement, the input terminal of discharging channel and the inclined lower end of hopper
Connection is connected, output end is directed toward emission point.
The beneficial effect of the present invention compared with prior art is that clever structure, principle are simple, it is convenient, applicable to operate with
The range of cereal is wide, can cereal be roughly ground and be refined simultaneously, and the granularity of cereal milling is adjustable.
Detailed description of the invention
Fig. 1 is overall structure diagram of the invention.
Fig. 2 is the installation diagram of feed pieces.
Fig. 3 is the partial structural diagram of feed pieces.
Fig. 4 is the partial structural diagram of feed pieces.
Fig. 5 is the partial structural diagram of feed pieces.
Fig. 6 is the partial sectional view of feed pieces.
Fig. 7 is the cooperation figure of planetary reducer and auger.
Fig. 8 is the cooperation figure of planetary reducer and auger.
Fig. 9 is the structural schematic diagram of agitating shaft.
Figure 10 is the cooperation figure of grinding mechanism and feed pieces.
Figure 11 is the structural schematic diagram for roughly grinding mechanism.
Figure 12 is the partial structural diagram for roughly grinding mechanism.
Figure 13 is the schematic diagram of internal structure for roughly grinding mechanism.
Figure 14 is the schematic diagram of internal structure for roughly grinding mechanism.
Figure 15 is the structural schematic diagram for roughly grinding region M.
Figure 16 is the partial structural diagram for roughly grinding mechanism.
Figure 17 is the cooperation figure for refining mechanism and transmission main shaft.
Figure 18 is the cooperation figure for refining mechanism and roughly grinding mechanism.
Figure 19 is the cooperation figure for roughly grinding mechanism and planetary reducer.
Figure 20 is the partial structural diagram of floating regulating mechanism.
Figure 21 is the partial structural diagram of floating regulating mechanism.
Figure 22 is the schematic diagram of internal structure of floating regulating mechanism.
Figure 23 is the cooperation figure for refining mechanism and discharge component.
Figure 24 is the structural schematic diagram of discharge component.
It is denoted as in figure:
100, mounting rack;
200, feed pieces;201, material storage tube;202, casing one;203, storing area;204, loading hopper;205, transport tube;
206, end cap;207, blanking tube;208, auger;220, planetary reducer;221, drive bevel gear;222, from mantle tooth
Wheel;230, agitating shaft;231, stirring rod;
300, grinding mechanism;310, mechanism is roughly ground;311a, milling case;311b, case lid;311c, retainer plate;312, annular mouth;
313, annular slab;314, rotary grinding disk;315, frictional groove one;316, frictional groove two;317, baffle;318, blanking gap;319a,
Fixed frame;319b, socket tube;320, mechanism is refined;330, regulating mechanism;331, plate is pushed;332, the first support spring;333,
Second support spring;334, hollow screw rod;335, casing two;336, guide rod;337a, driven adjustment gear;337b, it actively adjusts
Save gear;338, adjusting rod;339, handwheel;340, transmission main shaft;
400, discharge component;401, hopper;402, plugging plate;403, discharging channel;
500, motor.
Specific embodiment
A kind of bilayer multichannel cereal mill pulverizer comprising mounting rack 100, be fixedly installed on mounting rack 100 and
Feed pieces 200, grinding mechanism 300, discharge component 400 and the motor 500 successively from top to bottom arranged, grinding mechanism
300 include for carrying out the corase grinding mechanism 310 of corase grinding processing to cereal, for the fine grinding mechanism to cereal progress fine grinding
320 and for adjust corase grinding mechanism 310 refine mechanism 320 be milled granularity regulating mechanism 330, the input of feed pieces 300
End opening is arranged upwards, output end connect connection, the output end of corase grinding mechanism 310 and fine grinding with the input terminal of corase grinding mechanism 310
The input terminal of mechanism 320, which connects, to be connected, and the output end of fine grinding mechanism 320 connect connection, discharge with the input terminal of discharge component 400
The output end of component 400 is directed toward emission point, and motor 500 provides motive power for feed pieces 200 and grinding mechanism 300.
During cereal milling, dry cereal is poured onto inside it by user by the input terminal of feed pieces 200, into
Cereal is delivered in corase grinding mechanism 310 by material component 200, and corase grinding mechanism 310 rotates and carries out corase grinding processing to cereal, makes paddy
Object is changed into the biggish powder of granularity, and then, the cereal after corase grinding processing will be fallen by corase grinding mechanism 310 to fine grinding mechanism
In 320, fine grinding mechanism 320 rotates and carries out fine grinding to cereal, so that cereal is changed into the lesser powder of granularity, most
Afterwards, the cereal after fine grinding will be by falling into fine grinding mechanism 320 in discharge component 400 and by the defeated of discharge component 400
Outlet is expelled to emission point.
The feed pieces 200 include the storing arranged straight up that is fixedly installed on mounting rack 100 and is open
Cylinder 201, the medium position at 201 bottoms of material storage tube are fixedly installed hollow casing 1, casing 1 and material storage tube 201 it
Between spacing arrange and constitute storing area 203 between the two, the opening of material storage tube 201, which is coaxially fixedly installed, to be connected thereto
The taper loading hopper 204 of connection, the big opening of loading hopper 204 are located at the top of small opening, for the ease of by storing area 203
Interior cereal is expelled in corase grinding mechanism 310, is fixedly installed on the periphery of the material storage tube 201 and is connect connection with its inside
Transport tube 205, the radial direction for being axially parallel to material storage tube 201 and transport tube 205 of transport tube 205 are close to material storage tube 201
Bottom arrangement, transport tube 205 is provided with away from 201 one end of material storage tube for the end cap 206 to its sealing blocking, defeated in order to be promoted
The transfer efficiency of cylinder 205 is sent, the setting of transport tube 205 is arranged there are four and along 201 place circumferencial direction array of material storage tube,
It is fixedly installed on the periphery of transport tube 205 and connect the blanking tube 207 arranged straight down of connecting and be open with its inside, under
Barrel 207 is arranged by proximal cover 206 and its output end with mechanism 310 is roughly ground connect connection, in order to will be in storing area 203
Cereal be delivered in blanking tube 207, be movably set between the end cap 206 and casing 1 and the coaxial cloth of transport tube 205
The auger 208 set, auger 208 are adapted with transport tube 205,208 one end of auger and the rotation connection of end cap 206 cooperation, the other end
Cooperation is rotatablely connected with casing 1 and the end is driving end, by the rotation of auger 208, will be located in storing area 203
Cereal is delivered in blanking tube 207, and is fallen in corase grinding mechanism 310 under cereal self gravitation effect by blanking tube 207.
In order to drive four augers 208 to rotate synchronously, the feed pieces 200 include being provided with material storage tube 201
Lower section and the planetary reducer 220 being firmly connected with it, the input shaft, output shaft in planetary reducer 220 are equal
Coaxially arranged with material storage tube 201, the input terminal of planetary reducer 220 is used to receive the driving power of motor 500, planet
The input shaft of gear reduction unit 220 is located at the lower section of its output shaft, and the output shaft activity of planetary reducer 220 passes through storing
The coaxial fixing sleeve in inside and the end that cylinder 201, casing 1 extend to casing 1 is equipped with drive bevel gear 221, auger
208 driving end extends in casing 1 and the coaxial fixing sleeve in the end is equipped with driven wheel of differential 222, drive bevel gear 221
It is meshed with driven wheel of differential 222, drives auger 208 rotate and convey cereal by planetary reducer 220
To corase grinding mechanism 310.
It is blocked during being fallen into material storage tube 201 in order to avoid cereal by loading hopper 204, the loading hopper
Agitating shaft 230 is coaxially arranged in 204, agitating shaft 230 extends upwardly to the big opening part of loading hopper 204, extends downwardly work
It is dynamic to be fixedly and coaxially connected across casing 1 and with drive bevel gear 221, stirring is provided on the periphery of agitating shaft 230
Bar group, the setting of stirring rod group arrange that stirring rod group includes being fixedly installed in stir there are five and along the axial array of agitating shaft 230
The stirring rod 231 on 230 periphery of axis is mixed, the radial direction axially along agitating shaft 230 of stirring rod 231 arranges that stirring rod 231 is arranged
It is arranged there are four and along 230 place circumferencial direction array of agitating shaft, by the rotation of agitating shaft 230, avoids cereal by feeding
Funnel 204 blocks during falling into material storage tube 201.
During the work time, user will wait the cereal of milling to be poured onto loading hopper 204 to feed pieces 200, cereal
It is fallen under self gravitation effect to storing area 203, in the process, the output shaft of planetary reducer 220 will drive
Drive bevel gear 221 rotates, and drive bevel gear 221 will drive driven wheel of differential 222 to rotate, and driven wheel of differential 222 is by band
Dynamic auger 208 is rotated, and the cereal being located in storing area 203 is delivered in blanking tube 207 by auger 208, and cereal is at itself
Under gravity by blanking tube 207 fall into corase grinding mechanism 310 in carry out milling processing.
In order to which to falling into the corase grinding processing in corase grinding mechanism 310, the corase grinding mechanism 310 includes that opening is vertical
The annular milling case 311a coaxially arranged upwards and with material storage tube 201, the opening of milling case 311a is provided with matched
Case lid 311b, case lid 311b and be milled case 311a inner headed face between spacing arrangement and the two form with milling case 311a
The isodiametric annular mouth 312 of inner headed face, coaxial fixing sleeve is equipped with retainer plate 311c and fixation on the periphery of case 311a that is milled
Circle 311c is fixedly connected with mounting rack 100, and the annular slab being provided with for being blocked to it is rotated coaxially in annular mouth 312
313, annular slab 313 fits with the inner headed face of milling case 311a, the inner headed face of case lid 311b and annular slab 313 can be along perpendicular
Histogram is to floating up and down, and coaxial fixing sleeve is equipped with annular rotary grinding disk 314 on the periphery of annular slab 313, rotary grinding disk 314 by
Annular mouth 312 extends in milling case 311a and the diameter of rotary grinding disk 314 is less than the diameter of milling case 311a periphery, turns
Movable grinding disc 314 can float up and down along annular mouth 312, and milling area M is constituted between rotary grinding disk 314 and case lid 311b, in order to
Convenient for feed pieces 200 by cereal be delivered to milling area M in, the blanking tube 207 be located at the surface of case lid 311b and under
The output end of barrel 207 connect connection with milling area M, contradicts the lower end that cereal is pressed in case lid 311b by rotary grinding disk 314
Face, the then rotation of rotary grinding disk 314 are milled to cereal.
Specifically, in order to promote the efficiency of cereal milling, the upper surface of the rotary grinding disk 314 offers frictional groove one
315, frictional groove 1 is through to its inner headed face by the periphery of rotary grinding disk 314, if frictional groove 1 be provided with dry doubling its
It is arranged along 314 place circumferencial direction array of rotary grinding disk, the length direction offset rotary grinding disk 314 radial three of frictional groove 1
Ten degree, the lower end surface of the case lid 311b offers frictional groove 2 316, and frictional groove 2 316 is provided with several and along case lid
Circumferencial direction array arrangement where 311b, frictional groove 2 316 is corresponding with about one 315 frictional groove, by frictional groove 1 with rub
The mutual cooperation for wiping slot 2 316 is sufficiently ground to falling into the cereal in milling area M.
More specifically, it is slid in order to avoid falling into the cereal in milling area M as the rotation of rotary grinding disk 314 is centrifuged
Be milled area M out, and the lower end surface of the case lid 311b is coaxially fixedly installed the ring baffle with 314 equal diameter of rotary grinding disk arrangement
317, the blanking gap 318 slid for powdered cereal is formd between baffle 317 and rotary grinding disk 314, takes this programme
Meaning is that baffle 317 prevents the cereal centrifugation without being sufficiently milled from sliding.
More specifically, in order to driving rotary grinding disk 314 around own axis, the inner circle of the annular slab 313
It is provided with fixed frame 319a on face, the socket tube 319b coaxially arranged with annular slab 313 is fixedly installed on fixed frame 319a, row
The input shaft of star gear reduction unit 220 is plugged in socket tube 319b and the two constitutes spline connection cooperation, and socket tube
319b can be slided up and down along the input shaft of planetary reducer 220, drive rotary grinding disk 314 by driving socket tube 319b
Around own axis, and by power transmission to feed pieces 200.
Structure, shape, size, the connection relationship of the fine grinding mechanism 320 and corase grinding mechanism 310 are completely the same, and
It refines the distance between rotary grinding disk 314 and case lid 311b in mechanism 320 and is less than rotary grinding disk 314 and case in corase grinding mechanism 320
The distance between 311b is covered, roughly grinds and is arranged between the area M that is milled in the bottom and fine grinding mechanism 320 for the case 311b that is milled in mechanism 310
Have for connecting the blanking channel one for connecting the two, there are four and along circumferencial directions where end cap 311b for the setting of blanking channel one
Array arrangement, fine grinding mechanism 320 realize the essence to cereal by narrowing the distance between its rotary grinding disk 314 and case lid 311b
Mill processing.
During cereal milling, cereal is expelled to the mill in corase grinding mechanism 310 by blanking tube 207 by feed pieces 200
In powder area M, motor 500 will drive socket tube 319b to rotate, and socket tube 319b will drive rotary grinding disk 314 to rotate synchronously
And with case lid 311b mutual cooperation corase grinding powdering is carried out to cereal, roughly grind powdering cereal will by blanking gap 318 from
The heart is fallen into the bottom of milling case 311b, and then, the cereal for roughly grinding powdering is fallen by blanking channel one to fine grinding mechanism 320
In milling area M in, by fine grinding mechanism 320 rotary grinding disk 314 and case lid 311b it is carried out further refine be milled, paddy
The granularity of object further becomes smaller, and the cereal for making the cereal for roughly grinding powdering be changed into fine grinding powdering then refines powdering
Cereal is fallen into the bottom of the milling case 311b into fine grinding mechanism 320 by blanking gap 318, completes the milling of cereal.
It can be seen from the above, if desired making to roughly grind mechanism 310 or refine mechanism 320 to complete to be milled to cereal, need to drive
Socket tube 319b is rotated, if can be milled to different types of cereal, needs to adjust rotary grinding disk 314 and case lid
The distance between 311b, for this purpose, the wear device 300 further includes the adjusting to float up and down for adjusting rotary grinding disk 314
Mechanism 330, the transmission main shaft 340 for driving rotary grinding disk 314 to rotate and being fixedly and coaxially connected with 500 output end of motor,
Transmission main shaft 340 and socket tube 319b are coaxially arranged, and the socket tube 319b roughly ground in mechanism 310 is socketed on transmission main shaft 340
Top and the two constitute spline connection cooperation, and socket tube 319b can be slided up and down along transmission main shaft 340 out, fine grinding
Socket tube 319b in mechanism 310 is socketed on transmission main shaft 340 along its axial medium position and the two constitutes spline connection
Cooperation, and socket tube 319b can be slided up and down along transmission main shaft 340, drive rotary grinding disk 314 by transmission main shaft 340
Rotation, takes the meaning of this programme to be, under the premise of guaranteeing that rotary grinding disk 314 is driven to rotate, does not influence adjusting machine
Float up and down adjusting of the structure 330 to rotary grinding disk 314.
Specifically, in order to effectively be supported to rotary grinding disk 314, while can be to the upper and lower of rotary grinding disk 314
Floating is adjusted, and the regulating mechanism 330 includes that circle of the coaxial pivot bush unit outside transmission main shaft 340 pushes plate
331, the lower section that plate 331 is located at fine grinding mechanism 320 is pushed, the external activity of transmission main shaft 340 is socketed with the first support spring 332
And first support spring 332 be located at push plate 331 and refine mechanism 320 in fixed frame 319a between, the first support spring 332
One end with push that plate 331 contradicts, the fixed frame 319a in the other end and grinding machine structure 320 is contradicted and the first support spring 332
The fixed frame 319a that elastic force is directed toward in grinding machine structure 320 by pushing plate 331 always, the outside of transmission main shaft 340 is gone back movable sleeve and is connected to
Second support spring 333 and the second support spring 333 are located in the fixed frame 319a in fine grinding mechanism 320 and corase grinding mechanism 310
Fixed frame 319a between, in 333 one end of the second support spring and fine grinding mechanism 320 fixed frame 319a is inconsistent, the other end
Inconsistent and the second support spring 333 elastic force is always by fine grinding mechanism 320 with the fixed frame 319a in corase grinding mechanism 310
Fixed frame 319a be directed toward the fixed frame 319a in corase grinding mechanism 310, the first support spring 332 and the second support spring 333
Equal length, coefficient of elasticity are equal, push floating up and down for plate 331 by adjusting, adjust floating up and down for rotary grinding disk 314.
More specifically, push floating up and down for plate 331 in order to drive, the regulating mechanism 330 further include with
Mounting rack 100 is fixedly connected and coaxial cylindrical shell two 335 of the pivot bush unit outside transmission main shaft 340, and casing 2 335
In the lower section for pushing plate 331, it is fixedly installed the guide rod 336 extended to straight up on the periphery of casing 2 335, is oriented to
The setting of bar 336 is arranged there are four and along 2 335 place circumferencial direction array of casing, is pushed plate 331 and is socketed on guide rod 336 simultaneously
And the two constitutes slide-and-guide cooperation along the vertical direction, the outer, coaxial turning set of the transmission main shaft 340 is equipped with hollow screw rod
334 and hollow screw rod 334 can be slided up and down along transmission main shaft 340, hollow screw rod 334 and the lower end surface for pushing plate 331 are solid
Fixed connection, the lower end activity of hollow screw rod 334 pass through casing 2 335 and extend to inside it, rotate coaxially in the casing 2 335
It is provided with the driven adjustment gear 337a being socketed on outside hollow screw rod 334, driven adjustment gear 337a and hollow 334 structure of screw rod
Cooperate at being threadedly coupled, rotation, which is provided with, in casing 2 335 is axially parallel to its active adjustment gear 337b radially arranged, main
Dynamic adjustment gear 337a and driven adjustment gear 337b is bevel gear and the two is intermeshed, and is turned on the casing 2 335
It is dynamic to be provided with radially and the adjusting rod 338 for the arrangement that extends outwardly, 338 one end of adjusting rod and driven adjustment gear 337a are same
Axis is fixedly connected, the other end is coaxially fixedly installed handwheel 339, by rotate handwheel 339, adjust push plate 331 on float downward
It is dynamic.
Regulating mechanism 330 during the work time, if desired reduces the distance between rotary grinding disk 314 and case lid 319b, uses
Family rotates handwheel 339 and rotates forward, and handwheel 339 will drive adjusting rod 338 to rotate, and adjusting rod 338 will drive active adjustment gear 337b
Rotation, active adjustment gear 337b will drive driven adjustment gear 337a to rotate, and the rotation of driven adjustment gear 337a will promote
Hollow screw rod 334 slides straight up, pushes bar 331 and will synchronize and moves upwards, and pushing plate 331 will be to the first support spring 332
It is compressed and the rotary grinding disk 314 for making to refine in mechanism 320 floats upwards, the rotary grinding disk 314 refined in mechanism 320 will
Second support spring 333 is compressed and makes to roughly grind the rotary grinding disk 314 in mechanism 320 and is floated upwards, and refiner
Rotary grinding disk 314 in structure 320 is equidistant with what the rotary grinding disk 314 in corase grinding mechanism 310 floated upwards, is if desired increased
The distance between rotary grinding disk 314 and case lid 319b, user rotate handwheel 339 invert, during with reduce rotary grinding disk 314
On the contrary, not repeating during distance between case lid 319b.
It is discharged for the ease of the cereal of the fine grinding powdering for the bottom case 311a that is milled in mechanism 320 will be refined, the row
Material component 400 includes the hopper 401 for being socketed on 330 outside of regulating mechanism and being fixedly connected with mounting rack 100, hopper
401 are arranged to the ring structure coaxially arranged with transmission main shaft 340 and are open arrange straight up, the opening of hopper 401
It is fixedly installed the annular plugging plate 402 for constituting with it and being tightly connected cooperation, refines the bottom of the milling case 311a in mechanism 320
It is provided between plugging plate 402 for connecting the blanking channel two for connecting the two, there are four the settings of blanking channel two and edge
402 place circumferencial direction array of plugging plate arrangement, for the ease of the cereal of the fine grinding powdering in hopper 401 is discharged, institute
The lower end surface for stating hopper 401 is in tilted layout and inclined angle is greater than 30 degree less than 60 degree, and hopper 401 inclines along it
The lower end of tilted direction is provided with the discharging channel 403 of the two opening arrangement, and input terminal and the hopper 401 of discharging channel 403 incline
Oblique lower end connection is connected, output end is directed toward emission point.
Discharge component 400 during the work time, refines the cereal of the fine grinding powdering for the bottom case 311a that is milled in mechanism 320
By falling into blanking channel two to hopper 401, under self gravitation effect, the cereal for refining powdering will be along hopper
401 slide towards its inclined lower end, are finally expelled to emission point by discharging channel 403.
Claims (10)
1. a kind of bilayer multichannel cereal mill pulverizer, it is characterised in that: it includes mounting rack, is fixedly installed on mounting rack
And feed pieces, grinding mechanism, discharge component and the motor successively from top to bottom arranged, grinding mechanism includes for paddy
Object carries out the corase grinding mechanism of corase grinding processing, the fine grinding mechanism for carrying out fine grinding to cereal and for adjusting corase grinding mechanism
The regulating mechanism of mechanism milling granularity is refined, the input terminal opening upwards arrangement of feed pieces, output end are defeated with corase grinding mechanism
Enter end connection to connect, the output end for roughly grinding mechanism connect connection with the input terminal of fine grinding mechanism, refines output end and the row of mechanism
Expect that the input terminal of component connects to connect, the output end of discharge component is directed toward emission point, and motor is for feed pieces and grinds
Device provides motive power.
2. a kind of double-deck multichannel cereal mill pulverizer according to claim 1, it is characterised in that: the feeder
Part includes the material storage tube arranged straight up that is fixedly installed on mounting rack and is open, and the medium position at material storage tube cylinder bottom is fixed
It is provided with hollow casing one, spacing arranges and constitutes storing area, material storage tube between the two between casing one and material storage tube
Opening be coaxially fixedly installed the taper loading hopper for being connected thereto connection, the big opening of loading hopper is located at small opening
Top, be fixedly installed on the periphery of the material storage tube and its it is internal connect the transport tube connected, transport tube it is axial parallel
In material storage tube radial direction and transport tube close to material storage tube bottom arrange, transport tube away from material storage tube one end be provided with for pair
The end cap of its sealing blocking, there are four and along circumferencial direction array arrangement, transport tubes where material storage tube for the transport tube setting
Periphery on be fixedly installed and its internal connect is connected and blanking tube that opening is arranged straight down, blanking tube is by proximal cover
Arrange and its output end with roughly grind mechanism connect connection, be movably set between the end cap and casing one coaxial with transport tube
The auger of arrangement, auger are adapted with transport tube, and auger one end and end cap rotation connection cooperation, the other end and the rotation of casing one connect
Cooperation and the end are connect as driving end;
The feed pieces include being provided with the planetary reducer below material storage tube and being firmly connected with it, planet tooth
Input shaft, output shaft in wheel decelerator is coaxially arranged with material storage tube, and the input terminal of planetary reducer is for receiving electricity
The driving power of motivation, the input shaft of planetary reducer are located at the lower section of its output shaft, the output of planetary reducer
The coaxial fixing sleeve in inside and the end that axis activity passes through material storage tube, casing one extends to casing one is twisted equipped with drive bevel gear
The driving end of dragon extends in casing one and the coaxial fixing sleeve in the end is equipped with driven wheel of differential, drive bevel gear with from mantle tooth
Wheel is meshed.
3. a kind of double-deck multichannel cereal mill pulverizer according to claim 2, it is characterised in that: the loading hopper
It is inside coaxially arranged with agitating shaft, agitating shaft extends upwardly to the big opening part of loading hopper, extends downwardly activity across casing one
And it is fixedly and coaxially connected with drive bevel gear, stirring rod group is provided on the periphery of agitating shaft, stirring rod group is provided with five
A and axial array arrangement along agitating shaft, stirring rod group includes the stirring rod being fixedly installed on agitating shaft periphery, is stirred
The radial direction axially along agitating shaft for mixing bar arranges that there are four and along circumferencial direction array cloth where agitating shaft for stirring rod setting
It sets.
4. a kind of double-deck multichannel cereal mill pulverizer according to claim 1, it is characterised in that: the kibbling mill
Structure includes the opening annular milling case coaxially arranged straight up and with material storage tube, and the opening for the case that is milled is provided with and it
The case lid matched, spacing arrangement and the two form isodiametric with milling case inner headed face between case lid and the inner headed face for the case that is milled
Annular mouth, coaxial fixing sleeve is equipped with retainer plate on the periphery for the case that is milled and retainer plate is fixedly connected with mounting rack, annular mouth
On rotate coaxially the annular slab being provided with for being blocked to it, the inner headed face of the inner headed face of annular slab and milling case, case lid
It fits and annular slab can float up and down along the vertical direction, coaxial fixing sleeve is equipped with annular rotation on the periphery of annular slab
Mill, rotary grinding disk is extended in milling case by annular mouth and the diameter of rotary grinding disk is less than the diameter of milling case periphery,
Rotary grinding disk can float up and down along annular mouth, and milling area M is constituted between rotary grinding disk and case lid, and the blanking tube is located at case
The output end of the surface of lid and blanking tube connect connection with milling area M, and the lower end surface of the case lid is coaxially fixedly installed
With the ring baffle of rotary grinding disk equal diameter arrangement, the blanking slid for powdered cereal is formd between baffle and rotary grinding disk
Gap;
The upper surface of the rotary grinding disk offers frictional groove one, and frictional groove one is through to its inner circle by the periphery of rotary grinding disk
Face, if frictional groove one is provided with dry doubling, it is inclined along circumferencial direction array arrangement, the length direction of frictional groove one where rotary grinding disk
It is 30 degree radial to transfer movable grinding disc, the lower end surface of the case lid offers frictional groove two, and frictional groove two is provided with several and edge
Circumferencial direction array arrangement, frictional groove two are corresponding with about one frictional groove where case lid;
It is provided with fixed frame on the inner headed face of the annular slab, the socket coaxially arranged with annular slab is fixedly installed on fixed frame
Cylinder, the input shaft of planetary reducer is plugged in socket tube and the two constitutes spline connection cooperation, and socket tube can
It is slided up and down along the input shaft of planetary reducer.
5. a kind of double-deck multichannel cereal mill pulverizer according to claim 1 or 4, it is characterised in that: the essence
Grinding machine structure and structure, shape, size, the connection relationship of corase grinding mechanism are completely the same, and refine mechanism transfer movable grinding disc and case
The distance between lid is less than corase grinding the distance between mechanism transfer movable grinding disc and case lid, roughly grinds bottom and the essence of the case that is milled in mechanism
It is provided between milling area M in grinding machine structure for connecting the blanking channel one for connecting the two, there are four simultaneously for the setting of blanking channel one
And along circumferencial direction array arrangement where end cap.
6. a kind of double-deck multichannel cereal mill pulverizer according to claim 1, it is characterised in that: the abrasion dress
Set further includes for adjusting regulating mechanism that rotary grinding disk floats up and down, for driving rotary grinding disk to rotate and and motor output
The transmission main shaft being fixedly and coaxially connected is held, transmission main shaft is coaxially arranged with socket tube, and the socket tube roughly ground in mechanism is socketed on biography
It moves the top of main shaft and the two constitutes spline connection cooperation, and the socket tube can be slided up and down along transmission main shaft out, essence
Socket tube in grinding machine structure is socketed on transmission main shaft along its axial medium position and the two constitute spline connection cooperation and
The socket tube can be slided up and down along transmission main shaft.
7. a kind of double-deck multichannel cereal mill pulverizer according to claim 6, it is characterised in that: the adjusting machine
Structure includes that circle of the coaxial pivot bush unit outside transmission main shaft pushes plate, pushes the lower section that plate is located at fine grinding mechanism, transmission master
The external activity of axis be socketed with the first support spring and the first support spring be located at push plate and refine fixed frame in mechanism it
Between, first support spring one end is contradicted with the fixed frame pushed in plate conflict, the other end and grinding machine structure and the first support spring
Elastic force always by push plate be directed toward grinding machine structure in fixed frame, the outside of transmission main shaft goes back movable sleeve and is connected to the second support spring
And second support spring be located at fine grinding mechanism in fixed frame and corase grinding mechanism in fixed frame between, second support spring one end
With in fine grinding mechanism fixed frame is inconsistent, the fixed frame in the other end and corase grinding mechanism is inconsistent and the second support spring
Elastic force is directed toward the fixed frame in corase grinding mechanism, the first support spring and the second support spring by the fixed frame in fine grinding mechanism always
Equal length, coefficient of elasticity it is equal.
8. a kind of double-deck multichannel cereal mill pulverizer according to claim 7, it is characterised in that: the adjusting machine
Structure further includes being fixedly connected with mounting rack and cylindrical shell two of the coaxial pivot bush unit outside transmission main shaft, casing two are located at
The lower section of plate is pushed, the guide rod extended to straight up is fixedly installed on the periphery of casing two, guide rod is provided with four
It is a and arranged along two place circumferencial direction array of casing, push that sleeve-board is connected to guide rod and the two constitutes cunning along the vertical direction
The outer, coaxial turning set of action-oriented cooperation, the transmission main shaft is equipped with hollow screw rod and hollow screw rod can be along transmission main shaft
It slides up and down, hollow screw rod is fixedly connected with the lower end surface for pushing plate, and the lower end activity of hollow screw rod passes through casing two and extends to
Inside it.
9. a kind of double-deck multichannel cereal mill pulverizer according to claim 8, it is characterised in that: in the casing two
The driven adjustment gear for being provided with and being socketed on outside hollow screw rod is rotated coaxially, driven adjustment gear and hollow screw rod constitute screw thread
Connection cooperation, rotation, which is provided with, in casing two is axially parallel to its active adjustment gear radially arranged, active adjustment gear with
Driven adjustment gear is that bevel gear and the two are intermeshed, and rotation is provided with radially and outward on the casing two
The adjusting rod being disposed to extend, adjusting rod one end with driven adjustment gear is fixedly and coaxially connected, the other end is coaxially fixedly installed hand
Wheel.
10. a kind of double-deck multichannel cereal mill pulverizer according to claim 1, it is characterised in that: the discharge
Component includes being socketed on the hopper being fixedly connected outside regulating mechanism and with mounting rack, and hopper is arranged to and transmission main shaft
Coaxially arranged ring structure and opening arranges that the opening of hopper, which is fixedly installed, constitutes sealed connection with it straight up
The annular plugging plate of cooperation refines to be provided between the bottom and plugging plate of the milling case in mechanism and connects the two for connecting
Blanking channel two, there are four the settings of blanking channel two and arranges along circumferencial direction array where plugging plate, the hopper
Lower end surface is in tilted layout and inclined angle is greater than 30 degree less than 60 degree, and hopper is arranged along the lower end of its inclined direction
There is the discharging channel of the two opening arrangement, the input terminal of discharging channel connect connection with the inclined lower end of hopper, output end refers to
To emission point.
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Cited By (7)
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CN111530603A (en) * | 2020-05-12 | 2020-08-14 | 王春森 | A crushing equipment structure for coal mining engineering |
CN112844619A (en) * | 2021-01-27 | 2021-05-28 | 濉溪县鲁王制粉有限责任公司 | Auxiliary device is used in unloading of flour processing factory |
CN113351308A (en) * | 2021-07-26 | 2021-09-07 | 公安县楚粉郁香食品科技有限公司 | Device and method for processing rice and grain powder by dry constant-temperature steel mill |
CN114453080A (en) * | 2022-01-24 | 2022-05-10 | 杭州登元科技有限公司 | Magnetic suspension coal mill |
CN117144705A (en) * | 2023-10-27 | 2023-12-01 | 德州市纤维检验所 | Cellulose fiber manufacturing equipment |
CN117885212A (en) * | 2024-03-18 | 2024-04-16 | 侯马市永鑫商砼股份有限公司 | Grinding and mixing equipment for preparing cement by using limestone and preparation process |
CN118341518A (en) * | 2024-06-18 | 2024-07-16 | 淄博法彼森工贸有限公司 | Grinding device is smashed with raw materials to aluminium oxide production |
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Cited By (9)
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CN111530603A (en) * | 2020-05-12 | 2020-08-14 | 王春森 | A crushing equipment structure for coal mining engineering |
CN112844619A (en) * | 2021-01-27 | 2021-05-28 | 濉溪县鲁王制粉有限责任公司 | Auxiliary device is used in unloading of flour processing factory |
CN112844619B (en) * | 2021-01-27 | 2023-09-26 | 濉溪县鲁王制粉有限责任公司 | Auxiliary device for blanking of flour processing plant |
CN113351308A (en) * | 2021-07-26 | 2021-09-07 | 公安县楚粉郁香食品科技有限公司 | Device and method for processing rice and grain powder by dry constant-temperature steel mill |
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CN117144705B (en) * | 2023-10-27 | 2024-02-23 | 德州市纤维检验所 | Cellulose fiber manufacturing equipment |
CN117885212A (en) * | 2024-03-18 | 2024-04-16 | 侯马市永鑫商砼股份有限公司 | Grinding and mixing equipment for preparing cement by using limestone and preparation process |
CN118341518A (en) * | 2024-06-18 | 2024-07-16 | 淄博法彼森工贸有限公司 | Grinding device is smashed with raw materials to aluminium oxide production |
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