CN109550575A - A kind of probiotics micronizer - Google Patents

A kind of probiotics micronizer Download PDF

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Publication number
CN109550575A
CN109550575A CN201910040038.4A CN201910040038A CN109550575A CN 109550575 A CN109550575 A CN 109550575A CN 201910040038 A CN201910040038 A CN 201910040038A CN 109550575 A CN109550575 A CN 109550575A
Authority
CN
China
Prior art keywords
screen tray
sub
casing
shell
ring
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
CN201910040038.4A
Other languages
Chinese (zh)
Inventor
陈建伟
戴健圣
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shandong Junkang Biotechnology Co Ltd
Original Assignee
Shandong Junkang Biotechnology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shandong Junkang Biotechnology Co Ltd filed Critical Shandong Junkang Biotechnology Co Ltd
Priority to CN201910040038.4A priority Critical patent/CN109550575A/en
Publication of CN109550575A publication Critical patent/CN109550575A/en
Withdrawn legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C19/00Other disintegrating devices or methods
    • B02C19/0056Other disintegrating devices or methods specially adapted for specific materials not otherwise provided for
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C21/00Disintegrating plant with or without drying of the material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C23/00Auxiliary methods or auxiliary devices or accessories specially adapted for crushing or disintegrating not provided for in preceding groups or not specially adapted to apparatus covered by a single preceding group
    • B02C23/02Feeding devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C23/00Auxiliary methods or auxiliary devices or accessories specially adapted for crushing or disintegrating not provided for in preceding groups or not specially adapted to apparatus covered by a single preceding group
    • B02C23/08Separating or sorting of material, associated with crushing or disintegrating
    • B02C23/14Separating or sorting of material, associated with crushing or disintegrating with more than one separator
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07BSEPARATING SOLIDS FROM SOLIDS BY SIEVING, SCREENING, SIFTING OR BY USING GAS CURRENTS; SEPARATING BY OTHER DRY METHODS APPLICABLE TO BULK MATERIAL, e.g. LOOSE ARTICLES FIT TO BE HANDLED LIKE BULK MATERIAL
    • B07B1/00Sieving, screening, sifting, or sorting solid materials using networks, gratings, grids, or the like
    • B07B1/06Cone or disc shaped screens
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07BSEPARATING SOLIDS FROM SOLIDS BY SIEVING, SCREENING, SIFTING OR BY USING GAS CURRENTS; SEPARATING BY OTHER DRY METHODS APPLICABLE TO BULK MATERIAL, e.g. LOOSE ARTICLES FIT TO BE HANDLED LIKE BULK MATERIAL
    • B07B1/00Sieving, screening, sifting, or sorting solid materials using networks, gratings, grids, or the like
    • B07B1/46Constructional details of screens in general; Cleaning or heating of screens
    • B07B1/4609Constructional details of screens in general; Cleaning or heating of screens constructional details of screening surfaces or meshes

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Crushing And Pulverization Processes (AREA)

Abstract

The present invention relates to probiotics production equipment technologies, provide a kind of probiotics micronizer, including casing, multi-stage crushing device is equipped in casing, multi-stage crushing device includes hollow into sub-material axis, at least two-stage material distributing cone is equipped with into the inside of sub-material axis, it is corresponded on into sub-material axis and offers multiple sub-material mouths along its circumferential direction at the lower edge of the upper conical surface of material distributing cone, in addition to afterbody material distributing cone, transparent material-distributing hole is offered on every grade of material distributing cone, the aperture of every grade of material-distributing hole is respectively less than the material-distributing hole of upper level;Lower section on into sub-material axis positioned at every grade of material distributing cone, which rotates, is equipped with screen tray, offers transparent sieve pore on screen tray, and screen tray rotates under the driving of screen tray driving device, carries out crushing and screening to raw material.Probiotics micronizer provided by the invention can carry out quickly into sub-material feed particles, and quick crashing sieves step by step, not only improves crush efficiency, but also can ensure that powder quality.

Description

A kind of probiotics micronizer
Technical field
The present invention relates to probiotics production equipment technology more particularly to a kind of probiotics micronizers.
Background technique
Probiotic powder is the microorganism beneficial to human health, intestinal health can be maintained to balance, and mainly includes Bifidobacterium Class and lactobacillus class have enteron aisle health care, and enhancing is immune, the functions such as adjustment effect.
In the production process of probiotic powder, the manufacture raw material to probiotic powder is needed to crush, existing Ultramicro-powder Broken machine is mostly mechanical agitation type, and a large amount of heat is easy to produce in whipping process, is be easy to cause to the quality of raw material bad It influences, and crushing is not thorough, working efficiency is low.
Summary of the invention
The purpose of the present invention is to provide one kind to crush thoroughly, work effect to raw material centrifugal disintegrating screening step by step The high probiotics micronizer of rate.
The invention is realized in this way a kind of probiotics micronizer, including casing, the casing is interior to be equipped with multistage powder Crushing device, the multi-stage crushing device include hollow into sub-material axis, and the inside into sub-material axis is equipped at least two-stage sub-material Cone offers multiple sub-material mouths along its circumferential direction at the lower edge into the upper conical surface for corresponding to the material distributing cone on sub-material axis, removes Outside afterbody material distributing cone, transparent material-distributing hole, the hole of every grade of material-distributing hole are offered on every grade of material distributing cone Diameter is respectively less than the material-distributing hole of upper level;
Described rotate into the lower section for being located at every grade of material distributing cone on sub-material axis equipped with screen tray, the main body of the screen tray is in The conical structure of opening upwards offers transparent sieve pore, the sieve pore on every grade of screen tray on the screen tray Aperture is respectively less than the screen-aperture of screen tray described in upper level, and the screen tray rotates under the driving of screen tray driving device, to raw material Carry out crushing and screening.
As an improvement scheme, the main body compass screen surface of the screen tray is equipped with several crushing teeths, and the crushing teeth is presented Small lower big pyramidal structure.
As an improvement scheme, the casing includes the multistage shell set gradually from top to bottom, except be located at first Grade level-one shell and outside the final stage shell of final stage, the quantity of remaining shell is identical with the quantity of the screen tray, two Lower end, the upper end of the final stage shell and the upper and lower ends portion of remaining shell of the grade shell are equipped with shell Annular groove;
Fixing sleeve is equipped with screen tray drive ring on the outer peripheral surface of the screen tray, and the upper and lower ends portion of screen tray drive ring is sheathed on Outside the casing annular slot of adjacent two-stage, the screen tray drive ring and the screen tray driving device driving coupling;
The casing is mounted on chassis bracket, and the chassis bracket is removably secured company with the shells at different levels respectively It connects.
As an improvement scheme, the casing internal be seal cavity structure, the upper end into sub-material axis is worn It crosses the level-one shell and sealingly connects therewith;
Equal sealed set between shell described in adjacent two-stage and the screen tray and the screen tray drive ring, the screen tray Be equipped with C-shaped ball ring between drive ring and the socket place of the casing annular slot, the C-shaped ball ring include section in opening to The ball ring of outer C-shaped configuration, sliding is embedded with several balls being uniformly arranged on three annulus of the ball ring, described The diameter of ball is greater than the wall thickness of the ball ring, and the ball is rolled with casing annular slot and the screen tray drive ring respectively to be joined It connects;
The level-one shell is equipped with intake valve, the external low temperature gas source of the air inlet of the intake valve;
The final stage shell is in the pyramidal structure of opening upwards, and it is bored bottom and is equipped with dust outlet, and the powder goes out Oral area is equipped with negative pressure discharge device.
As an improvement scheme, the screen tray be located at the part between its main body and the casing inner wall for sieve ring, The sieve ring is horizontal ring structure, and is laid with several sieve pores;
It corresponds to and is equipped with above the sieve ring of every grade of screen tray for being crushed the broken of raw material on the inner wall of the casing Roll assembly, the broken roll assembly include the roller frame being fixed on the casing, and rotation is equipped with and the sieve ring in the roller frame Compatible breaker roll is laid with several rollers thorns for being crushed raw material along its circumferential direction on the roll surface of the breaker roll, described The compass screen surface small―gap suture of the least significant end of the revolution contour of roller thorn and the sieve ring separates;
The roller brush for clearing up the roller thorn is equipped with positioned at the rear of the breaker roll in the roller frame.
As an improvement scheme, the downstream position that the breaker roll is located in the roller frame is equipped with stock guide, described Stock guide is elastic chip architecture, and for the main body of the stock guide in the inside arcuate structure that is open, the upstream end of the stock guide is solid Due in the roller frame, pass through light compression spring and the roller frame resilient connection on the outside of the downstream of the stock guide.
As an improvement scheme, the position that the roller frame is corresponded on the casing is equipped with installation hole slot, the roller frame It is fixedly installed on roller frame seat, the roller frame seat is adapted with the installation hole slot, and removably sealing is embedded in it.
As an improvement scheme, the top of every grade of sieve ring is at least provided with two broken roll assemblies, and edge Its circumferential direction is uniformly distributed.
As an improvement scheme, it is described into sub-material axis include coaxially successively be fixedly connected it is multistage into sub-material shaft part, The sub-material shaft part includes the charging axle being coaxially fixedly connected from beginning to end and sub-material axis, is equipped with the material distributing cone in the sub-material axis, The sub-material axis is equipped with the sub-material mouth;
In addition to the screen tray for being located at final stage, every grade of screen tray, which is rotated with the charging sealing of next stage, to be joined It connects, the bottom of shell is equipped with bracing strut, final stage axle bed is removably equipped on the bracing strut, positioned at the screen tray of final stage It is rotatably dispose on the final stage axle bed.
As an improvement scheme, the upper-end part of driving into sub-material axis fixing sleeve on the shaft part outside the casing Equipped with driving wheel, the driving wheel with into sub-material driving device driving coupling, and described under the driving of sub-material driving device It is rotated backward with the screen tray;
The top of the casing is equipped with charging axle bed, and the charging axle bed is equipped with funnel shaped feeder, the charging Portion extends to described into the upper end of sub-material axis inside.
By adopting the above-described technical solution, beneficial effects of the present invention are as follows:
Probiotics micronizer provided by the invention since it is provided with multi-stage crushing device in casing, and passes through Hollow carries out sub-material, feed step by step for raw material into sub-material axis, is then carried out again by the rotation of the screen tray of every level-one to raw material It Centrifugal dispersion and crushes and screens step by step, increases the diffusional area of feed particles, accelerate crush efficiency, and can effectively dissipate Heat avoids raw material aggregation and crushes and lead to the problem of heat aggregation.
Several crushing teeths are equipped on the main body compass screen surface of screen tray, so that feed particles are under the influence of centrifugal force, to outward transport Crushing teeth is constantly collided in dynamic process, quickening crushes and screens efficiency, process crushed and screened into next stage, to effectively avoid Feed particles aggregation, it is ensured that crushing effect.
Casing is arranged to multi-stag structure, and drives screen tray that can effectively avoid sieving by the screen tray drive ring of external Contact of the drive system of disk with feed particles, it is ensured that the purity in feed particles crushing process, it is ensured that the quality of product.
Seal cavity structure is set by casing, can effectively avoid contact of the introduced contaminants to raw material and pulverized particles, really Product purity is protected, outwardly spreads prevented also from the raw material powder of crushing and causes environmental pollution;
It is equipped with C-shaped ball ring between screen tray drive ring and the socket place of casing annular slot, then can effectively reduce screen tray, machine Gearing friction between shell and screen tray drive ring, it is ensured that working efficiency;
Intake valve, and external low temperature gas source are equipped on level-one shell, the structure of final stage shell is in the taper of opening upwards Structure, and it is bored bottom and is equipped with dust outlet, and is equipped with negative pressure discharge device in dust outlet portion, then makes casing internal shape At the cooling space of negative pressure, in addition to the environment temperature in casing is effectively reduced, moreover it is possible to accelerate suitable lattice particle or powder quickly sieves It is quickly recycled to next stage grinding device, and qualified powder, accelerates working efficiency, improve product quality.
Horizontal screen ring is set in screen tray edge, and is moved to herein under being acted on by above-mentioned broken roll assembly centrifugal force Feed particles carry out pressure and puncture broken, can effectively reduce particle packing herein, it is ensured that crushing effect improves working efficiency;
Be equipped with roller brush positioned at the rear of breaker roll in roller frame, then can be convenient for the cleaning of roller thorn, preventing roller from piercing has powder Bonding, it is ensured that its crushing effect.
Positioned at the stock guide of the downstream position setting above structure of breaker roll in roller frame, it is convenient for broken suitable lattice particle Or powder runs through sieve pore under the guiding function of stock guide, into next stage crushing and screening program, can effectively prevent accumulating, Improve working efficiency.
Roller frame is removably mounted on casing by roller frame seat, convenient for being crushed the dismounting and maintenance of roll assembly, it is ensured that Crushing and screening work goes on smoothly at sieve ring.
In the top that every grade is sieved ring at least provided with two broken roll assemblies, then crushing and screening efficiency herein can be improved, prevents The only accumulation of feed particles or suitable lattice particle and powder, further increases working efficiency.
It will be arranged to split type structure into sub-material axis, and convenient for its dismounting and cleaning and maintenance, improve working efficiency;
It is equipped with bracing strut in bottom of shell, and final stage screen tray is rotatably dispose on the final stage axle bed on bracing strut, then may be used The rotational stability for ensuring final stage screen tray is also beneficial to its dismounting and maintenance.
The upper-end part of driving into sub-material axis on the shaft part outside the casing fixing sleeve be equipped with driving wheel, and by being driven into sub-material It being rotated backward under the driving of dynamic device with screen tray, then the large area for being conducive to feed particles is quickly shed, it improves into sub-material efficiency, And then improve crushing and screening efficiency;
It is equipped with charging axle bed at the top of casing, and is equipped with funnel shaped feeder on charging axle bed, improves charging speed Feeder is extended on the inside of the upper end of sub-material axis, had not only been avoided that friction between the two, but also can ensure that feedstock by degree Process No leakage.
Probiotics micronizer provided by the invention can carry out quickly into sub-material feed particles, and step by step quickly Crushing and screening not only improves crush efficiency, but also can ensure that powder quality.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of probiotics micronizer provided in an embodiment of the present invention;
Fig. 2 is the structural representation cross-sectional view of probiotics micronizer shown in Fig. 1;
Fig. 3 is the structural schematic diagram of two-stage grinding device provided in an embodiment of the present invention;
Fig. 4 is the structural schematic diagram of screen tray provided in an embodiment of the present invention;
Fig. 5 is the structural schematic diagram of casing provided in an embodiment of the present invention;
Fig. 6 is the structural schematic diagram of screen tray drive ring provided in an embodiment of the present invention;
Fig. 7 is the cross section schematic diagram of screen tray drive ring shown in Fig. 6;
Fig. 8 is the structural schematic diagram of C-shaped ball ring provided in an embodiment of the present invention;
Fig. 9 is the cross section schematic diagram of the ring of C-shaped ball shown in Fig. 8;
Figure 10 is the structural schematic diagram of broken roll assembly provided in an embodiment of the present invention;
Figure 11 is the structural representation cross-sectional view provided in an embodiment of the present invention into sub-material axis;
Wherein: 1- casing, 101- casing annular slot, 102- install hole slot, 11- level-one shell, 12- secondary shell, 13- tri- Grade shell, 14- level Four shell, 141- dust outlet, 15- intake valve, 16- bracing strut, 17- charging axle bed, 171- feeder, 2- two-stage grinding device, 21- is into sub-material axis, 211- charging axle, 212- sub-material axis, 2121- material distributing cone, 21211- material-distributing hole, 2122- sub-material mouth, 22- screen tray, 221- sieve pore, 222- crushing teeth, 223- sieve ring, 23- screen tray drive ring, 231- mounting ring, 24-C shape ball ring, 241- ball ring, 242- ball, 25- are crushed roll assembly, 251- roller frame, 252- breaker roll, 253- roller thorn, 254- roller brush, 255- stock guide, 256- light compression spring, 257- roller frame seat, 26- final stage axle bed, 27- driving wheel, 3- casing Bracket.
Specific embodiment
In order to make the objectives, technical solutions, and advantages of the present invention clearer, with reference to the accompanying drawings and embodiments, right The present invention is further elaborated.It should be appreciated that the specific embodiments described herein are merely illustrative of the present invention, and It is not used in the restriction present invention.
Probiotics micronizer provided by the invention, including casing, the casing is interior to be equipped with multi-stage crushing device, multistage powder Crushing device includes hollow into sub-material axis, is equipped at least two-stage material distributing cone into the inside of sub-material axis, into sub-material axis on correspond to sub-material Multiple sub-material mouths are offered along its circumferential direction at the lower edge of the upper conical surface of cone, in addition to afterbody material distributing cone, on every grade of material distributing cone Transparent material-distributing hole is offered, the aperture of every grade of material-distributing hole is respectively less than the material-distributing hole of upper level;
Lower section on into sub-material axis positioned at every grade of material distributing cone, which rotates, is equipped with screen tray, and the main body of screen tray is in the circle of opening upwards Pyramidal structure offers transparent sieve pore on screen tray, and the screen-aperture on every grade of screen tray is respectively less than the sieve of upper level screen tray Hole aperture, screen tray rotate under the driving of screen tray driving device, carry out crushing and screening to raw material.
Fig. 1 and Fig. 2 collectively illustrates the structural schematic diagram of probiotics micronizer provided by the invention, for the ease of saying Bright, this figure only provides structure division related to the present invention.Following embodiment is with the probiotics ultra micro equipped with two-stage grinding device Illustrate for pulverizer.
Probiotics micronizer includes casing 1, is equipped with two-stage grinding device 2 in casing 1, as shown in figure 3, two-stage crushes Device 2 include it is hollow into sub-material axis 21, be equipped with two-stage material distributing cone 2121 into the inside of sub-material axis 21, into sub-material axis 21 on it is right It answers and offers multiple sub-material mouths 2122 along its circumferential direction at the lower edge of the upper conical surface of material distributing cone 2121, on first order material distributing cone 2121 Offering transparent material-distributing hole 21211, (if grinding device is more than two-stage, the aperture of every grade of material-distributing hole is respectively less than upper level Material-distributing hole);
Lower section on into sub-material axis 21 positioned at every grade of material distributing cone 2121, which rotates, is equipped with screen tray 22, as shown in figure 4, screen tray 22 Main body be in opening upwards conical structure, transparent sieve pore 221 is offered on screen tray 22, on second level screen tray 22 221 aperture of sieve pore is less than 221 aperture of sieve pore of first order screen tray 22, drive of the screen tray 22 in screen tray driving device (not shown) Dynamic lower rotation, carries out crushing and screening to raw material, here, power drive unit of the motor as screen tray 22 can be selected.
After adopting the above structure, raw material can be carried out to sub-material, feed step by step, then turned again by the screen tray 22 of every level-one It is dynamic, Centrifugal dispersion step by step is carried out to raw material and is crushed and screened, the diffusional area of feed particles is increased, accelerates crushing effect Rate, and can effectively radiate, it avoids raw material aggregation and crushes and lead to the problem of heat aggregation.
Illustrate herein, same diameter can be selected, to keep sieving in the pore size in aperture and material-distributing hole 21211 for sieve pore 221 Divide the uniformity of particle;Under the premise of ensuring next stage 22 working effect of screen tray, the material-distributing hole of larger aperture also can be selected 21211, to improve screening efficiency.
In this embodiment, the main body compass screen surface of screen tray 22 is equipped with several crushing teeths 222, and crushing teeth 222 is in up-small and down-big Pyramidal structure constantly collide crushing teeth 222 during moving out so that feed particles are under the influence of centrifugal force, add Efficiency is crushed and screened fastly, crushes and screens process into next stage, to effectively feed particles be avoided to assemble, it is ensured that crushing effect.
As shown in figure 5, casing 1 includes the multistage shell set gradually from top to bottom, it is corresponding with two-stage grinding device to be Level Four shell, i.e. level-one shell 11, secondary shell 12, three-level shell 13 and level Four shell 14, the lower end of secondary shell 12, The upper and lower ends portion of the upper end of level Four shell 14 and secondary shell 12 and 13 shell of three-level shell is equipped with casing annular slot 101;
Fixing sleeve is equipped with screen tray drive ring 23 on the outer peripheral surface of screen tray 22, and the upper and lower ends portion of screen tray drive ring 23 is arranged In outside the casing annular slot 101 of adjacent two-stage, screen tray drive ring 23 and screen tray driving device driving coupling, to be easily installed, such as Shown in Fig. 6 and Fig. 7, it can be equipped with mounting ring 231 in the inner ring of screen tray drive ring 23, installed by mounting ring 231 and screen tray 22 Together, using such mounting structure, moreover it is possible to which the structural strength for reinforcing screen tray 22 prevents it from turning in the driving of screen tray drive ring 23 It is deformed when dynamic;
Casing 1 is arranged to multi-stag structure, and drives screen tray 22 can be effective by the screen tray drive ring 23 of external Avoid the drive system of screen tray 22 with the contact of feed particles, it is ensured that the purity in feed particles crushing process, it is ensured that product Quality.
Casing 1 is mounted on chassis bracket 3, chassis bracket 3 is removably secured with shells at different levels connect respectively, can be just In the dismounting of casing and the maintenance of complete equipment, moreover it is possible to ensure the mechanical stability of shells at different levels during the work time, it is ensured that powder It is broken everything goes well with your work carry out.
It is seal cavity structure inside casing 1, can effectively avoid contact of the introduced contaminants to raw material and pulverized particles, it is ensured that Product purity outwardly spreads prevented also from the raw material powder of crushing and causes environmental pollution, correspondingly, into the upper end of sub-material axis 21 Portion passes through level-one shell 11 and sealingly connects therewith;
Equal sealed set, screen tray drive ring 23 and shell between adjacent two-stage shell and screen tray 22 and screen tray drive ring 23 C-shaped ball ring 24 is equipped between the socket place of body annular groove 101, as shown in Figure 8 and Figure 9, C-shaped ball ring 24 is in including section The ball ring 241 of the C-shaped configuration of outward opening, on three annulus of ball ring 241 sliding be embedded be uniformly arranged it is several Ball 242, the diameter of ball 242 are greater than the wall thickness of ball ring 241, to ensure its working effect, ball 242 respectively with shell Annular groove 101 and screen tray drive ring 23 roll connection, can effectively reduce the biography between screen tray 22, casing 1 and screen tray drive ring 23 Dynamic friction, it is ensured that working efficiency;
Intake valve 15, and external low temperature gas source (not shown) are equipped on level-one shell 11, level Four shell 14 is in open The upward pyramidal structure of mouth, and it is bored bottom and is equipped with dust outlet 141, and is equipped with negative pressure discharge at dust outlet 141 and fills It sets and (is not shown in the figure, in this embodiment, negative-pressure air fan can be selected as negative pressure discharge device), then make 1 inside shape of casing At the cooling space of negative pressure, in addition to the environment temperature being effectively reduced in casing 1, moreover it is possible to accelerate suitable lattice particle or powder quickly sieves It is quickly recycled to next stage grinding device, and qualified powder, accelerates working efficiency, improve product quality.
In this embodiment, screen tray 22 is located at the part between 1 inner wall of its main body and casing for sieve ring 223, and sieve ring 223 is Horizontal ring structure, and it is laid with several sieve pores 221;
The broken roll assembly being equipped with above the sieve ring 223 of every grade of screen tray 22 for being crushed raw material is corresponded on the inner wall of casing 1 25, as shown in Figure 10, broken roll assembly 25 includes the roller frame 251 being fixed on casing 1, and rotation is equipped with and sieve ring in roller frame 251 223 compatible breaker rolls 252 are laid with several rollers thorns for being crushed raw material along its circumferential direction on the roll surface of breaker roll 252 253, roller pierces the least significant end of 253 revolution contour and the compass screen surface small―gap suture of sieve ring 223 separates, and gathers under acting on centrifugal force Herein feed particles progress punctured by dynamic pressure it is broken, and pressure thorn resistance drive under, make 252 passive rotation of breaker roll, can have Effect reduces particle packing herein, it is ensured that crushing effect improves working efficiency;
For the crushing effect for ensuring roller thorn 253, roller can be pierced 253 and be arranged to the conical structure that the vertex of a cone is convexly curved, When it touches the feed particles assembled on sieve ring 223, opposite dissection can also be generated to it, feed particles are carried out fast Heap cutting, pressure puncture broken.
It is equipped with the roller brush 254 for cleaning roller thorn positioned at the rear of breaker roll 252 in roller frame 251, then can be pierced convenient for roller 253 cleaning prevents having powder bonding in roller thorn 253, it is ensured that its crushing effect.
In this embodiment, it is equipped with stock guide 255 positioned at the downstream position of breaker roll 252 in roller frame 251, convenient for broken Suitable lattice particle or powder afterwards runs through sieve pore under the guiding function of stock guide, can into next stage crushing and screening program It effectively prevent accumulating, improves working efficiency, set elastic chip architecture for stock guide 255, and the main body of its stock guide 255 is in Be open inside arcuate structure, and the upstream end of stock guide 255 is fixed in roller frame 251, passes through on the outside of the downstream of stock guide 255 Light compression spring 256 and 251 resilient connection of roller frame then can carry out elastic guide to broken powder and particle convenient for it, Ensure its separating effect, and elasticity is carried out to the biggish powder particle aggregation of resistance and is evaded, prevents it from causing to stock guide 255 Squeeze damage, it is ensured that the working performance of stock guide 255 prolongs its service life.
In this embodiment, the position that roller frame 251 is corresponded on casing 1 is equipped with installation hole slot 102, and roller frame 251 is fixedly installed In on roller frame seat 257, roller frame seat 257 is adapted with installation hole slot 102, and removably sealing is embedded in it, by roller frame 251 It is removably mounted on casing 1 by roller frame seat 257, convenient for being crushed the dismounting and maintenance of roll assembly 25, it is ensured that at sieve ring 223 Crushing and screening work is gone on smoothly.
In this embodiment, in the top of every grade of sieve ring 223 at least provided with two broken roll assemblies 25, and it is circumferential equal along it Crushing and screening efficiency herein then can be improved in even distribution, prevents the accumulation of feed particles or suitable lattice particle and powder, further mentions High working efficiency.
In this embodiment, as shown in figure 11, multistage into sub-material axis including what is be coaxially successively fixedly connected into sub-material axis 21 Section, sub-material shaft part include the charging axle 211 being coaxially fixedly connected from beginning to end and sub-material axis 212, are equipped with material distributing cone in sub-material axis 212 2121, sub-material axis 212 is equipped with sub-material mouth 2122, after adopting the structure, convenient for the dismounting and cleaning and maintenance of each shaft part, improves Working efficiency;
In this embodiment, first order screen tray 22 couples with the sealing rotation of the charging axle of second level 211, and 1 bottom of casing is set There is bracing strut 16, is removably equipped with final stage axle bed 26 on bracing strut 16, second level screen tray 22 is rotatably dispose in final stage axle bed 26 On, then it can ensure that the rotational stability of second level screen tray, be also beneficial to its dismounting and maintenance.
In this embodiment, transmission is equipped in fixing sleeve on the shaft part of 1 outside of casing in the upper-end part of driving into sub-material axis 21 Wheel 27, driving wheel 27 (are not shown in the figure with into sub-material driving device, in this embodiment, motor can be selected as its driving dress Set) driving coupling, and rotated backward under the driving into sub-material driving device with screen tray 22, then be conducive to the big face of feed particles Product is quickly shed, and is improved into sub-material efficiency, and then improves crushing and screening efficiency;
The top of casing 1 be equipped with charging axle bed 17, charging axle bed 17 be equipped with funnel shaped feeder 171, improve into Expect speed, feeder 171 is extended on the inside of the upper end of sub-material axis 21, has not only been avoided that friction between the two, but also can ensure that Feedstock process No leakage.
Probiotics micronizer provided by the invention can carry out quickly into sub-material feed particles, and step by step quickly Crushing and screening not only improves crush efficiency, but also can ensure that powder quality.
The foregoing is merely illustrative of the preferred embodiments of the present invention, is not intended to limit the invention, all in essence of the invention Made any modifications, equivalent replacements, and improvements etc., should all be included in the protection scope of the present invention within mind and principle.

Claims (10)

1. a kind of probiotics micronizer, including casing, it is characterised in that: be equipped with multi-stage crushing device, institute in the casing Stating multi-stage crushing device includes hollow into sub-material axis, and the inside into sub-material axis is equipped at least two-stage material distributing cone, it is described into It is corresponded on sub-material axis and offers multiple sub-material mouths along its circumferential direction at the lower edge of the upper conical surface of the material distributing cone, remove afterbody institute It states outside material distributing cone, transparent material-distributing hole is offered on every grade of material distributing cone, the aperture of every grade of material-distributing hole is small In the material-distributing hole of upper level;
Described rotate into the lower section for being located at every grade of material distributing cone on sub-material axis is equipped with screen tray, and the main body of the screen tray is in being open Upward conical structure offers transparent sieve pore, the screen-aperture on every grade of screen tray on the screen tray The respectively less than screen-aperture of screen tray described in upper level, the screen tray rotate under the driving of screen tray driving device, carry out to raw material Crushing and screening.
2. probiotics micronizer as described in claim 1, it is characterised in that: if the main body compass screen surface of the screen tray is equipped with Dry crushing teeth, the crushing teeth are in up-small and down-big pyramidal structure.
3. probiotics micronizer as described in claim 1, it is characterised in that: the casing includes successively setting from top to bottom The multistage shell set, in addition to the level-one shell for being located at the first order and positioned at the final stage shell of final stage, the quantity of remaining shell It is identical with the quantity of the screen tray, the lower end of shell described in second level, the upper end of the final stage shell and remaining described shell The upper and lower ends portion of body is equipped with casing annular slot;
Fixing sleeve is equipped with screen tray drive ring on the outer peripheral surface of the screen tray, and the upper and lower ends portion of screen tray drive ring is sheathed on adjacent Outside the casing annular slot of two-stage, the screen tray drive ring and the screen tray driving device driving coupling;
The casing is mounted on chassis bracket, and the chassis bracket is removably secured with the shells at different levels connect respectively.
4. probiotics micronizer as claimed in claim 3, it is characterised in that: the casing internal is seal cavity knot Structure, the upper end into sub-material axis pass through the level-one shell and sealingly connect therewith;
Equal sealed set between shell described in adjacent two-stage and the screen tray and the screen tray drive ring, the screen tray driving C-shaped ball ring is equipped between ring and the socket place of the casing annular slot, the C-shaped ball ring includes section in outward opening The ball ring of C-shaped configuration, sliding is embedded with several balls being uniformly arranged, the ball on three annulus of the ball ring Diameter be greater than the ball ring wall thickness, the ball respectively with casing annular slot and the screen tray drive ring rolling couples;
The level-one shell is equipped with intake valve, the external low temperature gas source of the air inlet of the intake valve;
The final stage shell is in the pyramidal structure of opening upwards, and it is bored bottom and is equipped with dust outlet, the dust outlet portion Equipped with negative pressure discharge device.
5. probiotics micronizer as described in claim 1, it is characterised in that: the screen tray is located at its main body and the machine Part between shell inner wall is sieve ring, and the sieve ring is horizontal ring structure, and is laid with several sieve pores;
The broken roller group being equipped with above the sieve ring of every grade of screen tray for being crushed raw material is corresponded on the inner wall of the casing Part, the broken roll assembly include the roller frame being fixed on the casing, and rotation is equipped with and the sieve ring Xiang Shi in the roller frame The breaker roll matched is laid with several rollers thorns for being crushed raw material, the roller thorn along its circumferential direction on the roll surface of the breaker roll Revolution contour least significant end and it is described sieve ring compass screen surface small―gap suture separate;
The roller brush for clearing up the roller thorn is equipped with positioned at the rear of the breaker roll in the roller frame.
6. probiotics micronizer as claimed in claim 5, it is characterised in that: positioned at the breaker roll in the roller frame Downstream position is equipped with stock guide, and the stock guide is elastic chip architecture, and the main body of the stock guide is in the inside arc knot that is open Structure, the upstream end of the stock guide are fixed in the roller frame, pass through light compression spring on the outside of the downstream of the stock guide With the roller frame resilient connection.
7. probiotics micronizer as claimed in claim 6, it is characterised in that: correspond to the position of the roller frame on the casing Installation hole slot has been installed, the roller frame is fixedly installed on roller frame seat, and the roller frame seat is adapted with the installation hole slot, and Removably sealing is embedded in it.
8. probiotics micronizer as claimed in claim 7, it is characterised in that: every grade it is described sieve ring top at least provided with Two broken roll assemblies, and be uniformly distributed along its circumferential direction.
9. probiotics micronizer as claimed in any one of claims 1 to 8, it is characterised in that: described to include into sub-material axis Into sub-material shaft part, the sub-material shaft part includes the charging axle being coaxially fixedly connected from beginning to end and divides the multistage being coaxially successively fixedly connected Expect axis, the material distributing cone is equipped in the sub-material axis, the sub-material axis is equipped with the sub-material mouth;
In addition to the screen tray for being located at final stage, every grade of screen tray couples with the charging sealing of next stage rotation, institute It states bottom of shell and is equipped with bracing strut, be removably equipped with final stage axle bed on the bracing strut, the screen tray positioned at final stage rotates It is set on the final stage axle bed.
10. probiotics micronizer as claimed in claim 9, it is characterised in that: the upper-end part of driving into sub-material axis in On shaft part outside the casing fixing sleeve be equipped with driving wheel, the driving wheel with into sub-material driving device driving coupling, and It is rotated backward under the driving into sub-material driving device with the screen tray;
The top of the casing is equipped with charging axle bed, and the charging axle bed is equipped with funnel shaped feeder, and the feeder prolongs It extends to described into the upper end of sub-material axis inside.
CN201910040038.4A 2019-01-16 2019-01-16 A kind of probiotics micronizer Withdrawn CN109550575A (en)

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Application Number Priority Date Filing Date Title
CN201910040038.4A CN109550575A (en) 2019-01-16 2019-01-16 A kind of probiotics micronizer

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Application Number Priority Date Filing Date Title
CN201910040038.4A CN109550575A (en) 2019-01-16 2019-01-16 A kind of probiotics micronizer

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109939930A (en) * 2019-04-19 2019-06-28 锦乔生物科技有限公司 A kind of suppression helicobacter pylori probiotics screening washer
CN112536120A (en) * 2020-11-23 2021-03-23 郭浩俊 Quick breaker for pharmacy
CN118002485A (en) * 2024-04-10 2024-05-10 杭州宏大建材有限公司 Intelligent feeder with screening function
CN118002485B (en) * 2024-04-10 2024-07-02 杭州宏大建材有限公司 Intelligent feeder with screening function

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109939930A (en) * 2019-04-19 2019-06-28 锦乔生物科技有限公司 A kind of suppression helicobacter pylori probiotics screening washer
CN112536120A (en) * 2020-11-23 2021-03-23 郭浩俊 Quick breaker for pharmacy
CN118002485A (en) * 2024-04-10 2024-05-10 杭州宏大建材有限公司 Intelligent feeder with screening function
CN118002485B (en) * 2024-04-10 2024-07-02 杭州宏大建材有限公司 Intelligent feeder with screening function

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