CN204314701U - Walnut kernel defibrination energy-saving control device - Google Patents

Walnut kernel defibrination energy-saving control device Download PDF

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Publication number
CN204314701U
CN204314701U CN201420719347.7U CN201420719347U CN204314701U CN 204314701 U CN204314701 U CN 204314701U CN 201420719347 U CN201420719347 U CN 201420719347U CN 204314701 U CN204314701 U CN 204314701U
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micro
fiberizer
slag
inder pot
intaking valve
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Expired - Fee Related
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CN201420719347.7U
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Chinese (zh)
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吴德昭
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Yunnan refiner agricultural Limited by Share Ltd
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YUNNAN MOJIANG AGRICULTURAL Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

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Abstract

The utility model relates to a kind of energy-saving control device, especially relates to a kind of walnut kernel defibrination energy-saving control device.Walnut kernel defibrination energy-saving control device, comprises just fiberizer (1), micro-fiberizer (2), high micro-fiberizer (3), support (4), slag-removing device (5), dregs-separating device (6), storage slag case (7), heat-preserving container (8), deslagging pump (9), controller (10) and switch (11); Dregs-separating device (6) comprises oblique bearing (21), bearing seat (22), turning axle (23), swivel mount (24), T-slot (25) and stepper motor (26); Storage slag case (7) comprises casing (27), storage inder pot (28), disk of conical profile (29), stirring motor (30).The utility model security of operation, saving are manually, the quantity of slag is store in direction, accurately control, slag charge mixes with water fast, timely deslagging also can carry out automatic defibrination to facilitate adjustment to slag tap.

Description

Walnut kernel defibrination energy-saving control device
Technical field
The utility model relates to a kind of energy-saving control device, especially relates to a kind of walnut kernel defibrination energy-saving control device.
Background technology
Walnut is enjoyed " long live son ", " Longevity ", " supporting the treasured of people " laudatory title.Its distinguished brain-healthy effect and abundant nutritive value, by increasing people is praised highly.The medical value of walnut is very high, and the traditional Chinese medical science is widely used.Motherland's medical science thinks that walnut is warm in nature, taste is sweet, nontoxic, have stomach invigorating, enrich blood, moistening lung, the effect such as to repose.
Modern medicine study is thought, the phosphatide in walnut, has good health-care effect to cranial nerve.Walnut, just as a miniature brain, has left half brain, right half brain, top brain and bottom cerebellum, even its fold or folding all as cerebral cortex.The current mankind know, containing the neurotransmitters of more than 36 kinds in walnut, can help to develop brain function.Meanwhile, the unsaturated fatty acid be all rich in walnut and almond, for nutrition cranial nerve, prevents aging, has very important effect.
Walnut Milk is natural plant drink, and this product for primary raw material, adopts that modern crafts, scientific allocation are refining to be formed with high-quality walnut kernel, pure water, delicate mouthfeel, does not lose the original nutrition of walnut kernel.In order to obtain water soluble protein as much as possible during production Walnut Milk, circumfluence method defibrination to be carried out to the walnut kernel of peeling, but being allow material repeatedly reflux during reflux pulp grinding, carrying out repeatedly circular grinding.In defibrination process, need each equipment of manual control to run, cause the waste of manpower and control coarse problem.
Summary of the invention
The utility model is for the deficiencies in the prior art, provide a kind of security of operation, save artificial, conveniently regulate direction of slagging tap, accurately control the storage quantity of slag, slag charge mixes with water fast, timely deslagging also can carry out automatic defibrination walnut kernel defibrination energy-saving control device, effectively solve the problem of Energy Saving Control during walnut kernel defibrination.
For achieving the above object, the technical solution that the utility model adopts is:
Walnut kernel defibrination energy-saving control device, comprises just fiberizer, micro-fiberizer, high micro-fiberizer, support, slag-removing device, dregs-separating device, storage slag case, heat-preserving container, deslagging pump, controller and switch;
The top of first fiberizer feeder hopper is provided with preliminary grinding water inlet pipe, and preliminary grinding water inlet pipe is provided with preliminary grinding water intaking valve; The discharging opening of first fiberizer is connected with the first conveying pipeline, and the another port of the first conveying pipeline is above micro-fiberizer feeder hopper;
The top of micro-fiberizer feeder hopper is provided with micro-mill water inlet pipe, and micro-mill water inlet pipe is provided with micro-mill water intaking valve; The discharging opening of micro-fiberizer is connected with the second conveying pipeline, and the another port of the second conveying pipeline is above the micro-fiberizer feeder hopper of height;
The top of high micro-fiberizer feeder hopper is provided with high micro-mill water inlet pipe, and high micro-mill water inlet pipe is provided with high micro-mill water intaking valve; The grout outlet of high micro-fiberizer is connected with circulation pipe, and the another port of circulation pipe is above slag-removing device feeder hopper;
Support is two-stage staircase structure, and low layer ladder panel is provided with slag-removing device, and high-rise ladder panel is provided with dregs-separating device controller and switch;
Dregs-separating device comprises oblique bearing, bearing seat, turning axle, swivel mount, T-slot and stepper motor; Oblique bearing is right-angle triangle, and inclined-plane is provided with two bearing seats and stepper motor; Be provided with bearing in bearing seat, bearing is provided with turning axle; Turning axle is provided with swivel mount, and swivel mount is provided with T-slot; The slag inlet of T-slot long end is positioned at eminence, and immediately below slag-removing device slag notch; Driving stepper motor turning axle rotates;
Storage slag case comprises casing, storage inder pot, disk of conical profile, stirring motor, scum pipe, residual cake valve, inder pot water inlet pipe and inder pot water intaking valve; Be provided with two storage inder pots in casing, and two storage inder pots are positioned at immediately below two slag notches of T-slot short end, store bottom inder pot and are provided with gravity sensor between casing; Be provided with disk of conical profile bottom storage inder pot, be provided with shaft in the middle part of disk of conical profile, shaft is provided with blade, drives disk of conical profile and shaft to rotate by stirring motor; Storage inder pot bottom sides is provided with scum pipe, and scum pipe stretches out casing, and scum pipe is provided with residual cake valve; Storage inder pot top is provided with inder pot water inlet pipe, and inder pot water inlet pipe is provided with inder pot water intaking valve;
Heat-preserving container there is charging aperture be connected with the grout outlet of slag-removing device; Scum pipe is connected with the water inlet of deslagging pump, and the water delivering orifice of deslagging pump is connected with recirculatory pipe and residue outlet, and the another port of recirculatory pipe is above the micro-fiberizer feeder hopper of height, and residue outlet is provided with valve of slagging tap;
Switch is connected with controller by signal wire with gravity sensor, and controller is connected with first fiberizer, micro-fiberizer, high micro-fiberizer, slag-removing device, deslagging pump, preliminary grinding water intaking valve, micro-mill water intaking valve, high micro-mill water intaking valve, stepper motor, stirring motor, residual cake valve, inder pot water intaking valve and valve of slagging tap by control line;
Described heat-preserving container is provided with universal wheel, and described controller is DCS main frame, and described signal wire and control line are shielding line, and preliminary grinding water intaking valve, micro-mill water intaking valve, high micro-mill water intaking valve, residual cake valve, inder pot water intaking valve and valve of slagging tap are solenoid valve.
The inclined-plane of described oblique bearing and the angle of surface level are 20 °-30 °.
Described T-slot cross section is semicircle or square.
Described gravity sensor is uniformly distributed along each storage inder pot axle center, and each storage inder pot is furnished with 4-8 gravity sensor.
Described blade has some groups, and often group 2 blades distribute along shaft axisymmetrical.
During work, starting switch, controller passed to by switch just signal, controller controls preliminary grinding water intaking valve, micro-mill water intaking valve, high micro-mill water intaking valve is opened into water, and start just fiberizer, micro-fiberizer, high micro-fiberizer, slag-removing device, deslagging pump, again the walnut kernel after peeling is put into the feeder hopper of just fiberizer, preliminary grinding is carried out to walnut kernel, slurry after preliminary grinding is delivered in micro-fiberizer feeder hopper through the first conveying pipeline and carries out micro-mill, slurry after micro-mill carries out high micro-mill in the paramount micro-fiberizer feeder hopper of the second conveying pipeline conveying, slurry after high micro-mill is delivered in slag-removing device feeder hopper through circulation pipe and carries out the separation of slag slurry, slurry is sent in heat-preserving container, slag charge enters the slag inlet of T-slot long end from slag notch, the slag notch low from T-slot flows out, enter in storage inder pot corresponding below it.When store the slag charge of inder pot be stored to constant weight no longer increase time, signal is passed to controller by gravity sensor, the driving stepper motor turning axle that controller controls dregs-separating device rotates, a slag notch of T-slot is raised, another slag notch reduces, and slag charge is discharged to another storage inder pot from another slag notch.Then controller controls inder pot water intaking valve and puts into water, when the weight of water is slag charge weight 4-6 times, signal is passed to controller by gravity sensor, controller controls inder pot water intaking valve to be stopped discharging water, and control stirring motor startup, slag charge is mixed with water, then open residual cake valve by deslagging pump the potpourri of slag charge and water to be carried in paramount micro-fiberizer feeder hopper and carry out high micro-defibrination, repeat that slag slurry is separated, point bucket storage, the process stirring deslagging and the micro-mill of height that adds water just can carry out the micro-mill of self-loopa height.After having worked, closing switch, signal is passed to controller by switch, and controller controls preliminary grinding water intaking valve, micro-mill water intaking valve, high micro-mill water intaking valve and just fiberizer, micro-fiberizer, high micro-fiberizer, slag-removing device are closed, and open valve of slagging tap, close deslagging pump and valve of slagging tap after getting rid of recrement.
the beneficial effects of the utility model:
1, signal wire of the present utility model and control line employing shielding line, has higher transfer rate and good anti-electromagnetic interference capability ensure that slag charge divides the safe operation of bucket storage and deslagging.
2, the utility model controller is that DCS main frame can carry out Automated condtrol to each equipment, and control accuracy is high, can continual point of bucket storage slag charge deslagging in time, saves artificial.
3, the utility model adopts gravity sensor accurately to control the storage capacity of slag charge.
4, the utility model adopts inder pot water inlet pipe and inder pot water intaking valve to add water to having in the storage inder pot of slag charge, and then disk of conical profile, shaft, blade make slag charge mix with water fast under stirring motor drives, and facilitate deslagging.
5, the utility model adopts the high micro-refining system of slag-removing device, dregs-separating device, storage slag case, scum pipe, deslagging pump, recirculatory pipe, high micro-fiberizer and circulation pipe composition self-loopa, can carry out the high micro-defibrination of the self-loopa after separating for several times slag slurry as required to walnut kernel.
6, the utility model adopts preliminary grinding water inlet pipe and preliminary grinding water intaking valve to add water in first fiberizer, ensure that the safe operation of just fiberizer.
7, the utility model adopts micro-mill water inlet pipe and micro-mill water intaking valve to add water in micro-fiberizer, ensure that the safe operation of micro-fiberizer.
8, the utility model adopts high micro-mill water inlet pipe and height micro-mill water intaking valve to add water in the micro-fiberizer of height, ensure that the safe operation of high micro-fiberizer.
Accompanying drawing explanation
Fig. 1 is perspective view of the present utility model.
Fig. 2 is the perspective view of the utility model dregs-separating device.
Fig. 3 is the perspective view of the utility model storage slag case.
Fig. 4 is the vertical cut-away view that the utility model storage slag case long end crosses shaft axle center.
Fig. 5 is the vertical cut-away view that the utility model storage slag case short end crosses shaft axle center.
Fig. 6 is control line schematic diagram of the present utility model.
1-is fiberizer just, the micro-fiberizer of 2-, the high micro-fiberizer of 3-, 4-support, 5-slag-removing device, 6-dregs-separating device, 7-stores slag case, 8-heat-preserving container, 9-deslagging pump, 10-controller, 11-switch, 12-preliminary grinding water inlet pipe, 13-preliminary grinding water intaking valve, 14-first conveying pipeline, the micro-mill water inlet pipe of 15-, the micro-mill water intaking valve of 16-, 17-second conveying pipeline, the high micro-mill water inlet pipe of 18-, the high micro-mill water intaking valve of 19-, 20-circulation pipe, the oblique bearing of 21-, 22-bearing seat, 23-turning axle, 24-swivel mount, 25-T shape groove, 26-stepper motor, 27-casing, 28-stores inder pot, 29-disk of conical profile, 30-stirring motor, 31-scum pipe, 32-residual cake valve, 33-inder pot water inlet pipe, 34-inder pot water intaking valve, 35-gravity sensor, 36-shaft, 37-blade, 38-recirculatory pipe, 39-residue outlet, 40-slags tap valve.
Embodiment
embodiment 1
As shown in Figure 1, Figure 2, shown in Fig. 3, Fig. 4, Fig. 5, Fig. 6, walnut kernel defibrination energy-saving control device, comprises just fiberizer 1, micro-fiberizer 2, high micro-fiberizer 3, support 4, slag-removing device 5, dregs-separating device 6, storage slag case 7, heat-preserving container 8, deslagging pump 9, controller 10 and switch 11;
The top of first fiberizer 1 feeder hopper is provided with preliminary grinding water inlet pipe 12, and preliminary grinding water inlet pipe 12 is provided with preliminary grinding water intaking valve 13; The discharging opening of first fiberizer 1 is connected with the first conveying pipeline 14, and the another port of the first conveying pipeline 14 is above micro-fiberizer 2 feeder hopper;
The top of micro-fiberizer 2 feeder hopper is provided with micro-mill water inlet pipe 15, and micro-mill water inlet pipe 15 is provided with micro-mill water intaking valve 16; The discharging opening of micro-fiberizer 2 is connected with the second conveying pipeline 17, and the another port of the second conveying pipeline 17 is above height micro-fiberizer 3 feeder hopper;
The top of high micro-fiberizer 3 feeder hopper is provided with high micro-mill water inlet pipe 18, and high micro-mill water inlet pipe 18 is provided with high micro-mill water intaking valve 19; The grout outlet of high micro-fiberizer 3 is connected with circulation pipe 20, and the another port of circulation pipe 20 is above slag-removing device 5 feeder hopper;
Support 4 is two-stage staircase structure, and low layer ladder panel is provided with slag-removing device 5, and high-rise ladder panel is provided with dregs-separating device 6 controller 10 and switch 11;
Dregs-separating device 6 comprises oblique bearing 21, bearing seat 22, turning axle 23, swivel mount 24, T-slot 25 and stepper motor 26; Oblique bearing 21 is right-angle triangle, and inclined-plane is provided with two bearing seats 22 and stepper motor 26; Be provided with bearing in bearing seat 22, bearing is provided with turning axle 23; Turning axle 23 is provided with swivel mount 24, and swivel mount 24 is provided with T-slot 25; The slag inlet of T-slot 25 long end is positioned at eminence, and immediately below slag-removing device 5 slag notch; Stepper motor 26 drives turning axle 23 to rotate;
Storage slag case 7 comprises casing 27, storage inder pot 28, disk of conical profile 29, stirring motor 30, scum pipe 31, residual cake valve 32, inder pot water inlet pipe 33 and inder pot water intaking valve 34; Be provided with two storage inder pots 28 in casing 27, and two storage inder pots 28 are positioned at immediately below two slag notches of T-slot 25 short end, store bottom inder pot 28 and are provided with gravity sensor 35 between casing 27; Be provided with disk of conical profile 29 bottom storage inder pot 28, be provided with shaft 36 in the middle part of disk of conical profile 29, shaft 36 is provided with blade 37, drives disk of conical profile 29 and shaft 36 to rotate by stirring motor 30; Storage inder pot 28 bottom sides is provided with scum pipe 31, and scum pipe 31 stretches out casing 27, and scum pipe 31 is provided with residual cake valve 32; Storage inder pot 28 top is provided with inder pot water inlet pipe 33, and inder pot water inlet pipe 33 is provided with inder pot water intaking valve 34;
Heat-preserving container 8 there is charging aperture be connected with the grout outlet of slag-removing device 5; Scum pipe 31 is connected with the water inlet of deslagging pump 9, and the water delivering orifice of deslagging pump 9 is connected with recirculatory pipe 38 and residue outlet 39, and the another port of recirculatory pipe 38 is above height micro-fiberizer 3 feeder hopper, and residue outlet 39 is provided with valve 40 of slagging tap;
Switch 11 is connected with controller 10 by signal wire with gravity sensor 35, and controller 10 is connected with first fiberizer 1, micro-fiberizer 2, high micro-fiberizer 3, slag-removing device 5, deslagging pump 9, preliminary grinding water intaking valve 13, micro-mill water intaking valve 16, high micro-mill water intaking valve 19, stepper motor 26, stirring motor 30, residual cake valve 32, inder pot water intaking valve 34 and valve 40 of slagging tap by control line;
Described heat-preserving container 8 is provided with universal wheel, and described controller 10 is DCS main frame, and described signal wire and control line are shielding line, and preliminary grinding water intaking valve 13, micro-mill water intaking valve 16, high micro-mill water intaking valve 19, residual cake valve 32, inder pot water intaking valve 34 and valve 40 of slagging tap are for solenoid valve.
The inclined-plane of described oblique bearing 21 and the angle of surface level are 20 °.
Described T-slot 25 cross section is semicircle.
Described gravity sensor 35 is uniformly distributed along each storage inder pot 28 axle center, and each storage inder pot 28 is furnished with 4 gravity sensors 35.
Described blade 37 has 5 groups, and often group 2 blades 37 distribute along shaft 36 axisymmetrical.
During work, starting switch 11, controller 10 passed to by switch 11 just signal, controller 10 controls preliminary grinding water intaking valve 13, micro-mill water intaking valve 16, high micro-mill water intaking valve 19 is opened into water, and start just fiberizer 1, micro-fiberizer 2, high micro-fiberizer 3, slag-removing device 5, deslagging pump 9, again the walnut kernel after peeling is put into the feeder hopper of just fiberizer 1, preliminary grinding is carried out to walnut kernel, slurry after preliminary grinding is delivered in micro-fiberizer 2 feeder hopper through the first conveying pipeline 14 and carries out micro-mill, slurry after micro-mill is carried in paramount micro-fiberizer 3 feeder hopper through the second conveying pipeline 17 and is carried out high micro-mill, slurry after high micro-mill is delivered in slag-removing device 5 feeder hopper through circulation pipe 20 and carries out the separation of slag slurry, slurry is sent in heat-preserving container 8, slag charge enters the slag inlet of T-slot 25 long end from slag notch, the slag notch low from T-slot 25 flows out, enter in storage inder pot 28 corresponding below it.When store the slag charge of inder pot 28 be stored to constant weight no longer increase time, signal is passed to controller 10 by gravity sensor 35, the stepper motor 26 that controller 10 controls dregs-separating device 6 drives turning axle 23 to rotate, a slag notch of T-slot 25 is raised, another slag notch reduces, and slag charge is discharged to another storage inder pot 28 from another slag notch.Then controller 10 controls inder pot water intaking valve 34 and puts into water, when the weight of water is slag charge weight 4 times, signal is passed to controller 10 by gravity sensor 35, controller 10 controls inder pot water intaking valve 34 to be stopped discharging water, and control stirring motor 30 and start, slag charge is mixed with water, then open residual cake valve 32 by deslagging pump 9 potpourri of slag charge and water to be carried in paramount micro-fiberizer 3 feeder hopper and carry out high micro-defibrination, repeat that slag slurry is separated, point bucket storage, the process stirring deslagging and the micro-mill of height that adds water just can carry out the micro-mill of self-loopa height.After having worked, closing switch 11, signal is passed to controller 10 by switch 11, controller 10 controls preliminary grinding water intaking valve 13, micro-mill water intaking valve 16, high micro-mill water intaking valve 19 and just fiberizer 1, micro-fiberizer 2, high micro-fiberizer 3, slag-removing device 5 are closed, and open valve 40 of slagging tap, close deslagging pump 9 and valve 40 of slagging tap after getting rid of recrement.
embodiment 2
Walnut kernel defibrination energy-saving control device, its embodiment is as embodiment 1, and difference is that the inclined-plane of described oblique bearing and the angle of surface level are 30 °; Described T-slot cross section is square; Described storage inder pot is each is furnished with 8 gravity sensors; Described blade has 3 groups; Describedly store the water adding slag charge weight 6 times in the storage inder pot of slag charge.

Claims (6)

1. walnut kernel defibrination energy-saving control device, comprises just fiberizer (1), micro-fiberizer (2), high micro-fiberizer (3), support (4), slag-removing device (5), dregs-separating device (6), storage slag case (7), heat-preserving container (8), deslagging pump (9), controller (10) and switch (11);
It is characterized in that, the top of first fiberizer (1) feeder hopper is provided with preliminary grinding water inlet pipe (12), and preliminary grinding water inlet pipe (12) is provided with preliminary grinding water intaking valve (13); The discharging opening of first fiberizer (1) is connected with the first conveying pipeline (14), and the another port of the first conveying pipeline (14) is in the top of micro-fiberizer (2) feeder hopper;
The top of micro-fiberizer (2) feeder hopper is provided with micro-mill water inlet pipe (15), and micro-mill water inlet pipe (15) is provided with micro-mill water intaking valve (16); The discharging opening of micro-fiberizer (2) is connected with the second conveying pipeline (17), and the another port of the second conveying pipeline (17) is in the top of the micro-fiberizer of height (3) feeder hopper;
The top of high micro-fiberizer (3) feeder hopper is provided with high micro-mill water inlet pipe (18), and high micro-mill water inlet pipe (18) is provided with high micro-mill water intaking valve (19); The grout outlet of high micro-fiberizer (3) is connected with circulation pipe (20), and the another port of circulation pipe (20) is in the top of slag-removing device (5) feeder hopper;
Support (4) is two-stage staircase structure, and low layer ladder panel is provided with slag-removing device (5), and high-rise ladder panel is provided with dregs-separating device (6) controller (10) and switch (11);
Dregs-separating device (6) comprises oblique bearing (21), bearing seat (22), turning axle (23), swivel mount (24), T-slot (25) and stepper motor (26); Oblique bearing (21) is right-angle triangle, and inclined-plane is provided with two bearing seats (22) and stepper motor (26); Bearing seat is provided with bearing in (22), and bearing is provided with turning axle (23); Turning axle (23) is provided with swivel mount (24), and swivel mount (24) is provided with T-slot (25); The slag inlet of T-slot (25) long end is positioned at eminence, and immediately below slag-removing device (5) slag notch; Stepper motor (26) drives turning axle (23) to rotate;
Storage slag case (7) comprises casing (27), storage inder pot (28), disk of conical profile (29), stirring motor (30), scum pipe (31), residual cake valve (32), inder pot water inlet pipe (33) and inder pot water intaking valve (34); Be provided with two storages inder pot (28) in casing (27), and two storages inder pot (28) are positioned at immediately below two slag notches of T-slot (25) short end, between storage inder pot (28) bottom and casing (27), are provided with gravity sensor (35); Storage inder pot (28) bottom is provided with disk of conical profile (29), and disk of conical profile (29) middle part is provided with shaft (36), and shaft (36) is provided with blade (37), drives disk of conical profile (29) and shaft (36) to rotate by stirring motor (30); Storage inder pot (28) bottom sides is provided with scum pipe (31), and scum pipe (31) stretches out casing (27), and scum pipe (31) is provided with residual cake valve (32); Storage inder pot (28) top is provided with inder pot water inlet pipe (33), and inder pot water inlet pipe (33) is provided with inder pot water intaking valve (34);
Heat-preserving container (8) there is charging aperture be connected with the grout outlet of slag-removing device (5); Scum pipe (31) is connected with the water inlet of deslagging pump (9), the water delivering orifice of deslagging pump (9) is connected with recirculatory pipe (38) and residue outlet (39), the another port of recirculatory pipe (38) is in the top of the micro-fiberizer of height (3) feeder hopper, and residue outlet (39) is provided with valve of slagging tap (40);
Switch (11) is connected with controller (10) by signal wire with gravity sensor (35), and controller (10) is connected with first fiberizer (1), micro-fiberizer (2), high micro-fiberizer (3), slag-removing device (5), deslagging pump (9), preliminary grinding water intaking valve (13), micro-mill water intaking valve (16), high micro-mill water intaking valve (19), stepper motor (26), stirring motor (30), residual cake valve (32), inder pot water intaking valve (34) and valve of slagging tap (40) by control line;
Described heat-preserving container (8) is provided with universal wheel, described controller (10) is DCS main frame, described signal wire and control line are shielding line, and preliminary grinding water intaking valve (13), micro-mill water intaking valve (16), high micro-mill water intaking valve (19), residual cake valve (32), inder pot water intaking valve (34) and valve of slagging tap (40) are solenoid valve.
2. walnut kernel defibrination energy-saving control device according to claim 1, is characterized in that, the described inclined-plane of oblique bearing (21) and the angle of surface level are 20 °-30 °.
3. walnut kernel defibrination energy-saving control device according to claim 1, is characterized in that, described T-slot (25) cross section is semicircle or square.
4. the walnut kernel defibrination energy-saving control device according to claim 1,2 or 3, is characterized in that, described gravity sensor (35) is uniformly distributed along each storage inder pot (28) axle center, and each storage inder pot (28) is furnished with 4-8 gravity sensor (35).
5. the walnut kernel defibrination energy-saving control device according to claim 1,2 or 3, is characterized in that, described blade (37) has some groups, and often group 2 blades (37) distribute along shaft (36) axisymmetrical.
6. walnut kernel defibrination energy-saving control device according to claim 4, is characterized in that, described blade (37) has some groups, and often group 2 blades (37) distribute along shaft (36) axisymmetrical.
CN201420719347.7U 2014-11-27 2014-11-27 Walnut kernel defibrination energy-saving control device Expired - Fee Related CN204314701U (en)

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Application Number Priority Date Filing Date Title
CN201420719347.7U CN204314701U (en) 2014-11-27 2014-11-27 Walnut kernel defibrination energy-saving control device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112354619A (en) * 2020-10-23 2021-02-12 淮南骏杰食品机械有限公司 Three-continuous mill with horizontal auger

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112354619A (en) * 2020-10-23 2021-02-12 淮南骏杰食品机械有限公司 Three-continuous mill with horizontal auger

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