CN107983440A - A kind of clean energy resource processing unit (plant) - Google Patents
A kind of clean energy resource processing unit (plant) Download PDFInfo
- Publication number
- CN107983440A CN107983440A CN201710735623.7A CN201710735623A CN107983440A CN 107983440 A CN107983440 A CN 107983440A CN 201710735623 A CN201710735623 A CN 201710735623A CN 107983440 A CN107983440 A CN 107983440A
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- CN
- China
- Prior art keywords
- cavity volume
- fragmentation
- stretching
- spiral shell
- extension
- 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.)
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B02—CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
- B02C—CRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
- B02C1/00—Crushing or disintegrating by reciprocating members
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B02—CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
- B02C—CRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
- B02C21/00—Disintegrating plant with or without drying of the material
- B02C21/02—Transportable disintegrating plant
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B02—CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
- B02C—CRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
- B02C23/00—Auxiliary 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
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B02—CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
- B02C—CRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
- B02C23/00—Auxiliary 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
- B02C23/08—Separating or sorting of material, associated with crushing or disintegrating
Landscapes
- Engineering & Computer Science (AREA)
- Food Science & Technology (AREA)
- Mechanical Engineering (AREA)
- Apparatuses For Bulk Treatment Of Fruits And Vegetables And Apparatuses For Preparing Feeds (AREA)
- Pretreatment Of Seeds And Plants (AREA)
Abstract
The invention discloses a kind of clean energy resource processing unit (plant),Including pedestal and installed in the fragmentation case of top surface on the left of pedestal and the guide cone bucket of right side top surface,The first cavity volume that left and right stretching, extension is set is equipped with pedestal,The second cavity volume set in fragmentation case equipped with bottom with intercommunication at the top of the first cavity volume below fragmentation case,The first cavity volume inner top break-through below guide cone bucket is equipped with the port that top is set with the intercommunication of guide cone bucket bottom,Sliding is connected with sliding rack in first cavity volume,Sliding rack bottom is equipped with to move and takes turns,The 3rd cavity volume is equipped with sliding rack,Sliding is connected with stalk frame in 3rd cavity volume,The first take-off and landing device is equipped with 3rd cavity volume of stalk frame bottom,Sliding rack inner spiral line below 3rd cavity volume is connected with the first spiral shell shape bar that left and right stretching, extension is set,Stretching, extension afterbody and the first motor are connected on the right side of first spiral shell shape bar;The configuration of the present invention is simple, it is easy to operate, improve the uniformity and quality of fragmentation.
Description
Technical field
The present invention relates to renewable and clean energy resource field, a kind of clean energy resource processing unit (plant).
Background technology
Stalk is often referred to cotton, wheat, corn, rice and other crops remaining cauline leaf part after fruit of receiving,
In traditional production operation, these stalks are burned, and serious pollution is not only caused on environment, influences air quality, but also
There are security risk.Nowadays stalk can be turned waste into wealth by pyrolysis liquefaction and reprocessing is converted into bio oil, as fuel
It can directly burn and use in oil burning boiler and cellar for storing things stove., it is necessary to which stalk, which is processed, makes its broken before bio oil is produced
Change, the more dust of traditional process equipment, noise are big, influence environmental quality, and complicated, and the degree of automation is low.
The content of the invention
The technical problems to be solved by the invention are to provide a kind of clean energy resource processing unit (plant), it can solve above-mentioned present
The problem of in technology.
The present invention is achieved through the following technical solutions:A kind of clean energy resource processing unit (plant) of the present invention, including base
Seat and the fragmentation case of top surface and the guide cone bucket of right side top surface on the left of the pedestal, are equipped with left and right in the pedestal
The first cavity volume set is stretched, bottom and intercommunication at the top of first cavity volume below the fragmentation case are equipped with the fragmentation case
The second cavity volume set, the first cavity volume inner top break-through below the guide cone bucket are equipped with top and the guide cone bucket
The port that bottom intercommunication is set, the interior sliding of first cavity volume are connected with sliding rack, and the sliding rack bottom is equipped with to move and takes turns,
The 3rd cavity volume is equipped with the sliding rack, is slid in the 3rd cavity volume and is connected with stalk frame, the stalk frame bottom
It is equipped with the first take-off and landing device in 3rd cavity volume, the sliding rack inner spiral line below the 3rd cavity volume is connected with
The first spiral shell shape bar that left and right stretching, extension is set, the first spiral shell shape bar right side stretching, extension afterbody and the first motor are connected, described
The first slid chamber is equipped with stalk frame, sieve is fixedly installed in first slid chamber, mesh is equipped with the sieve, it is described
3rd cavity volume inner roof wall is equipped with straight slot, is slid in second cavity volume and has been connected with drop piece, the institute at the top of described drop piece
State and the second take-off and landing device is equipped with the second cavity volume, be equipped with described drop piece bottom surface and lead shifting groove, described lead moves front and rear stretching, extension in groove
Equipped with the second spiral shell shape bar, stretching, extension afterbody is connected with the second motor on rear side of the second spiral shell shape bar, and described lead is moved in groove
Whorl is connected with the smashing device that stretching, extension is set downwards on the second spiral shell shape bar, and tail is stretched in the smashing device bottom
Portion is stretched out outside described drop piece bottom surface, and the base bottom is provided with the axostylus axostyle that the base bottom wall body is traversed in left and right, institute
State base internal wall rotatable engagement described in axostylus axostyle to connect, termination is fixedly installed traveling wheel respectively at left and right sides of the axostylus axostyle, described
Stalk frame upper surface is provided with the defeated device of row.
Preferably technical solution, the first spiral shell shape bar left side stretching, extension afterbody are revolved with the first cavity volume inner left wall
Turn to be connected, the first motor outer surface is arranged on the right side of first cavity volume in inner wall and is fixedly connected;Described
Stretching, extension afterbody is connected with the shifting groove front inner wall rotatable engagement of leading on front side of two spiral shell shape bars, and the second motor outer surface is set
Move in groove rear side inner wall and be fixedly connected in described lead.
Preferably technical solution, it is defeated equipped with first row in outer surface on front side of the pedestal below the fragmentation case
Mouthful, the second row outlet to be connected with the first row outlet intercommunication, institute are equipped with the 3rd cavity volume front inner wall
State bottom position break-through in the first slid chamber front inner wall be equipped with to be connected with the second row outlet intercommunication the
Three row's outlets.
Preferably technical solution, the smashing device bottom surface are equipped with fragmentation tooth, the institute between each fragmentation tooth
State sliding in smashing device bottom surface and be connected with the fragmentation plug that stretching, extension is set up and down, being equipped with second in the smashing device slides
Chamber is moved, is slid in second slid chamber and is connected with pressing member, at the top of the fragmentation plug second described in stretch section break-through
Slid chamber inner bottom wall and probe into second slid chamber, stretching, extension afterbody is consolidated with the pressing member bottom surface at the top of the fragmentation plug
Fixed connection, in the second slid chamber inner roof wall intercommunication be equipped with conversion tank, rotated in the conversion tank and be connected with male rotor,
Rotating device, the conversion tank of the male rotor front and rear sides are fixedly installed in the conversion tank on the left of the male rotor
Interior equity is equipped with elastic component, and afterbody is fixedly connected with the conversion tank inner roof wall at the top of each elastic component, each described
Elastic component bottom afterbody is fixedly connected with the pressing member top surface.
Preferably technical solution, the defeated device of row include the row's transmission of electricity being fixed in the sliding rack inner wall
Motivation, row squint in motivation of transmitting electricity are connected with the 3rd spiral shell shape bar, and the 3rd spiral shell shape rod outer surface whorl coordinates
The row's of being connected with input board, row's input board are connected with stalk frame upper surface sliding.
The beneficial effects of the invention are as follows:
1. the first spiral shell shape bar of the left and right stretching, extension setting that is connected by the sliding rack inner spiral line below the 3rd cavity volume, the first spiral shell
Stretching, extension afterbody and the first motor are connected on the right side of shape bar, and the first slid chamber is set in stalk frame, fixes and sets in the first slid chamber
Sieve is put, mesh is set in sieve, the 3rd cavity volume inner roof wall sets straight slot, slides the drop piece that has been connected in the second cavity volume, play drop piece
The second take-off and landing device is set in second cavity volume at top, rises to set in drop piece bottom surface and leads shifting groove, front and rear stretching, extension in shifting groove is led and sets the second spiral shell
Shape bar, the second spiral shell shape bar rear side stretching, extension afterbody the second motor of mating connection, leads whorl on the second spiral shell shape bar moved in groove and matches somebody with somebody
The connection smashing device that stretching, extension is set downwards is closed, smashing device bottom stretching, extension afterbody has been stretched out outside drop piece bottom surface, so as to fulfill
Automatically control and add stalk and fragmentation work, improve work efficiency, reduce the labor intensity and the amount of labour of worker.
2. setting fragmentation tooth by smashing device bottom surface, slide and be connected in the smashing device bottom surface between each fragmentation tooth
The fragmentation plug set is stretched up and down, and the second slid chamber is set in smashing device, mating connection pressing member is slid in the second slid chamber,
Stretch section break-through the second slid chamber inner bottom wall and probe into the second slid chamber, stretching, extension afterbody at the top of fragmentation plug at the top of fragmentation plug
Be fixedly connected with pressing member bottom surface, in the second slid chamber inner roof wall intercommunication set conversion tank, rotation mating connection convex in conversion tank
To take turns, fixed setting rotating device in the conversion tank on the left of male rotor, equity sets elastic component in the conversion tank of male rotor front and rear sides,
Afterbody is fixedly connected with conversion tank inner roof wall at the top of each elastic component, and each elastic component bottom afterbody is consolidated with pressing member top surface
Fixed connection, works so as to fulfill the abundant fragmentation of stalk, improves the uniformity and fragmentation quality of fragmentation.
3. the configuration of the present invention is simple, easy to operate, be moved easily and carry, can realize automatically control control plus stalk and
Fragmentation works, and improves work efficiency, reduces the labor intensity and the amount of labour of worker, can realize the secondary abundant fragmentation of stalk
Work, improves the uniformity and fragmentation quality of fragmentation.
Brief description of the drawings
For ease of explanation, the present invention is described in detail by following specific embodiment and attached drawing.
Fig. 1 is a kind of clean energy resource processing unit (plant) external structure schematic diagram of the present invention;
Fig. 2 is the sectional view of " A-A " in Fig. 1 of the invention;
Fig. 3 is the sectional view of " B-B " in Fig. 2 of the invention;
Internal structure schematic diagram when Fig. 4 is a kind of clean energy resource processing unit (plant) original state of the present invention;
Fig. 5 is the structure diagram when smashing device of the present invention is probeed into the 3rd cavity volume;
Internal structure schematic diagram when Fig. 6 is the fragmentation tooth fragmentation work of the present invention;
Internal structure schematic diagram when Fig. 7 is the fragmentation plug fragmentation work of the present invention;
Fig. 8 is a kind of clean energy resource processing unit (plant) top view of the present invention.
Embodiment
As Figure 1-Figure 8, a kind of clean energy resource processing unit (plant) of the invention, including pedestal 5 and installed in the base
First set is stretched in the seat fragmentation case 6 of 5 left side top surfaces and the guide cone bucket 7 of right side top surface, the interior left and right that is equipped with of the pedestal 5
Cavity volume 51, first cavity volume, the 51 top intercommunication equipped with bottom and the lower section of fragmentation case 6 in the fragmentation case 6 set the
Two cavity volumes 61, first cavity volume, the 51 inner top break-through of the lower section of guide cone bucket 7 are equipped with top and 7 bottom of guide cone bucket
The port 55 that portion's intercommunication is set, the interior sliding of first cavity volume 51 are connected with sliding rack 52, and 52 bottom of sliding rack is set
There is shifting wheel 524, the 3rd cavity volume 521 is equipped with the sliding rack 52, is slid in the 3rd cavity volume 521 and is connected with stalk frame
53, the 3rd cavity volume 521 of 53 bottom of stalk frame is interior to be equipped with the first take-off and landing device 532, the lower section of the 3rd cavity volume 521
52 inner spiral line of the sliding rack be connected with left and right stretching, extension set the first spiral shell shape bar 522, the first spiral shell shape bar 522
Right side stretching, extension afterbody is connected with the first motor 523, and the stalk frame 53 is interior to be equipped with the first slid chamber 531, and described first
Sieve 533 is fixedly installed in slid chamber 531, mesh 5331,521 inner roof wall of the 3rd cavity volume are equipped with the sieve 533
Slid equipped with straight slot 526, in second cavity volume 61 and be connected with drop piece 62, described the second of the described top of drop piece 62
Is equipped with the second take-off and landing device 611 in cavity volume 61, is equipped with to lead in described 62 bottom surface of drop piece and moves groove 621, it is described lead shifting groove 621 it is interior before
Stretching, extension is equipped with the second spiral shell shape bar 6211 afterwards, and the rear side of the second spiral shell shape bar 6211 stretching, extension afterbody is connected with the second motor
6212, the fragmentation led whorl on the second spiral shell shape bar 6211 moved in groove 621 and be connected with stretching, extension setting downwards
Device 63,63 bottom of the smashing device stretching, extension afterbody are stretched out outside described 62 bottom surface of drop piece, and 5 bottom of pedestal is provided with
The axostylus axostyle 41 of the 5 bottom wall body of pedestal is traversed in left and right, and 5 inner wall rotatable engagement of pedestal described in the axostylus axostyle 41 connects, the axis
41 left and right sides termination of bar is fixedly installed traveling wheel 42 respectively, and 53 upper surface of stalk frame is provided with the defeated device of row.
Valuably, the left side of the first spiral shell shape bar 522 stretching, extension afterbody and the 51 inner left wall rotatable engagement of the first cavity volume
Connection, 523 outer surface of the first motor are arranged in the 51 right side inner wall of the first cavity volume and are fixedly connected, so as to fulfill
Sliding rack 52 is automatically controlled along the work that moves left and right in the first cavity volume 51, improves work efficiency;The second spiral shell shape bar 6211
Front side is stretched afterbody and is connected with the shifting 621 front inner wall rotatable engagement of groove of leading, and 6212 outer surface of the second motor is set
In it is described lead move 621 rear side inner wall of groove in and be fixedly connected, so as to fulfill automatically control smashing device 63 along lead move groove 621 in
Anteroposterior direction slides, and improves fragmentation scope.
Valuably, it is equipped with first row outlet 54 in the 5 front side outer surface of the pedestal of the lower section of the fragmentation case 6, described the
The second row outlet 525 to be connected with 54 intercommunication of first row outlet is equipped with three cavity volumes, 521 front inner wall, it is described
Bottom position break-through in first slid chamber, 531 front inner wall is equipped with to be connected with 525 intercommunication of second row outlet
The 3rd row's outlet 534, so as to fulfill automatic lower row's work after stalk fragmentation.
Valuably, 63 bottom surface of smashing device is equipped with fragmentation tooth 634, described broken between each fragmentation tooth 634
Makeup puts sliding 63 the bottom surface in and is connected with the fragmentation plug 635 that stretching, extension is set up and down, equipped with the in the smashing device 63
Two slid chambers 631, the interior sliding of second slid chamber 631 are connected with pressing member 632, and the top of fragmentation plug 635 is stretched
Open up 631 inner bottom wall of the second slid chamber described in section break-through and probe into second slid chamber 631, the top of fragmentation plug 635
Stretching, extension afterbody be fixedly connected with 632 bottom surface of pressing member, in 631 inner roof wall of the second slid chamber intercommunication be equipped with conversion tank
633, the interior rotation of the conversion tank 633 is connected with male rotor 6331, the conversion tank 633 in the left side of male rotor 6331
Rotating device is inside fixedly installed, equity is equipped with elastic component in the conversion tank 633 of 6331 front and rear sides of male rotor
6332, each 6332 top afterbody of elastic component is fixedly connected with 633 inner roof wall of conversion tank, each elastic component
6332 bottom afterbodys are fixedly connected with 632 top surface of pressing member, are worked so as to fulfill the abundant fragmentation of stalk, are improved fragmentation
Uniformity and fragmentation quality.
Valuably, the defeated device of the row includes the row's transmission of electricity motivation 5301 being fixed in 52 inner wall of sliding rack,
Squint is connected with the 3rd spiral shell shape bar 5302, the 5302 outer surface spiral shell shape of the 3rd spiral shell shape bar in row's transmission of electricity motivation 5301
Line is connected with row's input board 5303, and row's input board 5303 is connected with 53 upper surface of stalk frame sliding, the row
Transmission of electricity motivation 5301 drives row's input board 5303 to skid off the first row outlet 54 and second row outlet 525, prevents that stalk is last
Remain on the stalk frame 53.
During original state, drop piece 62 is driven by the second take-off and landing device 611, drop piece 62 drives smashing device 63 complete by
Entirely in the second cavity volume 61, at this time, make 63 bottom surface of smashing device at utmost away from the first cavity volume 51, meanwhile, male rotor
Protrusion side on 6331 is at utmost away from 632 top surface side of pressing member, and at this time, pressing member 632 is subject to elastic component 6332
Drawing force, the top position for making pressing member 632 be located in the second slid chamber 631, meanwhile, fragmentation is driven by pressing member 632
635 top section of plug is at utmost probeed into the second slid chamber 631, at this time, 635 bottom afterbody of fragmentation plug and fragmentation tooth 634
Bottom is in same level, meanwhile, sliding rack 52 is located at the right-most position in the first cavity volume 51, at this time, makes sliding rack
Straight slot 526 in 52 tops be located at the position directly below of 55 bottom of port and is to be connected state, meanwhile, risen and fallen dress by first
Put 532 drive stalk frame, 53 maximum and probe into the bottom position in the 3rd cavity volume 521, at this time, make the top of stalk frame 53 maximum
Degree is as shown in Figure 4 away from 526 bottom side of straight slot.
When needing fragmentation stalk, stalk is poured into guide cone bucket 7, stalk is fallen into end after the guiding of guide cone bucket 7
In mouth 55, then fallen into through port 55 in the straight slot 526 of the lower section of port 55, the first of the lower section of straight slot 526 is fallen into after straight slot 526
In slid chamber 531, until stalk is fallen completely within first slid chamber 531 at the top of sieve 533, at this time, the first motor is controlled
523 the first spiral shell shape bars 522 of drive rotate, and drive sliding rack 52 gradually along the left side in the first cavity volume 51 by the first spiral shell shape bar 522
Direction slides, until when sliding rack 52 is moved to the left-most position in the first cavity volume 51, makes in 52 left end face of sliding rack
525 left-hand end of second row outlet is in intercommunication state with 54 right-hand end of first row outlet, and at this time, the first motor 523 of control stops
Spin-ended turn, meanwhile, the first take-off and landing device 532 of control is opened, and makes the first take-off and landing device 532 drive stalk frame 53 gradually to hold along the 3rd
521 inner roof wall direction of chamber slides, until when 53 top surface of stalk frame and 521 inner roof wall of the 3rd cavity volume abut against, makes stalk frame 53 left
534 left-hand end of the 3rd row's outlet in side end face is in intercommunication state with 525 right-hand end of second row outlet, controls the first at this time
Dropping control device 532 is closed, meanwhile, control the second take-off and landing device 611 open, by the second take-off and landing device 611 driven drop piece 62 and
The smashing device 63 for playing 62 bottom of drop piece is gradually slid as shown in figure 5, at this time, gradually making along the bottom direction in the second cavity volume 61
63 bottom afterbody of smashing device is gradually probeed into straight slot 526, until playing 62 bottom surface of drop piece and 52 top surface phase of sliding rack as shown in Figure 6
During abutting, 63 bottom afterbody of smashing device is set at utmost to probe into the first slid chamber 531 in stalk frame 53, and to sieve
The stalk of 533 top surfaces carries out initial fragmentation work, then, controls male rotor 6331 to rotate by rotating device, by male rotor
Protrusion reciprocating rotary top pressure pressing member 632 on 6331, overcomes pressing member 632 and is subject to the drawing force of elastic component 6332
Drive pressing member 632 to continue toward the sliding up and down in the second slid chamber of complex edge 631, at this time, fragmentation plug is driven by pressing member 632
635 continue reciprocal sliding work flexible up and down, and the second slid chamber is probeed into when the protrusion on male rotor 6331 at utmost rotates
When being abutted against in 631 with 632 top surface of pressing member, at this time, pressing member 632 drives 635 bottom afterbody of fragmentation plug at utmost to stretch
Put on display outside 63 bottom surface of smashing device as shown in fig. 7, then driving 6211 positive and reverse return of the second spiral shell shape bar by the second motor 6212
Turn, drive smashing device 63 to be moved back and forth along the anteroposterior direction moved in groove 621 is led by the second spiral shell shape bar 6211, realize to sieve
Stalk in 533 the first slid chambers 531 of top carries out abundant fragmentation work, and at this time, the stalk through fragmentation is through the net in sieve 533
Hole 5331 is fallen into the first slid chamber 531 of the lower section of sieve 533, then leads shifting by the bottom bevel of 531 bottom of the first slid chamber
Enter the 3rd row's outlet 534, then successively through second row outlet 525 and the row's pedestals 5 of first row outlet 54 times outside.
The beneficial effects of the invention are as follows:
1. the first spiral shell shape bar of the left and right stretching, extension setting that is connected by the sliding rack inner spiral line below the 3rd cavity volume, the first spiral shell
Stretching, extension afterbody and the first motor are connected on the right side of shape bar, and the first slid chamber is set in stalk frame, fixes and sets in the first slid chamber
Sieve is put, mesh is set in sieve, the 3rd cavity volume inner roof wall sets straight slot, slides the drop piece that has been connected in the second cavity volume, play drop piece
The second take-off and landing device is set in second cavity volume at top, rises to set in drop piece bottom surface and leads shifting groove, front and rear stretching, extension in shifting groove is led and sets the second spiral shell
Shape bar, the second spiral shell shape bar rear side stretching, extension afterbody the second motor of mating connection, leads whorl on the second spiral shell shape bar moved in groove and matches somebody with somebody
The connection smashing device that stretching, extension is set downwards is closed, smashing device bottom stretching, extension afterbody has been stretched out outside drop piece bottom surface, so as to fulfill
Automatically control and add stalk and fragmentation work, improve work efficiency, reduce the labor intensity and the amount of labour of worker.
2. setting fragmentation tooth by smashing device bottom surface, slide and be connected in the smashing device bottom surface between each fragmentation tooth
The fragmentation plug set is stretched up and down, and the second slid chamber is set in smashing device, mating connection pressing member is slid in the second slid chamber,
Stretch section break-through the second slid chamber inner bottom wall and probe into the second slid chamber, stretching, extension afterbody at the top of fragmentation plug at the top of fragmentation plug
Be fixedly connected with pressing member bottom surface, in the second slid chamber inner roof wall intercommunication set conversion tank, rotation mating connection convex in conversion tank
To take turns, fixed setting rotating device in the conversion tank on the left of male rotor, equity sets elastic component in the conversion tank of male rotor front and rear sides,
Afterbody is fixedly connected with conversion tank inner roof wall at the top of each elastic component, and each elastic component bottom afterbody is consolidated with pressing member top surface
Fixed connection, works so as to fulfill the abundant fragmentation of stalk, improves the uniformity and fragmentation quality of fragmentation.
3. the configuration of the present invention is simple, easy to operate, be moved easily and carry, can realize automatically control control plus stalk and
Fragmentation works, and improves work efficiency, reduces the labor intensity and the amount of labour of worker, can realize the secondary abundant fragmentation of stalk
Work, improves the uniformity and fragmentation quality of fragmentation.
The above description is merely a specific embodiment, but protection scope of the present invention is not limited thereto, any
The change or replacement expected without creative work, should be covered by the protection scope of the present invention.Therefore, it is of the invention
Protection domain should be determined by the scope of protection defined in the claims.
Claims (5)
1. a kind of clean energy resource processing unit (plant), including pedestal and the fragmentation case and right side top surface installed in top surface on the left of pedestal
Guide cone bucket, it is characterised in that:The first cavity volume that left and right stretching, extension is set is equipped with pedestal, bottom and fragmentation are equipped with fragmentation case
The second cavity volume that intercommunication is set at the top of the first cavity volume below case, the first cavity volume inner top break-through below guide cone bucket are equipped with top
The port that portion is set with the intercommunication of guide cone bucket bottom, the interior sliding of the first cavity volume are connected with sliding rack, and sliding rack bottom is equipped with
Wheel is moved, the 3rd cavity volume is equipped with sliding rack, is slid in the 3rd cavity volume and is connected with stalk frame, the 3rd cavity volume of stalk frame bottom
Inside it is equipped with the first take-off and landing device, the sliding rack inner spiral line below the 3rd cavity volume is connected with the first spiral shell that left and right stretching, extension is set
Shape bar, the first spiral shell shape bar right side stretching, extension afterbody and the first motor are connected, and the first slid chamber is equipped with stalk frame, and first slides
Move intracavitary and be fixedly installed sieve, mesh is equipped with sieve, the 3rd cavity volume inner roof wall is equipped with straight slot, slides and coordinate in the second cavity volume
Drop piece has been connected with, has risen in the second cavity volume at the top of drop piece and is equipped with the second take-off and landing device, has risen to be equipped with drop piece bottom surface and leads shifting groove, lead
Move front and rear stretching, extension in groove and be equipped with the second spiral shell shape bar, stretching, extension afterbody is connected with the second motor on rear side of the second spiral shell shape bar, leads shifting
Whorl is connected with the smashing device that stretching, extension is set downwards, smashing device bottom stretching, extension afterbody on the second spiral shell shape bar in groove
Stretch out outside drop piece bottom surface, base bottom is provided with the axostylus axostyle that base bottom wall body is traversed in left and right, the rotation of axostylus axostyle base internal wall
It is connected, termination is fixedly installed traveling wheel respectively at left and right sides of axostylus axostyle, and stalk frame upper surface is provided with the defeated device of row.
A kind of 2. clean energy resource processing unit (plant) according to claim 1, it is characterised in that:Stretched on the left of the first spiral shell shape bar
Exhibition afterbody is connected with the first cavity volume inner left wall rotatable engagement, and the first motor outer surface is arranged at described first and holds
Inner wall is interior on the right side of chamber and is fixedly connected;Stretching, extension afterbody moves groove front inner wall rotatable engagement with described lead on front side of the second spiral shell shape bar
Connection, the second motor outer surface are arranged at described lead and move in groove rear side inner wall and be fixedly connected.
A kind of 3. clean energy resource processing unit (plant) according to claim 1, it is characterised in that:It is described below the fragmentation case
Be equipped with first row outlet on front side of pedestal in outer surface, the 3rd cavity volume front inner wall it is interior equipped with to the first row outlet
The second row outlet that intercommunication is connected, the bottom position break-through in the first slid chamber front inner wall be equipped with to it is described
The 3rd row's outlet that the intercommunication of second row outlet is connected.
A kind of 4. clean energy resource processing unit (plant) according to claim 1, it is characterised in that:The smashing device bottom surface is equipped with
Fragmentation tooth, each sliding is connected with the fragmentation that stretching, extension is set up and down in the smashing device bottom surface between the fragmentation tooth
Plug, the smashing device is interior to be equipped with the second slid chamber, is slid in second slid chamber and is connected with pressing member, described broken
Change the second slid chamber inner bottom wall described in stretch section break-through at the top of plug and probe into second slid chamber, the fragmentation plug top
Portion stretching, extension afterbody be fixedly connected with the pressing member bottom surface, in the second slid chamber inner roof wall intercommunication be equipped with conversion tank, it is described
Rotated in conversion tank and be connected with male rotor, rotating device is fixedly installed in the conversion tank on the left of the male rotor,
Equity is equipped with elastic component in the conversion tank of the male rotor front and rear sides, each elastic component top afterbody with it is described
Conversion tank inner roof wall is fixedly connected, and each elastic component bottom afterbody is fixedly connected with the pressing member top surface.
A kind of 5. clean energy resource processing unit (plant) according to claim 1, it is characterised in that:The defeated device of row includes fixing
Row in the sliding rack inner wall is arranged on to transmit electricity motivation, row squint in motivation of transmitting electricity is connected with the 3rd spiral shell shape bar,
The 3rd spiral shell shape rod outer surface whorl is connected with row's input board, and row's input board is matched somebody with somebody with stalk frame upper surface sliding
Close connection.
Priority Applications (1)
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CN201710735623.7A CN107983440A (en) | 2017-08-24 | 2017-08-24 | A kind of clean energy resource processing unit (plant) |
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CN201710735623.7A CN107983440A (en) | 2017-08-24 | 2017-08-24 | A kind of clean energy resource processing unit (plant) |
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CN107983440A true CN107983440A (en) | 2018-05-04 |
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CN201710735623.7A Withdrawn CN107983440A (en) | 2017-08-24 | 2017-08-24 | A kind of clean energy resource processing unit (plant) |
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CN (1) | CN107983440A (en) |
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2017
- 2017-08-24 CN CN201710735623.7A patent/CN107983440A/en not_active Withdrawn
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Application publication date: 20180504 |
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