CN109078572A - A kind of environment-friendly biomass fuel particle preparation facilities - Google Patents
A kind of environment-friendly biomass fuel particle preparation facilities Download PDFInfo
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- CN109078572A CN109078572A CN201811052336.7A CN201811052336A CN109078572A CN 109078572 A CN109078572 A CN 109078572A CN 201811052336 A CN201811052336 A CN 201811052336A CN 109078572 A CN109078572 A CN 109078572A
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01J—CHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY; THEIR RELEVANT APPARATUS
- B01J2/00—Processes or devices for granulating materials, e.g. fertilisers in general; Rendering particulate materials free flowing in general, e.g. making them hydrophobic
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01J—CHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY; THEIR RELEVANT APPARATUS
- B01J2/00—Processes or devices for granulating materials, e.g. fertilisers in general; Rendering particulate materials free flowing in general, e.g. making them hydrophobic
- B01J2/20—Processes or devices for granulating materials, e.g. fertilisers in general; Rendering particulate materials free flowing in general, e.g. making them hydrophobic by expressing the material, e.g. through sieves and fragmenting the extruded length
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- C—CHEMISTRY; METALLURGY
- C10—PETROLEUM, GAS OR COKE INDUSTRIES; TECHNICAL GASES CONTAINING CARBON MONOXIDE; FUELS; LUBRICANTS; PEAT
- C10L—FUELS NOT OTHERWISE PROVIDED FOR; NATURAL GAS; SYNTHETIC NATURAL GAS OBTAINED BY PROCESSES NOT COVERED BY SUBCLASSES C10G, C10K; LIQUEFIED PETROLEUM GAS; ADDING MATERIALS TO FUELS OR FIRES TO REDUCE SMOKE OR UNDESIRABLE DEPOSITS OR TO FACILITATE SOOT REMOVAL; FIRELIGHTERS
- C10L5/00—Solid fuels
- C10L5/40—Solid fuels essentially based on materials of non-mineral origin
- C10L5/44—Solid fuels essentially based on materials of non-mineral origin on vegetable substances
-
- C—CHEMISTRY; METALLURGY
- C10—PETROLEUM, GAS OR COKE INDUSTRIES; TECHNICAL GASES CONTAINING CARBON MONOXIDE; FUELS; LUBRICANTS; PEAT
- C10L—FUELS NOT OTHERWISE PROVIDED FOR; NATURAL GAS; SYNTHETIC NATURAL GAS OBTAINED BY PROCESSES NOT COVERED BY SUBCLASSES C10G, C10K; LIQUEFIED PETROLEUM GAS; ADDING MATERIALS TO FUELS OR FIRES TO REDUCE SMOKE OR UNDESIRABLE DEPOSITS OR TO FACILITATE SOOT REMOVAL; FIRELIGHTERS
- C10L2290/00—Fuel preparation or upgrading, processes or apparatus therefore, comprising specific process steps or apparatus units
- C10L2290/24—Mixing, stirring of fuel components
-
- C—CHEMISTRY; METALLURGY
- C10—PETROLEUM, GAS OR COKE INDUSTRIES; TECHNICAL GASES CONTAINING CARBON MONOXIDE; FUELS; LUBRICANTS; PEAT
- C10L—FUELS NOT OTHERWISE PROVIDED FOR; NATURAL GAS; SYNTHETIC NATURAL GAS OBTAINED BY PROCESSES NOT COVERED BY SUBCLASSES C10G, C10K; LIQUEFIED PETROLEUM GAS; ADDING MATERIALS TO FUELS OR FIRES TO REDUCE SMOKE OR UNDESIRABLE DEPOSITS OR TO FACILITATE SOOT REMOVAL; FIRELIGHTERS
- C10L2290/00—Fuel preparation or upgrading, processes or apparatus therefore, comprising specific process steps or apparatus units
- C10L2290/28—Cutting, disintegrating, shredding or grinding
-
- C—CHEMISTRY; METALLURGY
- C10—PETROLEUM, GAS OR COKE INDUSTRIES; TECHNICAL GASES CONTAINING CARBON MONOXIDE; FUELS; LUBRICANTS; PEAT
- C10L—FUELS NOT OTHERWISE PROVIDED FOR; NATURAL GAS; SYNTHETIC NATURAL GAS OBTAINED BY PROCESSES NOT COVERED BY SUBCLASSES C10G, C10K; LIQUEFIED PETROLEUM GAS; ADDING MATERIALS TO FUELS OR FIRES TO REDUCE SMOKE OR UNDESIRABLE DEPOSITS OR TO FACILITATE SOOT REMOVAL; FIRELIGHTERS
- C10L2290/00—Fuel preparation or upgrading, processes or apparatus therefore, comprising specific process steps or apparatus units
- C10L2290/30—Pressing, compressing or compacting
-
- C—CHEMISTRY; METALLURGY
- C10—PETROLEUM, GAS OR COKE INDUSTRIES; TECHNICAL GASES CONTAINING CARBON MONOXIDE; FUELS; LUBRICANTS; PEAT
- C10L—FUELS NOT OTHERWISE PROVIDED FOR; NATURAL GAS; SYNTHETIC NATURAL GAS OBTAINED BY PROCESSES NOT COVERED BY SUBCLASSES C10G, C10K; LIQUEFIED PETROLEUM GAS; ADDING MATERIALS TO FUELS OR FIRES TO REDUCE SMOKE OR UNDESIRABLE DEPOSITS OR TO FACILITATE SOOT REMOVAL; FIRELIGHTERS
- C10L2290/00—Fuel preparation or upgrading, processes or apparatus therefore, comprising specific process steps or apparatus units
- C10L2290/32—Molding or moulds
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E50/00—Technologies for the production of fuel of non-fossil origin
- Y02E50/10—Biofuels, e.g. bio-diesel
-
- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E50/00—Technologies for the production of fuel of non-fossil origin
- Y02E50/30—Fuel from waste, e.g. synthetic alcohol or diesel
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- Chemical & Material Sciences (AREA)
- Organic Chemistry (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Oil, Petroleum & Natural Gas (AREA)
- Crushing And Pulverization Processes (AREA)
Abstract
The present invention relates to environment-friendly biomass particle production technology fields, are in particular a kind of environment-friendly biomass fuel particle preparation facilities.The tub plate is fixedly connected on bottom plate, and material collecting box is placed on;Motor is fixedly connected on motor rack, one end of central axis is connected on the output shaft of motor by shaft coupling, the other end of central axis is fixedly connected with drive shaft, rectangular channel is provided in drive shaft, both ends on the inside of drive shaft are provided with a raised line slot, and two raised line slots are connected to rectangular channel, and the bottom end of drive shaft is provided with circular through hole, circular through hole is connected to rectangular channel, and electric telescopic rod is fixedly connected on the inside of circular through hole;The present invention is internally provided with anti-clogging feed pipe, prevents fill process middle charging aperture from blocking;The present invention carries out the distribution of equivalent to biomass fuel, while the material exported is ground into volume spherical particle of the same size, is convenient for adequately burn or carry out subsequent processing, packing.
Description
Technical field
The present invention relates to environment-friendly biomass particle production technology fields, are in particular a kind of environment-friendly biomass combustions
Expect pelleting device.
Background technique
A kind of biomass block fuel processing system of existing Patent No. CN201520713817.3, the utility model mention
For a kind of biomass block fuel processing system, including feeding workshop section, break section, briquetting workshop section and cooling packing workshop section, institute
Stating feeding workshop section includes feeding intake canopy and feeding conveyer belt, and the break section includes Roughpulverizer, scraper conveyor belt and raw material cabin,
It is provided with spiral air supply duct on the inner wall of the raw material cabin, ventilation hole, the raw material are distributed on the air supply duct
Shovelling plate is provided in storehouse, the briquetting workshop section includes ring moulds briquetting forming machine, and the cooling packing workshop section includes cooler and packet
Installation.The beneficial effect of the utility model can be crushed stalk, briquetting shape by the biomass block fuel processing system
At biomass block fuel, reduces straw burning and set to the pollution of environment and the waste of resource, and on the inner wall of raw material cabin
It is equipped with ventilation shaft, smashed material can be dried.But the utility model can block when filler is excessive, blocked up
The phenomenon that machine.
Summary of the invention
The object of the present invention is to provide a kind of environment-friendly biomass fuel particle preparation facilities, its advantages are the present invention
Intermittent feed can be carried out, when filler is excessive, blocked up, can stop continuing blanking, prevent machine excess load, overload
The phenomenon that card machine, reduces the labor intensity of operator, reduces the cost of production, extends the service life of machine;This hair
It is bright to be internally provided with anti-clogging feed pipe, prevent fill process middle charging aperture from blocking;The present invention carries out biomass fuel
The distribution of equivalent, at the same export material be ground into volume spherical particle of the same size, be convenient for adequately burn or
Carry out subsequent processing, packing.
The purpose of the present invention is achieved through the following technical solutions:
A kind of environment-friendly biomass fuel particle preparation facilities, including pedestal, powered drive wheel, feeder, grain forming
It sieves seat and anti-clogging feed pipe, the pedestal includes bottom plate, tub plate and material collecting box;Tub plate is fixedly connected on bottom plate,
Material collecting box is placed on;
The powered drive wheel include motor rack, motor, central axis, drive shaft, rectangular channel, raised line slot, circular through hole,
Electric telescopic rod, reciprocating block slider, raised line, vee gutter, reciprocating rack, spring base, driven gear, cylindrical shaft, L-type kelly and bullet
Spring;Motor is fixedly connected on motor rack, and one end of central axis is connected on the output shaft of motor by shaft coupling, central axis
The other end is fixedly connected with drive shaft, and rectangular channel is provided in drive shaft, and the both ends on the inside of drive shaft are provided with a raised line
Slot, two raised line slots are connected to rectangular channel, and the bottom end of drive shaft is provided with circular through hole, and circular through hole is connected to rectangular channel,
Electric telescopic rod is fixedly connected on the inside of circular through hole, and reciprocating block slider is located in rectangular channel, and the both ends of reciprocating block slider are respectively provided with
There is a raised line, two raised lines are slidably connected at respectively in two raised line slots, and vee gutter is provided in reciprocating block slider, electronic to stretch
The telescopic rod of contracting bar is located in vee gutter;The outer end of the reciprocating block slider is fixedly connected with reciprocating rack, reciprocating rack sliding
Be connected on spring base, spring base is fixedly connected on the inner wall of drive shaft, two driven gears respectively with reciprocating rack two
Side engaged transmission, two driven gears are respectively fixedly connected on two cylindrical shafts, and two cylindrical shafts are turned by rolling bearing units
It is dynamic to be connected on the inner wall of drive shaft;L-type kelly is fixedly connected on the driven gear;The reciprocating block slider and spring base it
Between reciprocating rack on be set with spring;
The feeder includes cylinder, shaft, powered drive wheel, snap ring, forming disk, rotation conveying blade and shear knife
Disk;The left upper end of cylinder is provided with feed inlet, and shaft is rotatably connected on one end of cylinder by rolling bearing units, and one end of shaft is solid
Surely it is connected with powered drive wheel, powered drive wheel is overlapped with the axis of drive shaft, and snap ring is fixedly connected on the interior of powered drive wheel
On wall, the other end of shaft is rotatably connected on forming disk by rolling bearing units, and forming disk is fixedly connected on the cylinder other end
Multiple circular through holes I are evenly arranged on inner wall, on forming disk, rotation conveying blade is fixedly connected in shaft, rotation conveying
Blade is located in cylinder;Shearing cutterhead is rotatably connected on the right end of cylinder by rolling bearing units, and the middle splaying for shearing cutterhead is matched
It closes in shaft, shearing cutterhead is bonded with forming disk;Motor rack is fixedly connected on cylinder, and cylinder is fixedly connected on tub plate
On;
The described grain forming sieve seat include semicircle sieve seat, semicircular ring, semicircular ring slide, semicircle circular slide way, short axle and
Transmission gear;Semicircle sieve seat is located at the underface of forming disk, is provided with multiple circles on the semicircle bottom surface of semicircle sieve seat
The both ends of through-hole II, semicircle sieve seat are fixedly connected to a semicircular ring, and two semicircular ring slides are symmetrically fixedly connected on bottom
On plate, a semicircle circular slide way is provided on two semicircular ring slides, two semicircular rings are slidably connected at two semicircles respectively
In circular slide way;Short axle is fixedly connected on the left end of semicircle sieve seat, and semicircular ring, short axle are overlapped with the axis of semicircle sieve seat, pass
Moving gear is fixedly connected in short axle;Material collecting box is located between two semicircular ring slides.
The powered drive wheel further includes driving pulley, and the middle-end of central axis is fixedly connected with driving pulley.
A kind of environment-friendly biomass fuel pellet moulding device further includes anti-clogging feed pipe, the anti-clogging
Feed pipe includes charging seat, transmission shaft, drive pulley, driving gear, driving gear, driven gear, driven shaft and stirring blade;
Charging seat is fixedly connected on the inside of the feed inlet on cylinder, and transmission shaft is rotatably connected on the two sides of charging seat by rolling bearing units
On end face, drive pulley and driving gear are respectively fixedly connected at the both ends of transmission shaft, and drive pulley and driving pulley pass through skin
Band V belt translation connects, and driving gear and shearing cutterhead engaged transmission, driving gear are fixedly connected on transmission shaft, driving gear position
Between charging seat and driving gear, driving gear and driven gear engaged transmission, driven gear are fixedly connected on driven shaft,
The both ends of driven shaft pass through rolling bearing units respectively and are rotatably connected on the both sides of the face of charging seat, solid on driven shaft and transmission shaft
There are two stirring blades for fixed connection;The stirring blade is located in charging seat.
The stirring blade includes sleeve and agitating plate;The inner ring of sleeve is fixedly connected on transmission shaft or driven shaft,
The outer ring of sleeve is uniformly surrounded with multiple agitating plates.
Two stirring blades on the driven shaft are staggered with two stirring blades on transmission shaft.
The shearing cutterhead includes outer ring knife rest, gusset, gear ring, cutoff tool, inner circular knife rest, connecting plate and arc
Rack gear;Multiple cutoff tools, inner circular knife rest clearance fit are fixedly connected between inner circular knife rest and the right end of outer ring knife rest
In shaft, the left end of outer ring knife rest is rotatably connected on cylinder by rolling bearing units, and gear ring connects by the way that three gussets are fixed
Connect the outer ring of round knife rest outside, gear ring and driving gear engaged transmission;The left side of the cutoff tool is bonded with forming disk;Three
A arc-shaped rack passes through two connecting plates and is fixedly connected on outer ring knife rest.
When the telescopic rod of electric telescopic rod is located at the left end of vee gutter, the outer end of two L-type kellies is acted against
On snap ring.
The outer end face of the outer end face of the arc-shaped rack and transmission gear is in the same plane.
A kind of environment-friendly biomass fuel particle preparation facilities of the invention has the beneficial effect that
A kind of environment-friendly biomass fuel particle preparation facilities of the present invention, the present invention can carry out intermittent feed, when
When filler is excessive, blocked up, it can stop continuing blanking, prevent machine excess load, there is a phenomenon where overloading card machine, reduce operator
The labor intensity of member, reduces the cost of production, extends the service life of machine;The present invention is internally provided with anti-clogging charging
Pipe, prevents fill process middle charging aperture from blocking;The present invention carries out the distribution of equivalent, while the object exported to biomass fuel
Material is ground into volume spherical particle of the same size, is convenient for adequately burn or carry out subsequent processing, packing.
Detailed description of the invention
Fig. 1 is a kind of structural schematic diagram one of environment-friendly biomass fuel particle preparation facilities of the present invention;
Fig. 2 is a kind of schematic cross-sectional view of environment-friendly biomass fuel particle preparation facilities of the present invention;
Fig. 3 is the partial enlargement structural representation of Fig. 2;
Fig. 4 is a kind of structural schematic diagram two of environment-friendly biomass fuel particle preparation facilities of the present invention;
Fig. 5 is the structural schematic diagram of pedestal;
Fig. 6 is the structural schematic diagram of powered drive wheel;
Fig. 7 is the structural schematic diagram of drive shaft;
Fig. 8 is the schematic cross-sectional view of powered drive wheel;
Fig. 9 is the schematic diagram of internal structure of powered drive wheel;
Figure 10 is the fit structure schematic diagram of electric telescopic rod and reciprocating block slider;
Figure 11 is the structural schematic diagram one of feeder;
Figure 12 is the structural schematic diagram two of feeder;
Figure 13 is the structural schematic diagram of forming disk;
Figure 14 is the structural schematic diagram of cutoff tool;
Figure 15 is the structural schematic diagram that grain forming sieves seat;
Figure 16 is the structural schematic diagram of semicircular ring slide;
Figure 17 is the partial structure diagram that grain forming sieves seat;
Figure 18 is the structural schematic diagram of anti-clogging feed pipe;
Figure 19 is the partial structure diagram of anti-clogging feed pipe;
Figure 20 is the structural schematic diagram of stirring blade;
Figure 21 is the cooperation cross-sectional view of powered drive wheel and powered drive wheel.
In figure: pedestal 1;Bottom plate 1-1;Tub plate 1-2;Material collecting box 1-3;Powered drive wheel 2;Motor rack 2-1;Motor 2-2;
Central axis 2-3;Driving pulley 2-4;Drive shaft 2-5;Rectangular channel 2-6;Raised line slot 2-7;Circular through hole 2-8;Electric telescopic rod 2-
9;Reciprocating block slider 2-10;Raised line 2-11;Vee gutter 2-12;Reciprocating rack 2-13;Spring base 2-14;Driven gear 2-15;Circle
Axis of a cylinder 2-16;L-type kelly 2-17;Spring 2-18;Feeder 3;Cylinder 3-1;Shaft 3-2;Powered drive wheel 3-3;Snap ring 3-4;
Forming disk 3-5;Rotate conveying blade 3-6;Shear cutterhead 3-7;Outer ring knife rest 3-7-1;Gusset 3-7-2;Gear ring 3-7-3;It cuts
Breaking 3-7-4;Inner circular knife rest 3-7-5;Connecting plate 3-7-6;Arc-shaped rack 3-7-7;Grain forming sieves seat 4;Semicircle sieve seat
4-1;Semicircular ring 4-2;Semicircular ring slide 4-3;Semicircle circular slide way 4-4;Short axle 4-5;Transmission gear 4-6;Anti-clogging feed pipe 5;
Charging seat 5-1;Transmission shaft 5-2;Drive pulley 5-3;Drive gear 5-4;Driving gear 5-5;Driven gear 5-6;Driven shaft 5-
7;Stirring blade 5-8;Sleeve 5-8-1;Agitating plate 5-8-2.
Specific embodiment
The present invention will be further described in detail for 1-21 and specific implementation method with reference to the accompanying drawing.
Specific embodiment 1:
Illustrate present embodiment, a kind of environment-friendly biomass fuel particle preparation facilities, including bottom below with reference to Fig. 1-2 1
Seat 1, powered drive wheel 2, feeder 3, grain forming sieve seat 4 and anti-clogging feed pipe 5, the pedestal 1 include bottom plate 1-1,
Tub plate 1-2 and material collecting box 1-3;Tub plate 1-2 is fixedly connected on bottom plate 1-1, and material collecting box 1-3 is placed on bottom plate 1-1;
The powered drive wheel 2 include motor rack 2-1, motor 2-2, central axis 2-3, drive shaft 2-5, rectangular channel 2-6,
Raised line slot 2-7, circular through hole 2-8, electric telescopic rod 2-9, reciprocating block slider 2-10, raised line 2-11, vee gutter 2-12, past double tooth
2-13, spring base 2-14, driven gear 2-15, cylindrical shaft 2-16, L-type kelly 2-17 and spring 2-18;Motor 2-2 is fixed to be connected
It connects on motor rack 2-1, one end of central axis 2-3 is connected on the output shaft of motor 2-2 by shaft coupling, central axis 2-3 tool
There is axially position, the other end of central axis 2-3 is fixedly connected with drive shaft 2-5, and drive shaft 2-5 has axially position, drive shaft
Rectangular channel 2-6 is provided in 2-5, it is equal that the both ends on the inside of drive shaft 2-5 are provided with raised line slot a 2-7, two raised line slot 2-7
It being connected to rectangular channel 2-6, the bottom end of drive shaft 2-5 is provided with circular through hole 2-8, and circular through hole 2-8 is connected to rectangular channel 2-6,
Electric telescopic rod 2-9 is fixedly connected on the inside of circular through hole 2-8, and reciprocating block slider 2-10 is located in rectangular channel 2-6, reciprocating block slider
The both ends of 2-10 are provided with a raised line 2-11, and two raised line 2-11 are slidably connected at respectively in two raised line slot 2-7, back and forth
Vee gutter 2-12 is provided in sliding block 2-10, the telescopic rod of electric telescopic rod 2-9 is located in vee gutter 2-12;It is described reciprocal
The outer end of sliding block 2-10 is fixedly connected with reciprocating rack 2-13, and reciprocating rack 2-13 is slidably connected on spring base 2-14, spring
Seat 2-14 is fixedly connected on the inner wall of drive shaft 2-5, and two driven gear 2-15 are nibbled the two sides respectively with reciprocating rack 2-13
Transmission is closed, two driven gear 2-15 are respectively fixedly connected on two cylindrical shaft 2-16, and driven gear 2-15 has axial fixed
Position, two cylindrical shaft 2-16 pass through rolling bearing units and are rotatably connected on the inner wall of drive shaft 2-5, and cylindrical shaft has axial fixed
Position;L-type kelly 2-17 is fixedly connected on the driven gear 2-15;Between the reciprocating block slider 2-10 and spring base 2-14
Spring 2-18 is set on reciprocating rack 2-13;The powered drive wheel 2 is connected by conducting wire when in use, by motor 2-2
Power supply and control switch are simultaneously opened, and motor 2-2 drives central axis 2-3 to rotate counterclockwise around own axes, and central axis 2-3, which drives, to be driven
Moving axis 2-5 is rotated counterclockwise around own axes, and raised line 2-11 is slidably connected in raised line slot 2-7 and plays to reciprocating block slider 2-10
The effect of limition orientation move left and right reciprocating block slider 2-10 can only along the axis of drive shaft 2-5, while drive shaft 2-5 can be with
Drive reciprocating block slider 2-10, the reciprocating rack 2-13, spring base 2-14, driven gear 2-15, cylindrical shaft 2- inside drive shaft 2-5
16 and L-type kelly 2-17 is rotated around the axis of drive shaft 2-5;After electric telescopic rod 2-9 is opened, it is under spring 2-18 normality
Relaxation state can squeeze reciprocating block slider when the telescopic rod on electric telescopic rod 2-9 stretches out due to the setting of vee gutter 2-12
2-10 makes reciprocating block slider 2-10 move right, and spring 2-18 is compressed, and reciprocating block slider 2-10 drives reciprocating rack 2-13 in spring
It is slided to the right in seat 2-14, reciprocating rack 2-13 drives two driven gear 2-15 around own axis, two driven gears
2-15 drives two L-type kelly 2-17 to be turned out simultaneously, when the telescopic rod on electric telescopic rod 2-9 is withdrawn, reciprocating block slider
2-10 is moved to the left under the elastic force effect of spring 2-18, while reciprocating rack 2-13 is moved to the left and drives two L-type kelly 2-
17 slide into horizontality to inner end.
The feeder 3 includes cylinder 3-1, shaft 3-2, powered drive wheel 3-3, snap ring 3-4, forming disk 3-5, rotation
Conveying blade 3-6 and shearing cutterhead 3-7;The left upper end of cylinder 3-1 is provided with feed inlet, and shaft 3-2 is rotated by rolling bearing units
It is connected to one end of cylinder 3-1, shaft 3-2 has axially position, and one end of shaft 3-2 is fixedly connected with powered drive wheel 3-3,
Powered drive wheel 3-3 is overlapped with the axis of drive shaft 2-5, and powered drive wheel 3-3 has axially position, and snap ring 3-4 is fixedly connected
On the inner wall of powered drive wheel 3-3, the other end of shaft 3-2 is rotatably connected on forming disk 3-5 by rolling bearing units, molding
Disk 3-5 is fixedly connected on the inner wall of the cylinder 3-1 other end, and multiple circular through holes I are evenly arranged on forming disk 3-5, rotation
Conveying blade 3-6 is fixedly connected on shaft 3-2, and rotation conveying blade has axially position, and rotation conveying blade 3-6 is located at cylinder
In body 3-1;Shearing cutterhead 3-7 is rotatably connected on the right end of cylinder 3-1 by rolling bearing units, and shearing cutterhead has axially position,
The middle-end clearance fit of cutterhead 3-7 is sheared on shaft 3-2, shearing cutterhead 3-7 is bonded with forming disk 3-5;Motor rack 2-1 is fixed
It is connected on cylinder 3-1, cylinder 3-1 is fixedly connected on tub plate 1-2;The feeder 3 when in use, when two L-types
When the outer end of kelly 2-17 is acted against on snap ring 3-4, two L-type kelly 2-17 turn around the axis both clockwise of central axis 2-3
It will drive powered drive wheel 3-3 when dynamic to rotate counterclockwise around own axes, powered drive wheel 3-3 drives shaft 3-2 around itself axis
Line rotates counterclockwise, and shaft 3-2 drives rotation conveying blade 3-6 to rotate counterclockwise around own axes, and rotation conveying blade 3-6 is suitable
Hour hands rotation conveys to the right the material dropped into cylinder 3-1 from feed inlet, and material is by the circular through hole I on forming disk 3-5
In rodlike extrusion, shears when cutterhead 3-7 is rotated clockwise and rodlike material is cut into impartial section shape.
The grain forming sieve seat 4 includes that semicircle seat 4-1, semicircular ring 4-2, semicircular ring slide 4-3, the semicircular ring of sieving is slided
Slot 4-4, short axle 4-5 and transmission gear 4-6;Semicircle sieve seat 4-1 is located at the underface of forming disk 3-4, semicircle sieve seat 4-1's
Multiple circular through holes II are provided on semicircle bottom surface, the both ends of semicircle sieve seat 4-1 are fixedly connected to a semicircular ring 4-
2, two semicircular ring slide 4-3 are symmetrically fixedly connected on bottom plate 1-1, are provided with one and half on two semicircular ring slide 4-3
Annulus sliding slot 4-4, two semicircular ring 4-2 are slidably connected at respectively in two semicircle circular slide way 4-4, and semicircle sieve seat 4-1 passes through
Two semicircular ring 4-2 can be rotated on two semicircular ring slide 4-3;Short axle 4-5 is fixedly connected on a left side of semicircle sieve seat 4-1
End, semicircular ring 4-2, short axle 4-5 are overlapped with the axis of semicircle sieve seat 4-1, and transmission gear 4-6 is fixedly connected on short axle 4-5,
Transmission gear 4-6 has axially position;Material collecting box 1-3 is located between two semicircular ring slide 4-3.The grain forming sieves seat
4 when in use, and the material for being cut into section shape is dropped under gravity in semicircle sieve seat 4-1, shears cutterhead 3-7 up time
Needle can intermittently band nutating gear 4-6 rotate counterclockwise when rotating around own axes, and shearing cutterhead 3-7 and transmission gear 4-6 is nibbled
When closing transmission, transmission gear 4-6 drives short axle 4-5 to rotate counterclockwise around own axes, and short axle 4-5 drives semicircle sieve seat 4-1
It is rotated counterclockwise on two semicircular ring slide 4-3 around own axes, when shearing cutterhead 3-7 and transmission gear 4-6 are disengaged from,
Since semicircle sieve seat 4-1 is semicircular structure, semicircle sieve seat 4-1 can set back under gravity, shear cutterhead
When 3-7 is engaged again with transmission gear 4-6, semicircle sieve seat 4-1 continues around own axes and rotates counterclockwise, and realizes semicircle sieve
The reciprocating rotation of seat 4-1, when semicircle sieve seat 4-1 rotation, drives internal section shape material constantly to roll grinding, up to material is ground
When wearing into consistent with the diameter of circular through hole II, spherical material is dropped into material collecting box 1-3 by circular through hole II and is collected.
When the first batch materials are dropped into semicircle sieve seat 4-1, when the telescopic rod on electric telescopic rod 2-9 is withdrawn, two L
Type kelly 2-17 slides into horizontality to inner end, stopping discharging being separated with powered drive wheel 3-3, when the first batch materials have been ground
After dropping into material collecting box 1-3, after the material collecting box 1-3 that current collection has material is taken away, gathering materials for a new sky is placed
Box 1-3 waiting is collected next time, and the telescopic rod on electric telescopic rod 2-9 stretches out, and the outer end of two L-type kelly 2-17 acts against
On snap ring 3-4, powered drive wheel 3-3 rotation is driven to continue to discharge again, realizes circulation reciprocating type work.
Specific embodiment 2:
Illustrate present embodiment below with reference to Fig. 1-2 1, the powered drive wheel 2 further includes driving pulley 2-4, actively
Belt wheel 2-4 has axially position, and the middle-end of central axis 2-3 is fixedly connected with driving pulley 2-4.
A kind of environment-friendly biomass fuel pellet moulding device further includes anti-clogging feed pipe 5, and described is anti-blocking
Filling in expects pipe 5 includes charging seat 5-1, transmission shaft 5-2, drive pulley 5-3, driving gear 5-4, driving gear 5-5, driven gear
5-6, driven shaft 5-7 and stirring blade 5-8;Charging seat 5-1 is fixedly connected on the inside of the feed inlet on cylinder 3-1, transmission shaft
5-2 is rotatably connected on the both sides of the face of charging seat 5-1 by rolling bearing units, and transmission shaft 5-2 has axially position, drive pulley
5-3 and driving gear 5-4 is respectively fixedly connected at the both ends of transmission shaft 5-2, and drive pulley 5-3 and driving gear 5-4 have axis
To positioning, drive pulley 5-3 is connect with driving pulley 2-4 by belt V belt translation, and driving gear 5-4 is nibbled with shearing cutterhead 3-7
Transmission is closed, driving gear 5-5 is fixedly connected on transmission shaft 5-2, and driving gear 5-5 has an axially position, and driving gear 5-5
Between charging seat 5-1 and driving gear 5-4, driving gear 5-5 and driven gear 5-6 engaged transmission, driven gear 5-6 are fixed
It is connected on driven shaft 5-7, driven gear 5-6 has axially position, and the both ends of driven shaft 5-7 are rotated by rolling bearing units respectively
It is connected on the both sides of the face of charging seat 5-1, driven shaft 5-7 has an axially position, solid on driven shaft 5-7 and transmission shaft 5-2
There are two stirring blade 5-8 for fixed connection;The stirring blade 5-8 is located in charging seat 5-1, and stirring blade 5-8 has axial fixed
Position.The anti-clogging feed pipe 5 when in use, knock down in charging seat 5-1 by material, and the material in charging seat 5-1 is by charging
Mouth is dropped into cylinder 3-1, and driving pulley 2-4 can drive drive pulley 5-3 to rotate counterclockwise around own axes, drive pulley 5-
3 drive transmission shaft 5-2 are rotated counterclockwise around own axes, and transmission shaft 5-2 drives driving gear 5-4 to turn counterclockwise around own axes
Dynamic, driving gear 5-4 drives shearing cutterhead 3-7 to rotate clockwise, and transmission shaft 5-2 drives driving gear 5-5 inverse around own axes
Hour hands rotation, driving gear 5-5 drive driven gear 5-6 to rotate clockwise around own axes, and driven gear 5-6 drives driven shaft
5-7 is rotated clockwise around own axes, and transmission shaft 5-2 drives two stirring blade 5-8 on transmission shaft 5-2 to rotate counterclockwise,
Driven shaft 5-7 drives two stirring blade 5-8 on driven shaft 5-7 to rotate clockwise, and four stirring blade 5-8 rotations prevent
Material blocks charging seat 5-1, and two on transmission shaft 5-2 and driven shaft 5-7 stirring blade 5-8 is relatively rotated, and realizes more preferable
Mixing effect.
The stirring blade 5-8 includes sleeve 5-8-1 and agitating plate 5-8-2;The inner ring of sleeve 5-8-1 is fixedly connected on
On transmission shaft 5-2 or driven shaft 5-7, the outer ring of sleeve 5-8-1 is uniformly surrounded with multiple agitating plate 5-8-2, agitating plate 5-
8-2 is rotated under the drive of sleeve 5-8-1 and is stirred to material.
Two stirring blade 5-8 on two stirring blade 5-8 and transmission shaft 5-2 on the driven shaft 5-7 interlock
Setting, realizes better mixing effect.
Specific embodiment 3:
Illustrate present embodiment below with reference to Fig. 1-2 1, the shearing cutterhead 3-7 includes outer ring knife rest 3-7-1, muscle
Plate 3-7-2, gear ring 3-7-3, cutoff tool 3-7-4, inner circular knife rest 3-7-5, connecting plate 3-7-6 and arc-shaped rack 3-7-7;Inner circle
Multiple cutoff tool 3-7-4, inner circular knife rest 3- are fixedly connected between shape knife rest 3-7-5 and the right end of outer ring knife rest 3-7-1
On shaft 3-2, the left end of outer ring knife rest 3-7-1 is rotatably connected on cylinder 3-1 7-5 clearance fit by rolling bearing units,
Outer ring knife rest 3-7-1 has axially position, and gear ring 3-7-3 is fixedly connected on outer ring knife rest 3- by three gusset 3-7-2
The outer ring of 7-1, gear ring 3-7-3 and driving gear 5-4 engaged transmission;The left side of the cutoff tool 3-7-4 and forming disk 3-5 are pasted
It closes;Three arc-shaped rack 3-7-7 pass through two connecting plate 3-7-6 and are fixedly connected on outer ring knife rest 3-7-1.The cutting
The right side of knife 3-7-4 is bonded with forming disk 3-5.When in use, driving gear 5-4 drives gear ring to the shearing cutterhead 3-7
3-7-3 is rotated clockwise around own axes, and gear ring 3-7-3 drives outer ring knife rest 3-7-1 around shaft 3- by gusset 3-7-2
The rotation of 2 axis both clockwises, outer ring knife rest 3-7-1 drive multiple cutoff tool 3-7-4 to rotate around shaft 3-2 axis both clockwise,
Material is cut off;Outer ring knife rest 3-7-1 drives three arc-shaped rack 3-7-7 to pass through around axis by connecting plate 3-7-6
The rotation of 3-2 axis both clockwise can band when one of arc-shaped rack 3-7-7 goes to lower end and transmission gear 4-6 engaged transmission
Nutating gear 4-6 is rotated counterclockwise around own axes, after the arc-shaped rack 3-7-7 of lower end is separated with transmission gear 4-6, is not existed
Band nutating gear 4-6 is rotated counterclockwise around own axes.
Specific embodiment 4:
Illustrate present embodiment below with reference to Fig. 1-2 1, when the telescopic rod of electric telescopic rod 2-9 is located at vee gutter 2-12
Left end when, the outer end of two L-type kelly 2-17 acts against on snap ring 3-4, drive powered drive wheel 3-3 rotation.
The outer end face of the outer end face of the arc-shaped rack 3-7-7 and transmission gear 4-6 in the same plane, arc-shaped rack
3-7-7 can be with transmission gear 4-6 engaged transmission when rotating.
A kind of working principle of environment-friendly biomass fuel particle preparation facilities of the present invention: when use device, described is dynamic
When in use, motor 2-2 by wire connecting power and control switch and is opened for power driving wheel 2, and motor 2-2 drives central axis
2-3 is rotated counterclockwise around own axes, and central axis 2-3 drives drive shaft 2-5 to rotate counterclockwise around own axes, and raised line 2-11 is sliding
Dynamic be connected in raised line slot 2-7 plays the role of limition orientation to reciprocating block slider 2-10, makes reciprocating block slider 2-10 can only be along drive
The axis of moving axis 2-5 moves left and right, while drive shaft 2-5 can drive reciprocating block slider 2-10, past double tooth inside drive shaft 2-5
2-13, spring base 2-14, driven gear 2-15, cylindrical shaft 2-16 and L-type kelly 2-17 are rotated around the axis of drive shaft 2-5;
After electric telescopic rod 2-9 is opened, electricity is worked as due to the setting of vee gutter 2-12 in relaxation state under spring 2-18 normality
Telescopic rod on dynamic telescopic rod 2-9 can squeeze reciprocating block slider 2-10 when stretching out, and so that reciprocating block slider 2-10 is moved right, spring 2-18
It is compressed, reciprocating block slider 2-10 drives reciprocating rack 2-13 to slide to the right in spring base 2-14, and reciprocating rack 2-13 drives two
A driven gear 2-15 drives two L-type kelly 2-17 to be turned out simultaneously around own axis, two driven gear 2-15,
When the telescopic rod on electric telescopic rod 2-9 is withdrawn, reciprocating block slider 2-10 is moved to the left under the elastic force effect of spring 2-18, together
When reciprocating rack 2-13 be moved to the left two L-type kelly 2-17 driven to slide into horizontality to inner end.The feeder 3 exists
In use, two L-type kelly 2-17 are around central axis 2- when the outer end of two L-type kelly 2-17 acts against on snap ring 3-4
It will drive powered drive wheel 3-3 when 3 axis both clockwise rotation to rotate counterclockwise around own axes, powered drive wheel 3-3 drives
Shaft 3-2 is rotated counterclockwise around own axes, and shaft 3-2 drives rotation conveying blade 3-6 to rotate counterclockwise around own axes, is revolved
Turn conveying blade 3-6 and rotate clockwise to the right to convey the material dropped into cylinder 3-1 from feed inlet, material passes through forming disk 3-
Circular through hole I on 5 is in rodlike extrusion, and rodlike material is cut into impartial section shape when rotating clockwise by shearing cutterhead 3-7.
When in use, the material for being cut into section shape drops into semicircle sieve seat 4-1 to the grain forming sieve seat 4 under gravity
It is interior, it can intermittently band nutating gear 4-6 be rotated counterclockwise around own axes when shearing cutterhead 3-7 is rotated clockwise, shear cutterhead
When 3-7 and transmission gear 4-6 engaged transmission, transmission gear 4-6 drives short axle 4-5 to rotate counterclockwise around own axes, short axle 4-5
Semicircle sieve seat 4-1 is driven to rotate counterclockwise on two semicircular ring slide 4-3 around own axes, shearing cutterhead 3-7 and transmission
When gear 4-6 is disengaged from, since semicircle sieve seat 4-1 is semicircular structure, semicircle sieve seat 4-1 under gravity can
It sets back, when shearing cutterhead 3-7 is engaged again with transmission gear 4-6, it is counterclockwise that semicircle sieve seat 4-1 continues around own axes
Rotation, the reciprocating rotation of realization semicircle sieve seat 4-1, section shape material when semicircle sieve seat 4-1 is rotated inside drive constantly turn over
Barrelling, until spherical material is dropped by circular through hole II to gather materials when material is ground into consistent with the diameter of circular through hole II
It is collected in box 1-3.When the first batch materials are dropped into semicircle sieve seat 4-1, the telescopic rod on electric telescopic rod 2-9 is withdrawn
When, two L-type kelly 2-17 slide into horizontality to inner end, stopping discharging being separated with powered drive wheel 3-3, when first object
After abrasive lapping completion is dropped into material collecting box 1-3, after the material collecting box 1-3 that current collections has material is taken away, one is placed newly
Empty material collecting box 1-3 waiting is collected next time, and the telescopic rod on electric telescopic rod 2-9 stretches out, the outer end of two L-type kelly 2-17
It acts against on snap ring 3-4, powered drive wheel 3-3 rotation is driven to continue to discharge again, realize circulation reciprocating type work.Described
Anti-clogging feed pipe 5 when in use, knock down in charging seat 5-1 by material, and the material in charging seat 5-1 drops into cylinder by feed inlet
In 3-1, driving pulley 2-4 can drive drive pulley 5-3 to rotate counterclockwise around own axes, and drive pulley 5-3 drives transmission
Axis 5-2 is rotated counterclockwise around own axes, and transmission shaft 5-2 drives driving gear 5-4 to rotate counterclockwise around own axes, sliding tooth
Wheel 5-4 drives shearing cutterhead 3-7 to rotate clockwise, and transmission shaft 5-2 drives driving gear 5-5 to rotate counterclockwise around own axes,
Driving gear 5-5 drives driven gear 5-6 to rotate clockwise around own axes, and driven gear 5-6 drives driven shaft 5-7 around itself
Axis both clockwise rotation, transmission shaft 5-2 drive two stirring blade 5-8 on transmission shaft 5-2 to rotate counterclockwise, driven shaft 5-7
Two stirring blade 5-8 on driven shaft 5-7 are driven to rotate clockwise, four stirring blade 5-8 rotations prevent material from will feed
Seat 5-1 is blocked, and two stirring blade 5-8 on transmission shaft 5-2 and driven shaft 5-7 are relatively rotated, and realizes better mixing effect.
The right side of the cutoff tool 3-7-4 is bonded with forming disk 3-5.The shearing cutterhead 3-7 when in use, drives gear 5-4
Drive gear ring 3-7-3 rotated clockwise around own axes, gear ring 3-7-3 by gusset 3-7-2 drive outer ring knife rest 3-7-1 around
The rotation of shaft 3-2 axis both clockwise, outer ring knife rest 3-7-1 drive multiple cutoff tool 3-7-4 around shaft 3-2 axis up time
Needle rotation, cuts off material;Outer ring knife rest 3-7-1 drives three arc-shaped rack 3-7-7 to pass through by connecting plate 3-7-6
It is rotated around axis 3-2 axis both clockwise, when one of arc-shaped rack 3-7-7 goes to lower end and transmission gear 4-6 engaged transmission
When, it will drive transmission gear 4-6 and rotated counterclockwise around own axes, the arc-shaped rack 3-7-7 of lower end is separated with transmission gear 4-6
Afterwards, it is not rotated counterclockwise in band nutating gear 4-6 around own axes.
Certainly, above description is not limitation of the present invention, and the present invention is also not limited to the example above, the art
The variations, modifications, additions or substitutions that those of ordinary skill is made within the essential scope of the present invention also belong to guarantor of the invention
Protect range.
Claims (8)
1. a kind of environment-friendly biomass fuel particle preparation facilities, including pedestal (1), powered drive wheel (2), feeder (3) and
Grain forming sieves seat (4), it is characterised in that: the pedestal (1) includes bottom plate (1-1), tub plate (1-2) and material collecting box (1-
3);Tub plate (1-2) is fixedly connected on bottom plate (1-1), and material collecting box (1-3) is placed on bottom plate (1-1);
The powered drive wheel (2) includes motor rack (2-1), motor (2-2), central axis (2-3), drive shaft (2-5), rectangle
Slot (2-6), raised line slot (2-7), circular through hole (2-8), electric telescopic rod (2-9), reciprocating block slider (2-10), raised line (2-11),
Vee gutter (2-12), reciprocating rack (2-13), spring base (2-14), driven gear (2-15), cylindrical shaft (2-16), L-type card
Bar (2-17) and spring (2-18);Motor (2-2) is fixedly connected on motor rack (2-1), and one end of central axis (2-3) passes through connection
Axis device is connected on the output shaft of motor (2-2), and the other end of central axis (2-3) is fixedly connected with drive shaft (2-5), drive shaft
It is provided with rectangular channel (2-6) in (2-5), the both ends on the inside of drive shaft (2-5) are provided with a raised line slot (2-7), and two convex
Bar groove (2-7) is connected to rectangular channel (2-6), and the bottom end of drive shaft (2-5) is provided with circular through hole (2-8), circular through hole (2-
8) it is connected to rectangular channel (2-6), electric telescopic rod (2-9) is fixedly connected on the inside of circular through hole (2-8), reciprocating block slider (2-
10) it is located in rectangular channel (2-6), the both ends of reciprocating block slider (2-10) are provided with a raised line (2-11), two raised line (2-
11) it is slidably connected in two raised line slots (2-7), is provided with vee gutter (2-12) in reciprocating block slider (2-10) respectively, it is electronic
The telescopic rod of telescopic rod (2-9) is located in vee gutter (2-12);The outer end of the reciprocating block slider (2-10) is fixedly connected with past
Double tooth item (2-13), reciprocating rack (2-13) are slidably connected on spring base (2-14), and spring base (2-14) is fixedly connected on drive
On the inner wall of moving axis (2-5), two driven gears (2-15) respectively with the two sides of reciprocating rack (2-13) engaged transmission, two from
Moving gear (2-15) is respectively fixedly connected on two cylindrical shafts (2-16), and two cylindrical shafts (2-16) are rotatably connected on driving
On the inner wall of axis (2-5);L-type kelly (2-17) is fixedly connected on the driven gear (2-15);Reciprocating block slider (the 2-
10) spring (2-18) is set on the reciprocating rack (2-13) between spring base (2-14);
The feeder (3) includes cylinder (3-1), shaft (3-2), powered drive wheel (3-3), snap ring (3-4), forming disk
(3-5), rotation conveying blade (3-6) and shearing cutterhead (3-7);The left upper end of cylinder (3-1) is provided with feed inlet, shaft (3-
2) it is rotatably connected on one end of cylinder (3-1), one end of shaft (3-2) is fixedly connected with powered drive wheel (3-3), power transmission
Wheel (3-3) is overlapped with the axis of drive shaft (2-5), and snap ring (3-4) is fixedly connected on the inner wall of powered drive wheel (3-3), is turned
The other end of axis (3-2) is rotatably connected on forming disk (3-5), and forming disk (3-5) is fixedly connected on cylinder (3-1) other end
On inner wall, multiple circular through holes I are evenly arranged on forming disk (3-5), rotation conveying blade (3-6) is fixedly connected on shaft
On (3-2), rotation conveying blade (3-6) is located in cylinder (3-1);Shearing cutterhead (3-7) is rotatably connected on the right side of cylinder (3-1)
The middle-end clearance fit of cutterhead (3-7) is sheared on shaft (3-2) in end, and shearing cutterhead (3-7) is bonded with forming disk (3-5);Electricity
Rack (2-1) is fixedly connected on cylinder (3-1), and cylinder (3-1) is fixedly connected on tub plate (1-2);
Grain forming sieve seat (4) includes semicircle sieve seat (4-1), semicircular ring (4-2), semicircular ring slide (4-3), semicircle
Circular slide way (4-4), short axle (4-5) and transmission gear (4-6);Semicircle sieve seat (4-1) is located at the underface of forming disk (3-4),
Multiple circular through holes II are provided on the semicircle bottom surface of semicircle sieve seat (4-1), the both ends of semicircle sieve seat (4-1) are fixed
It is connected with a semicircular ring (4-2), two semicircular ring slides (4-3) are symmetrically fixedly connected on bottom plate (1-1), two semicircular rings
A semicircle circular slide way (4-4) is provided on slide (4-3), two semicircular rings (4-2) are slidably connected at two semicircles respectively
In circular slide way (4-4);Short axle (4-5) is fixedly connected on the left end of semicircle sieve seat (4-1), semicircular ring (4-2), short axle (4-5)
It is overlapped with the axis of semicircle sieve seat (4-1), transmission gear (4-6) is fixedly connected on short axle (4-5);The position material collecting box (1-3)
Between two semicircular ring slides (4-3).
2. a kind of environment-friendly biomass fuel particle preparation facilities according to claim 1, it is characterised in that: described is dynamic
Power driving wheel (2) further includes driving pulley (2-4), and the middle-end of central axis (2-3) is fixedly connected with driving pulley (2-4).
3. a kind of environment-friendly biomass fuel particle preparation facilities according to claim 2, it is characterised in that: described one
Kind environment-friendly biomass fuel pellet moulding device further includes anti-clogging feed pipe (5), and the anti-clogging feed pipe (5) includes
Charging seat (5-1), transmission shaft (5-2), drive pulley (5-3), driving gear (5-4), driving gear (5-5), driven gear (5-
6), driven shaft (5-7) and stirring blade (5-8);Charging seat (5-1) is fixedly connected on the inside of the feed inlet on cylinder (3-1),
Transmission shaft (5-2) is rotatably connected on the both sides of the face of charging seat (5-1), and drive pulley (5-3) and driving gear (5-4) are respectively
The both ends of transmission shaft (5-2) are fixedly connected on, drive pulley (5-3) is connect with driving pulley (2-4) by belt V belt translation, is driven
Moving gear (5-4) and shearing cutterhead (3-7) engaged transmission, driving gear (5-5) are fixedly connected on transmission shaft (5-2), actively
Gear (5-5) is located between charging seat (5-1) and driving gear (5-4), and driving gear (5-5) is engaged with driven gear (5-6)
Transmission, driven gear (5-6) are fixedly connected on driven shaft (5-7), and the both ends of driven shaft (5-7) are rotatably connected on charging respectively
On the both sides of the face of seat (5-1), two stirring blades (5-8) are fixedly connected on driven shaft (5-7) and transmission shaft (5-2);
The stirring blade (5-8) is located in charging seat (5-1).
4. a kind of environment-friendly biomass fuel particle preparation facilities according to claim 3, it is characterised in that: described stirs
Mixing blade (5-8) includes sleeve (5-8-1) and agitating plate (5-8-2);The inner ring of sleeve (5-8-1) is fixedly connected on transmission shaft
On (5-2) or driven shaft (5-7), the outer ring of sleeve (5-8-1) is uniformly surrounded with multiple agitating plates (5-8-2).
5. a kind of environment-friendly biomass fuel particle preparation facilities according to claim 4, it is characterised in that: it is described from
Two stirring blades (5-8) on moving axis (5-7) are staggered with two stirring blades (5-8) on transmission shaft (5-2).
6. a kind of environment-friendly biomass fuel particle preparation facilities according to claim 3, it is characterised in that: described cuts
Cutter disc (3-7) includes outer ring knife rest (3-7-1), gusset (3-7-2), gear ring (3-7-3), cutoff tool (3-7-4), inner circular
Knife rest (3-7-5), connecting plate (3-7-6) and arc-shaped rack (3-7-7);Inner circular knife rest (3-7-5) and outer ring knife rest (3-7-
1) it is fixedly connected between right end multiple cutoff tools (3-7-4), inner circular knife rest (3-7-5) clearance fit is at shaft (3-2)
On, the left end of outer ring knife rest (3-7-1) is rotatably connected on cylinder (3-1), and gear ring (3-7-3) passes through three gusset (3-7-
2) outer ring of outer ring knife rest (3-7-1), gear ring (3-7-3) and driving gear (5-4) engaged transmission are fixedly connected on;It is described to cut
The left side of breaking (3-7-4) is bonded with forming disk (3-5);Three arc-shaped racks (3-7-7) pass through two connecting plate (3-7-
6) it is fixedly connected on outer ring knife rest (3-7-1).
7. a kind of environment-friendly biomass fuel particle preparation facilities according to claim 1, it is characterised in that: stretched when electronic
When the telescopic rod of contracting bar (2-9) is located at the left end of vee gutter (2-12), the outer end of two L-type kellies (2-17) is acted against
On snap ring (3-4).
8. a kind of environment-friendly biomass fuel particle preparation facilities according to claim 6, it is characterised in that: the arc
The outer end face of the outer end face of shape rack gear (3-7-7) and transmission gear (4-6) are in the same plane.
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