CN108176300B - A kind of new bio new energy enzyme preparation facilities - Google Patents
A kind of new bio new energy enzyme preparation facilities Download PDFInfo
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- CN108176300B CN108176300B CN201810142515.3A CN201810142515A CN108176300B CN 108176300 B CN108176300 B CN 108176300B CN 201810142515 A CN201810142515 A CN 201810142515A CN 108176300 B CN108176300 B CN 108176300B
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- block
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Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F29/00—Mixers with rotating receptacles
- B01F29/80—Mixers with rotating receptacles rotating about a substantially vertical axis
- B01F29/83—Mixers with rotating receptacles rotating about a substantially vertical axis with rotary paddles or arms, e.g. movable out of the receptacle
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F35/00—Accessories for mixers; Auxiliary operations or auxiliary devices; Parts or details of general application
- B01F35/90—Heating or cooling systems
- B01F35/92—Heating or cooling systems for heating the outside of the receptacle, e.g. heated jackets or burners
-
- 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
- C10L5/445—Agricultural waste, e.g. corn crops, grass clippings, nut shells or oil pressing residues
-
- 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
- C10L9/00—Treating solid fuels to improve their combustion
- C10L9/10—Treating solid fuels to improve their combustion by using additives
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F35/00—Accessories for mixers; Auxiliary operations or auxiliary devices; Parts or details of general application
- B01F35/90—Heating or cooling systems
- B01F2035/99—Heating
-
- 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)
- Chemical Kinetics & Catalysis (AREA)
- Oil, Petroleum & Natural Gas (AREA)
- Organic Chemistry (AREA)
- Engineering & Computer Science (AREA)
- Combustion & Propulsion (AREA)
- Life Sciences & Earth Sciences (AREA)
- Agronomy & Crop Science (AREA)
- Portable Nailing Machines And Staplers (AREA)
- Apparatus Associated With Microorganisms And Enzymes (AREA)
Abstract
The invention discloses a kind of new bio new energy enzyme preparation facilities,Including device body,Igniter and transport device,Wherein described device body includes body A,It is provided in the body A every dividing chamber,It is described to be installed with motor A every dividing in chamber lower end wall,The outflow axis upper surface of the motor A, which is connected by power, is provided with reduction of speed machine,The upper surface of the reduction of speed machine, which is connected by power, is provided with upward extended connecting shaft,It is described every dividing cavity wall outer surface to be installed with thermally conductive case,Thermal conductive cavity is provided in the thermally conductive case,Thermal isolation block is installed in the thermal conductive cavity lower end wall,The connecting shaft is rotatable to be penetrated through the thermal isolation block and is extended into the thermal conductive cavity upwards,The thermal conductive cavity inboard wall outer surface connects to being provided with rotary box,Apparatus of the present invention structure is simple,This device easy to use can be realized mixed straw under high temperature environment and additive,Preparation efficiency is high.
Description
Technical field
The present invention relates to biological new energy fields, and in particular to a kind of new bio new energy enzyme preparation facilities.
Background technique
Biological new energy, also known as clean new energy, there is the title of green energy resource, its maximum feature be after burning or use not
Environmental pollution is caused, is conducive to maintain the ecological balance.Wherein, bio-fuel is important bioenergy, and stalk fuel is a kind of
Environmental protection is cleaned, the reproducible energy, in stalk operation process, some specific additives can be added in stalk, these additions
Mostly contain enzyme in agent, wherein just there is Thermozyme, Thermozyme has a higher catalytic efficiency under high temperature environment, low temperature or
Room temperature can make it quickly lose activity, therefore additive package needs to mix under high temperature environment in stalk, traditional preparation
Unit efficiency is low, and temp autocontrolled property processed is poor.
Summary of the invention
The purpose of the present invention is to provide a kind of new bio new energy enzyme preparation facilities, can overcome the prior art
Drawbacks described above.
According to the present invention, a kind of new bio new energy enzyme preparation facilities of apparatus of the present invention, including device body, point
Fiery device and transport device, wherein described device body includes body A, is provided in the body A every dividing chamber, described every dividing chamber
Motor A is installed in lower end wall, the outflow axis upper surface of the motor A is connected by power the reduction of speed machine that is provided with, the reduction of speed
The upper surface of machine, which is connected by power, is provided with upward extended connecting shaft, described every dividing cavity wall outer surface to be installed with thermally conductive case, described
It is provided with thermal conductive cavity in thermally conductive case, thermal isolation block, the rotatable perforation institute of connecting shaft are installed in the thermal conductive cavity lower end wall
It states thermal isolation block and is extended into the thermal conductive cavity upwards, the thermal conductive cavity inboard wall outer surface connects to being provided with rotary box, institute
It states and is fixedly installed electric rotating motivation in rotary box inner bottom wall, power is connected with rotation mixing at the top of the electric rotating motivation
Axis is equidistantly provided with multi-disc on rotation mixing axis and mixes leaf, and the rotary box lower end surface and the connecting shaft upper surface are solid
It is fixed to be cooperatively connected, it is provided with cavity in the rotary box, leads in the cavity upper end wall and is provided with and the external addition led to
Mouthful, described every dividing chamber right side to lead to the reaction chamber being provided in the body A, the upper surface the body A is installed with ventilation
Road is provided with breather chamber up and down in the air passage, and the breather chamber is led to the reaction chamber, under the reaction chamber
Lead to be provided with to extend the out external lower end surface pipe fitting A, the pipe fitting A downwards and lead in end wall and is provided with valve A, the valve body
A, which leads to lower end surface, is provided with pipe fitting B, leads to be provided in the reaction chamber right end wall and extends out external pipe fitting C outward, described
Pipe fitting C, which leads to right side, is provided with valve B, and the valve B right side, which is led to, is provided with pipe fitting D, the institute in the body A
It states the outer surface pipe fitting C and is provided with even block, lead between the even block and be provided with pipe fitting, close to the described of the upper surface the body A
Even block upper surface, which leads to be provided with to extend into the external upper surface pipe fitting E, the pipe fitting E upwards and lead to, is provided with valve body C, described
Valve body C, which leads to upper surface, is provided with pipe fitting F, and the even block lower end surface far from the upper surface the body A, which is led to, to be provided with downwards
External comb is extended into, the comb lower end surface, which is led to, is provided with valve body D, and the valve body D, which leads to lower end surface, is provided with pipe fitting
G leads in the reaction chamber upper end wall and is provided with igniter, and the igniter includes body B, the lower end surface the body B
It is installed with igniter, gas chamber is provided in the body B, the gas chamber lower end wall, which is installed with, leads connecting leg A, institute with what outside was led to
It states to lead the upper surface connecting leg A and lead to and is provided with electrically-controlled valve B, the electrically-controlled valve B is fixed with the gas chamber lower end wall, described to lead connecting leg A
Right side lead to be provided with extend into outward it is external lead connecting leg B, it is described lead the upper surface connecting leg B and lead to be provided with electrically-controlled valve A, it is described
Electrically-controlled valve A, which leads to upper surface to be provided with, leads connecting leg C, and the gas chamber upper end wall leads to the pushing block being provided in the body B
Chamber, the pushing block is intracavitary slide be provided with the first pushing block, the pushing block chamber upper end wall, which is led to, to be provided with positioned at the body B
Interior breather chamber, the breather chamber aft bulkhead is installed with solid block, is provided in the solid block and slides chamber, described to slide intracavitary slide
Handle is slided in capable being provided with, and the handle lower end surface of sliding is connect with first pushing block upper surface secure fit, the breather chamber
Upper end wall leads to the chamber that leads to being provided in the body B, and the chamber left and right sides inner wall zygomorphism that leads to leads to setting
Have horizontal chamber, the horizontal chamber leads to outside, it is described lead to pneumatic cylinder is installed in chamber upper end wall, the push rod lower end of the pneumatic cylinder
Face, which is installed with, is provided with transport with second pushing block for leading to chamber left and right sides inner wall and sliding mating connection, the top body A
Device, the transport device include the sliding rail being fixedly arranged on hanger, and the electromagnetism that is provided with that the sliding rail front end face can slide slides
Block, the fixed organism C of electromagnetism sliding block front end face, the interior setting of the fixed organism D in the upper surface the body C, the body D
There is transmission cavity, motor B is installed in the transmission cavity right end wall, the outflow axis left side of the motor B is installed with cone and turns
A is taken turns, cone runner B has been engaged below the cone runner A, the lower end surface the cone runner B is installed with transmission axle, the transmission axle
The rotatable perforation transmission cavity lower end wall simultaneously extends downwards, is provided with perpendicular chamber in the body C, in the perpendicular chamber left and right sides
Wall zygomorphism leads to be provided with and connect with the external slide slot led to, the transmission axle and the perpendicular chamber lower end wall rotatable engagement
It connects, transmission axle outer surface threaded engagement is connected with guide plate, and the guide plate and the slide slot slide cooperation and connect
It connects, described guide plate or so side end face is installed with downward extended joins, and the joins lower end surface is installed with Armco magnetic iron, institute
It states and is provided with sound insulation cushioning device on motor A.
Further technical solution, it is described to be even provided with sealing ring in block, cavity groove C is provided in the sealing ring, it is described
Be provided with cavity groove B and the pipe fitting C in pipe fitting C and penetrate through the cavity groove C, be provided with cavity groove A in the pipe fitting E, the cavity groove A with
The cavity groove C leads to, to improve the heat resistance of device.
Further technical solution, the connecting shaft is rotatable to be passed through the thermal isolation block and fixes with the rotary box,
To improve the flexibility of device.
Further technical solution, the even position of block and external contact are provided with packaged unit and seal the pipe fitting C
It closes in the even block, to improve the closure of device.
Further technical solution, the sound insulation cushioning device include being fixed at the motor A left and right sides
Acoustic pad and be fixed at the bradyseism plate in the front and rear sides motor A face, the acoustic pad is connected with the bradyseism plate
It connects.
The beneficial effects of the invention are as follows:
In the initial state due to apparatus of the present invention, the motor A, pneumatic cylinder and motor B are in the shape that stops working
State, the valve A, valve body D, valve B, valve body C, electrically-controlled valve A and electrically-controlled valve B are in close state, so that above structure be made to exist
It is located at initial position when original state, can be adjusted in follow-up work and is conducive to maintenance and installation.
When the device is running, stalk and additive are poured into the adding mouth, make to fill stalk in the cavity and added
Add agent, the valve body C and valve body D are opened, flows into cooling water out of described pipe fitting F and by pipe fitting G outflow, and with outside
Return-flow system forming circuit, the valve B are opened, are passed through natural gas into the pipe fitting D, dissipate natural gas by the pipe fitting C
It sends out into the reaction chamber, the pneumatic cylinder drives second pushing block to push down on, and passes air through the horizontal chamber, leads to chamber
It is moved down with handle is slided described in breather chamber and promotion, first pushing block is made to skid off the pushing block chamber, admitted air into described
In gas chamber, the pneumatic cylinder drives second pushing block to move up, and the handle that slides slides described in extruding when moving down
Intracavitary air slides intracavitary air pressure described in increase, then makes described to slide handle and rise to the horizontal chamber in first pushing block
Return when top makes first pushing block slide into intracavitary is formationed of the pushing block and closes, and the pneumatic cylinder continuous work is by the gas
Interior is full of pressure-air, and the electrically-controlled valve A is opened, and fuel oil is passed through in connecting leg C to described lead, fuel oil by it is described lead connecting leg B into
It being led in connecting leg A described in entering, the electrically-controlled valve B is opened, and it mixes air with fuel oil and is sprayed outward by the connecting leg A that leads, the point
The mixture of firearm igniting fuel oil and air, the pipe fitting B are opened, air are passed through in the reaction chamber by the pipe fitting A and is tieed up
Burning is held, the exhaust gas for generation of burning is passed into outside by the breather chamber, and the heat in the reaction chamber passes through the thermally conductive case
It is transmitted to the rotary box.
When operation carries out, the motor A work makes the reduction of speed machine drive the connecting shaft rotation, the then rotation
Case is rotated.
When operation finishes, the electromagnetism sliding block drives the body C to move to right above the rotary box, the electricity
Motivation B drives the cone runner A rotation, drives the transmission axle to rotate after rotating the cone runner B, with the transmission axle spiral shell
It revolving the guide plate being cooperatively connected to slide up and down, drives the Armco magnetic iron close to the rotary box upper surface, the Armco magnetic iron works,
Fix the Armco magnetic iron with the rotary box, the motor B drives the guide plate to move upward out the thermal conductive cavity again,
The rotary box is taken to loading and unloading area, to improve the transport high efficiency of device.
Apparatus of the present invention structure is simple, this device easy to use can be realized mixed straw under high temperature environment and addition
Agent, preparation efficiency are high.
The above, the specific embodiment only invented, but invent protection scope be not limited thereto, it is any without
The change or replacement that creative work is expected are crossed, should all be covered within the protection scope of invention.Therefore, the protection scope of invention
It should be determined by the scope of protection defined in the claims.
Detailed description of the invention
It, below will be to embodiment or existing in order to illustrate more clearly of inventive embodiments or technical solution in the prior art
Attached drawing needed in technical description is briefly described, it should be apparent that, the accompanying drawings in the following description is only to invent
Some embodiments for those of ordinary skill in the art without creative efforts, can also basis
These attached drawings obtain other attached drawings.
Fig. 1 is a kind of overall structure diagram of new bio new energy enzyme preparation facilities of the invention;
Fig. 2 is igniter schematic diagram of internal structure in Fig. 1;
Fig. 3 is transport device schematic diagram of internal structure in Fig. 1;
Fig. 4 is the schematic diagram in the direction A-A in Fig. 1;
Fig. 5 is rotary box schematic diagram of internal structure of the invention;
Fig. 6 is the structural schematic diagram of motor A of the invention.
Specific embodiment
All features disclosed in this specification or disclosed all methods or in the process the step of, in addition to mutually exclusive
Feature and/or step other than, can combine in any way.
This specification(Including any accessory claim, abstract and attached drawing)Disclosed in any feature, except non-specifically chatting
It states, can be replaced by other alternative features that are equivalent or have similar purpose.That is, unless specifically stated, each feature is only
It is an example in a series of equivalent or similar characteristics.
As shown in figures 1 to 6, a kind of new bio new energy enzyme preparation facilities of the invention, including device body, igniting
Device and transport device, wherein described device body includes body A100, is provided in the body A100 every dividing chamber 160, institute
It states and is installed with motor A124 every dividing in 160 lower end wall of chamber, the outflow axis upper surface of the motor A124 is connected by power setting
There is a reduction of speed machine 123, the upper surface of the reduction of speed machine 123, which is connected by power, is provided with upward extended connecting shaft 122, described every dividing chamber
160 inboard wall outer surfaces are installed with thermally conductive case 101, and thermal conductive cavity 161,161 lower end of thermal conductive cavity are provided in the thermally conductive case 101
Thermal isolation block 121 is installed in wall, the connecting shaft 122 is rotatable to be penetrated through the thermal isolation block 121 and extend into upwards described
In thermal conductive cavity 161,161 inboard wall outer surface of thermal conductive cavity connects to being provided with rotary box 102,102 inner bottom wall of rotary box
In be fixedly installed electric rotating motivation 401, the 401 top power of electric rotating motivation is connected with rotation mixing axis 402, institute
It states and is equidistantly provided with multi-disc on rotation mixing axis 402 and mixes leaf 403, on 102 lower end surface of rotary box and the connecting shaft 122
The connection of end face secure fit, is provided with cavity 103 in the rotary box 102, lead in 103 upper end wall of cavity be provided with
The adding mouth 104 that outside is led to, it is described every dividing on the right side of chamber 160 reaction chamber 105 for leading to and being provided in the body A100,
The upper surface the body A100 is installed with air passage 107, and breather chamber 106 up and down, institute are provided in the air passage 107
It states breather chamber 106 to lead to the reaction chamber 105, leads in 105 lower end wall of reaction chamber and be provided with downward extend outside out
The lower end surface pipe fitting A120, the pipe fitting A120 lead to and be provided with valve A 119,119 lower end surface of valve A, which is led to, to be provided with
Pipe fitting B118, leads in the 105 right end wall of reaction chamber to be provided with and extends external out pipe fitting C113, the pipe fitting C113 outward
Right side, which is led to, is provided with valve B 112, and 112 right side of valve B, which is led to, is provided with pipe fitting D111, is located at the body
The outer surface the pipe fitting C113 in A100 is provided with even block 114, leads between the even block 114 and is provided with pipe fitting, close to institute
Even 114 upper surface of block for stating the upper surface body A100 leads to be provided with extends into external pipe fitting E110, the pipe upwards
Part E110, which leads to upper surface, is provided with valve body C109, and the valve body C109, which leads to upper surface, is provided with pipe fitting F108, far from described
Even 114 lower end surface of block of the upper surface body A100, which leads to be provided with, extends into downwards external comb 162, the comb
162 lower end surfaces, which are led to, is provided with valve body D116, and the valve body D116, which leads to lower end surface, is provided with pipe fitting G117, the reaction chamber
Lead in 105 upper end walls and be provided with igniter, the igniter includes body B200, and the lower end surface the body B200 is fixed
There is igniter 202, gas chamber 207 is provided in the body B200,207 lower end wall of gas chamber is installed with leads with what outside was led to
Connecting leg A201, it is described lead the upper surface connecting leg A201 and lead to be provided with electrically-controlled valve B206, the electrically-controlled valve B206 and the gas chamber 207
Lower end wall is fixed, it is described lead lead on the right side of connecting leg A201 be provided with extend into outward it is external lead connecting leg B203, it is described to lead connecting leg
B203, which leads to upper surface, is provided with electrically-controlled valve A204, and the electrically-controlled valve A204, which leads to upper surface to be provided with, leads connecting leg C205, described
207 upper end wall of gas chamber leads to the pushing block chamber 208 being provided in the body B200, can slide in the pushing block chamber 208
It is provided with the first pushing block 209,208 upper end wall of pushing block chamber leads to the breather chamber 210 being provided in the body B200,
210 aft bulkhead of breather chamber is installed with solid block 211, is provided in the solid block 211 and slides chamber 212, described to slide in chamber 212
Handle 213 is slided in being provided with for can sliding, described to slide 213 lower end surface of handle and the 209 upper surface secure fit of the first pushing block company
It connects, 210 upper end wall of breather chamber, which leads to be provided with, leads to chamber 214 in the body B200, and described to lead to chamber 214 left
Right side inner wall zygomorphism, which leads to, is provided with horizontal chamber 215, and the horizontal chamber 215 leads to outside, described to lead in 214 upper end wall of chamber
It is installed with pneumatic cylinder 217, the push rod lower end surface of the pneumatic cylinder 217 is installed with slides with the 214 left and right sides inner wall of chamber that leads to
The second pushing block 216 being cooperatively connected, the top body A100 are provided with transport device, and the transport device includes being fixedly arranged on to hang
Sliding rail 300 on frame, what 300 front end face of sliding rail can slide is provided with electromagnetism sliding block 301, the electromagnetism sliding block 301
Biography is provided in the fixed organism C302 of front end face, the fixed organism D303 in the upper surface the body C302, the body D303
Defeated chamber 304, motor B305 is installed in the 304 right end wall of transmission cavity, and the outflow axis left side of the motor B305 is solid
Equipped with cone runner A306, cone runner B307 is engaged below the cone runner A306, the cone lower end surface runner B307 is solid
Equipped with transmission axle 308, the transmission axle 308 is rotatable to be penetrated through 304 lower end wall of transmission cavity and extends downwards, the body
Perpendicular chamber 310 is provided in C302, the perpendicular 310 left and right sides inner wall zygomorphism of chamber, which leads to, to be provided with and the external slide slot led to
309, the transmission axle 308 is connect with the perpendicular 310 lower end wall rotatable engagement of chamber, the 308 outer surface threaded engagement of transmission axle
It is connected with guide plate 311, the guide plate 311 slides mating connection with the slide slot 309, and the guide plate 311 is left
Right end face is installed with downward extended joins 312, and 312 lower end surface of joins is installed with Armco magnetic iron 313, described electronic
Sound insulation cushioning device is provided on machine A124.
Valuably, wherein be provided with sealing ring 402 in the even block 114, be provided with cavity groove in the sealing ring 402
It is provided with cavity groove B401 in C403, the pipe fitting C113 and the pipe fitting C113 penetrates through the cavity groove C403, the pipe fitting E110
It is inside provided with cavity groove A400, the cavity groove A400 leads to the cavity groove C403, to improve the heat resistance of device.
Valuably, wherein the connecting shaft 122 is rotatable to be passed through the thermal isolation block 121 and consolidate with the rotary box 102
It is fixed, to improve the flexibility of device.
Valuably, wherein the even position of block 114 and external contact is provided with packaged unit and seals the pipe fitting C113
It closes in the even block 114, to improve the closure of device.
Valuably, wherein the sound insulation cushioning device includes being fixed at the motor A124 left and right sides
Acoustic pad 1241 and the bradyseism plate 1242 for being fixed at the front and rear sides motor A124 face, the acoustic pad 1241 and institute
It states bradyseism plate 1242 to be connected, the sound insulation cushioning device can reduce the noise and shake that the motor A124 operating generates
It is dynamic.
In the initial state, the motor A124, pneumatic cylinder 217 and motor B305 are in stops work to apparatus of the present invention
Make state, the valve A 119, valve body D116, valve B 112, valve body C109, electrically-controlled valve A204 and electrically-controlled valve B206, which are in, to close
State.
When the device is running, stalk and additive are poured into the adding mouth 104, makes to fill straw in the cavity 103
Stalk and additive, the valve body C109 and valve body D116 are opened, and flow into cooling water out of described pipe fitting F108 and by the pipe
Part G117 outflow, and be formed into a loop with external reflux system, the valve B 112 is opened, and is passed through into the pipe fitting D111 natural
Gas distributes natural gas into the reaction chamber 105 by the pipe fitting C113, and the pneumatic cylinder 217 drives second pushing block
216 push down on, and pass air through the horizontal chamber 215, lead to chamber 214 and breather chamber 210 and to slide handle 213 described in pushing downward
It is mobile, so that first pushing block 209 is skidded off the pushing block chamber 208, admits air into the gas chamber 207, the pneumatic cylinder 217
Second pushing block 216 is driven to move up, the handle 213 that slides slides sky in chamber 212 when moving down, described in extruding
Gas slides the air pressure in chamber 212 described in increase, then makes described to slide handle 213 and rise to the horizontal chamber in second pushing block 216
Return when 215 top slides into first pushing block 209 in the pushing block chamber 208 and forms closing, and the pneumatic cylinder 217 is continuous
Work will be full of pressure-air in the gas chamber 207, the electrically-controlled valve A204 is opened, and combustion is passed through in connecting leg C205 to described lead
Oil, fuel oil are led in connecting leg A201 described in connecting leg B203 entrance as described lead, and the electrically-controlled valve B206 is opened, and keeps air and fuel oil mixed
Conjunction is sprayed outward by the connecting leg A201 that leads, and the mixture of the igniting of igniter 202 fuel oil and air, the pipe fitting B118 is beaten
It opens, air is passed through by the pipe fitting A120 and maintains to burn in the reaction chamber 105, the exhaust gas for generation of burning is by the breather chamber
106 are passed into outside, and the heat in the reaction chamber 105 is transmitted to the rotary box 102 by the thermally conductive case 101.
When operation carries out, the motor A124 work makes the reduction of speed machine 123 that the connecting shaft 122 be driven to rotate, then
The rotary box 102 is rotated.
When operation finishes, the electromagnetism sliding block 301 drive the body C302 move to the rotary box 102 just on
Side, the motor B305 drive the cone runner A306 rotation, drive the transmission axle after rotating the cone runner B307
308 rotations, about 311 guide plate connecting with 308 threaded engagement of transmission axle slide, and drive the Armco magnetic iron 313 close
102 upper surface of rotary box, the Armco magnetic iron 313 work, and keep the Armco magnetic iron 313 and the rotary box 102 fixed, described
Motor B305 drives the guide plate 311 to move upward out the thermal conductive cavity 161 again, takes the rotary box 102 to handling
Region.
The beneficial effects of the invention are as follows:In the initial state due to apparatus of the present invention, the motor A, pneumatic cylinder and electricity
Motivation B is in stop working state, and the valve A, valve body D, valve B, valve body C, electrically-controlled valve A and electrically-controlled valve B, which are in, closes shape
State, to make above structure be located at initial position in the initial state, can be adjusted in follow-up work and be conducive to tie up
It repairs and installs.
When the device is running, stalk and additive are poured into the adding mouth, make to fill stalk in the cavity and added
Add agent, the valve body C and valve body D are opened, flows into cooling water out of described pipe fitting F and by pipe fitting G outflow, and with outside
Return-flow system forming circuit, the valve B are opened, are passed through natural gas into the pipe fitting D, dissipate natural gas by the pipe fitting C
It sends out into the reaction chamber, the pneumatic cylinder drives second pushing block to push down on, and passes air through the horizontal chamber, leads to chamber
It is moved down with handle is slided described in breather chamber and promotion, first pushing block is made to skid off the pushing block chamber, admitted air into described
In gas chamber, the pneumatic cylinder drives second pushing block to move up, and the handle that slides slides described in extruding when moving down
Intracavitary air slides intracavitary air pressure described in increase, then makes described to slide handle and rise to the horizontal chamber in first pushing block
Return when top makes first pushing block slide into intracavitary is formationed of the pushing block and closes, and the pneumatic cylinder continuous work is by the gas
Interior is full of pressure-air, and the electrically-controlled valve A is opened, and fuel oil is passed through in connecting leg C to described lead, fuel oil by it is described lead connecting leg B into
It being led in connecting leg A described in entering, the electrically-controlled valve B is opened, and it mixes air with fuel oil and is sprayed outward by the connecting leg A that leads, the point
The mixture of firearm igniting fuel oil and air, the pipe fitting B are opened, air are passed through in the reaction chamber by the pipe fitting A and is tieed up
Burning is held, the exhaust gas for generation of burning is passed into outside by the breather chamber, and the heat in the reaction chamber passes through the thermally conductive case
It is transmitted to the rotary box.
When operation carries out, the motor A work makes the reduction of speed machine drive the connecting shaft rotation, the then rotation
Case is rotated.
When operation finishes, the electromagnetism sliding block drives the body C to move to right above the rotary box, the electricity
Motivation B drives the cone runner A rotation, drives the transmission axle to rotate after rotating the cone runner B, with the transmission axle spiral shell
It revolving the guide plate being cooperatively connected to slide up and down, drives the Armco magnetic iron close to the rotary box upper surface, the Armco magnetic iron works,
Fix the Armco magnetic iron with the rotary box, the motor B drives the guide plate to move upward out the thermal conductive cavity again,
The rotary box is taken to loading and unloading area, to improve the transport high efficiency of device.
Apparatus of the present invention structure is simple, this device easy to use can be realized mixed straw under high temperature environment and addition
Agent, preparation efficiency are high.
The above, the specific embodiment only invented, but invent protection scope be not limited thereto, it is any without
The change or replacement that creative work is expected are crossed, should all be covered within the protection scope of invention.Therefore, the protection scope of invention
It should be determined by the scope of protection defined in the claims.
Claims (5)
1. a kind of new bio new energy enzyme preparation facilities, including device body, igniter and transport device, wherein described
Device body includes body A, is provided in the body A every dividing chamber, described to be installed with motor A every dividing in chamber lower end wall, institute
The outflow axis upper surface for stating motor A is connected by power the reduction of speed machine that is provided with, and the upper surface of the reduction of speed machine, which is connected by power, to be provided with
Upward extended connecting shaft, it is described to be provided with thermal conductive cavity in the thermally conductive case every dividing cavity wall outer surface to be installed with thermally conductive case, it is described
Thermal isolation block is installed in thermal conductive cavity lower end wall, the connecting shaft is rotatable to be penetrated through the thermal isolation block and extend into upwards described
In thermal conductive cavity, the thermal conductive cavity inboard wall outer surface connects to rotary box is provided with, and is fixedly installed in the rotary box inner bottom wall
Electric rotating motivation, electric rotating motivation top power are connected with rotation mixing axis, and the rotation mixes equidistant on axis
It is provided with multi-disc and mixes leaf, the rotary box lower end surface connect with connecting shaft upper surface secure fit, sets in the rotary box
Be equipped with cavity, lead in the cavity upper end wall be provided with the external adding mouth led to, it is described to lead to setting every dividing on the right side of chamber
There is the reaction chamber being located in the body A, the upper surface the body A is installed with air passage, is provided in the air passage up and down
The breather chamber of perforation, the breather chamber are led to the reaction chamber, are led in the reaction chamber lower end wall and are provided with downward extension
The external lower end surface pipe fitting A, the pipe fitting A, which is led to, out is provided with valve A, and the valve A lower end surface, which is led to, is provided with pipe fitting B,
Lead to be provided with to extend the out external right side pipe fitting C, the pipe fitting C outward and lead in the reaction chamber right end wall and is provided with valve
Body B, the valve B right side, which is led to, is provided with pipe fitting D, and the outer surface the pipe fitting C in the body A is provided with company
Block, it is described even lead between block be provided with pipe fitting, close to the upper surface the body A the company block upper surface lead to be provided with to
On extend into the external upper surface pipe fitting E, the pipe fitting E and lead to and be provided with valve body C, the valve body C, which leads to upper surface, to be provided with
Pipe fitting F, the even block lower end surface far from the upper surface the body A, which leads to be provided with, extends into downwards external comb, described
Comb lower end surface, which is led to, is provided with valve body D, and the valve body D, which leads to lower end surface, is provided with pipe fitting G, leads in the reaction chamber upper end wall
It is connected with and is equipped with igniter, the igniter includes body B, and the lower end surface the body B is installed with igniter, the body B
Inside be provided with gas chamber, the gas chamber lower end wall be installed with it is external lead to lead connecting leg A, it is described lead the upper surface connecting leg A and lead to set
Be equipped with electrically-controlled valve B, the electrically-controlled valve B is fixed with the gas chamber lower end wall, it is described lead to lead on the right side of connecting leg A be provided with outside extension
Lead connecting leg B into external, it is described lead the upper surface connecting leg B and lead to be provided with electrically-controlled valve A, the electrically-controlled valve A leads to setting in upper surface
Connecting leg C is led, the gas chamber upper end wall leads to the pushing block chamber being provided in the body B, and the pushing block is intracavitary to be slided
Be provided with the first pushing block, the pushing block chamber upper end wall leads to the breather chamber being provided in the body B, the breather chamber
Aft bulkhead is installed with solid block, is provided in the solid block and slides chamber, it is described slide it is intracavitary slide be provided with and slide handle, it is described
It slides handle lower end surface to connect with first pushing block upper surface secure fit, the breather chamber upper end wall, which is led to, to be provided with positioned at institute
State the chamber that leads in body B, it is described lead to chamber left and right sides inner wall zygomorphism and lead to be provided with horizontal chamber, the horizontal chamber and outside are logical
Even, it is described lead to pneumatic cylinder is installed in chamber upper end wall, the push rod lower end surface of the pneumatic cylinder be installed with it is described leads to chamber a left side
Right side inner wall slides the second pushing block of mating connection, and transport device is provided with above the body A, and the transport device includes solid
Sliding rail on hanger, what the sliding rail front end face can slide is provided with electromagnetism sliding block, the electromagnetism sliding block front end face
Transmission cavity, the transmission cavity right end are provided in fixed organism C, the fixed organism D in the upper surface the body C, the body D
Motor B is installed in wall, the outflow axis left side of the motor B is installed with cone runner A, engagement below the cone runner A
It is provided with cone runner B, the lower end surface the cone runner B is installed with transmission axle, the rotatable perforation transmission cavity of transmission axle
Lower end wall simultaneously extends downwards, is provided with perpendicular chamber in the body C, the perpendicular chamber left and right sides inner wall zygomorphism lead to be provided with
The slide slot that outside is led to, the transmission axle are connect with the perpendicular chamber lower end wall rotatable engagement, the transmission axle appearance surface helix
Mating connection is provided with guide plate, and the guide plate and the slide slot slide mating connection, described guide plate or so side end face
It is installed with downward extended joins, the joins lower end surface is installed with Armco magnetic iron, and it is slow that sound insulation is provided on the motor A
Shake device.
2. a kind of new bio new energy enzyme preparation facilities as described in claim 1, it is characterised in that:It is set in the even block
It is equipped with sealing ring, cavity groove C is provided in the sealing ring, is provided in the pipe fitting C described in cavity groove B and pipe fitting C perforation
It is provided with cavity groove A in cavity groove C, the pipe fitting E, the cavity groove A leads to the cavity groove C.
3. a kind of new bio new energy enzyme preparation facilities as described in claim 1, it is characterised in that:The connecting shaft can revolve
What is turned passes through the thermal isolation block and fixes with the rotary box.
4. a kind of new bio new energy enzyme preparation facilities as described in claim 1, it is characterised in that:The even block and outer
The position of portion's contact is provided with packaged unit and the pipe fitting C is enclosed in the even block.
5. a kind of new bio new energy enzyme preparation facilities as described in claim 1, it is characterised in that:The sound insulation bradyseism
Device includes being fixed at the acoustic pad of the motor A left and right sides and being fixed at two before and after the motor A
The bradyseism plate of side, the acoustic pad are connected with the bradyseism plate.
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CN201810142515.3A CN108176300B (en) | 2018-02-11 | 2018-02-11 | A kind of new bio new energy enzyme preparation facilities |
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CN108176300B true CN108176300B (en) | 2018-11-20 |
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CN114133971B (en) * | 2021-12-06 | 2024-03-26 | 李光霞 | Integrated equipment for auxiliary sulfur reduction processing of biomass fuel |
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JPS6127622Y2 (en) * | 1982-06-14 | 1986-08-18 | ||
EP1779924A1 (en) * | 2005-10-28 | 2007-05-02 | Prosign | Melter to homogenize and heat a product, in particular a composition of marking out of the ground |
CN102851046A (en) * | 2012-08-23 | 2013-01-02 | 芜湖市恒久再生能源有限公司 | Destructive distillation cracking furnace |
CN204619860U (en) * | 2015-05-12 | 2015-09-09 | 周贵英 | Heating and stirring device |
CN106823941A (en) * | 2017-02-28 | 2017-06-13 | 成都格瑞思文化传播有限公司 | Chemical material agitator |
US9732280B1 (en) * | 2015-08-14 | 2017-08-15 | Fabworks & Services, Llc | Burner kettle for asphalt paving apparatus |
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2018
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Patent Citations (6)
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JPS6127622Y2 (en) * | 1982-06-14 | 1986-08-18 | ||
EP1779924A1 (en) * | 2005-10-28 | 2007-05-02 | Prosign | Melter to homogenize and heat a product, in particular a composition of marking out of the ground |
CN102851046A (en) * | 2012-08-23 | 2013-01-02 | 芜湖市恒久再生能源有限公司 | Destructive distillation cracking furnace |
CN204619860U (en) * | 2015-05-12 | 2015-09-09 | 周贵英 | Heating and stirring device |
US9732280B1 (en) * | 2015-08-14 | 2017-08-15 | Fabworks & Services, Llc | Burner kettle for asphalt paving apparatus |
CN106823941A (en) * | 2017-02-28 | 2017-06-13 | 成都格瑞思文化传播有限公司 | Chemical material agitator |
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Effective date of registration: 20230510 Address after: No.16, Yanjiang East 2nd Road, Torch Development Zone, Zhongshan City, Guangdong Province, 528400 Patentee after: Liu Gaofeng Address before: 322000 No. 81, upper leaf village, fo Tang Town, Yiwu, Jinhua, Zhejiang Patentee before: YIWU LVMEI BIOTECHNOLOGY Co.,Ltd. |