CN104976614B - Multifunctional all burner - Google Patents
Multifunctional all burner Download PDFInfo
- Publication number
- CN104976614B CN104976614B CN201510460323.3A CN201510460323A CN104976614B CN 104976614 B CN104976614 B CN 104976614B CN 201510460323 A CN201510460323 A CN 201510460323A CN 104976614 B CN104976614 B CN 104976614B
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- Prior art keywords
- casing
- housing
- inner chamber
- air inlet
- heating furnace
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23D—BURNERS
- F23D14/00—Burners for combustion of a gas, e.g. of a gas stored under pressure as a liquid
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23D—BURNERS
- F23D14/00—Burners for combustion of a gas, e.g. of a gas stored under pressure as a liquid
- F23D14/46—Details, e.g. noise reduction means
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23N—REGULATING OR CONTROLLING COMBUSTION
- F23N1/00—Regulating fuel supply
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23N—REGULATING OR CONTROLLING COMBUSTION
- F23N5/00—Systems for controlling combustion
- F23N5/24—Preventing development of abnormal or undesired conditions, i.e. safety arrangements
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24H—FLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
- F24H9/00—Details
- F24H9/20—Arrangement or mounting of control or safety devices
- F24H9/2007—Arrangement or mounting of control or safety devices for water heaters
- F24H9/2035—Arrangement or mounting of control or safety devices for water heaters using fluid fuel
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Thermal Sciences (AREA)
- Regulation And Control Of Combustion (AREA)
Abstract
The invention discloses a kind of multifunctional all burner, will solve the technical problem that it is convenient management, it is achieved that heating furnace is safe and reliable, energy-conserving and environment-protective, and reduces the volume of equipment, saves space.The present invention includes burner, described burner includes housing, housing is provided with main air inlet pipe, the front end of main air inlet pipe is stretched in the inner chamber of housing, being sequentially provided with regulation valve, combination solenoid valve, vortex-shedding meter, Pressure gauge, stop valve, main air valve in main air inlet pipe, the left and right sides of described combined electromagnetic valve body is connected to pressure switch and igniter solenoid valve;Being provided with burning torch in the inner chamber of housing, the lower end of described housing is provided with liquid leakage detector;Being respectively equipped with flame monitor, ignition transformer and programmable logic controller (PLC) on housing, described flame monitor, ignition transformer, liquid leakage detector are connected with programmable logic controller (PLC).Compared with prior art, it is greatly reduced the volume of equipment, save space.
Description
Technical field
The present invention relates to a kind of supporting application of oil field heating furnace, be a kind of for oil field heating furnace safety management,
The multifunctional all burner of production management digitlization and energy efficiency management.
Background technology
At present, oil field heating furnace is in running application process, can be due to the fire reason such as cylinder scaling loss, welding bead rupture
Cause heating dielectric leakage in heating furnace, and these heating furnaces are not found in time and locate when damaging
Reason, in closely can causing heating-furnace, heated dielectric leakage is to the side that burner catches fire pouring vessel
Body, easily causes fire disaster accident.Although solving the leakage detection burning of the problems referred to above in the prior art
Device, pipe high-temperature detection device and oilfield heating furnace efficiency detection device, but three devices are all independent works
Making, decentralised control, scatter display, the required space installed of equipment is relatively big, inconvenience centralized control and management,
The new technologies such as safe, energy-conservation, the production of heating furnace and digitlization, internet also cannot be merged by prior art
Together.
Content of the invention
It is an object of the invention to provide a kind of multifunctional all burner, will solve the technical problem that it is convenient
Management, it is achieved that heating furnace is safe and reliable, energy-conserving and environment-protective, and reduces the volume of equipment, saves space.
For solving the problems referred to above, the present invention realizes by the following technical solutions: a kind of multifunctional all burning
Device, including the burner being connected on heating furnace fire door by flange, described burner includes having inner chamber simultaneously
And the housing that front end connects with heating furnace fire door, housing is provided with main air inlet pipe, the front end of main air inlet pipe is stretched
Enter in the inner chamber of housing, main air inlet pipe is sequentially provided with regulation valve, combination solenoid valve, vortex-shedding meter,
Pressure gauge, stop valve, main air valve, the left and right sides of described combined electromagnetic valve body is connected to pressure
Power switch and igniter solenoid valve;Being provided with burning torch in the inner chamber of housing, the front end of burning torch is near heating furnace
Fire door at, igniter solenoid valve through igniting hose connecting points firelock, at the inner chamber in the outside of burning torch, housing
In be provided with shower nozzle, shower nozzle is connected with main air inlet pipe and the load meter being arranged on housing respectively;Described housing
Lower end be provided with liquid leakage detector;Housing is respectively equipped with flame monitor, the ignition transformer of integration
And programmable logic controller (PLC), described flame monitor, ignition transformer, liquid leakage detector with able to programme
Logic controller connects;Boiler tube outer layer water side in described heating furnace is provided with at least one temperature element, thermometric
The wiring of element pass through water side pool in heating furnace by body of heater flange extend heating furnace outer and with able to programme
Logic controller connects, and is provided with the oxygen content being connected with programmable logic controller (PLC) and passes on the smoke box of heating furnace
Sensor, the chimney lower end of heating furnace is provided with the flue-gas temperature sensor being connected with programmable logic controller (PLC), institute
The body of heater stating heating furnace is provided with the furnace body temperature sensor being connected with programmable logic controller (PLC).
Burner of the present invention also includes man-machine interface, and described programmable logic controller (PLC) is by adding of collecting
Hot stove data send to man-machine interface.
Housing of the present invention is made up of first casing with inner chamber and second casing with inner chamber, institute
State and be interconnected between the inner chamber of the first casing and the inner chamber of the second casing and the fire door of heating furnace, the first machine
The front end of shell is connected with the fire door of heating furnace by flange, and the first casing is stretched in the front end of described main air inlet pipe
In inner chamber, burning torch, shower nozzle are located in the inner chamber of the first casing, described ignition transformer, flame monitor,
Programmable logic controller (PLC) is located on the second casing.
One side surface rear end of the second casing of the present invention is provided with air inlet, air inlet and the second casing
Inner space, air inlet is provided with bellows, bellows are by the servo-driver being arranged on the second casing
Connect control;It is provided with motor, motor defeated on opposite side surface relative with air inlet on the second casing
Shaft stretches in the inner chamber of the second casing, is provided with on the output shaft being connected to motor in the inner chamber of the second casing
Impeller;Described second casing is provided with blast switch, described blast switch, motor, servo-driver with
Programmable logic controller (PLC) connects.
Bellows of the present invention include being arranged on the bellows housing outside air inlet, on the second casing, at wind
The inside upper part of case housing is provided with fixed dam, and the lower inside of described bellows housing is provided with and air inlet UNICOM
Wind-tunnel, servo-driver is arranged on the outer lower portion of bellows, and servo-driver is fixed by servo-driver
Seat is fixed on the second casing, is provided with turning through shaft coupling and servo-driver in the rotating shaft of servo-driver
The axostylus axostyle that axle connects, the two ends of axostylus axostyle cross the left and right sides of bellows housing, are provided with axostylus axostyle screw on axostylus axostyle,
Wind-tunnel is provided with the deep bead that can block wind-tunnel, and the rear end face of deep bead is provided with deep bead fixed plate, keeps out the wind
It is transversely provided with the axostylus axostyle groove protruding to the rear end face of deep bead fixed plate, described axostylus axostyle groove in plate fixed plate
Being provided with the fixed plate screw corresponding with axostylus axostyle screwhole position, deep bead fixed plate is arranged by axostylus axostyle groove
Threaded with axostylus axostyle screw through fixed plate screw in the rear end of axostylus axostyle and by screw, make deep bead fixed plate
Being fixed on axostylus axostyle, the rear end face of described deep bead is fixing with the front end face of deep bead fixed plate to be connected.
First casing of the present invention is provided with air intake assembly, is provided with control air intake assembly on the first casing
The air door executer of intake, air door executer connects programmable logic controller (PLC).
Air intake assembly of the present invention include annular first gear aerofoil and annular second gear aerofoil, first
It is arranged at intervals with first gear aerofoil import in a week on deep bead, second gear aerofoil is arranged at intervals with one week second
Deep bead import, is respectively equipped with the first air intake group along circumferentially disposed a week of the first casing on the first casing
Piece bores, the second air intake component holes, the rear end of first gear aerofoil is connected by contiguous block with the front end of second gear aerofoil
Connecing fixing, after air intake assembly is arranged in the middle part of the first casing, first gear aerofoil is placed in the first air intake group
At piece bores, second gear aerofoil is placed at the second air intake component holes, with first gear aerofoil phase on second gear aerofoil
Periphery wall lower end to side is provided with the tooth bar of arc, corresponding with rack position in the lower end of the first casing
Place has rack bore, and air door executer is fixed on the lower end of the first casing, tooth bar by air door executer base plate
At hole, the output shaft of described air door executer is provided with the driving tooth engaging with tooth bar.
Temperature element of the present invention is connected with programmable logic controller (PLC) through furnace tube high temperature detection terminal box.
Programmable logic controller (PLC) of the present invention uses Delta DVP-12SA2, and man-machine interface uses Delta
DOP-B07S415。
Heating furnace leakage detection, pipe high temperature compared with prior art, are detected and stove effect detection linkage by the present invention
Triplicity centralized Control together, is collected simultaneously to each item data in real time by programmable logic controller (PLC)
Result is sent to man-machine interface so that operator can remotely monitor the change of duty parameter, integrates original paper,
Achieve centralized Control and the optimum control optimum management of detection device, be greatly reduced the volume of equipment, joint
About space.
Brief description
Fig. 1 is the assembling schematic diagram of multifunctional all burner of the present invention.
Fig. 2 is the front view of multifunctional all burner of the present invention.
Fig. 3 is the left view of multifunctional all burner of the present invention.
Fig. 4 is the right view of multifunctional all burner of the present invention.
Fig. 5-1 is the right view of bellows of the present invention.
Fig. 5-2 is the front view of bellows of the present invention.
Fig. 5-3 is the attachment structure schematic diagram between deep bead of the present invention and axostylus axostyle.
Fig. 6-1 is the structural representation of air intake assembly of the present invention.
Fig. 6-2 is the attachment structure schematic diagram of first gear aerofoil of the present invention and second gear aerofoil.
Fig. 6-3 is the partial enlarged drawing indicating A in Fig. 4.
Detailed description of the invention
With embodiment, the present invention is described in further detail below in conjunction with the accompanying drawings.
As it is shown in figure 1, the multifunctional all burner of the present invention includes: an inside has the shell of inner chamber
Body 37, the front end of housing 37 is connected on heating furnace 35 fire door by flange, is provided with one on housing 37
The main air inlet pipe 29 in housing 37 inner chamber is stretched in front end, and main air inlet pipe 29 is sequentially provided with regulation valve the 8th, group
Box-like magnetic valve the 6th, vortex-shedding meter the 4th, Pressure gauge the 3rd, stop valve the 2nd, main air valve 1, at combination solenoid valve
The left and right sides of valve body is connected to pressure switch 5 and igniter solenoid valve 7;The inner chamber of housing 37 sets
Having burning torch 26, the fire door of the end sensing heating furnace 35 of burning torch 26 and the front end of burning torch 26 are close
At the fire door of heating furnace 35, igniter solenoid valve 7 is through igniting flexible pipe 27 tie point firelock 26, at burning torch 26
Front end outer side, housing 37 inner chamber in be provided with shower nozzle 28 (shown in Fig. 4), shower nozzle 28 respectively with main air inlet
Pipe 29 and the load meter 15 being arranged on housing 37 connect;It is provided with leakage detection in the lower end of housing 37
Instrument 9;Housing 37 is respectively equipped with flame monitor the 24th, the ignition transformer 25 of integration and can compile
Journey logic controller 13, flame monitor the 24th, ignition transformer the 25th, liquid leakage detector 9 and FPGA
Controller 13 connects and sends real time data to programmable logic controller (PLC) 13;Stove in heating furnace 35
Outer tube layer water side is provided with at least one temperature element 38, and the wiring of temperature element 38 passes through in heating furnace 35
Water side pool is extended outside heating furnace 35 by body of heater flange and is connected with programmable logic controller (PLC) 13,
The smoke box of heating furnace 35 is provided with the oxygen level sensor 10 being connected with programmable logic controller (PLC) 13, heating
The chimney lower end of stove 35 is provided with the flue-gas temperature sensor 11 being connected with programmable logic controller (PLC) 13, described
The body of heater of heating furnace 35 is provided with the furnace body temperature sensor 34 being connected with programmable logic controller (PLC) 13;
Further, described multifunctional all burner also includes man-machine interface 33, described FPGA control
Device 13 processed sends the heating furnace data collected to man-machine interface 33.
Further, overhauling for convenience, as shown in Figure 3 and Figure 4, housing 37 can be by having the first of inner chamber
Casing 17 forms, at the first casing 17 and the second casing 18 joint with second casing 18 with inner chamber
The left and right sides on be respectively equipped with key seat 40, key seat 40 is provided with pin-and-hole, the key seat of the described left and right sides
It is inserted with pin A30 and pin B31 in 40 respectively, make the first casing 17 be connected with each other with the second casing 18, described
Before and after first casing 17, two ends are respectively provided with the opening of the inner space with the first casing 17, the second casing 18
Front end there is opening, the stove of the inner chamber of the first casing 17 and the inner chamber of the second casing 18 and heating furnace 35
Being interconnected between Kou, the front end of the first casing 17 is connected with the fire door of heating furnace 35 by flange, and master enters
The front end of tracheae 29 is stretched into the inner chamber of the first casing 17 from the lower end of the first casing 17, and the 26th, burning torch sprays
28 be located in the inner chamber of the first casing 17, at the fire door of heating furnace 35, ignition transformer the 25th, fire
Flame watch-dog 24 is arranged on the right side of the second casing 18, and the second casing 18 is located at by programmable logic controller (PLC) 13
Left side.
As shown in Fig. 2 and 5-1,5-2 and Fig. 5-3, the right side rear end surface of the second casing 18 is provided with
Bellows 21, described bellows 21 include being arranged on outside air inlet 36, the bellows housing on the second casing 18
43, the inside upper part at bellows housing 43 is provided with fixed dam 44, the lower inside of described bellows housing 43
Being provided with the wind-tunnel 45 with air inlet 36 UNICOM, the outer lower portion at bellows 21 is provided with servo-driver 22, watches
Take driver 22 to fix seat 46 by servo-driver and be fixed on the second casing 18, at servo-driver 22
Rotating shaft be provided with the axostylus axostyle 48 being connected through the rotating shaft of shaft coupling and servo-driver 22, the two ends of axostylus axostyle 48
Cross and be arranged on the left and right sides of bellows housing 43, axostylus axostyle 48 is provided with axostylus axostyle screw 49, at wind
Hole 45 is provided with the deep bead 47 that can block wind-tunnel 45, the distance between deep bead 47 left and right sides and bellows
Inside housing 43, the distance between the left and right sides is equal, and the lower end of deep bead 47 extends to bellows housing 43
Outside lower end and be against on the second casing 18, the rear end face of deep bead 47 is provided with deep bead fixed plate 50,
It is transversely provided with the axostylus axostyle groove 51 protruding to the rear end face of deep bead fixed plate 50 in deep bead fixed plate 50,
Described axostylus axostyle groove 51 is provided with the fixed plate screw 52 corresponding with axostylus axostyle screw 49 position, and deep bead is solid
Determine plate 50 and be enclosed within the rear end of axostylus axostyle 48 and by screw through fixed plate screw 52 and axle by axostylus axostyle groove 51
Bar screw 49 is threaded, makes deep bead fixed plate 50 be fixed on axostylus axostyle 48, described deep bead 47
Rear end face is fixing with the front end face of deep bead fixed plate 50 by way of welding to be connected, when servo-driver 22
When driving axostylus axostyle 48 to rotate, axostylus axostyle 48 drives deep bead 47 to rotate, and makes wind from deep bead 47 and wind-tunnel 45
Between opening enter the second casing 18 inner chamber in, relative with air inlet 36 on the second casing 18
Opposite side (left side of the second casing 18) surface is provided with motor 16, and the output shaft of motor 16 stretches into second
In the inner chamber of casing 18, the inner chamber of the second casing 18 is provided with the leaf on the output shaft being connected to motor 16
Wheel 32;Described blast switch 23 is arranged on the left side of the second casing 18, and blast switch the 23rd, motor is the 16th,
Servo-driver 22 is connected with programmable logic controller (PLC) 13.
The right side and left side of the second casing 18 all can be provided with and the 24th, light a fire transformation for placing flame monitor
The component box of device the 25th, programmable logic controller (PLC) 13.
As shown in Figure 4, it in the middle part of the first casing 17, is provided with air intake assembly 39, at the first casing 17
Lower end is provided with the air door executer 14 of control air intake assembly 39 intake, and air door executer 14 connects able to programme
Logic controller 13, is respectively equipped with along circumferentially disposed a week of the first casing 17 on the first casing 17
One air intake component holes the 41st, the second air intake component holes 42.
As shown in Fig. 6-1,6-2 and Fig. 6-3, described air intake assembly 39 includes the first gear aerofoil 19 of annular
With annular second gear aerofoil 20, first gear aerofoil 19 is arranged at intervals with first gear aerofoil import 54 in a week,
It is arranged at intervals with second gear aerofoil import 55 in a week, outside described first gear aerofoil 19 on second gear aerofoil 20
The internal diameter that the 17th, footpath is positioned at the first air intake component holes 41 with the first casing is equal, outside second gear aerofoil 20
Footpath is then equal with the internal diameter that the 17th, the first casing is positioned at the second air intake component holes 42, first gear aerofoil 19
Rear end welds together composition air intake assembly 39 with the front end of second gear aerofoil 20 by three pieces of contiguous blocks 53,
After air intake assembly 39 is arranged in the middle part of the first casing 17, first gear aerofoil 19 is placed in the first air intake group
At piece bores 41, second gear aerofoil 20 is placed at the second air intake component holes 42, at second gear aerofoil 20 and
The periphery wall lower end of one deep bead 19 opposite side is provided with the tooth bar 59 of arc, in the lower end of the first casing 17,
Having rack bore 57 with corresponding section, tooth bar 59 position, air door executer 14 passes through air door executer base plate 58
Be fixed at the lower end rack bore 57 of the first casing 17, the output shaft of described air door executer 14 be provided with
The driving tooth 60 of tooth bar 59 engagement, drives the groove of tooth 60 to stretch in rack bore 57 through rack bore 57, often
Under state, first gear aerofoil import 54 and second gear aerofoil import 55 are entered with first on the first casing 17 respectively
Wind component holes the 41st, the second air intake component holes 42 misplaces, and makes first gear aerofoil 19 and second gear aerofoil 20 except the
The 41st, remainder outside one deep bead import 54 and second gear aerofoil import 55 blocks the first air intake component holes
Second air intake component holes 42, now can not air intake, when actuator 14 in fashion drives second gear aerofoil 20 to rotate
When, first gear aerofoil import 54 and second gear aerofoil import 55 respectively with the first air intake on the first casing 17
Component holes the 41st, the second air intake component holes 42 gradually overlaps, and makes the wind can be from first gear aerofoil import 54 and second
Deep bead import 55 respectively with the first air intake component holes the 41st, the second air intake component holes 42 on the first casing 17
Overlapping position enters in the first casing 17.
Programmable logic controller (PLC) 13 of the present invention uses Delta DVP-12SA2 type programmable logic controller (PLC) 13,
Man-machine interface uses Delta DOP-B07S415 type man-machine interface, it is achieved the collection of data and transmission.
As it is shown in figure 1, temperature element 38 is through furnace tube high temperature detection terminal box 12 and programmable logic controller (PLC)
13 connect, and the installation site of described furnace tube high temperature detection terminal box 12 and temperature element 38 can refer to China
Patent No. 201020130402.0, invention entitled furnace tube high temperature detection device.
Described multifunctional all burner has a heating furnace leakage defencive function, when liquid leaks can and
Alarm, and quickly stop the supply of burner fuel, automatically carry out coordinated signals blowing out;There is boiler tube high
Temperature detector brake, utilizes water side interlayer temperature detection method, detects the operating temperature of boiler tube in real time, when temperature surpasses
Crossing the use temperature upper limit of country's permission, sending sound and light alarm, temperature exceedes use temperature upper limit more than 10 DEG C
When, automatic load down, protect boiler tube;There is heating-furnace effect detection function, according to back balance table, work as row
The too high or too low adjustment intake of taking the necessary measures of cigarette temperature, oxygen content, improves stove effect;Have and automatically sweep
Wind, temperature automatic control, air-fuel ratio automatically control, remote auto IGNITION CONTROL, flame monitoring are protected with flame-out
Protect, soft manually operated control, insulation heat tracing, Liquid level, the function such as emergent manual ignition.
Described multifunctional all burner has safety, production manipulates regulation safeguard function automatically with efficiency,
There is the fully automatic burner of Digital Control module and coffret.
Claims (9)
1. a multifunctional all burner, including the burning being connected on heating furnace (35) fire door by flange
Device, it is characterised in that: described burner includes having inner chamber and front end with heating furnace (35) fire door even
Logical housing (37), is provided with main air inlet pipe (29), before main air inlet pipe (29) on housing (37)
End stretches in the inner chamber of housing (37), is sequentially provided with regulation valve (8), group in main air inlet pipe (29)
Box-like magnetic valve (6), vortex-shedding meter (4), Pressure gauge (3), stop valve (2), main air valve (1),
The left and right sides of described combined electromagnetic valve body is connected to pressure switch (5) and igniting electromagnetism
Valve (7);Being provided with burning torch (26) in the inner chamber of housing (37), the front end of burning torch (26) is leaned on
At the fire door of nearly heating furnace (35), igniter solenoid valve (7) is through igniting flexible pipe (27) tie point firelock
(26) it, in the outside of burning torch (26), the inner chamber of housing (37), is provided with shower nozzle (28), shower nozzle
(28) it is connected with main air inlet pipe (29) and the load meter (15) being arranged on housing (37) respectively;
The lower end of described housing (37) is provided with liquid leakage detector (9);Housing (37) is respectively equipped with one
Flame monitor (24), ignition transformer (25) and programmable logic controller (PLC) (13), the institute changing
State flame monitor (24), ignition transformer (25), liquid leakage detector (9) and FPGA control
Device processed (13) connects;Boiler tube outer layer water side in described heating furnace (35) is provided with at least one thermometric unit
Part (38), body of heater is passed through in the water side pool that the wiring of temperature element (38) passes through in heating furnace (35)
Flange extends heating furnace (35) and outward and is connected with programmable logic controller (PLC) (13), in heating furnace (35)
Smoke box be provided with the oxygen level sensor (10) being connected with programmable logic controller (PLC) (13), heating
The chimney lower end of stove (35) is provided with the flue-gas temperature sensor being connected with programmable logic controller (PLC) (13)
(11), the body of heater of described heating furnace (35) is provided with and is connected with programmable logic controller (PLC) (13)
Furnace body temperature sensor (34).
2. multifunctional all burner according to claim 1, it is characterised in that: described burner also wraps
Including man-machine interface (33), the heating furnace data collected are sent by described programmable logic controller (PLC) (13)
To man-machine interface (33).
3. multifunctional all burner according to claim 2, it is characterised in that: described housing (37)
It is made up of first casing (17) with inner chamber and second casing (18) with inner chamber, described first
Phase between the fire door of the inner chamber of the inner chamber of casing (17) and the second casing (18) and heating furnace (35)
Intercommunicated, the front end of the first casing (17) is connected with the fire door of heating furnace (35) by flange, described
The front end of main air inlet pipe (29) is stretched in the inner chamber of the first casing (17), burning torch (26), shower nozzle
(28) it is located in the inner chamber of the first casing (17), described ignition transformer (25), flame monitor
(24), programmable logic controller (PLC) (13) is located on the second casing (18).
4. multifunctional all burner according to claim 3, it is characterised in that: described second casing (18)
A side surface rear end be provided with air inlet (36), air inlet (36) is interior with the second casing (18)
Chamber connects, and is provided with bellows (21) on air inlet (36), and bellows (21) are by being arranged on the second machine
Servo-driver (22) on shell (18) connects control;Upper and the air inlet at the second casing (18)
(36) relative opposite side surface is provided with motor (16), and the output shaft of motor (16) stretches into second
It in the inner chamber of casing (18), is provided with in the inner chamber of the second casing (18) and is connected to motor (16)
Impeller (32) on output shaft;Described second casing (18) is provided with blast switch (23), described wind
Compress switch (23), motor (16), servo-driver (22) connect with programmable logic controller (PLC) (13)
Connect.
5. multifunctional all burner according to claim 4, it is characterised in that: described bellows (21)
Including be arranged on air inlet (36) outside, the bellows housing (43) on the second casing (18), at wind
The inside upper part of case housing (43) is provided with fixed dam (44), the inner side of described bellows housing (43)
Bottom is provided with the wind-tunnel (45) with air inlet (36) UNICOM, and servo-driver (22) is arranged on bellows
(21) outer lower portion, servo-driver (22) is fixed seat (46) by servo-driver and is fixed on
On second casing (18), the rotating shaft of servo-driver (22) is provided with through shaft coupling and servo-drive
The axostylus axostyle (48) that the rotating shaft of device (22) connects, bellows housing (43) is crossed at the two ends of axostylus axostyle (48)
The left and right sides, axostylus axostyle (48) is provided with axostylus axostyle screw (49), wind-tunnel (45) is provided with and can hide
Keep out the wind the deep bead (47) of hole (45), and the rear end face of deep bead (47) is provided with deep bead fixed plate
(50), deep bead fixed plate (50) is transversely provided with to the rear end face of deep bead fixed plate (50) convex
The axostylus axostyle groove (51) going out, described axostylus axostyle groove (51) is provided with and axostylus axostyle screw (49) position phase
Corresponding fixed plate screw (52), deep bead fixed plate (50) is arranged on by axostylus axostyle groove (51)
The rear end of axostylus axostyle (49) by screw through fixed plate screw (52) with axostylus axostyle screw (49) screw thread even
Connect, make deep bead fixed plate (50) be fixed on axostylus axostyle (49), the rear end of described deep bead (47)
Face is fixing with the front end face of deep bead fixed plate (50) to be connected.
6. the multifunctional all burner according to claim 3 to 5 any one, it is characterised in that: institute
State the first casing (17) and be provided with air intake assembly (39), the first casing (17) is provided with control into
The air door executer (14) of wind assembly (39) intake, air door executer (14) connects able to programme patrolling
Collect controller (13).
7. multifunctional all burner according to claim 6, it is characterised in that: described air intake assembly (39)
Including the second gear aerofoil (20) of the first gear aerofoil (19) of annular and annular, first gear aerofoil (19)
On be arranged at intervals with one week first gear aerofoil import (54), second gear aerofoil is arranged at intervals with on (20)
One week second gear aerofoil import (55), is respectively equipped with along the first casing (17) on the first casing (17)
Circumferentially disposed one week the first air intake component holes (41), the second air intake component holes (42), first keeps out the wind
The rear end of plate (19) is connected fixing with the front end of second gear aerofoil (20) by contiguous block (53), when
After air intake assembly (39) is arranged in the middle part of the first casing (17), first gear aerofoil (19) is placed in
First air intake component holes (41) place, second gear aerofoil (20) is placed in the second air intake component holes (42) place,
Upper at second gear aerofoil (20) and first gear aerofoil (19) opposite side periphery wall lower end is provided with arc
Tooth bar (59), have with tooth bar (59) corresponding section, position in the lower end of the first casing (17)
Rack bore (57), air door executer (14) is fixed on the first machine by air door executer base plate (58)
The lower end of shell (17), rack bore (57) place, the output shaft of described air door executer (14) is provided with
The driving tooth (60) engaging with tooth bar (59).
8. multifunctional all burner according to claim 7, it is characterised in that: described temperature element (38)
It is connected with programmable logic controller (PLC) (13) through furnace tube high temperature detection terminal box (12).
9. multifunctional all burner according to claim 8, it is characterised in that: described FPGA
Controller (13) uses Delta DVP-12SA2, and man-machine interface (33) uses Delta DOP-B07S415.
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CN201510460323.3A CN104976614B (en) | 2015-04-17 | 2015-07-31 | Multifunctional all burner |
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CN2015101845387 | 2015-04-17 | ||
CN201510184538.7A CN104791789A (en) | 2015-04-17 | 2015-04-17 | Multifunctional integrated combustor |
CN201510460323.3A CN104976614B (en) | 2015-04-17 | 2015-07-31 | Multifunctional all burner |
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CN104976614A CN104976614A (en) | 2015-10-14 |
CN104976614B true CN104976614B (en) | 2016-11-09 |
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CN201510184538.7A Pending CN104791789A (en) | 2015-04-17 | 2015-04-17 | Multifunctional integrated combustor |
CN201520566283.6U Withdrawn - After Issue CN205037293U (en) | 2015-04-17 | 2015-07-31 | Multi -functional integrated combustor |
CN201510460323.3A Active CN104976614B (en) | 2015-04-17 | 2015-07-31 | Multifunctional all burner |
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CN201510184538.7A Pending CN104791789A (en) | 2015-04-17 | 2015-04-17 | Multifunctional integrated combustor |
CN201520566283.6U Withdrawn - After Issue CN205037293U (en) | 2015-04-17 | 2015-07-31 | Multi -functional integrated combustor |
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Families Citing this family (11)
Publication number | Priority date | Publication date | Assignee | Title |
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CN104791789A (en) * | 2015-04-17 | 2015-07-22 | 深圳市佳运通电子有限公司 | Multifunctional integrated combustor |
CN105240848A (en) * | 2015-10-28 | 2016-01-13 | 四川华索自动化信息工程有限公司 | Self-adjusting protection self-control type preheating burner |
CN105240849A (en) * | 2015-10-28 | 2016-01-13 | 四川华索自动化信息工程有限公司 | Triode combined self-adjustment winding type self-control preheating burner |
CN105240852A (en) * | 2015-10-28 | 2016-01-13 | 四川华索自动化信息工程有限公司 | Triode voltage stabilization self-control type preheating combustor |
CN105240854A (en) * | 2015-10-28 | 2016-01-13 | 四川华索自动化信息工程有限公司 | Triode current stabilizing self-control preheating burner |
CN105299643A (en) * | 2015-10-28 | 2016-02-03 | 四川华索自动化信息工程有限公司 | Auto-control twisting type preheating burner |
CN105202540A (en) * | 2015-10-28 | 2015-12-30 | 四川华索自动化信息工程有限公司 | Triode composition constant-current winding type auto-control preheating burner |
CN105240853A (en) * | 2015-10-28 | 2016-01-13 | 四川华索自动化信息工程有限公司 | Self-control type preheating burner |
CN105276582A (en) * | 2015-10-28 | 2016-01-27 | 四川华索自动化信息工程有限公司 | Triode combination voltage-stabilization winding type self-control preheating burner |
CN105485680B (en) * | 2015-12-07 | 2018-11-20 | 湖南三一路面机械有限公司 | Burner and its control method and bituminous mixing plant |
CN113899077A (en) * | 2021-09-16 | 2022-01-07 | 列斯丽(深圳)技术有限公司 | Guiding device and guiding system for leakage of oil field heating furnace |
Family Cites Families (6)
Publication number | Priority date | Publication date | Assignee | Title |
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CN101403503B (en) * | 2008-11-20 | 2012-02-29 | 北京航天石化技术装备工程公司 | Full-automatic security pilot burner for combustor |
CN201589431U (en) * | 2009-12-31 | 2010-09-22 | 王志刚 | Safe combustion device of heating furnace |
CN201621866U (en) * | 2010-03-12 | 2010-11-03 | 深圳市佳运通电子有限公司 | Furnace tube high temperature detection device |
CN202133121U (en) * | 2011-05-20 | 2012-02-01 | 深圳市佳运通电子有限公司 | Leakage detection combustion apparatus |
CN103968667A (en) * | 2013-01-29 | 2014-08-06 | 荣咨海 | Hearth direct-combustion energy-saving hot-shear furnace |
CN104791789A (en) * | 2015-04-17 | 2015-07-22 | 深圳市佳运通电子有限公司 | Multifunctional integrated combustor |
-
2015
- 2015-04-17 CN CN201510184538.7A patent/CN104791789A/en active Pending
- 2015-07-31 CN CN201520566283.6U patent/CN205037293U/en not_active Withdrawn - After Issue
- 2015-07-31 CN CN201510460323.3A patent/CN104976614B/en active Active
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CN104976614A (en) | 2015-10-14 |
CN205037293U (en) | 2016-02-17 |
CN104791789A (en) | 2015-07-22 |
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