CN208751141U - A kind of temperature automatically controlled fluidized bed furnace - Google Patents

A kind of temperature automatically controlled fluidized bed furnace Download PDF

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Publication number
CN208751141U
CN208751141U CN201821195691.5U CN201821195691U CN208751141U CN 208751141 U CN208751141 U CN 208751141U CN 201821195691 U CN201821195691 U CN 201821195691U CN 208751141 U CN208751141 U CN 208751141U
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fluidized bed
bed furnace
air
side wall
controller
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CN201821195691.5U
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王根渝
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Xundian Yong Bin Industrial Waste Residue Development And Utilization Co Ltd
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Xundian Yong Bin Industrial Waste Residue Development And Utilization Co Ltd
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Abstract

It is disclosed by the utility model to belong to fluidized bed furnace technical field, specially a kind of temperature automatically controlled fluidized bed furnace, including rack, the rack is equipped with fluidized bed furnace, the fluidized bed furnace bottom left is equipped with air inlet pipe, and air blower is connected on the left of air inlet pipe, fluidized bed furnace lower end front side wall is equipped with controller, fluidized bed furnace lower end left side wall is equipped with lower feed box, and lower feed box is equipped with material controlling component, fluidized bed furnace lower end right side wall is equipped with slag notch, escape pipe is equipped on the right side of the boiling furnace upper end, and air-introduced machine is connected on the right side of escape pipe, the boiling furnace chamber lower end is equipped with blast cap supporting plate, and blast cap is uniformly equidistantly equipped on blast cap supporting plate, cooling tube is equipped with above the blast cap supporting plate, the boiling furnace chamber middle-end left side wall is equipped with monitoring assembly.The utility model passes through the monitoring device being arranged in fluidized bed furnace and controller cooperates, and realizes sensing control temperature, realizes and automatically controls.

Description

A kind of temperature automatically controlled fluidized bed furnace
Technical field
It is disclosed by the utility model to belong to fluidized bed furnace technical field, specially a kind of temperature automatically controlled fluidized bed furnace.
Background technique
Cinder raw material can contain moisture during transportation, it is therefore desirable in shattering process with hot gas to broken raw material into Row drying usually uses fluidized bed furnace when needed in broken mixing apparatus to mixed cinder progress drying operation is crushed, By the way that steam generated in fluidized bed furnace is carried out drying and processing to the finished product in broken mixing apparatus, but fluidized bed furnace makes Used time is manual adjustment mostly, is operated time-consuming and laborious.For this purpose, we have proposed a kind of temperature automatically controlled fluidized bed furnaces to come into operation, use To solve the above problems.
Utility model content
The purpose of this utility model is to provide a kind of temperature automatically controlled fluidized bed furnaces, propose in above-mentioned background technique to solve Manual adjustment, time-consuming and laborious problem.
To achieve the above object, the utility model provides the following technical solutions: a kind of temperature automatically controlled fluidized bed furnace, including machine Frame, the rack are equipped with fluidized bed furnace, and the fluidized bed furnace bottom left is equipped with air inlet pipe, and is connected with air blast on the left of air inlet pipe Machine, fluidized bed furnace lower end front side wall are equipped with controller, and fluidized bed furnace lower end left side wall is equipped with lower feed box, and lower feed box It is equipped with material controlling component, the material controlling component is made of hydraulic cylinder, strut, upright bar and sprue, fluidized bed furnace lower end right side wall It is equipped with slag notch, escape pipe is equipped on the right side of the boiling furnace upper end, and be connected with air-introduced machine, the fluidized bed furnace on the right side of escape pipe Top center is equipped with explosionproof hole, and the boiling furnace chamber lower end is equipped with blast cap supporting plate, and is uniformly equidistantly equipped on blast cap supporting plate Blast cap, the blast cap supporting plate top are equipped with cooling tube, and the boiling furnace chamber middle-end left side wall is equipped with monitoring assembly, the prison It surveys component to be made of thermocouple, oxygen content sensor and pressure sensor, the thermocouple, oxygen content sensor and pressure Sensor is from top to bottom set gradually, and the controller electrically connects with air blower, material controlling component, air-introduced machine and monitoring assembly respectively It connects.
Preferably, the fluidized bed furnace inner sidewall is equipped with fire proofing tile, and pressure regulator valve, and pressure regulator valve are equipped on the right side of the explosionproof hole It is electrically connected with controller.
Preferably, the cooling tube left and right ends are run through fluidized bed furnace inner sidewall and are connect with external cold source, the cooling tube It is formed into a loop between external cold source, the cooling tube outside the fluidized bed furnace is equipped with solenoid valve, and solenoid valve and control Device is electrically connected.
Preferably, the slag notch is equipped with baiting valve, and automatic material cutting device is equipped on the outside of baiting valve, described from dynamic circuit breaker Material device is made of motor, shaft and baffle, and the baiting valve and automatic material cutting device are electrically connected with controller.
Preferably, the output end of the thermocouple couples with the input terminal of material controlling component and solenoid valve respectively, the oxygen The output end of content level sensor couples with the input terminal of air blower, the output end and air-introduced machine and pressure regulator valve of the pressure sensor Input terminal connection.
Compared with prior art, the utility model has the beneficial effects that the utility model is novel in design, and it is structurally reasonable, lead to The adjusting of temperature is realized in the solenoid valve cooperation crossed on thermocouple and material controlling component and cooling tube, passes through oxygen content sensor and drum The adjusting of oxygen content is realized in blower cooperation, and the tune of furnace pressure is realized by pressure sensor and the cooperation of air-introduced machine and pressure regulator valve Section, the utility model pass through the monitoring device being arranged in fluidized bed furnace and controller, pressure regulator valve, solenoid valve, air blower, air inducing Machine, material controlling component, baiting valve and the cooperation of automatic discharging component, realize sensing control temperature, realize and automatically control, using effect is good.
Detailed description of the invention
FIG. 1 is a schematic structural view of the utility model;
Fig. 2 is the utility model schematic diagram of internal structure;
Fig. 3 is enlarged drawing at the utility model A.
In figure: 1 rack, 2 fluidized bed furnaces, 3 air inlet pipe, 4 air blowers, 5 controllers, 6 lower feed boxs, 7 material controlling components, 8 slag notches, 9 escape pipes, 10 air-introduced machines, 11 explosionproof holes, 12 blast cap supporting plates, 13 blast caps, 14 cooling tubes, 15 monitoring assemblies, 151 thermocouples, 152 Oxygen content sensor, 153 pressure sensors, 100 fire proofing tiles, 200 pressure regulator valves, 300 baiting valves, 400 automatic material cutting devices.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work Every other embodiment obtained, fall within the protection scope of the utility model.
Fig. 1-3 is please referred to, the utility model provides a kind of technical solution: a kind of temperature automatically controlled fluidized bed furnace, including rack 1, The rack 1 is equipped with fluidized bed furnace 2, and 2 bottom left of fluidized bed furnace is equipped with air inlet pipe 3, and is connected with air blast on the left of air inlet pipe 3 Machine 4, the 2 lower end front side wall of fluidized bed furnace are equipped with controller 5, and the 2 lower end left side wall of fluidized bed furnace is equipped with lower feed box 6, and Lower feed box 6 is equipped with material controlling component 7, and the material controlling component 7 is made of hydraulic cylinder, strut, upright bar and sprue, the fluidized bed furnace 2 Lower end right side wall is equipped with slag notch 8, is equipped with escape pipe 9 on the right side of 2 upper end of fluidized bed furnace, and be connected with and draw on the right side of escape pipe 9 Blower 10,2 top center of fluidized bed furnace are equipped with explosionproof hole 11, and the 2 inner cavity lower end of fluidized bed furnace is equipped with blast cap supporting plate 12, and wind It is uniformly equidistantly equipped with blast cap 13 on cap supporting plate 12, is equipped with cooling tube 14,2 inner cavity of fluidized bed furnace above the blast cap supporting plate 12 Middle-end left side wall is equipped with monitoring assembly 15, and the monitoring assembly 15 is by thermocouple, oxygen content sensor and pressure sensor Composition, the thermocouple 151, oxygen content sensor 152 and pressure sensor 153 are from top to bottom set gradually, the control Device 5 is electrically connected with air blower 4, material controlling component 7, air-introduced machine 10 and monitoring assembly 15 respectively.
Wherein, 2 inner sidewall of fluidized bed furnace is equipped with fire proofing tile 100, is equipped with pressure regulator valve 200 on the right side of the explosionproof hole 11, And pressure regulator valve 200 and controller 5 are electrically connected, 14 left and right ends of cooling tube run through 2 inner sidewall of fluidized bed furnace and outside is cold Source connection, is formed into a loop, the cooling tube 14 outside the fluidized bed furnace 2 is equipped between the cooling tube 14 and external cold source Solenoid valve, and solenoid valve and controller 5 are electrically connected, the slag notch 8 is equipped with baiting valve 300, and sets on the outside of baiting valve 300 Have automatic material cutting device 400, the automatic material cutting device 400 is made of motor, shaft and baffle, the baiting valve 300 and from Dynamic material cutting device 400 is electrically connected with controller 5, the output end of the thermocouple 151 respectively with material controlling component 7 and solenoid valve Input terminal connection, the output end of the oxygen content sensor 152 couples with the input terminal of air blower 4, the pressure sensing The output end of device 153 couples with the input terminal of air-introduced machine 10 and pressure regulator valve 200.
Working principle: use the present apparatus when, according to 151 real-time detection of thermocouple to temperature furnace is judged by controller 5 Interior temperature height, the condensed water that opens solenoid valve is connected in cooling tube 14 when high are realized cooling, are continued when low by material controlling component 7 Fuel is added, keeps in-furnace temperature to stablize, the oxygen content arrived according to 152 real-time detection of oxygen content sensor is by controller 5 Judge whether oxygen content is too low in furnace, air blower 4 is opened when too low, is arrived according to 153 real-time detection of pressure sensor Pressure is judged furnace pressure height by controller 5, and air-introduced machine 10 and pressure regulator valve 200 are opened when excessively high, is added in furnace While fuel, controller 5 can then open baiting valve 300 and carry out discharge processing.
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art, It is understood that these embodiments can be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaired Change, replacement and variant, the scope of the utility model is defined by the appended claims and the equivalents thereof.

Claims (5)

1. a kind of temperature automatically controlled fluidized bed furnace, including rack (1), it is characterised in that: the rack (1) is equipped with fluidized bed furnace (2), institute It states fluidized bed furnace (2) bottom left to be connected with air blower (4) equipped with air inlet pipe (3), and on the left of air inlet pipe (3), the fluidized bed furnace (2) Lower end front side wall is equipped with controller (5), and fluidized bed furnace (2) the lower end left side wall is equipped with lower feed box (6), and lower feed box (6) It is equipped with material controlling component (7), the material controlling component (7) is made of hydraulic cylinder, strut, upright bar and sprue, under the fluidized bed furnace (2) It holds right side wall to be equipped with slag notch (8), is equipped with escape pipe (9) on the right side of fluidized bed furnace (2) upper end, and connect on the right side of escape pipe (9) It is connected to air-introduced machine (10), fluidized bed furnace (2) top center is equipped with explosionproof hole (11), and fluidized bed furnace (2) the inner cavity lower end is equipped with Blast cap supporting plate (12), and blast cap (13) equidistantly uniformly are equipped on blast cap supporting plate (12), it is equipped with above the blast cap supporting plate (12) Cooling tube (14), fluidized bed furnace (2) the inner cavity middle-end left side wall are equipped with monitoring assembly (15), and the monitoring assembly (15) is by heat Galvanic couple (151), oxygen content sensor (152) and pressure sensor (153) composition, the thermocouple (151), oxygen content pass Sensor (152) and pressure sensor (153) are from top to bottom set gradually, the controller (5) respectively with air blower (4), material controlling Component (7), air-introduced machine (10) and monitoring assembly (15) are electrically connected.
2. a kind of temperature automatically controlled fluidized bed furnace according to claim 1, it is characterised in that: on fluidized bed furnace (2) inner sidewall Equipped with fire proofing tile (100), pressure regulator valve (200) are equipped on the right side of the explosionproof hole (11), and pressure regulator valve (200) and controller (5) electricity Property connection.
3. a kind of temperature automatically controlled fluidized bed furnace according to claim 1, it is characterised in that: cooling tube (14) left and right ends It is connect through fluidized bed furnace (2) inner sidewall with external cold source, is formed into a loop, is located between the cooling tube (14) and external cold source The external cooling tube (14) of the fluidized bed furnace (2) is equipped with solenoid valve, and solenoid valve and controller (5) are electrically connected.
4. a kind of temperature automatically controlled fluidized bed furnace according to claim 1, it is characterised in that: the slag notch (8) is equipped with down Expect valve (300), and baiting valve (300) on the outside of be equipped with automatic material cutting device (400), the automatic material cutting device (400) by motor, Shaft and baffle composition, the baiting valve (300) and automatic material cutting device (400) are electrically connected with controller (5).
5. a kind of temperature automatically controlled fluidized bed furnace according to claim 1, it is characterised in that: the output of the thermocouple (151) End couples with the input terminal of material controlling component (7) and solenoid valve respectively, the output end of the oxygen content sensor (152) and air blast The input terminal of machine (4) couples, the output end of the pressure sensor (153) and the input of air-introduced machine (10) and pressure regulator valve (200) End connection.
CN201821195691.5U 2018-07-26 2018-07-26 A kind of temperature automatically controlled fluidized bed furnace Active CN208751141U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821195691.5U CN208751141U (en) 2018-07-26 2018-07-26 A kind of temperature automatically controlled fluidized bed furnace

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821195691.5U CN208751141U (en) 2018-07-26 2018-07-26 A kind of temperature automatically controlled fluidized bed furnace

Publications (1)

Publication Number Publication Date
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110274469A (en) * 2019-06-25 2019-09-24 马鞍山市中天机械制造安装有限公司 A kind of temperature automatically controlled fluidized bed furnace that effect is good
CN111306537A (en) * 2020-04-02 2020-06-19 娄底高安环保科技有限公司 High-tonnage fluidized bed furnace control system adopting sensing automatic optimization

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110274469A (en) * 2019-06-25 2019-09-24 马鞍山市中天机械制造安装有限公司 A kind of temperature automatically controlled fluidized bed furnace that effect is good
CN111306537A (en) * 2020-04-02 2020-06-19 娄底高安环保科技有限公司 High-tonnage fluidized bed furnace control system adopting sensing automatic optimization
CN111306537B (en) * 2020-04-02 2020-11-10 娄底高安环保科技有限公司 High-tonnage fluidized bed furnace control system adopting sensing automatic optimization

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