CN105157843A - Temperature measuring system for the surface of a rotary kiln body - Google Patents

Temperature measuring system for the surface of a rotary kiln body Download PDF

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Publication number
CN105157843A
CN105157843A CN201510218435.8A CN201510218435A CN105157843A CN 105157843 A CN105157843 A CN 105157843A CN 201510218435 A CN201510218435 A CN 201510218435A CN 105157843 A CN105157843 A CN 105157843A
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China
Prior art keywords
rotary kiln
module
infrared
kiln shell
surface temperature
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Pending
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CN201510218435.8A
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Chinese (zh)
Inventor
叶强
陈伟新
潘琳
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Wuxi Chongan District Technology Innovation Service Center
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Wuxi Chongan District Technology Innovation Service Center
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Priority to CN201510218435.8A priority Critical patent/CN105157843A/en
Publication of CN105157843A publication Critical patent/CN105157843A/en
Pending legal-status Critical Current

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  • Muffle Furnaces And Rotary Kilns (AREA)

Abstract

The invention discloses a temperature measuring system for the surface of a rotary kiln body. The system comprises a microcontroller module, and also an infrared radiation scanner, a synchronous signal module, a display module and a power supply module that are all connected to the microcontroller module. The power supply module provides electric energy needed by the microcontroller module, the infrared radiation scanner, the synchronous signal module and the display module.

Description

A kind of rotary kiln shell surface temperature measurement system
Technical field
The present invention relates to a kind of infrared light measuring system, particularly relate to a kind of rotary kiln shell surface temperature measurement system, belong to field of temperature measurement.
Background technology
In cement production process, most important process procedure is the calcining of cement clinker, and rotary kiln is the nucleus equipment realizing burning clinker of cement, and its working order is directly connected to Yield and quality and raw material, the fuel consumption of grog.Temperature is too high, the damage that conference causes rotary kiln liner is crossed in thermal oscillation, also can bring disaster to kiln shell time serious, and rotary kiln is produced in the process of grog, determines that can kiln the production and safety key factor that operates in production increases with quality up and cost of production down ground be kiln lining.In view of this, in kiln operation process, understand situation in kiln in real time, take appropriate measures in time, preventing kiln lining and kiln shell from damaging is the important guarantee that rotary kiln realizes economical operation.
Rotary kiln is ceaselessly pivotal in operational process, and its speed of gyration constantly changes; Kiln shell surface temperature is a multi-variable function, it is not only relevant to time, kiln axial location, the kiln shell surface factor such as circumferential position, also be subject to the impact of environment temperature and other factors, therefore, kiln shell surface temperature is different from other thermal parameters, is difficult to detect by conventional detection means and show.
Such as application number is a kind of infrared measurement of temperature method of " 201110036109.7 ", comprise the steps: that (1) is when the actual temperature recording measured object is t, automated variable dual wavelength infrared detecting device is utilized to record the radiation intensity E1 (λ 1 of measured object, t) and E2 (λ 2, t), wherein, E1 (λ 1, the radiation intensity of measured object when being t) corresponding wavelength λ 1, E2 (λ 2, the radiation intensity of measured object when being t) corresponding wavelength λ 2; (2) by record E1 (λ 1, t), E2 (λ 2, t) substitute into and formula in, and solve α, the value of δ coefficient, wherein, α, δ are with the material composition of measured object, temperature and the coefficient measuring wavelength and become; (3) factor alpha will solved, in the value generation of δ, returns measured object radiation intensity formula E (λ, t), in=α λ-5 (e δ/λ t-1)-1, the corresponding relation curve between the radiation intensity of measured object under setted wavelength and measured object temperature is obtained; And (4) utilize automated variable dual wavelength infrared detecting device to record the radiation intensity of measured object under setted wavelength, and obtain the temperature of measured object based on the corresponding relation curve between the radiation intensity of measured object under setted wavelength and measured object temperature.This invention measuring accuracy needs to be improved further.
And for example application number is the technical field of a kind of infrared thermometer calibrating of " 201310080745.9 ", and particularly relating to a kind of infrared thermometer calibrating complete equipment, is the equipment examined and determine the property indices of infrared thermometer.This invention comprises with lower part: three-dimensional motion system, three-dimensional motion control and pen recorder, pyrotoxin loading platform and target surface.This invention has the features such as automaticity is high, practical, novel in design, simple to operate, can examine and determine the property indices of various model specification and the different infrared thermometer of profile.Solve the problem of the distance ratio of infrared measurement of temperature instrument and the calibrating of alignment clamp precision, the measured value of infrared thermometer is traced to the source, the infrared thermometer being applied to production field is effectively monitored, ensure that electrical equipment uses watch-dog to detect data accurately and reliably, this invention measuring accuracy needs to be improved further.
Summary of the invention
Technical matters to be solved by this invention provides a kind of convenience for the deficiency of background technology, flexibly, be easy to the rotary kiln shell surface temperature measurement system that operates.
The present invention is for solving the problems of the technologies described above by the following technical solutions:
A kind of rotary kiln shell surface temperature measurement system, comprises micro controller module and connected infrared radiation scanner, synchronizing signal module, display module and power module; Described power module is micro controller module, infrared radiation scanner, synchronizing signal module and display module provide required electric energy;
Wherein, infrared radiation scanner, for launching infrared light to rotary kiln shell, and then receives the infrared intensity from rotary kiln shell surface;
Synchronizing signal module, is synchronized to micro controller module for the infrared intensity received by infrared radiation scanner;
Micro controller module, for according to the infrared intensity received, passes through calculate the surface temperature of rotary kiln shell;
Wherein, L λfor infrared intensity, λ is infrared wavelength, and c is the infrared light light velocity, and h is pul gram Changshu, and k is Boltzmann Changshu, and T is the surface temperature of rotary kiln shell;
Display module, for showing the surface temperature of the rotary kiln shell that micro controller module calculates in real time.
As the further preferred version of a kind of rotary kiln shell of the present invention surface temperature measurement system, described micro controller module is AVR series monolithic.
As the further preferred version of a kind of rotary kiln shell of the present invention surface temperature measurement system, described display module is LCD display.
As the further preferred version of a kind of rotary kiln shell of the present invention surface temperature measurement system, described power module adopts lithium battery.
As the further preferred version of a kind of rotary kiln shell of the present invention surface temperature measurement system, described lithium battery is chargeable lithium cell.
The present invention adopts above technical scheme compared with prior art, has following technique effect:
1, structure of the present invention simple, there is low cost, high precision, the feature of microminiaturized numerical monitor;
2, the present invention can the rotary kiln shell of the acquisition in real time surface temperature of safety and precise by infrared radiation scanner.
Accompanying drawing explanation
Fig. 1 is structure principle chart of the present invention.
Embodiment
Below in conjunction with accompanying drawing, technical scheme of the present invention is described in further detail:
As shown in Figure 1, a kind of rotary kiln shell surface temperature measurement system, comprises micro controller module and connected infrared radiation scanner, synchronizing signal module, display module and power module; Described power module is micro controller module, infrared radiation scanner, synchronizing signal module and display module provide required electric energy;
Wherein, infrared radiation scanner, for launching infrared light to rotary kiln shell, and then receives the infrared intensity from rotary kiln shell surface;
Synchronizing signal module, is synchronized to micro controller module for the infrared intensity received by infrared radiation scanner;
Micro controller module, for according to the infrared intensity received, passes through calculate the surface temperature of rotary kiln shell;
Wherein, L λfor infrared intensity, λ is infrared wavelength, and c is the infrared light light velocity, and h is pul gram Changshu, and k is Boltzmann Changshu, and T is the surface temperature of rotary kiln shell;
Display module, for showing the surface temperature of the rotary kiln shell that micro controller module calculates in real time.
Wherein, described micro controller module is AVR series monolithic, and described display module is LCD display, and described power module adopts lithium battery, and described lithium battery is chargeable lithium cell.
Fast infrared radiation scanning instrument is a kind of infrared radiation temperature measurement device with rapid scanning function, and be arranged on the appropriate location apart from rotary kiln 30 ~ 100m place, scanning angle is 90 °.Its rotating scanner measures first linearly arrangement in direction along being parallel to rotary kiln axis by the infrared radiation of optical system reception from specific region, rotary kiln shell one, surface (be called and measure unit).Fast infrared temperature measurement scanner scans 150 times along the direction of rotary kiln axis p.s., and rotary kiln often turns around, and produces 200 ~ 400 complete scan.Some scanning obtains: represent the rotary kiln shell some voltage signals of narrow zone Temperature Distribution in surface and the voltage signal of reference temperature, these data just can obtain the operating mode of a certain section in rotary kiln again through relevant treatment.As whether even in kliner coating, ring formation situation, kliner coating or kiln lining come off the information such as scope of position, hot spot.
Kiln synchronizing datum signal generator, when rotary kiln often turns a whole circle, produces the synchronizing pulse that is used as synchronous base, sends into embedded system.Embedded system take synchronizing pulse as benchmark, gathers the temperature data of kiln
AVR single chip has prefetched instruction function, namely when an execution instruction, in advance next instruction is got into, and call instruction can be performed within a clock period; Multiple accumulator type, data processing speed is fast; AVR single chip has 32 general purpose working registers, and being equivalent to has 32 viaducts, can fast passing; Response time is fast.AVR single chip has multiple fixing interrupt vector entry address, can respond interruption fast; AVR single chip power consumption is low.For typical power consumption situation, be 100nA when WDT closes, be more suitable for battery powered application apparatus; The minimum 1.8V of some devices gets final product work; AVR single chip security performance is good.
Fast infrared temperature measurement scanner of the present invention carries out in real time rotary kiln shell temperature, continuous print is measured, after Measurement and Data Processing, and the temperature range of the different section in trunk surface that normally can run according to kiln, setting alarm temperature.In kiln operational process, when any place's actual temperature in trunk surface exceedes normal temperature, system provides alerting signal immediately.
Temperature is higher than the object of absolute zero, and it is just at ceaselessly space radiation electromagnetic wave towards periphery.This electromagnetic wave produced at atom and intramolecules vibration due to the charged particle of interior of articles, is called heat radiation.Heat radiation is a whole electromagnetic ingredient, and the infrared ray that heat radiation electromagnetic wave is differed greatly by wavelength, visible ray, ultraviolet formed.Infrared radiation refers generally to the heat radiation of wavelength between 0.75 ~ 1000 μm.Planck blackbody radiation patterns is the starting point of theory of infrared radiation, and the funtcional relationship between the radianting capacity of absolute black body and wavelength (λ) and temperature (T) is as follows.Micro controller module passes through calculate the surface temperature of rotary kiln shell, wherein, L λfor infrared intensity, λ is infrared wavelength, and c is the infrared light light velocity, h pul gram Changshu, k Boltzmann Changshu, the surface temperature of T rotary kiln shell;
Those skilled in the art of the present technique are understandable that, unless otherwise defined, all terms used herein (comprising technical term and scientific terminology) have the meaning identical with the general understanding of the those of ordinary skill in field belonging to the present invention.Should also be understood that those terms defined in such as general dictionary should be understood to have the meaning consistent with the meaning in the context of prior art, unless and define as here, can not explain by idealized or too formal implication.
Above embodiment is only and technological thought of the present invention is described, can not limit protection scope of the present invention with this, and every technological thought proposed according to the present invention, any change that technical scheme basis is done, all falls within scope.By reference to the accompanying drawings embodiments of the present invention are explained in detail above, but the present invention is not limited to above-mentioned embodiment, in the ken that those of ordinary skill in the art possess, makes a variety of changes under can also or else departing from the prerequisite of present inventive concept.

Claims (5)

1. a rotary kiln shell surface temperature measurement system, is characterized in that: comprise micro controller module and connected infrared radiation scanner, synchronizing signal module, display module and power module; Described power module is micro controller module, infrared radiation scanner, synchronizing signal module and display module provide required electric energy;
Wherein, infrared radiation scanner, for launching infrared light to rotary kiln shell, and then receives the infrared intensity from rotary kiln shell surface;
Synchronizing signal module, is synchronized to micro controller module for the infrared intensity received by infrared radiation scanner;
Micro controller module, for according to the infrared intensity received, passes through calculate the surface temperature of rotary kiln shell;
Wherein, L λfor infrared intensity, λ is infrared wavelength, and c is the infrared light light velocity, and h is pul gram Changshu, and k is Boltzmann Changshu, and T is the surface temperature of rotary kiln shell;
Display module, for showing the surface temperature of the rotary kiln shell that micro controller module calculates in real time.
2. a kind of rotary kiln shell surface temperature measurement system according to claim 1, is characterized in that: described micro controller module is AVR series monolithic.
3. a kind of rotary kiln shell surface temperature measurement system according to claim 1, is characterized in that: described display module is LCD display.
4. a kind of rotary kiln shell surface temperature measurement system according to claim 1, is characterized in that: described power module adopts lithium battery.
5. a kind of rotary kiln shell surface temperature measurement system according to claim 4, is characterized in that: described lithium battery is chargeable lithium cell.
CN201510218435.8A 2015-04-30 2015-04-30 Temperature measuring system for the surface of a rotary kiln body Pending CN105157843A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105823561A (en) * 2016-04-28 2016-08-03 无锡昊瑜节能环保设备有限公司 Method for measuring surface temperature of rotary kiln carcass body based on infrared
CN106679815A (en) * 2016-12-05 2017-05-17 重庆邮电大学 High temperature point precise locating method in infrared scanning temperature measurement of rotary kiln surface
CN109583087A (en) * 2018-11-30 2019-04-05 重庆邮电大学 A kind of rotary kiln surface temperature-compensation method based on multi-faceted fusion

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CN1445479A (en) * 2002-03-18 2003-10-01 中南大学 On-line monitoring system for multiple parallelled rotary kiln
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CN2694128Y (en) * 2003-07-04 2005-04-20 北方工业大学 Infrared temperature scanning and monitoring system for rotary kiln
CN101083543A (en) * 2006-05-29 2007-12-05 株式会社东芝 Server equipment
CN201083543Y (en) * 2007-09-07 2008-07-09 常州宝仪机电设备有限公司 Angle self-adapting infrared scanning temperature measurement system

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105823561A (en) * 2016-04-28 2016-08-03 无锡昊瑜节能环保设备有限公司 Method for measuring surface temperature of rotary kiln carcass body based on infrared
CN106679815A (en) * 2016-12-05 2017-05-17 重庆邮电大学 High temperature point precise locating method in infrared scanning temperature measurement of rotary kiln surface
CN109583087A (en) * 2018-11-30 2019-04-05 重庆邮电大学 A kind of rotary kiln surface temperature-compensation method based on multi-faceted fusion
CN109583087B (en) * 2018-11-30 2023-05-30 重庆邮电大学 Rotary kiln surface temperature compensation method based on multidirectional fusion

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Application publication date: 20151216