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Investigation on the relationship between hearth wall erosion and deadman permeability for large blast furnaces 被引量:1
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作者 XU Wanren MAO Xiaoming +1 位作者 ZHU Jinming LIU Kaihua 《Baosteel Technical Research》 CAS 2014年第2期1-11,共11页
In this study, the relationship between hearth wall erosion and deadman permeability was investigated based on the change in the hearth bottom and hearth sidewall temperatures. Additionally, the operation practice for... In this study, the relationship between hearth wall erosion and deadman permeability was investigated based on the change in the hearth bottom and hearth sidewall temperatures. Additionally, the operation practice for controlling hearth wall erosion in the large No. 1 blast furnace at Baosteel was also investigated. The reasons for the decrease in the permeability of deadman coke were analyzed, and measures for improving the permeability of deadman coke and controlling hearth wall temperature rising were described. The results show that a decrease in deadman coke permeability is the main reason for refractory temperature increase and hearth wall erosion. This indicates the importance of monitoring changes in hearth working conditions and taking appropriate measures to maintain sufficient permeability of the deadman and balance the hot metal flow and drainage of slag. At this rate, the decline in the hearth bottom temperature and fast rising of the hearth wall temperature can be restrained. 展开更多
关键词 large blast furnace hearth DEADMAN PERMEABILITY hearth wall refractory erosion
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Numerical simulation of the direct reduction of pellets in a rotary hearth furnace for zinc-containing metallurgical dust treatment 被引量:10
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作者 Yu-liang Wu Ze-yi Jiang +2 位作者 Xin-xin Zhang Peng Wang Xue-feng She 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2013年第7期636-644,共9页
A mathematical model was established to describe the direct reduction of pellets in a rotary hearth furnace (RHF). In the model, heat transfer, mass transfer, and gas-solid chemical reactions were taken into account... A mathematical model was established to describe the direct reduction of pellets in a rotary hearth furnace (RHF). In the model, heat transfer, mass transfer, and gas-solid chemical reactions were taken into account. The behaviors of iron metallization and dezincification were analyzed by the numerical method, which was validated by experimental data of the direct reduction of pellets in a Si-Mo furnace. The simulation results show that if the production targets of iron metallization and dezincification are up to 80% and 90%, respectively, the furnace temperature for high-temperature sections must be set higher than 1300~ C. Moreover, an undersupply of secondary air by 20% will lead to a decline in iron metallization rate of discharged pellets by 10% and a decrease in dezincing rate by 13%. In addition, if the residence time of pellets in the furnace is over 20 min, its further extension will hardly lead to an obvious increase in production indexes under the same furnace temperature curve. 展开更多
关键词 rotary hearth furnaces direct reduction process DUST ore pellets DEZINCIFICATION numerical methods
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Formation mechanism of the protective layer in a blast furnace hearth 被引量:9
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作者 Ke-xin Jiao Jian-liang Zhang +2 位作者 Zheng-jian Liu Meng Xu Feng Liu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2015年第10期1017-1024,共8页
A variety of techniques, such as chemical analysis, scanning electron microscopy-energy dispersive spectroscopy, and X-ray diffraction, were applied to characterize the adhesion protective layer formed below the blast... A variety of techniques, such as chemical analysis, scanning electron microscopy-energy dispersive spectroscopy, and X-ray diffraction, were applied to characterize the adhesion protective layer formed below the blast furnace taphole level when a certain amount of titanium-bearing burden was used. Samples of the protective layer were extracted to identify the chemical composition, phase assemblage, andistribution. Furthermore, the formation mechanism of the protective layer was determined after clarifying the source of each componenFinally, a technical strategy was proposed for achieving a stable protective layer in the hearth. The results show that the protective layemainly exists in a bilayer form in the sidewall, namely, a titanium-bearing layer and a graphite layer. Both the layers contain the slag phaswhose major crystalline phase is magnesium melilite(Ca2Mg Si2O7) and the main source of the slag phase is coke ash. It is clearly determinethat solid particles such as graphite, Ti(C,N) and Mg Al2O4play an important role in the formation of the protective layer, and the key factofor promoting the formation of a stable protective layer is reasonable control of the evolution behavior of coke. 展开更多
关键词 blast furnaces hearthS protective layers electroch
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Study on the early warning mechanism for the security of blast furnace hearths 被引量:7
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作者 Hong-bo Zhao Shou-feng Huo Shu-sen Cheng 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2013年第4期345-353,共9页
The campaign life of blast furnace (BF) hearths has become the limiting factor for safety and high efficiency production of modern BFs. However, the early warning mechanism of hearth security has not been clear. In ... The campaign life of blast furnace (BF) hearths has become the limiting factor for safety and high efficiency production of modern BFs. However, the early warning mechanism of hearth security has not been clear. In this article, based on heat transfer calculations, heat flux and erosion monitoring, the features of heat flux and erosion were analyzed and compared among different types of hearths. The primary detecting elements, mathematical models, evaluating standards, and warning methods were discussed. A novel early warning mechanism with the three-level quantificational standards was proposed for BF hearth security. 展开更多
关键词 blast furnaces hearthS EROSION heat flux WARNING
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Analysis of All-Carbon Brick Bottom and Ceramic Cup Synthetic Hearth Bottom 被引量:6
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作者 ZHAO Hong-bo CHENG Shu-sen ZHAO Min-ge 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2007年第2期6-12,共7页
One of the bottlenecks of the blast furnace (BF) campaign is the life length of hearth bottom. The basic reason for the erosion of hearth bottom is its direct contact with hot metal. According to the theory of heat ... One of the bottlenecks of the blast furnace (BF) campaign is the life length of hearth bottom. The basic reason for the erosion of hearth bottom is its direct contact with hot metal. According to the theory of heat transfer, models of BF hearth bottom are built based on the actual examples using software and VC language, and the calculated results are in good agreement with the data of BF dissection after blowing out. The temperature distribution and the capability of the resistance to erosion for different structures of hearth bottom are analyzed, especially the two prevalent kinds of hearth bottom arrangements called "the method of heat transfer" for all-carbon brick bottom and "the method of heat isolation" for ceramic synthetic hearth bottom. Features of the two kinds of hearth bottoms are analyzed. Also the different ways of protecting the hearth bottom are clarified, according to some actual examples. After that, the same essence of prolonging life, and the fact that the existence of a "protective skull" with low thermal conductivity between the hot metal and brick layers is of utmost importance are shown. 展开更多
关键词 hearth bottom heat transfer method heat isolation method long life
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Numerical Simulation of Fluid Flow in Blast Furnace Hearth 被引量:3
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作者 ZHAO Min-ge SUN Tian-liang +1 位作者 CHENG Su-sen GAO Zheng-kai 《Journal of Iron and Steel Research(International)》 SCIE CAS CSCD 2005年第6期5-7,共3页
The liquid flow in blast furnace hearth can result in the erosion of hearth. To prolong the campaign life of blast furnace, the effects of coke bed structure, coke porosity and deepness of taphole on liquid flow in he... The liquid flow in blast furnace hearth can result in the erosion of hearth. To prolong the campaign life of blast furnace, the effects of coke bed structure, coke porosity and deepness of taphole on liquid flow in hearth were studied by re model under different conditions. The results show that with the decrease of coke porosity, the peripheral flow is enhanced. Moreover, the existence of narrow coke free zone and the deepness reduction of taphole can increase the flowability on the bottom of hearth. 展开更多
关键词 blast furnace hearth flow field numerical simulation
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Formation mechanism of the graphite-rich protective layer in blast furnace hearths 被引量:2
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作者 Ke-xin Jiao Jian-liang Zhang +2 位作者 Zheng-jian Liu Feng Liu Li-sheng Liang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2016年第1期16-24,共9页
A long campaign life of blast furnaces is heavily linked to the existence of a protective layer in their hearths. In this work, we conducted dissection studies and investigated damage in blast furnace hearths to estim... A long campaign life of blast furnaces is heavily linked to the existence of a protective layer in their hearths. In this work, we conducted dissection studies and investigated damage in blast furnace hearths to estimate the formation mechanism of the protective layer. The results illustrate that a significant amount of graphite phase was trapped within the hearth protective layer. Furthermore, on the basis of the thermodynamic and kinetic calculations of the graphite precipitation process, a precipitation potential index related to the formation of the graphite-rich protective layer was proposed to characterize the formation ability of this layer. We determined that, under normal operating conditions, the precipitation of graphite phase ~om hot metal was thermodynamically possible. Among elements that exist in hot metal, C, Si, and P favor graphite precipitation, whereas Mn and Cr inhibit this process. Moreover, at the same hot-face temperature, an increase of carbon concentration in hot metal can shorten the precipitation time. Finally, the results suggest that measures such as reducing the hot-face tem- perature and increasing the degree of carbon saturation in hot metal are critically important to improve the precipitation potential index. 展开更多
关键词 blast furnaces hearthS GRAPHITE protective layers formation mechanisms
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Optimization for the structure of BF hearth bottom and the arrangement of thermal couples 被引量:2
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作者 ZHAO Hongbo CHENG Shusen 《北京科技大学学报》 EI CAS CSCD 北大核心 2006年第12期1134-1134,共1页
The hearth of “heat transfer method” and the ceramic cup synthetic hearth bottom of “heart isolation method” are two most popular designs for blast furnace (BF). Although there are successful real examples, some d... The hearth of “heat transfer method” and the ceramic cup synthetic hearth bottom of “heart isolation method” are two most popular designs for blast furnace (BF). Although there are successful real examples, some disadvantages, for instance large heat loss and high cost, still exist for these designs. According to the theory of heat transfer, based on the calculation of temperature distribution of the hearth bottom, it is elucidated that all brick layers at the hearth bottom may not be considered as the only reason why different structures exhibited different temperature distributions although total heat resistance is the same, and then based on the effect of hot metal and cold water on different temperature distribution ranges, the concepts of “heat resistance” and “cooling enhancement” are put forth. Based on this, the disadvantages and the factors affecting temperature distribution, of the two types of hearth bottoms were illustrated. On the basis of these analyses, a novel structure for BF hearth bottom designing that can easily form “self-protecting” slag layer stably, called “the method of gradient brick layout that has an optimum combination of cooling enhancement and heat resistance” was proposed; it can not only prolong the hearth bottom longevity but also reduce the cost and heat loss. Also, the optimum arrangement of thermal couples in hearth bottom was suggested based on the previous studies on erosion prediction carried out by the author. 展开更多
关键词 blast furnace hearth bottom longevity design EROSION
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Numerical simulation for the lower shaft and the hearth bottom of blast furnace 被引量:3
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作者 SusenCheng TianjunYang +3 位作者 QingguoXue HaibinZuo XiaowuGao WeiguoYang 《Journal of University of Science and Technology Beijing》 CSCD 2003年第3期16-20,共5页
One of the methods forming the shell is to appropriately design the coolingstaves and hearth without overheating during the campaign life of the furnace. The three-dimensionalsteady mathematical models for calculating... One of the methods forming the shell is to appropriately design the coolingstaves and hearth without overheating during the campaign life of the furnace. The three-dimensionalsteady mathematical models for calculating the temperature distribution in the coolers andtwo-dimensional unsteady mathematical models with phase-change latent heat for calculating thetemperature distribution of the hearth bottom were established. The calculation results show thatthe formation of the slag-metal protection shell can be achieved by optimizing the design parametersof the coolers. Increasing the heat conductivity of the carbon brick can move the isothermal lineof 1150 deg C upward outside the hearth bottom. 展开更多
关键词 blast furnace STAVE plate-stave combined system hearth bottom mathematical model computational software
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Zonal method solution of radiative heat transfer in a one-dimensional long roller-hearth furnace in CSP 被引量:4
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作者 Wenfei Wu Yanhui Feng Xinxin Zhang 《Journal of University of Science and Technology Beijing》 CSCD 2007年第4期307-311,共5页
A radiative heat transfer mathematical model for a one-dimensional long furnace was set up in a through-type roller-hearth furnace (TTRHF) in compact strip production (CSP). To accurately predict the heat exchange... A radiative heat transfer mathematical model for a one-dimensional long furnace was set up in a through-type roller-hearth furnace (TTRHF) in compact strip production (CSP). To accurately predict the heat exchange in the furnace, modeling of the complex gas energy-balance equation in volume zones was considered, and the heat transfer model of heating slabs and wall lines was coupled with the radiative heat transfer model to identify the surface zonal temperature. With numerical simulation, the temperature fields of gas, slabs, and wall lines in the furnace under one typical working condition were carefully accounted and analyzed. The fundamental theory for analyzing the thermal process in TI'RI-IF was provided. 展开更多
关键词 zonal method roller-hearth furnace radiative heat transfer mathematical model temperature fields
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Mathematical Model of Hearth and Bottom Erosion in Blast Furnace 被引量:1
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作者 LI Hengxu CHE Yuman +2 位作者 ZHOU Zhe WANG Qi WANG Hongtao 《China's Refractories》 CAS 2014年第3期19-26,共8页
Furnace lining erosion is closely related to the operation stability and safety. The detection technology for hearth lining thickness of blast furnace was introduced.By using the data of thermocouples installed in the... Furnace lining erosion is closely related to the operation stability and safety. The detection technology for hearth lining thickness of blast furnace was introduced.By using the data of thermocouples installed in the bottom of furnace hearth,a mathematical model of erosion was established; the real state of the hearth and bottom erosion was studied; the erosion condition was followed,serving for the furnace longevity. 展开更多
关键词 blast furnace hearth EROSION mathemat-ical model
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Preparation of ZnO Nanoparticles from Zn-containing Rotary Hearth Furnace Dust 被引量:1
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作者 姚海威 MA Han +3 位作者 MAO Rui QIU Jiayong CHEN Chunyu 居殿春 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2022年第1期32-37,共6页
To solve the problem of the low added value Zn-containing rotary hearth furnace(RHF)dust,two deep eutectic solvents(DESs)were employed,such as choline chloride-urea(ChCl-urea)and choline chloride-oxalic acid dihydrate... To solve the problem of the low added value Zn-containing rotary hearth furnace(RHF)dust,two deep eutectic solvents(DESs)were employed,such as choline chloride-urea(ChCl-urea)and choline chloride-oxalic acid dihydrate(CC-OA)solvent and Zn-containing RHF dust(water-washed)as the research target.Then,we prepared ZnO nanoparticles using two DESs or their combination,namely,ChCl-urea(Method A),CC-OA(Method B),first CC-OA and then ChCl-urea(Method B-A)and first ChCl-urea and then CCOA(Method A-B),respectively.The effects of these methods on the properties of as-obtained precursors and ZnO nanoparticles were investigated in detail.The results indicated that the precursor obtained by Method A was Zn_(4)CO_(3)(OH)_(6)·H_(2)O,and those by Methods B,B-A,and A-B were all ZnC_(2)O_(4)·2H_(2)O.Moreover,the decomposition steps of the last three methods were similar.The ZnO contents of 95.486%,99.768%,99.733%,and 99.76%were obtained by Methods A,B,B-A,and A-B,respectively.Methods A,B,and B-A led to the formation of spherical and agglomerated ZnO nanoparticles with normal size distributions,where Method B showed the best distribution with an average diameter 25 nm.The ZnO nanoparticles obtained by the Method A-B did not possess good properties. 展开更多
关键词 rotary hearth furnace Zn-containing dust deep eutectic solvent ZnO nanoparticle
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Erosion Mechanism of Al_(2)O_(3)-SiC Castables for Lining Maintenance in Blast Furnace Hearths 被引量:1
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作者 SUN Saiyang MA Xiaoqing +3 位作者 WANG Xingwei ZHAO Yong ZHANG Ronghui FEI Weibao 《China's Refractories》 CAS 2022年第2期17-23,共7页
Al_(2)O_(3)-SiC castables,for the relining of BF hearths in mid-campaign repair,were sampled and investigated after two years’service.The chemical and mineralogical characteristics of the residual castables were anal... Al_(2)O_(3)-SiC castables,for the relining of BF hearths in mid-campaign repair,were sampled and investigated after two years’service.The chemical and mineralogical characteristics of the residual castables were analyzed by X-ray diffraction,scanning electron microscopy,and energy dispersive X-ray spectrometry to study the erosion mechanism.The results show that as gaseous K diffuses in the castables,leucite(KAlSi_(2)O_(8))and multiple cracks are formed.Molten iron and slag penetrate through the cracks to form anorthite([Ca,Na][Al,Si]_(4)O_(8))and iron,which will not form an embrittlement layer similar to carbon bricks.The entire repair of the hearth with Al_(2)O_(3)-SiC castables combined with the design of thin-wall lining hearth eliminates“elephant foot shaped”erosion,greatly prolonging the service life of the hearth lining. 展开更多
关键词 alumina-silicon carbide castables blast furnace hearth repair erosion mechanism thin-wall lining
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Optimization for the structure of BF hearth bottom and the arrangement of thermal couples
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作者 Hongbo Zhao Shusen Cheng 《Journal of University of Science and Technology Beijing》 CSCD 2006年第6期497-503,共7页
The hearth of "heat transfer method" and the ceramic cup synthetic hearth bottom of "heart isolation method" are two most popular designs for blast furnace (BF). Although there are successful real examples, some... The hearth of "heat transfer method" and the ceramic cup synthetic hearth bottom of "heart isolation method" are two most popular designs for blast furnace (BF). Although there are successful real examples, some disadvantages, for instance large heat loss and high cost, still exist for these designs. According to the theory of heat transfer, based on the calculation of temperature distribution of the hearth bottom, it is elucidated that all brick layers at the hearth bottom may not be considered as the only reason why different structures exhibited different temperature distributions although total heat resistance is the same, and then based on the effect of hot metal and cold water on different temperature distribution ranges, the concepts of "heat resistance" and "cooling enhancement" are put forth. Based on this, the disadvantages and the factors affecting temperature distribution, of the two types of hearth bottoms were illustrated. On the basis of these analyses, a novel structure for BF hearth bottom designing that can easily form "self-protecting" slag layer stably, called "the method of gradient brick layout that has an optimum combination of cooling enhancement and heat resistance" was proposed; it can not only prolong the hearth bottom longevity but also reduce the cost and heat loss. Also, the optimum arrangement of thermal couples in hearth bottom was suggested based on the previous studies on erosion prediction carried out by the author. 展开更多
关键词 blast furnace hearth bottom longevity design EROSION
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Longlife technologies of hearth area for blast furnace at Bengang
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作者 LIU Qingye Benxi Iron & Steel Co.,Ltd.,Benxi 117021,Liaoning,China 《Baosteel Technical Research》 CAS 2010年第S1期13-,共1页
The problem of shortlife hearth of blast furnace was solved through the adoption of longlife technologies such as the application of UCAR hot pressed carbon brick-ceramic cup compound lining technology, closed-loop so... The problem of shortlife hearth of blast furnace was solved through the adoption of longlife technologies such as the application of UCAR hot pressed carbon brick-ceramic cup compound lining technology, closed-loop soft water cooling system,enhancing taphole maintenance and schreyerite lining protection etc. Longlife and high productivity had been achieved successfully.The transition of technological processes of the hearth for blast furnaces at BenGang are outlined in this paper. 展开更多
关键词 hearth long campaign TECHNOLOGIES
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Cooling Water Flow Rate Calculation for Hearth of Large Blast Furnaces
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作者 LI Hengxu CHE Yiunan +2 位作者 ZHOU Zhe WANG Qi WANG Hongtao 《China's Refractories》 CAS 2015年第2期16-20,共5页
The cooling water flow rate for hearth of large blast furnaces was calculated by simulation. The results show that the cooling water flow rate shall be above 4 200m3/ h for hearth of large blast furnaces; to meet requ... The cooling water flow rate for hearth of large blast furnaces was calculated by simulation. The results show that the cooling water flow rate shall be above 4 200m3/ h for hearth of large blast furnaces; to meet requirements of the increasing smelting intensity and to ensure the safety at the end of the first campaign,the designed maximum cooling water flow rate should be 5 900m3/ h; according to the flow distribution stability and the calculated resistance loss,hearth cooling stave pipes with the specification of 76 mm × 6 mm shall be adopted to assure the flow velocity in pipes of hearth cooling stave in the range of 1. 9- 2. 3 m / s. 展开更多
关键词 hearth of blast furnaces cooling water flow rate simulation calculation
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Hearth and Home" A Psycho-Sexual Reading of Procreating the Vampire Race in Dracula by Bram Stoker
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作者 Stacey L. Mascia 《Journal of Literature and Art Studies》 2011年第3期167-172,共6页
关键词 吸血 家庭 生殖 炉火 阅读 种族 心理 文艺复兴时期
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Development and Introduction of Monitoring System of Refractory Lining Wear in Blast Furnace Hearth
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作者 Andrey Dmitriev Kai Chen 《Journal of Environmental Science and Engineering(B)》 2017年第11期558-563,共6页
关键词 监视系统 衬里 炉子 强风 炉床 开发 温度特征 热电偶
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Experimental study on influence of blade angle and particle size on particle mechanics on a batch-operated single floor of a multiple hearth furnace
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作者 Max Kriegeskorte Nikoline Hilse +1 位作者 Phil Spatz Viktor Scherer 《Particuology》 SCIE EI CAS CSCD 2024年第2期224-240,共17页
In industry,multiple hearth furnaces are used for the thermal treatment of particulate material.The current contribution concentrates on the experimental analysis of particle mechanics for a batch-operated single floo... In industry,multiple hearth furnaces are used for the thermal treatment of particulate material.The current contribution concentrates on the experimental analysis of particle mechanics for a batch-operated single floor of a multiple hearth furnace.The particles are agitated on the circular floor by a single,rotating rabble arm equipped with three flat rabble blades of 10 mm thickness.The blade angle,defined as the angle,which the blade is inclined against the tangential direction,is varied from 0°to 90°.A single layer of spherical polyoxymethylene(POM)particles with three different diameters(5,10 and 20 mm)is placed on the floor.To analyze the results,two parameters have been extracted from image analysis when the bed of particles is agitated,first,the area not covered by particles and second,the frequency distribution of the mean distance among the particles.The particle free surface area increases with the inclination of the blades.The evolution of the particle free surface area differs for the different particle diameters.In general,the maximum particle free area for all blade angles is the largest for the 5 mm particles followed by the 20 mm particles.For the 10 mm particles,the particle free surface area starts for a blade angle of 0°at larger values than for the 20 mm particles but the values fall below the values for the 20 mm particles for larger blade angles.The reason for this behavior is discussed in detail.The mean distance among the particles is a parameter characterizing the length scales dominating the effects on the floor.The frequency distribution of the mean distance among particles provides infor-mation about the morphology of the particle bulk,for example,whether the free surface area is inter-spersed with particles. 展开更多
关键词 hearth furnace floor Particle movement Spherical particles Particle free surface area Mean distance among particles
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基于炉缸渣铁滞留量的高炉炉缸活性研究
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作者 刘彦祥 郭子昱 +4 位作者 焦克新 张建良 徐益军 丁望 杨耀明 《炼铁》 CAS 北大核心 2024年第2期49-55,共7页
针对国内外对炉缸活性表征不明晰的问题,建立以炉缸渣铁滞留量表征炉缸活性的模型,定量分析高炉操作参数对炉缸活性的作用比重,并提出提高炉缸活性的操作手段。结果表明:①渣铁焦物性对渣铁滞留率的影响顺序为:铁水温度>CSR>焦炭... 针对国内外对炉缸活性表征不明晰的问题,建立以炉缸渣铁滞留量表征炉缸活性的模型,定量分析高炉操作参数对炉缸活性的作用比重,并提出提高炉缸活性的操作手段。结果表明:①渣铁焦物性对渣铁滞留率的影响顺序为:铁水温度>CSR>焦炭粒度>CRI>炉渣碱度>镁铝比;②去除滞留率对滞留量的影响,高炉操作参数对渣铁滞留量的影响顺序为:风量>铁口深度>风温>风压>喷煤量>氧气量;③高炉生产中,可采用原燃料粒级及性能管控技术、高风速大动能操作技术、渣铁流动控制技术、渣铁排放管控技术高效调控炉缸活跃状态。 展开更多
关键词 高炉 炉缸 炉缸活性 渣铁滞留率 渣铁滞留量 操作参数
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