Failure Mechanism and Material Requirements for Coal Lance in Blast Furnac

XIONG Wei,JIA Juan,CHEN Jia-chao,SHANG He-ming

钢铁研究学报(英文版) ›› 2012, Vol. 19 ›› Issue (4) : 11-16.

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钢铁研究学报(英文版) ›› 2012, Vol. 19 ›› Issue (4) : 11-16.
工艺

Failure Mechanism and Material Requirements for Coal Lance in Blast Furnac

  • XIONG Wei,JIA Juan,CHEN Jia-chao,SHANG He-ming
作者信息 +

Failure Mechanism and Material Requirements for Coal Lance in Blast Furnac

  • XIONG Wei,JIA Juan,CHEN Jia-chao,SHANG He-ming
Author information +
文章历史 +

摘要

Abstract: Pulverized coal injection (PCI) is a key technology in modern ironmaking by blast furnace (BF) and the life of injection lance has a great influence on PCI operation and on normal running of blast furnace. It is found that the main reasons for the failure of the lances are their outer surface oxidation and the inner surface erosion through monitoring some lances used in BF. The outer surface oxidation of the lances made of lCr18Ni9Ti is inevitable under high hot blast temperature condition through thermodynamics analysis. A mathematical model for calculating the temperature of common monocular coal lance had been developed according to the principles of mass and energy balance. Increasing temperature and flow velocity of the hot blast would cause a rise in the lance temperature. The influence of hot blast temperature is more obvious. The lance temperature would decline when compressed air flux increases. Conveying technology of dense phase pulverized coal is beneficial to extending lance′s life because decreasing solid-gas ratio would intensify erosion and burning loss. The anti-oxidation temperature of lance materials needs to be over 1000 ℃ for BF intensified smelting. In order to increase the resistance to oxidation of the coal lance′s outer surface, oxidation-resistant steel or Al coating stainless steel is the appropriate material for BF use. Employing the metal surface treatment technology to enhance the hardness of the coal lance′s internal surface could prolong the service life of coal lance.

Abstract

Abstract: Pulverized coal injection (PCI) is a key technology in modern ironmaking by blast furnace (BF) and the life of injection lance has a great influence on PCI operation and on normal running of blast furnace. It is found that the main reasons for the failure of the lances are their outer surface oxidation and the inner surface erosion through monitoring some lances used in BF. The outer surface oxidation of the lances made of lCr18Ni9Ti is inevitable under high hot blast temperature condition through thermodynamics analysis. A mathematical model for calculating the temperature of common monocular coal lance had been developed according to the principles of mass and energy balance. Increasing temperature and flow velocity of the hot blast would cause a rise in the lance temperature. The influence of hot blast temperature is more obvious. The lance temperature would decline when compressed air flux increases. Conveying technology of dense phase pulverized coal is beneficial to extending lance′s life because decreasing solid-gas ratio would intensify erosion and burning loss. The anti-oxidation temperature of lance materials needs to be over 1000 ℃ for BF intensified smelting. In order to increase the resistance to oxidation of the coal lance′s outer surface, oxidation-resistant steel or Al coating stainless steel is the appropriate material for BF use. Employing the metal surface treatment technology to enhance the hardness of the coal lance′s internal surface could prolong the service life of coal lance.

关键词

高炉 / 喷煤枪 / 破损机理 / 选材

Key words

blast furnace / coal lance / failure mechanism / material requirements

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引用本文

导出引用
熊玮, 贾涓, 陈家超, . Failure Mechanism and Material Requirements for Coal Lance in Blast Furnac[J]. 钢铁研究学报(英文版), 2012, 19(4): 11-16
XIONG Wei, GU Juan, CHEN Jia-Tiao, et al. Failure Mechanism and Material Requirements for Coal Lance in Blast Furnac[J]. Journal of Iron and Steel Research International, 2012, 19(4): 11-16

基金

国家自然科学基金;省部级自然科学基金

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