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A method of preventing damage to an immersed tuyere of a decarburization furnace in steel making

机译:一种防止对炼钢厂脱碳炉浸入式风口造成损害的方法

摘要

In bottom blown oxygen steel making or in top and bottom blown combined oxygen steel making, the tip end of a tuyer immersed in molten steel is seriously damaged or melted away due to very high temperatures due to the vigorous combustion of carbon, manganese and so on by the oxygen blown into a furnace.;In order to prevent such damage, hydrocarbon gas has been blown through space between an outer pipe and an inner pipe of a dual pipe tuyere or tuyeres, but such hydrocarbon gas rather excessively lowers the temperature of the molten metal adjacent to the tip end of the tuyere and often blocks the opening of the tuyere.;Now, instead of blowing in hydrocarbon gas, particulate material such as limestone magnesite, dolomite and the mixture thereof are proposed to be blown into the molten metal in the decarburization steel making vessel carried by an inert gas, combustion gas, blast furnace gas, LD process gas and oxygen or a mixture of these gases.;Particulate material mentioned above, when blown into the molten metal, increases the momentum of the gas flow, enhances a shielding effect, against high radiation heat by fire point, or further forms either a kind of protective layer or deposit of refractory mineral material at the tip of the tuyere thereby effectively preventing damage of the tuyere and lengthens the service life of the refining vessel.;Addition of particulate material in continuously linearly or in stepwise manner has been proved to be effective for accomplishing the above-mentioned cooling and protecting effect of the particulate material.
机译:在底部吹氧炼钢或顶部和底部吹氧复合炼钢中,浸入熔融钢中的风口的前端由于碳,锰等的剧烈燃烧而受到很高的温度而严重损坏或熔化。为了防止这种损坏,为了防止这种损坏,已经将烃气吹过双管风口的外管和内管之间的空间,但是这种烃气相当低地降低了温度。靠近风口尖端的熔融金属,通常会阻塞风口的开口;现在,代替吹入碳氢化合物气体,建议将诸如石灰石菱镁矿,白云石及其混合物的颗粒材料吹入熔融金属中在脱碳炼钢容器中,由惰性气体,燃烧气体,高炉气体,LD工艺气体和氧气或这些气体的混合物携带;吹入熔融金属中,增加气流的动量,增强屏蔽效果,抵抗火点产生的高辐射热,或进一步在风口尖端形成一种保护层或难熔矿物材料的沉积物防止了风口的损坏并延长了精炼容器的使用寿命。业已证明,连续地线性或逐步地添加颗粒材料对于实现上述的颗粒材料的冷却和保护效果是有效的。

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