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DEVELOPMENT AND APPLICATION OF NOVEL ENERGY-SAVINGS MATERIAL IN STEEL INDUSTRY

机译:新型节能材料在钢铁工业中的开发与应用

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A new energy saving material for blaster furnaces (BF) was developed by increasing the radiative rate of the coating on the regenerative checker brick surface inside the hot stove of BF. The theoretic analyze and experimental results indicated that higher radiative rate coating will improve the capacity of heat regenerative and heat released to and from the brick by increasing the surface temperature of the brick which strengthening the radiative heat transfer between the flue gas and the brick as well as the conductive heat transfer inside the brick which results in the higher blast temperature and reducing the coke rate of the BF. In addition, the nano/micro coating materials filled the cavity on the surface of the brick which protects the brick and increases its service life. The following parameters of the brick are improved after coating: the volume density of the brick, the crushing strength, tensile strength and the softening temperature with loading. But the pore rate and the distortion rate are decreased after coating which are good for prolonging the service life of the brick.
机译:通过提高高炉热风炉内再生方格砖表面涂层的辐射率,开发了一种新型高炉节能材料。理论分析和实验结果表明,较高的辐射率涂层将通过提高砖的表面温度,从而提高烟道气与砖之间的辐射热传递,从而提高砖的热再生能力和向砖释放的热量以及从砖释放的热量。由于砖内部的传导性传热导致较高的鼓风温度并降低了高炉的焦炭率。另外,纳米/微涂层材料填充了砖表面上的空腔,从而保护了砖并延长了其使用寿命。涂覆后砖的以下参数得到改善:砖的体积密度,抗压强度,抗张强度和带负载的软化温度。但涂覆后孔隙率和变形率降低,有利于延长砖的使用寿命。

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