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冷卻壁高爐爐墻溫度場的數值模擬(I)——耐火材料種類及其侵蝕程度對爐墻溫度場的影響

Numerical Simulation of Temperature Field in Blast Furnace Wall Cooled with Stave System(I): Influence of Refractory Kind and its Wear Extent

  • 摘要: 利用有限元分析軟件ANSYS對冷卻壁高爐爐墻的溫度場進行了數值模擬,研究了不同的磚襯材質及其侵蝕程度對爐墻溫度場的影響.并在此基礎上探討了高爐爐身下部破損的基本原因及過程.結果表明:冷卻壁凸臺的冷卻能力不足導致了凸臺前磚襯熱面溫度始終高于其受化學侵蝕的臨界溫度,不可能存在穩定的磚襯層.

     

    Abstract: With the finite element analysis system ANSYS, the temperature field in blast furnace wall, cooled with flanged stave system, was numerically simulated. The influence of the refractory kind and its wear extend was' investigated, and the principal reason and process of wear of the blast furnace lower shaft wall was discussed. Analytical results show that the insufficient cooling capability of the stave flanged part results in the maximum temperature on the lining hot face is always higher than its chemical erosion critical temperature, and no equilibrium thickness lining could be kept steadily on the front of flanged part of the stave.

     

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