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3D stress simulation and parameter design during twin-roll casting of 304 stainless steel based on the Anand model

机译:基于Anand模型的304不锈钢双辊铸轧过程中的3D应力模拟和参数设计

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This study first investigated cracks on the surface of an actual steel strip. Formulating the Anand model in ANSYS software, we then simulated the stress field in the molten pool of type 304 stainless steel during the twin-roll casting process. Parameters affecting the stress distribution in the molten pool were analyzed in detail and optimized. After twin-roll casting, a large number of transgranular and in-tergranular cracks resided on the surface of the thin steel strip, and followed a tortuous path. In the molten pool, stress was enhanced at the exit and at the roller contact positions. The stress at the exit decreased with increasing casting speed and pouring temperature. To ensure high quality of the fabricated strips, the casting speed and pouring temperature should be controlled above 0.7 m/s and 1520°C, respectively.
机译:这项研究首先研究了实际钢带表面的裂纹。在ANSYS软件中建立Anand模型,然后我们在双辊铸造过程中模拟304不锈钢类型熔池中的应力场。对影响熔池应力分布的参数进行了详细分析和优化。在双辊铸造之后,薄钢板的表面上存在大量的跨晶和晶内裂纹,并沿着曲折路径行进。在熔池中,出口和辊子接触位置的应力增加。随着铸造速度和浇铸温度的提高,出口处的应力降低。为了确保高质量的带钢,应将浇铸速度和浇铸温度分别控制在0.7 m / s和1520°C以上。

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