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Residual Stress Simulation for Hot Strip Bimetallic Roll during Quenching

机译:带钢热轧双金属淬火残余应力模拟

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摘要

Bimetallic rolls are widely used in hot rolling mills because of excellent hardness, wear resistance, and high temperature properties. Considerable residual stresses are produced for the bimetallic roll during quenching. Moreover, severe thermal stresses are caused by heating-cooling thermal cycles during subsequent hot rolling process. Fracture from the roll center may occur due to the residual stress adding to the thermal stress, and therefore, it is desirable to investigate the residual stress to improve roll service life. Therefore, FEM simulation of the bimetallic roll is performed for the quenching process. It should be noted that a large number of experimental data of the core and shell material are utilized for the wide range of temperature considering the quenching. The generation mechanism for the residual stress is discussed focusing on the effect of temperature gradient and phase transformation. Furthermore, the effects of shell-core ratio and diameter on residual stress are considered. Results show that the residual stress only slightly increases with increasing shell-core ratio, while significantly increases with increasing diameter.
机译:双金属辊由于其优异的硬度,耐磨性和高温性能而广泛用于热轧机中。在淬火过程中,双金属辊会产生相当大的残余应力。而且,在随后的热轧过程中,加热-冷却的热循环会引起严重的热应力。由于残余应力会增加热应力,因此可能会发生辊中心断裂,因此,需要研究残余应力以延长辊的使用寿命。因此,在淬火过程中对双金属辊进行了有限元模拟。应当注意,考虑到淬火,核和壳材料的大量实验数据被用于宽温度范围。讨论了残余应力的产生机理,重点是温度梯度和相变的影响。此外,考虑了壳核比和直径对残余应力的影响。结果表明,残余应力仅随壳核比的增加而略有增加,而随直径的增加而显着增加。

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