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首页> 外文期刊>Revista de metalurgia >Análisis experimental y simulación numérica de unión por laminación de planchas de acero Q235
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Análisis experimental y simulación numérica de unión por laminación de planchas de acero Q235

机译:Q235钢板轧制结合的实验分析与数值模拟

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Heavy-gauge Q235 steel plate was roll bonded, and the process was simulated using MARC software. Ultrasonic testing results revealed the presence of cracks and lamination defects in an 80-mm clad steel sheet, especially at the head and tail of the steel plate. There were non-uniform ferrite + pearlite microstructures and unbound areas at a bond interface. Through scanning electron microscopy analysis, long cracks and additional inclusions in the cracks were observed at the interface. A fracture analysis revealed non-uniform inclusions that pervaded the interface. Moreover, MARC simulations demonstrated that there was little equivalent strain at the centre of the slab during the first rolling pass. The equivalent centre increased to 0.5 by the fourth rolling pass. Prior to the final pass, the equivalent strain was not consistent across the thickness direction, preventing bonding interfaces from forming consistent deformation and decreasing the residual stress. The initial rolling reduction rate should not be very small (e.g. 5%) as it is averse to the coordination of rolling deformation. Such rolling processes are averse to the rolling bond.
机译:将重规格Q235钢板辊压粘合,并使用MARC软件模拟该过程。超声波测试结果表明,在80毫米厚的复合钢板中,特别是在钢板的头部和尾部,都存在裂纹和层压缺陷。在键合界面处存在不均匀的铁素体+珠光体微结构和未结合区域。通过扫描电子显微镜分析,在界面处观察到长裂纹和裂纹中的其他夹杂物。断裂分析表明,界面上弥漫着不均匀的夹杂物。此外,MARC模拟表明,在第一道轧制过程中,板坯中心几乎没有等效应变。通过第四次轧制,等效中心增加到0.5。在最终通过之前,等效应变在厚度方向上不一致,从而阻止了粘结界面形成一致的变形并降低了残余应力。初始轧制率不应太小(例如5%),因为它不利于轧制变形的协调。这种轧制过程与轧制粘结相反。

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