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机构地区:[1]北京科技大学机械工程学院,北京100083 [2]莱芜钢铁股份有限公司,莱芜271126
出 处:《塑性工程学报》2013年第2期62-67,共6页Journal of Plasticity Engineering
基 金:国家高技术研究发展计划(863)资助项目(2009AA03Z515)
摘 要:采用弹塑性有限元方法,依托ABAQUS软件中显式计算的方法,对不同规格H型钢的往复开坯轧制进行仿真分析。应用ALE网格自适应技术解决了多道次的网格畸变问题。引入现场测试的温度数据作为模型的温度边界条件。通过对不同规格H型钢使用相同坯料的轧制过程进行模拟分析发现,孔型对开坯轧制最终成形有较大影响。分析结果表明,当采用展宽孔型轧制大规格型钢时,最终道次稳定段的轧件断面不能充满孔型,造成翼缘内侧缺肉现象;采用箱型孔预轧制小规格型钢时,这一现象则不是很明显。采用实测尺寸对H700×300规格H型钢的断面尺寸进行了对比验证。针对上述缺陷对H700×300规格的H型钢粗轧孔型进行优化,改善了翼缘缺肉现象。研究结果对于制定BD轧制规程具有指导意义。Reversing break-down rolling processes of different sizes of H-beam were simulated by ABAQUS software using explic it method in this paper. The technology of mesh adaptation (ALE) was used to solve the problem of mesh distortion in multi-pass rolling. The simulation model was more accurate by introducing the measurement data of temperature. The results indicated that the groove obviously affected the final cross-section of break-down rolling. When broadening groove was used to roll large size Hbeam, the cross-section of rolled pieces in last pass didn't match the groove, which caused the incomplete flange. When box groove was used to roll small size H-beam, the cross-section of rolled pieces in last pass almost matched the groove. The crosssection dimension of H700 × 300 was verified by the measurement data. According to the above phenomena, the groove of large size H-beam has been optimized to improve the incompleteness of flange. Results of this study could provide guidance for designing rolling schedule of BD.
分 类 号:TG335[金属学及工艺—金属压力加工]
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