首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >A novel hybrid strip finishing process to improve mechanical properties and reduce energy consumption
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A novel hybrid strip finishing process to improve mechanical properties and reduce energy consumption

机译:一种新型杂交条整理过程,提高机械性能,降低能耗

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摘要

The growing demand for new steel grades, such as high formability steels and high or ultra-high strength steels for structural and safety-related automotive components, make manufacturing steel sheets an increasingly complex task. A novel hybrid process (HyP), that combines the skin-pass and tension levelling processes into one production step is proposed to improve the steel strip manufacturing chain. The HyP applies asymmetrical rolling (H-ASR) by using different roll diameters and by bending the strip before it enters the roll gap. The potential advantages of H-ASR, such as the introduction of through-thickness higher plastic deformation and the use of reduced roll force and power, were investigated by means of elastic-plastic finite element models and experimental data. The numerical models were validated by experiments at a HyP pilot facility and by industrial trials. Analytical estimation of the appropriate bending limits was included. The contact condition, material deformation and stress state during rolling were analysed and compared with the results of a conventional skin-pass process. It was verified that the proposed H-ASR introduced higher shear deformation throughout the strip thickness than a traditional skin-pass process. The positive influence of this fact was verified by tensile and formability tests on material processed by the HyP pilot facility. The results indicate that the HyP produces sheets with better drawability, satisfactory strength, and formability qualities comparable to those of the conventional finishing processes. What's more, the HyP boasts all these advantages while using a space-saving layout and reducing energy consumption as compared to traditional finishing processes.
机译:对新型钢等级的需求不断增长,如高镂空钢和高或超高强度钢,用于结构和安全相关的汽车部件,使制造钢板成为越来越复杂的任务。提出了一种新的混合过程(HYP),其将皮肤通道和张力调平过程结合到一个生产步骤中,以改善钢带制造链。通过使用不同的辊直径并通过在进入辊间隙之前弯曲条带,获得不对称滚动(H-ASR)。通过弹性塑料有限元模型和实验数据,研究了H-ASR的潜在优点,例如引入通过厚度较高的塑性变形和使用减小的辊力和功率。通过在低级试点设施和工业试验的实验验证了数值模型。包括适当弯曲限制的分析估计。分析轧制过程中的接触条件,材料变形和应力状态,与常规皮肤通道过程的结果进行比较。验证了所提出的H-ASR在整个条带厚度方面引入较高的剪切变形,而不是传统的皮肤过程。通过由Hyp试点设施处理的材料的拉伸和可成型性测试验证了这一事实的积极影响。结果表明,Hyp产生具有更好的拉伸性,令人满意的强度和与传统精加工方法的可成型性质的薄片。更重要的是,与传统的整理过程相比,利用节省空间布局并降低能耗的同时,下列优势。

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