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添加铌/硼对采用紧凑式带钢生产工艺的低碳钢流变行为及力学性能的影响

Effect of Nb/B addition on the flow behavior and mechanical properties of low-carbon steel using compact strip production.

作者信息

Refaee Ahmed, El-Shenawy Eman, Domiaty Aly El, Abdalla Abdalla M, Reda Reham

机构信息

Department of Mechanical Engineering, Faculty of Engineering, Suez Canal University, Ismailia, 41522, Egypt.

Al Ezz Dekheila Steel Company (EZDK), El-Dekheila, Alexandria, 21537, Egypt.

出版信息

Sci Rep. 2025 Jan 3;15(1):605. doi: 10.1038/s41598-024-74927-y.

Abstract

This work examines the effects of Nb and Nb-B additives on the high-temperature flow behavior and mechanical properties of low-carbon steel. The base, 0.015% Nb-bearing (15Nb alloy), and 0.015% Nb-30 ppm B-bearing (15Nb30B alloy) low-carbon steels were manufactured at Al Ezz Dekheila Steel Company using the compact strip production line (CSP). The mean flow stress log data from the CSP line was utilized to determine the no-recrystallization temperature. The microstructure and high-temperature flow behavior were studied using thermomechanical controlled processing at different deformation temperatures with a 40% reduction using the Gleeble physical simulator. The phase evolution and precipitation state at various temperatures were studied15Nb30B alloy reveals lower flow stress at high processing temperature in comparison with 15Nb alloy. This is attributed to the early precipitation of BN, which led to restricted Nb-based precipitates. The addition of B to Nb-bearing steel slightly refines the grain size of the as-rolled alloy, which in turn has a beneficial effect on its strength. The research results highlight the industrial benefit of adding boron to Nb-bearing low C-steel in terms of reducing the rolling load and reducing the finishing rolling temperature while maintaining the mechanical properties of the as-rolled strips.

摘要

本研究考察了铌及铌硼添加剂对低碳钢高温流变行为和力学性能的影响。采用紧凑式带钢生产线(CSP)在艾兹德凯海拉钢铁公司制造了基体低碳钢、含0.015%铌的低碳钢(15Nb合金)以及含0.015%铌-30 ppm硼的低碳钢(15Nb30B合金)。利用CSP生产线的平均流变应力对数数据来确定未再结晶温度。使用Gleeble物理模拟试验机,通过在不同变形温度下进行40%压下率的热机械控制轧制,研究了微观组织和高温流变行为。研究了不同温度下的相演变和析出状态。与15Nb合金相比,15Nb30B合金在高加工温度下表现出较低的流变应力。这归因于BN的早期析出,从而限制了铌基析出物。向含铌钢中添加硼略微细化了热轧合金的晶粒尺寸,进而对其强度产生有益影响。研究结果突出了向含铌低碳钢中添加硼在降低轧制负荷、降低精轧温度同时保持热轧带钢力学性能方面的工业优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b73/11698884/182708827484/41598_2024_74927_Fig1_HTML.jpg

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