STUDY ON DEEP DRAWING BEHAVIOR OF THE INTERSTITIAL FREE STEEL IN CORRELATION WITH THE MICROSTRUCTURE

IF 1.1 Q3 METALLURGY & METALLURGICAL ENGINEERING Acta Metallurgica Slovaca Pub Date : 2022-06-22 DOI:10.36547/ams.28.2.1416
E. Brandaleze, M. Romanyuk
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Abstract

The objective of this paper was to present results obtained about the behaviour of the IF steel associated with high deformation. To evaluate the deep drawing aptitude, samples were subjected to tensile test, n and r values determination, hole expansion and Erichsen tests. The results were correlated with a microstructural study. Through thermodynamic simulation, the phase transformation temperature (Tg®a) and the precipitates formation were estimated. The Tg®a value was also determined by dilatometry test. The failure of the material during deep drawing or stamping process is evidenced through the formation of cracks in areas with critical angles changes. It was relevant to understand the mechanisms of fracture nucleation and propagation of the IF steel. A fractography study was carried out and was possible to verify the presence of cavitation mechanism as results of the superplastic flow at high deformation conditions, promoting necking and fracture after a high plastic deformation achieved.
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无间隙钢的深冲行为与组织的相关性研究
本文的目的是介绍有关IF钢与高变形相关的行为的结果。为了评估深冲能力,对样品进行拉伸试验、n和r值测定、孔膨胀和Erichsen试验。结果与微观结构研究相关。通过热力学模拟,估计了相变温度(Tg®a)和沉淀物的形成。Tg®a值也通过膨胀计测试确定。材料在拉深或冲压过程中的失效是通过在临界角度变化的区域形成裂纹来证明的。这与理解IF钢的断裂成核和扩展机制有关。进行了断口形貌研究,并有可能验证空化机制的存在,这是高变形条件下超塑性流动的结果,在实现高塑性变形后促进颈缩和断裂。
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来源期刊
Acta Metallurgica Slovaca
Acta Metallurgica Slovaca METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
2.00
自引率
30.00%
发文量
22
审稿时长
12 weeks
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