Grasserbauer Jakob, Weißensteiner Irmgard, Falkinger Georg, Mitsche Stefan, Uggowitzer Peter J, Pogatscher Stefan
Christian Doppler Laboratory for Advanced Aluminum Alloys, Montanuniversitaet Leoben, A-8700 Leoben, Austria.
AMAG Rolling GmbH, A-5282 Ranshofen, Austria.
Materials (Basel). 2020 Jan 19;13(2):469. doi: 10.3390/ma13020469.
With the rising importance of aluminum sheets for automotive applications, the influence of microstructure and texture on mechanical properties and on forming behavior has gained re-increased interest in recent years. This paper provides an introduction to the topic and demonstrates the evolution of microstructure and texture in the standard alloys EN AW-5182 and EN AW-6016 for different processing scales. Moreover, strategies for texture and microstructure characterization of automotive Al-sheets are discussed. As the development of alloys or processes usually starts in laboratory facilities, the transferability to the industrial scale of the results thereof is studied. A detailed analysis of the entire processing chain shows good conformity of careful laboratory production with the industrial production concerning microstructure as well as qualitative and quantitative texture evolution for EN AW-5182. While comparable grain sizes can be achieved in final annealed sheets of EN AW-6016, quantitative discrepancies in texture occur between the different production scales for some sample states. The results are discussed in light of the basics of plasticity and recrystallisation including the effect of solutes, primary phases, and secondary phases in the alloys.
随着铝板在汽车应用中的重要性不断提高,近年来,微观结构和织构对力学性能及成形行为的影响再次引起了人们的浓厚兴趣。本文对该主题进行了介绍,并展示了标准合金EN AW - 5182和EN AW - 6016在不同加工尺度下微观结构和织构的演变。此外,还讨论了汽车铝板织构和微观结构表征的策略。由于合金或工艺的开发通常始于实验室设施,因此研究了其结果向工业规模的可转移性。对整个加工链的详细分析表明,对于EN AW - 5182,精心的实验室生产与工业生产在微观结构以及定性和定量织构演变方面具有良好的一致性。虽然在EN AW - 6016的最终退火板材中可以获得相当的晶粒尺寸,但在某些样品状态下,不同生产尺度之间在织构上存在定量差异。根据塑性和再结晶的基本原理对结果进行了讨论,包括合金中溶质、初生相和次生相的影响。