Rapid alloy prototyping for strip steel development: DP800 steel case study

Rapid alloy prototyping for strip steel development: DP800 steel case study
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带钢开发的快速合金原型:DP800 钢案例研究

DOI:
10.1080/03019233.2021.1880036
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发表时间:
2021
影响因子:
2.1
通讯作者:
Zhu Y
Zhu Y
中科院分区:
材料科学3区
文献类型:
--
作者:
Zhu Y

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近年来,商业规模的合金开发成本变得高得多,因此采用了一种更迭代的方法,在保持已知范围的情况下进行小规模的提炼。因此,以实验室为基础的快速合金开发是推动新的品级界限的关键。这项工作展示了WMG的快速合金开发(RAP)设施,包括工艺每个阶段所需的能力、规模和所需时间,并与相关工业工艺进行了对比。本文以DP800双相钢为例进行了研究。已证明,通过对合金强化机制的了解(DP800的第二相分布)对于力学性能至关重要,对实验室生产铸造和随后的压下量的具体改变和优化允许最终产品的组织和机械性能与生产产品相匹配。这给了人们对向上可伸缩性的信心。
Alloy development on a commercial scale in recent years has become much more costly and as such has adopted a more iterative approach, making small refinements while keeping within known limits. Laboratory-based rapid alloy development is therefore a key in pushing new grade boundaries. This work shows the rapid alloy development (RAP) facilities at WMG, including capability, sizes and time required for each stage of the process, which have been mapped against the relevant industrial process. A case study of a dual-phase steel grade DP800 has been used for this work. It has been shown that through knowledge of the strengthening mechanism of the alloy (2nd phase distribution for DP800) is critical with respect to mechanical properties and that specific changes and optimisation to the laboratory production casting and subsequent reduction allows for the final product microstructure and mechanical properties to match the production product. This gives confidence in upscalability.
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