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Microstructure and Property Modifications of Cold Rolled IF Steel by Local Laser Annealing

机译:局部激光退火冷轧IF钢的组织与性能改性

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摘要

Laser annealing experiments are performed on cold rolled IF steel whereby highly localized microstructure and property modification are achieved. The microstructure is seen to develop by strongly heterogeneous recrystallization to provide steep gradients, across the submillimeter scale, of grain size and crystallographic texture. Hardness mapping by microindentation is used to reveal the corresponding gradients in macroscopic properties. A 2D level set model of the microstructure development is established as a tool to further optimize the method and to investigate, for example, the development of grain size variations due to the strong and transient thermal gradient. Particular focus is given to the evolution of the beneficial γ-fiber texture during laser annealing. The simulations indicate that the influence of selective growth based on anisotropic grain boundary properties only has a minor effect on texture evolution compared to heterogeneous stored energy, temperature variations, and nucleation conditions. It is also shown that although the α-fiber has an initial frequency advantage, the higher probability of γ-nucleation, in combination with a higher stored energy driving force in this fiber, promotes a stronger presence of the γ-fiber as also observed in experiments.
机译:在冷轧IF钢上进行了激光退火实验,从而实现了高度局部化的显微组织和性能改性。可以看到,微观结构是通过强烈的非均质再结晶形成的,从而在亚毫米尺度上提供了晶粒尺寸和晶体学织构的陡峭梯度。通过显微压痕进行硬度映射可揭示宏观性能中的相应梯度。建立了微结构发展的二维水平集模型,作为进一步优化该方法和研究(例如)由于强而短暂的热梯度而导致晶粒尺寸变化的工具。特别关注激光退火过程中有益的γ纤维织构的演变。仿真表明,与异质存储能量,温度变化和成核条件相比,基于各向异性晶界属性的选择性生长的影响仅对纹理演化产生较小的影响。还显示出,尽管α纤维具有初始频率优势,但γ成核的可能性更高,再加上该纤维中更高的存储能量驱动力,也促进了γ纤维的更强存在。实验。

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