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首页> 外文期刊>Journal of Materials Research and Technology >The role of plastic strains on variant selection in ausformed bainitic microstructures studied by finite elements and crystal plasticity simulations
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The role of plastic strains on variant selection in ausformed bainitic microstructures studied by finite elements and crystal plasticity simulations

机译:塑料菌株对有限元和晶体塑性模拟研究的空心壳体微结构中的变体选择

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The mechanisms driving variant selection phenomena in ausformed bainitic microstructures are not fully controlled yet. Previous results are not congruent among them, as they cannot be explained by the same rule. In this work, we aimed to understand the mechanisms governing variant selection in a medium carbon-high silicon steel subjected to ausforming treatments. To do so, the microstructural characterization in different regions of barreled samples has been combined with the simulation of the stress and strain state at the macro and micro level, by finite elements simulations and crystal plasticity simulations, respectively. The main conclusion is that the variant selection shown in these microstructures can be explained by understanding the distribution of the plastic strains at the macro and micro level. The selection of crystallographic variants is more pronounced in the regions which have been more deformed. Also, the deformation distributes along deformation microbands, where the most promoted variants seem to grow, in good agreement with previous results in ausformed lath martensite.
机译:驱动变型贝氏体微结构中的变型选择现象的机制尚未完全控制。以前的结果在其中不一致,因为它们无法通过相同的规则解释。在这项工作中,我们旨在了解在经过有机形处理的中碳高硅钢中控制变体选择的机制。为此,通过有限元模拟和晶体塑性模拟,在桶形样品的不同区域中的微观结构表征与宏观和微观水平的压力和应变状态的模拟。主要结论是通过了解宏观和微观水平的塑料菌株的分布来解释这些微结构中所示的变体选择。结晶变体的选择在更加变形的区域中更加明显。此外,沿着变形微生物分布的变形,其中最促进的变体似乎生长,与先前的角落马氏体的结果良好。

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