首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Segregation intergranulaire du bore dans Fe-40 at%Al de structure B2: Influence d'une interaction entre lacunes thermiqnes et atomes de bore
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Segregation intergranulaire du bore dans Fe-40 at%Al de structure B2: Influence d'une interaction entre lacunes thermiqnes et atomes de bore

机译:结构B2中Fe-40 at%Al中硼在硼中的晶界偏析:热空位与硼原子相互作用的影响

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Boron segregation to grain boundaries was studied in ordered (B2) FeAl containing 40 at% Al. It was observed that small additions of boron (200 at ppm) change the fracture mode from intergranular to mixed (transgranular and intergranular). A low level of boron (few at%) was detected by AES in grain boundaries of this hypostoechiometric alloy. Nevertheless, the kinetic of boron segregation is rapid : even a quench from 950°C promotes it. As FeAl alloys are known to retain large concentrations of thermal vacancies, the possibility of an interaction between boron atoms and vacancies was investigated in order to understand the mechanism of boron segregation. Dilatometric isothermal experiments showed that vacancies eliminate more rapidly in B-doped Fe-40 at%AJ than in B-free Fe-40 at%Al. Modelisation of the kinetics of vacancies elimination predict that complexes boron atoms - vacancies migrate more rapidly than free vacancies: the difference between their migration energies is higher than 0,4 eV. This result could justify the assumption that at least a part of boron segregation in FeAl is due to a non-equilibrium mechanism.
机译:在含有40at%Al的有序(B2)FeAl中研究了硼向晶界的偏析。观察到少量的硼(ppm为200)改变了断裂方式,从晶间转变为混合(晶间和晶间)。 AES在该化学计量计量合金的晶界中检测到少量的硼(少量原子百分比)。然而,硼偏析的动力学很快:即使从950°C淬火也能促进硼的析出。由于已知FeAl合金会保留高浓度的热空位,因此研究了硼原子与空位之间相互作用的可能性,以了解硼偏析的机理。膨胀等温实验表明,与不含B的Fe-40 at%Al相比,掺B的Fe-40 at%AJ中的空位消除更快。消除空位动力学的模型预测,络合物中的硼原子-空位比自由空位迁移速度更快:迁移能量之间的差大于0.4 eV。该结果可以证明以下假设:FeAl中至少一部分硼偏析是由于非平衡机理引起的。

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