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DFT calculations based insight into bonding character and strength of Fe 2Al 5 and Fe 4Al 13 intermetallics at Al-Fe joints

机译:DFT计算基于对Fe 2 Al 5 和Fe 4 Al -Fe接头处的金属 13 金属间化合物

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The joining of aluminum and steel has been considered as the efficient combination to develop lightweight and environmental friendly structures. However, due to the significant differences in mechanical and physical properties of aluminum and steel, the joining of these two metals is challenging, where typically several intermetallic phases are formed at the interface. Origin of intermetallic phases at the Al-Fe interface is inevitable due to the low intermixing of Al and Fe. Thus in order to achieve reliable joining, it is necessary to have basic understanding about these intermetallic phases. This paper aims to describe mechanical and bonding properties of the two most commonly observed phases, Fe4Al13and Fe2Al5. The formation energy, elastic properties and nature of bonding of Fe4Al13and Fe2Al5have been calculated. The results show that Fe2Al5is thermodynamically more stable than Fe4Al13, and it seems to be less brittle than Fe4Al13. Electron localization plots of these compounds show a combination of covalent and metallic bonding, where Fe4Al13shows a stronger tendency of covalent character than Fe2Al5.
机译:铝和钢的结合被认为是开发轻质和环保结构的有效组合。然而,由于铝和钢的机械和物理性能的显着差异,这两种金属的连接具有挑战性,其中通常在界面处形成多个金属间相。由于Al和Fe的低混合,不可避免地会在Al-Fe界面形成金属间相。因此,为了实现可靠的连接,必须对这些金属间相有基本的了解。本文旨在描述两种最常见的相Fe4Al13和Fe2Al5的力学性能和结合性能。计算了Fe4Al13和Fe2Al5的形成能,弹性和键合性质。结果表明,Fe2Al5在热力学上比Fe4Al13稳定,并且似乎比Fe4Al13脆。这些化合物的电子定位图显示了共价键和金属键的组合,其中Fe4Al13显示出比Fe2Al5更强的共价特性趋势。

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