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Numerical Simulation of Brazing Aluminium Alloys with Al–Si Alloys

机译:用铝合金钎焊铝合金的数值模拟

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Joining parts using low-melting temperature alloys has long been used for manufacturing complex components such as heat exchangers made of aluminium alloys. Investigations of the process have shown that core/clad interaction during heating and brazing can lead to a significant decrease in the amount of liquid available for joint formation. This study presents a transient one-dimensional model for the process that takes into account the diffusion of silicon and the movement of the core/clad interface, with the model equations being implemented in the finite element software COMSOL Multiphysics;?the results are compared to literature experimental data. Silicon profiles in the core are well described, while there appears a significant difference between predicted and experimental values of remaining clads which suggest a strong effect of silicon diffusion and liquid penetration at core grain boundaries.
机译:使用低熔点温度合金的连接零件长期以来用于制造由铝合金制成的热交换器等复杂部件。 该方法的研究表明,加热和钎焊期间的核心/包覆相互作用可以导致可用于关节形成的液体量的显着降低。 本研究提出了一种瞬态一维模型,用于考虑硅的扩散和核心/包层界面的移动的过程,其中模型方程在有限元软件COMSOL多体学中实现;?结果比较 文献实验数据。 核心中的硅轮廓很好地描述,而剩余的包层的预测和实验值之间存在显着差异,这表明硅晶界硅扩散和液体穿透的强烈效果。

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