Effects of precipitates on the fracture behavior of cast eutectic Al-Si alloys
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摘要: 通過對鑄造共晶Al-Si合金斷口及析出相的分析研究了拉伸過程中基體內析出相的斷裂特點.結果發現:拉伸過程中基體內初、共晶硅以穿晶斷裂為主,這與顆粒內部存在的結構缺陷有關;直徑小于2.0μm的初晶硅能夠抑制二次裂紋的擴展.塊狀富鐵相表現出穿晶斷裂特點,魚骨狀富鐵相中的微裂紋沿一次枝晶軸向生長.富銅相對裂紋擴展具有強烈地偏折作用;以富鐵相為核心析出的富銅相能抑制富鐵相中微裂紋的形成.提高合金中Cu含量可以降低富鐵相的有害作用,改善合金的力學性能.Abstract: The fracture characteristics of precipitates in cast eutectic Al-Si alloys were studied during tensile processes by observing the fracture and precipitates.It is shown that the primary/eutectic Si cracks mainly through transcrystalline fracture owing to structural defects.Primary Si with a diameter size less than 2.0μm can block the propagation of secondary cracks.The blocky iron-rich phases crack through transcrystalline fracture,while cracks within the Chinese script iron-rich phases propagate along their primary dendrites.The copper-rich phases deflect the crack propagation and inhibit the nucleation of microcracks within the iron-rich phases.Increasing the Cu content neutralizes the harmful effects of the iron-rich phases to some extent and is of benefit to the mechanical properties.
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Key words:
- aluminum alloys /
- silicon alloys /
- eutectics /
- precipitates /
- microcracks /
- mechanical properties
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