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Development of Heat Treatments for Automotive Components die-cast with Secondary Aluminium Alloy at Semi-Solid state

机译:半固态二元铝合金压铸汽车零部件热处理技术的发展

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A great contribution to the use of aluminium alloys comes from improvements in casting process. High-pressure die-casting allow to increase production and permit to realise complex-shaped castings with thin wall thickness. This is possible because the molten metal is injected at high velocity inside the die cavity and then it rapidly solidifies. However, these features reduce the quality of the component due to a substantial amount of air/gas entrapped during the filling phase. This denies the opportunity for further property enhancement by heat treatment at high temperature. Due to difficulty to produce high integrity die-castings, generally inexpensive secondary alloys are used. In order to eliminate or at least reduce the amount of entrapped porosity, semi-solid metal forming processes have been developed. In this work, the microstructural and mechanical evolutions of an AlSi7Cu3Mg secondary alloy die-cast at semi-solid state by SEED process are investigated over different heat treatment conditions. The spheroidization of eutectic Si, the progressive dissolution of Cu-rich phases and the hardness variations of the alloy were observed and quantified. The results indicate that the mechanical properties increase with the increase of solution temperature. The effects of artificial ageing temperature and time were then studied. By increasing the ageing temperature, the maximum hardness value decreases but it is reached at shorter holding time.
机译:铸造工艺的改进为铝合金的使用做出了巨大贡献。高压压铸可以提高产量,并可以实现壁厚薄的复杂形状的铸件。这是可能的,因为熔融金属以高速注入到型腔内,然后迅速凝固。然而,由于在填充阶段期间夹带了大量的空气/气体,这些特征降低了部件的质量。这否认了通过高温热处理进一步增强性能的机会。由于难以生产高完整性的压铸件,因此通常使用廉价的二次合金。为了消除或至少减少截留的孔隙率,已经开发了半固态金属成形工艺。在这项工作中,研究了在不同热处理条件下,通过SEED工艺压铸的半固态AlSi7Cu3Mg二次合金的组织和力学演变。观察并量化了共晶Si的球化,富Cu相的逐渐溶解以及合金的硬度变化。结果表明,力学性能随溶液温度的升高而提高。然后研究了人工时效温度和时间的影响。通过提高时效温度,最大硬度值降低,但在较短的保持时间内即可达到。

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