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A Study of Anodising Behaviour of Al-Si Components Produced by Rheocasting

机译:流变铸造产生的Al-Si组分的阳极氧化行为研究

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This paper aims to investigate the anodising behaviour of Al-Si components produced by rheocasting, to understand the effect of the surface liquid segregation (SLS) on the anodising response. The material investigated was EN AC 42000 Al-alloy with an addition of 150 ppm Sr. The component was rheocast and conventionally liquid cast for benchmarking. The RheoMetal™ process was used to prepare slurry and subsequently cast using a vertical pressure die casting machine. Prior to anodising, mechanical grinding was used as pre-treatment method for selected samples as comparison with components in the as-cast state. Anodising was performed on the components using a constant controlled voltage at 25 V, in 1 M H2SO4, at room temperature. The duration of anodising was varied from 30 mins to 120 mins to examine the relationship between oxide layer thickness and the anodising time. The oxide layer was investigated and characterised. The results demonstrated that the presence of the SLS layer, which was enriched with alloying elements, had a significant influence on the anodising behaviour of the cast component. The oxide layer thickness of the components produced by rheocasting and fully liquid casting was measured and compared. The relations between the oxide layer thickness and anodising time, as well as the casting methods are presented and discussed in this paper.
机译:本文旨在研究流变铸造产生的Al-Si组分的阳极氧化行为,以了解表面液体偏析(SLS)对阳极氧化反应的影响。所研究的材料为添加了150 ppm Sr的EN AC 42000铝合金,该组件是流延铸造的,并且通常采用液体浇铸来进行基准测试。 RheoMetal™工艺用于制备浆料,然后使用立式压铸机进行铸造。在阳极氧化之前,将机械研磨用作所选样品的预处理方法,以与铸态的组件进行比较。在室温下,在1 M H2SO4中使用恒定的受控电压在25 V下对组件进行阳极氧化。阳极氧化的持续时间从30分钟到120分钟不等,以检查氧化层厚度和阳极氧化时间之间的关系。研究并表征了氧化物层。结果表明,富含合金元素的SLS层的存在对铸件的阳极氧化行为具有重大影响。测量并比较了通过流延铸造和完全液态铸造生产的部件的氧化物层厚度。本文介绍并讨论了氧化层厚度与阳极氧化时间之间的关系以及浇铸方法。

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