Abstract

The effects of addition of different amounts of rare earth ytterbium (Yb) on the microstructure and mechanical properties of the casting ADC12 alloy were investigated by mechanical properties testing and microstructure observation. The results indicate that Yb modification had a big influence on the microstructure and properties of the as-cast alloy. The optimum level of Yb content was 0.8 wt %. The coarse dendritic primary α-Al phases were fully refined, leading to the decreasing of the secondary dendrite arm spacing. The morphology of eutectic silicon phases changed from acicular into short rod-like and even granular. There was a structural transformation of β-Fe phases from massive to small rod-shaped morphology. Additionally, the tensile strength, elongation, and microhardness were 267.9 MPa, 4.2%, and 107.3 HV, respectively, increases of 55.4, 121.1, and 41.4%, respectively, compared with the matrix alloy. Fractographic examinations reveal that mainly ductile fracture for Yb addition of 0.8 wt %. The fracture appearances matched the tendency of the tensile properties. Furthermore, the addition of Yb can generate a rare earth phase consisting of the three elements of Al, Si, Yb, with some small iron-rich phases attached around the rare earth phase.

Highlights

  • Lightweight Al-Si alloys are extensively used in the automotive industry to reduce vehicle weight.In order to enhance the overall quality and performance of these vehicles, higher requirements are placed on alloy properties to improve overall performance

  • Eutectic silicon phases and iron-rich phases are main secondary reinforcing phases in the ADC12 alloy, and these phases can be refined by the addition of rare earths

  • This study investigated the effects of different Yb additions on the microstructure and properties of

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Summary

Introduction

Lightweight Al-Si alloys are extensively used in the automotive industry to reduce vehicle weight. Good performance of alloy materials requires fine microstructures, and modification is widely applied as a strategy to refine the microstructure of Al-Si alloys [1,2,3,4]. Eutectic silicon phases and iron-rich phases are main secondary reinforcing phases in the ADC12 alloy, and these phases can be refined by the addition of rare earths. The transformative effect of rare earth elements is related to do atomic radius. Yb and Si is 1.66, close to the optimal ratio, suggesting Yb will exhibit good modification of Si phases. Modification of ADC12 with Yb addition to improve alloy performance is a reasonable strategy. This study investigated the effects of different Yb additions on the microstructure and properties of ADC12 alloy, followed by discussion of the modification mechanism

Experimental
In Figure
Effects of Yb Addition on Eutectic Silicon Phases
Effects rare earth
Mechanical
The of tensile strengthalloys and are elongation the unmodified
10. Fractographs
Conclusions
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