Abstract
Detailed investigations of the salient microstructural features and casting defects of the high-pressure die-cast (HPDC) AlSi9Cu3(Fe) alloy are reported. These characteristics are addressed to the mechanical properties and reliability of separate HPDC tensile bars. Metallographic and image analysis techniques have been used to quantitatively examine the microstructural changes throughout the tensile specimen. The results indicate that the die-cast microstructure consists of several microstructural heterogeneities such as positive eutectic segregation bands, externally solidified crystals (ESCs), cold flakes, primary Fe-rich intermetallics (sludge), and porosities. In addition, it results that sludge particles, gas porosity, as well as ESCs, and cold flakes are concentrated toward the casting center while low porosity and fine-grained structure is observed on the surface layer of the castings bars. The local variation of the hardness along the cross section as well as the change of tensile test results as a function of gage diameter of the tensile bars seem to be ascribed to the change of porosity content, eutectic fraction, and amount of sludge. Further, this behavior reflects upon the reliability of the die-cast alloy, as evidenced by the Weibull statistics.
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Acknowledgments
This work was developed within the European Project MUSIC (MUlti-layers control & cognitive System to drive metal and plastic production line for Injected Components, FP7-FoF-ICT-2011.7.1, Contract No. 314145). The authors would like to acknowledge Raffineria Metalli Capra Spa (Brescia, Italy) for the financial support to the research and the skillful contribution of Toolcast Snc (Brugine, Italy) for high-pressure die-casting experiments.
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Timelli, G., Fabrizi, A. The Effects of Microstructure Heterogeneities and Casting Defects on the Mechanical Properties of High-Pressure Die-Cast AlSi9Cu3(Fe) Alloys. Metall Mater Trans A 45, 5486–5498 (2014). https://doi.org/10.1007/s11661-014-2515-7
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DOI: https://doi.org/10.1007/s11661-014-2515-7