Journal Article

·2018

A Study on Al/Cu Bimetal Production by Lost Foam Casting

Serhat Acar YTU , Rıdvan Gecü YTU , Alptekin Kısasöz YTU , Kerem Altuğ Güler YTU , Ahmet Karaaslan YTU

Practical Metallography

Abstract

Abstract A356 aluminium alloy/commercially pure (CP) copper bimetal was produced via liquid-solid process by lost foam casting (LFC) technique. Cu rod was placed into an expanded polystyrene (EPS) pattern followed by applying thermoplastic adhesive to cover apertures between rod and foam, pattern coating, drying and moulding in a steel flask using free silica sand. Molten A356 alloy was poured into moulded pattern at 760 °C and 790 °C, respectively. Also, hot dip A356 coating was implemented on Cu rods for each casting temperature and the effect of pre-coating on the final product was studied. Optical microscopy, scanning electron microscopy (SEM), X-ray diffraction (XRD), energy-dispersive X-ray spectroscopy (EDS) and hardness devices were used to determine microstructural evaluation and interface features. No metallurgical bonding occurred between Al and both coated and uncoated Cu rods at 760 °C. However, better mechanical bonding was observed comparing to uncoated sample cast at 790 °C because Cu rod surface was started to deteriorate with increasing casting temperature. Under favour of hot dip coating, uniform and continuous interface was obtained at 790 °C. θ-Al 2 Cu and h 2 -AlCu formations were determined at the interface according to XRD and EDS results. Interface hardnesses were measured as 422 HV0.01 for θ-Al 2 Cu and 697 HV0.01 for h 2 -AlCu phases.

Keywords

Bimetal Materials science Scanning electron microscope Coating Rod Alloy Casting Aluminium Metallurgy Optical microscope Composite material Energy-dispersive X-ray spectroscopy Copper Adhesive Layer (electronics)

Subject Areas

Aluminum Alloy Microstructure Properties ·Aerospace Engineering ·Physical Sciences
Aluminum Alloys Composites Properties ·Mechanical Engineering ·Physical Sciences
Bauxite Residue and Utilization ·Mechanical Engineering ·Physical Sciences

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