4.5 Article

Equilibrium ternary intermetallic phase in the Mg-Zn-Ca system

Journal

JOURNAL OF MATERIALS RESEARCH
Volume 31, Issue 14, Pages 2147-2155

Publisher

CAMBRIDGE UNIV PRESS
DOI: 10.1557/jmr.2016.196

Keywords

crystal growth; microstructure; crystallographic structure; scanning electron microscopy; transmission electron microscopy; x-ray diffraction

Funding

  1. Laura Bassi Center of Expertise (BRIC, Bioresorbable Implants for Children), FFG, Austria
  2. ETH Research Grant [ETH-41 13-2]

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This study investigates the ternary intermetallic phases in the Mg-Zn-Ca system, which is of great interest for metallic biodegradable implant applications. According to published phase diagrams, the key alloy composition studied herein is located within the Ca2Mg5Zn5, Ca2Mg6Zn3, and IM1 phase fields. Through controlled cooling of the melt, a quasibinary approximate to Ca2Mg5Zn5-Mg microstructure was obtained. The large polygonal grains had a composition of Ca2Mg5Zn5 as determined by energy-dispersive x-ray spectroscopy (EDX). Differential scanning calorimetry revealed that Ca2Mg5Zn5 begins to form at approximate to 417 degrees C, and the eutectic temperature is approximate to 369 degrees C. Based on single-crystal x-ray diffraction data, Ca2Mg5Zn5 was determined to be hexagonal (P6(3)/mmc), with lattice parameters of a = 9.5949(3) angstrom and c = 10.0344(3) angstrom. This was also verified by transmission electron microscopy. Further refinements, which considered the possibility of mixed Mg/Zn sites, significantly improved the data fit compared to the initial ordered structural model. The final refined structure possesses a composition of Ca16Mg42Zn42, very similar to the chemical analysis results from EDX.

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