Literature DB >> 27877385

Experimental study of the Ca-Mg-Zn system using diffusion couples and key alloys.

Yi-Nan Zhang1, Dmytro Kevorkov1, Florent Bridier2, Mamoun Medraj1.   

Abstract

Nine diffusion couples and 32 key samples were prepared to map the phase diagram of the Ca-Mg-Zn system. Phase relations and solubility limits were determined for binary and ternary compounds using scanning electron microscopy, electron probe microanalysis and x-ray diffraction (XRD). The crystal structure of the ternary compounds was studied by XRD and electron backscatter diffraction. Four ternary intermetallic (IM) compounds were identified in this system: Ca3Mg x Zn15-x (4.6 ⩽ x ⩽ 12 at 335 °C, IM1), Ca14.5Mg15.8Zn69.7 (IM2), Ca2Mg5Zn13 (IM3) and Ca1.5Mg55.3Zn43.2 (IM4). Three binary compounds were found to have extended solid solubility into ternary systems: CaZn11, CaZn13 and Mg2Ca form substitutional solid solutions where Mg substitutes for Zn atoms in the first two compounds, and Zn substitutes for both Ca and Mg atoms in Mg2Ca. The isothermal section of the Ca-Mg-Zn phase diagram at 335 °C was constructed on the basis of the obtained experimental results. The morphologies of the diffusion couples in the Ca-Mg-Zn phase diagram at 335 °C were studied. Depending on the terminal compositions of the diffusion couples, the two-phase regions in the diffusion zone have either a tooth-like morphology or contain a matrix phase with isolated and/or dendritic precipitates.

Entities:  

Keywords:  Ca–Mg–Zn; diffraction; diffusion; electron microprobe; phase diagrams

Year:  2011        PMID: 27877385      PMCID: PMC5090483          DOI: 10.1088/1468-6996/12/2/025003

Source DB:  PubMed          Journal:  Sci Technol Adv Mater        ISSN: 1468-6996            Impact factor:   8.090


  2 in total

1.  Precipitate crystal structure determination in melt spun Mg-1.5wt%Ca-6wt%Zn alloy.

Authors:  Paula M Jardim; Guillermo Solórzano; John B Vander Sande
Journal:  Microsc Microanal       Date:  2002-12       Impact factor: 4.127

2.  MgZnCa glasses without clinically observable hydrogen evolution for biodegradable implants.

Authors:  Bruno Zberg; Peter J Uggowitzer; Jörg F Löffler
Journal:  Nat Mater       Date:  2009-09-27       Impact factor: 43.841

  2 in total

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