Abstract <p>A Ti–38Zr–11Nb titanium alloy and its modifications with various silver concentrations (1–3 at %) are studied. The alloy is considered as an alternative to a Ti–6Al–4V alloy, which comprises toxic elements. A production method, which includes argon arc melting, remelting, and annealing, is presented. Annealing is shown to ensure a uniform silver distribution and a slight increase in the grain size. X-ray diffraction analysis reveals the β phase of titanium. An analysis of the microhardness demonstrates an increase in the titanium β&#xa0;phase content as the silver content increases to 3 at %.</p>

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Effect of Silver and Annealing on the Properties of a Ti–38Zr–11Nb Alloy

  • A. D. Gorbenko,
  • V. K. Zhidkov,
  • M. A. Kaplan,
  • V. Yu. Zadorozhnyi,
  • Ya. A. Morozova,
  • S. A. Mikhlik,
  • K. V. Sergienko,
  • T. M. Sevost’yanova,
  • A. G. Kolmakov,
  • S. V. Konushkin,
  • M. A. Sevost’yanov

摘要

Abstract

A Ti–38Zr–11Nb titanium alloy and its modifications with various silver concentrations (1–3 at %) are studied. The alloy is considered as an alternative to a Ti–6Al–4V alloy, which comprises toxic elements. A production method, which includes argon arc melting, remelting, and annealing, is presented. Annealing is shown to ensure a uniform silver distribution and a slight increase in the grain size. X-ray diffraction analysis reveals the β phase of titanium. An analysis of the microhardness demonstrates an increase in the titanium β phase content as the silver content increases to 3 at %.