Mechanical anisotropy and ideal strength in a multifunctional Ti–Nb–Ta–Zr–O alloy (Gum Metal)

Author:

Hara Masashi1,Shimizu Yusuke2,Yano Takeshi2,Takesue Naohisa2,Furuta Tadahiko3,Kuramoto Shigeru3

Affiliation:

1. Toyota Central R&D Labs. Inc., Powder Metallurgy & Joining Lab., Aichi, Japan

2. Fukuoka University, Department of Applied Physics, Fukuoka, Japan

3. Toyota Central R&D Labs. Inc., Frontier Research Center, Aichi, Japan

Abstract

Abstract An ideal shear strength of Gum Metal, a newly developed set of beta-type titanium alloys with the nominal composition Ti-24(Nb + V + Ta) – (Zr, Hf) – O (at.%) believed to deform without motion of crystal dislocations, has been investigated experimentally for precise determination. Tensile tests of single crystals of Gum Metal along the <100>, <110>, and <111> directions showed that the Young' moduli were 40, 60, and 86 GPa, respectively. The elastic constants were estimated as c11 – c12 = 25 – 27 GPa and c44 = 29 – 36 GPa. In terms of these values, the anisotropy factor and the ideal strength were evaluated as 2.3 – 2.6 and 1.7 – 1.9 GPa, respectively. It was found that a ratio of the actual ultimate tensile strength to the ideal strength for Gum Metal was much higher than for other bcc metals.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,Metals and Alloys,Physical and Theoretical Chemistry,Condensed Matter Physics

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