2002Unpublished venueRequires access

Microstructure and mechanical properties of high strength as-cast Ti-15-3 alloy

Ding Hong

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Abstract

The effects of heat treatment and solidification cooling rate on the microstructure and mechanical properties of as cast Ti 15 3 alloy prepared by induction skull melting method were investigated. Results show that the microstructure of as cast Ti 15 3 alloy changes from the features of simplified and larger size of beta grains to finer grain size with increasing solidification cooling rate. After solution treatment and different ageing treatment, alpha phase precipitates in grains interior as well as in grain boundaries. Due to the modification of the precipitate phase, the tensile strength and elongation of the alloy are improved simultaneously. A good combination of the values of 1.406?GPa of σ b and 4.5% of δ was obtained, which will be satisfied the use of this kind of alloy in critical areas.

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What this paper is about

The effects of heat treatment and solidification cooling rate on the microstructure and mechanical properties of as cast Ti 15 3 alloy prepared by induction skull melting method were investigated. Results show that the microstructure of as cast Ti 15 3 alloy changes from the features of simplified and larger size of beta grains to finer grain size with increasing solidification cooling rate. After solution treatment and different ageing treatment, alpha phase precipitates in grains interior as well as in grain boundaries. Due to the modification of the precipitate phase, the tensile strength and elongation of the alloy are improved simultaneously. A good combination of the values of 1.406?GPa of σ b and 4.5% of δ was obtained, which will be satisfied the use of this kind of alloy in critical areas.

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Available abstract

The effects of heat treatment and solidification cooling rate on the microstructure and mechanical properties of as cast Ti 15 3 alloy prepared by induction skull melting method were investigated. Results show that the microstructure of as cast Ti 15 3 alloy changes from the features of simplified and larger size of beta grains to finer grain size with increasing solidification cooling rate. After solution treatment and different ageing treatment, alpha phase precipitates in grains interior as well as in grain boundaries. Due to the modification of the precipitate phase, the tensile strength and elongation of the alloy are improved simultaneously. A good combination of the values of 1.406?GPa of σ b and 4.5% of δ was obtained, which will be satisfied the use of this kind of alloy in critical areas.

Key concepts: Microstructure, Materials science, Alloy, Ultimate tensile strength, Grain size, Metallurgy, Elongation, Phase (matter)

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