選択的レーザー溶融法により作製した Ti–6Al–4Nb–4Zr の組織変化と高温力学特性

Tomoki Kuroda, Haruki Masuyama, Yoshiaki Toda, Tetsuya Matsunaga, Tsutomu Ito, Makoto Watanabe, Ryosuke Ozasa, Takuya Ishimoto, Takayoshi Nakano, Masayuki Shimojo, Yoko Yamabe–Mitarai*

*この論文の責任著者

研究成果: ジャーナルへの寄稿学術論文査読

抄録

Ti–6Al–4Nb–4Zr (mass%) was prepared by selective laser melting (SLM) under various conditions, and the microstructure evolution resulting from SLM processing and subsequent heat treatments was investigated. The effects of the unique SLM–induced microstructure on the high–temperature compressive strength and creep properties of the samples were then elucidated. Under rapid cooling conditions, the martensitic structure formed in a scale–like pattern, with a 100 µm in size, consistent with the laser scanning pattern. By contrast, under slow cooling conditions, the α/β lamellar structure formed in β grains with a 300 µm grain size instead of in a scale–like pattern. The martensitic structure drastically changed to a Widmanstätten structure during heat treatment. The equiaxed α phase also formed at the interface of the scale–like patterns. By contrast, the α/β lamellar structure did not exhibit a change in response to heat treatment. The compressive strength of the SLM samples was governed by the martensite α size and the grain size, both of which depended on the cooling rate. The dominant creep deformation mechanism at 600℃ and under a loading stress of 137 MPa was grain boundary sliding. The creep life depended on the grain size. The HIP treatment improved the creep life because it eliminated pores introduced by the SLM process. [doi:10.2320/jinstmet.JC202402]

寄稿の翻訳タイトルMicrostructure Evolution and High–Temperature Mechanical Properties of Ti–6Al–4Nb–4Zr Fabricated by Selective Laser Melting
本文言語日本
ページ(範囲)348-356
ページ数9
ジャーナルNippon Kinzoku Gakkaishi/Journal of the Japan Institute of Metals
88
12
DOI
出版ステータス出版済み - 2024/12

キーワード

  • compression strength
  • creep
  • heat–resistant Ti alloys
  • selective laser melting

ASJC Scopus 主題領域

  • 凝縮系物理学
  • 材料力学
  • 金属および合金
  • 材料化学

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