材料科学
针状的
合金
冶金
疲劳极限
沉积(地质)
钛合金
钛
复合材料
铝
多孔性
钒
微观结构
沉积物
生物
古生物学
作者
Yoshikazu Nakano,Daiji Morita,Nobuhiro Shinohara,Yoshikazu Ukai,Nobuyuki Sumi,Takashi Hashimoto
标识
DOI:10.2320/matertrans.mt-m2022146
摘要
Laser-wire-based directed energy deposition (DED) is a type of additive manufacturing. We investigated the chemical composition and fatigue performance to verify the usefulness of Ti–6Al–4V fabricated by laser-wire-based DED which deposited dot-shaped beads on a base material and conducted in preventing atmospheric intrusion with local shielding only. We compared the fatigue performance to a wrought material equivalent to AMS4967M and evaluated the deposited material in the as-fabricated condition. The chemical composition of the deposited material was within the specifications for the alloy. The fatigue strength at 1 × 107 cycles of the deposited material was more than 100 MPa higher than that of 682 MPa of the wrought material. Perhaps the high fatigue strength of the deposited material was caused by the low porosity and the acicular α′ martensitic phase. From these results, we showed the usefulness of Ti–6Al–4V deposited by a laser-wire-based DED to which local shielding was applied.
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