Microstructures and aging characteristics of Al-Mg-Sc alloy fabricated by selective laser melting
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- Kimura Takahiro
- Osaka Research Institute of Industrial Science and Technology
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- Nakamoto Takayuki
- Osaka Research Institute of Industrial Science and Technology
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- Ozaki Tomoatsu
- Osaka Research Institute of Industrial Science and Technology
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- Miki Takao
- Osaka Research Institute of Industrial Science and Technology
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- Hashizume Yoshiki
- Toyo Aluminium K.K.
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- Murakami Isao
- Toyo Aluminium K.K.
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- Imai Hiroyuki
- Toyo Aluminium K.K.
Bibliographic Information
- Other Title
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- レーザ積層造形法により作製したAl-Mg-Sc合金の組織と時効特性
- レーザ セキソウ ゾウケイホウ ニ ヨリ サクセイ シタ Al-Mg-Sc ゴウキン ノ ソシキ ト ジコウ トクセイ
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Description
<p>We investigated the processability and aging characteristics of a selective laser melted (SLM) Al-Mg-Sc alloy. The Al-Mg-Sc SLM specimens were densified with increasing volume energy density in the SLM process. The Al-MgSc SLM specimen, fabricated under the optimum laser scan conditions for densification, had a relative density of more than 99.9%. The Vickers hardness significantly increased by aging heat treatment, and the peak-aging condition was found at 325°C for 4 h. Meanwhile, the hardness could be maintained even after prolonged aging, that is, robust aging behavior was confirmed for aging time. Both the as-fabricated and peak-aged Al-Mg-Sc SLM specimens showed mixed crystal grain microstructures with equiaxed and columnar crystals. The nanostructure of the peak-aged Al-Mg-Sc SLM specimen was dispersed single-nano-sized Al3Sc precipitates in the α-Al matrix, which were generated by aging of the as-fabricated SLM specimen supersaturated with solid solution Sc. In the peak-aged Al-Mg-Sc SLM specimen, both the tensile strength and 0.2% proof stress significantly increased to 550 MPa and 500 MPa, respectively, equivalent to those of the heat-treated conventional extra-super duralumin. This strengthening was mainly attributed to precipitation hardening of the finely precipitated Al3Sc phase (L12-type), coherent with the α-Al matrix.</p>
Journal
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- Journal of Japan Institute of Light Metals
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Journal of Japan Institute of Light Metals 70 (10), 467-474, 2020-10-15
The Japan Institute of Light Metals
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Details 詳細情報について
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- CRID
- 1391412326419361792
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- NII Article ID
- 130007939836
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- NII Book ID
- AN00069773
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- ISSN
- 18808018
- 04515994
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- NDL BIB ID
- 030690219
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- Text Lang
- ja
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- Data Source
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- JaLC
- NDL Search
- Crossref
- CiNii Articles
- OpenAIRE
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- Abstract License Flag
- Disallowed