Additive manufacturing of metallic components by selective electron beam melting — a review

Аддитивное производство металлических компонентов методом селективного электронно-лучевого сплавления — обзор
Carolin Körner
2016-05-09

SEBMSelective electron beam meltingadditive manufacturinghigh-performance alloyshigh-power electron beammaterial consolidationmetallic componentspowder bed fusionprocess–property relationshipvacuum processing
Selective electron beam melting (SEBM) belongs to the additive manufacturing technologies which are believed to revolutionise future industrial production. Starting from computer-aided designed data, components are built layer by layer within a powder bed by selectively melting the powder with a high power electron beam. In contrast to selective laser melting (SLM), which can be used for metals, polymers and ceramics, the application field of the electron beam is restricted to metallic components since electric conductivity is required. On the other hand, the electron beam works under vacuum conditions, can be moved at extremely high velocities and a high beam power is available. These features make SEBM especially interesting for the processing of high-performance alloys. The present review describes SEBM with special focus on the relationship between process characteristics, material consolidation and the resulting materials and component properties.
1
Electron beam use in SEBM is restricted to electrically conductive (metallic) materials, unlike SLM which can process metals, polymers, and ceramics.
2
Operational vacuum conditions and electron beam characteristics influence the relationship between process parameters, material consolidation, and final component properties.
3
SEBM builds components layer-by-layer by selectively melting metal powder with a high-power electron beam under vacuum.
4
SEBM offers extremely high beam travel velocities and high beam power, enabling processing of high-performance alloys.
5
The review focuses on linking SEBM process characteristics to resulting material and component properties, emphasizing suitability for high-performance alloy manufacturing.

Metallic components manufactured by selective electron beam melting (SEBM)

Relationship between SEBM process characteristics, material consolidation, and resulting material and component properties

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2016-05-09
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Carolin Körner
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