Laser additive manufacturing of metallic components: materials, processes and mechanisms

Лазерное аддитивное производство металлических компонентов: материалы, процессы и механизмы
Konrad Wissenbach, Reinhart Poprawe, Dongdong Gu, Wilhelm Meiners
2012-01-31

laser additive manufacturinglaser melting (LM)laser metal deposition (LMD)laser sintering (LS)metal matrix composites (MMCs)
Unlike conventional materials removal methods, additive manufacturing (AM) is based on a novel materials incremental manufacturing philosophy. Additive manufacturing implies layer by layer shaping and consolidation of powder feedstock to arbitrary configurations, normally using a computer controlled laser. The current development focus of AM is to produce complex shaped functional metallic components, including metals, alloys and metal matrix composites (MMCs), to meet demanding requirements from aerospace, defence, automotive and biomedical industries. Laser sintering (LS), laser melting (LM) and laser metal deposition (LMD) are presently regarded as the three most versatile AM processes. Laser based AM processes generally have a complex non-equilibrium physical and chemical metallurgical nature, which is material and process dependent. The influence of material characteristics and processing conditions on metallurgical mechanisms and resultant microstructural and mechanical properties of AM processed components needs to be clarified. The present review initially defines LS/LM/LMD processes and operative consolidation mechanisms for metallic components. Powder materials used for AM, in the categories of pure metal powder, prealloyed powder and multicomponent metals/alloys/MMCs powder, and associated densification mechanisms during AM are addressed. An in depth review is then presented of material and process aspects of AM, including physical aspects of materials for AM and microstructural and mechanical properties of AM processed components. The overall objective is to establish a relationship between material, process, and metallurgical mechanism for laser based AM of metallic components.
1
Additive manufacturing (AM) builds metallic components by layer-by-layer consolidation of powder feedstock using computer-controlled lasers, unlike conventional material removal methods.
2
Laser-based AM processes are characterised by complex, non-equilibrium physical and chemical metallurgical behaviour that depends on both material and process parameters.
3
Material characteristics (pure metal, prealloyed, multicomponent/alloys/MMCs) and processing conditions critically influence densification mechanisms, microstructure, and mechanical properties of AM components.
4
The review aims to establish explicit relationships between material, process, and metallurgical mechanisms for laser-based AM of metallic components by defining processes, consolidation mechanisms, and material/process influences on properties.
5
The three most versatile laser-based AM processes for metals are laser sintering (LS), laser melting (LM), and laser metal deposition (LMD).

Metallic components produced by laser-based additive manufacturing (LS/LM/LMD) from metal/alloy/MMC powders

Relationships between material characteristics and processing conditions and their effects on metallurgical consolidation mechanisms, resulting microstructural evolution and mechanical properties in laser-based AM

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2012-01-31
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Konrad Wissenbach
Reinhart Poprawe
Dongdong Gu
Wilhelm Meiners
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