Surface Morphology in Selective Laser Melting of Metal Powders
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- Type
- article
- Published
- 2011-01-01
- Cited by
- 352
- References
- 25
- Access
- Open access
- OpenAlex
- https://openalex.org/W1981603550
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:108771798
Keywords
Selective laser melting, Materials science, Morphology (biology), Metal, Surface (topology)
References
- High density net shape components by direct laser re-melting of single-phase powders
- A sub-process approach of selective laser sintering
- Research on the processing experiments of laser metal deposition shaping
- Effects of process variables on laser direct formation of thin wall
- Flow rate of metal powders at reduced and elevated air pressure
- Parametric analysis of the selective laser melting process
- Single track formation in selective laser melting of metal powders
- Binding Mechanisms in Selective Laser Sintering and Selective Laser Melting
- The role of particle size on the laser sintering of iron powder
- Selective Laser Melting: a regular unit cell approach for the manufacture of porous, titanium, bone in-growth constructs, suitable for orthopedic applications.
- Strategy of manufacturing components with designed internal structure by selective laser melting of metallic powder
- Mapping and Modelling Single Scan Track Formation in Direct Metal Selective Laser Melting
- Effect of annular fins on heat transfer of a horizontal immersed tube in bubbling fluidized beds
- Sintering of commercially pure titanium powder with a Nd:YAG laser source
- Rapid Prototyping: Porous Titanium Alloy Scaffolds Produced by Selective Laser Melting for Bone Tissue Engineering
- On the effect of scanning strategies in the selective laser melting process
- Laser micro sintering: A new method to generate metal and ceramic parts of high resolution with sub-micrometer powder
- QUALIFICATION METHOD FOR POWDER INJECTION MOLDED COMPONENTS
- Fabrication of Bioactive Porous Ti Metal with Structure Similar to Human Cancellous Bone by Selective Laser Melting
- Microstructure evolution of selective laser molten 316L stainless steel parts with laser re-melting
Cited by
- Investigation of the laser–powder–atmosphere interaction zone during the selective laser melting process
- Surface quality in selective laser melting of metal powders
- Review on manufacture by selective laser melting and properties of titanium based materials for biomedical applications
- Deformation and failure behaviour of Ti-6Al-4V lattice structures manufactured by selective laser melting (SLM)
- Heat treatment of TI-6AL-4V produced by laserCUSING
- Improvement of surface properties of SLM parts by atmospheric plasma spraying coating
- Microstructure and mechanical properties of Al-12Si produced by selective laser melting: Effect of heat treatment
- Comparison of different post processing technologies for SLM generated 316l steel parts
- Manufacture by selective laser melting and mechanical behavior of commercially pure titanium
- Immobilisation of an antibacterial drug to Ti6Al4V components fabricated using selective laser melting
- Modification of Carbon Steel by Laser Surface Melting: Part I: Effect of Laser Beam Travelling Speed on Microstructural Features and Surface Hardness
- Geometrical feature analysis of Co-Cr-Mo single tracks after selective laser melting processing
- Biomedical production of implants by additive electro-chemical and physical processes
- Energy density analysis on single tracks formed by selective laser melting with CoCrMo powder material
- Modeling and control of remelting in high-energy beam additive manufacturing
- Experimental Investigation on Selective Laser Melting of Bulk Net-Shape Pure Magnesium
- Surface Quality Analysis in Selective Laser Melting with CoCrMo Powders
- Heat treatment of Ti6Al4V produced by Selective Laser Melting: Microstructure and mechanical properties
- Functionalisation of Ti6Al4V components fabricated using selective laser melting with a bioactive compound.
- Characterization of typical surface effects in additive manufacturing with confocal microscopy
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