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International Journal of Pharmaceutics, ISSN 0378-5173, 08/2017, Volume 529, Issue 1-2, pp. 285 - 293
Journal Article
Journal of Materials Processing Tech, ISSN 0924-0136, 08/2013, Volume 213, Issue 8, pp. 1387 - 1405
Journal Article
Polymer Testing, ISSN 0142-9418, 08/2016, Volume 53, pp. 217 - 226
Selective Laser Sintering (SLS) is an additive manufacturing technique whereby a laser melts polymer powder layer by layer to generate three-dimensional parts.... 
Measuring technique | Surface roughness | Selective Laser Sintering (SLS) | PA12 | MATERIALS SCIENCE, CHARACTERIZATION & TESTING | POLYMER SCIENCE | Measurement | Powders | Polymers | Analysis | Methods | 3D printing | Sintering | Selective laser sintering | Laser sintering | Process parameters | Injection molding | Measurement methods | Confocal | Tactile
Journal Article
Journal of Materials Processing Tech, ISSN 0924-0136, 11/2015, Volume 225, pp. 326 - 336
Journal Article
European Polymer Journal, ISSN 0014-3057, 07/2017, Volume 92, pp. 250 - 262
[Display omitted] •Coalescence and microstructure of PA12 SLS parts were analysed with powder ageing.•Virgin powder coalesced in a narrower temperature range... 
Powder recycling and ageing | Polyamide | Processability | Selective laser sintering (SLS) | Crystal structure | POLYMERS | POLYMER SCIENCE | PERSPECTIVE | SIZE | MECHANICAL-PROPERTIES | SHAPE | LASER SINTERING PROCESS | POLYAMIDE 12 POWDER | NYLON-12 | Powders | Structure | Mechanical engineering | Sintering | Polyamides | Crystals
Journal Article
Journal of the European Ceramic Society, ISSN 0955-2219, 02/2018, Volume 38, Issue 2, pp. 769 - 775
Selective Laser Sintering (SLS) technique is used to fabricate 3D porcelain products with complex shapes. Commercial powder has been studied and optimized in... 
Porcelain | Selective laser sintering (SLS) | CERAMIC PARTS | HEAT-TREATMENT | PARAMETERS | MATERIALS SCIENCE, CERAMICS | ALUMINA | Powders | Sintering | Engineering Sciences | Material chemistry | Chemical Sciences | Materials
Journal Article
CIRP Annals - Manufacturing Technology, ISSN 0007-8506, 2007, Volume 56, Issue 1, pp. 205 - 208
Polyetheretherketone (PEEK) is a good choice especially for manufacturing medical instruments or implants. These parts are typically produced by conventional... 
Polymer | Selective Laser Sintering (SLS) | Biomedical | polymer | ENGINEERING, MANUFACTURING | ENGINEERING, INDUSTRIAL | biomedical
Journal Article
Ceramics International, ISSN 0272-8842, 12/2018, Volume 44, Issue 17, pp. 20992 - 20999
Traditionally, SiC components with complex shapes are very difficult or even impossible to fabricate. This paper aims to develop a new manufacturing process,... 
Bending strength | Selective laser sintering | Cold isostatic pressing | SiC/SiC | Polymer infiltration pyrolysis | Density | PERMEABILITY | PARTS | BEHAVIOR | SIC CERAMICS | SILICON-CARBIDE | MATERIALS SCIENCE, CERAMICS | BINDERS | OBJECT MANUFACTURING LOM | MICROSTRUCTURE | Pyrolysis | Silicon carbide | Sintering | Analysis | Innovations | Mechanical properties | Polymers
Journal Article
Journal Article
International Journal of Thermophysics, ISSN 0195-928X, 9/2017, Volume 38, Issue 9, pp. 1 - 9
Journal Article
Journal of Materials Processing Tech, ISSN 0924-0136, 2007, Volume 182, Issue 1, pp. 477 - 488
Journal Article
Ceramics International, ISSN 0272-8842, 08/2019, Volume 45, Issue 12, pp. 15538 - 15546
Mullite ceramic foams with high structural complexity, controlled pore structures and low thermal conductivity were manufactured by selective laser sintering... 
Mechanical properties | Thermally induced phase separation | Thermal conductivity | Selective laser sintering | Pore structures | ASH HOLLOW SPHERES | CENOSPHERE | MATERIALS SCIENCE, CERAMICS | ALUMINA | INSULATORS | HIGH-POROSITY | TEMPERATURE | FABRICATION | FLY-ASH | MORPHOLOGY | MICROSTRUCTURE | Sintering | Porosity
Journal Article
Lasers in Medical Science, ISSN 0268-8921, 9/2013, Volume 28, Issue 5, pp. 1241 - 1247
Journal Article
Composites Part B, ISSN 1359-8368, 03/2014, Volume 59, pp. 285 - 292
•Fatigue crack propagation at 23 °C and −50 °C of SLS polyamide 12 and its composite reinforced with short fibers.•At 23 °C the pure polyamide and the... 
B. Fracture toughness | E. Selective laser sintering | B. Fatigue | D. Fractography | Selective laser sintering | LASER | COMPONENTS | Fatigue | MATERIALS SCIENCE, COMPOSITES | COMPOSITES | MECHANICAL-PROPERTIES | FRACTURE-BEHAVIOR | Fracture toughness | SPECIMENS | ENGINEERING, MULTIDISCIPLINARY | Fractography | PROPAGATION | Fatigue testing machines | Polyamides | Materials
Journal Article
Rapid Prototyping Journal, ISSN 1355-2546, 04/2012, Volume 18, Issue 3, pp. 194 - 200
Journal Article