Paper
25 September 1997 Routes to plastic models and prototypes using the SLS selective laser sintering process
Sandra Seitz, Simon van de Crommert, Klaus K. Esser, Kevin McAlea
Author Affiliations +
Proceedings Volume 3102, Rapid Prototyping and Flexible Manufacturing; (1997) https://doi.org/10.1117/12.281307
Event: Lasers and Optics in Manufacturing III, 1997, Munich, Germany
Abstract
Complex three dimensional parts can be manufactured directly from CAD data using the SLSR selective laser sintering process. In addition to the currently used nylon materials, two new materials have been developed for the production of functional models. From an elastomeric polymer, commercially available as Somos 201, highly flexible, rubber-like parts can be produced directly in the sinterstation system. Also, a new product for producing stiff functional prototypes will be introduced in July, commercially available as VeriForm polymer. Its surface quality and detail definition is superior to the currently used nylon materials while the mechanical properties could be kept at the same level. Comparative data of VeriForm and the nylon materials are presented. For the production of real technical prototypes injection moulding inserts can be produced by the RapidTool process that can be employed for the production of up to 80,000 parts depending on the injected material and part geometry. By changes in the chemical composition and by new processing parameters, the average cycle time could be reduced from 4 to 5 days down to 2 to 3 days.
© (1997) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Sandra Seitz, Simon van de Crommert, Klaus K. Esser, and Kevin McAlea "Routes to plastic models and prototypes using the SLS selective laser sintering process", Proc. SPIE 3102, Rapid Prototyping and Flexible Manufacturing, (25 September 1997); https://doi.org/10.1117/12.281307
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CITATIONS
Cited by 3 scholarly publications.
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KEYWORDS
Laser sintering

Prototyping

Polymers

Composites

Laser processing

Particles

3D modeling

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