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SLS can support product development, functional prototypes, custom products, footwear components and selected low-volume production applications.
Manufacture housings, covers, fixtures, machine components and specialised polymer parts for engineering and electronics development.
Medical applications include orthoses, braces, insoles, anatomical models and surgical guides using suitable materials and validated workflows.
Aerospace teams can evaluate SLS for lightweight ducts, brackets, housings, structural polymer parts and high-performance polymer applications.
Universities and design teams can use SLS for functional prototypes, creative projects, architectural forms and materials-focused additive manufacturing studies.
Dense part nesting and multiple system sizes make SLS useful for service providers producing varied customer parts, prototypes and recurring batches.
SLS supports functional prototypes, ducts, housings, brackets, jigs, fixtures and selected end-use polymer components without dedicated tooling for each design iteration.
SLS can produce jigs, fixtures, custom components and high-performance polymer parts for demanding industrial environments.
Produce durable polymer prototypes for fit, assembly, engineering and application testing.
Manufacture multiple end-use polymer components without dedicated molds for each product revision.
Create lightweight manufacturing aids, assembly fixtures, guides and custom shop-floor tools.
Use suitable workflows for braces, orthoses, insoles, anatomical models and surgical guides.
Produce selected flexible parts, cushioning structures and customised geometries using compatible TPU materials.
Use high-temperature SLS equipment for suitable PEEK, PEKK and PPS research or industrial applications.
Lodestar 3D helps manufacturers, medical teams, research organisations and service bureaus define SLS requirements according to part size, material, temperature, throughput, powder workflow and production goals.