INDUSTRIAL 3D PRINTING SERVICES

From Digital Design to Functional Parts

SelikoForm provides engineering-driven 3D printing solutions for functional prototypes, custom components, manufacturing aids, replacement parts, and low-volume production.

Each project is reviewed according to its function, geometry, material requirements, dimensional expectations, production quantity, and intended application before the most suitable manufacturing process is selected.

Our 3D Printing Capabilities

Functional Prototypes

Test the form, fit, assembly, and functional performance of your design before investing in tooling or full-scale production.

Replacement and Custom Parts

Manufacture discontinued, difficult-to-source, or application-specific plastic parts using an existing CAD model, technical drawing, or physical sample.

A workspace with a 3D printer, a laptop displaying a 3D model of an orange T-shaped object, and various tools and materials around, including orange filament spools and green cutting mats.

Jigs, Fixtures and Manufacturing Aids

Produce custom assembly tools, positioning fixtures, protective covers, guides, templates, and production support components.

Low-Volume Production

Produce small quantities of functional parts without the cost and lead time associated with conventional tooling.

Available Technologies

FDM / FFF

Best suited for: Functional parts, jigs, fixtures, enclosures and cost-effective prototypes.

A cost-effective solution for functional prototypes, industrial components, jigs, fixtures, enclosures, and low-volume production using engineering thermoplastics.

Typical dimensional tolerance: approximately ±0.5% of the nominal dimension, with a minimum tolerance of ±0.5 mm.

SLS / MJF

Best suited for: Complex geometries, durable nylon components and low-volume production.

Suitable for complex geometries, durable nylon components, functional parts, and low-volume production without dedicated support structures.

Typical dimensional tolerance: approximately ±0.5% or ±0.3 mm, whichever is greater.

.

SLA / DLP

Best suited for: Highly detailed parts, smooth surfaces, visual models and small features.

Suitable for highly detailed parts, smooth surfaces, visual models, small features, and applications requiring higher dimensional accuracy.

Typical dimensional tolerance: approximately ±0.15% to ±0.30%, depending on part size and geometry.

Dimensional Expectations

Actual tolerances may vary depending on part size, geometry, print orientation, material, wall thickness, shrinkage, and post-processing.

Critical dimensions, fits, threads, and assembly requirements should be identified on the technical drawing before production.

Materials

General-Purpose Materials: PLA, PETG, ABS, ASA

Flexible and Durable Materials: TPU, PA / Nylon

Engineering Materials: Carbon-fiber-reinforced materials and application-specific engineering polymers

The final material is selected according to mechanical strength, temperature resistance, flexibility, environmental exposure, dimensional requirements, surface quality, and project cost.

A person working at a cluttered craft or maker space table with a computer, 3D printer, and various tools and models. The room has wooden walls, shelves with books and supplies, and a window with blinds.

Our Process

  1. Share Your Design

    Send us your STEP, STL, 3MF, OBJ file, technical drawing, or existing part information.

  2. Technical Review

    We evaluate geometry, wall thickness, print orientation, material, tolerances, support requirements, and manufacturability.

  3. Production

    The part is prepared and manufactured using the most suitable technology and production parameters.

  4. Inspection and Delivery

    Parts are visually inspected, and critical dimensions can be checked according to the agreed project requirements.

Start Your Project

Send us your CAD file, technical drawing, or project requirements.

We will review your design and recommend the most suitable material, technology, and production approach.

Close-up view of a computer motherboard and electronic components on a dark work surface, with a pink and white USB hub in the foreground.