Industry

Automotive Industry
3D printing accelerates automotive development by enabling rapid prototyping, functional testing, and lightweight production. From prototypes to custom tools, we deliver solutions that cut costs, shorten design cycles, and improve flexibility, ensuring consistent quality across demanding automotive environments.
Aerospace Industry
In aerospace, precision and reliability are crucial. With 3D printing, we create lightweight components that meet strict standards while reducing time and costs. From prototypes to certified end-use parts, our solutions drive innovation, ensure traceability, and meet the challenges of this demanding sector.


Medical Industry
3D printing transforms healthcare with custom implants, prosthetics, and surgical guides tailored to each patient. We ensure accuracy, biocompatibility, and compliance with strict medical standards. From prototypes to functional medical devices, we improve outcomes, reduce lead times, and bring innovation closer to hospitals and clinics.
Mold and Plastics Industry
In molds and plastics, 3D printing enables rapid prototyping of tools and parts with accuracy and speed. We verify designs, optimize production, and reduce costly rework. By applying advanced additive technologies, we deliver reliable results in injection molding and plastic component production.

FDM
(Fused Deposition Modeling)

FDM 3D Printing
FDM produces robust plastic parts quickly and affordably. Covering material selection, prototyping, jigs and fixtures, large-format builds, and dimensional QA, we deliver repeatable results from CAD or scan to finished part, supported by process validation and traceability.
Rapid Prototyping
Fast FDM prototyping accelerates development cycles. From visual models to functional checks, our prints allow early testing, shorten iterations, and reduce risks before committing to full production. Cost-effective and reliable, they support innovation in demanding industries.


Functional Parts and Short-Run Production
FDM enables durable end-use parts and small-batch production using engineering-grade materials. We deliver brackets, housings, and custom accessories with consistent quality, reducing lead times and costs while ensuring reliable performance for manufacturing applications.
Jigs, Fixtures and Tooling
We design and print lightweight tooling adapted to production needs. From assembly jigs to inspection fixtures, FDM improves operator safety, reduces costs, and speeds up workflows. With material options for strength, ESD, or heat resistance, we deliver robust and practical tools.


Dimensional Inspection and QA
By combining FDM with metrology expertise, we validate printed parts through 3D scanning and CMM. Our QA reports ensure compliance with specifications and provide traceability across batches, giving confidence that prototypes and end-use parts meet the highest quality standards.
Reverse Engineering and Spare Parts
We recreate or adapt parts by scanning originals, refining CAD models, and producing new components with FDM. Ideal for legacy equipment or discontinued parts, this service ensures fast replacement, design improvements, and reliable performance. A complete process that links scanning, engineering, and additive manufacturing.

SLA
(Stereolithography)

SLA 3D Printing
SLA delivers high-resolution prints with smooth surfaces and fine details. Ideal for prototypes and parts requiring precision and aesthetics, this technology ensures reliable results for industries such as automotive, aerospace, medical, and mold manufacturing.
High Resolution Prototyping
We produce SLA prototypes with exceptional surface quality. Perfect for design validation, visual models, and fine details, these parts allow engineers to check aesthetics, geometry, and fit before moving to production.


Transparent and Detailed Parts
SLA printing creates clear or highly detailed components for testing and presentation. From optical models to intricate cavities, we deliver parts that combine dimensional accuracy with aesthetic appeal, ideal for engineering and medical applications.
Medical and Dental Applications
SLA enables biocompatible parts such as dental models, surgical guides, and anatomical replicas. With strict compliance to medical standards, we guarantee accuracy and reliability for healthcare innovation and patient-specific solutions.


Tooling and Mold Inserts
We provide SLA-printed tools and mold inserts that speed up process validation. These solutions reduce lead times, support low-volume production, and help optimize mold design while lowering development costs.
Design Verification Models
SLA prototypes are ideal for verifying complex geometries and assemblies. With precise detail and dimensional accuracy, we help detect potential design flaws early, ensuring quality and reducing costly modifications in later stages of development.

SLS
(Selective Laser Sintering)

SLS 3D Printing
SLS sinters powdered materials to produce strong, functional parts without support structures. This technology enables durable prototypes and low-volume production with complex geometries for industries like automotive, aerospace, and mold manufacturing.
Durable Functional Prototypes
We create prototypes that replicate real-world conditions with strength and durability. SLS parts are ideal for mechanical testing, fit checks, and functional validation before full-scale production.


Small-Batch Production
SLS supports reliable short-run manufacturing. We deliver end-use parts that reduce lead times and offer flexibility, perfect for industries requiring high performance without tooling costs.
Complex Geometries
This process enables intricate designs without supports. Lightweight yet strong parts with internal features and optimized shapes give engineers greater freedom in product development.


Industrial-Grade Materials
SLS uses nylon and advanced polymers with excellent mechanical properties, chemical resistance, and thermal stability. These materials ensure consistent, reliable performance in demanding industrial environments.
Tooling and End-Use Components
SLS supports the creation of jigs, fixtures, and final-use components. These parts withstand real operational conditions, helping manufacturers reduce downtime, lower costs, and optimize workflows.

SLM
(Selective Laser Melting)

SLM 3D Printing
SLM builds metal parts by melting powder layer by layer with a laser. It produces dense, high-strength components ideal for aerospace, automotive, and medical applications where durability and precision are critical.
High Strength Functional Parts
We produce fully dense metal parts that withstand demanding mechanical, thermal, and environmental conditions. Ideal for industries requiring components where strength and reliability are essential.


Lightweight and Complex Designs
SLM reduces weight without compromising strength. We manufacture optimized parts with lattices, internal channels, and complex geometries, supporting innovation in high-performance sectors.
Tooling and Mold Inserts
Metal 3D printing creates conformal cooling channels and custom inserts for molds and tooling. These solutions improve heat dissipation, reduce cycle times, extend tool life, and enhance manufacturing efficiency.


Medical Implants and Devices
SLM enables patient-specific implants, prosthetics, and surgical tools with biocompatible materials like titanium. High precision and tailored geometries improve safety, integration, and clinical outcomes.
Low Volume Production
We deliver short production runs of metal parts without the cost of traditional tooling. This ensures faster lead times, flexibility, and competitive solutions for industries that need reliable components in small batches.

Multimaterial

Multimaterial 3D Printing
This technology combines different polymers or resins in one build, enabling parts with varied mechanical, thermal, or aesthetic properties. It is ideal for prototyping advanced designs, functional testing, and components replicating final product performance.
Prototyping with Mixed Properties
We print parts combining rigid and flexible sections, transparent and opaque zones, or varied hardness levels. These prototypes behave like final products, improving validation and testing.


Functional Testing Models
Multimaterial printing creates prototypes for performance evaluation under real conditions. By replicating multi-component assemblies, we reduce the need for additional parts and assembly time.
Aesthetic and Design Models
We produce parts with multiple colors, textures, and transparencies in one print. These prototypes allow designers to validate both form and function in early development stages.


Medical and Anatomical Models
Multimaterial printing delivers realistic anatomical models for surgical planning and training. Different colors and textures replicate tissues and organs, improving accuracy and outcomes in healthcare applications.
Custom Parts for Specialized Applications
We deliver customized parts that require multiple performance features in a single build. From industrial components to research projects, multimaterial solutions offer flexibility and innovation.




