NOVARESK SPÓŁKA Z OGRANICZONĄ ODPOWIEDZIALNOŚCIĄ
- Jagiellońska 88/51L, 00-992 Warszawa, Poland
- 577 33 43 93
- info@novaresk.pl
- novaresk.pl
Description
NovaRESK is an engineering and implementation company with over a decade of hands-on experience. Our primary mission is to deliver effective 3D printing technologies alongside complete implementation and post-sales support. We operate in environments requiring absolute reliability, where technology must serve to maintain operational readiness and production continuity, rather than being just an experiment.
That is why we integrate advanced numerical calculations into our operations:
Comprehensive simulations: statics, dynamics, crash tests, modal, fatigue, and buckling analyses, as well as thermal and fluid dynamics (CFD).
Specialized tasks: ballistic and blast/explosive analyses for the defense sector.
Certification and homologation support: including for the automotive industry (fatigue, vibration, and strain gauge testing).
Selecting Optimal Technologies
We do not impose generic, cookie-cutter solutions. Our core strength lies in precisely selecting optimal additive technologies tailored to the real needs and business specifics of each client. Over the past 10 years, we have rigorously verified dozens of hardware and material solutions. We filter out immature technologies, recommending only validated, predictable solutions ready for deployment in even the most demanding industrial and defense environments (dual-use technologies).
Strategic Partnerships – Metals, Ceramics, Composites, and Powders
Concurrently, we are a trusted partner and authorized representative of leading global manufacturers of advanced 3D printing systems. We offer equipment and materials from proven, certified suppliers.
By deploying these systems, we build our clients' technological sovereignty. We enable independence from external suppliers through mobile or stationary production of spare parts and tooling right at the point of use.
DfAM Training – Teaching Design Engineers Next-Gen Engineering
Purchasing a machine is just the beginning. The key to achieving a full return on investment is a skilled team. That is why at NovaRESK we place strong emphasis on education – we comprehensively train design engineering teams in DfAM (Design for Additive Manufacturing). We teach engineers how to optimize and design geometries from scratch to fully leverage the potential of additive manufacturing, effectively reducing component weight, costs, and production lead times.
Comprehensive Support (End-to-End)
Our process covers the complete implementation lifecycle: from secure reverse engineering and virtual part inventory, through reliable manufacturing process and material selection, to dependable servicing, equipment maintenance, and advanced post-processing.
NovaRESK – We don't offer experiments.
We offer a proven methodology for achieving a technical edge.
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Products
Technical Specifications:
Kinematics: 6-axis industrial robot (expandable to 9 axes with linear track)
Power Source: High-power fiber lasers
Quality Control: Real-time pyrometry, vision systems, and process monitoring
Supported Technologies:
Powder DED: Precision repair of turbine blades, shafts, and housings.
Wire DED: Clean repair of hulls and armor plating without contamination risks.
WAAM: High-speed printing of large structural preforms and vehicle frames.
Remote Laser Welding: Distortion-free joining of armored sheet metal.
Laser Hardening: Selective surface hardening of drive sprockets, track links, and barrels.
Laser Cladding: Application of wear- and corrosion-resistant protective coatings.
Technical Specifications:
Build Volume: 375 × 300 × 300 mm
Heated Chamber: Up to 60°C
Quality Control: Integrated laser micrometer and vision module for real-time inspection and calibration
Automation: 4-spool cabinet with automatic spool changeover
Supported Materials:
Composites: Onyx® (micro-carbon fiber nylon), Onyx FR (flame-retardant, UL94 V-0), Onyx ESD
Continuous Fibers: Carbon Fiber & Carbon Fiber FR (delivering aluminum-level strength)
Metals (via Metal Kit): 17-4PH and 316L Stainless Steel
FX10 accelerates combat readiness recovery, optimizes digital inventory, and seamlessly integrates into mobile containerized service stations.
Technical Specifications:
Build/Enclosure: Heavy-duty Pelican case, shock-resistant frame
Build Volume: 330 × 270 × 200 mm
Layer Resolution: Down to 50 µm
Quality Control: Integrated real-time laser dimensional inspection
Supported Materials:
Composites: Onyx® and flame-retardant Onyx FR (UL94 V-0)
Continuous Fibers: Carbon Fiber, Kevlar®, Fiberglass, HSHT
The X7 FE provides complete logistical independence, enabling the immediate manufacturing of durable spare parts and tooling directly in active operational zones.
Technical Specifications:
Technology: Top-down laser stereolithography (SLA)
Build Volume: 300 × 300 × 300 mm
Layer Thickness: 25 – 100 µm
Light Source: UV laser (405 nm wavelength)
Resolution: Laser spot diameter ~50 µm
Final Sintered Density: Up to 99% (matching traditional ceramic mechanical properties)
Feeding System: Automatic recoater optimized for dense ceramic paste consumption
Supported Materials: Alumina (Al2O3), Zirconia (ZrO2), Silicon Nitride (Si3N4), Cordierite, Silica, Hydroxyapatite (HAP)
Software: Dedicated CRAMER software suite for file preparation and process control
Technical Specifications:
Build Volume: 525 × 400 × 400 mm
Build Chamber: Heated up to 200°C with active thermal control
Automation: Automatic leveling, integrated material cabinet with auto spool changeover
Quality Control: Integrated real-time laser scanner and vision module
Supported Materials: ULTEM™ 9085, Onyx®, Onyx FR (FST / UL94-V0 compliant) reinforced with Continuous Carbon Fiber (CFR)
Certification: ISO/IEC 27001 certified, ensuring the highest information security standards
Software & Security: Secure on-premise deployment option, enabling operation in isolated military networks without internet connectivity
Technical Specifications:
Build Volume: 12 liters (320 × 165 × 230 mm)
Speed: Full print cycle in under 12 hours
Simplicity: Operates on standard power supply (eliminates costly nitrogen generators)
Ergonomics: Fully automated, safe powder management workflow
Notably, in MJF technology, print time does not increase with high part packing density. A fully packed chamber of small repair items is produced in the same timeframe as a single large component. The HP 1200 system is significantly more cost-effective to deploy than competing solutions with high hidden costs, delivering a true breakthrough for military supply chains.