In today’s industrial landscape, the need for agile, strong, and high-performing solutions is becoming more urgent in sectors like aerospace, energy and advanced manufacturing. However, using traditional materials such as metals still presents major challenges: high costs, long lead times, rigid and inflexible processes, significant material waste, and complexity in customizing geometries.
These issues impact not only the performance of the final component but also the entire supply chain, making it difficult to meet market pressures related to time-to-market, sustainability and competitiveness.
In this context, adopting industrial additive manufacturing based on super polymers becomes a viable technological alternative. That’s where ARGO 500 HYPERSPEED comes into play: Roboze’s printer designed to radically transform the production of high-performance parts.
ARGO 500 HYPERSPEED was engineered to meet a specific industrial need: to manufacture components in super polymers like PEEK and Carbon PEEK, combining precision, speed and repeatability in one advanced platform.
Thanks to its proprietary technology and optimized thermal management, ARGO 500 HYPERSPEED streamlines production by improving the efficiency of heating, maintaining, and cooling the build chamber, achieving faster cycles than traditional FFF systems in the same category. The perfect synchronization between hardware and software, combined with controlled extrusion and thermal stability up to 180°C, enables continuous and highly repeatable production, even for complex parts.
The core of HYPERSPEED technology lies in optimizing the entire process, from file preparation to part realization, by reducing operational variables and maximizing part quality, especially for functional geometries requiring mechanical strength and dimensional accuracy.
Implementing the ARGO 500 HYPERSPEED offers strategic benefits for production teams and R&D leaders:
Production Efficiency: The printer’s advanced thermal management ensures precise temperature control throughout the process, integrating annealing within the production cycle. This eliminates the need for external thermal post-processing, ensures proper crystallinity of components, and reduces total production time.
Precision and Repeatability: Tight dimensional tolerances and consistent process repeatability ensure steady output, even for small to mid-sized batches—critical for aerospace and mobility sectors.
Cost Reduction: Using PEEK and Carbon PEEK as alternatives to metal alloys reduces part weight, eliminates post-processing, and simplifies assembly, positively impacting overall production and logistics costs.
Design Flexibility: Industrial additive manufacturing enables component design optimization based on actual stress loads, overcoming the constraints of subtractive manufacturing.
Sustainability: On-demand production and the elimination of tooling reduce waste and energy consumption. Additionally, the use of lighter, advanced materials improves system efficiency and supports corporate decarbonization and environmental responsibility strategies.
In a world demanding performance, agility, and sustainability, ARGO 500 HYPERSPEED offers a concrete way to overcome the limitations of traditional manufacturing. With its capability to process super polymers like PEEK and Carbon PEEK, it provides a real alternative for replacing metal parts, enhancing performance while lowering costs.
If you’re a production engineer, R&D manager, or operate in high-specialization sectors like aerospace, automotive, or industrial manufacturing, it’s time to consider a new production paradigm.
Contact Roboze experts today for a personalized consultation and discover how ARGO 500 HYPERSPEED can make a real difference in your operations.