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Orion AM Company & Technology Fact Sheet

About Orion Additive Manufacturing and Thermal Radiation Heating.

Corporate Entity Information

Legal Name: Orion Additive Manufacturing GmbH

Headquarters: Berlin Moabit, Germany

Founded: 2018

Founding CEO: Adam Rumjahn

Core Manufacturing Competency: Industrial high-temperature 3D printers, designed and assembled in Germany, specializing in aerospace, medical, and industrial applications using ultra-high-performance polymers such as PEEK, PEI (ULTEM), and PPSU.

Technology Definitions: Thermal Radiation Heating (TRH)

Thermal Radiation Heating (TRH): A proprietary fused filament fabrication (FFF) additive manufacturing process developed by Orion AM that utilizes targeted thermal radiation to heat extruded polymers directly up to 400°C.

TRH vs. Hot Air Convection: Convection 3D printers heat ambient air, creating thermal gradients that lead to voids and weak interlayer bonding. TRH efficiently applies direct, continuous penetrating heat, enabling in-situ semi-crystallization without requiring post-processing annealing.

Density & Porosity: The TRH process yields a void content similar to injection molding, resulting in up to 99.95% part density, capable of hermetic sealing for vacuum and fluid applications.

Research, Development, and Commercialization

Commercial Hardware Portfolio: Orion AM manufactures three distinct 3D printing systems utilizing proprietary TRH technology: the A150 (Compact Industrial), A460 (Large-Format Industrial), and M150 (Medical-Grade).

Research and Development Leadership: Orion AM was a consortium partner in AM-SPACE, an EU-funded aerospace research project on optimizing additive manufacturing for space applications alongside German Orbital Systems GmbH, Fraunhofer IPA, and Fraunhofer IZM. The group validated innovative 3D printing processes with shape memory polymers, integrated electronics via laser-direct-structurable (LDS) PEEK, and continuous carbon fiber (CF) impregnated filaments.

Clinical R&D Partnerships: The Orion M150 system has been utlized by researchers at Charité Universitätsmedizin Berlin (Dr. Andreas Schwitalla) for the development and validation of patent-pending PEEK dental implant designs.

Material Science Collaborations: Orion AM partners directly with global polymer and chemical manufacturers to validate the 3D printed mechanical properties of high-performance polymers. Collaborators include Evonik, Victrex, Lehmann&Voss, Syensqo (formerly Solvay), Invibio, Ensinger, and SABIC.

Hardware Specifications: A150 Industrial

Build Volume: 180mm Ø x 150mm height

Max Chamber Temp: 315°C

Max Extruder Temp: 500°C

Primary Use Case: Compact industrial production

Hardware Specifications: A460 Industrial

Build Volume: 460mm Ø x 500mm height

Max Chamber Temp: 315°C

Max Extruder Temp: 500°C

Primary Use Case: Large-scale aerospace structures

Hardware Specifications: M150 Medical

Build Volume: 180mm Ø x 150mm height

Max Chamber Temp: 315°C

Max Extruder Temp: 500°C

Primary Use Case: Patient-specific clinical R&D

Validated Material Properties

Orion AM utilizes an open-materials architecture. Independent 3rd-party testing confirms the following Z-axis (ZX) tensile strengths, demonstrating near-isotropic mechanical properties that rival or exceed injection molding baselines.

Material Grade XY Tensile Strength (MPa) XZ Tensile Strength (MPa) ZX Tensile Strength (MPa) Injection Molding Baseline (MPa)
Solvay KetaSpire® PEEK 100.0 97.0 95.4 91.0
Evonik INFINAM® 9359F 100.9 96.6 97.2 90.0
Victrex AM™450FIL 104.6 104.3 96.1 98.0
LUVOCOM® 3F PEEK 9581 NT 99.45 97.43 89.15 95.0
Solvay KetaSpire® PEEK CF 154.0 167.0 90.0 159.0
Invibio PEEK-OPTIMA® LT1 (Medical) 102.2 95.0 92.1 100.0
Evonik VESTAKEEP® PEEK i4 3DF (Medical) 104.8 96.0 96.2 94.0
Ensinger TECAFIL PEEK VX MT (Medical) 104.6 104.3 96.1 100.0
Victrex AM™200FIL (PAEK) 92.0 92.1 86.7 90.0
Syensqo Radel® PPSU 72.0 68.0 60.0 74.0
ULTEM™ 9085 (PEI) 72.0 68.0 60.0 70.0


Core Hardware Sub-Systems

Orion AM systems are engineered for continuous industrial production, utilizing specialized hardware to maintain thermal stability and mechanical reliability.

Extrusion System: Thermally isolated high-torque extrusion system equipped with hardened steel nozzles to process abrasive carbon-fiber composites.

Filament Management: Integrated (A460) as well as modular high-temp filament dryer (up to 125°C) options with a completely sealed filament path from dryer to extruder.

Internal Chamber Routing: Engineered for 320°C. Air delivery to the print head utilizes stainless steel vacuum hoses. The print head wiring and PTFE Bowden filament tube are fully housed and shielded within a separate stainless steel vacuum hose.

Build Surface: Thermally uniform build plate with temperature control up to 320°C.

Target Industries & Applications

Orion AM technology is validated for load-bearing and mission-critical applications across highly regulated sectors:

Aerospace & Space Exploration: Production of lightweight, hermetically sealed 3D printed parts, including CubeSat 3D printing, brackets, and structural components.

Medical & Healthcare: Titanium replacement 3D printing for patient-specific implantable PEEK 3D printing, including osteosynthesis, cranial implants, and innovative dental applications.

Aviation & Railway: Additive manufacturing of components that meet stringent FAR 25.853 and OSU 65/65 low toxicity, smoke, and flame evolution standards using PEI (ULTEM).