Your partner for
industrial 3D printing
Are you looking for an efficient solution for additive manufacturing of your components in series? Mechanical durability and precision are critical for your application? Do short lead times and cost-effective unit prices take top priority for you? Would you appreciate personal consultation?
Then NEVO3D is the right choice for you!
Manufacture Yourself Outsource Production
Our customers trust us
In the last 10 years, we have been able to convince more than 500 customers of our services.
We are a manufacturer of industrial 3D printers and a printing service provider based in Austria.
Our products
We develop and manufacture 3D printers for the most demanding industrial requirements. These are equipped with a powerful IDEX system for cost-efficient implementation of your small series production. Our customers receive an open system with the latest software such as Orca and Klipper.
Our services
As a European 3D printing service provider, we are experts in series production. We produce FDM components up to 800 mm in series for our customers. Using certified materials, we offer industry solutions for rail, automotive, and aviation.
500+
Customers
Years of Experience
FDM Industrial Printers
for Print Service
Technical Filaments
Max. Part Size
Industrial FDM Printers
Large, heated build chamber for 24/7 serial production
Large-format printing that works
A build volume of 800 x 500 x 500 mm (200 liters) enables the printing of large components. Build chamber temperatures of up to 100°C ensure low-warping results with high dimensional stability and excellent mechanical properties.
Mechanical engineering for real series production.
A robust steel and aluminum construction weighing nearly 600 kg ensures stability, reliability, and long service life. Ball screws on all axes guarantee precision and easy maintenance.
Open system under your full control
An open material system allows you to use 1.75 mm filaments of your choice. The software and firmware are also open and completely license-free — forever.

3D Printing Service for Industry and Commerce
By Professionals, for Professionals.
Outsource additive manufacturing without risk
Large components and series production
Certified materials for rail and aviation
Learn more about out services Request your parts now

Industries
Did we spark your interest? We would be happy to advise you.
FAQ – Questions and answers about industrial 3D printing
Industrial 3D printing is designed for process stability, repeatability, and material quality. In contrast to conventional 3D printing, which is mostly used in the private or semi-professional sector, professional hardware made from high-quality components is used here to ensure a long service life and continuous operation.
The focus is on the series production of functional end components rather than the manufacturing of prototypes. Industrial systems usually offer larger build volumes and higher process temperatures, enabling large-format production and the processing of technical thermoplasts with excellent material properties. Industrial 3D printers often have to meet industry-specific standards, for example in mechanical engineering or aviation.
High-performance materials that meet specific mechanical, thermal, or chemical requirements are used in industrial environments. A wide variety of additive manufacturing processes allow for a large selection of materials, including metals and fiber-reinforced materials.
FDM 3D printing uses thermoplastics such as ABS, PA, and PC, which melt at higher temperatures. The exact selection depends on the application—whether for heat-resistant components, high-strength functional parts, or lightweight structures with high load-bearing capacity.
Industrial 3D printing systems achieve very high dimensional accuracy – depending on the process, this is often ±0.1 mm or better. There are processes that offer particularly good surface quality, such as selective laser sintering (SLS) or laser melting (SLM), and processes that combine high printing speed with a good surface finish. In addition, automatic calibration and process monitoring ensure consistently high component quality. This makes industrial 3D printing ideal for functionally critical components in larger quantities.
Yes, definitely. Modern industrial 3D printing processes enable cost-effective series production — especially for small and medium series. The elimination of tooling costs and short lead times allow products to be manufactured quickly and flexibly. Design changes do not require new tools, making iterative development or variant production very efficient. In addition, 3D printing processes allow for complex, functionally integrated geometries that would be difficult or impossible to produce using traditional methods.
In particular, the FDM technology used by NEVO3D enables cost-effective series production thanks to its speed advantages and low material costs.
FDM stands for “Fused Deposition Modeling.” FDM is probably the most commonly used process in additive manufacturing. In this 3D printing process, thermoplastic material is melted in an extruder head. The liquefied material is pressed out of a nozzle and fused with the underlying material by moving the extruder head in defined paths. The process takes place layer by layer, i.e., first the lowest part or base of the desired component is printed onto a print bed. The next layer is then placed on top of this. The desired object is created by continuously printing or fusing the individual layers on top of each other.
The term FFF, which stands for “fused filament fabrication,” is often used as a synonym for FDM.
Industrial 3D printing is used in numerous industries: in the railway and aviation industries, parts with special fire protection requirements are produced, while in the automotive industry, complex tools or functional components are manufactured. Medical technology uses 3D printing for patient-specific implants or prostheses. In mechanical and plant engineering, electronics manufacturing, and even in the consumer goods industry, 3D printing offers new design freedom and accelerated product development. It is increasingly supplementing or replacing conventional manufacturing methods in these areas.

