3D Printing Solutions for Drone Manufacturing

Contact SalesRead Case Studies

“Formlabs Fuse printers in Ukraine account for ~10% of our global powder usage—proving how low-cost, disruptive 3D printing is dominating in fast-changing environments.”

Maxim Lobovsky
Co-Founder and CEO, Formlabs

3D Printing Versus Traditional UAV Manufacturing

Traditional drone manufacturing is constrained by expensive tooling, labor-intensive composite layups, and the geometric limits of CNC machining. 3D printing removes those barriers and enables:

Unlimited Design Freedom

Strong, lightweight frames and geometries difficult to tool or machine

Faster Time to Market

Low-volume production without tooling lead times or minimum orders

In-Field Repairability

Affordable, accessible printers that keep drones flying anywhere 

Why 3D Print Drones with Formlabs

Faster iteration, lower cost, and full control — with production-grade materials on accessible, ITAR-ready printers

Scale production, not overhead, with 50% lower cost per part.

High Throughput, Low Cost

Print 20 drone frames per Fuse X1 build at $59 per frame vs $239 per frame via outsourcing vs $115 per frame via Legacy SLS.

Trusted by Drone Innovators Worldwide

northrop grumman logo
av logo
lockheed martin logo
anduril logo
us air force logo
halsing logo
blue origin logo
leonard logo

A Full Suite of 3D Printing Solutions for Drones

Fuse X1

Scale answer for production volume (4K+ drone bodies / year)

Fuse 1+ 30W

Production-ready nylon 3D printing for your benchtop 

 

Form 4 Series

SLA for watertight enclosures and sealed housings

A Versatile Range of 3D Printing Materials for Drones

Formlabs SLS powders and SLA resins are lightweight yet durable and environmentally resistant for drone applications.

The All-Rounder

Nylon 12

Recommended drone applications:

Frame / chassis
Arm tubes
Mounting brackets

Key features

High dimensional accuracy 
Durable, lightweight
Environmental stability 
High ductility

 

Flexible & damping

TPU 90A

Recommended drone applications:

Camera gimbal mounts
Motor dampeners
Landing pads

Key features

Superior tear strength
High elongation at break
Variable softness

 

3d printed drone part

Comparable to ABS

Tough 2000

Recommended drone applications:

Camera mount
Payload housing

Key features

Strength & stiffness like ABS
Energy absorption
High temp resistant

Glass-infused anchor

Rigid 10K

Recommended drone applications:

Fixed-wing fuselages
Aerodynamic fairings

Key features

Extreme stiffness
Aerodynamic finish
Heat / chemical resistant 

 

Compare the Paths to 3D Printed UAV Production

The Fuse series prints lightweight, durable end-use UAV parts with no support structures while the Form series prints isotropic, watertight, high-detail parts ideal for sealed electronics housings and payload enclosures.

Starting with desktop FDM

Affordable for quick mockups, but risky for flight. Heat-fused layers create a weak vertical axis prone to delamination under flight vibration, and complex designs require tedious support removal.

With in-house Formlabs

The Fuse series prints lightweight, durable end-use UAV parts with no support structures while the Form series prints isotropic, watertight, high-detail parts ideal for sealed electronics housings and payload enclosures.

FAQs

Formlabs SLS powders and SLA resins are engineered to withstand the impact, vibration, water, chemicals, and UV exposure drones face outdoors, making them suitable for end-use parts rather than prototypes alone. 

Both. A single Fuse X1 build can handle a 5-ft-wingspan fixed-wing, 20 ~1-ft quads, or 100+ nano UAVs. Formlabs drone customers like ORQA are already producing thousands of end-use parts a year on their Fuse Series printers.

Yes. Formlabs printers do not require a cloud connection and can operate fully offline, so print data and part files never leave your facility.

Yes. With entry price points under 4K and SLA printers that can travel in a Pelican case, you can produce industrial quality parts on the ground, the minute they're needed.

Yes. SLS (selective laser sintering) powders and SLA engineering resins are routinely used for end-use drone enclosures, brackets, and structural components. FDM parts are typically limited to prototyping and non-load-bearing applications.

FDM is used for prototyping and low-stress parts. SLA and MSLA are used for complex, high-detail components, watertight enclosures for UUVs, and rigid, aerodynamic fuselages. SLS is the primary choice for end-use structural parts due to high impact resistance, tensile strength and design freedom.

AM enables on-demand spare part production, eliminating minimum order quantities and long lead times from traditional manufacturing. Operators can store digital files rather than physical inventory and print parts as needed.

The biggest saving is tooling: additive parts need no molds or fixtures, so you skip the six-figure upfront investments that injection molding and CNC setups require (e.g., one Formlabs customer avoided a €100,000 tooling bill).

For frames and structural parts, SLS powders are the standard: Nylon 12 Powder for general frames and brackets, Nylon 12 Tough Powder for impact-prone crash frames and motor mounts, and carbon-fiber-filled Nylon 11 CF Powder for maximum stiffness at minimum weight. For enclosures and housings, large-format SLA resins are the better fit — they produce watertight, high-detail parts, which is why teams use the Form 4L for sealed electronics housings and payload enclosures. The right choice ultimately depends on the load and environment each part faces.