Flight-Like Materials
Screen resins under real molding conditions; assess shrink, knit lines, finish, and ejection behavior.
Aerospace & Defense programs live on schedule control and documentation. APSX’s compact, all-electric injection systems are designed for bench-scale reliability, fast iteration, and repeatability—ideal for first-article samples, LRUs, UAV components, housings, clips, and flight-like evaluation parts.
Long Queues | Outsourced small-lot parts
Re-quotes, tooling delays, and supplier backlog jeopardize test windows and TRL milestones.
Prototype ≠ Flight-Like | Materials & process gap
3D prints aren’t injection-grade; they miss real shrink, knit, ejection, and finish behavior.
Documentation | First-article & traceability
Teams need repeatable parts with recorded settings and lot tracking for verification and sign-off.
The APSX-PIM V3 is an all-electric, enclosed, automatic injection molding machine for fast setup and repeatable cycles. Run real engineering resins, tune parameters, capture settings, and generate first-article samples—without tying up large-press capacity.

Screen resins under real molding conditions; assess shrink, knit lines, finish, and ejection behavior. Tune gates, runners, draft, and wall thickness on low-cost aluminum or 3D-printed tooling. Produce 20–200 parts, measure features, log parameters, and document repeatability. Rapidly iterate avionics housings, covers, clips, cable guides, and shop-floor fixtures/jigs. Interior & Cabin Components Seat controls, overhead bin latches, trim pieces requiring durable surface and snap features. Avionics & Instrument Housings Lightweight, robust enclosures and brackets. See also PIM-MIM for high-temp small hardware. UAV & UGV Components Complex plastic structures for unmanned platforms, antenna covers, guides, clips. Custom Fixtures & Jigs On-demand tooling for production or MRO tasks; iterate fast and document settings. APSX systems are used by organizations including Oak Ridge National Labs, NASA, Boeing, Naval Special Warfare Command (NSWC), DEVCOM and BAE Systems, plus hundreds of R&D teams since 2017. Common engineering thermoplastics (PP, ABS, PC, HDPE, Nylon, POM) for hand-sized parts with short runners. Typical cycle time ~1 minute. Yes—machine aluminum using our mold base templates or use 3D-printed tooling for quick trials. Yes—optional 2-hour remote first-part session with an APSX engineer. Use our parameter logs and lot tracking templates to document process settings alongside your internal QA formats. Let’s review your parts and discuss the right AERO-DEF-CELL configuration for your team.What Aerospace & Defense Teams Do with AERO-CELL
Flight-Like Materials
DFM & Mold Proving
First-Article Small Batches
Housings, Brackets & Fixtures
Potential Applications & Example Parts

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Aerospace & Defense FAQs
Which materials and part sizes work best?
Can we make our own molds?
Do you provide onboarding and first-part support?
What about first-article and traceability?
Ready to bring Aerospace & Defense parts in-house with real, repeatable results?

The APSX-NANO enables in-house production of intricate metal components—sensors, fasteners, pins, small housings—on a compact platform with achievable accuracy of 0.0005" or better.
Learn how APSX-PIM and APSX-NANO can reduce risk, compress schedules, and keep IP inside your facility.