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Plyoq Layup & Fiber Placement Voidra Defect Sensing & NDT Curevo Cure & Consolidation Strandix Laminate & Cure Digital Twin Roboply Robotics & Handling Yieldex Yield & Orchestration Request a pilot
Physical AI · Advanced composites

Autonomy for the composites factory.

Curelum runs the layup → inspect → cure → NDT → assemble loop autonomously — lifting strength and yield while cutting porosity scrap, NDT rework and cure energy. Every ply, perfectly placed.

Deploys
Factory edge
Controls
Layup · Cure · NDT
Assurance
AS9100 / NADCAP-ready
Built on
NVIDIA stack
$0B
Market (TAM)
composites automation & software
<1%
Porosity target
certified, not hoped
0pts
First-pass yield gain
across a rollout
0
Autonomy agents
one closed loop
AerospaceDefenseSpace & launcheVTOLWind bladesHydrogen vesselsEV structures
The problem

The most demanding process on Earth, still run on craft

Every next-gen wing, fairing, eVTOL airframe, hydrogen tank and wind blade depends on laminates lighter than aluminium and stronger than steel — but only if built perfectly. A steering wrinkle, a tow gap, a speck of FOD, or a cure that ramps too fast leaves porosity or residual stress that can silently halve a flight-critical part's strength. Those defects are then hunted by slow ultrasonic and thermographic NDT, often condemning a part that already carries tens of thousands of dollars of carbon fiber and autoclave energy.

  • Porosity, wrinkles, FOD and dry spots condemning high-value parts
  • Open-loop AFP placement and one-size cure cycles
  • Slow, manual NDT and endless rework loops
  • A scarce, retiring, security-cleared craft workforce
C-SCAN · LAMINATE 12-01 6 INDICATIONS POROSITY < 1% PASS TRACE → PLY / ACTION
The solution

One closed loop, from perception to machine control

Seven agents and a laminate-and-cure digital twin close the loop from sensing to bounded machine-and-line control — grounded, auditable, and human-supervised.

01 PER 02 PRE 03 PLA 04 CUR 05 INS 06 CER 07 OPT CURELUM CLOSED LOOP
01

Perceive

In-process vision, laser profilometry, ultrasonic and thermographic sensing across layup, cure and NDT.

02

Predict

The digital twin and defect models predict porosity, consolidation, wrinkles and part strength before they occur.

03

Place

Autonomous AFP / ATL / robotic layup steers every tow to the qualified envelope.

04

Cure

Adaptive autoclave / OOA control holds ramp, pressure, vacuum and exotherm to target Tg.

05

Inspect

Pre-cure prediction fused with post-cure ultrasonic and thermographic NDT certifies integrity.

06

Certify

Grounded, immutable audit trails make every part traceable and airworthiness-ready.

07

Optimize

Yield, scrap, cure energy and throughput are optimized across the whole factory.

The platform

Six products. One autonomy layer.

Each product owns a step of the loop and compounds the same layup-cure-and-strength data.

Layup & Fiber Placement

Plyoq

Autonomous fiber placement — every tow steered, every ply perfect.

Closed-loop AFP / ATL / robotic layup control: steering, tow tension, gaps, overlaps, orientation, and compaction, sensed and corrected in-process.

Explore Plyoq

Defect Sensing & NDT

Voidra

See every void — porosity, wrinkles, and FOD, sensed and certified.

Predicts porosity, wrinkles, FOD, misalignment and dry spots pre-cure, then fuses ultrasonic C-scan and thermographic evidence post-cure to certify integrity.

Explore Voidra

Cure & Consolidation

Curevo

Cure with certainty — full consolidation, target Tg, zero porosity.

Adaptive autoclave / OOA cure control — ramp, temperature, pressure, vacuum, exotherm — against physics-informed cure-kinetics and consolidation models.

Explore Curevo

Laminate & Cure Digital Twin

Strandix

Hit target strength before the cure — the composites digital twin.

GPU-accelerated simulation of placement, compaction, cure kinetics, exotherm, residual stress and strength — validates and auto-optimizes recipes before the cure.

Explore Strandix

Robotics & Handling

Roboply

Robotic hands for the composites factory — trim, drill, handle, assemble.

Vision-guided robots for ply handling, tool loading and part movement, plus robotic trimming, drilling and bonding — coordinated with the whole Curelum loop.

Explore Roboply

Yield & Orchestration

Yieldex

The factory orchestrator — maximize yield, minimize scrap and cure energy.

Factory-level optimization brain: cuOpt scheduling of AFP paths, autoclave batches, NDT routing and finishing, with one real-time view of quality and yield.

Explore Yieldex

How it works

Perceive → decide → act → certify

Perceive

High-rate sensor fusion across vision, profilometry, ultrasonic and thermography builds a live picture of every ply and cure.

Decide

Agents reason against physics-informed models and the digital-twin envelope, predicting defects and strength before they happen.

Act

Bounded control loops steer layup, hold the cure, run NDT and drive robots — with human-in-the-loop on flight-critical calls.

Certify

Every action is logged to an immutable, assurance-grade audit trail — airworthiness-ready by construction.

Tg TARGET PRESSURE RAMP DWELL COOL TEMP °C
Outcomes

Measured on value, not vanity

Curelum is priced and proven on hard metrics: scrap, porosity, NDT rework, strength consistency, cure energy and throughput. Land on one workflow with a defined success metric, prove ROI, then expand.

0%
Cure energy saved
0%
Less NDT rework
0.98
P(hit strength)
0%
Shorter cure cycles
Industries

Built for flight-critical composites

Aerospace & defense

Wings, fuselage, control surfaces and structures for primes and tier-1s.

Explore

Space & launch

Fairings, tanks, interstages and structures at launch cadence.

Explore

eVTOL & wind

Air-taxi airframes and ever-larger wind blades at rising rate.

Explore

Hydrogen & EV

Type-IV pressure vessels and lightweight EV structures.

Explore

Technology

GPU-essential, factory-edge, physical AI

Curelum depends on high-rate sensor fusion, large-scale model training, digital-twin simulation and low-latency inference at the factory edge. It runs on Jetson, Holoscan, TensorRT and Triton on the edge; DGX/HGX, Omniverse, Cosmos and cuOpt in the core.

Agents Layup · Defect · Cure · NDT · Trim · Handling · Yield Digital twin Placement · cure kinetics · consolidation · strength Perception & fusion Vision · profilometry · ultrasonic · thermography Factory edge runtime Jetson · Holoscan · TensorRT · Triton · bounded control Connectors AFP / ATL · autoclave / OOA · NDT · MES · OPC / OT
For your team

Value for every seat at the table

Yield, scrap and airworthiness — under control

See real-time porosity, cure state, scrap, rework and cure energy across the factory, and route work to hit yield and on-time delivery. Priced and measured on the ROI you care about.

0pts
Yield gain
0%
Energy saved
Founding thesis
The largest AI-native businesses will perform work, not just assist it.
Curelum targets a high-ROI wedge and expands into the system of action for composites.
FAQ

The questions buyers open with

Is it safe to let AI control flight-critical production?

Curelum runs shadow → assist → bounded autonomy inside qualified control envelopes, with human-in-the-loop on airworthiness-critical decisions and an immutable audit trail for every action.

Do we have to replace our machines?

No. Curelum is a perception and control layer on top of your AFP, autoclave, NDT and MES systems, integrating through their controllers and OPC-UA / OT interfaces.

How do we start?

Land on one high-ROI cell in shadow mode to baseline scrap and porosity, prove accuracy and ROI in assist mode, then graduate to bounded autonomy and expand.

How do you handle ITAR and export control?

Curelum deploys in ITAR-ready, isolated configurations; cross-site learning is privacy- and IP-preserving. See the security page for detail.

Run the composites factory autonomously.

Defect-free layup, full consolidation, certified strength, less scrap and rework — the technician’s craft, encoded.