VVOLABO
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The Sky Serpent, piloted by Daedalus, flying between repurposed chimney nodes at dusk
Strategic investment interest open

Project Volabo / The Sky Serpent

Soar the skies.
Flight, re-engineered.
Chimney to chimney.

A pterosaur-inspired aircraft concept whose wings unfold through controlled magnetic force—transforming stored electrical energy into geometry, tension and lift.

Electromagnetic morphology

The field becomes the muscle.

The Sky Serpent uses paired electromagnetic actuators drawing the carbon-fiber spars outward. Mechanical linkages translate that force—multiplying it for wing deployment, or reducing it for precise membrane tension and control.

This is a concept-stage architecture: actuator efficiency, thermal behavior, structural loads and fail-safe retraction all require physical validation.

Wing spread
01 · Magnetic impulse02 · Force ratio03 · Membrane tension

× Force

Multiply for opening

÷ Force

Reduce for control

↔ Shape

Continuously trim

Living-wing aerodynamics

A high-aspect membrane wing shaped around a rigid, curved leading edge.

Stored electric energy

Modular energy storage concentrates mass near the aircraft’s center of gravity.

Chimney-to-chimney

Launch, charging and precision capture converge at repurposed vertical nodes.

Glide-first safety

Passive glide and mechanical locking remain central if powered systems are unavailable.

Concept cutaway of electromagnetic coils and mechanical linkages spreading the Sky Serpent wing

Inside the wing root

Magnetic force becomes controlled movement.

Coils drive the initial motion; linkages tune the force ratio and distribute it through the carbon structure.

The Sky Serpent approaching a docking platform on a repurposed brick chimney

The destination

Industrial heritage becomes flight infrastructure.

Repurposed chimneys form elevated launch, guidance, charging and capture nodes.

Investment thesis

Fund the evidence, then scale the network.

The opportunity is staged deliberately: validate the aircraft physics, prove the docking interface, define a safe operating envelope, then build the infrastructure and certification case required for scale.

01Electromagnetic actuator and force-ratio simulation
02Subscale wing-spreading and membrane demonstrator
03Full-scale uncrewed flight prototype
04Controlled chimney-node corridor trial

Chimaera roadblocks

Flight physics

Power-to-weight, gust response and membrane control require measured proof.

Infrastructure

Each chimney needs structural certification, safe access and a repeatable docking envelope.

Regulation

Urban corridors, experimental aircraft rules and public-risk thresholds shape every phase.

Human factors

Pilot protection, abort paths and emergency glide performance remain non-negotiable.

For strategic partners

Explore billion-scale participation.

Register your interest in Volabo’s engineering, infrastructure and regulatory validation program. We’ll use your details only to discuss potential strategic participation.

Concept stage · Non-binding · No offer of securities · No assurance of performance, certification, valuation or returns

Submitting creates no obligation or entitlement and is not an investment commitment.

The declaration

Volabo,
I shall fly!