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Building Leonardo da Vinci's Parachute — The Sealed Linen Pyramid of 1485
Emma

Créé par

Emma

2. juillet 2026SE
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Building Leonardo da Vinci's Parachute — The Sealed Linen Pyramid of 1485

In a notebook around 1485 Leonardo da Vinci sketched a pyramid of sealed linen and wrote: 'If a man have a tent made of linen of which the apertures have all been stopped up, and it be twelve braccia across and twelve in depth, he will be able to throw himself down from any great height without suffering any injury.' For 500 years people assumed it could never work. In 2000 the skydiver Adrian Nicholas built it to Leonardo's exact dimensions and descended smoothly beneath it — proving the Renaissance master right. This blueprint reconstructs that rigid-frame linen pyramid: cut and sew the canopy, seal it airtight, lash the frame, and rig the harness.
Avancé
16

Consignes

1

Understand Leonardo's design

Leonardo's parachute is a four-sided pyramid of sealed linen, twelve braccia (about 7 metres) square at the base and twelve braccia tall. Unlike a modern soft parachute it is held open by a rigid frame. The sealed cloth traps a large volume of air, and the drag of that trapped air slows the fall.
2

Cut the four canopy panels

Cut four tall isosceles triangles of strong linen — one for each sloping face of the pyramid. Each triangle has a base of about 7 metres and rises to the apex. Add a generous seam allowance along every edge for stitching.

Matériaux pour cette étape :

Linen FabricLinen Fabric60 square meter

Outils nécessaires :

Sharp ScissorsSharp Scissors
3

Sew the panels into a pyramid

Stitch the four triangles together edge to edge to form the pyramid canopy. Punch the stitch holes with the awl and sew with strong waxed cord in a double row so the seams can carry the load of trapped air.

Matériaux pour cette étape :

Binding RopeBinding Rope20 mètres

Outils nécessaires :

AwlAwl
4

Seal the linen airtight

Rub warmed beeswax and boiled linseed oil into the whole canopy so the weave is filled and 'the apertures are all stopped up', as Leonardo insisted. A sealed canopy traps the air instead of letting it leak through — this is what makes it work.

Matériaux pour cette étape :

BeeswaxBeeswax500 gram
Boiled Linseed OilBoiled Linseed Oil1 litre
5

Lash the square base frame

Cut four straight, light poles and lash them into a rigid square frame the full width of the canopy base. This frame holds the mouth of the pyramid open against the rush of air.

Matériaux pour cette étape :

Green Wood Poles (1-2m)Green Wood Poles (1-2m)4 pièces
Binding RopeBinding Rope10 mètres

Outils nécessaires :

Hand SawHand Saw
6

Raise the apex struts

Run light poles from each corner of the base frame up to a single apex point and lash them there, forming the pyramid's skeleton so the canopy keeps its shape and cannot collapse inward.

Matériaux pour cette étape :

Green Wood Poles (1-2m)Green Wood Poles (1-2m)4 pièces
Binding RopeBinding Rope10 mètres

Outils nécessaires :

KnifeKnife
7

Mount the canopy on the frame

Lash the sealed canopy to the base frame and up the apex struts so it stands as a taut, rigid pyramid with no slack cloth to flap or spill air.

Matériaux pour cette étape :

Binding RopeBinding Rope10 mètres

Outils nécessaires :

AwlAwl
8

Rig the harness lines

Tie four strong suspension lines from the corners of the base frame down to a central harness, all the same length so the load hangs level and the trapped air stays balanced above the jumper.

Matériaux pour cette étape :

Binding RopeBinding Rope20 mètres

Outils nécessaires :

KnifeKnife
9

Understand why it works

The 7-metre sealed canopy presents a huge area to the air. The drag on that area is enough to hold a person's fall to a safe, steady speed. The rigid frame keeps the pyramid fully open the whole way down — the reason Leonardo's shape descends stably where a limp sheet would not.
10

Test responsibly

Treat this as an engineering reconstruction, not a stunt. Inspect every seam and lashing under load, and demonstrate it as a scale model or a static drop test only. The historic full descent was made by a trained skydiver carrying a modern reserve parachute — never jump a home-built parachute.

Matériaux

5

Outils requis

4

Matériaux des Blueprints connectés

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