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The Air-Operated Double-Diaphragm Pump: It Stalls Instead of Bursting
Emma

Creato da

Emma

27. settembre 2026SE
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The Air-Operated Double-Diaphragm Pump: It Stalls Instead of Bursting

Two flexible diaphragms, joined by a shaft, each closing a chamber of liquid. Compressed air pushes one diaphragm to empty its chamber while the shaft pulls the other back to fill its chamber; at the end of the stroke a small air valve switches sides. Four ball check valves make the flow go one way. There is no motor, no rotating seal and no electricity at the pump. It runs dry without damage, primes itself, passes solids that would jam a gear or an impeller, and — the property that made it — when the outlet is blocked it simply stops, and starts again when the outlet is opened. Jim Wilden is credited with the air-operated double-diaphragm pump in 1955; his original patent number could not be pinned from any reachable source, so none is asserted. This rung builds a single air-driven diaphragm chamber, demonstrates the stall, and works out the price of all that tolerance: the air it consumes.
Intermedio
About 5 hours

Istruzioni

1

One full cycle, as a sequence

Spazio di lavoro Blockly

Loading Blockly workspace...

2

Make the diaphragm chamber

Print two flanged dishes in PETG, 90 mm across the flange, each shaped as a shallow bowl 10 mm deep. One is the **liquid side**: give it two hose ports near the bottom, one for an inlet check valve and one for an outlet check valve, pointing opposite ways. The other is the **air side**: one port at the centre. Cut a disc of rubber sheet for the diaphragm, or use a ready-made pump diaphragm of that size, and clamp it between the two flanges with eight machine screws tightened evenly in a star pattern. The diaphragm is the only seal between air and liquid: an uneven clamp leaks at the flange, and a crease in the rubber cracks early. Put a light compression spring on the air side, behind the diaphragm, so it returns to the air side when the air is let out. That spring stands in for the second diaphragm and its shaft.

Materiali per questo passaggio:

Filamento PETGFilamento PETG120 g
Membrana per pompaMembrana per pompa1 pezzo
Viti da metalloViti da metallo8 pezzi
Assortimento di molle a compressioneAssortimento di molle a compressione1 set
Valvola di ritegnoValvola di ritegno2 pezzi

Strumenti necessari:

Stampante 3D a filamento (FDM)Stampante 3D a filamento (FDM)
Trapano a batteriaTrapano a batteria
Serie di punte da trapanoSerie di punte da trapano
Set di chiavi a brugolaSet di chiavi a brugola
Calibro digitale da 6 polliciCalibro digitale da 6 pollici
3

The four balls that make it pump — how a check valve works

The diaphragms only change the chamber volumes; the four ball check valves decide which way the liquid goes. Each chamber has one that opens on suction and one that opens on discharge. The embedded blueprint covers how a check valve seats and why a ball held off its seat by debris makes a pump run fast and deliver nothing.
4

Drive it with air, and make it stall

Connect the air side to the compressor through the regulator, set to **0.5 bar**, through a tee with a push-button or a finger over an open bleed hole as the air valve: finger on, air pushes; finger off, air escapes and the spring returns the diaphragm. Put the inlet hose in a bucket of water and lead the outlet into a measuring jug. Pump twenty strokes and divide: that is your stroke volume. Now the test. Tee the pressure gauge into the outlet hose and close the outlet with a ball valve. Press the air button and hold it. The diaphragm moves a little, then stops, and the outlet gauge settles at about the air pressure — 0.5 bar. Raise the regulator to 1 bar and the outlet gauge follows to about 1 bar. The pump is a pressure transformer of ratio one, and it cannot exceed its air supply. Keep the air at 1 bar or below for this printed model, and wear safety glasses.

Materiali per questo passaggio:

Tubo in vinile trasparenteTubo in vinile trasparente2 metri
Assortimento di fascette per tubiAssortimento di fascette per tubi1 set
Valvola a sfera in ottoneValvola a sfera in ottone1 pezzo
Assortimento di raccordi in PVCAssortimento di raccordi in PVC1 set
AcquaAcqua10 litri

Strumenti necessari:

Compressore d'aria (tipo pancake)Compressore d'aria (tipo pancake)
Riduttore di pressioneRiduttore di pressione
ManometroManometro
Brocca graduataBrocca graduata
SecchioSecchio
Occhiali di sicurezza trasparentiOcchiali di sicurezza trasparenti
5

The stall, the flow and the air bill

Caricamento del notebook Jupyter…
6

It stops, surges or leaks: find out why

The faults behind an air-operated diaphragm pump that is not delivering, in the order to check them.

Flow

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7

History and context

Hand-operated diaphragm pumps — a rubber sheet moved by a lever, with two flap valves — were long used to drain trenches, bilges and excavations, because grit and mud pass through them. The air-operated double-diaphragm pump put two of them back to back on one shaft and let compressed air do the stroking, with a self-switching air valve. **Jim Wilden is credited with the invention in 1955**, and the company bearing his name still makes these pumps. His original patent number is not asserted here: it could not be read from a primary source, and the mechanism does not depend on it. It filled a gap no motor-driven pump filled: a pump that can be left running into a line that may block, may run dry, may carry grit, and may sit in a place where an electric motor is a fire risk. Paint shops, mines, sewage works and chemical plants took it up for exactly those reasons. **Honest limits.** It is costly to run: the notebook shows that at best a small part of the compressed air's energy reaches the liquid. The flow pulses, twice per cycle. The diaphragms are flexed on every stroke and are replaced as wear parts, and a burst diaphragm sends the liquid out of the air exhaust. And it can ice up: the expanding exhaust air is cold, and moist air can freeze in the air valve.

Materiali

10

Strumenti richiesti

11

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