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The Bucket Elevator: Lifting Grain by the Bucketful, and Where It Lands
Youblob (generated from this blueprint's notebook) · CC0
Martin

Criado por

Martin

27. setembro 2026NO
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The Bucket Elevator: Lifting Grain by the Bucketful, and Where It Lands

A bucket elevator is an endless belt with buckets bolted to it, running round a pulley at the bottom (the boot) and one at the top (the head). The buckets dig grain out of the boot, carry it straight up, and empty it as they turn over the head pulley. Oliver Evans used elevators to move grain inside his automated flour mill in the 1780s. In 1842 Joseph Dart and the engineer Robert Dunbar built a steam-powered elevator on the Buffalo River, whose 'marine leg' was let down into a ship's hold and lifted the grain out, in place of men carrying it in sacks. Every grain elevator since works the same way. The one design choice that decides whether it works is the speed of the head pulley: too slow and the grain spills back down the leg, fast enough and it is thrown cleanly into the chute. This rung works that out, then builds a bench elevator that shows it.
Intermediário
About 5 hours

Instruções

1

Pole distance, capacity and power

A carregar o notebook Jupyter…
2

Build a bench elevator

Print eight small buckets, about 40 mm wide, 30 mm deep and 30 mm from back to lip, each with a flat back and two 5 mm holes. Bolt them to a loop of 25 mm nylon webbing at 60 mm spacing with elevator bolts: their flat heads sit flush on the belt side so they run smoothly over the pulleys. Make two drums from 50 mm PVC pipe on 8 mm steel shafts in skateboard bearings, one at the foot of an upright plywood board and one about 600 mm above it. Tension the belt by sliding the foot drum down in a slotted hole. Drive the head shaft from a geared DC motor on an adjustable power supply. Build a boot box round the foot drum that you can fill with lentils, and fix an open-topped chute on the down-going side of the head, just below the level of the head shaft, where thrown grain will land.

Materiais para este passo:

Caçamba de elevador de grãoCaçamba de elevador de grão8 peças
Fita de nylonFita de nylon2 metros
Parafuso de pescoço quadradoParafuso de pescoço quadrado16 peças
Tubo de PVCTubo de PVC1 metro
Barra de aço em brutoBarra de aço em bruto1 peça
Rolamentos de skateRolamentos de skate4 peças
Placa de contraplacadoPlaca de contraplacado1 peça
Motorredutor de corrente contínuaMotorredutor de corrente contínua1 peça
Lentilhas secasLentilhas secas2 kilogram

Ferramentas necessárias:

Impressora 3D de filamento (FDM)Impressora 3D de filamento (FDM)
Filamento PETGFilamento PETG
Fonte de alimentação de corrente contínuaFonte de alimentação de corrente contínua
Berbequim sem fiosBerbequim sem fios
Jogo de brocasJogo de brocas
Jogo de chaves AllenJogo de chaves Allen
Chave inglesa ajustávelChave inglesa ajustável
RéguaRégua
Paquímetro digital de 6 polegadasPaquímetro digital de 6 polegadas
Óculos de segurança transparentesÓculos de segurança transparentes
3

Find the speed where it throws cleanly

With the drum radius and bucket-lip radius of your build, compute the two speeds from the notebook: $n_c = \frac{60}{2\pi}\sqrt{g/r_1}$ and $n_g = \frac{60}{2\pi}\sqrt{g/r_2}$. With a 25 mm drum and 55 mm to the bucket lip they come to about 190 and 130 rpm. Fill the boot. Start slow, well below the gravity speed, and raise the speed in steps, reading each with a tachometer on the head shaft. Watch the head. At low speed the buckets tip their lentils out late and many fall back down the up-going side. Through the mixed band some are thrown and some dribble. Above the centrifugal speed the lentils leave in a clean arc into the chute. At each speed run for 30 s, weigh what reached the chute, and note what fell back. Plot grams per minute against rpm: capacity rises with speed as the notebook says, and the fraction lost down the leg drops to nearly nothing once the throw is clean.

Ferramentas necessárias:

Tacómetro digitalTacómetro digital
CronómetroCronómetro
Balança digital de cozinhaBalança digital de cozinha
BaldeBalde
4

When an elevator misbehaves

Real legs fail in a handful of ways. Work down the tree.

Flow

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5

One bucket's round trip

Espaço de trabalho Blockly

Loading Blockly workspace...

6

History and context

**Oliver Evans** built bucket elevators into his automated flour mill in the 1780s, moving grain from floor to floor without carrying it; his milling improvements were patented in 1790. **Joseph Dart** and the engineer **Robert Dunbar** built the first steam-powered grain elevator and storehouse on the Buffalo River in 1842, working from 1843. Its marine leg was lowered into a lake boat's hold and lifted the grain out in buckets on a belt. No patent was taken; Dunbar went on to design elevators across the Great Lakes and beyond. **Honest limits.** Grain dust is explosive, and elevator heads and legs are where dust explosions start: real elevators need dust control, bearing temperature and belt-slip monitors. Belt speed is limited too — too fast and the buckets throw grain past the chute and damage it, so every head speed is a compromise.

Materiais

9

Ferramentas necessárias

14

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