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Screw-Lift Churn: An Archimedean Screw Keeps the Whole Body of Cream Moving
Emma

Criado por

Emma

6. outubro 2026SE
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Screw-Lift Churn: An Archimedean Screw Keeps the Whole Body of Cream Moving

Ling wanted a churn in which "very little power is required to carry on the process." Thomas Ling of Portland, Maine, received US 3,714, dated 21 August 1844, for a churn with a smaller vertical cylinder, about half the diameter, standing in the centre of the larger one. Cream enters it through perforations near its bottom; an Archimedean screw on the crank shaft raises it to the top, where a flange at 60° to the horizon spills it back into the large cylinder, "the butter accumulating on the top of the space between the two cylinders." This rung works out how much the screw can lift, then prints the inner cylinder and the screw, fits them in a stock pot, and makes butter.
Intermediário
About 2 hours, plus printing

Instruções

1

How much the screw lifts

A carregar o notebook Jupyter…
2

The screw it puts in a churn

The embedded blueprint lifts water with a turning screw in a tube. Ling stands one upright in a churn to lift the cream and spill it back.
3

Read US 3,714

"The cream having been admitted into the churn in sufficient quantity, the crank c is turned, which causes the shaft C to revolve, and the cream entering from the larger cylinder A, through the perforations b at the bottom, into the smaller cylinder B, the screw D will consequently raise the cream to the top of the smaller cylinder, and then discharge it again into the larger one, the butter accumulating on the top of the space between the two cylinders."
4

Print the cylinder and screw

Print the inner cylinder upright (/uploads/blueprints/screw-lift-churn-inner-cylinder.stl): ten holes near its foot and a flange at 60° round its top. Print the screw upright with supports under the blade (/uploads/blueprints/screw-lift-churn-screw.stl), and the crank arm (/uploads/blueprints/screw-lift-churn-crank-arm.stl). Print in PETG at 0.2 mm layers, 30 % infill, 4 walls; wash before first use.

Materiais para este passo:

Filamento PETGFilamento PETG1 peça

Ferramentas necessárias:

Impressora 3D de filamento (FDM)Impressora 3D de filamento (FDM)
5

Set the inner cylinder

Stand the inner cylinder in the centre of a stock pot about 240 mm across, its top below the pot's rim, and bed its three feet in silicone. Cut a plywood lid for the pot with a hole at the centre for the shaft, and cut a segment from it as a small lid that lifts off, as his.

Materiais para este passo:

Panela altaPanela alta1 peça
Vedante de siliconeVedante de silicone1 peça
Placa de contraplacadoPlaca de contraplacado1 peça

Ferramentas necessárias:

Serra de recortesSerra de recortes
Berbequim sem fiosBerbequim sem fios
Jogo de brocasJogo de brocas
LixaLixa
6

Shaft and crank

Glue the screw on a 10 mm square hardwood shaft so the blade starts just above the floor. Stand the shaft's foot in the hole in the inner cylinder's floor, pass it through the lid, and glue the crank arm and a dowel handle on top.

Materiais para este passo:

Cavilhas de madeira duraCavilhas de madeira dura1 peça
Cola de madeiraCola de madeira1 peça

Ferramentas necessárias:

SerroteSerrote
LixaLixa
7

The build in 3D

FreeCAD model of this build, not of the patent: the pot and inner cylinder cut away to show the screw on its shaft, the holes near the inner cylinder's foot, the 60° flange, the lid and the crank.
Arquivo de designBLENDCC0 - Free
8

Crank and make butter

Let the heavy cream stand until it reaches about 15 °C, checked with the thermometer. Pour in 1.5 litres, enough to stand above the inner cylinder's holes. Fit the lid and crank steadily; time until the butter gathers on top between the cylinders. Pour off the buttermilk, add cold water, churn a little and pour off again until it runs clear; work in a pinch of salt and weigh the butter.
Passo 8 - Image 1

Materiais para este passo:

Natas para baterNatas para bater1500 ml
Sal marinho grossoSal marinho grosso1 peça
ÁguaÁgua1 peça

Ferramentas necessárias:

Termómetro de sonda permanenteTermómetro de sonda permanente
CronómetroCronómetro
Balança digital de cozinhaBalança digital de cozinha
Taça grande de aço inoxidávelTaça grande de aço inoxidável
9

A screw that lifts nothing, a cylinder that floats

Screw-lift churn troubleshooting.

Flow

Loading...
10

History and honest limits

**Thomas Ling** of Portland, Cumberland County, Maine, received US 3,714, dated 21 August 1844. The crank was held on the shaft by a nut or screw on its top; the lids had knobs to lift them. He claimed the large cylinder, the small cylinder with its perforations and flange, and an apparatus for withdrawing, raising and discharging the cream, "not however confining myself to the screw D for that purpose, but substituting any other contrivance, by which the same result can be obtained." **Honest limits.** A stock pot and printed parts stand in for his cylinders and screw. The notebook gives an upper bound, not a measured flow. FDM prints hold food in their layer lines, so wash well and replace when worn. Your times and weights are the result.

Materiais

9

Ferramentas necessárias

10

Ficheiros de design

1

CC0 Domínio Público

Este blueprint é liberado sob CC0. Você é livre para copiar, modificar, distribuir e usar este trabalho para qualquer finalidade, sem pedir permissão.

Apoie o Maker comprando produtos através do Blueprint, onde ele ganha uma Comissão Maker definida pelos vendedores, ou crie uma nova versão deste Blueprint e inclua-o como conexão no seu próprio Blueprint para compartilhar receita.

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