ARTE
BELEZA E BEM-ESTAR
ARTESANATO
CULTURA E HISTÓRIA
ENTRETENIMENTO
MEIO AMBIENTE
COMIDA E BEBIDAS
ENGENHARIA REVERSA
CIÊNCIAS
ESPORTES
TECNOLOGIA
TECNOLOGIA VESTÍVEL
Turning Between Centres: The Setup You Can Take Out and Put Back
Martin

Criado por

Martin

23. setembro 2026NO
1
0
0
0
0

Turning Between Centres: The Setup You Can Take Out and Put Back

A chuck holds the work wherever the chuck happens to hold it. Two centre holes, drilled once into the ends of a shaft, hold it in the same place for ever — put it back next week, on a different lathe, and it runs on exactly the axis it did before. That is the whole reason this setup survived the invention of better chucks. A long shaft with several diameters, a part that must be turned, heat treated and then finished, anything that has to come out and go back: all of it belongs between centres. It is also the only sensible way to turn anything slender, because the tailstock supports the far end and removes the cantilever that makes a long bar taper under the tool.
Intermediário
4 hours

Instruções

1

Face both ends and centre-drill them

Face each end square, then drill a centre hole with a centre drill — the short stiff two-diameter drill that cuts a small pilot and a 60 degree countersink in one go. The 60 degree cone is what the lathe centre sits in, and it must be cut, not punched. A centre-punched dimple is neither round nor at 60 degrees, and the work will run out and wear the mark oval as it turns. Do not run the centre drill in too far. The small pilot tip is fragile, and if you bury it to the shoulder the countersink bottoms out and the centre bears on the wrong surface. Cut until the cone is a little larger than the centre's point and stop.

Materiais para este passo:

Barra redonda de aço macioBarra redonda de aço macio1 peça

Ferramentas necessárias:

Torno mecânicoTorno mecânico
Conjunto de brocas de centrarConjunto de brocas de centrar
Placa de torno de 3 castanhasPlaca de torno de 3 castanhas
Óleo de corteÓleo de corte
2

Live at the tailstock, and check the two centres agree

Put a live (rotating) centre in the tailstock where you can. A dead centre does not turn, so the work rubs on it and needs grease; a live centre carries bearings and turns with the work, which is why it tolerates speed and load without seizing or scoring. Before trusting the setup, bring the tailstock centre up to the headstock centre and look at the two points end on. They should meet tip to tip. If the tailstock is offset, every shaft you turn will come out TAPERED — and it will be a beautiful, consistent, entirely wrong taper. That offset is adjustable, and on many lathes it is deliberately offset at some point in the past to cut a taper and never put back.

Ferramentas necessárias:

Torno mecânicoTorno mecânico
Contraponto rotativo CM2Contraponto rotativo CM2
Esquadro de ajustadorEsquadro de ajustador
3

Drive it with a lathe dog

The centres locate the work but cannot turn it — they are just cones in holes. A LATHE DOG clamps onto the work and its tail engages a slot in the faceplate, so the spindle drives the work while the centres decide where it sits. Tighten the dog on a part of the shaft that will not be finished, or protect the surface with a shim, because the screw will mark it. Check the tail has clearance in its slot — if it binds against the end of the slot it pushes the work off its centres and you lose the very thing this setup is for. Support the tailstock end with a little grease if the centre is dead, and re-check it after the work warms up: a shaft heated by cutting GROWS, tightens itself between the centres, and will squeal and score if nobody eases the tailstock.

Ferramentas necessárias:

Arrastador de tornoArrastador de torno
Prato liso de tornoPrato liso de torno
Torno mecânicoTorno mecânico
4

What the support is actually worth

A carregar o notebook Jupyter…

Materiais para este passo:

Barra redonda de aço macioBarra redonda de aço macio1 peça

Ferramentas necessárias:

CalculadoraCalculadora
MicrómetroMicrómetro
5

Prove the point: take it out and put it back

Turn a diameter, measure it, remove the work completely, then remount it between the same centres and put an indicator on the turned diameter. It should run true to within a few micrometres — far better than any three-jaw will manage. Then turn a second diameter at the other end and check the two are concentric. That is the whole argument for this setup in one experiment. It is why a shaft that has to be hardened between roughing and finishing is turned between centres: the centre holes survive the heat treatment, so the finished part is concentric with the roughed one even though the two operations were weeks apart.

Materiais para este passo:

Barra redonda de aço macioBarra redonda de aço macio1 peça

Ferramentas necessárias:

Torno mecânicoTorno mecânico
Arrastador de tornoArrastador de torno
Contraponto rotativo CM2Contraponto rotativo CM2
Comparador de quadranteComparador de quadrante
MicrómetroMicrómetro

Materiais

1

Ferramentas necessárias

11

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.

Discussão

(0)

Entrar para participar da discussão

Carregando comentários...