ARTE
BELEZA E BEM-ESTAR
ARTESANATO
CULTURA E HISTÓRIA
ENTRETENIMENTO
MEIO AMBIENTE
COMIDA E BEBIDAS
ENGENHARIA REVERSA
CIÊNCIAS
ESPORTES
TECNOLOGIA
TECNOLOGIA VESTÍVEL

Keeping It Together: Shoulders, Keys, Circlips and What Each One Resists
A part on a shaft can move in three ways: it can slide ALONG the shaft, it can rotate AROUND it, and it can rattle radially. Each needs its own answer, and the commonest assembly fault is using one feature to do a job it cannot do.
A SHOULDER stops axial movement in one direction and nothing else. A KEY stops rotation and nothing else. A CIRCLIP stops axial movement in one direction. An INTERFERENCE FIT resists all three, up to its limit.
So a pulley with a key and no clamp will walk along its shaft; a pulley with a grub screw and no key will eventually spin; and a bearing located only by a circlip on one side will be pushed out the other. Every real assembly needs two or three of these together.
Intermediário
3 hours
Instruções
1
1
Locate axially against a shoulder, and clamp the other side
Locate axially against a shoulder, and clamp the other side
A machined shoulder is the best axial location there is: it is part of the shaft, it cannot loosen, and it positions the part precisely. But it works in one direction only.
So the other side needs something — a locknut, a circlip, a clamping collar, an end plate. The part is then trapped between two features and cannot move either way.
Make the shoulder the right size. A shoulder taller than the bearing's inner ring will foul the seal or the outer ring; too short and it contacts only part of the ring face and pushes it out of square. Bearing makers publish the shoulder diameter for exactly this reason.
Materiais para este passo:
Veio de aço de 30 mm1 peça
Ball Bearing - Non-Flanged (8mm Bore, 22mm OD)1 peçaFerramentas necessárias:
Paquímetro
Jogo de apalpa-folgas2
2
Keys carry torque, and only on their sides
Keys carry torque, and only on their sides
A parallel key transmits torque through its two long SIDES bearing against the keyway walls. The top of the key should not touch the bottom of the hub's keyway — there is meant to be a small clearance there.
A key that is a tight fit on its top and loose on its sides carries nothing. It is held by friction on a face that was never designed to grip, and it will roll in the keyway and batter it oval.
Keyways are stress raisers. A keyway cut into a shaft removes material exactly where the bending stress is highest, so a keyed shaft is meaningfully weaker than a plain one — which is why highly loaded joints use splines, tapers or interference fits instead.
Materiais para este passo:
Veio de aço de 30 mm1 peça
Roldana1 peçaFerramentas necessárias:
Paquímetro
Jogo de apalpa-folgas
Torno de bancada pesado3
3
Circlips, grub screws and what each is honestly good for
Circlips, grub screws and what each is honestly good for
A CIRCLIP is a light axial stop. It is excellent at preventing a part from wandering and poor at resisting a real thrust load, and it must be fully seated in its groove with the sharp edge facing the load.
A GRUB SCREW into a plain shaft is the weakest common method. It grips on a tiny area, it digs a burr into the shaft that makes the part hard to remove, and it loosens under vibration. It is acceptable for a light component, and it is not a substitute for a key.
Two grub screws at ninety degrees are much better than one, a flat milled on the shaft better again, and a grub screw used ALONGSIDE a key — one to carry torque, one to stop axial movement — is the combination that actually works.
Materiais para este passo:
Parafuso sem cabeça1 peça
Travador de roscas1 peça
Veio de aço de 30 mm1 peçaFerramentas necessárias:
Torno de bancada pesado
Jogo de apalpa-folgas4
4
Vibration undoes threads, so lock them
Vibration undoes threads, so lock them
A threaded fastener on a machine that vibrates will loosen, because vibration lets the surfaces slip microscopically and each slip lets the thread turn a little. That is a mechanism, not bad luck, and it does not care how tight the fastener was.
The cures work differently. THREAD LOCKER fills the gaps so the surfaces cannot slip. A NYLOC nut adds friction that the vibration must overcome. A TAB WASHER or wire lock is a mechanical stop that does not rely on friction at all.
Correct preload is the first defence and the one people skip. A joint tightened properly is clamped hard enough that its faces never slip, so the loosening mechanism never starts — which is the tightening rung's whole argument, and it is why a locking compound is a second line rather than a first.
Materiais para este passo:
Travador de roscas1 peça
Parafuso sem cabeça1 peçaFerramentas necessárias:
Torno de bancada pesadoMateriais
5- 1 peçaReferência
- Ball Bearing - Non-Flanged (8mm Bore, 22mm OD)10% de comissão1 peçaR$6.54
- 1 peçaReferência
- Parafuso sem cabeça10% de comissão2 peçasReferência
- 2 peçasReferência
Ferramentas necessárias
3- Referência
- Referência
- Referência
Total estimado
O que quem fez comprou. Os materiais sem preço obtêm-se onde os comprares.
Blueprints relacionados
Estes blueprints compartilham conhecimento — técnicas, materiais ou princípios

Tightening: How Tight Is Right, and Making It Stay
por Martin
Ferramentas de Metalurgia
20
0
0
0
0
0

Fits: Clearance, Transition and Interference — the Difference Is Microns
por Martin
Ferramentas de Metalurgia
25
0
0
0
0
0

Mounting a Bearing: Press on the Ring That Is Being Fitted, Never Through the Balls
por Martin
Engenharia
29
0
0
0
0
0
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.