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Oil Ring Bearing
Emma

Створено

Emma

21. серпень 2026SE
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Oil Ring Bearing

A wick needs renewing, a drip oiler needs setting and watching, and a grease gun needs somebody to remember. An oil ring needs none of them. A loose metal ring hangs over the shaft, resting on it, with its lower part dipping into an oil sump below. As the shaft turns it drags the ring round by friction, the ring lifts oil up out of the sump, and the oil runs off it onto the journal and back down into the sump. It is a pump with one part, no seals and no wear, driven by the very shaft it lubricates — so it feeds only when the machine runs, and feeds more as it turns faster. It cannot flood a stopped bearing and cannot be forgotten. This build makes a working oil-ring bearing in plywood and aluminium and finds the speed at which the ring stops keeping up.
Середній
4 hours

Інструкції

1

Build the housing with a sump

A split bearing housing with an oil reservoir underneath and a slot for the ring.

  1. Make a housing from 18 mm ply, split horizontally, bored 25 mm for a bearing shell.
  2. Hollow a sump below the bore, deep enough to hold oil about 20 mm below the shaft.
  3. Cut a slot through the top of the bore, 4 mm wide, running down into the sump — the ring hangs through this.
  4. Bolt the halves with M6 × 50 hex bolts × 4, M6 flat washers × 8 and M6 hex nuts × 4.
  5. Seal the sump with varnish or epoxy so it holds oil.

Oil level is a specification. Too low and the ring cannot reach it. Too high and the shaft itself dips in the oil, churning it, wasting power and heating the bearing. Real machines have a sight glass and a marked level for exactly this reason, and the correct level is usually just touching the bottom of the ring.

The slot must be wide enough that the ring never rubs its sides. A ring that catches on the slot stops turning, and a stopped ring delivers nothing at all.

Матеріали для цього кроку:

Baltic Birch Plywood (3/4 inch, 24x30)Baltic Birch Plywood (3/4 inch, 24x30)1 аркуш
M5 Flat WasherM5 Flat Washer8 штук
M5 Hex NutM5 Hex Nut4 штук
Boiled Linseed OilBoiled Linseed Oil1 пляшка

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Drill Bit Set (29-Piece, HSS)Drill Bit Set (29-Piece, HSS)
Allen/Hex Key SetAllen/Hex Key Set
File SetFile Set
Digital Caliper 6-InchDigital Caliper 6-Inch
2

Make rings in two diameters

The ring rides on the shaft, so its size sets how fast it turns and how much it lifts.

  1. Cut two rings from 3 mm aluminium: one 60 mm inside diameter, one 90 mm.
  2. File the inner surface smooth and slightly rounded where it rests on the shaft.
  3. Deburr both faces thoroughly.
  4. Hang each in turn over the 25 mm shaft and check it swings freely in the slot.

Ring diameter is the design variable. A larger ring reaches deeper into the sump and carries more oil per turn, but it is dragged round more slowly relative to the shaft and is likelier to slip. A smaller ring turns faster and slips less but lifts less oil. The two you have made will show this directly.

Round the inner edge where it contacts the shaft. A sharp-edged ring rides on a line, slips more, and slowly wears a bright band into the journal.

Матеріали для цього кроку:

Aluminum Flat Bar (1x1/4 inch, 36-inch)Aluminum Flat Bar (1x1/4 inch, 36-inch)1 штука

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3

Run it and watch the ring slip

The ring never turns as fast as the shaft, and how much it lags is the whole behaviour.

  1. Fill the sump to the marked level and fit the 60 mm ring.
  2. Turn the shaft slowly and count ring revolutions against shaft revolutions.
  3. Increase speed in stages, counting at each.
  4. Repeat with the 90 mm ring.
  5. Plot ring speed against shaft speed for both.
At low speed the ring follows the shaft closely. As speed rises it slips more and more, until at high speed it barely turns at all — the oil film between shaft and ring shears rather than dragging it, and the ring's own inertia and the drag of the oil it is lifting hold it back. That ceiling is the honest limit of the whole method.

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4

Measure oil delivered, and find the failure speed

What matters is oil at the journal, not ring revolutions.

  1. Run at a set speed for two minutes and catch the oil running off the journal.
  2. Measure the volume.
  3. Repeat at three higher speeds.
  4. Keep raising speed until delivery FALLS rather than rises.
Delivery rises with speed, peaks, and then declines as the ring slips too much to lift oil. That peak is the design point, and a real oil-ring bearing is specified to run below it. Exceed it and the bearing gets less oil the faster it runs — precisely the wrong direction, and a genuinely dangerous characteristic, which is why fast machines use pressurised systems instead.

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5

Self-regulating lubrication, and history

Oil-ring bearings were standard on electric motors, generators, pumps and line shafting from the late nineteenth century, and they are still fitted to large industrial motors today. The reason is simple and powerful: the lubrication system starts when the machine starts and stops when it stops, with no controls, no power and no attention.

Feeding only when running is the key property. A wick and a drip oiler both feed a stationary machine, wasting oil and sometimes flooding it. The oil ring cannot, because it is driven by the shaft. Feed also rises with speed over the working range — more heat generated, more oil delivered. That is a control system with no controller, which is the most robust kind there is.

The whole batch as a progression: a wick feeds blindly and continuously; a sight-feed oiler feeds at a rate you set and can watch; a grease nipple feeds when a person decides; an oil ring feeds in proportion to the work being done. Increasing sophistication, and also increasing constraint on where each can be used.

Honest limits: the speed ceiling measured in step 4, an absolute requirement for a horizontal shaft, sensitivity to oil level, and vulnerability to a ring that sticks or wears. Rings are inspected during overhauls because a stopped ring is invisible from outside and starves the bearing completely — the same silent-failure problem as a hardened wick.

Матеріали

5

Необхідні інструменти

9

Пов'язані креслення

Ці креслення діляться знаннями — техніки, матеріали або принципи

CC0 Суспільне надбання

Це креслення випущено під ліцензією CC0. Ви можете вільно копіювати, змінювати, поширювати та використовувати цю роботу для будь-яких цілей без запиту дозволу.

Підтримайте мейкера, купуючи продукти через його креслення, де він отримує Комісію мейкера встановлену вендорами, або створіть нову ітерацію цього креслення та включіть його як зв'язок у власне креслення для розподілу доходу.

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