IṢẸ́ ỌNÀ
ẸWÀ ÀTI ÌLERA
IṢẸ́ ỌWỌ́
ÀṢÀ ÀTI ÌTÀN
ÌṢERÉ
ÀYÍKÁ
OÚNJẸ ÀTI OHUN MÍMU
REVERSE ENGINEERING
SÁYẸ́ǸSÌ
ERÉ ÌDÁRAYÁ
ÌMỌ̀-Ẹ̀RỌ
ÀWỌN OHUN WÍWỌ̀

The Drum Brake: Shoes That Push Themselves Harder
Early cars stopped with blocks pressed on the tyres or with a band tightened round a drum on the outside. In 1902 Louis Renault put the friction INSIDE the drum: two curved shoes pivoted on a fixed plate, pushed outward against the drum's inner surface. The drum keeps dirt and water off the linings, and one of the shoes is dragged by the drum's own rotation into firmer contact — it helps to apply itself.
That self-servo gives a lot of braking for a small push. It also makes the brake sensitive to the friction of its linings, which is why drum brakes fade when hot.
This rung works out leading and trailing shoe torques and builds a plywood drum with one shoe to measure the difference by spinning it each way.
Àárín
About 4 hours
Ìlànà
1
1
Leading and trailing shoes
Leading and trailing shoes
Ń ṣí ìwé Jupyter…
2
2
Build a drum and one shoe
Build a drum and one shoe
Make a drum: a plywood disc 200 mm across with a 30 mm rim of cardboard strip glued round it, on a bolt axle through a plywood backplate. Line the inside of the rim with sandpaper, rough side in, as a repeatable friction surface for the drum.
Make one shoe: a plywood arc that fits inside the drum, pivoted near one end on the backplate, with a piece of brake-pad friction material glued on its face. At the free end, hang the spring scale to pull the shoe out against the drum with a fixed force.
Wrap string round the drum's hub, hang a weight on it, and find the smallest weight that turns the drum against the shoe — with the drum turning towards the pivot (trailing), then away (leading). The leading direction needs far more weight.
Àwọn ohun èlò fún ìgbésẹ̀ yìí:
Àwo igi tí a lẹ̀ pọ̀1 ewé
Àwọn Pẹlẹbẹ Káàdíbóòdù Onílọ́nà1 àkópọ̀
Àkójọpọ̀ bébà ìpọ́n1 ìtò
Pádì ìdènà1 ìtò
Skurú ẹ̀rọ4 ẹyọÀwọn irinṣẹ́ tí a nílò:
Ẹ̀rọ Ìlùkòkò Aláìlókùn
Àkójọ Orí Ìlùkòkò
Ẹ̀rọ Ìwọ̀n Agbára (Òṣùwọ̀n Ìsúnkì)
Ìdíwọ̀n3
3
History and context
History and context
**Louis Renault, 1902** — the internal expanding shoe brake. No patent number is asserted here. Mechanical rods and cables worked the shoes until hydraulic operation (Loughead, in this catalogue) spread in the 1920s; twin-leading-shoe drums put the self-servo on both shoes for stronger front brakes.
**Honest limits.** The self-servo makes the torque sensitive to lining friction, so a hot drum fades and a wet one grabs. The drum expands away from the shoes when hot, lengthening the pedal. And the enclosed drum sheds heat poorly — the reason disc brakes (the next rung) took over at the front of cars.
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