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The Crank and the Flywheel: Smoothing One Bang in Two Turns
Martin

Nilikha ni

Martin

27. Setyembre 2026NO
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The Crank and the Flywheel: Smoothing One Bang in Two Turns

A four-stroke single-cylinder engine pushes on its crank for half a turn in every two. The rest of the time the crank must be carried round — through exhaust, intake and compression — by energy stored in a flywheel. How heavy that flywheel must be depends on how uneven the torque is and how steady the speed must stay. This practice rung generates the torque curve of an idealised engine from the slider-crank geometry and an Otto-cycle pressure trace, sizes a flywheel from it, and builds a slider-crank model to check the piston motion by hand.
Katamtaman
About 3 hours

Mga Tagubilin

1

Torque round a cycle, and the flywheel it needs

Naglo-load ng Jupyter notebook…
2

Build a slider-crank and check it by hand

Cut a plywood base. Pivot a plywood crank disc on a bolt, with a crank pin 40 mm off centre. Cut a connecting rod 140 mm between hole centres, and a slider that runs in a slot or between two strips — the 'piston'. Glue a protractor under the crank disc. Turn the crank in 30° steps and measure the piston's distance from the crank centre with the steel rule. Compare with the notebook's formula. Notice that the piston moves further during the half-turn near top dead centre than near bottom — the connecting rod's angle causes it, and it is why the torque trace is lopsided.

Mga materyales para sa hakbang na ito:

Plantsa ng playwudPlantsa ng playwud1 pilyego
Mga turnilyo ng makinaMga turnilyo ng makina6 piraso
Mga tarugong matigas na kahoyMga tarugong matigas na kahoy1 set

Mga kailangang kasangkapan:

Walang-Kableng BarenaWalang-Kableng Barena
Hanay ng Talim ng BarenaHanay ng Talim ng Barena
Panukat ng AngguloPanukat ng Anggulo
RulerRuler
Digital na Kalibrador 6 PulgadaDigital na Kalibrador 6 Pulgada
3

Context

A practice rung: the slider-crank goes back to the rotative steam engine in this catalogue, and the flywheel to the potter's wheel and the spindle whorl. The torque trace is generated from an ideal cycle; a real engine's is less peaky because combustion takes time. **Honest limits of the model.** No friction, no inertia of the piston itself (which matters at high speed), heat added instantly at top dead centre, and a single cylinder. Multi-cylinder engines are smoothed by overlapping power strokes; balance shafts deal with the shaking the piston's own motion causes.

Mga Materyales

3

Mga Kinakailangang Kasangkapan

5

CC0 Pampublikong Domain

Ang blueprint na ito ay inilabas sa ilalim ng CC0. Malaya kang kumopya, magbago, mamahagi, at gumamit nang walang pahintulot.

Suportahan ang Maker sa pamamagitan ng pagbili ng mga produkto sa kanilang Blueprint Komisyon ng Maker itinakda ng mga Vendor, o lumikha ng bagong bersyon ng Blueprint na ito at isama bilang koneksyon sa iyong Blueprint upang ibahagi ang kita.

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