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Otto Four-Stroke Engine
Martin

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Martin

20. 8월 2026NO
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Otto Four-Stroke Engine

Four movements of a piston that still power most of the vehicles on Earth. Intake draws in air and fuel, compression squeezes it, the burn drives the piston down, exhaust pushes the burnt gas out — one power stroke for every two turns of the crank. Nikolaus Otto's insight in 1876 was not the sequence itself but compressing the charge before igniting it, which is where the efficiency comes from. His Silent Otto engine was quiet and economical enough to sell in thousands where earlier gas engines had been curiosities. US patent 194,047, granted 14 August 1877, describes it. The cycle is not really his alone: Alphonse Beau de Rochas had written it down in 1862 without ever building an engine, and that prior description was later used to strike down Otto's German patent.
초급
45 minutes

안내

1

Model the cylinder

A large syringe is a piston in a cylinder and shows compression honestly.

  1. Take a syringe of 50 ml or more with the needle removed.
  2. Seal the outlet with a fingertip.
  3. Push the plunger in and feel the resistance rise, then release and watch it spring back.
That springiness is the compression stroke storing energy in the gas. Nothing has burned yet — this is the step every pre-Otto atmospheric engine skipped, and skipping it is why they were so inefficient.

이 단계의 재료:

Steel RulerSteel Ruler1
2

Measure a compression ratio

Compression ratio is a number you can measure, not just quote.

  1. Note the volume with the plunger fully out — call it V₁.
  2. Push in as far as it will comfortably go and note the remaining volume, V₂.
  3. Compression ratio = V₁ / V₂
A petrol engine runs about 8:1 to 12:1; a diesel 15:1 to 23:1. Higher compression extracts more work from the same fuel, which is exactly why the diesel is more efficient — and why petrol cannot simply copy it without the fuel igniting itself early.
3

Walk the four strokes

Turn a real engine over by hand and watch the valves. A lawnmower or model engine with the head accessible is ideal.

  1. Intake — piston down, inlet valve open, charge drawn in.
  2. Compression — piston up, both valves shut.
  3. Power — ignition at the top, piston driven down, both valves still shut.
  4. Exhaust — piston up, exhaust valve open, burnt gas pushed out.
Count the crank turns: the valves complete their whole sequence once every TWO revolutions. That is why the camshaft turns at half crankshaft speed, and seeing it is more convincing than being told it.
4

Time it against the crank

Prove the 2:1 relationship rather than asserting it.

  1. Mark the crank pulley and the cam or valve cover with chalk.
  2. Turn the crank slowly through two full revolutions.
  3. Count how many times each valve opens.
Each valve should open exactly once in two crank revolutions. If a valve opens twice, you are looking at a two-stroke, which fires every revolution and has no separate intake and exhaust strokes at all.

이 단계의 재료:

StopwatchStopwatch1
5

History and context

Nikolaus August Otto, a travelling grocery salesman by trade, built gas engines with Eugen Langen in Cologne from 1864. Their 1867 atmospheric engine won a gold medal in Paris but was tall, noisy and weak. The 1876 engine was different: it compressed the mixture before igniting it, and it ran quietly enough to be called the Silent Otto. US patent 194,047, Improvement in Gas-Motor Engines, was granted on 14 August 1877.

The priority dispute is real and worth stating plainly. Alphonse Beau de Rochas, a French engineer, described the four-stroke compressed-charge cycle in an 1862 publication and never built an engine from it. In 1886 a German court invalidated Otto's German patent on the grounds of that prior description. So Otto did not originate the cycle on paper; he was the first to make it work, sell it, and put it into general use. Both statements are true and the popular version usually keeps only one of them.

What followed: Gottlieb Daimler and Wilhelm Maybach, who both worked for Otto's company, left and built high-speed petrol versions light enough for vehicles. Rudolf Diesel took the compression idea further, raising it until the fuel ignites from heat alone with no spark.

Built under licence, which is why so few engines say Otto on them. Otto's company sold manufacturing rights abroad, and Crossley Brothers of Manchester held the British rights from 1869, first for the Otto and Langen atmospheric engine and later for the four-stroke. Thousands of engines to Otto's design therefore carry another maker's name cast into the frame — the engine pictured here is one of them, a Crossley. Judging these machines by the badge rather than the cycle they run is a common mistake.

What this exercise does not do: it does not build a running engine. It measures the compression ratio and demonstrates the valve timing on real hardware, which is the part a bench can genuinely show.

재료

2

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