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Oxy-Acetylene Torch
English
MrBaguette

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MrBaguette

4. 8월 2026FR
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Oxy-Acetylene Torch

An electric arc needs a machine and a cable. A flame fits in two bottles you can wheel about on a barrow — and for fifty years it was the flame that welded wherever there was no current.

The secret is a single number. Acetylene burned in pure oxygen reaches about 3,100 °C, hotter than any other common gas, and crucially hotter than the 1,538 °C needed to melt steel. No other simple fuel manages it.

Edmond Fouché filed French patent FR 325,403, “Gas torch”, on 18 October 1902; it was granted on 28 April 1903. The patent solves the torch's real problem: stopping the flame from running back up the hose. The answer is an injector that moves the gases fast enough that the flame front cannot travel back against them.

And Charles Picard? Almost every history of welding credits Fouché and Picard. The document FR 325,403 carries Fouché's name alone. Both readings are given here, without settling what the document does not settle.

중급
45 minutes

안내

1

Write down the starting question

Note the question: why acetylene and not some other gas? The answer is a number, and you are going to measure it.

필요한 도구:

Notebook and PencilNotebook and Pencil
2

Record the temperature you have to reach

Write down the melting point of mild steel: about 1,538 °C. Any flame below that will never weld steel.

이 단계의 재료:

Graph PaperGraph Paper1

필요한 도구:

Notebook and PencilNotebook and Pencil
3

Set the station up on firebrick

Lay two firebricks on a clear surface. Nothing flammable within two metres. Glasses and gloves on before you light anything.

이 단계의 재료:

FirebricksFirebricks2

필요한 도구:

Clear Safety GlassesClear Safety Glasses
Leather GlovesLeather Gloves
4

Light the propane torch and set a neutral flame

Light the propane torch. Adjust until you have a sharp, clearly defined blue inner cone.

필요한 도구:

Propane TorchPropane Torch
Clear Safety GlassesClear Safety Glasses
5

Measure the temperature in the cone

Place the thermocouple just at the tip of the blue cone. Record the maximum value. This is the hottest zone of the flame.

필요한 도구:

K-Type Thermocouple with MAX6675 ModuleK-Type Thermocouple with MAX6675 Module
6

Measure again 10 mm further out

Move the thermocouple 10 mm away and read again. The drop is steep — which is why working distance matters so much.

이 단계의 재료:

Graph PaperGraph Paper1

필요한 도구:

K-Type Thermocouple with MAX6675 ModuleK-Type Thermocouple with MAX6675 Module
Steel Ruler (30cm)Steel Ruler (30cm)
7

Plot temperature against distance

Put the readings on graph paper. Compare your maximum with the melting point recorded in step 2.

이 단계의 재료:

Graph PaperGraph Paper1

필요한 도구:

Notebook and PencilNotebook and Pencil
8

Compare with the oxy-acetylene figure

Propane-air tops out near 1,900 °C. Oxy-acetylene reaches about 3,100 °C. Note the gap: it explains everything.

이 단계의 재료:

Graph PaperGraph Paper1

필요한 도구:

Notebook and PencilNotebook and Pencil
9

Understand the three flame settings

Record the welder's three settings: neutral (balanced), carburising (excess acetylene, white feather), oxidising (excess oxygen, short hissing cone).

이 단계의 재료:

Notebook and PencilNotebook and Pencil1
10

Observe the effect of a carburising flame

Enrich the gas slightly. Heat a steel offcut and watch: the surface stays brighter, because the excess fuel consumes the surrounding oxygen.

이 단계의 재료:

Mild Steel Flat BarMild Steel Flat Bar1

필요한 도구:

Propane TorchPropane Torch
Leather GlovesLeather Gloves
11

Observe the effect of an oxidising flame

Lean the gas off. Heat a second offcut and compare: scale forms far faster. That is chemical protection, or the lack of it.

이 단계의 재료:

Mild Steel Flat BarMild Steel Flat Bar1

필요한 도구:

Propane TorchPropane Torch
Leather GlovesLeather Gloves
12

Record what the flame protects

Write down the conclusion: the torch does not only heat, it wraps the weld pool in a reducing zone. It is the first shielding gas in the history of welding.

이 단계의 재료:

Notebook and PencilNotebook and Pencil1
13

Safety awareness — what you need to know about these gases

Acetylene is unstable above about 1.5 bar. That is why the cylinders are not simple tanks: they are packed with a porous mass soaked in acetone, in which the gas is dissolved. An acetylene cylinder is stored and used upright; laid down, it lets acetone through into the regulator.

Pure oxygen is not a harmless gas. It does not burn, but it makes everything around it flammable. Never any grease or oil on an oxygen fitting: the contact can ignite spontaneously. And you never “dust off” clothing with oxygen.

Flashback. If the flame runs back up the hose you hear a sharp crack then a whistle. Shut the oxygen immediately, then the fuel gas. Modern sets carry non-return valves and flame arrestors — which is exactly the problem Fouché's injector solved.

Eye protection. The flame emits little ultraviolet but a great deal of infrared and an intense yellow glare: use proper shaded welding lenses, not sunglasses.

필요한 도구:

Clear Safety GlassesClear Safety Glasses
Leather GlovesLeather Gloves
14

History & Context

FR 325,403, “Gas torch”, Edmond Fouché, filed 18 October 1902, granted 28 April 1903. The granted title says neither “welding” nor “oxy-acetylene” — another gap between the popular name and the document.

The problem was not the heat, it was the flashback. It had been known since the 1890s that acetylene burned very hot. What nobody could do was stop the flame travelling back up the hose to the cylinder. Fouché's injector draws the acetylene along by the velocity of the oxygen jet: the mixture moves faster than the flame front can travel back through it.

Why this arrives in 1903 and not earlier. It needed cheap acetylene, and that comes from calcium carbide, whose industrial process dates from 1892 — Thomas Willson's patent, already published on Youblob. The torch is a direct child of the electric furnace.

What the flame won, and then lost. Into the 1950s oxy-acetylene welded car bodies, pipework and fuselages: it is portable, it needs no electricity, and the welder can see the pool. Inert-gas processes replaced it for welding because they heat a narrower zone and distort less. But oxy-fuel cutting was never dethroned: heating steel to red heat and then firing a jet of pure oxygen at it, which literally burns the metal away, remains the cheapest way to cut heavy sections.

재료

4

필요 도구

6

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