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Cyclone Separator
Emma

作成者

Emma

20. 8月 2026SE
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Cyclone Separator

A dust collector with no moving parts and no filter to clog. Dirty air enters a cone sideways, is forced into a spiral, and the dust — being denser than air — is thrown to the wall by its own inertia, slides down the cone and drops out of the bottom. The cleaned air reverses direction in the middle and leaves up a central tube. Nothing rotates, nothing wears out, nothing blocks. John M. Finch's US patent 325,521 of 1 September 1885 is titled simply Dust-Collector and describes imparting a rapid rotative motion to a dust-laden air current in a separating case. The same geometry now sits in front of every workshop vacuum, in oil refineries, in cement works, and in bagless domestic vacuum cleaners.
初心者
45 minutes

手順

1

Make the body

A cone above a collection jar is the whole machine.

  1. Cut the bottom from a clear plastic bottle, or roll a cone from stiff clear sheet.
  2. Fit it mouth-down over a sealed jar so everything that falls is caught.
  3. Seal the joint with tape — a leak here quietly ruins the separation.
Use clear material. Being able to watch the spiral is most of the value of building this rather than reading about it.

このステップの材料:

PVC Pipe (50 mm)PVC Pipe (50 mm)1 length
2

Cut the tangential inlet

This is the step that decides whether it works at all.

  1. Make the inlet hole near the top of the cone.
  2. Aim it along the wall, not at the centre — the incoming air must graze the inside surface.
  3. Fit a short tube and seal around it.
Point the inlet at the middle and you get turbulence and no separation. The tangential entry is what converts straight-line flow into a vortex, and it is the single most common thing people get wrong.

このステップの材料:

Rubber Tubing (Lab Grade)Rubber Tubing (Lab Grade)1 length
3

Fit the vortex finder

The clean-air outlet is a tube that hangs down into the body.

  1. Fit a tube through the centre of the lid.
  2. Let it project below the inlet — past it, into the cone.
  3. Seal around it.
If the outlet stops flush with the lid, incoming dirty air short-circuits straight across into it and out. Hanging the tube below the inlet forces the air to spiral down and back up the middle first. That projecting tube is called the vortex finder.
4

Run it and measure the efficiency

Connect the outlet to a vacuum and feed dust in at the inlet.

  1. Weigh out a known mass of sawdust — 20 g is plenty.
  2. Feed it in steadily while the vacuum runs.
  3. Weigh what collects in the jar.
  4. Efficiency % = (mass caught / mass fed) x 100
A simple build typically catches most of the coarse dust and lets the finest through. That is not a failure — it is exactly how cyclones behave. Separation depends on particle mass, so fine particles follow the air instead of being flung out, which is why industrial plants put a filter AFTER the cyclone rather than instead of it.

このステップの材料:

Digital Kitchen ScaleDigital Kitchen Scale1
5

Change one variable

Vary one thing at a time and re-measure.

  1. Narrow the inlet to raise the entry speed and repeat.
  2. Try a steeper cone.
  3. Try fine flour instead of sawdust.
Faster entry generally improves capture, up to the point where turbulence takes over and it gets worse again. Flour will mostly escape where sawdust is caught, and comparing the two makes the mass dependence obvious in a way a formula does not.
6

History and context

US patent 325,521, granted to John M. Finch on 1 September 1885, is titled Dust-Collector. The specification describes imparting to the dust-laden air current a rapid rotative motion in a suitable separating case, so that dust accumulates at the outer edge and is discharged into a dust chamber. That is a cyclone in all but name.

The drawing is not the cone you just built, and that matters. Finch's figures show a round separating case with a tangential inlet, a V-hopper beneath it and a screw conveyor to carry the settled dust away — cyclonic in principle, but not the tall narrow cone of a modern unit. The steep cone, the deep vortex finder and the proportions now treated as standard were worked out over the following decades by many hands. Finch patented the principle in one embodiment; the shape we build today is a later refinement of it.

Attribution here is genuinely muddy, so treat any single name with caution. The word cyclone was applied to such devices commercially rather than by one inventor, several similar patents appear in the same period, and secondary sources frequently credit other names for this exact patent number. What is solid is the number, the date, the title and the mechanism described in the specification — which is why those are what this blueprint asserts.

Why it endured: no filter medium means nothing to blind, nothing to replace, and a pressure drop that stays constant instead of climbing as a bag loads up. It handles hot, abrasive and wet dusts that would destroy a fabric filter. Cement kilns, sawmills, grain handling, catalytic crackers and bagless vacuum cleaners all rely on it.

The limit, stated honestly: cyclones are poor at fine particles. Below roughly 5 micrometres, capture falls away sharply, which is precisely the size range that matters most for lung damage. A cyclone is a first stage that removes the bulk cheaply, not a complete air-cleaning solution.

材料

3

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