SENI
KECANTIKAN & KESEJAHTERAAN
KRAFTANGAN
BUDAYA & SEJARAH
HIBURAN
ALAM SEKITAR
MAKANAN & MINUMAN
KEJURUTERAAN TERBALIK
SAINS
SUKAN
TEKNOLOGI
WEARABLES
Roots Blower
Karen

Dicipta oleh

Karen

30. Julai 2026SE
0
0
0
0
0

Roots Blower

A fan is easy and cheap, and it has one weakness: push back against it and it gives up. Raise the pressure downstream — a deep mine, a choked furnace — and a fan's airflow collapses just when you need it most.

A Roots blower does not care about back-pressure. Two figure-of-eight lobes counter-rotate in a close-fitting case, and on every turn they scoop a fixed pocket of air from the inlet and carry it bodily to the outlet. It is a positive-displacement machine: so many litres per revolution, whether the outlet is open air or a blast furnace.

The trick is that the two lobes never touch. They are turned by a pair of external gears that keep them meshing with a hair's clearance — sealing the air in without grinding metal on metal.

US Patent 30,157, "Blower" (Improvement in Rotary Blowers), granted 25 September 1860 to Philander H. Roots of Connersville, Fayette County, Indiana.

Pertengahan
45 minutes

Arahan

1

Read the claim: rotary, positive displacement

Roots claims an "improvement in rotary blowers": two rotating lobes that move air by trapping and carrying it, not by flinging it. Note the difference from a fan.

Alatan diperlukan:

Notebook and PencilNotebook and Pencil
2

Test a fan against back-pressure first

Run a small fan into an open bag, then pinch the neck. The airflow collapses as pressure builds. Record how quickly it stalls — this is the problem to beat.

Alatan diperlukan:

Hobby Motor - GearHobby Motor - Gear
3

Cut two identical two-lobe rotors

Cut two figure-of-eight rotors from MDF, identical. Each is two lobes 90° apart on a hub. Their shape must let them mesh without jamming.

Bahan untuk langkah ini:

MDF SheetMDF Sheet1 helaian

Alatan diperlukan:

HacksawHacksaw
Needle File SetNeedle File Set
4

Mount them on parallel shafts in a close case

Set the two rotors on parallel shafts inside a snug case with an inlet and an outlet. Space the shafts so the lobes almost touch as they pass.

Bahan untuk langkah ini:

Mild Steel Rod (6mm)Mild Steel Rod (6mm)2 keping
5

Turn them by hand and watch them collide

Rotate the shafts by hand with no gears. The lobes clash and jam — nothing keeps their timing. That failure sets up the key insight.

6

Add a pair of equal external gears

Fit two equal gears on the shaft ends so the rotors are forced to turn in exact opposite step. Now the lobes mesh with a gap and never touch.

Bahan untuk langkah ini:

POM Acetal Gear Blank SetPOM Acetal Gear Blank Set1 set
7

Turn the geared pair and follow one air pocket

Rotate slowly and watch a pocket of air get scooped at the inlet, carried around the case wall, and pushed out the outlet. That carrying action is positive displacement.

8

Measure the volume moved per revolution

Connect the outlet to a syringe and count how far the plunger moves per turn. Volume per revolution is a fixed number — the defining property of the machine.

Alatan diperlukan:

Syringe (Laboratory)Syringe (Laboratory)
9

Load the outlet and measure again

Restrict the outlet and repeat. The volume per revolution is almost unchanged — unlike the fan in step 2, which stalled. Back-pressure barely touches it.

10

Double the speed and confirm the flow doubles

Turn twice as fast for the same time. Roughly twice the air. Flow is set by speed, not by how hard the air is pushing back.

Alatan diperlukan:

StopwatchStopwatch
11

Feel for leakage past the lobes

Hold the outlet shut and turn slowly. Some air slips back through the tiny clearances. The closer the fit, the less slip — which is why the gears, not the lobes, take the load.

12

Compare against the box bellows it replaced

A bellows delivers air in gusts and must be re-filled; the blower delivers a steady, continuous stream. Note which one a furnace would rather have.

13

History & Context — the water wheel that failed into a blower

The patent. US 30,157, "Blower", granted 25 September 1860 to Philander H. Roots of Connersville, Fayette County, Indiana. Read the specification and it says "I, P. H. Roots" in the singular — so this patent is Philander's. The famous "Roots brothers" is a real partnership: Philander and his brother Francis Marion Roots ran a woollen mill together and the P. H. & F. M. Roots Company grew out of it, and Francis holds patents of his own. But crediting US 30,157 to "the brothers" overstates what this document says — a good reminder to read the inventor line, not the company name.

The origin is a genuine accident. The story, which the Roots company itself told, is that the brothers were building a water-driven motor for their mill — two lobed rotors meant to be spun by flowing water. It ran poorly as a motor. But someone spun it by hand and felt it blow a strong draught of air out the other side. They had built a good air pump while trying to build a bad water motor, and had the sense to patent the machine for what it actually did. Run one of these devices backwards and it is a motor; run it forwards and it is a blower — steps 7 to 9 are the blower direction.

Why positive displacement matters. A fan or centrifugal blower accelerates air and relies on that speed to push it along; raise the downstream pressure and the air simply slides back past the blades (step 2). A Roots blower instead encloses a fixed pocket of air between a lobe and the case and walks it from inlet to outlet, so it moves the same volume per revolution almost regardless of pressure (step 9). That is exactly what a deep mine, a blast furnace or a grain elevator needs — guaranteed air against a stubborn load.

The detail that makes it work is the gears. The two lobes must not touch, or they would grind themselves to dust in minutes. A pair of equal timing gears on the shaft ends holds them in perfect opposite step with a fine clearance, so they seal against each other aerodynamically without ever making contact (steps 5 and 6). The lobes carry the air; the gears carry the load. That division of labour is the invention.

Where it went. Roots blowers ventilated mines, forced blast furnaces, aerated sewage and moved grain for a century, and the identical geometry — two meshing lobes, external timing gears — became the Roots-type supercharger that force-feeds air into a racing or truck engine. A device invented in an Indiana woollen mill in 1859 is still bolted to the top of engines today.

Bahan

3

Alatan Diperlukan

6

CC0 Domain Awam

Blueprint ini dikeluarkan di bawah CC0. Anda bebas menyalin, mengubah, mengedar, dan menggunakan karya ini untuk sebarang tujuan, tanpa meminta kebenaran.

Sokong Pembuat dengan membeli produk melalui Blueprint mereka di mana mereka memperoleh Komisen Pembuat ditetapkan oleh Penjual, atau cipta iterasi baru Blueprint ini dan sertakan ia sebagai sambungan dalam Blueprint anda sendiri untuk berkongsi hasil.

Perbincangan

(0)

Log masuk untuk menyertai perbincangan

Memuatkan komen...