Guías para coleccionistas
Steam Locomotive Wheel Arrangements Explained: 4-6-2, 2-8-2 and More

Numbers such as 4-6-2 and 2-8-2 describe a steam locomotive’s wheel arrangement using the Whyte notation system. For model railroaders, those numbers are more than historical shorthand: they hint at the locomotive’s length, driver layout and the amount of curve clearance the model may require.
Read the numbers from front to back
The first number counts leading wheels, the second counts powered driving wheels and the final number counts trailing wheels. A 4-6-2 therefore has four leading wheels, six driving wheels and two trailing wheels.
Common examples
- 0-6-0: no leading or trailing wheels, six drivers; commonly associated with switching work.
- 2-8-0: two leading wheels and eight drivers.
- 2-8-2: two leading, eight driving and two trailing wheels.
- 4-6-2: four leading, six driving and two trailing wheels.
- 4-8-4: four leading, eight driving and four trailing wheels.
Wheel arrangement does not equal model radius
Two models with the same prototype wheel arrangement can have different chassis articulation, tender drawbars and manufacturer radius specifications. Always use the model maker’s minimum-radius guidance rather than deciding from the Whyte notation alone.
The tender adds another geometry problem
Steam locomotives often have electrical connections and a drawbar between engine and tender. Tight curves can increase the angle between them. Long tenders and close-coupled drawbars may need more room than the locomotive’s drivers suggest.
Choose the locomotive around the layout
A large steam locomotive can be visually impressive, but a compact layout built from tight sectional curves may be happier with shorter equipment. Match the locomotive to the track you actually have, not the layout you may build years from now.
Compare this with MM’s steam vs diesel guide and HO radius guide. Browse model trains for current steam and diesel options.


