- Diameter of the rotating part
- 0.1m
- Rotational speed
- 1000rpm
314.1593m/min
Open with these values314.1593m/min
Result: 314.1593 m/minSurface speed is the circumference times the number of turns per minute: a 0.1 m part at 1000 rpm moves its rim 314.16 m every minute. Enter the diameter in metres — a 100 mm workpiece is 0.1 m — and the speed in revolutions per minute, and the answer comes out in metres per minute.
Held fixed: Diameter of the rotating part 0.1000 m.
| Rotational speed (rpm) | Result (m/min) |
|---|---|
| 0.0 | 0.0000 |
| 250.0 | 78.5398 |
| 500.0 | 157.0796 |
| 750.0 | 235.6194 |
| 1,000.0Your value | 314.1593 |
| 1,250.0 | 392.6991 |
| 1,500.0 | 471.2389 |
| 1,750.0 | 549.7787 |
| 2,000.0 | 628.3185 |
314.1593m/min
Open with these values78.5398m/min
Open with these values235.6194m/min
Open with these valuesv = π × d × n
| Diameter, rpm | Typical job | Surface speed (m/min) |
|---|---|---|
| 1, 1 | One metre across, one turn a minute | 3.1416 |
| 0.05, 500 | 50 mm bar, slow lathe pass | 78.5398 |
| 0.2, 200 | 200 mm faceplate, low speed | 125.6637 |
| 0.025, 3000 | 25 mm end mill, high speed | 235.6194 |
| 0.1, 1000 | 100 mm workpiece at 1000 rpm | 314.1593 |
Multiply π by the diameter and by the rotational speed: v = π × d × n. Use metres for the diameter and revolutions per minute for the speed to get metres per minute. A 0.1 m part at 1000 rpm reaches about 314.16 m/min.
Surface speed — also called cutting speed or rim speed — is how fast a point on the outer edge of a rotating part actually travels. It is the circumference multiplied by the number of turns each minute. It therefore depends on both the diameter and the rotational speed.
Rpm counts full turns per minute; surface speed measures how far the rim travels in that minute. Two parts at the same rpm can have very different surface speeds, because a larger diameter covers more distance per turn.
Divide it by 1000 first: a 100 mm workpiece is 0.1 m. Workshop tables usually write the formula as v = π × D × n ÷ 1000 with D in millimetres, which is the same thing with the conversion folded in.
Tool and material makers quote a recommended cutting speed in m/min for each tool and workpiece pairing, because that rim speed — not the rpm — controls how cleanly the tool cuts. You pick the spindle speed that delivers it for your diameter: too slow leaves a rough cut, too fast overheats and wears the tool.
Information, not professional advice.
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