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To convert from Kilogram-force (kgf) to Pound-force (lbf), use the following formula:
Pound-force (lbf)
= 9.807 × 14.44822× Kilogram-force (kgf)
= 2.2047021055613256539× Kilogram-force (kgf)
Let's convert 5 Kilogram-force (kgf) to Pound-force (lbf).
Using the formula:
5 × 2.2047021055613256539 = 11.02351052780662827
Therefore, 5 Kilogram-force (kgf) is equal to 11.02351052780662827 Pound-force (lbf).
How many kilogram-forces are in one pound-force? One Pound-force (lbf) contains 0.45357601713062098501 Kilogram-forces (kgf) — the inverse of the factor above. Multiplying by 2.2047021055613256539 takes you from kilogram-forces to pound-forces; multiplying by 0.45357601713062098501 brings you back.
Put in words: one kilogram-force equals 2.2047021055613256539 pound-forces, so the kilogram-force is the larger unit of this pair. Converting between them never changes the amount of force being measured — only the size of the unit you count it in.
A kilogram-force (kgf), also called a kilopond (kp), is the force exerted by gravity on a mass of one kilogram at standard gravity.
The kilogram-force is a gravitational metric unit: it takes the convenience of the imperial system — where the number on the scale and the number in the force calculation match — and applies it to metric mass. If a load is 250 kg, its weight is simply 250 kgf.
That convenience is also why the unit was deprecated. It bakes the Earth's gravity into the definition, so any calculation using it silently assumes you are standing on this planet at sea level. The SI system replaced it with the newton, and modern standards discourage kgf in new work.
Deprecated does not mean gone. Kilogram-force still appears in:
If you are reading an old service manual, expect kgf. If you are writing a new specification, use newtons.
| From | To | Multiply by |
|---|---|---|
| kgf | N | 9.807 |
| kgf | kN | 0.009807 |
| kgf | lbf | 2.20462 |
A pound-force (lbf) is the force that gravity exerts on a mass of one pound at the Earth's surface. It is the standard unit of force in the US customary and imperial systems.
This is the single most common source of error in imperial calculations. The pound (lb) is a unit of mass; the pound-force (lbf) is a unit of force. They share a name and are numerically equal only at standard gravity on Earth.
Engineering documents disambiguate them by writing lbm for pound-mass and lbf for pound-force. When a specification says "50 lb" without qualification, check the context: a bolt torque is force, a shipping weight is mass.
| From | To | Multiply by |
|---|---|---|
| lbf | N | 4.44822 |
| lbf | kN | 0.00444822 |
| lbf | kgf | 0.453592 |
Here are some quick reference conversions from Kilogram-force (kgf) to Pound-force (lbf):
| Kilogram-forces | Pound-forces |
|---|---|
| 0.000001 kgf | 0.0000022047021055613256539 lbf |
| 0.001 kgf | 0.0022047021055613256539 lbf |
| 0.1 kgf | 0.22047021055613256539 lbf |
| 1 kgf | 2.2047021055613256539 lbf |
| 2 kgf | 4.4094042111226513078 lbf |
| 3 kgf | 6.6141063166839769617 lbf |
| 4 kgf | 8.8188084222453026156 lbf |
| 5 kgf | 11.02351052780662827 lbf |
| 6 kgf | 13.228212633367953923 lbf |
| 7 kgf | 15.432914738929279577 lbf |
| 8 kgf | 17.637616844490605231 lbf |
| 9 kgf | 19.842318950051930885 lbf |
| 10 kgf | 22.047021055613256539 lbf |
| 20 kgf | 44.094042111226513078 lbf |
| 30 kgf | 66.141063166839769617 lbf |
| 40 kgf | 88.188084222453026156 lbf |
| 50 kgf | 110.2351052780662827 lbf |
| 100 kgf | 220.47021055613256539 lbf |
| 1000 kgf | 2204.7021055613256539 lbf |
| 10000 kgf | 22047.021055613256539 lbf |