Convert dyne meter [dyn*m] to kilogram-force centimeter Online | Free torque Converter
Dyne Meter [dyn·m]
Dyne meter (dyn·m) is a unit of torque or moment of force used in the centimeter-gram-second (CGS) system, though it incorporates a meter as the distance unit, making it somewhat less common in pure CGS contexts. It represents the torque produced when a force of one dyne is applied at a distance of one meter (m) from a pivot point. Since the dyne is a very small unit of force (1 dyne = 10⁻⁵ newtons), the dyne meter measures relatively small torque values compared to SI units like newton-meter (N·m).
This unit might be encountered in specialized scientific research, material testing, or micro-mechanical applications where small forces act over longer distances. However, because meters are typically part of the SI system, using dyn·m is less common, and scientists usually prefer the SI unit newton-meter for torque involving meter distances.
In terms of conversion, 1 dyn·m equals 10⁻⁵ newton-meters (N·m). Although dyne meter is not frequently used, understanding it can be important when dealing with legacy data or interdisciplinary work involving CGS and SI units.
Kilogram-Force Centimeter [kgf·cm]
Kilogram-force centimeter (kgf·cm) is a unit of torque or moment of force that measures rotational force by applying a force of one kilogram-force (kgf) at a distance of one centimeter (cm) from a pivot point. This unit is widely used in mechanical engineering, instrument calibration, and small machinery design, where moderate torque values need to be measured with precision.
The kilogram-force (kgf) itself is a unit of force based on the gravitational force exerted by one kilogram of mass, making kgf·cm intuitive for practical applications involving mechanical components and assemblies. It is especially common in industries dealing with small to medium-sized torques, such as automotive, robotics, and manufacturing sectors.
Though the newton-meter (N·m) is the official SI unit of torque, kgf·cm remains popular in many settings due to historical use and convenience when working with forces in kilograms and distances in centimeters. For conversion, 1 kgf·cm is approximately 0.09807 newton-meters.
Using kilogram-force centimeters helps engineers and technicians accurately control and specify torque levels, preventing damage and ensuring optimal performance of mechanical systems.
No conversions available for torque.