Convert gram-force meter [gf*m] to kilogram-force millimeter Online | Free torque Converter
Gram-Force Meter [gf·m]
Gram-force meter (gf·m) is a unit of torque or moment of force that measures the rotational force produced when a force of one gram-force (gf) is applied at a distance of one meter (m) from a pivot point. This unit is often used in mechanical engineering, precision instrumentation, and scientific research where moderately small torque values need to be measured or specified.
Although the newton-meter (N·m) is the SI standard unit of torque, the gram-force meter is still useful in certain contexts, particularly when forces are expressed in gram-force due to traditional or practical reasons. The gf·m allows for torque measurements in applications involving moderate force levels but requiring a metric unit of length that is larger than centimeters or millimeters.
To put it in perspective, 1 gf·m equals approximately 9.80665 × 10⁻³ newton-meters. This unit can be handy in calibrating instruments or testing devices that operate within low to medium torque ranges, bridging the gap between small-scale and larger-scale torque measurements.
Kilogram-Force Millimeter [kgf·mm]
Kilogram-force millimeter (kgf·mm) is a unit of torque or moment of force used to quantify small rotational forces where the force is expressed in kilogram-force (kgf) and the distance in millimeters (mm). It represents the torque generated when a force of one kilogram-force is applied at a lever arm length of one millimeter from the pivot point.
This unit is commonly employed in fields such as mechanical engineering, precision instrument calibration, and small machinery design. It is especially useful for measuring or specifying torque in devices requiring fine control over small rotational forces, such as torque on small bolts, delicate mechanical assemblies, or calibration of torque wrenches.
While the standard SI unit for torque is the newton-meter (N·m), kgf·mm provides a convenient scale in applications where the metric system is preferred but the force is expressed in kilogram-force due to historical or practical reasons. For reference, 1 kgf·mm is approximately equal to 9.80665 × 10⁻³ newton-meters.
Using kilogram-force millimeters allows for precise torque measurement in contexts where small-scale torque values are critical to ensure proper assembly and operation of mechanical systems.
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