What it converts
Converts supported kilogram, gram, tonne, and pound mass-flow rates through kilograms per second.
MASS FLOW WORKSPACE
Convert transported mass per time among kilograms, grams, metric tonnes, and pounds per second, minute, or hour.
Conversion result
Load the reviewed example or enter a value to compare every available mass flow rate unit.
What this tool delivers
This workspace rescales mass per elapsed time without deriving it from volume flow or treating static mass as throughput.
Converts supported kilogram, gram, tonne, and pound mass-flow rates through kilograms per second.
A known mass rate, its numerator and denominator unit, destination unit, basis conditions, and output precision.
A selected mass-flow equivalent, kilogram-per-second path, full comparison table, and CSV file.
Calculation method
The source mass unit is converted to kilograms and its time denominator to seconds within one factor. The resulting kilograms per second are divided by the destination factor, preserving tonne, pound, minute, and hour conventions explicitly.
Review the NIST mass and time conversion factorsQuick answers
Mass flow describes mass transported per time and is independent of local gravitational acceleration. Weight is force and would require a gravitational field value. This converter uses kilograms, grams, tonnes, and pounds as mass units within rates; it does not convert the result to newtons or pound-force per time.
Yes, but that is a separate calculation. Multiply volume flow by density only when both refer to compatible temperature, pressure, composition, and averaging conditions. For gases or changing mixtures, density can vary substantially. Document the state and basis instead of applying a nominal value without qualification.
No. Total mass requires integrating rate over elapsed time. Multiplying one constant rate by a duration is valid only if that rate reasonably represents the whole interval. Variable processes require timestamped measurements or another integration method, plus treatment of downtime, missing samples, meter resets, and uncertainty.