Inputs
- Moving mass
- Linear velocity
- Stopping events per hour
Motion energy
Calculate kinetic energy, momentum, hourly energy events, and equivalent drop height for a linearly moving pneumatic-axis load. Enter the application values to calculate four decision-ready outputs and review the governing assumptions before selecting equipment.
Updated
Motion energy
Calculate kinetic energy, momentum, hourly energy events, and equivalent drop height for a linearly moving pneumatic-axis load. Enter the application values to calculate four decision-ready outputs and review the governing assumptions before selecting equipment.
Engineering visual
A moving mass enters a finite stopping or cushion distance. Velocity, stopping distance, deceleration, force, and absorbed energy share one motion path.
Calculation reference
Use the displayed relationship to understand how the entered conditions affect the result. Treat the output as a preliminary selection, then verify actual operating conditions, catalog limits, and safety margin.
Engineering guide
Calculate moving-load energy calculator for a pneumatic application and compare the result with supplier data.
Enter Moving mass, Linear velocity, Stopping events per hour and replace every default with application data.
Run the calculation while keeping pressure, temperature, geometry, and reference states consistent.
Interpret Kinetic energy per event, Energy handled per hour, Linear momentum against the supplier datasheet, machine risk, and an appropriate design margin.
The relationship is a first-pass rigid-body or elastic-member estimate; guides, joints, seals, and structural compliance can change the installed result.
Use pressure available at the actuator and verify mounting, cushioning, duty, speed, and catalog load limits.
FAQ