How fast the gas is actually moving through your mill. Too slow and the ground material never leaves — it stays in, gets over-ground and coats the balls. Too fast and you blow coarse material out before it is finished. The balls take up most of the cross-section, so the speed depends on how full each chamber is, not just on the fan. Press MEASUREMENTS to type your mill in.
Clinker reduction, high electricity prices and tighter cement specifications put the grinding circuit under pressure. The fastest gains usually come from finding the real constraint before changing equipment or operation.
Check whether gas actually sweeps the mill and whether diaphragm area or false air is limiting drying, transport and separator performance.
Build a connected grinding audit: save every mill separately, reload previous measurements, compare changes over time and issue an editable report for the plant team.
Connected to the industry conversation around clinker-factor reduction, grinding energy, blended cement and quality control reported in World Cement, CemNet and Global Cement.See process-tool plansHalf of this calculation is how full the mill is. If the tape reading is wrong, the gas speed is wrong with it.
π/4 × D² × (1 − (how full + swell)/100) —
the mill cross-section minus what the balls occupy. The charge lifts and expands when the mill turns,
which is what the swell allows for.flow ÷ 3600 ÷ free area. Straight from your own
mill-sweep.js, with the same 1.0 to 1.5 m/s band.