150 L/min Rated Flow
The VC-1500 is selected when circulation demand is higher than a dedicated single-machine unit can provide. It supports larger sumps and shared return circuits, subject to verified fluid conditions.

VC-1500 high flow coolant centrifuge rated to 150 L/min for central sumps and multiple-machine fluid circuits with automatic sludge discharge.
No online payment. Model selection and commercial terms are confirmed for each industrial application.
The VC-1500 is selected when circulation demand is higher than a dedicated single-machine unit can provide. It supports larger sumps and shared return circuits, subject to verified fluid conditions.
One central separation loop can serve several machines when the sump, pump, pipework and return arrangement are designed as a complete system.
Accumulated solids are removed through a controlled discharge cycle, reducing routine manual bowl cleaning during continuous production.
The VC-1500 is intended for separable suspended solids in compatible coolant and oil circuits. Final sizing must consider viscosity, temperature, contaminant density, solids generation, sump turnover and the process cleanliness target. Dissolved contamination and depleted fluid additives require separate analysis.
Rated flow describes the machine's maximum selection point, not a guaranteed result for every fluid. Pipe loss, pump duty, viscosity, temperature and the required separation result determine the commissioned operating flow.
| Specification | VC-1500 |
|---|---|
| Maximum rated flow | 150 L/min |
| Bowl speed | 3,000 rpm |
| Maximum separation force | 1,860 G |
| Solids capacity | 8 L |
| Installed power | 4.2 kW |
| Overall dimensions | 2120 × 1500 × 1080 mm |
| Machine weight | 596 kg |
| Standard electrical supply | 380V / 50Hz, three-phase |
| Optional electrical supply | 400V / 50Hz or 480V / 60Hz on request |
| Sludge handling | Automatic sludge discharge |
| Filter media | No disposable media in the centrifugal separation stage |
Pump duty, pipe diameter, controls, electrical configuration, sump turnover and service clearance are confirmed for each project.
A high-flow machine only performs as intended when the central sump and circulation loop are matched to it. The supply point should draw representative contaminated fluid rather than only the cleanest layer. The return point should support mixing without immediately short-circuiting cleaned fluid back to the suction.
Turnover begins with the actual working volume of the sump and the time available to process it. Dividing volume by the target exchange interval gives a useful starting flow, but it is not the final pump setting. We then account for pipe length, lift, bends, valves, viscosity and the pressure loss at the operating temperature. This prevents a nominal 150 L/min rating from being mistaken for guaranteed delivery at every installation.
For variable production demand, the control strategy may need a bypass, buffer volume or scheduled circulation period. We review these items before confirming the equipment arrangement. The planned Central Coolant Filtration Systems guide will cover complete system layouts; until it is published, request an engineering review through the contact page.
A central oil sump serving several presses can require more circulation than a dedicated single-machine centrifuge. Review phosphate coating residue, iron fines and solids generation.
View application →Shared coolant systems need enough turnover to keep fines moving toward the separation loop instead of accumulating in remote parts of the sump.
Flow selection should reflect lubricant viscosity, drawing speed, metal fines, tank volume and the number of drawing machines served.
Central oil or coolant systems carrying scale and metal fines require verified pipework, solids loading and return distribution.
If the process uses neat industrial oil, also review the Centrifugal Oil Cleaner guide. High-temperature oil service requires a dedicated configuration review and should not be selected from flow alone.
| Model | Rated Flow | G Force | Selection Direction | Details |
|---|---|---|---|---|
| VC-600 | 60 L/min | 6,500 G | Maximum G force, dedicated circuit | View → |
| VC-800 | 80 L/min | 2,800 G | Intermediate circulation demand | View → |
| VC-1500 | 150 L/min | 1,860 G | Multiple machines or central sump | Current model |
| VC-2000 | 200 L/min | 1,700 G | Higher flow and heavier solids duty | View → |
For a defensible recommendation, record the number of machines, sump working volume, fluid type, operating temperature, solids collected per shift, current filter media and cleaning interval. These baseline values allow the commissioned loop to be checked against the original process problem. Separation results should be confirmed from the actual fluid and contaminant, not inferred from flow rate alone.
380V/50Hz three-phase standard; 400V/50Hz and 480V/60Hz available on request.
We confirm pump duty, sump turnover, pipe routing, discharge settings and clean-fluid return before start-up.
Plan access for the bowl, discharge area, seals and routine inspection items.
View support →See the Automatic Sludge Discharge series for the full family. A lower or higher rated model may be correct when separation force, fluid behaviour or solids loading matters more than circulation flow.
Send the fluid type, sump volume, machine count, target turnover, contamination, solids generated per shift, operating temperature and available voltage.
Request a VC-1500 Review →