Feed and Accelerate
Contaminated coolant or compatible oil enters the rotating tubular bowl and accelerates with the separation zone.
An automatic sludge discharge centrifuge separates metal fines and sludge, then removes collected solids through a controlled discharge cycle—without disposable filter media in the centrifugal separation stage.
The four core VC models cover rated flows from 60 to 200 L/min. Selection is based on more than flow: G-force, solids capacity, fluid viscosity, contaminant density, required sump turnover and discharge frequency must be reviewed together. Open a model page for its detailed specifications and inquiry route.
The automatic system separates and removes solids as a controlled operating cycle. Exact timing and control logic are set for the actual contaminant and solids loading; they are not copied from one application to another.
Contaminated coolant or compatible oil enters the rotating tubular bowl and accelerates with the separation zone.
Denser fines and sludge move toward the bowl wall while separated fluid follows the outlet path back to the sump.
The control system starts the configured discharge sequence after the selected operating condition or interval is reached.
The scraper and discharge path remove collected solids so the system can continue its next separation cycle.
A real cycle video is required before final visual completion. It should show the inlet condition, operating sequence, discharged solids and restart without editing away the transition between stages.
The tubular bowl creates the centrifugal field used for solid-liquid separation. The scraper and discharge path manage the solids retained in the collection area. These parts have different jobs: the bowl provides separation performance, while the discharge mechanism controls how accumulated material leaves the machine.
Automatic discharge reduces routine manual bowl cleaning, but it does not remove the need for inspection. Wear condition, seals, bearing condition, scraper clearance, discharge-valve movement and sludge outlet cleanliness remain part of preventive maintenance.
Automatic discharge is mainly a production-continuity and labour decision. It is usually considered when solids are generated repeatedly, the process runs across multiple shifts or stopping for manual cleaning would disturb the line.
Machining, cold forming, grinding, wire drawing and rolling operations may introduce solids throughout the shift rather than in one short batch.
A higher-flow model can support circulation from several machines when the sump, pump and return routing are engineered as one system.
Controlled sludge discharge reduces the need to open and clean a collection bowl at frequent production intervals.
Operators still inspect the discharge path, scraper, seals and bearings. Process settings must be checked when the contaminant or production rate changes.
Batch use, low solids loading, a dedicated single machine or a predictable cleaning window may justify a simpler manual-discharge centrifuge with lower system complexity.
The five automatic configurations cover different combinations of separation force, rated flow, solids capacity and enclosure. The table supports initial screening; final selection requires the fluid and contamination data listed at the bottom of this page.
| Model | Flow Rate | Speed | G-Force | Solids Capacity | Selection Direction | |
|---|---|---|---|---|---|---|
| VC-600 | 60 L/min | 8,000 rpm | 6,500 G | 2 L | Highest G-force; fine dense solids | View Model → |
| VC-600E | 60 L/min | 8,000 rpm | 6,500 G | 2 L | VC-600 performance; enclosed housing | Page in development |
| VC-800 | 80 L/min | 4,500 rpm | 2,800 G | 3.2 L | Mid-range flow selection | View Model → |
| VC-1500 | 150 L/min | 3,000 rpm | 1,860 G | 8 L | Multiple machines; central sump | View Model → |
| VC-2000 | 200 L/min | 3,000 rpm | 1,700 G | 20 L | High solids loading; largest capacity | View Model → |
Rated flow is not a guaranteed separation result. Viscosity, temperature, particle density, particle size, sump volume, piping and pump duty affect actual performance. The VC-600E dimensions and weight differ from the VC-600 because of its enclosed housing, although its main separation parameters are the same.
Return to the Coolant Centrifuge category guide →Phosphate coating residue and iron fines can build continuously in cold heading oil. Automatic discharge reduces repeated manual solids removal.
View Application →Fine chips, swarf and grinding contamination may circulate through dedicated machines or a shared sump across multiple shifts.
Wire drawing lubricant and drawing emulsion can carry aluminium fines, copper fines and other dense metallic contamination.
Mill scale and metallic solids can require repeated separation where a manual cleaning interval would be disruptive.
A production installation may also require a circulation pump, coarse screen, buffer or central sump, controls and safe service clearance. The centrifuge should be integrated as one treatment stage within the complete fluid circuit.
Send the operating temperature, fluid viscosity, contaminant description, machine count, sump volume and required flow before model selection. A fluid sample or site video can clarify difficult sludge behaviour.
The visible output of the automatic cycle is the discharged solids stream. Its moisture, texture and volume depend on the fluid, contaminant, process temperature, flow and control settings. One photograph cannot represent every application.
Commissioning should establish a baseline for solids volume, discharge interval, sump-cleaning frequency, fluid-change interval and any disposable filter media previously used. Compare the same measures after the system reaches stable operation.
We do not apply a universal savings figure. Disposal requirements also depend on the retained fluid, contaminant composition and local environmental rules.
Send the fluid type, operating temperature, contaminant, required flow, sump volume, machine count, current filtration method and available voltage. We will compare G-force, flow and solids capacity before recommending a model.