Fluidguard Machinery Equipment Co., Ltd. amy@aida-machinery.com
Call Us : 0086-15137376132
Model : DC3051
Type : Oil Separators Filters
Replacement for : DC3051
Automotive component electrostatic painting workshops, metal cutting & welding factories, medium plastic injection molding lines, food & beverage sterile packaging pneumatic systems, textile branch workshop air supply, general machinery processing pneumatic tool stations.
Part numbers marked "replacement" are not affiliated with the original manufacture.
Core Technical Specifications
Filtration Grade: Primary 0.1μm high-efficiency coalescing separation for medium industrial screw compressors
Max Continuous Working Pressure: 1.0 MPa
Operating Temperature Range: -10°C ~ +108°C
Clean low-dust factory: 3,500–5,200 operating hours or 12 months
Heavy dust / painting workshop / 24h full-load production: 2,800–4,000 hours
Mandatory Replacement Trigger: Differential pressure ΔP ≥ 0.08 MPa or visible oil carryover at air outlet
Differential Pressure Thresholds
Initial pressure drop of new element: ≤0.02 MPa
Alarm replacement differential pressure: ≥0.08 MPa
Structural Advantages
Galvanized perforated outer cage: Anti-rust, resists long-term erosion of high-temperature oil vapor and acidic condensate
Thickened central support tube: Anti-collapse under medium-volume high-speed airflow surges
Integrated flat flange + matched heat-resistant gasket: Zero bypass leakage
Built-in central oil return pipeline: Automatically recovers coalesced lubricant back to oil sump to prevent secondary oil re-entrainment
Key Product Advantages
Deep-pleated media with high dirt holding capacity & stable low pressure loss
Sufficient pleated area holds massive oil sludge, carbon deposits and liquid contaminants; differential pressure rises slowly throughout the full service cycle even under continuous full-load operation. Layered coalescing structure aggregates micro oil droplets into continuous liquid film for gravity reflux, maintaining stable ultra-high separation efficiency without performance decay.
Independent central oil return channel suppresses oil carryover
Coalesced liquid oil flows back to tank bottom via dedicated internal tube, prevents high-speed turbulent airflow from blowing separated oil back into air pipeline, keeps exhaust residual oil stably below 3 ppm and greatly reduces compressor oil consumption.
Anti-corrosion & static-safe metal frame for general industrial environments
All metal supports adopt galvanized anti-rust coating, resistant to high-temperature vapor and condensate corrosion inside oil tanks; static conductive media eliminates static discharge fire hazard in oil-air mixed atmosphere.
Working Principle
High-temperature medium-flow oil-air mixed gas from screw host enters the outer cavity of separator core; large oil droplets are intercepted and settle on outer drainage fleece via gravity for primary separation.
Remaining 0.1μm submicron oil mist penetrates multi-layer gradient glass fiber media; tiny oil particles collide, aggregate and coalesce into continuous liquid oil film.
Coalesced lubricant flows downward along media layers, converges into central built-in oil return tube and recirculates back to oil tank for reuse.
Clean compressed air with residual oil ≤3 ppm flows out from inner core air outlet to post-treatment dryers, precision filters and production pneumatic terminals.
The element cannot be cleaned or regenerated. Once media is saturated with sludge and dust, differential pressure surges and separation efficiency fails, requiring full core replacement.
Application Scope
Automotive component electrostatic painting workshops, metal cutting & welding factories, medium plastic injection molding lines, food & beverage sterile packaging pneumatic systems, textile branch workshop air supply, general machinery processing pneumatic tool stations.