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Oil Separators Filters

DE4052 Air-Oil Separator Filter

DE4052 Air-Oil Separator Filter

Model : DE4052 

Type : Oil Separators Filters

Replacement for : DE4052 

Automotive component electrostatic painting workshops, metal cutting & welding factories, medium plastic injection molding production lines, food & beverage sterile packaging pneumatic systems, textile factory central compressed air supply, general machinery processing pneumatic tool stations.

Part numbers marked "replacement" are not affiliated with the original manufacture.

Description

Core Technical Specifications

Filtration Grade: Primary submicron high-efficiency coalescing separation for medium-flow industrial screw compressors

Absolute Separation Precision: 0.1 μm micro oil mist aerosols

Oil Mist Capture Efficiency: ≥99.999% interception rate for oil particles ≥0.1 μm

Filter Media: Imported multi-layer gradient HV borosilicate glass fiber composite media, anti-hydrolysis, continuous high temperature resistant up to 108°C

Max Continuous Working Pressure: 1.0 MPa

Continuous Operating Temperature Range: -10°C ~ +108°C

Clean low-dust factory workshop: 4,000–6,000 operating hours or 12 months

Heavy dust, high ambient temperature, 24/7 continuous full-load production: Shorten service life to 3,000–4,500 hours

Mandatory Replacement Trigger: Differential pressure ΔP ≥ 0.08 MPa or visible oil carryover in downstream air pipelines

Outer perforated galvanized steel mesh jacket: Anti-rust, resists long-term erosion of high-temperature oil vapor & acidic condensate inside oil tank

Thickened perforated central support tube: Anti-collapse deformation under steady medium airflow surges

Integrated flat steel flange + full-face heat-resistant fiber sealing cushion, zero air/oil bypass leakage

Central built-in micro oil return drain pipe: Collects coalesced liquid oil and refluxes back to tank oil sump to avoid secondary liquid re-entrainment by high-speed turbulent airflow

Key Product Advantages

Multi-layer gradient glass fiber media with large dirt holding capacity & stable low pressure loss

Large pleated surface area holds massive oil sludge, water and dust contaminants; differential pressure climbs gently throughout full service cycle even under continuous heavy oil load. Layered coalescing structure aggregates micro oil droplets into continuous liquid film for gravity reflux, maintaining consistent ultra-high separation efficiency without performance decay.

Integrated central oil return pipeline eliminates secondary oil carryover risk

Coalesced liquid oil flows down dedicated central drain tube directly back to tank bottom oil sump, preventing separated oil from being blown back into clean air stream by high-speed turbulent airflow, sustaining stable low oil carryover performance for full service life.

Full galvanized anti-corrosion & anti-static metal framework adapts to harsh humid high-temperature tank environments

All metal support frames adopt galvanized anti-rust coating, resisting long-term erosion of high-temperature oil vapor and acidic condensate inside oil tank; built-in static conductive structure eliminates hidden static accumulation fire hazard inside the separator element.

Working Principle

High-temperature oil-air mixed gas discharged from screw rotors enters outer cavity of separator element. Large oil droplets collide with outer steel perforated jacket and drop into oil tank by gravity for primary coarse separation.

Fine submicron oil mist aerosols penetrate multi-layer gradient glass fiber media; tiny oil particles collide, aggregate and coalesce into continuous liquid oil films on fiber surfaces.

Coalesced liquid oil flows downward along media layers, converges into central built-in oil return tube, and refluxes back to oil sump for circulation reuse.

Clean low-oil compressed air (residual oil ≤3 ppm) passes through inner core support tube and flows out of oil tank to downstream air treatment equipment and production terminals.

When media is fully saturated with carbon sludge and oil deposits, differential pressure rises sharply; excessive pressure difference may crack glass fiber media and cause massive oil carryover failure.

Application Scope

Automotive component electrostatic painting workshops, metal cutting & welding factories, medium plastic injection molding production lines, food & beverage sterile packaging pneumatic systems, textile factory central compressed air supply, general machinery processing pneumatic tool stations.

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