Fluidguard Machinery Equipment Co., Ltd. amy@aida-machinery.com
Call Us : 0086-15137376132
Model : 11000949
Type : Oil Separators Filters
Replacement for : 11000949
High-temperature oil-air mixture discharged from compressor airend enters the separation tank; large liquid oil droplets sink to tank bottom via gravity primary separation.Mixed gas penetrates the multi-layer glass fiber media of 11000949 separator element, tiny 0.1μm oil mist collides with fiber la
Part numbers marked "replacement" are not affiliated with the original manufacture.
Complete Technical Specifications
Separation Performance
Filter Media: Multi-layer gradient borosilicate glass fiber composite
Capture Precision: 0.1μm ultra-fine oil mist particles
Separation Efficiency: ≥99.99%
Residual Oil Content in Outlet Air: 3–6 ppm
Initial Pressure Drop: ≤0.02 MPa
Replacement Alarm Differential Pressure: ≥0.08 MPa
Operating Working Conditions
Max Working Pressure: 16 bar
Medium Temperature Range: -10°C ~ +120°C
Applicable Medium: Mixed fluid of compressed air/vacuum air + lubricant oil mist
Standard Service Life: 4,000–6,000 running hours
Sealing Material: High-temperature oil-resistant FKM fluororubber gasket
Mount Thread: Standard internal spin-on thread
Structural Design Features
Double-layer galvanized perforated metal inner & outer support mesh, prevents filter media collapse under long-term high airflow pressure
Built-in central vertical oil return tube, condensed lubricant automatically flows back to equipment oil sump
Integrated metal spin-on thread base, direct screw installation for fast maintenance
Dual-stage separation design: Gravity sedimentation for large oil droplets + coalescence filtration for tiny oil mist
Working Principle
High-temperature oil-air mixture discharged from compressor airend enters the separation tank; large liquid oil droplets sink to tank bottom via gravity primary separation.
Mixed gas penetrates the multi-layer glass fiber media of 11000949 separator element, tiny 0.1μm oil mist collides with fiber layers and aggregates into large liquid oil droplets.
Aggregated oil flows down the inner wall of the spin-on cartridge and drains back to the lubrication system through the central oil return pipe for cyclic reuse.
Clean air without oil mist passes through the central channel and is delivered to downstream production equipment.