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The Ingersoll Rand 47588563001 23708423 Air Oil Separator is a key separation element used in compatible Ingersoll Rand compressor systems to remove entrained oil from compressed air before the air continues toward the downstream air circuit.
In an oil-flooded compressor, lubrication oil circulates through the compression system together with the compressed air. After compression, the two-phase mixture must pass through a dedicated separation stage. The 23708423 Air Oil Separator performs this separation function, allowing recovered oil to return to the appropriate oil circuit while substantially reducing oil carryover in the compressed-air stream.
The component is associated with service assembly 47588563001 and is identified by part number 23708423. Its condition has a direct relationship with separator performance, pressure drop, oil consumption, and the quality of air delivered from the compressor package.
For maintenance engineers, separator replacement should not be based solely on operating hours. Differential pressure, oil carryover, compressor operating conditions, and the condition of related oil-system components should also be considered when evaluating separator performance.
| Parameter | Specification |
|---|---|
| Manufacturer | Ingersoll Rand |
| Part Number | 23708423 |
| Service Assembly | 47588563001 |
| Product Type | Air Oil Separator |
| Primary Function | Compressed Air / Oil Separation |
| System Role | Oil Separation and Recovery |
| Application | Oil-Flooded Industrial Compressor Systems |
| Outer Diameter | 240 mm |
| Weight | 4.9 kg |
The 23708423 separator is intended for compressor applications where effective oil recovery and low oil carryover are important to system operation.
Key characteristics include:
The separator operates as part of the compressor’s overall oil-management system, so separator condition should be evaluated together with the oil filter, scavenge system, oil, seals, and associated piping.
The 23708423 Air Oil Separator works by separating oil droplets from the compressed-air stream after the compression stage.
A simplified process is:
Air/Oil Mixture → Separator → Separated Air → Air Outlet
with recovered oil following a separate path:
Separated Oil → Oil Recovery / Scavenge Circuit → Compressor Oil System
During compression, lubricating oil becomes mixed with the compressed air. The mixture enters the separator vessel, where the separation media and internal flow conditions cause entrained oil to collect rather than remain suspended in the air stream.
The separation process generally involves:
Mixture Entry
The compressed air containing suspended oil enters the separator assembly.
Primary Separation
Larger oil droplets are separated as the flow passes through the separator structure.
Fine Oil Separation
Smaller oil droplets are retained by the separation media, reducing the amount of oil remaining in the compressed-air stream.
Oil Recovery
Collected oil is directed back toward the compressor’s oil circuit through the appropriate recovery path.
Cleaned Air Discharge
The separated compressed air continues toward the downstream air system.
Separator loading can gradually increase pressure drop. Excessive restriction or deteriorated separation performance may therefore appear as increased oil carryover, abnormal pressure conditions, or increased compressor operating costs.
The 23708423 occupies the air/oil separation stage between compression and compressed-air delivery.
A simplified compressor process is:
Air Intake → Compression → Air/Oil Mixture → 23708423 Separator → Compressed Air Outlet
At the same time, recovered oil is directed back into the lubrication circuit.
This makes the separator important to both sides of compressor operation. If oil separation becomes ineffective, downstream air quality can deteriorate. If the separator becomes excessively restricted, compressor efficiency and operating conditions can also be affected.
For this reason, separator performance should be evaluated using multiple operating indicators rather than relying on a single symptom.
| Application | Typical Use |
|---|---|
| Manufacturing Plants | Maintaining compressed-air quality |
| Automotive Production | Supplying oil-controlled compressed air |
| Process Industries | Supporting continuous compressor operation |
| Machinery Manufacturing | Compressed-air generation |
| Industrial Utilities | Compressor air system maintenance |
| Pneumatic Production Lines | Reducing oil carryover |
| Compressor Service Operations | Separator replacement and overhaul |
The exact application depends on the compressor model and equipment configuration associated with service assembly 47588563001.
Air oil separator replacement should be carried out as part of a controlled compressor maintenance procedure.
Recommended practices include:
If oil carryover remains excessive after separator replacement, technicians should investigate the oil level, scavenge system, operating pressure, compressor condition, and other components rather than immediately assuming the new separator has failed.
The 23708423 Air Oil Separator operates together with several components in the compressor’s lubrication and air treatment system.
| Component | Function |
|---|---|
| Air End | Compresses incoming air |
| Compressor Oil | Provides lubrication and cooling |
| Oil Filter | Removes contaminants from circulating oil |
| Air Oil Separator | Separates oil from compressed air |
| Scavenge / Oil Return System | Returns separated oil to the oil circuit |
| Separator Housing | Contains the separation element |
| Cooler | Controls oil or compressed-air temperature |
| Minimum Pressure Valve | Maintains required system pressure |
The interaction between these components directly affects oil carryover, pressure drop, cooling performance, and compressor reliability.
| Model / Part Number | Product Type | Typical Application |
|---|---|---|
| Ingersoll Rand 47588563001 23708423 | Air Oil Separator | Air/oil separation |
| Ingersoll Rand 47588563001 23424922 | Coolant Filter | Coolant circuit filtration |
| Ingersoll Rand 47588563001 54672530 | Air Filter | Air intake filtration |
| Ingersoll Rand 47588563001 23392368 | Minimum Pressure Valve Service Kit | Minimum pressure valve service |
| Ingersoll Rand 47588563001 | Service Assembly | Compressor maintenance |
As contamination accumulates in the separator media, flow resistance can increase. Depending on compressor operating conditions, this may contribute to increased pressure drop, reduced efficiency, or changes in compressor operating behavior.
Oil carryover can have several causes. Engineers should check oil level, scavenge-line operation, separator installation, system operating conditions, and other oil-management components before concluding that the replacement separator is the cause.
The separator housing, sealing surfaces, oil-return or scavenge path, associated valves, connections, and signs of abnormal contamination should be inspected. These checks can identify problems that a separator replacement alone may not correct.
The separator reduces the amount of lubricating oil remaining in the compressed-air stream. Poor separation can increase downstream oil contamination, making separator condition an important consideration when maintaining compressed-air quality.