• Ingersoll Rand 47667846001 80060239 Coolant
  • Ingersoll Rand 47667846001 80060239 Coolant
  • Ingersoll Rand 47667846001 80060239 Coolant
  • Ingersoll Rand 47667846001 80060239 Coolant
Product Overview The Ingersoll Rand 47667846001 80060239 Coolant is a compressor lubricant and cooling fluid used in compatible Ingersoll Rand rotary screw compressor systems. It circulates through the ……
Ingersoll Rand 47667846001 80060239 Coolant
  • Ingersoll Rand
  • 47667846001 80060239
  • Coolant
  • USA
  • 15 L
  • 15 kg
  • Xiamen, China
  • New & In Stock
  • T/T, PayPal, Western Union
  • 1 Year
  • 1-3 Working Days
  • DHL, UPS, TNT, FedEx and EMS.
  • 24-Hour Service
  • COO
  • 49

Our advantage

Ingersoll Rand 47667846001 80060239 Coolant

Global Logistics

We have a 10-year logistics and express cooperation agreement, so our products can be shipped to any place in the world.

Ingersoll Rand 47667846001 80060239 Coolant

Brand new and original

Our products are imported in bulk from the place of origin. Because of the cooperative relationship, our products are all original and 100% new.

Ingersoll Rand 47667846001 80060239 Coolant

24-hour service

We provide 7*24 hours service to our customers. We will be there whenever you need us.

Ingersoll Rand 47667846001 80060239 Coolant

Price advantage

All our products are priced very favorably because we have our own warehouse and supply.


Company Information
E-mail [email protected]
Mobile +8615980777398
Whatsapp +8615980777398
WeChat 15980777398

Product Overview

The Ingersoll Rand 47667846001 80060239 Coolant is a compressor lubricant and cooling fluid used in compatible Ingersoll Rand rotary screw compressor systems. It circulates through the compressor to support lubrication and heat management during continuous compression operation.

In an oil-injected screw compressor, the lubricant performs several functions at the same time. It helps reduce friction between moving components, assists with sealing within the compression process, and carries heat away from the airend and other lubricated components. The conditioned coolant is then circulated through the compressor’s oil-management system for continued use.

Coolant condition has a direct relationship with compressor operating performance. Contamination, oxidation, incorrect lubricant selection, or an unsuitable service interval can affect lubrication quality and heat transfer. Regular inspection and replacement therefore form part of routine compressor maintenance.

The 47667846001 80060239 part number should be matched against the applicable compressor documentation before use. The correct lubricant specification, service interval, storage condition, and filling procedure should be confirmed for the installed compressor.


Technical Specifications

Parameter Specification
Manufacturer Ingersoll Rand
Part Number 47667846001 80060239
Product Type Coolant
Primary Function Compressor lubrication and heat management
System Role Compressor coolant / lubricant
Application Rotary screw compressor systems
Capacity 15 L
Weight 15 kg

Product Features

  • Compressor coolant for compatible Ingersoll Rand equipment
  • Supports lubrication of compressor moving components
  • Assists with heat management during compression
  • Contributes to sealing and lubrication within oil-injected screw compressors
  • Suitable for scheduled compressor servicing
  • Used within the compressor’s lubricant circulation system
  • Supports continued operation of the airend and associated lubricated components
  • Requires verification of lubricant compatibility before filling

Working Principle

The coolant circulates through the compressor lubrication system while the compressor is operating. It reaches lubricated components and carries out heat generated by compression and mechanical movement.

Within an oil-injected screw compressor, the lubricant is introduced into the compression process to provide lubrication, sealing, and cooling. After the air/oil mixture leaves the airend, the lubricant is separated from the compressed air and returned through the oil circuit.

Coolant Reservoir / Oil Circuit → Compressor Airend → Air/Oil Separation → Oil Cooling / Filtration → Coolant Return → Compressor

The circulation path allows the coolant to be reused while maintaining the required lubrication and thermal-management functions. The condition of the coolant, oil filter, separator system, cooler, and circulation components can all influence compressor performance.


Role in a Rotary Screw Compressor Lubrication Architecture

The 80060239 Coolant is part of the compressor’s lubrication and thermal-management circuit rather than a control-system component. It works together with the airend, oil filter, separator, oil cooler, and circulation path.

Coolant / Lubricant → Airend → Air/Oil Separator → Oil Filter / Cooler → Oil Circuit → Airend

System Element Function
Coolant / Lubricant Lubricates components and assists heat removal
Screw Airend Compresses air and uses lubricant during operation
Air/Oil Separator Separates lubricant from compressed air
Oil Filter Removes contaminants from the lubricant circuit
Oil Cooler Controls lubricant temperature
Oil Return Circuit Returns separated lubricant to the compressor
Compressor Controller Monitors and manages compressor operating functions
Compressed-Air System Receives the generated compressed air

Correct coolant condition supports the mechanical and thermal functions of the compressor, while the associated oil-management components maintain circulation and separation.


Industrial Applications

Application Typical Use
Rotary Screw Compressors Lubrication and cooling of compressor components
Manufacturing Plants Routine compressor lubricant servicing
Automotive Production Maintenance of plant compressed-air equipment
Packaging Facilities Compressor lubrication system maintenance
Chemical Processing Lubrication of compatible industrial compressors
Oil & Gas Facilities Compressor service and lubricant replacement
Power Generation Maintenance of auxiliary compressed-air systems
General Industrial Utilities Compressor coolant replacement and servicing

Installation and Maintenance

  1. Verify the 47667846001 80060239 part number and lubricant specification against the compressor documentation before use.
  2. Confirm that the coolant is intended for the installed compressor and lubrication system.
  3. Shut down and isolate the compressor before servicing the coolant circuit.
  4. Relieve system pressure and allow the equipment to reach a safe service condition.
  5. Drain used coolant according to the applicable compressor maintenance procedure.
  6. Inspect the oil circuit for contamination, deposits, or signs of abnormal lubricant condition.
  7. Check the oil filter and related circulation components before adding fresh coolant.
  8. Fill the compressor using the approved filling procedure and avoid introducing contaminants into the lubricant circuit.
  9. Verify the lubricant level according to the compressor manufacturer’s specified operating condition.
  10. Start the compressor under controlled conditions and check for abnormal temperature, pressure, or lubrication behavior.
  11. Inspect the system for leaks and investigate unusual coolant discoloration, odor, or operating temperature.
  12. Record the coolant replacement and maintenance observations in the compressor service history.

Compatible System Components

Component Function
Ingersoll Rand Screw Airend Compression and lubricant injection
Oil Separator Separates lubricant from compressed air
Oil Filter Removes contaminants from the oil circuit
Oil Cooler Removes heat from circulating lubricant
Oil Return Line Returns separated lubricant to the airend
Oil Reservoir / Separator Vessel Stores and circulates compressor lubricant
Compressor Controller Monitors operating conditions
Temperature Sensors Monitor lubricant or compressor temperature
Pressure Sensors Monitor relevant compressor pressure conditions

Recommended Related Models

Model / Product Family Product Type Typical Application
Ingersoll Rand 47667846001 80060239 Compressor Coolant Compressor lubrication and cooling
Ingersoll Rand Compressor Coolants Compressor Lubricant Rotary screw compressor servicing
Ingersoll Rand Air/Oil Separator Elements Separator Element Oil separation from compressed air
Ingersoll Rand Oil Filters Oil Filter Compressor lubricant filtration
Ingersoll Rand Air Filters Air Filter Compressor intake protection
Ingersoll Rand Compressor Service Components Service Components Routine compressor maintenance
Ingersoll Rand Screw Compressor Components Compressor Components Compressor service and repair

Key Advantages

  • Supports lubrication of compressor moving components.
  • Assists with heat management within oil-injected screw compressor systems.
  • Contributes to sealing during the compression process.
  • Supports the compressor’s circulating oil-management system.
  • Suitable for scheduled maintenance of compatible Ingersoll Rand equipment.
  • Helps maintain the required lubricant condition for normal compressor operation.

Technical FAQs

Why is coolant condition important in an oil-injected screw compressor?

The lubricant performs several functions simultaneously, including lubrication, heat removal, and sealing within the compression process. Deteriorated or contaminated coolant can therefore affect more than one aspect of compressor operation.

Can the coolant be selected solely by capacity?

No. Capacity only indicates how much fluid is involved in the specified product package or filling requirement. The lubricant specification and compatibility with the installed compressor must also be confirmed before use.

What should be checked if compressor temperature increases after a coolant change?

Check the coolant level and specification first, followed by the oil cooler, circulation path, oil filter, temperature sensors, and general compressor operating conditions. An elevated temperature should not automatically be attributed to the coolant itself.

What should be done when changing the compressor coolant?

The compressor should be isolated and safely depressurized before draining the existing lubricant. The oil circuit should be inspected for contamination, the appropriate service components checked, and the replacement coolant added according to the equipment maintenance procedure.



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