• Ingersoll Rand 23710842 95022349 O-Ring
  • Ingersoll Rand 23710842 95022349 O-Ring
  • Ingersoll Rand 23710842 95022349 O-Ring
  • Ingersoll Rand 23710842 95022349 O-Ring
Product Overview The Ingersoll Rand 23710842 / 95022349 O-Ring is a compact sealing component intended for compatible industrial compressor and mechanical equipment assemblies. O-rings are essential com……
Ingersoll Rand 23710842 95022349 O-Ring
  • Ingersoll Rand
  • 23710842 95022349
  • O-Ring
  • USA
  • 10 × 10 × 1 mm
  • 0.004 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
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Ingersoll Rand 23710842 95022349 O-Ring

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

Ingersoll Rand 23710842 95022349 O-Ring

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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 23710842 95022349 O-Ring

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

Ingersoll Rand 23710842 95022349 O-Ring

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


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Product Overview

The Ingersoll Rand 23710842 / 95022349 O-Ring is a compact sealing component intended for compatible industrial compressor and mechanical equipment assemblies. O-rings are essential components in many pressurized and fluid-handling systems because they provide a controlled sealing interface between mating components and help prevent unwanted leakage.

In industrial compressor equipment, reliable sealing is important for maintaining the integrity of lubrication circuits, pneumatic passages, cooling systems, valve assemblies, fittings, and other mechanical interfaces. Even though an O-ring is physically small, deterioration or incorrect installation can result in air or fluid leakage and may eventually affect equipment performance.

The Ingersoll Rand 23710842 / 95022349 O-Ring has supplied dimensions of 10 × 10 × 1 mm and a listed weight of 0.004 kg. Its compact construction allows it to be used in confined mechanical assemblies where accurate sealing is required.

This component is suitable for maintenance and replacement applications where the original O-ring has become worn, damaged, aged, contaminated, or otherwise unsuitable for continued service. The complete part number, equipment model, sealing location, material requirements, and operating conditions should always be verified before installation.


Technical Specifications

Parameter Specification
Manufacturer Ingersoll Rand
Part Number 23710842 / 95022349
Product Type O-Ring
Component Category Sealing Component
Primary Function Sealing between compatible mating surfaces
Application Compatible Industrial Compressor Equipment
Dimensions 10 × 10 × 1 mm
Weight 0.004 kg
Installation Compatible Ingersoll Rand Equipment
Service Type Maintenance / Replacement
Typical Use Fluid, air, valve, and mechanical interface sealing
Product Form Compact Sealing Ring

Specification Verification Note

The physical specifications supplied for the 23710842 / 95022349 O-Ring are:

  • Dimensions: 10 × 10 × 1 mm
  • Weight: 0.004 kg

Exact elastomer material, hardness, temperature range, pressure capability, fluid compatibility, groove dimensions, and installation location should be confirmed against the applicable compressor or equipment configuration.


What Is the Ingersoll Rand 23710842 / 95022349 O-Ring?

The 95022349 O-Ring is a circular sealing element used to create a leak-resistant interface between compatible mechanical components.

An O-ring is normally installed inside a specially designed groove. When the mating components are assembled, the ring is compressed between the surfaces. This compression creates the contact required to restrict the movement of air or fluid through the joint.

The basic sealing arrangement can be represented as:

Sealing Groove → O-Ring → Mating Component → Controlled Compression

The Ingersoll Rand 23710842 / 95022349 O-Ring should be considered a specialized replacement component rather than a universal seal simply because its physical dimensions are known.


O-Ring Working Principle

The sealing action of an O-ring is based primarily on elastic deformation.

Before assembly, the O-ring has a circular cross-sectional form. Once placed into its groove and compressed by the mating component, the elastomer deforms and presses against the surrounding surfaces.

When system pressure is applied, the O-ring can maintain contact with the sealing surfaces, helping prevent leakage.

The general process is:

Installation → Compression → Surface Contact → Pressure Containment → Leakage Prevention

The reliability of this process depends on several factors, including:

  • O-ring size
  • Material
  • Groove design
  • Surface finish
  • Compression
  • Pressure
  • Temperature
  • Fluid compatibility
  • Installation technique

Role in Industrial Compressor Systems

Industrial compressors contain multiple mechanical and fluid interfaces that require effective sealing.

Depending on the compressor design, sealing components may be used in:

  • Oil circuits
  • Cooling circuits
  • Pneumatic passages
  • Valve assemblies
  • Fittings
  • Adapters
  • Covers
  • Internal fluid connections
  • Pressure interfaces

The 23710842 / 95022349 O-Ring can form part of such an assembly when specified for the compatible equipment.

A properly functioning seal helps maintain the intended pressure and fluid path within the compressor.


Why O-Ring Integrity Matters

A compressor may operate continuously for many hours or even around the clock. During this time, sealing components can experience repeated temperature and pressure changes.

An O-ring may gradually deteriorate due to:

  • Thermal cycling
  • Pressure cycling
  • Aging
  • Fluid exposure
  • Mechanical stress
  • Contamination
  • Incorrect installation
  • Surface damage

A deteriorated seal can initially produce only a minor leak. If the problem is ignored, however, leakage can increase and contribute to reduced system efficiency or contamination of surrounding equipment.

For this reason, O-rings should be included in appropriate preventive maintenance procedures.


Typical Applications

Compressor Lubrication Circuits

Lubricated compressor systems contain oil or other approved fluids that must remain within the intended circuit.

An O-ring can help seal interfaces within these systems.

Cooling Systems

Cooling circuits require leak-resistant connections to maintain fluid circulation.

Where specified by the equipment design, O-rings can be used around cooling-system interfaces.

Valve Assemblies

Thermal valves, pressure-control components, and other mechanical assemblies may use O-rings to seal internal or external connections.

Pneumatic Connections

Compressed-air systems require reliable sealing to prevent pressure losses.

General Compressor Maintenance

The component can be used during maintenance and overhaul procedures when the applicable equipment documentation identifies the 95022349 O-ring as the required replacement.


Installation and Replacement Guide

Correct installation is critical for achieving reliable sealing.

1. Confirm the Replacement Part

Before beginning maintenance, verify:

  • Manufacturer
  • Part number
  • 23710842
  • 95022349
  • Compressor model
  • Installation location
  • Existing O-ring dimensions
  • Material requirements

The supplied dimensions are 10 × 10 × 1 mm.

2. Shut Down and Isolate the Equipment

The compressor should be shut down and isolated according to the applicable maintenance procedure.

Technicians should verify that:

  • Electrical power is isolated
  • Stored pneumatic pressure is released
  • Fluid pressure is relieved
  • Hot surfaces have cooled
  • Automatic restart is prevented

3. Remove the Existing O-Ring

Remove the old seal carefully.

Avoid damaging the groove, threads, or mating surfaces.

Sharp tools should be avoided where they could scratch the sealing area.

4. Inspect the Groove

Check the groove for:

  • Dirt
  • Metal particles
  • Corrosion
  • Burrs
  • Scratches
  • Deformation
  • Foreign material

The groove must be suitable for the new seal.

5. Clean the Mating Surfaces

The surrounding surfaces should be clean and free of contamination.

Do not use cleaning methods that could damage the sealing surfaces or leave incompatible residues.

6. Install the New O-Ring

Place the replacement O-ring into the correct groove.

The seal should sit naturally in position without:

  • Twisting
  • Cutting
  • Pinching
  • Excessive stretching
  • Local deformation

7. Reassemble the Components

Bring the mating components together carefully.

Avoid sliding one component aggressively across the O-ring because this can damage the seal.

8. Check for Leakage

After reassembly and system restoration, inspect the connection under controlled operating conditions.


O-Ring Installation Best Practices

Avoid Twisting

A twisted O-ring may fail to provide uniform compression and can leak prematurely.

Keep the Seal Clean

Small particles trapped beneath the seal can create a leakage path.

Protect the O-Ring During Assembly

Sharp edges, damaged threads, and burrs can cut the elastomer.

Use Compatible Assembly Lubrication

Where lubrication is specified by the equipment maintenance procedure, use an appropriate lubricant compatible with the seal material and working fluid.

Avoid Excessive Stretching

An O-ring should not be stretched unnecessarily during installation.

Verify Proper Seating

Before closing the assembly, confirm that the O-ring is fully seated in its groove.


Troubleshooting O-Ring Problems

Fluid Leakage

Fluid leakage around an O-ring joint may be caused by:

  • Damaged seal
  • Incorrect seal size
  • Incorrect installation
  • Damaged groove
  • Damaged mating surface
  • Excessive pressure
  • Incorrect material
  • Chemical incompatibility

The complete assembly should be inspected.

Air Leakage

Air leakage can occur when the O-ring is:

  • Cut
  • Cracked
  • Flattened
  • Improperly seated
  • Incorrectly sized
  • Damaged during assembly

A persistent pneumatic leak should not be ignored.

Repeated Seal Failure

If a replacement O-ring fails shortly after installation, investigate the underlying cause instead of repeatedly replacing the seal.

Potential causes include:

  • Incorrect groove dimensions
  • Excessive pressure
  • Excessive temperature
  • Shaft or component movement
  • Surface damage
  • Incorrect material
  • Poor installation technique
  • Fluid incompatibility

Hardened O-Ring

A hardened seal may indicate aging or exposure to unsuitable operating conditions.

Swollen O-Ring

Swelling can indicate incompatibility between the sealing material and the working fluid.


Common Causes of O-Ring Failure

Aging

Elastomeric seals naturally deteriorate over time.

Temperature

Excessive temperature can accelerate material degradation.

Pressure

Operating pressure outside the intended application can cause extrusion or deformation.

Chemical Exposure

Some fluids can cause an elastomer to swell, soften, harden, or crack.

Mechanical Damage

Cuts, scratches, and abrasions can create leakage paths.

Incorrect Installation

Pinching, twisting, or excessive stretching can damage the seal before normal operation begins.

Poor Surface Condition

A rough or damaged mating surface can reduce sealing reliability.


Maintenance Recommendations

Inspect Seals During Scheduled Service

Whenever the associated component is opened, inspect the O-ring and surrounding sealing surfaces.

Monitor Leakage

Small leaks can provide an early indication of seal deterioration.

Check Operating Conditions

Abnormal temperature or pressure can accelerate seal failure.

Maintain Fluid Quality

Contaminated or unsuitable fluid can adversely affect sealing components.

Keep Spare O-Rings Available

Maintaining the correct 23710842 / 95022349 component can reduce downtime during maintenance.

Record Replacement History

Maintenance records should include the part number and installation date when practical.


Physical Dimensions and Weight

The supplied physical specifications for the Ingersoll Rand 23710842 / 95022349 O-Ring are:

Parameter Value
Dimensions 10 × 10 × 1 mm
Weight 0.004 kg

These specifications can assist with:

  • Spare-parts identification
  • Warehouse storage
  • Inventory planning
  • Maintenance preparation
  • Shipping calculations
  • Compressor overhaul logistics

For final compatibility, the equipment part number and application should always take priority over physical dimensions alone.


Replacement and Spare-Part Planning

Correct spare-part identification is especially important for small sealing components because many O-rings can appear similar.

Maintenance personnel should record:

  • Complete part number
  • Equipment model
  • Installation position
  • Dimensions
  • Material specification
  • Associated valve or fitting
  • Replacement interval
  • Quantity in stock

The component should be recorded as:

Ingersoll Rand 23710842 / 95022349 O-Ring

Maintaining accurate part-number records helps prevent the installation of an incorrect seal during urgent compressor maintenance.


Compatible System Components

The O-ring may be associated with several types of compressor components.

Component General Function
Thermal Valve Controls temperature-dependent fluid flow
Valve Housing Provides mechanical support and fluid passages
Oil Circuit Circulates compressor lubricant
Cooling Circuit Transfers and removes heat
Fitting Connects fluid or pneumatic passages
Adapter Provides mechanical connection
Pressure Interface Maintains pressurized fluid or air connections
Compressor Assembly Provides the primary equipment structure
Sealing Groove Positions and compresses the O-ring
Mating Surface Provides the opposing sealing interface

Actual compatibility depends on the compressor model and system configuration.


Engineering Considerations

Choosing an O-ring requires consideration of both mechanical and environmental conditions.

Dimensions

The supplied dimensions are 10 × 10 × 1 mm.

Material Compatibility

The sealing material should be compatible with the compressor fluid and operating environment.

Temperature

Operating temperature affects the elasticity, aging, and long-term performance of the seal.

Pressure

The O-ring must be suitable for the pressure conditions of the application.

Surface Finish

The sealing surfaces should be clean and free from defects that could damage the O-ring.

Compression

Correct compression is required to achieve an effective seal without excessive deformation.

Assembly

Correct installation prevents twisting, pinching, and cutting.


Key Advantages

The Ingersoll Rand 23710842 / 95022349 O-Ring offers several practical benefits for compatible industrial equipment:

  • Compact sealing component
  • Supports fluid and pressure containment
  • Suitable for compressor maintenance applications
  • Useful for valve and mechanical-interface sealing
  • Supplied dimensions of 10 × 10 × 1 mm
  • Lightweight 0.004 kg construction
  • Easy to store as a maintenance spare
  • Supports compressor refurbishment
  • Helps maintain system sealing integrity
  • Suitable for planned replacement and preventive maintenance

Technical FAQs

What is the Ingersoll Rand 23710842 / 95022349?

It is an O-Ring used as a sealing component in compatible Ingersoll Rand equipment.

What is the primary purpose of an O-ring?

An O-ring provides a sealing interface between mating components and helps prevent air or fluid from escaping.

What are the dimensions of the 95022349 O-ring?

The supplied dimensions are 10 × 10 × 1 mm.

What is the weight of the O-ring?

The listed weight is 0.004 kg.

Where can this O-ring be used?

Its exact application depends on the compatible Ingersoll Rand equipment. It may be associated with valve assemblies, fluid connections, pneumatic interfaces, or other mechanical sealing points.

Why can an O-ring leak after replacement?

Possible causes include incorrect size, improper installation, damaged sealing surfaces, contamination, unsuitable material, excessive pressure, or excessive temperature.

Can the old O-ring be reused?

If the applicable maintenance procedure calls for replacement, a new O-ring should be used. A removed seal may have permanent deformation or surface damage that is not immediately visible.

What causes an O-ring to crack?

Aging, excessive temperature, unsuitable material, chemical exposure, and unfavorable operating conditions can contribute to cracking.

What causes an O-ring to swell?

Swelling may result from incompatibility between the seal material and the working fluid.

What should be verified before purchasing a replacement?

Verify the complete 23710842 / 95022349 identification, compressor model, installation location, dimensions, and applicable material requirements.


Conclusion

The Ingersoll Rand 23710842 / 95022349 O-Ring is a compact sealing component designed for compatible industrial compressor and mechanical equipment applications. Its purpose is to maintain a reliable interface between mating components and help prevent unwanted leakage of air, oil, coolant, or other working fluids.

The supplied physical specifications are 10 × 10 × 1 mm, with a listed weight of 0.004 kg. These characteristics make the component convenient for spare-parts inventory, compressor maintenance, overhaul work, and replacement planning.

Reliable O-ring performance depends on more than dimensional compatibility. The sealing material, operating temperature, pressure, fluid type, groove condition, mating surfaces, and installation method should all be considered before replacement.

For maintenance work, the complete Ingersoll Rand 23710842 / 95022349 part identification should be verified against the actual compressor configuration. Correct isolation, careful removal, clean sealing surfaces, proper installation, and post-maintenance leakage inspection can help ensure dependable sealing performance.

When correctly selected and installed, the 23710842 / 95022349 O-Ring can contribute to the pressure integrity, fluid containment, and long-term reliability of compatible Ingersoll Rand compressor systems.



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