Industry Industry

Welcome to our Accurate Sealing Solution Company!

Office Time: Mon - Sat 10:00 AM - 07:00 PM
(+91) 999 848 3674
Ahmedabad, Gujarat
info@accuratesealingsolution.com

Rotary Seals

Services

Rotary Seals

for Services!

Rotary Seals (1)
Oil Seal Teflon Seal Fabric Seal Endcaps Seal V-Ring Cassette Seals Face Seals
Rotary-shaft_Seal

Standard Radial Lip Seals (Oil Seals)

A radial lip seal (commonly called an oil seal) is a flexible sealing element designed to prevent lubricant leakage along a rotating shaft and to keep out contaminants such as dirt, dust, and moisture.
Key Properties :
Property Typical Value / Description
Material (Lip) NBR (Nitrile rubber), FKM (Viton), HNBR, Silicone, PTFE
Material (Case) Carbon steel, stainless steel, or elastomer-bonded
Spring Garter spring (stainless steel / carbon steel) for constant radial load
Temperature Range –40°C to +120°C (NBR), up to +200°C (FKM/Viton), +250°C (PTFE)
Speed Capability Up to ~30 m/s (elastomer lip), up to ~50 m/s (PTFE)
Pressure Capacity Typically up to 0.5 bar (standard design); reinforced types up to ~10 bar
Friction / Wear Low–moderate; depends on lubrication and shaft finish
Shaft Surface Finish Ra 0.2–0.8 µm, hardness > 55 HRC recommended
Chemical Resistance Depends on elastomer: NBR (oils/fuels), FKM (chemicals, high temp.), PTFE (universal chemical resistance)
Advantages of Radial Lip (Oil) Seals
Cost-Effective
inexpensive compared to mechanical seals.
Compact & Simple Design
easy to integrate in housings.
Wide Availability
standardized sizes (ISO / DIN) are widely stocked.
Versatile Materials
choice of elastomers for oil, fuel, chemical, or high-temp service.
Good Lubrication Retention
ensures long bearing and gearbox life.
Low Friction
minimal power loss compared to mechanical seals.
Easy to Install & Replace
press-fit into bore, no complex tools required.
Disadvantages of Radial Lip (Oil) Seals
Limited Pressure Capability
not suitable for high-pressure sealing (>0.5 bar standard).
Wear Over Time
sealing lip degrades with shaft rotation, especially at high speeds.
Sensitive to Shaft Condition
poor surface finish, hardness, or eccentricity causes leakage.
Temperature & Chemical Limitations
elastomers (NBR, HNBR, FKM) must be selected carefully for fluids.
Friction Heat Build-Up
high speeds without lubrication may overheat lip.
Not Suitable for Severe Contaminants Alone
may need dust lip or secondary seals.
Applications of Radial Lip Seals :
Industry Application Examples
Automotive Crankshafts, camshafts, wheel hubs, gearboxes, axles
Industrial Gearboxes Input/output shafts, couplings, reducers
Hydraulics Low-pressure pumps, shafts with oil splash lubrication
Agricultural Machinery Power take-off shafts, wheel hubs, transmission shafts
Electric Motors Shaft seals to retain grease/oil in bearings
Marine Propeller shafts (with additional protection)
General Machinery Fans, blowers, conveyors, compressors
Material Selection for Radial Lip Seals :
Material Temp. Range (°C) Best Suited For
NBR (Nitrile) –40 to +120 General purpose oils, fuels, grease
FKM (Viton) –30 to +200 High temp., fuels, chemicals, automotive
HNBR –30 to +150 Better wear resistance, automotive & industrial
Silicone –60 to +200 Low-temp flexibility, food/pharma
PTFE –60 to +250 High speed, dry-running, chemicals
When to Use Standard Radial Lip Seals (Oil Seals)
General-purpose oil and grease sealing.
Medium-speed shafts with splash lubrication.
Applications where cost efficiency and compact design are critical.
Bearings, gearboxes, and automotive engine components.
Avoid them for
High-pressure sealing (>10 bar → mechanical seals or special designs needed).
Highly contaminated environments (use cassette seals or mechanical face seals).
Extreme misalignment or eccentricity (use floating or PTFE seals).
Rotary Teflon Seal

PTFE Rotary Shaft Seals

A PTFE rotary shaft seal is a high-performance radial seal designed for demanding applications where standard elastomer lip seals cannot provide sufficient resistance to temperature, speed, pressure, or aggressive chemicals. Instead of rubber, the sealing lip is made from polytetrafluoroethylene (PTFE), which offers excellent dry-running capability and universal chemical resistance.
Key Properties of PTFE Rotary Shaft Seals :
Property Typical Value / Description
Material (Lip) PTFE (filled or unfilled: glass, carbon, bronze, MoS₂ fillers possible)
Material (Case) Stainless steel, carbon steel, or composite
Spring Stainless steel garter spring (constant radial load) or springless designs
Temperature Range –60 °C to +250 °C
Speed Capability Up to ~50 m/s (depends on lubrication & load)
Pressure Capacity Standard: up to 10 bar; special reinforced designs: >20 bar
Friction / Wear Very low, especially suitable for dry-running conditions
Shaft Surface Finish Ra 0.1–0.4 µm recommended; hardness > 60 HRC
Chemical Resistance Nearly universal – resistant to oils, fuels, solvents, acids, alkalis
Advantages of PTFE Rotary Shaft Seals
Wide Temperature Range (–60 °C to +250 °C)
High Chemical Resistance (almost universal)
Dry-Running Capable → suitable where lubrication is poor or absent
Low Friction & Power Loss → good for high-speed shafts
Excellent Wear Resistance (especially with filled PTFE grades)
Higher Pressure Tolerance than standard elastomer seals

Applications of PTFE Rotary Shaft Seals :

Industry Application Examples
Automotive / Motorsports Turbochargers, fuel injection pumps, transmissions
Chemical & Process Pumps, mixers, agitators, reactors
Pharma / Food Equipment requiring FDA-approved, non-contaminating seals
Aerospace Hydraulic systems, turbine engines
Marine Propulsion shafts, pumps exposed to aggressive seawater
Industrial Machinery Compressors, centrifuges, high-speed motors
PTFE Material Variants :
PTFE Type Features / Best Suited For
Virgin PTFE Pure, low friction, FDA-compliant, but softer (lower wear resistance)
Glass-Filled PTFE Higher wear resistance, lower deformation
Carbon-Filled PTFE Improved thermal conductivity & wear resistance
Bronze-Filled PTFE High strength, good for dynamic sealing under load
MoS₂-Filled PTFE Low friction, enhanced load-carrying capability
When to Use PTFE Seals:
High speed (>20 m/s) or dry-running shafts
Aggressive chemicals or solvents present
High-temperature service (>200 °C)
Applications where elastomers fail prematurely
Avoid PTFE Seals if:
Cost-sensitive, general-purpose sealing is sufficient
Shaft has poor finish / hardness → PTFE lip will wear quickly
Large misalignment or shaft eccentricity is expected
Limitations of PTFE Rotary Shaft Seals
Higher Cost vs. NBR/FKM oil seals
More Complex Installation → lip is delicate, needs careful handling
Shaft Condition Critical → very smooth & hard surface required
Less Elastic Recovery → not as forgiving to shaft misalignment
Brittle Material → not as robust against impact or rough handling
Rotary Fabric Seal

Rotary Fabric Seal

Features :

Rotary Endcaps Seal

Rotary Endcaps Cassette Seals

A cassette seal is an advanced sealing system that integrates multiple sealing lips, protective labyrinths, and sometimes bearings into a single cassette-style unit. Designed for heavy-duty and contaminated environments, cassette seals provide long service life by offering multi-stage protection against dirt, mud, water, and other abrasive particles while retaining lubricant.
Key Properties of Cassette Seals :
Property Typical Value / Description
Construction Multi-lip radial seal integrated with a protective metal/rubber housing
Sealing Lips Primary lip (oil retention), dust lip(s), and additional barrier lips
Materials (Lips) NBR (standard), FKM (high temp.), PTFE (special versions)
Materials (Housing / Case) Steel or stainless steel, often rubber-coated
Spring Stainless or carbon steel garter spring on primary lip
Temperature Range –40 °C to +120 °C (NBR), up to +200 °C (FKM)
Speed Capabilitye Typically up to ~20 m/s (depends on size & design)
Pressure Capacity Generally up to 0.5 bar (not designed for pressure sealing)
Friction / Wear Higher than single lip seals, but compensated by durability
Contaminant Resistance Excellent – labyrinth and dust lips keep out dirt & moisture
Advantages of Cassette Seals
Excellent Protection Against Contamination → multi-lip & labyrinth system
Extended Service Life → longer than standard oil seals in dirty environments
Integrated Design → simplifies installation, no need for multiple seals
Durability → robust against mud, water, and abrasive particles
Good Lubricant Retention → protects bearings and gear systems
Reduced Maintenance Costs in agricultural and off-road equipment
Applications of Cassette Seals :
Industry Application Examples
Agriculture Tractor axles, wheel hubs, PTO shafts
Construction & Mining Wheel ends, track rollers, gearboxes
Off-Highway Vehicles Final drives, differentials
Marine & Heavy Industry Exposed shafts subject to water and grit
Industrial Machinery Harsh environments with dust, slurry, or abrasive media
Material Selection for Cassette Seals :
Lip Material Temp. Range (°C) Best Suited For
NBR (Nitrile) –40 to +120 General purpose, oils & greases
FKM (Viton) –30 to +200 High temp., aggressive chemicals
PTFE –60 to +250 Extreme chemical resistance, dry running
When to Use Cassette Seals:
Heavy-duty applications with mud, dust, water, or slurry
Agricultural & construction equipment where long service life is critical
When a “fit-and-forget” solution is needed with minimal maintenance
Avoid PTFE Seals if:
Space is limited → cassette design requires more axial space
Application requires high-speed (>20 m/s) or high-pressure sealing
Cost-sensitive, clean environment → a standard radial lip seal may suffice
Rotary V-Ring

Rotary V-Ring

A V-Ring is an all-rubber, one-piece axial seal that mounts directly onto a shaft and seals axially against a counterface (housing wall, bearing face, or washer). Unlike radial lip seals, V-rings do not require a housing bore; instead, they rotate with the shaft and provide a flexible, low-friction barrier against dust, dirt, water, and oil splash. They are commonly used as secondary seals or dust excluders to extend the life of primary seals and bearings.
Key Properties of V-Rings :
Property Typical Value / Description
Design One-piece, all-elastomer seal; stretches over shaft, rotates with it
Sealing Action Axial lip presses against counterface (stationary component)
Materials NBR (standard), FKM (high temp./chemicals), EPDM, Silicone
Temperature Range –40 °C to +120 °C (NBR), up to +200 °C (FKM), –60 °C to +200 °C (Silicone)
Speed Capability Typically up to ~10–12 m/s (depending on size & material)
Pressure Capacity Not for pressure sealing (≤0.5 bar)
Friction / Wear Very low, flexible lip allows misalignment compensation
Installation Stretched and slid over shaft → self-retaining without housing bore
Advantages of V-Rings
Simple Design → no housing bore required
Easy Installation → stretches over shaft, self-retaining
Low Friction → minimal drag and heat generation
Misalignment Tolerant → axial lip accommodates shaft movement and vibration
Excellent Contaminant Exclusion → keeps dust, dirt, splash water out
Protects Primary Seals & Bearings → often used as a secondary barrier
Wide Material Availability→ for different environments
Applications of V-Rings :
Industry Application Examples
Automotive Wheel bearings, axle seals, crankshaft dust protection
Agricultural Machinery Hubs, PTO shafts, gearboxes exposed to dirt/mud
Electric Motors & Bearings Secondary seal to protect grease-lubricated bearings
Pumps & Compressors Dust and splash water exclusion
General Industry Fans, blowers, conveyors, machine tools
Material Selection for V-Rings :
Material Temp. Range (°C) Best Suited For
NBR (Nitrile) –40 to +120 General purpose, oils, grease
FKM (Viton) –30 to +200 High temp., fuels, chemicals
EPDM –40 to +150 Water, steam, mild chemicals
Silicone –60 to +200 Food/pharma, low-temp flexibility
When to Use V-Rings:
As a dust/splash excluder in dirty or wet environments
To protect bearings or primary shaft seals from contamination
When a simple, flexible, low-cost barrier is sufficient
Avoid V-Rings if
Application requires pressure sealing
Shaft speeds exceed ~12 m/s
Space constraints prevent axial lip contact
Exposure to aggressive chemicals beyond elastomer capability
Limitations of V-Rings
Not Suitable for Pressure Sealing (>0.5 bar)
Moderate Speed Limits (≤12 m/s typical)
Limited Chemical & Temperature Resistance (depends on elastomer)
Not Ideal for Tight Space Applications → needs axial space for counterface contact
Wear on Counterface if surface finish is poor
Cassette-Seals

Cassette Seals (Integrated Sealing Units)

A cassette seal is an advanced sealing system that integrates multiple sealing lips, protective labyrinths, and sometimes bearings into a single cassette-style unit. Designed for heavy-duty and contaminated environments, cassette seals provide long service life by offering multi-stage protection against dirt, mud, water, and other abrasive particles while retaining lubricant.
Key Properties of Cassette Seals :
Property Typical Value / Description
Construction Multi-lip radial seal integrated with a protective metal/rubber housing
Sealing Lips Primary lip (oil retention), dust lip(s), and additional barrier lips
Materials (Lips) NBR (standard), FKM (high temp.), PTFE (special versions)
Materials (Housing / Case) Steel or stainless steel, often rubber-coated
Spring Stainless or carbon steel garter spring on primary lip
Temperature Range –40 °C to +120 °C (NBR), up to +200 °C (FKM)
Speed Capability Typically up to ~20 m/s (depends on size & design)
Pressure Capacity Generally up to 0.5 bar (not designed for pressure sealing)
Friction / Wear Higher than single lip seals, but compensated by durability
Contaminant Resistance Excellent – labyrinth and dust lips keep out dirt & moisture
Advantages of Cassette Seals
Excellent Protection Against Contamination → multi-lip & labyrinth system
Extended Service Life → longer than standard oil seals in dirty environments
Integrated Design → simplifies installation, no need for multiple seals
Durability → robust against mud, water, and abrasive particles
Good Lubricant Retention → protects bearings and gear systems
Reduced Maintenance Costs in agricultural and off-road equipment
Applications of Cassette Seals :
Industry Application Examples
Agriculture Tractor axles, wheel hubs, PTO shafts
Construction & Mining Wheel ends, track rollers, gearboxes
Off-Highway Vehicles Final drives, differentials
Marine & Heavy Industry Exposed shafts subject to water and grit
Industrial Machinery Harsh environments with dust, slurry, or abrasive media
Material Selection for Cassette Seals :
Lip Material Temp. Range (°C) Best Suited For
NBR (Nitrile) –40 to +120 General purpose, oils & greases
FKM (Viton) –30 to +200 High temp., aggressive chemicals
PTFE –60 to +250 Extreme chemical resistance, dry running
When to Use Cassette Seals:
Heavy-duty applications with mud, dust, water, or slurry
Agricultural & construction equipment where long service life is critical
When a “fit-and-forget” solution is needed with minimal maintenance
Avoid Cassette Seals if:
Space is limited → cassette design requires more axial space
Application requires high-speed (>20 m/s) or high-pressure sealing
Cost-sensitive, clean environment → a standard radial lip seal may suffice
Limitations of Cassette Seals
More Expensive vs. standard radial lip seals
Bulkier Design → requires more axial space in the housing
Higher Friction Loss → multiple lips increase drag
Not for High Pressure (>0.5 bar)
Speed Limitations compared to PTFE seals
Mechanical-Face-Seals

Mechanical Face Seals (Heavy-Duty Rotary Seals)

Mechanical face seals (also known as Duo Cone seals or Heavy-Duty Rotary Seals) are extremely robust sealing solutions designed for severe operating environments such as mining, construction, agriculture, and tunneling. They consist of two precision-machined metal sealing rings that run face-to-face, energized by rubber elastomer toric rings (O-rings). The hard face-to-face contact provides long-lasting sealing under abrasive, muddy, or submerged conditions, where standard lip seals would quickly fail.
Key Properties of Mechanical Face Seals :
Property Typical Value / Description
Design Two hardened metal seal rings (cast iron, alloy steel, or SiC) + elastomer toric rings
Materials (Rings) High-chrome cast iron, hardened steel, or tungsten carbide / SiC for extreme wear
Materials (Elastomer Torics) NBR, HNBR, FKM depending on application
Temperature Range –40 °C to +120 °C (NBR), up to +200 °C (FKM)
Speed Capability Low–medium speeds (~0.5–10 m/s typical)
Pressure Capacity Very high → up to 10–20 bar depending on design
Wear Resistance Excellent – hard face contact resists abrasive media
Lubrication Oil or grease bath; hydrodynamic film forms between faces
Contaminant Resistance Outstanding – proven in mud, sand, dust, and water environments
Advantages of Mechanical Face Seals
Exceptional Durability in abrasive and contaminated conditions
High Pressure Capability → up to 20 bar depending on size/design
Very Long Service Life (often thousands of operating hours in harsh use)
Resistant to Shock, Vibration, and Misalignment
Protects Critical Components (bearings, gears, hubs) in heavy-duty machinery
Low Leakage Rates due to precision lapped sealing faces
Applications of Mechanical Face Seals :
Industry Application Examples
Construction & Mining Excavators, bulldozers, track rollers, final drives
Agriculture Tractor axles, combine harvesters
Tunneling / Drilling TBM cutter heads, drilling rigs
Marine Propeller shafts, dredging pumps
Military / Off-Highway Vehicles Armored vehicle track systems
Heavy Industry Conveyors, crushers, steel mills
Material Selection for Mechanical Face Seals :
Component Options Notes
Metal Seal Rings High-chrome cast iron, forged steel, tungsten carbide, silicon carbide Choice depends on abrasion, corrosion, and shock loads
Elastomer Toric Rings NBR (–40 to +120 °C), HNBR (–30 to +150 °C), FKM (–30 to +200 °C) Select based on temperature, oil resistance, and chemical exposure
When to Use Mechanical Face Seals:
In extremely contaminated environments (mud, sand, dust, water)
Where long service life and reliability outweigh cost concerns
For heavy-duty, low-to-medium speed rotating equipment
In applications requiring robust sealing under shock and misalignment
Avoid Mechanical Face Seals if
Space is very limited (compact housings → use lip seals instead)
High shaft speeds are required (>10 m/s → use PTFE or magnetic seals)
Dry-running or minimal lubrication is expected
Limitations of Mechanical Face Seals
Higher Cost compared to lip-type seals
Bulky Design → requires significant axial and radial installation space
Lower Speed Capability (typically ≤10 m/s)
Requires Lubricant Bath → not ideal for dry-running applications
Special Handling → sealing faces must be kept clean during assembly

Archives

No archives to show.

Categories

  • No categories