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Oil Seal SC - Rotary Shaft Seal

Oil Seal SC - Rotary Shaft Seal
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Product Product Id Type Rotation Inside Diameter Outer Diameter Height Material Housing Material Material Spring Spring Dust lip Color Stock Price
34073 Oil Seal 25 55 10 NBR - Nitrile Carbon steel according to DIN EN 12033 Spring steel according to DIN EN 10270-1895 Yes No Black 766   € 1,25 Details
34074 Oil Seal 157.16 184.15 12.7 NBR - Nitrile Carbon steel according to DIN EN 12034 Spring steel according to DIN EN 10270-1896 Yes No Black 128   € 8,84 Details
34075 Oil Seal 40 54 7 NBR - Nitrile Carbon steel according to DIN EN 12035 Spring steel according to DIN EN 10270-1897 Yes No Black 265   € 1,25 Details
34076 Oil Seal 57.15 85.72 9.52 NBR - Nitrile Carbon steel according to DIN EN 12036 Spring steel according to DIN EN 10270-1898 Yes No Black 620   € 2,96 Details
34077 Oil Seal 6 18 5 NBR - Nitrile Carbon steel according to DIN EN 12037 Spring steel according to DIN EN 10270-1899 Yes No Black 2033   € 0,63 Details
34078 Oil Seal 6 18 6 NBR - Nitrile Carbon steel according to DIN EN 12038 Spring steel according to DIN EN 10270-1900 Yes No Black 658   € 0,63 Details
34079 Oil Seal 6 18 7 NBR - Nitrile Carbon steel according to DIN EN 12039 Spring steel according to DIN EN 10270-1901 Yes No Black 1667   € 0,63 Details
34080 Oil Seal 406.4 457.2 20.63 NBR - Nitrile Carbon steel according to DIN EN 12040 Spring steel according to DIN EN 10270-1902 Yes No Black 0   € 95,08 Details Quote
34081 Oil Seal 155.58 193.68 15.87 NBR - Nitrile Carbon steel according to DIN EN 12041 Spring steel according to DIN EN 10270-1903 Yes No Black 0   € 9,78 Details Quote
34082 Oil Seal 161.92 187.32 19.05 NBR - Nitrile Carbon steel according to DIN EN 12042 Spring steel according to DIN EN 10270-1904 Yes No Black 0   € 9,24 Details Quote
34083 Oil Seal 114 140 13 NBR - Nitrile Carbon steel according to DIN EN 12043 Spring steel according to DIN EN 10270-1905 Yes No Black 167   € 6,28 Details
34084 Oil Seal 85 110 10 NBR - Nitrile Carbon steel according to DIN EN 12044 Spring steel according to DIN EN 10270-1906 Yes No Black 52   € 4,13 Details
34085 Oil Seal 30 37 4 NBR - Nitrile Carbon steel according to DIN EN 12045 Spring steel according to DIN EN 10270-1907 Yes No Black 3346   € 0,91 Details
34086 Oil Seal 49 68 12 NBR - Nitrile Carbon steel according to DIN EN 12046 Spring steel according to DIN EN 10270-1908 Yes No Black 1005   € 1,94 Details
34087 Oil Seal 8 20 8 NBR - Nitrile Carbon steel according to DIN EN 12047 Spring steel according to DIN EN 10270-1909 Yes No Black 1620   € 0,63 Details
34088 Oil Seal 110 130 14 NBR - Nitrile Carbon steel according to DIN EN 12048 Spring steel according to DIN EN 10270-1910 Yes No Black 262   € 6,50 Details
34089 Oil Seal 215 240 15 NBR - Nitrile Carbon steel according to DIN EN 12049 Spring steel according to DIN EN 10270-1911 Yes No Black 0   € 15,32 Details Quote
34090 Oil Seal 74.61 95.25 9.52 NBR - Nitrile Carbon steel according to DIN EN 12050 Spring steel according to DIN EN 10270-1912 Yes No Black 451   € 3,61 Details
34091 Oil Seal 95 110 9 NBR - Nitrile Carbon steel according to DIN EN 12051 Spring steel according to DIN EN 10270-1913 Yes No Black 14   € 4,13 Details
34092 Oil Seal 162 190 12 NBR - Nitrile Carbon steel according to DIN EN 12052 Spring steel according to DIN EN 10270-1914 Yes No Black 48   € 9,25 Details
34093 Oil Seal 30 36 5 NBR - Nitrile Carbon steel according to DIN EN 12053 Spring steel according to DIN EN 10270-1915 Yes No Black 759   € 0,91 Details
34094 Oil Seal 39.68 68.26 9.52 NBR - Nitrile Carbon steel according to DIN EN 12054 Spring steel according to DIN EN 10270-1916 Yes No Black 534   € 1,94 Details
34095 Oil Seal 12 20 4 NBR - Nitrile Carbon steel according to DIN EN 12055 Spring steel according to DIN EN 10270-1917 Yes No Black 662   € 0,63 Details
34096 Oil Seal 12 19 4 NBR - Nitrile Carbon steel according to DIN EN 12056 Spring steel according to DIN EN 10270-1918 Yes No Black 224   € 2,41 Details
34097 Oil Seal 20 36 6 NBR - Nitrile Carbon steel according to DIN EN 12057 Spring steel according to DIN EN 10270-1919 Yes No Black 224   € 3,24 Details
34098 Oil Seal 100 135 12 NBR - Nitrile Carbon steel according to DIN EN 12058 Spring steel according to DIN EN 10270-1920 Yes No Black 158   € 5,90 Details
34099 Oil Seal 340 380 20 NBR - Nitrile Carbon steel according to DIN EN 12059 Spring steel according to DIN EN 10270-1921 Yes No Black 90   € 55,11 Details
34100 Oil Seal 546 596.9 19.05 NBR - Nitrile Carbon steel according to DIN EN 12060 Spring steel according to DIN EN 10270-1922 Yes No Black 17   € 133,45 Details
34101 Oil Seal 20 36 5 NBR - Nitrile Carbon steel according to DIN EN 12061 Spring steel according to DIN EN 10270-1923 Yes No Black 0   € 0,91 Details Quote
34102 Oil Seal 68 82 10 NBR - Nitrile Carbon steel according to DIN EN 12062 Spring steel according to DIN EN 10270-1924 Yes No Black 340   € 6,65 Details
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What is an SC Oil Seal?

The SC oil seal is a rotary shaft seal with an elastomer coated outer diameter. To keep a consistent sealing, there is a steel garter spring which keeps the main sealing lip in contact with the rotating shaft. This design is called a “spring-loaded lip” and it’s made to keep constant radial pressure over a longer period. The rubber coated outside of the SC oil seal ensures a tight press fit into the house bore and is available in a variety of elastomers. Unlike the TC oil seals, which incorporates a secondary dust lip for added exclusion capability, the SC oil seals focus solely on fluid retention. Their streamlined design reduces friction, heat generation, and material cost, making them the ideal solution for controlled environments where external contaminants are limited. SC rotary shaft seals are ideal for thin-body lubricants and certain gaseous media when pressure limits remain within the specified operating range. Because of their simple single-lip geometry, they generate less heat and friction compared to dual-lip profiles, which benefits high-speed or energy-efficient systems.

When should you choose an SC Profile?

SC shaft seals are best suited for clean operational environments, such as:

  • Electric motors
  • Light-duty gearboxes
  • Pumps
  • Home appliances
  • Agricultural equipment (with internal lubrication)

Their compact form factor and lower friction make SC oil seals advantageous in applications prioritizing efficiency, low torque, or space constraints. When dust, mud, or abrasive particles are not a concern, SC seals offer long-lasting performance with minimal complexity.

Material Options and Operating Ranges

SC rotary shaft seals are available in various elastomer types tailored to specific media and temperature demands. Below is a comparison of common compounds and their operating properties:

Material

Temperature Range

Media Compatibility

Notes

NBR

-40°C to +100°C

Mineral oils, greases, water

General-purpose; most cost-effective

FKM

-25°C to +200°C

Synthetic oils, fuels, aggressive chemicals

Excellent chemical resistance

HNBR

-30°C to +150°C

Oils, coolants, ozone

Good dynamic sealing properties

VMQ

-60°C to +200°C

Food-grade, dry air, ozone

Silicone-based; low wear resistance

ACM

-25°C to +150°C

Transmission oils, oxidized oils

Superior heat resistance

EPDM

-50°C to +150°C

Brake fluids, steam, polar fluids

Not compatible with mineral oils

 

The choice of material should align with the lubricant type, thermal conditions, and any exposure to aggressive chemicals or additives. The standard oil seal SC typically uses and NBR 70 shore A compound, which offers a strong balance between elastic, wear resistance, and compatibility with mineral oil-based lubricants. The garter springs, that are used to keep constant contact between sealing lip and rotating shaft, are commonly manufactured from carbon spring steel according to DIN EN 10270-1, or from stainless steel grade 1.4301 for enhanced corrosion protection. 

Design considerations for shaft and housing

SC oil seals require precise shaft and housing specifications in order to ensure optimal performance and prevent leakage. The recommended surface finish for the shaft lies between Ra 0.2 to 0.8 µm, while dynamic applications demand a shaft hardness of at least 45 HRC. When machining the housing bore you should match an ISO H8 tolerance, and the rotating shafts diameter must meet ISO H11 tolerance. These dimensional standards are essential to keep a reliably sealing. Especially for SC rotary shaft seals that rely entirely on their primary sealing lip for fluid retention, since there is no secondary sealing lip as in TC type oil seals.

SC oil seal - Single lip rotary shaft seal with an elastomer OD and a spring loaded sealing lip

SC vs. Other Oil Seal Profiles

Understanding the difference between SC and other shaft seal types helps in selecting the optimal profile:

  • SC vs. TC: TC incorporates a dust lip for additional protection in dirty or wet environments, while SC is leaner and preferred for clean, internal systems.
  • SC vs. TB: Both feature a metal case, but TB has a dual lip setup; SC is single-lip and simpler.
  • SC vs. VC: VC seals may feature reinforced construction or alternative casing materials for high-pressure conditions; SC is suited for general-purpose use.

In short, SC is the go-to profile when dust exclusion isn’t critical, but low friction and cost-efficiency are. For a broader selection, explore our complete range of general rotary shaft seals, covering multiple designs and material options for diverse industrial needs.

Cross-Reference of SC Oil Seal Codes

Many manufacturers use different naming conventions or legacy codes to refer to the SC profile. Here’s a cross-reference table with equivalents:

Manufacturer

Profile Code

Dichtomatik

WA

Anyseals

OS-A10

B+S

TR-A

Chicago R

HMS4

Elring

A

Eriks

R

FP Paris

G

FST

BA

Gaco

A

Goetze

827 N

Kaco

DG

Kramp

CB

National

35

Paulstra

IE

Pioneer W

R21

Rolf

R

Stefa

CB

Taiwan / NOK

SC

Vota

BA

Ebele

R

Kimman

KA

 

These equivalencies are helpful when replacing seals across international or legacy stock lists.

Applications and Advantages

Oil seals SC perform best in interval environments where there are little to no contaminating risks and the focus is on lubricant retention. Because it’s compact design they are widely used in small to medium rotating assemblies, automotive pumps, and auxiliary devices. You’ll also find the SC rotary shaft seals in industrial rollers and conveyors due to their low-friction properties. Additionally, enclosed electric drive systems take advantage of their efficiency and reduced wear. Due to the simple structure of the oil seal SC, it’s simpler to install and it’s also a better economical choice than dual-lip variants, especially in situations where the added protection of a dust lip is unnecessary. For housings that require improved static retention due to bore imperfections or thermal cycling, a ribbed outer diameter alternative such as the G10 profile may be a more suitable choice. For higher temperature environments, the SC Plus - Viton oil seal provides the same design as SC but is manufactured from FKM material, ensuring greater heat resistance and durability. 

FAQ

What is the difference between an SC and a TC oil seal?

An SC oil seal has a single spring-loaded sealing lip and no dust lip, making it ideal for clean and enclosed systems. A TC oil seal includes a secondary dust lip for protection against contamination, but comes with slightly higher friction and heat generation due to its dual-lip design.

Can SC oil seals handle high pressure?

SC oil seals are not designed for pressurized systems and should only be used in applications with low or near-zero system pressure. If low pressure is present, it must remain within the manufacturer’s recommended range. For higher pressure applications, specially designed high-pressure shaft seals or profiles with reinforced lips are recommended.

What housing bore conditions are suitable for SC seals?

SC seals perform well in standard housings as long as ISO H8 tolerances are maintained. Their elastomer-coated OD allows proper sealing even in housings with minor surface roughness, thermal expansion (e.g., light-metal housings), or when split housings are used.

Which materials are recommended for SC seals?

The most common material is NBR for general lubrication and mineral oil compatibility. FKM, HNBR, Silicone (VMQ), ACM, and EPDM are available for higher temperatures, synthetic media, or chemically aggressive fluids. The correct material depends on temperature, lubrication type, chemical exposure, and shaft speed.

When should I choose an SC oil seal instead of a double-lip design?

Choose an SC profile when you need low friction, low heat generation, and long service life in a clean, enclosed system without external contamination. Dual-lip designs such as TC or TB are better suited for dusty, wet, or abrasive environments where additional exclusion capability is needed.


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