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Metric Oil Seals

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Available in both imperial and metric dimensions for single- and double-lip designs, oil seals are vital to the daily operation of most factories and a wide range of industrial and commercial equipment. Various lip materials are also available to best suit design challenges such as temperature and chemical resistance, while material options range from nitrile for low-temperature applications to Viton® for high-temperature and low-compression operations.

Common lip materials available for use in our metric oil seals include:

  • Nitrile — A low-cost option, nitrile has superior low-temperature capability and abrasion resistance, as well as low swell in hydrocarbon fluids. It has poor heat resistance, however, and is not resistant to ozone or lubricants containing sulphur or EP additives or hydrocarbons/oxygenate blends.
    • Temperature range: -40° F to 225° F / -40° C to 107° C)
  • Polyacrylate — Unlike nitrile, this higher-cost material has high resistance to EP lubricants and higher heat capabilities. It also features low swell in hydrocarbon fluids. Polyacrylate has limited to low temperature capability and poor dry running capability. It’s also subject to attack in aqueous media.
    • Temperature range: -20° F to 300° F / -29° C to 49° C)
  • Silicone — Good dry-heat resistance, excellent low-temperature capability, and good ozone resistance make silicone an ideal, relatively affordable lip material for many applications. It can, however, be easily damaged during installation, and has poor resistance to some EP additives and oxidized oil. Silicone also has a high swell and poor dry running performance.
    • Temperature range: -80° F to 350° F / -62° C to 176° C)
  • Fluoro-elastomer — Although relatively expensive, long-lasting fluoro-elastomer has excellent high-temperature capabilities and is compatible with many types of fluids. It does have poor resistance to basic fluids, and is prone to attack by high-performance gear lubes.
    • Temperature range: -30° F to 400° F / -35° C to 204° C)

Depending on your application, you may need to employ premium lip materials, such as:

  • Ethylene-acrylic (Varmac®) — This intermediate-cost material has higher heat capabilities than both nitrile and polyacrylate, and also has a better low-temperature performance than polyacrylate. It has good abrasion and dry running capabilities. However, it has high swell in hydrocarbon fluids and limited capability in high-frequency applications or following eccentric shafts.
    • Temperature range: -30° F to 325° F / -34° C to 163° C)Tetrafluoro-ethylene propylene (Aflas®) — More expensive than fluoro-elastomers, this material has better chemical resistance to all hydrocarbon fluids, acids, bases, and oxidizing agents. It can perform in the complete range of hydraulic fluids and has continuous heat resistance over 400° F. As for its weaknesses, tetrafluoro-ethylene propylene has poor chemical resistance to hydrocarbon-oxygenate blends and poor low-temperature capabilities.
    • Temperature range: -30° F to 400° F / -34° C to 204° C)

Available Dimensions:

Shaft Diameter (d): 6 mm to 400 mm

Outer Diameter (D): 16 mm to 440 mm

Width (b): 4 mm to 95 mm





   
  Results 51 - 75 of 408 Unit of Measure: Metric  1 2 3 4 5 »  

Item #

(d) Shaft Diameter

(D) Outer Diameter

(b) Width

MS16X22X4 16 mm 22 mm 4 mm
MS16X24X6 16 mm 24 mm 6 mm
MS16X24X7 16 mm 24 mm 7 mm
MS16X26X7 16 mm 26 mm 7 mm
MS16X28X7 16 mm 28 mm 7 mm
MS16X28X7V 16 mm 28 mm 7V mm
MS16X30X7 16 mm 30 mm 7 mm
MS16X32X7 16 mm 32 mm 7 mm
MS16X35X7 16 mm 35 mm 7 mm
MS16X40X7 16 mm 40 mm 7 mm
MS17X27X7 17 mm 27 mm 7 mm
MS17X29X7 17 mm 29 mm 7 mm
MS17X30X7 17 mm 30 mm 7 mm
MS17X32X7 17 mm 32 mm 7 mm
MS17X35X7 17 mm 35 mm 7 mm
MS17X37X7 17 mm 37 mm 7 mm
MS17X38X7 17 mm 38 mm 7 mm
MS17X40X7 17 mm 40 mm 7 mm
MS17X42X7 17 mm 42 mm 7 mm
MS17X47X7 17 mm 47 mm 7 mm
MS17X47X8 17 mm 47 mm 8 mm
MS18X28X6 18 mm 28 mm 6 mm
MS18X30X7 18 mm 30 mm 7 mm
MS18X32X7 18 mm 32 mm 7 mm
MS18X32X8 18 mm 32 mm 8 mm
  Results 51 - 75 of 408  1 2 3 4 5 »