O-RING KOORD VITON 5,00 MM

15030031

-

NO BRAND

27990

Black

FPM - FKM - Fluorocarbon Rubber (Viton®)

200 °C

-15 °C

M

In Stock: Available

1 day(s) lead time

Product description:

  • Round cords are extruded to length and have a round cross section (like an O-ring)
  • After installation and compression in the installation chamber, the round cord achieves its sealing function due to the deformation of the cross section
  • In operation, the medium pressure enhances the sealing function

Materials:

  • NBR, NB 70
  • FKM, FP 75
  • EPDM (peroxide vulcanised), EP 70
  • VMQ, SI 60

Colours:

  • NBR 70, black
  • FKM 75, black
  • EPDM 70, black
  • VMQ 60, red-brown

Tolerances:

  • NBR, ISO 3302-1 E1
  • FKM, ISO 3302-1 E1
  • EPDM, ISO 3302-1 E1
  • VMQ, ISO 3302-1 E2

Operating parameters:

  • Temperature NBR: -30 °C to +100 °C
  • Temperature FKM: -15 °C to +200 °C
  • Temperature EPDM 70: -55 °C to +150 °C
  • Temperature VMQ 60: -55 °C to +200 °C

Areas of application:

  • Round cord rings usually serve as the base material for round cord rings and are similar in use to an O-ring
  • Application takes place as a static seal, e.g. for sealing larger pipe joints and as a lid seal in reservoir construction
  • Circular cords are often used for on-site repairs and are assembled 'to size' there
  • Joining the ends of the pinion ring can be done by cyanoacrylate or 2-component adhesive, depending on the purpose of the application
  • However, for use in seawater or other high-performance applications, a connection by vulcanisation is required

Standard material:

  • NBR
    • NBR is the most commonly used material for O-rings due to its good mechanical properties and resistance to mineral oil-based lubricants and greases
    • These properties are largely determined by the acrylonitrile content (ACN between 18% and 50%)
    • Low ACN content leads to good cold-temperature flexibility but limited resistance to oils and motor fuels; with increasing ACN content, cold-temperature flexibility decreases and resistance to oils and motor fuels increases
    • Dichtomatik's NBR standard material for O-rings has a medium ACN content, covering a wide range of applications
    • This material possesses good mechanical technology values, e.g. high wear resistance , low gas permeability and good resistance to mineral-based lubricating oils and greases, hydraulic oils H, H-L, H-LP, flammable liquids HFA, HFB, HFC, aliphatic hydrocarbons, silicone oils and greases, water up to approx. 80°C
    • NBR is generally not resistant to aromatic and chlorinated hydrocarbons, motor fuels with a high aromatic content, polar solvents, glycol-based brake fluids and the flammable liquids HFD
    • NBR is less resistant to ozone, weathering and ageing
    • However, in the vast majority of applications this has no adverse effect
  • FKM
    • FKM materials are characterised by their good resistance to high temperatures and chemicals
    • It should also be noted that they are highly resistant to ageing and ozone, have low gas permeability (very suitable for vacuum applications) and an automatic extinguishing fire behaviour
    • The standard FKM material for O-rings is highly resistant to mineral oils and greases, aliphatic, aromatic and chlorinated hydrocarbons, motor fuels, the flammable liquids HFD and many organic solvents and chemicals
    • In addition to the standard materials FKM, several special compounds are available, which are extremely suitable for special applications due to different molecular structure compositions and varying fluorine contents (65% to 71%)
    • FKM is generally not resistant to hot water, water vapour, polar solvents, glycol-based brake fluids and low-molecular organic acids
  • EPDM
    • EPDM materials generally have good resistance to hot water, water vapour, ageing and chemicals and enable many thermal applications
    • They are subdivided into sulphur and peroxide vulcanised types, with the peroxide mixtures able to withstand higher thermal loads and exhibit a significantly lower deformation residual
    • EPDM is highly resistant to hot water and water vapour, detergent, caustic soda, caustic potash, silicone oils and greases, many polar solvents, many dilute acids and chemicals
    • Special compounds must be used for glycol-based brake fluids
    • EPDM materials are absolutely not resistant to mineral oil-based products (lubricating oils, motor fuels)
    • Permissible temperatures range from -45°C to +130°C (-50°C to +150°C for peroxide mixtures)
  • VMQ
    • Silicone compounds stand out for their great thermal application possibilities and their high resistance to ozone, weather and ageing.
    • The mechanical properties of silicone are not as good as those of other elastomers
    • In general, silicone materials are not harmful, i.e. they are used in the food and medical industries, among others
    • The standard silicone material can be used at temperatures from -55°C to +200°C and is resistant to water (up to 100°C), aliphatic motor and cardanol oils, animal and vegetable oils and greases
    • Silicone is generally not resistant to motor fuels, aromatic mineral oils, water vapour ( briefly up to 120°C possible), silicone oils and fats, acids and alkalis
  • Assembly:

    • During assembly, any damage to the O-ring should be avoided, otherwise leaks may occur
    • In addition, the following advice should be observed:
      • The O-ring must not be stretched to its elongation limit
      • The edges must be burr-free, round sections and bevelled edges must be seamless
      • Dust, dirt, metal splinters and other particles must be removed
      • Sharp points of the thread and installation spaces for other seals and guide elements should be covered with mounting sleeve
      • Mounting surfaces and O-rings should be coated with a suitable grease
      • Heating in oil or hot water to approx. 80°C makes elastomers more flexible. The O-ring can therefore be stretched more easily for assembly
      • Any assembly tools such as assembly mandrels or sleeves should be made of soft material (e.g. POM) and have no sharp edges
      • The O-ring must not be rolled over the mounting surfaces. When mounted in the groove, the O-ring must not twist

    Production of bonded RSR round cord rings:

    • As standard, the pre-lengthened pinion rings are bonded with a cyanoacrylate adhesive (e.g. Loctite 406).
    • The permissible temperature limit is approx. 80 °C
    • In the case of EPDM, VMQ and FKM round cords, a special additional primer (e.g. Loctite 770) may need to be used
    • Pay particular attention to the manufacturers' product information and safety instructions
    • Before bonding, both ends should be roughened with fine sanding paper and degreased with a suitable cleaning agent (e.g. acetone)
    • Both ends should be glued without tension
    • Then check that the glued area is completely dry
    • The glued cord ring may not be stretched over the area where the cord has been glued or vulcanised.
    • The connection created in this way is clearly less elastic than the cord itself

    Assembly instructions:

    • During assembly, any damage to the round cord must be avoided, otherwise leaks may occur
    • In addition, please observe the following instructions:
      • The bonded cord ring must not be stretched over the joint of the ends and the remaining part of the cord ring must not be stretched to the stretch limit
      • Chamfers should be burr-free, radii and bevels should be seamless
      • Dust, dirt, metals and other particles should be removed
      • Thread and installation spaces for other sealing and guide elements should be covered with mounting sleeves
      • Mounting surfaces and the pinion itself should be coated with a suitable grease
      • Heating in oil or hot water to approx. 80 °C makes elastomers more elastic
      • If necessary, assembly tools can be used. These tools should be made of soft material (e.g. POM) and have no sharp edges
      • The cord or cord ring must not be rolled over the mounting surfaces. When snapping into the groove, the cord ring must not rotate in the groove