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Gasket Annealed Copper - DN 63 CF (Pack of 5), C10007270

Materialnummer:C10007270
EUR 34.10

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Varianten

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Produktname Materialnummer Connection Vacuum Hardware Fittings Material of Construction
C10001270 DN 16 CF (1.33") Copper annealed
C10001280 DN 16 CF (1.33") Copper silver plated
C10001290 DN 16 CF (1.33") Copper
C10005270 DN 40 CF (2.75") Copper annealed
C10005280 DN 40 CF (2.75") Copper silver plated
C10005290 DN 40 CF (2.75") Copper
C10007270 DN 63 CF (4.5") Copper annealed
C10007280 DN 63 CF (4.5") Copper silver plated
C10007490 DN 63 CF (4.5") Copper
C10009270 DN 100 CF (6") Copper annealed
C10009280 DN 100 CF (6") Copper silver plated
C10009290 DN 100 CF (6") Copper
C10011270 DN 160 CF (8") Copper annealed
C10011280 DN 160 CF (8") Kupfer versilbert
C10011290 DN 160 CF (8") Kupfer
C10012270 DN 200 CF (10") Kupfer getempert
C10012280 DN 200 CF (10") Kupfer versilbert
C10012290 DN 200 CF (10") Kupfer
C10013270 DN 250 CF (13,25") Kupfer getempert
C10013290 DN 250 CF (13,25") Kupfer

Components and Fittings CF

When you buy vacuum pump components from Edwards, you can expect the quality and service that only a leading international supplier can provide. We understand that flanges and fittings are critical to the performance of your vacuum system, and supply only high quality products which meet the highest specification.

CF fittings have a unique sealing system to achieve a leak tight joint. A copper seal is squeezed axially and radially between two CF flanges, where knife-edges force the copper to cold flow. This flow is severely limited by the vertical flange wall which generates high pressures and fills surface imperfections to prove an extremely tight metal to metal seal.

 

Metric flanges, common in Europe and Asia, use metric tapped holes and bored holes in flanges suitable for metric tubing. Flanges specified in inches, more commonly used in the USA, use UNF flange threads and bored holes compatible with inch sized tube. We offer both options.

Our components and flange fittings are designed to be leak-tight across the range of vacuum applications, and not intended to provide full structural support. When designing any vacuum system, it is essential that consideration is given to the static and dynamic loads imposed on each connection. If necessary, additional mechanical support should be provided and built into the design. Regular inspection including leak-checking and, where appropriate, periodic replacement of components should be considered to ensure system efficiency and safety is maintained.

Gasket Annealed Copper - DN 63 CF (Pack of 5)

Annealed Copper Gaskets for CF Flanges utilize an Oxygen-Free OFHC copper to produce a vacuum tight seal up to 10-13 mbar. Annealed Copper Gaskets require a much lower sealing force to make a leak tight seal. They are normally used when it is important to limit the amount of force required when sealing. Recommended for use with items such as zero length viewports, gauge heads, and fragile ceramic feedthroughs.

Features and Benefits

  • Convenience of supply - Single source supplier, able to provide the complete system solution either online or via local supply centres.
  • High quality and reliability - Precision material control ensures a dependable vacuum performance on sensitive or demanding applications.
  • Comprehensive choice - Complete range for all common flange sizes in aluminium and stainless steel.
  • Manufactured to ISO 3669 standard
  • Nominal diameters 16-350 mm
  • Used almost exclusively with copper ring metal seals
  • Typically used in UHV systems: pressures < 10-8 mbar

Environmental Conditions

Temperature Ambient Operation Max 473.15
Temperature Ambient Operation Min 77.15

General Product Information

Connection Vacuum Hardware Fittings DN 63 CF (4.5")
Recommended Pressure Range Min 1.000 × 10⁻¹⁰
Recommended Pressure Range Max 1.000 × 10⁵

Material of Construction

Material Body Cu - copper annealed
Material of Construction Copper annealed
Material Abbreviation Cu

Classification

Classification Product Pressure Range Ultra High Vacuum: 1·10⁻⁷ - 1·10⁻¹¹ mbar