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Klingersil gasket

Klingersil gasket is a type of compressed fiber gasket used as a safe and modern replacement for asbestos gaskets in industrial sealing systems. These gaskets, also known as Non-Asbestos Gaskets or Compressed Fiber Sheets, are manufactured from a combination of synthetic fibers (such as aramid), rubber binders, and mineral fillers. Due to their excellent resistance to pressure, temperature, and chemical media, they are among the most widely used sealing materials in oil, gas, steam, and petrochemical industries.

واشر کلینگریت

A Comprehensive Guide to Selecting and Using Klingersil Gaskets

Klingersil gaskets are composed of a dense composite structure formed through layered compression. This composition typically includes the following components:

  • Aramid fibers: Fibers with high thermal and mechanical resistance

  • Mineral fillers: Used to increase density and structural strength

  • Rubber binder: Such as NBR, SBR, or EPDM, providing flexibility and sealing performance

These materials are combined through a controlled hot-pressing and compression process to produce durable sheets in various thicknesses.

FeatureDescription
Thermal resistanceFrom −20°C up to 400°C, depending on the material grade
Working pressure capacityUp to 100 bar (10 MPa) in specific models
Chemical resistanceResistant to oils, steam, acids, gases, and solvents
High flexibilityEasy installation on uneven or imperfect sealing surfaces
Long service lifeSuitable for continuous or semi-continuous use in industrial equipment

Klingersil gasket with NBR binder
Suitable for oil, fuel, and steam applications
Common brands: Klinger C-4400, Tesnit BA-U
Temperature resistance: up to 300°C

Klingersil gasket with EPDM binder
Designed for water and steam systems
Good resistance to UV radiation, seawater, and chlorinated gases

Klingersil gasket with SBR binder
An economical option for general industrial applications
Resistant to abrasion and mild chemical media

Graphite-coated Klingersil gasket
Klingersil sheet with a graphite coating for high-temperature and high-pressure service
Temperature resistance: up to 450°C
Widely used in steam, petrochemical, and power generation industries

  • High-temperature steam lines

  • Oil and gas flanges

  • Pumps and compressors

  • Heat exchangers

  • Industrial pipelines

  • High-pressure fittings

  • Chemical and petrochemical plants

  • Steam boilers and chemical reactors

FeatureKlingersilAsbestos GasketsPTFE GasketsRubber Gaskets
Temperature resistance−20°C to 450°C (depending on type)Up to 400°C−200°C to 260°C−40°C to 120°C
Pressure capacityUp to 100 bar (10 MPa)Up to 50 barUp to 20 barUp to 30 bar
Chemical resistanceExcellent (oils, steam, acids, solvents)GoodExcellent (strong acids and bases)Limited
Flexibility & sealingHigh – suitable for uneven surfacesMediumLowHigh
Health & safetyNon-asbestos, safeContains asbestos (hazardous)SafeSafe

Applications

Oil, gas, steam, petrochemical, industrial pipelinesOlder installationsCorrosive chemicals, food, pharmaWater, low-pressure systems

CNC Cutting from Klingersil Sheets

  • Suitable for high precision and low-volume production

  • Capable of cutting complex shapes

Die Cutting (Punching)

  • Fast and economical for high-volume production

  • Ideal for mass production of standard gaskets

Layered Hot Pressing

  • For combining multiple layers of Klingersil or graphite coating

  • Used in gaskets resistant to high steam and pressure


  • Operating temperature of the system

  • Type of fluid in contact with the gasket (oil, steam, acids, gases…)

  • Working pressure

  • Requirement for industrial certifications such as API, DIN, or BS

  • Service life and frequency of gasket replacement

Summary: Why is Klingersil the Best Choice for Industrial Sealing?

Klingersil is a type of compressed fiber gasket used as a safe and modern replacement for asbestos gaskets in industrial sealing systems. These gaskets, also known as Non-Asbestos Gaskets or Compressed Fiber Sheets, are made from a combination of synthetic fibers (such as aramid), rubber, and mineral fillers. Due to their excellent resistance to pressure, temperature, and chemicals, they are one of the most common choices for the oil, gas, steam, and petrochemical industries.

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