POWERgasket 100

Seal made of aramid fibre rubber plate with NBR binder. For low pressures and temperatures. Dimensions according to standards and to order.

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Product description

We offer fibre rubber seals according to ČSN, EN, DIN, ANSI standards as well as non-standard ones to order.

POWERgasket 100 gaskets are made of fibre-rubber plate made of aramid fibres with NBR binder.

  • The material is suitable for low pressures and temperatures.
  • For water, petroleum derivatives and hydrocarbons, weak bases, brine, vegetable and animal oils, common chemicals, aliphatic and aromatic solvents, neutral solutions, etc.

Available seal thicknesses: 0.5 - 1.0 - 1.5 - 2.0 - 3.0 mm

Technical specification

POWER®gasket 100ASTMValue
Temperature range in oxidizing atmosphereup to +220 ºC
Operating pressureup to 30 bar
CompressibilityF 3615 %
Reverse suspensionF 3655 %
Weight increase:
5h / ASTM IRM 903 at 150 ºC
5h / ASTM Fuel B at +21 ÷ +29 ºC
F 14611 %
9 %
Increase in thickness:
5h / ASTM IRM 903 at 150 ºC
5h / ASTM Fuel B at +21 ÷ +29 ºC
F 1469 %
8 %
Tensile strength-8 N/mm²
Specific gravity-approx. 1,8 g/cm³

Features

Feature Value Unit
Operating temperature
-40 to 150 °C
Non-standard temperature Vláknitpryžová těsnění bez ohledu na výrobce mají z důvodu obsahu pryže stálou teplotní odolnost maximálně 150 °C, při vyšších teplotách použití konzultujte.
151 to 220 °C
Operating pressure
0 to 30 bar
Non-standard pressure Vysekávaná těsnění jsou standardně dimenzovaná pro použití do 40 barů (v závislosti na typu spoje). Pro vyšší tlaky doporučujeme kovová těsnění nebo aplikaci konzultujte.
31 to 80 bar
Compressibility Metoda ASTM F 36
10÷20 %
Reverse suspension Metoda ASTM F 36
35 %
Weight gain: 5h / ASTM IRM 903 at 150 ºC Metoda ASTM F 146
11 %
Weight gain: 5h / ASTM Fuel B at +21 ÷ +29 ºC Metoda ASTM F 146
9 %
Thickness increase: 5h / ASTM IRM 903 at 150 ºC Metoda ASTM F 146
9 %
Thickness increase: 5h / ASTM Fuel B at +21 ÷ +29 ºC Metoda ASTM F 146
8 %
Tensile strength
4 N/mm²
Specific gravity
1.75 g/cm³

Questions and Answers

For fibre rubber materials, it is generally the case that the weakest part is the rubber, i.e. NBR, CSM, etc. In particular, the temperature resistance of elastomers ranges from -20 °C to a maximum of 150 °C. For this reason, the temperature resistance cannot be increased even by adding e.g. graphite, aramid, etc. Nevertheless, it is often argued that these materials can be used 'short-term' even at 350 °C. But can the term 'short-term' be specified?

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