polyethelyne, HyplonÂ® offers outstanding resistance to attack by oxygen
and ozone, high resistance to degradation by corrosive chemicals, good
to excellent heat resistance, and fair for excellent oil resistance.
Key Use: For
resistance to corrosive or oxidizing chemical (acid & alkalis). For
enhanced weather resistance (when compounded with protective pigments).
For resistance to Freon refrigerants (when compound with a high
Working Temperature Range: - 50 oF to + 275 oF. (Dry Heat Only).
Depending upon chlorine content, the heat resistance and low
temperature flexibility properties of HyplonÂ® compound can be widely
varied to meet specific application needs.
chlorine level, HyplonÂ® compound exhibit their best heat resistance and
low temperature flexibility properties, with fair oil resistance. At
high chlorine level, hypalon compound features excellent oil
resistance, with less heat resistance and less low temperature
In general, hypalon compound are highly
resistance to degradation by corrosive chemical, and are very resistant
to oxidation. Taken as a group, CSM compounds are more resistant to
corrosive and oxidizing chemicals than are Chloroprene or Nitrile. They
are also considerate be tougher than silicone or Ethylene-propylene
Limitations: Resistance of
HyplonÂ® compounds to solvents is limited more by swelling than actual
degradation. They are not recommended, however, for exposure to
aldehydes; ethers; ketones; aromatic, chlorinated or nitro hydrocarbons.
HypalonÂ® is a Registered Trade Mark of DuPont Dow Elastomers
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