13 Years Factory wholesale PTFE Packing with Aramid Corner for Costa rica Factory
13 Years Factory wholesale PTFE Packing with Aramid Corner for Costa rica Factory Detail:
PTFE packing with aramid corner is made from aramid yarns impregnated with PTFE, while the friction faces are made of PTFE yarns. This structure enhances the lubrication ability of aramid fiber and improves the strength of the pure PTFE.
Technical Data Sheet
|
Rotating |
Reciprocating |
Valves |
Pressure |
4Mpa |
15Mpa |
25Mpa |
Shaft Speed |
22m/s rotary |
||
Temperature |
-100℃~+280℃ |
||
PH Range |
2~12 |
Application Area
It affords longer service life under severe conditions which conventional asbestos packing can bot provide satisfaction, such as mine, tin ore, paper pulp, feed water pump of power stations, etc.
Product detail pictures:

Related Product Guide:
O-Ring Sizes for Industrial Applications
A Look at the Molded Gasket
13 Years Factory wholesale PTFE Packing with Aramid Corner for Costa rica Factory, The product will supply to all over the world, such as: , , ,
Vetaphone and Coating Plasma Industrie demonstrates the EASI-Plasma system for surface treatment of films and foils.
Vetaphone’s EASI-Plasma system works on the same principles as a Corona system, but by replacing the oxygen with gases or monomers, the EASI-Plasma can create new and innovative abilities on the film surface. The EASI-Plasma system does this with a significantly lower amount of consumables than any other solution on the market.
Benefits of EASI-Plasma
• Higher and longer lasting dyne values
• Replace your primer or coating unit with a cheaper solution
• Nano-coating thickness only 5-50 nm
• Anti-fog
• Hydrophilic or Hydrophobic surface
• A large variety of other abilities
EASI-Plasma provides a wide range of benefits for the coating and converting processes; such as nano-coating, anti-fog properties, low surface ageing and higher dyne levels.
EASI-Plasma reduces production costs by eliminating the need to use expensive primer, so the cost per m2 is reduced significantly. As the layer of primer is not needed, it is possible to produce much thinner film.
Similar advantages are present, when using the EASI-Plasma for nano-coating. By making the nano-coated layer only 5-50 nm thick, the EASI-Plasma brings down the cost per m2 and creates possibilities to produce new innovative thinner films.
All in all there is a great potential for saving resources and creating new surface abilities by employing EASI-Plasma.

