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Ensinger PEI
DuPont™ Nomex® 410 Paper, 2 mil Nominal Thickness
Categories: Other Engineering Material; Composite Fibers; Polymer; Film; Thermoset; Aramid

Material Notes: Nomex® Type 410 is a calendared insulation paper which offers high inherent dielectric strength, mechanical toughness, flexibility, and resilience. It is the original form of Nomex® paper and is widely used in a majority of electrical applications.

General NOMEX Information: Nomex® is a family of aromatic polyamide (aramid) fibers. This family consists of staple fibers, continuous filament yarns, paper, and spunlaced fabrics. The paper is produced from two forms of the aramid polymer. Small fibrous binder particles (fibrids) derived directly from the polymer under high shear conditions are mixed with short fibers (floc) which are cut to length from a fiber filament. The floc and fibrids are combined in a water based slurry from which a continuous sheet is produced on a specialized papermaking machine. This initial paper (as in Type 411) is low density and has poor properties. Subsequent densification and internal bonding is achieved by high temperature calendaring. The resulting paper is mechanically strong and has good electrical properties. Some uses for paper product include insulation in electric motors and transformers, wire wrapping, and honeycombed strength members in many aircraft. Nomex® brand fibers are inherently flame resistant: the flame resistance is a polymer property and does not diminish with the life of the fiber.

Nomex® meta-aramid, poly(meta-phenyleneisophthalamide), is prepared from meta-phenylenediamine and isophthaloyl chloride in an amide solvent. It is a long chain polyamide in which at least 85% of the amide linkages are attached directly to two aromatic rings. The meta oriented phenylene forms bends in the polymer chain, reducing chain rigidity as compared to the para orientation in the chemically similar Kevlar® chain. This flexible polymer chain gives Nomex® more textile-like qualities while retaining high temperature properties similar to Kevlar®.

Information provided by DuPont.

Vendors:
Available Properties
  • Bulk Density
  • Density
  • Thickness, Nominal
  • Thickness, Typical; ASTM D374
  • Film Elongation at Break, MD, ASTM D828
  • Film Elongation at Break, TD, ASTM D828
  • Tear Strength, Total, Initial in TD; ASTM D1004
  • Tear Strength, Total, Initial in MD; ASTM D1004
  • Elmendorf Tear Strength, MD, Calculated from mfr's report of 0.8 N per TAPPI-414 and the typical thickness
  • Elmendorf Tear Strength, TD, Calculated from mfr's report of 1.6 N per TAPPI-414 and the typical thickness
  • Film Tensile Strength at Break, MD, Calculated from mfr's report of 39 N/cm per ASTM D828 and the typical thickness
  • Film Tensile Strength at Break, TD, Calculated from mfr's report of 18 N/cm per ASTM D828 and the typical thickness
  • Volume Resistivity, ASTM D257, 50% RH; tested on 10 mil thickness sample
  • Surface Resistivity per Square, ASTM D257, tested on 10 mil thickness sample
  • Dielectric Constant, ASTM D150
  • Dielectric Strength, AC Rapid Rise; ASTM D149
  • Dielectric Strength, Full-wave Impulse; ASTM D3426
  • Dissipation Factor, ASTM D150
  • Thermal Conductivity
  • Maximum Service Temperature, Air, 220°C insulation by UL, the US Navy, and other tests
  • Oxygen Index, Range at RT for Type 410; depends on thickness and density
  • Shrinkage, MD
  • Shrinkage, TD
  
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Plastic

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