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PEI (Polyetherimide) Sheet, Opaque Natural, Standard Tolerance, ASTM D5205 PEI0113, 0.03" Thickness, 12" Width, 12" Length
Small Parts

PEI (Polyetherimide) Sheet, Opaque Natural, Standard Tolerance, ASTM D5205 PEI0113, 0.03" Thickness, 12" Width, 12" Length

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Brand
Small Parts
Color
Natural
Shape
Sheet
Finish Type
Natural

Key features

  • PEI is a strong, rigid plastic that withstands high temperatures and offers excellent electrical insulation over a wide range of temperatures
  • Color is opaque Natural
  • Meets ASTM D5205 PEI0113 specifications
  • Note: The Standard Cut Tolerance on the Width and Length is (+/-) 3/16”

Specifications

MaterialPEI (Polyetherimide)
BrandSmall Parts
ColorNatural
ShapeSheet
Finish TypeNatural
Package Dimensions11.5 x 11.42 x 0.16 inches; 0.01 Ounces
Item model numberULT-0030-E
ManufacturerSmall Parts
ASINB0013HKZTA

About this product

The opaque Natural PEI sheet has a standard tolerance and meets American Society for Testing and Materials ASTM D5205 PEI0113 specifications. PEI (polyetherimide) is a strong, rigid plastic that withstands high temperatures and offers excellent electrical insulation over a wide range of temperatures. The material has excellent dimensional stability, due in part to its good creep resistance and low moisture absorption. Plastic refers to a group of synthetic or semi-synthetic materials that have been engineered to achieve specific properties. The most notable characteristics of plastics are its low weight, machinability, corrosion resistance, and typically good thermal and electrical insulating properties. Certain plastic grades also offer optical transparency similar to glass, low-friction or self-lubricating surfaces, and exceptional impact resistance. Depending on their properties, certain plastic grades can be used as alternatives to metal, glass, and ceramic. Unlike metal, plastic may experience creep, which is deformation caused by longtime exposure to a constant load. Tensile strength, used to indicate the material’s overall strength, is the peak stress it can withstand before it breaks. Corrosion resistance describes the material's ability to prevent deterioration caused by atmosphere, moisture, or other medium. Wear resistance indicates the ability to prevent surface damage caused by contact with other surfaces. Toughness describes the material's ability to absorb energy before breaking, while hardness (commonly measured as indentation hardness) describes its resistance to permanent surface deformation. Impact resistance is the measure of a material’s ability to absorb a shock of energy before breaking.

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