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electron beam-cured conductive carbon black-filled ethylene acrylic elastomer

Based on

1 Articles
2013 Most recent source

Composition

Image only illustrates the order and placement of components as described in literature.

1

ethylene acrylic elastomer dipolymer

ethylene acrylic elastomer AEM
Type Polymer
Formula
Role binder
2

conductive carbon black

Ketjen black EC300J EC300J CCB
Type Nano Material
Formula
Role fillers

Properties

General physical and chemical properties

Property Value Source
AC conductivity dependent on electron beam radiation dose

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Applications

Area Application Source
polymers

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Characterization

Method Source
dielectric spectroscopy

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Biological effects

Preparation

Method 1

Type: Chemical synthesis
Source:
Starting materials
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  2. qye2vrg93Vya6LbzpNiFp6Ywo7nl7My5nLaA2tJK9yJz41xQf3QNDOm
  3. y1gwhXOQkwb1xXhJtd8N
Product

electron beam-cured conductive carbon black-filled ethylene acrylic elastomer

Method 2

Type: Chemical synthesis
Source:
Starting materials
  1. UoQ8wovHCHNii09Uhive9U
  2. HUCtnaGcx0KkVTVUzjnVGEhPPh7LgS7L4PktOs90QC0GEAD3lFbSMIO
  3. yWFvXjqH22IJ3OUYJpKK
Product

electron beam-cured conductive carbon black-filled ethylene acrylic elastomer

Method 3

Type: Chemical synthesis
Source:
Starting materials
  1. y1p6cPV0JsOXfk9gZjSb7Y
  2. vNqAmqsrpUA7JJ3SAN0ldalV7lKSOVQ10D7AqILODfE1ITgyxW6Sfw4
  3. aeQgDLWYZeyFNwYOQNfG
Product

electron beam-cured conductive carbon black-filled ethylene acrylic elastomer

References

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