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Kovalev, B.A.

Paper Title Page

THLO07

 Radiation Technology Facilities Based On Electron Beam Accelerators At The Branch of the Federal State Unitary Enterprise (FSUE) "Karpov Institute of Physical Chemistry": Manufactured Products And Promising Developments 

  • B.A.Kovalev, V.V.Krayushkin, V.P.Laricheva, V.P.Pleshanov, V.G.Ostapets, A.A.Stuk, N.P.Chelnakov
    Branch of FSUE "Karpov Institute of Physical Chemistry", Obninsk, Russia

At present five EB accelerator-based technological facilities are operated at the Karpov Institute to solve the following tasks: manufacture of various commercial products (foamed polyethylene, pipeline insulation, pipe products for electrical engineering, composite materials), scientific research and development of promising radiation-chemical technologies.

 

 

MOLP08

 Electron Beam Technology For Manufacture Of Compositions With Unique Characteristics 

  • V.P.Laricheva, A.F.Korotkiy, V.V.Krayushkin, L.A.Smirnova, B.A.Kovalev, N.P.Chelnakov
    Branch of FSUE "Karpov Institute of Physical Chemistry", Obninsk, Russia
  • Vymorkov N.V., Nikulina I.P.
    FSUE ONTPP "TECHNOLOGIYA", Obninsk, Russia

Two types of complex solvent-free binders were developed in the course of scientific research for radiation-induced technologies used in the manufacture of large-size items. A manufacturing process could be accomplished through a single stage of radiation curing or through a two-stage procedure, which implies radiation manufacture of the long-lived prepregs and subsequent thermo-chemical hardening. The developed binders make it possible to obtain composition materials with high heat stability (glass transition temperature ~260°C) and radiation resistance (>10 MGy).

 

 

MOLP20

 Radiation-Chemical Modification Of Surface Properties Of Polyolefin Films 

  • B.A.Kovalev, V.V.Krayushkin
    Branch of FSUE "Karpov Institute of Physical Chemistry", Obninsk, Russia

A radiation-chemical technology has been developed at the FSUE "Karpov Institute of Physical Chemistry" for EB modification of the surface properties of polymeric films. The process makes it possible to manufacture continuously one- and two-side treated adhesive films of different polymers.