EP0058023A2

Process of treating anodic oxide film, printed wiring board and process of making the same.

Abstract

A process of treating an anodic oxide film wherein a base material of a valve metal is anodized to form the anodic oxide film thereon, which is then impregnated with a polymerizable organic metal compound and thereafter subjected to polymerization of the compound, whereby the mircopores of the anodic oxide film are filled and sealed with the polymerized organometallic compound. According to this process, there is provided a base material having an anodic oxide film impregnated with polymerized organometallic compound which is excellent in heat resistance, heat radiance, and electrical insulation, and hence the base material is useful for the printed wiring board, electrically- insulative heat sink, heat-resistant insulated wire and the like.

EP0058023A2, drawing sheet 1
Sheet 1 of 18

Term

Term ended

Projected expiry passed 29 January 2002, 24.7 years ago.

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38 claims: 3 independent, 35 dependent

  1. 1
    A process of treating an anodic oxide film, comprising the steps of:anodizing a base material of a valve metal to form the anodic oxide film thereon;impregnating the anodic oxide film with polymerizable organometallic compound;and thereafter polymerizing and hardening the organometallic compound impregnated into the anodic oxide film, whereby micropores of the anodic oxide film are filled and sealed with the polymerized organometallic compound.
  2. 18
    A printed wiring board comprising a base metal plate having an anodic oxide film formed thereon with micropores filled and sealed with an organometallic compound polymer material, and a conductor circuit disposed on the organometallic compound polymer material.
  3. 25
    A process of making a printed wiring board, comprising the steps of:anodizing a base metal plate of a valve metal to form an anodic oxide film thereon;impregnating the anodic oxide film with a polymerizable organometallic compound;subsequently, polymerizing and hardening the polymerizable organometallic compound to form an organic metal compound polymer material so that micropores of the anodic oxide film are filled and sealed with the polymer material;and thereafter, disposing a conductor circuit on said polymer material.