Claims
- 1. A method of producing prepreg for a printed wiring board, comprising treating a glass base material with a silicone oligomer having at least one functional end group reactive to a hydroxyl group, impregnating the treated base material with a resin varnish, and drying the impregnated base material, wherein the silicone oligomer (a) contains at least one kind of siloxane units selected from trifunctional siloxane units (RSiO3/2) and tetrafunctional siloxane units (RSiO4/2) wherein each R is an alkyl group, an aryl group or a vinyl group and the organic groups R in the silicone oligomer are identical with or different from each other, (b) is synthesized by allowing at least one chlorosilane or alkoxysilane corresponding to the siloxane units to react in the presence of water and an acid catalyst, (c) is three-dimensionally crosslinked, and (d) has a polymerization degree of at most 70.
- 2. The method of claim 1, wherein the resin varnish comprises a resin and a curing agent therefor, the resin being selected form the group consisting of epoxy resin, polyimide resin, triazine resin, phenolic resin, melamine resin, polyester resin and modified resins of these resins.
- 3. The method of claim 1, wherein the silicone oligomer has a polymerization degree of 2 to 70.
- 4. The method of claim 1, wherein the silicone oligomer comprises difunctional siloxane units (R2SiO2/2) and tetrafunctional siloxane units (SiO4/2) and has polymerization degree of 6 to 70.
- 5. The method of claim 1, wherein the silicone oligomer comprises trifunctional siloxane units (RSiO3/2) and tetrafunctional siloxane units (SiO4/2) and has a polymerization degree of 6 to 70.
- 6. The method of claim 1, wherein the silicone oligomer comprises difunctional siloxane units (R2SiO2/2) and trifunctional siloxane units (RSiO3/2) and has a polymerization degree of 6 to 70.
- 7. The method of claim 1, wherein the silicone oligomer comprises difunctional siloxane units (RSiO3/2), trifunctional siloxane units (RSiO3/2) and tetrafunctional siloxane units (SiO4/2) and has a polymerization degree of 6 to 70.
- 8. The method of claim 7, wherein the tetrafunctional siloxane units (SiO4/2) are at least 15 mol % of total siloxane units of the silicone oligomer.
- 9. The method of claim 5, wherein the tetrafunctional siloxane units (SiO4/2) are at least 15 mol % of total siloxane units of the silicone oligomer.
- 10. The method of claim 4, wherein the tetrafunctional siloxane units (SiO4/2) are at least 15 mol % of total siloxane units of the silicone oligomer.
- 11. The method of claim 1, wherein the silicone oligomer comprises tetrafunctional siloxane units (SiO4/2) and has a polymerization degree of 6 to 70.
- 12. The method of claim 1, wherein the silicone oligomer comprises trifunctional siloxane units (RSiO3/2) and has a polymerization degree of 6 to 70.
- 13. The method of claim 1, wherein the silicone oligomer is used together with a silane coupling agent for treating the base material.
- 14. The method of claim 1, wherein after the treatment with the silicone oligomer, the treated base material is further treated with a silane coupling agent.
- 15. A laminate for a printed wiring board, which is produced by superposing two or more sheets of the prepreg produced by the method of claim 1 on each other, with a metal foil superposed on one or both sides of the superposed sheets of the prepreg, to form a superposed composite, and then bonding the superposed composite with heat and pressure.
- 16. The method of claim 1, wherein the at least one functional end group reactive to a hydroxyl group is selected from the group consisting of alkoxyl groups of one or two carbon atoms and silanol groups.
- 17. A glass fiber base material treated with a silicone oligomer, wherein the silicone oligomer (a) contains at least one kind of siloxane units selected from trifunctional siloxane units (RSiO3/2) and tetrafunctional siloxane units (RSiO4/2), wherein each R is an alkyl group, an aryl group or a vinyl group and the organic groups R in the silicone oligomer are identical with or different from each other, (b) is synthesized by allowing at least one chlorosilane or alkoxysilane corresponding to the siloxane units to react in the presence of water and an acid catalyst, (c) is three-dimensionally crosslinked, and (d) has a polymerization degree of at most 70.
- 18. The glass fiber base material of claim 17, wherein the silicone oligomer comprises difunctional siloxane units (R2SiO2/2) and tetrafunctional siloxane units (SiO4/2) and has a polymerization degree of 6 to 70.
- 19. The glass fiber base material of claim 18, wherein the tetrafunctional siloxane units (SiO4/2) are at least 15 mol % of total siloxane units of the silicone oligomer.
- 20. The glass fiber base material of claim 17, wherein the silicone oligomer comprises trifunctional siloxane units (RSiO3/2) and tetrafunctional siloxane units (SiO4/2) and has a polymerization degree of 6 to 70.
- 21. The glass fiber base material of claim 20, wherein the tetrafunctional siloxane units (SiO4/2) are at least 15 mol % of total siloxane units of the silicone oligomer.
- 22. The glass fiber base material of claim 17, wherein the silicone oligomer comprises difunctional siloxane units (R2SiO2/2) and trifunctional siloxane units (RSiO3/2) and has a polymerization degree of 6 to 70.
- 23. The glass fiber base material of claim 17, wherein the silicone oligomer comprises difunctional siloxane units (R2SiO2/2), trifunctional siloxane units (RSiO3/2) and tetrafunctional siloxane units (SiO4/2) and has a polymerization degree of 6 to 70.
- 24. The glass fiber base material of claim 23, wherein the tetrafunctional siloxane units (SiO4/2) are at least 15 mol % of total siloxane units of the silicone oligomer.
- 25. The glass fiber base material of claim 17, wherein the silicone oligomer comprises tetrafunctional siloxane units (SiO4/2) and has a polymerization degree of 6 to 70.
- 26. The glass fiber base material of claim 25, wherein the tetrafunctional siloxane units (SiO4/2) are at least 15 mol % of total siloxane units of the silicone oligomer.
- 27. The glass fiber base material of claim 17, wherein the silicone oligomer comprises trifunctional siloxane units (RSiO3/2) and has a polymerization degree of 6 to 70.
- 28. The glass fiber base material of claim 17, wherein the silicone oligomer is used together with a silane coupling agent for treating the base material.
- 29. The glass fiber base material of claim 17, wherein after treatment with the silicone oligomer, the treated base material is further treated with a silane coupling agent.
Priority Claims (4)
Number |
Date |
Country |
Kind |
7-160674 |
Jun 1995 |
JP |
|
7-255871 |
Oct 1995 |
JP |
|
7-255872 |
Oct 1995 |
JP |
|
7-255873 |
Oct 1995 |
JP |
|
Parent Case Info
[0001] This application is a Divisional application of U.S. Ser. No. 08/981,570, filed Dec. 23, 1997, which is an application filed under 35 USC §371 of PCT International Application No. PCT/JP98/01708, filed Jun. 20, 1996, and amended on Mar. 27, 1997.
Divisions (1)
|
Number |
Date |
Country |
Parent |
08981570 |
Dec 1997 |
US |
Child |
09849219 |
May 2001 |
US |