Claims
- 1. A method of manufacturing a glass optical lens comprising the steps of:
- placing glass in the form of a gob on a surface of a thermal processing mold in a non-oxidizing atmosphere, said surface being a mirror surface;
- heating the thermal processing mold in the non-oxidizing atmosphere so that said glass is thermally deformed into an optical glass preform which has a transcribed surface transcribed from said mirror surface at a portion contacting said mirror surface and a free surface formed by surface tension of the thermally deformed glass at a portion not contacting said mirror surface;
- replacing the optical glass preform from the thermal processing mold to a position between molding surfaces of a pair of heated upper and lower molds which are different from said thermal processing mold; and
- press-molding said optical glass preform with the pair of upper and lower molds to obtain said lens.
- 2. The method as set forth in claim 1, wherein the mirror surface of said thermal processing mold and the molding surfaces of said pair of upper and lower molds are each coated with a chemically stable thin film.
- 3. The method as set forth in claim 2, wherein said chemically stable thin film comprises at least one element selected from the group consisting of a noble metal, tungsten, tantalum, rhenium and hafnium.
- 4. A method of manufacturing a glass optical lens comprising the steps of:
- receiving a glass gob on a first thermal processing mold to form the glass gob into a rough shape;
- transferring the rough-shaped glass gob onto a surface of a second thermal processing mold in a non-oxidizing atmosphere such that the position of the glass gob on the second thermal processing mold becomes vertically inverted relative to its position on the first thermal processing mold, said surface being a mirror surface;
- heating the second thermal processing mold in the non-oxidizing atmosphere so that the rough-shaped glass gob is thermally deformed into an optical glass preform which has a surface transcribed from said mirror surface at a portion contacting said mirror surface and a free surface formed by surface tension of the glass gob at a portion not contacting said mirror surface;
- replacing the optical glass preform from the thermal processing mold to a position between molding surfaces of a pair of heated upper and lower molds which are different from said first and second thermal processing molds; and
- press-molding the optical glass preform with the pair of upper and lower molds to obtain said lens.
- 5. The method as set forth in claim 4, wherein a surface of said firs thermal processing mold in contact with the glass gob comprises carbon, graphite, glassy carbon, boron nitride, stainless steel or nickel-base alloy.
- 6. The method as set forth in claim 4, wherein the mirror surface of said second thermal processing mold and the molding surfaces of said pair of upper and lower molds are each coated with a chemically stable thin film.
- 7. The method as set forth in claim 6, wherein said chemically stable thin film comprises at least one element selected from the group consisting of a noble metal, tungsten, tantalum and rhenium.
Priority Claims (3)
Number |
Date |
Country |
Kind |
1-7249 |
Jan 1989 |
JPX |
|
1-47629 |
Feb 1989 |
JPX |
|
1-80371 |
Mar 1989 |
JPX |
|
Parent Case Info
This application is a continuation of now abandoned application Ser. No. 07/460,554 filed on Jan. 3, 1990.
US Referenced Citations (8)
Foreign Referenced Citations (5)
Number |
Date |
Country |
855763 |
Jul 1949 |
DEX |
54-60312 |
May 1979 |
JPX |
54-39846 |
Nov 1979 |
JPX |
64-24024 |
Jan 1989 |
JPX |
64-52619 |
Feb 1989 |
JPX |
Non-Patent Literature Citations (1)
Entry |
Patent Abstracts of Japan, unexamined applications C Field, vol. 10, No. 139, May 22, 1986 ref. Kokai-No. 60-264 333. |
Continuations (1)
|
Number |
Date |
Country |
Parent |
460554 |
Jan 1990 |
|