Method for manufacturing a glass container having a large impact

Glass manufacturing – Processes – Utilizing parting or lubricating layer

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Details

65 76, 65 79, 65169, 6537411, 6537415, 65 24, 65362, C03B 9193, C03B 1106

Patent

active

051203413

ABSTRACT:
A method for manufacturing a glass container by the steps of (a) providing a plunger with two portions, one portion having a sprayed metal coating of self-fluxing alloy and the second portion having a ceramic coating, (b) forming a lubrication carbon layer on surfaces of molds including a blank mold and a neck ring by periodically injecting flames of at least one kind of gaseous hydrocarbon having a carbon to hydrogen ratio more than 0.75, (c) supplying a gobbet of glass to the blank mold; (d) producing the parison from the gobbet of glass, using the plunger, the blank mold and the neck ring; and (e) blow-forming the parison to a glass container of a final configuration.

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"Metal Data Book", Japan Society of Metallurgical Engineers, Marusen Corporation, Material A, Jan., 1984.
Material B, "State of the Art", Stoody Deloro Stellite, Inc., Jun., 1987.
Nikkon Kogyo Newspaper Company, "Spray Handbook", Japan Spray Association, Material C, May, 1964.
Kyoritsu Publication Company, "Eddition Association for Chemical Encyclopedia", Material D, Nov. 1963.
Showa Denko, "Sales Technical Bulletin", Plasma Fluxing Material, Material for Sales, E-10-2, Ceramics Series Fluxing Alloy, Material F.
Showa Denko k.k., "Test Results", Nov. 30, 1987, To: Ishizuka Garasu U.K., Composition Analysis, Material G.

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