USRE33371EExpiredUtility

Method and material for dental structures

Priority: Apr 15, 1985Filed: Jul 3, 1989Granted: Oct 9, 1990
Est. expiryApr 15, 2005(expired)· nominal 20-yr term from priority
B22F 1/09A61C 13/0003A61K 6/844A61C 13/0024
5
PatentIndex Score
4
Cited by
2
References
11
Claims

Abstract

A dental material and method for forming, reinforcing or repairing a dental restoration comprising a combination of a high fusing temperature metal component in a major proportion and a low fusing temperature component in a minor proportion. A binder may be added to form a putty-like consistency. The dental material is molded into a predetermined shape and heat treated at a temperature which will substantially melt the low fusing metal components but below the melting temperature of the high fusing metal component for forming a porous, sponge-like mass of interconnected particles of the high fusing temperature metal component. A filler material having a low melting temperature is then added to the porous mass and the mass is again treated to form a solid mass.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
       1. A method for forming, reinforcing, or repairing a dental restoration comprising forming a material composition of metal particles composed substantially of a high fusing temperature metal component and a low fusing temperature component .[.with the low fusing component being in a mirror proportion relative to the high fusing temperature component.].; adding the material to the dental restoration to be reinforced or repaired; molding the material composition into a predetermined shape; heat treating the material composition at a temperature below the melting temperature of said high fusing temperature metal component and at a temperature level sufficient to cause substantial melting of said low fusing temperature component for forming a porous sponge-like mass of interconnected particles of said high fusing temperature metal component; adding particles of a low melting temperature filler to said porous sponge-like mass of metal, and heat treating said filler particles to cause said filler particles to melt into the sponge-like mass whereby a solid reinforced structure is formed. 
     
     
       2. A method, as defined in claim 1, wherein said material composition of metal particles comprises precious metals and a binder. 
     
     
       3. A method, as defined in claim 2, wherein said high fusing temperature metal component comprising particles selected from the class consisting of platinum and palladium. 
     
     
       4. A method, as defined in claim 3, wherein the melting temperature of said high fusing temperature component is above about 1300° C. and wherein said heat treating temperature is below about 1200° C. 
     
     
       5. A method, as defined in claim 4, wherein said low fusing temperature component comprises gold. 
     
     
       6. A method, as defined in claim 5, wherein said high fusing temperature metal particles are of a size no greater than about 100 microns. 
     
     
       7. A method, as defined in claim 6, wherein said filler comprises particles of a metal or metal alloy. 
     
     
       8. A method, as defined in claim 7, wherein said filler particles comprise gold. 
     
     
       9. A method, as defined in claim 1, wherein said filler comprises a ceramic composition or a resin or a resin filled dental composite material. 
     
     
       10. A method, as defined in claim 9, wherein said ceramic is porcelain. 
     
     
       11. A method, as defined in claim 3, wherein said high fusing metal component comprises up to about 50% to 75% .[.by weight.]..Iadd.by volume .Iaddend.of the combination of high and low fusing metal components.

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