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Method of manufacturing an object of silicon nitride

Jan Adlerborn, +1 more
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TLDR
In this article, a method for manufacturing an object of silicon nitride by isostatic pressing of a preformed body of silicon oxide powder utilizing a pressure medium at a temperature sufficiently high to sinter the silicon oxide, is presented.
Abstract
A method for manufacturing an object of silicon nitride by isostatic pressing of a preformed body of silicon nitride powder utilizing a pressure medium at a temperature sufficiently high to sinter the silicon nitride. The preformed body is subjected to a degassing operation before isostatic pressing. An inner porous layer of a first material and then an outer porous layer of a second material are applied on the preformed powder body. The inner porous layer is transformable, at a temperature below the sintering temperature for silicon nitride, into a pressure medium impermeable layer. The outer porous layer is also transformable into a pressure medium impermeable layer, but at a temperature which is lower than the temperature when the inner porous layer is converted into its pressure medium impermeable form. Thus, the preformed body is first subjected to a degassing and to a heating to the temperature for transforming the outer porous layer into a pressure medium impermeable layer while the inner porous layer is maintained in a porous form. Thereafter the preformed body and the surrounding layers are heated further to the temperature for converting the inner porous layer into its pressure medium impermeable form while a pressure greater than the gas pressure inside the layers is maintained on the outside of the layers. The isostatic pressing of the preformed object is then carried out.

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Pressure transmitting medium and method for utilizing same to densify material

TL;DR: In this article, a quantity of material (10) at less than a predetermined density is disposed within a sealed container (12) which is, in turn, encapsulated in a pressure-transmitting (18) medium which is placed within a pot die (20) of a press where it is restrained as a ram (24) enters the pot die and applies a force to the pressuretransmitting medium to densify the material within the container into a compact (10') of predetermined density.
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Process for the densification of material preforms.

TL;DR: In this paper, a process for preparing dense, consolidated bodies, the process comprising compressing in a forging press an isostatic die assembly, the assembly comprising a preform surrounded by a fluid pressure-transmitting medium, the medium and the preform being contained in a shell having an open top.
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TL;DR: In this paper, a preformed body (12) from powder material of metallic and nonmetallic compositions and combinations thereof, is consolidated to form a densified compact (12") of a predetermined density.
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TL;DR: In this paper, the pore system of a preformed porous body is evacuated by applying a sub-atmospheric pressure by means of at least one suction cup, which is applied on the external surface to be coated in connection with and during the dipping of the body in a slurry of powdered materials included in the layer.
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TL;DR: In this article, a method of densifying a reaction-bonded silicon nitride article is described, in which a densification aid is incorporated into a reaction bonded silicon oxide article, and the powder mixture associated therewith, is subjected to a nitrogen gas pressure sufficient to prohibit a significant volatilization of silicon oxide at a sintering temperature.
References
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Method of compacting shaped powdered objects

TL;DR: In this article, a method for densifying to near theoretical density of a shape body of compacted powder particles, particularly of a refractory material, by preforming a shaped body of compressed particles of a powdered material characterized by voids, enclosing the shaped body within a loose mass of a pressure-transmitting powder disposed within a confining mold, applying a unidirectional pressure to the pressure-Transmitting powder within the mold, in order to compress the shape more compactly.
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TL;DR: In this article, hot compacting of metallic powders in a vitreous evacuated container of a predetermined shape corresponding to the shape of the densified object desired by subjecting the container to a temperature sufficient to render the container plastic and the contents densifiable, by the application of external pressure upon the container walls.
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TL;DR: In this article, a method for the hot isostatic compaction of particulate material into an article of intricate configuration is proposed, which consists of providing a removable pattern in the appropriate precompaction configuration of the article to be produced, coating the pattern with a first layer of conductive material and a second layer of metallic material, the two layers cooperating to provide a self-supporting and gas-impervious shell around the pattern and removing the pattern from the shell to provide an internal configuration corresponding to the pre-compaction shape of the piece.
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John Haller
TL;DR: In this article, a powder-filled flat-ended airtight deformable can is sealed to avoid subsequent oxidation of the contents thereof, and the can is then sealed to retain the vacuum.