A shaped confined structure composed of a mass of diamond and/or cubic boron nitride crystals coated with elemental non-diamond carbon in contact with a carbonaceous substrate is infiltrated by fluid silicon producing a like-shaped composite of a polycrystalline body phase integrallay bonded to a substrate supporting phase.
Method Of Making Molten Silicon Infiltration Reaction Products And Products Made Thereby
William B. Hillig - Ballston Lake NY Charles R. Morelock - Ballston Spa NY
Assignee:
General Electric Company - Schenectady NY
International Classification:
C04B 3556
US Classification:
106 44
Abstract:
Infiltration reaction products are provided of molten silicon and certain blends of particulated carbon and various particulated inorganic materials substantially unreactive to molten silicon, such as boron nitride particles. These molten silicon infiltration products of reaction are readily machinable and can be applied, or formed in-situ as contiguous layers on silicon carbide, or silicon-silicon carbide substrates, etc. , to produce multilayer composites having an improved impact strength over the base refractory structure.
Process For Producing A Composite Of Polycrystalline Diamond And/Or Cubic Boron Nitride Body And Substrate Phases
A shaped confined structure composed of a mass of diamond and/or cubic boron nitride crystals coated with elemental non-diamond carbon in contact with a carbonaceous substrate is infiltrated by fluid silicon producing a like-shaped composite of a polycrystalline body phase integrally bonded to a substrate supporting phase.
Infiltration Of Mo-Containing Material With Silicon
A process for producing a brazable ceramic composite by infiltrating silicon into a porous body at least partly composed of molybdenum to form at least about 5% by volume of a silicide of molybdenum in situ.
Method Of Making A Shaped Silicon Carbide-Silicon Matrix Composite And Articles Made Thereby
William Laskow - Downingtown PA Charles R. Morelock - Ballston Spa NY
Assignee:
General Electric Company - Schenectady NY
International Classification:
C04B 3556
US Classification:
106 44
Abstract:
A method is described for making a shaped silicon carbide-silicon matrix composite. A confined carbon fiber preform is infiltrated with sufficient molten silicon metal at a temperature in the range of from about 1400. degree. C. to about 1800. degree. C. in an inert atmosphere or vacuum. Silicon carbide powder can also be incorporated in the preform structure.
Method Of Making A Shaped Silicon Carbide-Silicon Matrix Composite And Articles Made Thereby
William Laskow - Downingtown PA Charles R. Morelock - Ballston Spa NY
Assignee:
General Electric Company - Schenectady NY
International Classification:
C04B 3470
US Classification:
264101
Abstract:
A method is described for making a shaped silicon carbide-silicon matrix composite. A confined carbon fiber preform is infiltrated with sufficient molten silicon metal at a temperature in the range of from about 1400. degree. C. to about 1800. degree. C. in an inert atmosphere or vacuum. Silicon carbide powder can also be incorporated in the preform structure.
Method Of Making Molten Silicon Infiltration Reaction Products And Products Made Thereby
William B. Hillig - Ballston Lake NY Charles R. Morelock - Ballston Spa NY
Assignee:
General Electric Company - Schenectady NY
International Classification:
B32B 1516 B32B 1518
US Classification:
428242
Abstract:
Infiltration reaction products are provided of molten silicon and certain blends of particulated carbon and various particulated inorganic materials substantially unreactive to molten silicon, such as boron nitride particles. These molten silicon infiltration products of reaction are readily machinable and can be applied, or formed in-situ as contiguous layers on silicon carbide, or silicon-silicon carbide substrates, etc. , to produce multilayer composites having an improved strength over the base refractory structure.
Method For Making Shaped Silicon-Silicon Carbide Refractories
Certain silicon-carbide shaped refractories can be obtained at molten silicon infiltration temperatures in a pollution-free manner by using an organic binder-free putty-like material of silicon powder, particulated carbon, including carbon fiber, and water, and optionally silicon carbide powder.
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