Polymer-derived SiC fibers were exposed to nitrogen gas pressures of 7 and 50 atm at temperatures up to 1800 C. The fiber weight loss, chemical composition, and tensile strength were then measured at room temperature in order to understand the effects of nitrogen exposure on fiber stability. High pressure nitrogen treatments limited weight loss to 3 percent or less for temperatures up to 1800 C. The bulk Si-C-O chemical composition of the fiber remained relatively constant up to 1800 C with only a slight increase in nitrogen content after treatment at 50 atm; however, fiber strength retention was significantly improved. To further understand the effects of the nitrogen atmosphere on the fiber stability, the results of previous high pressure...
Sylramic-iBN fiber is a new type of small-diameter (10-mm) SiC fiber that was developed at the NASA ...
Tensile strengths of as-received Hi-Nicalon fibers and those having a dual BN/SiC surface coating, d...
The mechanical properties of NASA Lewis developed SiC/RBSN composites and their thermal and environm...
The room temperature tensile strength of uncoated and two types of pyrolytic boron nitride coated (P...
Tensile creep and stress-rupture studies were conducted on Hi-Nicalon SiC fibers at 1200 and 1400 C ...
Commercially available polymer derived SiC fibers were treated at temperatures from 1000 to 2200 C i...
The room temperature tensile strength and microstructure of three types of commercially available ch...
The room-temperature tensile properties and constituent microstructures of a unidirectionally reinfo...
The effects of thermal exposure on the room temperature tensile strength and microstructure of a dev...
The room temperature and elevated temperature tensile strengths of commercially available chemically...
Uncoated Hi-Nicalon silicon carbide (SiC) fiber tows and those coated with a single surface layer of...
The room temperature mechanical properties of SiC fiber reinforced reaction bonded silicon nitride c...
Silicon carbide (SiC) fiber is a material that may be used in advanced thermal protection systems (T...
The creep, thermal expansion, and elastic modulus properties for chemically vapor deposited SiC fibe...
In the as-produced condition the room temperature strength (approx. 6 GPa) of Textron Specialty Mate...
Sylramic-iBN fiber is a new type of small-diameter (10-mm) SiC fiber that was developed at the NASA ...
Tensile strengths of as-received Hi-Nicalon fibers and those having a dual BN/SiC surface coating, d...
The mechanical properties of NASA Lewis developed SiC/RBSN composites and their thermal and environm...
The room temperature tensile strength of uncoated and two types of pyrolytic boron nitride coated (P...
Tensile creep and stress-rupture studies were conducted on Hi-Nicalon SiC fibers at 1200 and 1400 C ...
Commercially available polymer derived SiC fibers were treated at temperatures from 1000 to 2200 C i...
The room temperature tensile strength and microstructure of three types of commercially available ch...
The room-temperature tensile properties and constituent microstructures of a unidirectionally reinfo...
The effects of thermal exposure on the room temperature tensile strength and microstructure of a dev...
The room temperature and elevated temperature tensile strengths of commercially available chemically...
Uncoated Hi-Nicalon silicon carbide (SiC) fiber tows and those coated with a single surface layer of...
The room temperature mechanical properties of SiC fiber reinforced reaction bonded silicon nitride c...
Silicon carbide (SiC) fiber is a material that may be used in advanced thermal protection systems (T...
The creep, thermal expansion, and elastic modulus properties for chemically vapor deposited SiC fibe...
In the as-produced condition the room temperature strength (approx. 6 GPa) of Textron Specialty Mate...
Sylramic-iBN fiber is a new type of small-diameter (10-mm) SiC fiber that was developed at the NASA ...
Tensile strengths of as-received Hi-Nicalon fibers and those having a dual BN/SiC surface coating, d...
The mechanical properties of NASA Lewis developed SiC/RBSN composites and their thermal and environm...