发明名称 High-Strength Refractory Fibrous Materials
摘要 The disclosed materials, methods, and apparatus, provide novel ultra-high temperature materials (UHTM) in fibrous forms/structures; such “fibrous materials” can take various forms, such as individual filaments, short-shaped fiber, tows, ropes, wools, textiles, lattices, nano/microstructures, mesostructured materials, and sponge-like materials. At least four important classes of UHTM materials are disclosed in this invention: (1) carbon, doped-carbon and carbon alloy materials, (2) materials within the boron-carbon-nitride-X system, (3) materials within the silicon-carbon-nitride-X system, and (4) highly-refractory materials within the tantalum-hafnium-carbon-nitride-X and tantalum-hafnium-carbon-boron-nitride-X system. All of these material classes offer compounds/mixtures that melt or sublime at temperatures above 1800° C.—and in some cases are among the highest melting point materials known (exceeding 3000° C.). In many embodiments, the synthesis/fabrication is from gaseous, solid, semi-solid, liquid, critical, and supercritical precursor mixtures using one or more low molar mass precursor(s), in combination with one or more high molar mass precursor(s). Methods for controlling the growth, composition, and structures of UHTM materials through control of the thermal diffusion region are disclosed.
申请公布号 US2016237595(A1) 申请公布日期 2016.08.18
申请号 US201514931564 申请日期 2015.11.03
申请人 Dynetics, Inc. 发明人 Maxwell James L.;Webb Nicholas;Hooper Ryan;Allen James
分类号 D01F9/12;D01F9/127 主分类号 D01F9/12
代理机构 代理人
主权项 1. A fibrous material comprising carbon and at least one additive element, wherein the concentration of carbon is at least 55 atomic percent, and wherein said fibrous material is grown in at least one localized reaction zone from gaseous, liquid, semi-solid, critical, or supercritical precursor fluid mixtures using at least one primary heating means.
地址 Huntsville AL US