Dynetics, Inc.

United States of America

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B32B 5/00 - Layered products characterised by the non-homogeneity or physical structure of a layer 1
C23C 16/48 - Chemical coating by decomposition of gaseous compounds, without leaving reaction products of surface material in the coating, i.e. chemical vapour deposition [CVD] processes characterised by the method of coating by irradiation, e.g. photolysis, radiolysis, particle radiation 1
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1.

HIGH-STRENGTH REFRACTORY FIBROUS MATERIALS

      
Application Number US2015058865
Publication Number 2016/073504
Status In Force
Filing Date 2015-11-03
Publication Date 2016-05-12
Owner DYNETICS, INC. (USA)
Inventor
  • Maxwell, James, L.
  • Webb, Nicholas
  • Hooper, Ryan
  • Allen, James

Abstract

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 impmiant 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-hafniumcarbon- nitridc-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 degrees Celsius -and in some cases are among the highest melting point materials known (exceeding 3000 degrees Celsius). 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).

IPC Classes  ?

  • B32B 5/00 - Layered products characterised by the non-homogeneity or physical structure of a layer

2.

METHOD AND APPARATUS FOR FABRICATING FIBERS AND MICROSTRUCTURES FROM DISPARATE MOLAR MASS PRECURSORS

      
Application Number US2015045533
Publication Number 2016/028693
Status In Force
Filing Date 2015-08-17
Publication Date 2016-02-25
Owner DYNETICS, INC. (USA)
Inventor
  • Maxwell, James, L.
  • Webb, Nicholas
  • Allen, James

Abstract

The disclosed methods and apparatus improve the fabrication of solid fibers and microstructures. In many embodiments, the fabrication is from gaseous, solid, semi-solid, liquid, critical, and supercritical mixtures using one or more low molar mass precursor(s), in combination with one or more high molar mass precursor(s). The methods and systems generally employ the thermal diffusion/Soret effect to concentrate the low molar mass precursor at a reaction zone, where the presence of the high molar mass precursor contributes to this concentration, and may also contribute to the reaction and insulate the reaction zone, thereby achieving higher fiber growth rates and/or reduced energy/heat expenditures together with reduced homogeneous nucleation. In some embodiments, the invention also relates to the permanent or semi-permanent recording and/or reading of information on or within fabricated fibers and microstructures. In some embodiments, the invention also relates to the fabrication of certain functionally-shaped fibers and microstructures. In some embodiments, the invention may also utilize laser beam profiling to enhance fiber and microstructure fabrication.

IPC Classes  ?

  • C23C 16/48 - Chemical coating by decomposition of gaseous compounds, without leaving reaction products of surface material in the coating, i.e. chemical vapour deposition [CVD] processes characterised by the method of coating by irradiation, e.g. photolysis, radiolysis, particle radiation