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    • 1. 发明授权
    • Organized energetic composites based on micro and nanostructures and methods thereof
    • 基于微观和纳米结构的有机能量复合材料及其方法
    • US08257520B2
    • 2012-09-04
    • US12392025
    • 2009-02-24
    • Alexander E. GashThomas Yong-Jin HanDonald J. Sirbuly
    • Alexander E. GashThomas Yong-Jin HanDonald J. Sirbuly
    • C06B45/00C06B45/04D03D23/00D03D43/00
    • C06B33/00C06B45/00
    • An ordered energetic composite structure according to one embodiment includes an ordered array of metal fuel portions; and an oxidizer in gaps located between the metal fuel portions. An ordered energetic composite structure according to another embodiment includes at least one metal fuel portion having an ordered array of nanopores; and an oxidizer in the nanopores. A method for forming an ordered energetic composite structure according to one embodiment includes forming an ordered array of metal fuel portions; and depositing an oxidizer in gaps located between the metal fuel portions. A method for forming an ordered energetic composite structure according to another embodiment includes forming an ordered array of nanopores in at least one metal fuel portion; and depositing an oxidizer in the nanopores.
    • 根据一个实施例的有序的能量复合结构包括金属燃料部分的有序阵列; 以及位于金属燃料部之间的间隙中的氧化剂。 根据另一实施例的有序能量复合结构包括至少一个具有有序排列的纳米孔的金属燃料部分; 和纳米孔中的氧化剂。 根据一个实施例的用于形成有序能量复合结构的方法包括形成金属燃料部分的有序阵列; 以及在位于金属燃料部分之间的间隙中沉积氧化剂。 根据另一实施例的形成有序能量复合结构的方法包括在至少一个金属燃料部分中形成有序排列的纳米孔; 并将氧化剂沉积在纳米孔中。
    • 2. 发明申请
    • ORGANIZED ENERGETIC COMPOSITES BASED ON MICRO AND NANOSTRUCTURES AND METHODS THEREOF
    • 基于微观和纳米结构的组织能量复合材料及其方法
    • US20100212787A1
    • 2010-08-26
    • US12392025
    • 2009-02-24
    • Alexander E. GashThomas Yong-Jin HanDonald J. Sirbuly
    • Alexander E. GashThomas Yong-Jin HanDonald J. Sirbuly
    • C06B45/00C06B27/00C06B29/00
    • C06B33/00C06B45/00
    • An ordered energetic composite structure according to one embodiment includes an ordered array of metal fuel portions; and an oxidizer in gaps located between the metal fuel portions. An ordered energetic composite structure according to another embodiment includes at least one metal fuel portion having an ordered array of nanopores; and an oxidizer in the nanopores. A method for forming an ordered energetic composite structure according to one embodiment includes forming an ordered array of metal fuel portions; and depositing an oxidizer in gaps located between the metal fuel portions. A method for forming an ordered energetic composite structure according to another embodiment includes forming an ordered array of nanopores in at least one metal fuel portion; and depositing an oxidizer in the nanopores.
    • 根据一个实施例的有序的能量复合结构包括金属燃料部分的有序阵列; 以及位于金属燃料部之间的间隙中的氧化剂。 根据另一实施例的有序能量复合结构包括至少一个具有有序排列的纳米孔的金属燃料部分; 和纳米孔中的氧化剂。 根据一个实施例的用于形成有序能量复合结构的方法包括形成金属燃料部分的有序阵列; 以及在位于金属燃料部分之间的间隙中沉积氧化剂。 根据另一实施例的形成有序能量复合结构的方法包括在至少一个金属燃料部分中形成有序排列的纳米孔; 并将氧化剂沉积在纳米孔中。