会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 64. 发明授权
    • Metal complexes for use as gas generants
    • 用作气体发生剂的金属络合物
    • US06969435B1
    • 2005-11-29
    • US09025345
    • 1998-02-18
    • Jerald C. HinshawDaniel W. DollReed J. BlauGary K. Lund
    • Jerald C. HinshawDaniel W. DollReed J. BlauGary K. Lund
    • C06B31/00C06D5/06
    • C06D5/06
    • Gas generating compositions and methods for their use are provided. Metal complexes are used as gas-generating compositions. These complexes are comprised of a metal cation template, a neutral ligand containing hydrogen and nitrogen, and sufficient oxidizing anion to balance the charge of the complex. The complexes are formulated such that when the complex combusts, nitrogen gas and water vapor is produced. Specific examples of such complexes include metal nitrite ammine, metal nitrate ammine, and metal perchlorate ammine complexes, as well as hydrazine complexes. A binder and co-oxidizer can be combined with the metal complexes to improve crush strength of the gas-generating compositions and to permit efficient combustion of the binder. Such gas-generating compositions are adaptable for use in gas-generating devices, such as automobile air bags.
    • 提供了气体生成组合物及其使用方法。 金属络合物用作气体发生组合物。 这些络合物由金属阳离子模板,含有氢和氮的中性配体以及足够的氧化阴离子组成,以平衡络合物的电荷。 络合物配制成使得当复合物燃烧时,产生氮气和水蒸气。 这种络合物的具体实例包括亚硝酸金属亚胺,金属硝酸铵和金属高氯酸铵氨络合物,以及肼络合物。 粘合剂和辅助氧化剂可以与金属络合物组合以改善气体发生组合物的压碎强度并允许粘合剂的有效燃烧。 这种气体发生组合物适用于气体发生装置,例如汽车安全气囊。
    • 66. 发明授权
    • High strength reactive materials
    • 高强度反应性材料及其制造方法
    • US06593410B2
    • 2003-07-15
    • US09789479
    • 2001-02-21
    • Daniel B. NielsonRichard L. TannerGary K. Lund
    • Daniel B. NielsonRichard L. TannerGary K. Lund
    • C08K308
    • C08K3/08
    • In this method for making a sintered reactive material, fuel particles are blended with a polymer matrix comprising at least one fluoropolymer in an inert organic media to disperse the fuel particles in the polymer matrix and form a reactive material. The reactive material is dried and pressed to obtain a shaped pre-form, which is sintered in an inert atmosphere to form the sintered reactive material. By sintering in an inert atmosphere, the sintered reactive material may include reactive metals and/or metalloids in a non-oxidized state. The resulting sintered reactive material preferably has a tensile strength in excess of 1800 psi and an elongation at break in excess of 30%.
    • 在制造烧结反应性材料的方法中,将燃料颗粒与包含至少一种含氟聚合物的聚合物基质在惰性有机介质中共混以将燃料颗粒分散在聚合物基质中并形成反应性材料。 将反应性物质干燥和压制以获得成型的预成型体,其在惰性气氛中烧结以形成烧结的反应性材料。 通过在惰性气氛中烧结,烧结的反应性材料可以包括非氧化态的反应性金属和/或准金属。 所得到的烧结反应性材料优选具有超过1800psi的拉伸强度和超过30%的断裂伸长率。