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    • 121. 发明授权
    • Incendiary grenade
    • 燃烧手榴弹
    • US09528803B1
    • 2016-12-27
    • US13987619
    • 2013-08-15
    • Steven KimConan SchultzCarl Gotzmer
    • Steven KimConan SchultzCarl Gotzmer
    • F42B12/44F42B12/46F42B4/26F42B27/00
    • F42B12/44F42B4/26F42B12/46F42B27/00
    • An incendiary grenade's casing has a fuze with a portion extending into the casing. Thermite disposed in the casing encases the portion of the fuze that extends into the grenade casing. Insulating material is disposed in the casing adjacent to the thermite. Layers of a titanium-boron intermetallic and an oxidizer are disposed in the casing. One layer of the titanium-boron intermetallic is adjacent to the layer of insulating material. This one layer of the titanium-boron intermetallic and a layer of the oxidizer adjacent thereto have a common-axis hole formed therethrough that is aligned with the portion of the fuze. A separating material is disposed at each interface between the titanium-boron intermetallic and the oxidizer.
    • 燃烧式手榴弹的外壳具有一部分延伸到外壳中的引信。 设置在壳体中的热电偶包围延伸入手榴弹外壳的引信部分。 绝缘材料设置在与铝热绝缘体相邻的壳体中。 钛 - 硼金属间化合物和氧化剂层设置在壳体中。 一层钛 - 硼金属间隔层与绝缘材料层相邻。 这一层钛 - 硼金属间化合物和与其相邻的氧化剂层具有通过其形成的共同轴孔,其与引信的一部分对准。 分离材料设置在钛 - 硼金属间化合物和氧化剂之间的每个界面处。
    • 124. 发明授权
    • Method for combating explosive-charged weapon units, and projectile designed for the same
    • 打击炸弹武器装备的方法和为此设计的射弹
    • US08826823B2
    • 2014-09-09
    • US13504729
    • 2010-10-28
    • Christer ThumanKjell WållbergCarin Vörde
    • Christer ThumanKjell WållbergCarin Vörde
    • F42B12/44F42B12/46F42B12/74
    • F42B12/74F41H11/12F42B12/36F42B12/44F42B12/46F42D5/04
    • The invention relates to a method of with a projectile (1) comprising a reactive charge (4), combating an explosive-charged weapon unit (7), preferably an enemy shell, so that undesirable harmful effects on the environment are reduced, wherein the projectile (1) is configured to penetrate the surface (8) of the weapon unit (7) upon impact so that a passage (9) is opened into the explosive (10) of the weapon unit (7), through which passage (9) the reactive charge (4), under the influence of the kinetic energy of the projectile (1), is transferred to the explosive (10) of the weapon unit (7). The method can be deemed to be characterized in that the reactive charge (4), upon contact with the explosive (10) of the weapon unit (7), reacts and starts a hypergolic reaction with the explosive (10). The invention also relates to a projectile (1) for the said method.
    • 本发明涉及一种包括反应性电荷(4)的弹丸(1)的方法,与爆炸性武器装置(7),优选敌壳相对,从而减少了对环境的不利的有害影响,其中 射弹(1)被构造成在冲击时穿透武器单元(7)的表面(8),使得通道(9)打开到武器单元(7)的炸药(10)中,通过该通道(9) )在弹药(1)的动能影响下,反应炸药(4)转移到武器装置(7)的炸药(10)。 该方法可以被认为的特征在于,与武器单元(7)的炸药(10)接触时,反应性电荷(4)反应并开始与炸药(10)的高反应。 本发明还涉及用于所述方法的射弹(1)。
    • 126. 发明申请
    • INCENDIARY METHOD & APPARATUS
    • 简易方法和装置
    • US20120118192A1
    • 2012-05-17
    • US13360457
    • 2012-01-27
    • Peter Nopper
    • Peter Nopper
    • F42B12/44
    • C06B31/06C06B33/04C06B45/00C06C15/00
    • An incendiary device, a method of remotely initiating a fire, and a method of making an incendiary device for remotely igniting fires are provided. The method of making an incendiary device includes forming a solid incendiary composition from potassium nitrate, sulfur, and a polymer. The solid incendiary composition is extruded into a continuous extrusion and then cut into sections to form individual incendiary devices. The method of making the incendiary device further includes extruding the incendiary composition with a wire or bore formed there through. The incendiary device produces a predetermined flame pattern when an ignition wire extending there through is ignited. The incendiary device can be dispensed from a remote location into an area for starting a fire.
    • 提供燃烧装置,远程起火的方法以及制造用于远程点火的燃烧装置的方法。 制造燃烧装置的方法包括由硝酸钾,硫和聚合物形成固体燃烧组合物。 将固体燃烧组合物挤出成连续挤出物,然后切成部分以形成单独的燃烧装置。 制造燃烧装置的方法还包括用在其上形成的线或孔挤出燃烧组合物。 燃烧装置在通过其延伸的点火线被点燃时产生预定的火焰图案。 燃烧装置可以从远程位置分配到用于起火的区域中。
    • 130. 发明授权
    • Kinetic fireball incendiary munition
    • 动力火球燃烧弹药
    • US07278356B1
    • 2007-10-09
    • US11434045
    • 2006-05-15
    • Robert L. GeislerKevin E. Mahaffy
    • Robert L. GeislerKevin E. Mahaffy
    • F42B12/44
    • F42B12/44
    • A kinetic fireball incendiary munition is provided having an outer shell or bomb casing, one or more incendiary submunitions therein, and an igniter therefore. Each of the submunitions includes an incendiary portion and at least one rocket motor that propels the submunition inside of a target volume. The submunitions liberate sufficient heat to produce elevated temperatures inside of a target structure, without creating a substantial overpressure or explosive effect. The incendiary portion includes a solid propellant and, optionally, one or more energetic materials selected from the group consisting of phosphorous, boron, magnesium, aluminum, Fluorinert™-aluminum and BKNO3. The incendiary submunition may be in the shape of a ball or a circular disk with a rocket motor therein.
    • 提供了一种动力火球燃烧弹药,其中具有外壳或炸弹外壳,其中包括一个或多个燃烧子弹药和点火器。 每个子弹药包括燃烧部分和至少一个将子弹药推进目标体积内的火箭发动机。 子弹药释放足够的热量以在目标结构内部产生升高的温度,而不产生显着的超压或爆炸作用。 燃烧部分包括固体推进剂和任选的一种或多种选自磷,硼,镁,铝,氟化铝 - 铝和BKNO 3的高能材料。 燃烧的子弹药可以是其中具有火箭发动机的球或圆盘的形状。