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    • 3. 发明授权
    • Biological and chemical agent defeat system
    • 生化药剂失败系统
    • US06945175B1
    • 2005-09-20
    • US10463882
    • 2003-06-18
    • Carl GotzmerJoe MayersakSteven S. Kim
    • Carl GotzmerJoe MayersakSteven S. Kim
    • F42B12/44F42B12/58
    • F42B12/58F42B12/44
    • The present invention comprises a kinetic energy penetrator warhead that may engage both surface and buried soft and hardened targets. The warhead contains a high-temperature incendiary (HTI) fill capable of destroying chemical and biological agents in such a manner to minimize dispersal of these agents. Bomblets are incorporated into the portion of the warhead that penetrates to the target and are ejected, with the HTI fill, from the warhead in order to provide holes in chemical or biological agent tanks to allow the fill to react with said agents. Finally, a guidance system is provided to direct the warhead to the target.
    • 本发明包括可以接合表面和埋入的软和硬化目标的动能穿透弹头。 弹头包含一种高温燃烧剂(HTI)填充物,能够以这种方式破坏化学和生物制剂,以最大限度地减少这些试剂的分散。 炸弹被并入到弹头的穿透目标物的部分中,并从弹头上与HTI填充物一起喷射,以在化学或生物剂罐中提供孔,以使填充物与所述试剂反应。 最后,提供了一个指导系统来将弹头导向目标。
    • 5. 发明授权
    • Projectile for standoff destruction of explosive devices
    • 爆炸装置的对撞销毁弹药
    • US08181576B1
    • 2012-05-22
    • US12802456
    • 2010-05-14
    • Brian T. AmatoSteven KimGerald LaibCarl Gotzmer
    • Brian T. AmatoSteven KimGerald LaibCarl Gotzmer
    • F42B12/20
    • F42B12/204
    • A projectile for safe standoff destruction of explosive devices. The projectile's casing encloses a chamber containing combustible material located opposite a roughened surface on the chamber. The combustible material is mounted so upon the projectile impacting the explosive device, the combustible material flies onto the roughened surface, heating the material by shear forces and igniting the material. This creates pressure bursting the chamber, injecting combustion gases into the explosive fill within the device, thereby igniting the fill locally at the impact, and along cracks in the fill. This arrangement prevents a coherent detonation wavefront from forming within the fill, and a slower burn of the fill, whereby a rifleman has little chance of receiving a concussive shock, or shrapnel, from the device.
    • 爆炸装置安全对抗销毁的弹丸。 抛射体的外壳包围一个容纳可燃材料的腔室,位于腔室上粗糙表面的对面。 可燃材料安装在撞击爆炸装置的弹丸上,可燃材料飞溅在粗糙表面上,通过剪切力加热材料并点燃材料。 这产生压力破裂室,将燃烧气体注入装置内的炸药填充物,从而在冲击时局部地点燃填充物,并沿着填充物中的裂缝。 这种布置防止在填充物内形成相干的爆震波前,并且填充物的燃烧较慢,由此步枪人几乎没有从该装置接收到震荡冲击或弹片的可能性。
    • 7. 发明授权
    • Explosively formed projectile (EFP) with cavitation pin
    • 具有气蚀针的爆炸弹丸(EFP)
    • US09482499B1
    • 2016-11-01
    • US13998510
    • 2013-10-25
    • Carl GotzmerAmos DareSteven KimJeff St. Clair
    • Carl GotzmerAmos DareSteven KimJeff St. Clair
    • F42B10/00F42B1/028F42B1/032
    • F42B1/028F42B1/032
    • The invention is an explosively formed projectile (EFP). On detonation of an explosive charge, an explosively formed projectile is formed from two separate metal elements, an open-poled dished liner and a cavitation pin. The open-poled dished liner is made of a metal more dense than a metal of the cavitation pin. The cavitation pin lies on the open-poled dished liner longitudinal axis and in contact therewith. The cavitation pin has a truncated right conical shape with a base diameter to length ratio of 0.7:1 to 1.5:1. The ratio of the open-poled dished liner diameter:cavitation pin fore portion major base diameter is 2:1 to 4:1. Upon detonation, the cavitation pin leads the explosively forged liner in the explosively formed projectile assembly. The leading pin causes cavitation in water resulting in an increase in the velocity of the explosively formed projectile.
    • 本发明是一种爆炸​​成型的弹丸(EFP)。 爆炸炸药爆炸时,由两个分开的金属元件,开放的碟形衬垫和空穴针形成爆炸成型的弹体。 开放的碟形衬垫由比空穴针的金属更致密的金属制成。 空穴针位于开放的碟形衬垫纵向轴线上并与其接触。 空穴针具有基本直径与长度之比为0.7:1至1.5:1的截头圆锥形。 开孔碟形直径:空穴针前部主底径的比例为2:1至4:1。 在爆炸时,气蚀针引导在爆炸形成的射弹组件中的爆炸性锻造衬里。 引导销在水中引起气蚀,导致爆炸形成的弹丸的速度增加。