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    • 1. 发明申请
    • SELF-DESTRUCT FUZE DELAY MECHANISM
    • 自毁式FUZE延迟机制
    • US20070261586A1
    • 2007-11-15
    • US11383116
    • 2006-05-12
    • William ChamleeJerry SmithBerry Flournoy
    • William ChamleeJerry SmithBerry Flournoy
    • F42C15/34F42C15/20
    • F42C9/145F42C15/44
    • An exemplary self-destruct fuze delay for a submuntion includes an ampoule filled with an activation fluid, a spring-loaded pin to break the ampoule upon deployment of the munition, and a wick to collect and retain the activation liquid in contact with a spring loaded restraining link having an embedded firing pin. The activation liquid contacts the restraining link, preferably via the wick. The action of the activation liquid on the restraining link over time causes the link to fail at the predetermined location, allowing a severed portion with the embedded firing pin to move under force (e.g., spring, gas) and impact or initiate a secondary detonator. The secondary detonator is in close proximity to a primary detonator typically used to initiate a main charge of the submunition. Initiation of the secondary detonator destroys the primary detonator and, depending upon slide location, either sterilizes the submunition, or destroys the entire submunition.
    • 用于子功能的示例性自毁引信延迟包括填充有激活流体的安瓿,在展开弹药时破坏安瓿的弹簧加载销,以及芯吸收和保持活化液体与弹簧加载的接触 具有嵌入式触发销的限制链路。 活化液体优选通过芯吸触约束连接。 激活液体在限制链路上的作用随着时间的推移导致连杆在预定位置处失效,从而允许具有嵌入的撞针的切断部分在力(例如,弹簧,气体)下移动并撞击或起动二次雷管。 次级雷管靠近通常用于启动子弹药主要装药的主雷管。 第二雷管的启动会破坏主雷管,并根据滑动位置对子弹药进行灭菌或者破坏整个子弹药。