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    • 2. 发明授权
    • MEMS DETONATOR
    • MEMS雷达
    • EP2547981B1
    • 2013-12-04
    • EP11710806.8
    • 2011-03-03
    • Qinetiq Limited
    • CLARIDGE, Robert, PeterCOMBES, David, Johnathon
    • C06B21/00F42C15/184F42C15/34C06C7/00C06C7/02F42B33/02
    • F42B33/0207C06B21/0033C06C7/00C06C7/02F42C15/184F42C15/34Y10T29/49002
    • This invention relates to a MEMS detonator, in particular the production of MEMS scale detonators via the use of a microreactor (3). The invention further lies in a reproducible manufacturing method of MEMS scale detonators, for use in safety and arming units (SAU), which are used in warheads and munitions. A warhead comprising a MEMS detonator may find particular use in increasing the IM compliance of munitions. The method involves the use of high pressure input of two solutions (2, 2a) into a microreactor (3) to form an in-situ precipitation reaction, which furnishes an initiatory (i.e. primary) explosive, wherein the explosive and supernatant liquid is directly fed into a microchamber, using the microcavities in the septum as a MEMS sieve to retain the explosive and form a MEMS detonator.
    • 本发明涉及一种MEMS雷管,特别是通过使用微反应器(3)生产MEMS规模雷管。 本发明进一步在于用于安全和武装单元(SAU)的MEMS鳞片雷管的可重复制造方法,其用于弹头和弹药中。 包含MEMS雷管的弹头可能特别用于增加弹药的IM合规性。 该方法涉及使用两种溶液(2,2a)的高压输入到微反应器(3)中以形成原位沉淀反应,其提供初始的(即主要的)爆炸物,其中爆炸物和上清液直接 送入微型腔室,利用隔膜中的微腔作为MEMS筛来保留爆炸物并形成MEMS雷管。
    • 3. 发明公开
    • MEMS DETONATOR
    • MEMS雷达
    • EP2547981A1
    • 2013-01-23
    • EP11710806.8
    • 2011-03-03
    • Qinetiq Limited
    • CLARIDGE, Robert, PeterCOMBES, David, Johnathon
    • F42B33/02F42C15/184F42C15/34C06C7/00C06C7/02
    • F42B33/0207C06B21/0033C06C7/00C06C7/02F42C15/184F42C15/34Y10T29/49002
    • This invention relates to a MEMS detonator, in particular the production of MEMS scale detonators via the use of a microreactor (3). The invention further lies in a reproducible manufacturing method of MEMS scale detonators, for use in safety and arming units (SAU), which are used in warheads and munitions. A warhead comprising a MEMS detonator may find particular use in increasing the IM compliance of munitions. The method involves the use of high pressure input of two solutions (2, 2a) into a microreactor (3) to form an in-situ precipitation reaction, which furnishes an initiatory (ι.e. primary) explosive, wherein the explosive and supernatant liquid is directly fed into a microchamber, using the microcavities in the septum as a MEMS sieve to retain the explosive and form a MEMS detonator.
    • 本发明涉及一种MEMS雷管,特别是通过使用微反应器(3)生产MEMS规模雷管。 本发明进一步在于用于安全和武装单元(SAU)的MEMS鳞片雷管的可重复制造方法,其用于弹头和弹药中。 包含MEMS雷管的弹头可能特别用于增加弹药的IM合规性。 该方法涉及使用两种溶液(2,2a)的高压输入到微反应器(3)中以形成原位沉淀反应,其提供初始(即主要)爆炸物,其中爆炸物和上清液 将液体直接送入微型腔室,利用隔膜中的微腔作为MEMS筛来保留爆炸物并形成MEMS雷管。