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    • 3. 发明申请
    • LINE-LOCKING CONNECTOR CLIP
    • 线锁连接器夹
    • WO2008039484A1
    • 2008-04-03
    • PCT/US2007/020759
    • 2007-09-26
    • DYNO NOBEL INC.SUTULA, Daniel, P.ANDERSEN, MarkCARNEIRO, Basilio, J.SHANK, Lawrence, J.CHILDS, John
    • SUTULA, Daniel, P.ANDERSEN, MarkCARNEIRO, Basilio, J.SHANK, Lawrence, J.CHILDS, John
    • C06C5/06
    • C06C5/06
    • A connector clip (10, 10') defines a line-retaining slot (34) and is configured to receive a detonator (16) therein. The connector clip (10, 10') comprises a body member (12, 12') and a closure member (14, 14') which are mounted, one on the other, for movement relative to each other along a travel path between an open position in which the line-retaining slot (34) is accessible to lateral insertion therein of one or more signal transmission lines (68), and a closed position in which the line-retaining slot (34) is closed to secure such signal transmission lines (68) therein. One of the body member (12, 12') and the closure member (14, 14') defines a cavity within which at least part of the other of the body member (12, 12') and the closure member (14, 14') is encased during travel between the open position and the closed position.
    • 连接器夹(10,10')限定线路保持槽(34),并且构造成在其中容纳雷管(16)。 连接器夹(10,10')包括本体构件(12,12')和闭合构件(14,14'),所述闭合构件(14,14')彼此相对安装,以相对于彼此沿着 打开位置,其中线路保持槽(34)在其中横向插入其中的一个或多个信号传输线(68)以及闭合位置,其中线路保持槽(34)被封闭以固定这种信号传输 线(68)。 主体构件(12,12')和闭合构件(14,14')中的一个限定了空腔,其中主体构件(12,12')和封闭构件(14,14)中的另一个的至少一部分 ')在打开位置和关闭位置之间的行进期间被包围。
    • 4. 发明申请
    • DELAY UNITS AND METHODS OF MAKING THE SAME
    • 延迟单位及其制作方法
    • WO2006086274A2
    • 2006-08-17
    • PCT/US2006004038
    • 2006-02-06
    • DYNO NOBEL INCCHILDS JOHNSHANK LAWRENCE J III
    • CHILDS JOHNSHANK LAWRENCE J III
    • H04N1/00
    • F42C9/10
    • A delay unit (10) comprises a timing strip (14) and, optionally, a calibration strip (20) deposited on a substrate (12). The timing and calibration strips comprise energetic materials which optionally may comprise particles of nanosize materials, e.g., a fuel and an oxidizer, optionally applied as separate layers. A method of making the delay units comprises deposit¬ ing onto a substrate (12) a timing strip (14) having a starting point (14d) and a discharge point (14e) and depositing onto the same or another substrate a calibration strip (20). Timing strip (14) and calibration strip (20) are of identical composition and are otherwise configured, e.g., thickness of the strips, to have identical burn rates. The calibration strip (20) is ignited and its burn rate is ascertained. The timing strip (14) is adjusted by an adjustment structure to attain a desired delay period, preferably on the basis that the burn rate of the timing strip (14) is substantially identical to that of the calibration strip (20) and ascertaining the burn rate of the calibration strip. The adjustment may be attained by one or more of providing the timing strip with jump gaps (164), an accelerant or retardant (166a, 166b), completing the timing strip with a bridging strip (14c), or establishing a selected effective length of the timing strip by positioning one or both of a pick-up charge (16) and relay charge (18) over a portion of the timing strip.
    • 延迟单元(10)包括定时条(14)和可选地沉积在基底(12)上的校准条(20)。 定时和校准条包括高能材料,其任选地可以包括纳米尺寸材料的颗粒,例如燃料和氧化剂,任选地作为单独的层施加。 制造延迟单元的方法包括将具有起始点(14d)和放电点(14e)的定时条(14)沉积到衬底(12)上,并在相同或另一衬底上沉积校准条(20) )。 定时条(14)和校准条(20)具有相同的组成,并且以其他方式配置,例如条的厚度,以具有相同的燃烧速率。 校准条(20)被点燃并确定燃烧速率。 优选地,基于正时条(14)的燃烧速率与校准条(20)的燃烧速率基本上相同并确定烧伤(14)的调整结构来调整定时条(14)以获得期望的延迟周期 校准条的速率。 可以通过一个或多个将定时条提供跳跃间隙(164),促进剂或阻燃剂(166a,166b)的一个或多个来完成调整,用桥接条(14c)完成定时条,或者建立选定的有效长度 定时条通过将拾取电荷(16)和中继电荷(18)中的一个或两个定位在定时条的一部分上。
    • 9. 发明申请
    • SEALER ELEMENTS, DETONATORS CONTAINING THE SAME, AND METHODS OF MAKING
    • 密封件元件,包含该密封件元件的制造商及其制造方法
    • WO2011112647A1
    • 2011-09-15
    • PCT/US2011/027639
    • 2011-03-09
    • DYNO NOBEL INC.PLITT, Tyson J.TWAROG, Jr., Joseph W.DORMAN, MarkOVERSTROM, Raymond T.CHILDS, John
    • PLITT, Tyson J.TWAROG, Jr., Joseph W.DORMAN, MarkOVERSTROM, Raymond T.CHILDS, John
    • C06C5/00C06C5/06
    • C06C7/00F42B3/107F42B3/195
    • A gas-impermeable sealer element (24, 124) for a detonator or other explosive initiation device includes a non-reactive sleeve (26, 126) having a channel (28, 128) formed therein. A reactive material strip (30, 130) is sealed within the channel for transmission of an explosive's initiation signal through the sealer element (24, 124), either alone or in cooperation with transfer charges located at the input and/or output end of the non-reactive sleeve (26, 126). The reactive material strip (30, 130) comprises a reactive metal wire or other substrate (34) having on one or both sides thereof a layer of reactive material (30, 130, 36), either reactive metal foils which react exothermically when ignited, or a deposited fuel-oxidizer reactive material. The reactive materials, upon being energized, react exothermically in the absence of atmospheric oxygen or other extraneous oxidizer and so may be encapsulated, sealed or otherwise isolated from the atmosphere in use.
    • 用于雷管或其他爆炸引发装置的气体不可渗透的密封元件(24,124)包括具有形成在其中的通道(28,128)的非反应套筒(26,126)。 反应性材料条(30,130)被密封在通道内,用于通过密封元件(24,124)单独地或与位于输送端和/或输出端的转移电荷协同传输爆炸物的起始信号 非反应套筒(26,126)。 反应性材料条(30,130)包括反应性金属线或其它基底(34),其在其一侧或两侧上具有一层反应性材料(30,130,36),即当点燃时放热反应的活性金属箔, 或沉积的燃料 - 氧化剂反应性材料。 反应性材料在通电时,在没有大气氧或其他外来氧化剂的情况下放热反应,因此可以在使用中被封装,密封或与大气隔离。
    • 10. 发明申请
    • DELAY ELEMENTS, DETONATORS CONTAINING THE SAME AND METHODS OF MAKING
    • 延迟元件,包含该元件的元件和制造方法
    • WO2007095303A2
    • 2007-08-23
    • PCT/US2007003941
    • 2007-02-13
    • DYNO NOBEL INCPLITT TYSON JTWAROG JOSEPH W JRCHILDS JOHNCAMPBELL JOHN C JR
    • PLITT TYSON JTWAROG JOSEPH W JRCHILDS JOHNCAMPBELL JOHN C JR
    • F42C9/10C06B45/14C06C5/06C06C7/00
    • The initiation of an output charge (152, Figure 4) in response to an initiation signal can be delayed by conveying the initiation signal to a delay fuse (40) made from a reactive multilayer laminate to initiate an exothermic, self-sustaining alloying reaction in the laminate. The reaction follows a travel path which may be zigzag, coiled or otherwise elongated, to provide a desired delay time. The output charge (152) may be in an initiator mounted on a signal transmission line (111 ) that emits the initiation signal. A delay element (84, Figure 9) may contain a substrate (86) and a reactive multilayer laminate (88) disposed on the substrate and be shaped to define a serpentine travel path from the location of an input signal (I) to the location of an output signal (O). The delay element may be disposed in a plug comprised of solid members (62a, 62b, Figure 6) or in a tubular body (76, Figure 7).
    • 通过将起始信号传送到由反应性多层层压材料制成的延迟保险丝(40),可以延迟响应起始信号而引起输出电荷(152,图4),以引发放热,自持维持的合金化反应 层压板。 反应遵循可以曲折,盘绕或以其他方式延长的行进路径,以提供期望的延迟时间。 输出电荷(152)可以位于发射起始信号的信号传输线(111)上的启动器中。 延迟元件(84,图9)可以包含衬底(86)和设置在衬底上的反应性多层叠层(88),并且被成形为限定从输入信号(I)的位置到位置的蛇形行进路径 的输出信号(O)。 延迟元件可以设置在由实心构件(62a,62b,图6)或管状体(图7中的76)组成的塞子中。