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    • 4. 发明申请
    • Explosive Matrix Assembly
    • 爆炸矩阵装配
    • US20160116266A1
    • 2016-04-28
    • US14938225
    • 2015-11-11
    • Jon K. Mitchell
    • Jon K. Mitchell
    • F42C19/08F42C19/02
    • C06C5/04F41H11/00F41H11/14F42B1/00F42B3/087F42B3/10F42B3/26F42B33/06F42C19/02F42C19/08F42C19/0807F42D1/02F42D3/00F42D5/04G01B3/30
    • The present disclosure is an explosive matrix assembly that has a first single detonating cord formed into a first grid, and the first grid has a first plurality of detonating cord portions lying in a first plane and a second plurality of detonating cord portions lying in a second plane and the first plurality of detonating cord portions perpendicularly overlay the second plurality of detonating portions. Additionally, the matrix assembly has a second single detonating cord formed into a second grid, and the second grid has a third plurality of detonating cord portions lying in a third plane and a fourth plurality of detonating cord portions lying in a fourth plane and the third plurality of detonating cord portions perpendicularly overlay the fourth plurality of detonating portions. Further, the matrix assembly has a third single detonating cord formed into a third grid, and the third grid has a fifth plurality of detonating cord portions lying in a fifth plane and a sixth plurality of detonating cord portions lying in a sixth plane and the fifth plurality of detonating cord portions perpendicularly overlay the sixth plurality of detonating portions. The matrix assembly also has a first fastener coupling the first grid perpendicular to the second grid, a second fastener coupling the first grid perpendicular to the third grid, and a third fastener coupling the second grid perpendicular to the third grid thereby forming a partial cube.
    • 本公开是一种爆炸​​矩阵组件,其具有形成第一格栅的第一单个引爆绳,并且第一格栅具有位于第一平面中的第一多个引爆索部分和位于第二平面中的第二多个引爆绳部分 并且所述第一多个引爆帘线部垂直地覆盖所述第二多个引爆部。 另外,矩阵组件具有形成第二格栅的第二单个引爆绳,并且第二格栅具有位于第三平面中的第三多个引爆绳索部分和位于第四平面中的第四多个引爆绳索部分, 多个引爆绳部垂直地覆盖第四多个引爆部。 此外,基体组件具有形成为第三格栅的第三单个引爆绳,并且第三格栅具有位于第五平面中的第五多个引爆绳索部分和位于第六平面中的第六多个引爆绳索部分, 多个引爆线部垂直地覆盖第六多个引爆部。 矩阵组件还具有耦合垂直于第二栅格的第一栅格的第一紧固件,垂直于第三栅格连接第一栅格的第二紧固件,以及垂直于第三栅格连接第二栅格的第三紧固件,从而形成部分立方体。
    • 7. 发明授权
    • Detonating cord with protective jacket
    • 带防护套的引爆线
    • US07921776B2
    • 2011-04-12
    • US11569365
    • 2004-06-01
    • Brendan M. WalshP. Cary Franklin
    • Brendan M. WalshP. Cary Franklin
    • C06C5/04
    • F42B1/00C06C5/04
    • This invention relates to a detonating cord (10) having a core (12) of reactive material and a composite jacket around the core, and the method of its manufacture. The composite jacket includes an interior jacket (14) in contact with the core and a sacrificial jacket (20) disposed over the interior jacket. The sacrificial jacket prevents the cord from being cut off by the detonation of another detonating cord of like core load disposed adjacent thereto. The sacrificial jacket is separable from the interior jacket beneath it under the force of the adjacent detonating cord, thus absorbing energy and allowing the first detonating cord to remain intact. The detonating cord may have a core load of not more than 3.2 grams/meter (15 grains/ft) or, optionally, less than 1.25 g/m (6 grains/ft). The interior jacket may be free of metal jacket layers. Optionally, the outer cross-sectional diameter of the cord may be not more than about 3.8 mm (0.15 inch) so that it can be inserted into a standard detonator. The sacrificial jacket may be made from polyethylene and may have a thickness of about 0.25 mm (0.01 inch).
    • 本发明涉及一种具有反应性材料芯(12)和围绕芯的复合护套的引爆线(10)及其制造方法。 复合护套包括与芯部接触的内部护套(14)和设置在内部护套上的牺牲护套(20)。 牺牲护套通过与其相邻设置的类似芯负载的另一个引爆绳的引爆来防止绳索被切断。 牺牲护套可以在相邻的引爆绳的力作用下与其下方的内部护套分离,从而吸收能量并允许第一引爆绳保持完整。 引爆绳可以具有不超过3.2克/米(15粒/英尺)或任选地小于1.25克/米(6粒/英尺)的核心载荷。 内部护套可以没有金属护套层。 可选地,帘线的外截面直径可以不大于约3.8mm(0.15英寸),使得其可以插入到标准雷管中。 牺牲护套可以由聚乙烯制成,并且可以具有约0.25mm(0.01英寸)的厚度。
    • 8. 发明申请
    • Super Compressed Detonation Method and Device to Effect Such Detonation
    • 超级压缩爆轰法及其爆炸装置
    • US20110061553A1
    • 2011-03-17
    • US12952769
    • 2010-11-23
    • Fan ZhangStephen Burke MurrayAndrew J. Higgins
    • Fan ZhangStephen Burke MurrayAndrew J. Higgins
    • C06C7/00
    • F42D3/00F42B1/00
    • A method for effecting physicochemical transformations and detonation properties in a material using super-compressed detonation includes: providing an insensitive energetic material to be compressed; super-compressing the material by exposure to at least one of a normally or obliquely oriented cylindrical imploding shock wave, generated from a first detonation; effecting transformations from the super-compression in the material including increasing at least material density, structural transformations and electronic energy gap transitions relative to a material unexposed to the super-compression; exposing the super-compressed material to a second detonation; and effecting transformations from the second detonation in the material including increasing at least detonation pressure, velocity and energy density relative to a material unexposed to the super-compression and second detonation.
    • 在使用超压缩爆炸的材料中进行物理化学变换和爆炸特性的方法包括:提供不被压缩的高能材料; 通过暴露于从第一次爆炸产生的正常或倾斜取向的圆柱形冲击波中的至少一个来超级压缩材料; 从材料中的超级压缩实现变换,包括相对于未暴露于超级压缩的材料至少增加材料密度,结构变换和电子能隙转变; 将超压缩材料暴露于第二次爆炸; 并且在材料中实现来自第二爆炸的变换,包括相对于未暴露于超压缩和第二爆震的材料,至少增加爆震压力,速度和能量密度。
    • 10. 发明申请
    • Detonating Cord With Protective Jacket
    • 带防护护套的引爆线
    • US20080028970A1
    • 2008-02-07
    • US11569365
    • 2004-06-01
    • Brendan M. WalshP. Cary Franklin
    • Brendan M. WalshP. Cary Franklin
    • C06C5/00
    • F42B1/00C06C5/04
    • This invention relates to a detonating cord (10) having a core (12) of reactive material and a composite jacket around the core, and the method of its manufacture. The composite jacket includes an interior jacket (14) in contact with the core and a sacrificial jacket (20) disposed over the interior jacket. The sacrificial jacket prevents the cord from being cut off by the detonation of another detonating cord of like core load disposed adjacent thereto. The sacrificial jacket is separable from the interior jacket beneath it under the force of the adjacent detonating cord, thus absorbing energy and allowing the first detonating cord to remain intact. The detonating cord may have a core load of not more than 3.2 grams/meter (15 grains/ft) or, optionally, less than 1.25 g/m (6 grains/ft). The interior jacket may be free of metal jacket layers. Optionally, the outer cross-sectional diameter of the cord may be not more than about 3.8 mm (0.15 inch) so that it can be inserted into a standard detonator. The sacrificial jacket may be made from polyethylene and may have a thickness of about 0.25 mm (0.01 inch).
    • 本发明涉及一种具有反应性材料芯(12)和围绕芯的复合护套的引爆线(10)及其制造方法。 复合护套包括与芯部接触的内部护套(14)和设置在内部护套上的牺牲护套(20)。 牺牲护套通过与其相邻设置的类似芯负载的另一个引爆绳的引爆来防止绳索被切断。 牺牲护套可以在相邻的引爆绳的力作用下与其下方的内部护套分离,从而吸收能量并允许第一引爆绳保持完整。 引爆绳可以具有不超过3.2克/米(15粒/英尺)或任选地小于1.25克/米(6粒/英尺)的核心载荷。 内部护套可以没有金属护套层。 可选地,帘线的外截面直径可以不大于约3.8mm(0.15英寸),使得其可以插入到标准雷管中。 牺牲护套可以由聚乙烯制成,并且可以具有约0.25mm(0.01英寸)的厚度。