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    • 87. 发明授权
    • Slow burning heat generating structure
    • 缓慢燃烧的发热结构
    • US08608878B2
    • 2013-12-17
    • US12877699
    • 2010-09-08
    • Richard M. KellettDavid F. Irwin
    • Richard M. KellettDavid F. Irwin
    • C06B45/00C06B45/18C06B45/30C06B45/32C06B45/12C06B45/14
    • C06B27/00C06B43/00C06B45/00C06C5/06
    • A heat generating structure includes a substrate, a coating and a polymeric material. The substrate comprises a first material. The coating comprises a second material, different from the first material that covers at least a portion of the substrate. The coating and substrate, upon being thermally energized to their minimum alloying temperature, react in a first exothermic reaction that is an alloying reaction. The relative quantities of the substrate and coating are such that the first exothermic reaction yields a first amount of exothermic energy that is insufficient to cause self-sustained propagation of the first exothermic reaction. The polymeric material covers substantially all of the substrate and coating, and is different from the first and second materials. The polymeric layer, upon being thermally energized, reacts with at least one of the substrate and coating in a second exothermic reaction. The second exothermic reaction yields a second amount of exothermic energy that, when combined with the first amount of exothermic energy, is sufficient to propagate the first exothermic reaction in a self-sustained manner.
    • 发热结构包括基底,涂层和聚合材料。 衬底包括第一材料。 涂层包括与覆盖基材的至少一部分的第一材料不同的第二材料。 涂层和基材在被加热至最小合金化温度之后,在作为合金化反应的第一放热反应中反应。 底物和涂层的相对量使得第一放热反应产生不足以引起第一放热反应的自持续扩散的第一量的放热能。 聚合物材料覆盖基本上所有的基底和涂层,并且与第一和第二材料不同。 聚合物层经受热激发,在第二次放热反应中与至少一个基材和涂层反应。 第二放热反应产生第二量的放热能,当与第一量的放热能组合时,其能够以自持的方式传播第一放热反应。
    • 88. 发明申请
    • OVEREXTRUSION OF SILICONE RUBBER CHARGE HOLDER ON METAL WIRE ROPE
    • 硅橡胶充电架在金属丝绳上的挤压
    • US20130233161A1
    • 2013-09-12
    • US13413698
    • 2012-03-07
    • David KametzKevin Duprey
    • David KametzKevin Duprey
    • F42B15/38
    • F42B15/38
    • An elastomeric charge holder includes one or more holes formed therein into which is disposed an explosive charge. The elastomeric charge holder further includes one or more metal wires also disposed within the elastomeric charge holder. The elastomeric charge holder may be over molded or over extruded over each of the one or more metal wires, thereby retaining each of the one or more wires in place during use of the elastomeric charge holder. The one or more wires are also a better match of thermal coefficients to a metal confinement tube that holds the elastomeric charge holder, which results in improved retention of the elastomeric charge holder in place, particularly during initiation of the explosive charge.
    • 弹性体电荷保持器包括形成在其中的一个或多个孔,其中布置有炸药。 弹性体电荷保持器还包括还设置在弹性体电荷保持器内的一个或多个金属线。 弹性体电荷保持器可以在一个或多个金属线的每一个上超过模制或超过挤出,从而在弹性体电荷保持器的使用期间将一个或多个电线中的每一个保持在适当位置。 一个或多个电线也是保持弹性体电荷保持器的金属限制管的热系数的更好匹配,这导致弹性体电荷保持器在特定的爆炸充电开始时保持在弹性体电荷的保持器。
    • 89. 发明申请
    • SLOW BURNING HEAT GENERATING STRUCTURE
    • 慢速燃烧发热结构
    • US20120055594A1
    • 2012-03-08
    • US12877699
    • 2010-09-08
    • Richard M. KellettDavid F. Irwin
    • Richard M. KellettDavid F. Irwin
    • C06B23/00
    • C06B27/00C06B43/00C06B45/00C06C5/06
    • A heat generating structure includes a substrate, a coating and a polymeric material. The substrate comprises a first material. The coating comprises a second material, different from the first material that covers at least a portion of the substrate. The coating and substrate, upon being thermally energized to their minimum alloying temperature, react in a first exothermic reaction that is an alloying reaction. The relative quantities of the substrate and coating are such that the first exothermic reaction yields a first amount of exothermic energy that is insufficient to cause self-sustained propagation of the first exothermic reaction. The polymeric material covers substantially all of the substrate and coating, and is different from the first and second materials. The polymeric layer, upon being thermally energized, reacts with at least one of the substrate and coating in a second exothermic reaction. The second exothermic reaction yields a second amount of exothermic energy that, when combined with the first amount of exothermic energy, is sufficient to propagate the first exothermic reaction in a self-sustained manner.
    • 发热结构包括基底,涂层和聚合材料。 衬底包括第一材料。 涂层包括与覆盖基材的至少一部分的第一材料不同的第二材料。 涂层和基材在被加热至最小合金化温度之后,在作为合金化反应的第一放热反应中反应。 底物和涂层的相对量使得第一放热反应产生不足以引起第一放热反应的自持续扩散的第一量的放热能。 聚合物材料覆盖基本上所有的基底和涂层,并且与第一和第二材料不同。 聚合物层经受热激发,在第二次放热反应中与至少一个基材和涂层反应。 第二放热反应产生第二量的放热能,当与第一量的放热能组合时,其能够以自持的方式传播第一放热反应。