High-power combustion ignition cord

The combustion ignition cord with concentric tubes addresses the energy and power limitations of conventional cords by enhancing energy delivery, enabling effective ignition of new propellant powders with increased power and speed.

FR3161215A1Active Publication Date: 2025-10-17KNDS AMMO FRANCE
View PDF 6 Cites 0 Cited by

Patent Information

Application Number
FR2024003694
Authority / Receiving Office
FR · FR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-04-11
Publication Date
2025-10-17
Estimated Expiration
2044-04-11

AI Technical Summary

Technical Problem

Conventional ignition cords provide limited energy and power, unable to effectively ignite new generations of propellant powders with lower ignitability, and increasing pyrotechnic composition leads to decreased combustion speed and power.

Method used

A combustion ignition cord design featuring a core surrounded by two concentric cylindrical tubes, one or both made of inert or energetic material, with an energetic material in free powder form between them, to increase energy delivery and maintain ignition propagation speed.

Benefits of technology

The new design delivers 100 to 1000% more ignition power than conventional cords, effectively igniting new propellant powders while maintaining similar ignition propagation speed.

✦ Generated by Eureka AI based on patent content.
Patent Text Reader

Abstract

Increased power combustion ignition cord Combustion ignition cord of a propellant charge contained in the case of a cartridge, said cord being constituted by a core comprising a pyrotechnic material and surrounded by a sheath, characterized in that the sheath is constituted by two concentric cylindrical tubes between which is arranged a loose powder energetic material. The two tubes are made of an inert polymer material or be based on an extruded propellant powder energetic material or one of the tubes may be made of an inert polymer material and the other be based on an extruded propellant powder energetic material.
Need to check novelty before this filing date? Find Prior Art

Description

Title of the invention: Combustion ignition cord with enhanced power

[0001] The present invention relates to a combustion ignition cord with enhanced power.

[0002] The technical field of the invention is that of cartridges comprising a propellant charge housed in a case and devices for igniting such propellant charges.

[0003] It is known to produce cartridges in which the device for igniting the propellant charge comprises energetic ignition cords which extend between an initiation means secured to a rear part of the case and the projectile. For example, patents US5129324, US5179250 and EP1092940 may be considered.

[0004] Ignition cords, in combustion and not in detonation, most often comprise a plastic tube containing a pyrotechnic composition such as black powder or a composition combining boron and potassium nitrate or even aluminum and potassium perchlorate. These cords are well known and described in particular by patent FR2441598. In this case the power and energy of the ignition are provided exclusively by the pyrotechnic composition present inside the tube.

[0005] Ignition cords are used to ensure ignition of the propellant charge in a cartridge whose projectile penetrates deep into the powder bed, particularly for an arrow-type projectile with a very long bar. In fact, conventional axial igniter tubes cannot be incorporated with such projectiles.

[0006] In known cartridges with ignition cords, the cords extend between an axial igniter tube connected to the base and the case or the projectile. In particular, in patents US5129324 and US5179250 the cords are arranged along the internal wall of the case and they are held in place by plastic stars.

[0007] Mention may also be made of US patent 3320882 which describes an ignition cord consisting of a continuous column of a mixture of lead azide and a particulate metal confined in a metal sheath.

[0008] As part of increasing the performance of arrow shells, it is necessary to implement new propellant powders.

[0009] Unlike older powders such as single base (B19T) or double base (GB19T) powders, the new formulations have much lower ignitability. As a result, the energy and power of the ignition system must be significantly increased.

[0010] The energy is linked to the quantity of pyrotechnic material linked to the ignition while the power is linked to the time over which this energy is diffused in the bed of propellant powder. Thus, the problem posed by conventional ignition cords such as ITLX® cords is that these have a limited maximum quantity of energy with regard to the energy requirement for igniting the new propellant powders.

[0011] Furthermore, increasing the quantity of pyrotechnic composition in the cord generally induces a decrease in the combustion speed and therefore a decrease in the speed of the cord. As a reminder, ignition cords have a combustion regime (-500 m / s) unlike detonating cords. This decrease in speed induces a decrease in power where the need is to increase it.

[0012] The present invention proposes to solve these problems by proposing a combustion ignition cord providing in particular from 100 to 1000% compared to simple cords (for example ITLX®) in terms of ignition power, then making it possible to ignite the new generations of propellant powders, which cannot be ignited by the cords of the prior state of the art.

[0013] The idea behind the present invention is to increase the amount of energy available while maintaining an operating time similar to the standard cord, thus increasing the power. This increase is achieved according to the invention by means of a relay loaded with propellant powder, of small or medium caliber for example. The standard cord can still be used because it allows the ignition propagation speed to be controlled. The relay is used in order to significantly increase the energy delivered.

[0014] In order to facilitate the implementation of this relay, it is envisaged according to the present invention to implement an over-sheath around the standard cord in order to be able to fill the interstices thus generated by the energetic material serving as a relay, for example medium-caliber powder. The connection between the over-sheath and the sheath of the standard cord can be made by means of one or more mechanical connections. The material of the sheath and the over-sheath are made of plastic, but it is also possible to provide them in energetic material in extruded propellant powder.

[0015] The compatibility in terms of ignitability between the internal pyrotechnic composition and the relay, which is made up of medium-caliber powder or other pyrotechnic composition such as black powder, must be sufficient for it to ignite quickly upon contact with the combustion products of the standard cord composition.

[0016] To this end, the present invention relates to an energetic ignition cord for a propellant charge contained in the case of a cartridge, said cord being consisting of a core comprising a pyrotechnic material and surrounded by a sheath, characterized in that the sheath is constituted by two concentric cylindrical tubes between which is arranged an energetic material in free powder.

[0017] In a first embodiment, the two tubes are made of an inert polymer material, said tubes being able to be connected to each other for example by radial fins, the assembly being obtained by extrusion of the polymer material.

[0018] In a second embodiment, the two tubes are based on an energetic material in propellant powder extruded in a block.

[0019] In a third embodiment, one of the tubes is made of an inert polymer material and the other is based on an energetic material in extruded propellant powder forming a block.

[0020] The inert material may be low density polyethylene.

[0021] The tubes based on an energetic material in propellant powder extruded in block can be solid or split tubes.

[0022] The energetic material can be chosen from single-base propellant powders, multi-base propellant powders, and pyrotechnic compositions.

[0023] The single-base propellant powders can be chosen from nitrocellulose powders, such as those marketed by the Milan Blagogevic-Namenska Company under the references NC-16 and NC-161, B7T from Nammo Vihtavuori and PCL from PB Clermont.

[0024] The multi-base propellant powders can be chosen from the NK1405 powders from Eurenco or PBC2000 from PB Clermont.

[0025] A pyrotechnic composition may be chosen from black powder (NP), benite, a boron / potassium nitrate (B / KNO3) composition and their mixtures.

[0026] The core may be made of a thermite comprising at least one metal chosen in particular from Al, Mg and B, an oxidant chosen in particular from KNO3, KC1O4 and WO3, and a binder chosen from polymers and nitrocellulose.

[0027] A comparison of the ignition times between a conventional cord having a plastic sheath enclosing an ITLX® core material and a cord according to the invention having a sheath formed of two concentric tubes based on extruded NC-16 propellant powder between which there is a double spherical base powder such as the PBC2000 powder from PB Clermont, with the same core, showed a division by 5 of the ignition time by the cord of the invention.

Claims

Claims

1. Ignition cord for combustion of a propellant charge contained in the case of a cartridge, said cord being constituted by a core comprising a pyrotechnic material and surrounded by a sheath, characterized in that the sheath is constituted by two concentric cylindrical tubes between which is arranged an energetic material in free powder.

2. Ignition cord according to claim 1, characterized in that the two tubes are made of an inert polymer material, said tubes being able to be connected to each other.

3. Ignition cord according to claim 1, characterized in that the two tubes are based on an energetic material in propellant powder extruded in a block.

4. Ignition cord according to claim 1, characterized in that one of the tubes is made of an inert polymer material and the other is based on an energetic material in propellant powder extruded in block.

5. Ignition cord according to one of claims 2 and 4, characterized in that the inert material is low density polyethylene.

6. Ignition cord according to one of claims 3 and 4, characterized in that the tubes based on an energetic material in propellant powder extruded in a block are solid or split tubes.

7. Cord according to one of claims 1, 3 or 4 characterized in that the energetic material is chosen from single-base propellant powders, multi-base propellant powders, and pyrotechnic compositions.

8. Cord according to claim 7, characterized in that the single-base propellant powders are chosen from nitrocellulose powders.

9. Ignition cord according to claim 7, characterized in that a pyrotechnic composition is chosen from black powder (PN), benite, a boron / potassium nitrate (B / KNO3) composition and their mixtures.

10. Ignition cord according to one of claims 1 to 8, characterized in that the core is made of a thermite comprising at least one metal chosen in particular from Al, Mg and B, an oxidant chosen in particular among KNO3, KC1O4 and WO3, and a binder chosen from polymers and nitrocellulose.

Citation Information

Patent Citations

  • Igniting device for a propellant charge

    EP1092940A1

  • Cartridge assembly

    US5129324A

  • Segmented cartridge assembly

    US5179250A

  • Propellant-charge igniter for propellant charges of extremely high charging density

    DE3217976A1

  • IGNITION wick

    FR2441598A1