This application claims the benefit of the French patent application No. 14 50855 filed on Feb. 4, 2014, the entire disclosures of which are incorporated herein by way of reference.
The invention generally relates to shaped charges, for all the applications of industry, but in particular aeronautics.
Shaped charges are a technology previously used to make up ammunitions, in particular for piercing armors. However, they can find many applications in industry, for example for severing cables, or deteriorating a connecting part, for separating two assemblies previously connected.
In reference to
In reference to
V=2*D*sin(α/2),
where V is the jet speed, and D is the detonation speed.
It is understood that such a device can have many applications in industry, in particular in military weapons, for piercing armors.
The purpose of the invention is to provide an improved type of shaped charge for multiple applications, but in particular in aeronautics, especially for separating two stages of an aeronautical craft, such as a rocket and its launching stages.
A first object of the invention is thus a shaped charge comprising:
According to the invention, a pyrogenic material, that is, a heat generating material, is used, for heating the projection material coating.
In a first embodiment, the pyrogenic material is placed on the V-shaped concave surface of the explosive charge, the projection material coating being placed on the pyrogenic material.
In a second embodiment of the invention, the pyrogenic material is mixed in the explosive charge.
A second main object of the invention is a device for separating two stages of an aeronautical craft, both stages being connected to each other by a connecting part.
According to the invention, a shaped charge, as previously defined, having a circular shape placed around the connecting part, is used, the pyrogenic material being placed in front of an inner surface of this connecting part.
A third main object is a device for neutralizing a part of an aeronautical craft.
According to the invention, a shaped charge, as previously defined, is used, the pyrogenic material being placed facing an inner surface of the aeronautical craft.
Two possibilities are contemplated, the first one being to use a circular crown of this shaped charge placed against the inner surface of a part of the aeronautical craft to be destroyed, whereas a second possibility is to use a rectilinear-shaped shaped charge, which is being placed against an inner surface of the part of the aeronautical craft to be neutralized, that is, to be destroyed, longitudinally, with respect to the axis of the aeronautical craft.
The invention and its different technical characteristics will be better understood upon reading the following description, accompanied with several figures, representing respectively:
In reference to
According to the invention, in the first embodiment according to the invention, a layer of pyrogenic material 10 is placed on the V-shaped surface 2B of the explosive charge 2, and behind the projection coating 4. In other words, the pyrogenic material 10 is sandwiched between the projection coating 4 and the explosive charge 2.
This pyrogenic, that is, heat-generating, material 10, is preferably thermite, or nanothermites. Upon initiating a detonation regimen of the explosive charge 2 by triggering the fuse 3, a propagation wave is propagated in the entire explosive charge 2 and reaches the V-shaped concave surface 2B. The layer of pyrogenic material 10, then starts being peeled off and being very quickly heated. The jet 6, described in
To the mechanical effect of projecting the jet 6 (
The choice of the projection coating 4 is preferably made as a function of the target and the density thereof. This choice can be defined by the following formula:
P=L·√{square root over (ρj)}/ρc,
where ρj is the density of the material of the projection coating,
ρc is the target density,
L being the jet length, and
P being the penetration length of the jet in the target.
The choice of the nanothermites or thermites making up the pyrogenic material 10 is made as a function of the material of the projection coating 4, as well as the jet path time, which strongly depends on the density of the coating of the projection material 4 and the explosive charge 2. The purpose is to achieve a temperature maximum, at the time of the jet impact, on the target.
In reference to
The crown 24 is placed inside the front part of the aeronautical craft, on an inner surface which is not cylindrical, but conical or ogive-shaped, for example, the bottom of a tank. The coating of the projection material is always directed against the inner surface of the wall 20 of this aeronautical craft.
Finally, the part 26 is an elongated part made of a bar, formed by a shaped charge, as previously described, the projection coating being also directed against the inner surface of the wall 20 of the aeronautical craft.
These different crowns and bars are placed facing the part desired to be destroyed and/or neutralized.
The operation of the separating device according to the invention is illustrated in
In reference to
In two different embodiments of the device according to the invention, the connecting crown 13 can be a part on its own, that is, being part neither of a first element, nor of a second element, which have to be separated, that is, the stages 8 and the center rocket motor 12B. This connecting crown 13 is then welded, by its two ends, to both of these elements.
In a second embodiment, it is contemplated that the connecting crown 13 is an integral part of the wall of one of both elements, preferably the lower element, that is, the center rocket motor 12B. In other words, in this case, the connecting crown 13 extends from the outer wall of this center rocket motor 12B.
Remote pyrotechnic triggering means are provided for initiating the explosion of the shaped charge 15.
While at least one exemplary embodiment of the present invention(s) is disclosed herein, it should be understood that modifications, substitutions and alternatives may be apparent to one of ordinary skill in the art and can be made without departing from the scope of this disclosure. This disclosure is intended to cover any adaptations or variations of the exemplary embodiment(s). In addition, in this disclosure, the terms “comprise” or “comprising” do not exclude other elements or steps, the terms “a” or “one” do not exclude a plural number, and the term “or” means either or both. Furthermore, characteristics or steps which have been described may also be used in combination with other characteristics or steps and in any order unless the disclosure or context suggests otherwise. This disclosure hereby incorporates by reference the complete disclosure of any patent or application from which it claims benefit or priority.
Number | Date | Country | Kind |
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14 50855 | Feb 2014 | FR | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/EP2015/052172 | 2/3/2015 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2015/117945 | 8/13/2015 | WO | A |
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Entry |
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International Search Report, dated Apr. 9, 2015, priority document. |
Number | Date | Country | |
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20170010077 A1 | Jan 2017 | US |