Method and device for the connection and linear separation of two elements stuck together

11492146 ยท 2022-11-08

Assignee

Inventors

Cpc classification

International classification

Abstract

The invention relates to a device and a method for the connection and linear separation of two elements, such as the two stages of a spacecraft, consisting in using a tube containing a pyrogenic-type material and a glue arranged around the tube, particularly in contact with the elements. The pyrotechnic triggering of the pyrogenic material causes heating and the melting or carbonisation of the glue and the separation of the two elements.

Claims

1. Device for the connection and linear separation of two elements including a first element and a second element linearly connected to one another by connecting means, and having to be securely separated, the separation taking place by warming-up of the connecting means, said warming-up being triggered remotely, the device comprising: the connecting means between the first and second elements; a pyrogenic material, heat generator, placed close to the connecting means; and means for remotely pyrotechnically triggering the pyrogenic material, wherein: the pyrogenic material is placed in a tube, the tube being placed between the first element and the second element; and the connecting means are composed of an adhesive placed between the tube and each of the first and second elements, wherein a melting point of the tube is higher than a melting point of the adhesive.

2. Device according to claim 1, wherein the adhesive is a thermally insulating adhesive in relation to the tube and the first and second elements.

3. Device according to claim 1, further comprising a retainer system for retaining the tube on the first element, wherein a melting point of the retainer system is higher than a melting point of the adhesive.

4. Device according to claim 3, wherein the retainer system is metallic.

5. Device according to claim 1, wherein the device is applied to a space vehicle, the first element corresponding to a carrier stage, the second element corresponding to a carried stage.

6. Device according to claim 1, wherein the pyrogenic material is a mixture of thermite and an intermetallic composition.

7. Method for the connection and linear separation of two elements, a first element and a second element intended to be linearly connected to one another temporarily by connecting means, and having to be securely separated, the separation taking place by warming-up of the connecting means, said warming-up being triggered remotely, wherein the method comprises the following steps: connecting the first element and the second element by adhesive; disposing a pyrogenic material, heat generator, in a tube having a melting point higher than a melting point of the adhesive, the tube being placed between the first element and the second element, in the middle of the adhesive, the pyrogenic material being activatable by an electrical control connection; and pyrotechnically triggering said pyrogenic material in order to cause the rapid warming-up of the adhesive and to obtain the separation of the first and second elements.

Description

BRIEF DESCRIPTION OF THE DRAWINGS

(1) The invention and the technical features thereof will be better understood upon reading the following description given by way of non-limiting example, accompanied by a plurality of figures respectively showing:

(2) FIGS. 1A and 1B: diagrams showing the separation of two elements of an aeronautical launcher;

(3) FIGS. 2A, 2B and 2C: the operating principle of a device of prior art;

(4) FIG. 3: a diagram showing the location of the device according to the invention, applied to an aeronautical launcher;

(5) FIGS. 4A, 4B and 4C: three diagrams showing the device according to the invention and the operation thereof; and

(6) FIGS. 5A, 5B and 5C: three diagrams relating to a preferential implementation of the device according to the invention and the operation thereof.

DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS

(7) FIG. 3 shows an aeronautical launcher having a first carrier stage 1 with the propellers thereof and carrying, above the upper portion thereof, a portion to be put into orbit, or an upper stage. In the box showing an enlargement is located a connection between said two elements of the aeronautical launcher.

(8) FIG. 4A shows schematically, in cross-section, the first and second elements 1 and 2 separated by a portion shown as a square shape symbolising the connecting means. Said connecting means contain a tube containing a pyrogenic type material 5. Preferably, said pyrogenic type material is a mixture of thermite and of one or more metallic materials, that is to say an intermetallic composition.

(9) The thermite may also be nano-thermite.

(10) The tube 4 is surrounded by an adhesive 3, notably in the upper and lower portions that are located in contact with the first and second elements 1 and 2. The adhesive 3 therefore provides the junction and the holding between said first and second elements 1 and 2, and this in a sealed manner.

(11) The adhesive 3 is for example an adhesive obtained by the INDAR process developed by RESCOLL, or even an EA 9395 type adhesive.

(12) With reference to FIG. 4B, at a given moment, the pyrogenic type material is ignited, pyrotechnically, with the triggering means placed remotely in relation to the connection between the first element 1 and the second element 2 and acting on the pyrogenic material 5 by means of an electrical connection. A very rapid warming-up of one portion of at least the pyrogenic type material takes place, therefore rapidly reaching a sufficient temperature for making the adhesive melt. Of course, the tube 4 must have a melting point for guaranteeing the integrity thereof during said triggering, and the rise in temperature, whilst making it possible to warm up the adhesive up to the carbonisation thereof and therefore the elimination of the connection effect thereof with the first and second elements 1 and 2. Said first and second elements are thus separated.

(13) FIG. 4C shows said separation with the first element 1 carrying what remains of the connecting means, that is to say in particular the tube 4. The second element 2 is therefore separated from the first element 1. Therefore, it is understood that the separation of two stages of an aeronautical vehicle can be performed, notably between a first carrier stage, composed of the first element 1 and a second stage having to continue its ascent towards space and being composed of a second element 2.

(14) In said architecture, the general forces transmit through the bonded connection and the metallic tube 4, which are therefore dimensioned accordingly. It is noted that on FIGS. 4A, 4B and 4C, the first element 1 and second element 2 may form an intermediate ring between the two stages of an aeronautical vehicle, that is to say composed of an intermediate connection between said two stages.

(15) In the preferred embodiment of the invention, a retainer system is provided on the first element 1 of the connecting means, notably of the tube 4, after pyrotechnical triggering.

(16) With reference to the half-views in axial section in FIGS. 5A, 5B and 5C, a specific embodiment of the invention is the following.

(17) The first element 1 and second element 2 have an enlarged end. On one end surface of said first and second elements is placed the adhesive 3 which surrounds entirely, or at least partially, the tube 4 filled with pyrogenic type material 5.

(18) As illustrated in FIG. 5B, the ignition of the pyrogenic type material 5 causes the warming-up and the melting or the carbonisation of the adhesive 3.

(19) The retainer system 6 is attached to the first element 1 and surrounds at least the tube 4.

(20) Preferably, the retainer system 6 includes apertures for the passage of the adhesive 3.

(21) As shown in FIG. 5C, after the pyrotechnical triggering, there is separation of the first and second elements 1 and 2. The retainer system 6 still surrounds the tube 4, which is retained with the first element 1. It is provided that said retainer system is composed of a metallic film surrounding the tube 4, about the entire circumference thereof, same being annular as the elements 1 and 2. Said retainer system 6 must have a high melting point, in order to withstand the heat released by the pyrogenic type material. The melting point of the retainer system 6 and same of the tube 4 are in particular higher than the melting point of the adhesive 3.

(22) Concerning said adhesive, the choice of the thermite may be made depending on the adhesive used, as well as the features of the material used to constitute the tube.

(23) Alternatively, the retainer system 6 may be attached directly to the lateral regions of the tube 4 each arranged between the portions of the tube that are in contact with the adhesive 3.

(24) In other words, the invention relates to an assembly including a first element 1 and a second element 2 linearly connected to one another by connecting means, and comprising, further to the connecting means, a pyrogenic material and means for remotely pyrotechnically triggering the pyrogenic material, wherein: the pyrogenic material 5 is placed in a tube 4, same placed between the first element 1 and the second element 2, and the connecting means are composed of an adhesive 3 placed between the tube 4 and each of the first and second elements 1, 2.

(25) A method for temporary connection of a first element and of a second element according to the invention therefore includes the steps consisting of: placing a pyrogenic material in a tube provided with means for remotely pyrotechnically triggering the pyrogenic material; then interposing an adhesive between the tube and the first element, and between the tube and the second element so that the adhesive provides the attachment of each of the first and second elements to the tube.

(26) A method for separation of a first element and of a second element connected beforehand by means of the above temporary connection method, and therefore forming an assembly of the type described above, consists of operating a pyrotechnical triggering of the pyrogenic material 5 so that a warming-up of the pyrogenic material 5 causes a warming-up of the adhesive 3 for the melting or the carbonisation of said adhesive 3 and therefore the mutual separation of the first and second elements 1, 2.

(27) The device and the method according to the invention may be used in the civilian sector as well as in the military sector. It is noted that the invention makes a reduced, or even nonexistent, level of pyrotechnical impacts possible, which is vital for the durability of the equipment, notably the second element.

(28) By preventing the use of metallic connecting means between the first and second elements, it overcomes the generation of metallic debris, melted or not, after the pyrotechnical triggering.