Segmented structure, especially for a satellite antenna reflector
10135151 ยท 2018-11-20
Assignee
Inventors
Cpc classification
International classification
Abstract
A segmented structure includes at least two panels, a first panel, called the main panel, a second panel, called the secondary panel. The structure further includes at least one deployment device configured to move secondary panel into a storage position or a deployed position. The deployment device has a translation system having an assembly with articulated arms, wherein the translation system is able to generate a movement of the secondary panel in translation in relation to the main panel. The translation system is connected to the secondary panel by an outer end. A rotation system is able to generate a rotation of the translation system and of the secondary panel connected to the translation system, in relation to the main panel.
Claims
1. A segmented structure, in particular for a satellite antenna reflector, said segmented structure comprising: a main panel, having a main panel front face and a main panel rear face, and a secondary panel having a secondary panel front face and a secondary panel rear face; and at least one extension device connected to the main panel rear face and the secondary panel rear face, and being configured to bring said secondary panel into one or the other of the two following positions relative to said main panel: a storage position in which said secondary panel is positioned at least in part above said main panel on the main panel rear face, the secondary panel front face being oriented in the same direction as the main panel front face; and an extended position, in which said secondary panel is positioned next to and against said main panel to form a continuous assembly at least on the front faces of said panels, said extension device comprising: a translation system configured to translate said secondary panel relative to said main panel and connected to said secondary panel by an external end; and a rotation system connected to an internal end of said translation system, and to the main panel rear face, wherein: said rotation system is configured to rotate said translation system and the secondary panel relative to said main panel; and said translation system comprising: an assembly of two articulated arms, each of said articulated arms comprising an external segment pivotally connected to an internal segment, the external segment of each of said arms being pivotally connected to the secondary panel rear face; and an auxiliary rotation system connected to an internal end of each of the internal segments of the articulated arms and configured to cause a rotation in the region of each of said internal ends in a synchronized manner and in opposite directions to open out or fold away said assembly of articulated arms.
2. The segmented structure according to claim 1, wherein, for each of said articulated arms, the external connection of the external segment to the secondary panel rear face is equipped with a flexible joint.
3. The segmented structure according to claim 1, wherein said auxiliary rotation system comprises two motors, one of which is connected to the internal end of the internal segment of a first of said arms and is configured to rotate said internal segment, and the other of which is connected to the internal end of the internal segment of the second of said arms and is configured to rotate said internal segment, said motors being synchronized and controlled to bring about rotations in opposite directions.
4. The segmented structure according to claim 1, wherein said auxiliary rotation system comprises a single motor that is connected both to: the internal end of the internal segment of a first of said arms by a first connection for transmitting rotations which is configured to rotate said internal segment; and the internal end of the internal segment of the second of said arms by a second connection for transmitting rotations which is configured to rotate said internal segment; said first and second connections for transmitting rotations being driven by said single motor to transmit rotations in opposite directions at the same speed.
5. The segmented structure according to claim 4, wherein said motor is a gear motor reducer having two outputs opposite each other, each output being provided with a pulley configured to transmit a rotation.
6. The segmented structure according to claim 1, wherein said rotation system comprises two coaxial motors synchronised and controlled to bring about rotations in the same direction.
7. The segmented structure according to claim 1, wherein said rotation system comprises a transmission spindle that interconnects the internal ends of the two arms of the translation system, and a motor configured to rotate said transmission spindle.
8. The segmented structure according to 1 further comprising: a central main panel; two secondary panels arranged on either side of said central main panel when in the extended position in such a way as to be parabolic; and two extension devices connected to each of said secondary panels respectively.
9. A satellite antenna reflector comprising a segmented structure according to claim 1.
10. A satellite comprising at least one segmented structure according to claim 1.
11. A method for extending a segmented structure according to claim 1, wherein said method comprises, during the extension from the storage position into the extended position, the steps of: a) performing a rotation from the storage position in a first rotation direction by means of said rotation system in such a way as to move said translation system, provided at the external end thereof with the secondary panel, away from the rear face of the main panel; b) performing a translational movement in a first translation direction by means of said translation system in such a way as to bring said system into an opened out position; c) performing a rotation in a direction counter to said first rotation direction by means of said rotation system in such a way as to bring the secondary panels and the main panel substantially into a common general plane; and d) performing a translational movement in a direction counter to said first translation direction by means of said translation system in such a way as to bring the secondary panel into contact with the main panel in a position that is the extended position.
12. The method according to claim 11, wherein the opened out position of the translation system corresponds to a maximum extension of said translation system.
13. The method according to claim 12, wherein, at step d), the auxiliary rotation system of the translation system performs a rotation in the same direction as in step b).
14. The method according to claim 11, wherein, at step d), the auxiliary rotation system of the translation system performs a rotation in the direction counter to that in step b).
Description
(1) The figures in the accompanying drawings will give a better understanding of how the invention can be implemented. In these figures, identical references denote similar elements.
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(11) The segmented structure 1 that illustrates the invention and is schematically shown in particular in
(12) More specifically, the present invention relates to a segmented structure 1 of the type comprising: at least two panels, namely at least one first panel 2, referred to as the main panel, having a front face 2A and a rear face 2B (
(13) This extension device 5 is capable of bringing the secondary panel 3 into one or the other of the two following positions relative to the main panel 2: a storage position P1 as shown in
(14) In the description of the present invention: front face and rear face are understood to mean the two faces of a panel, the front face 3A, 4A of a secondary panel 3, 4 being positioned at least in part above the rear face 2B of the main panel 2, each front face 2A, 3A, 4A corresponding, in the case of an antenna reflector, to the reflective face thereof; and internal and external are understood to mean the positions of the different elements in question relative to the centre of the segmented structure 1 in the extended position thereof, internal applying to the position closest to the centre and external applying to the position furthest away from the centre in this extended position.
(15) In the preferred embodiment shown in the figures, the segmented structure 1 comprises: a central main panel 2; two secondary panels 3 and 4 arranged on either side of said central main panel 2 when in the completely extended position (
(16) In the situation shown in
(17) According to the invention, each of the extension devices 5 of the segmented structure 1 comprise: a translation system 6 comprising an assembly 7 of articulated arms. The translation system 6 is capable of causing the secondary panel 3, 4 to translate relative to the main panel 2 and is connected to the secondary panel 3, 4 by an external end 6A; and a rotation system 8 that is capable of causing said translation system 6 and the secondary panel 3, 4 connected to said translation system 6 to rotate relative to said main panel 2 about an axis a (
(18) In the embodiment shown in the figures, the connection to the rear face 2B of the main panel 2 is produced by means of a preferably planar structural element 23 which is fixed to the rear face 2B and the function of which is to support the extension devices 5 of the two secondary panels 3 and 4.
(19) Such an extension device 5 enables the secondary panel to which it is connected to extend from the storage position P1 into the extended position P2 in a beneficial and effective manner, as set out below.
(20) The translation system 6 comprises an assembly 7 of two identical articulated arms 9A and 9B that are arranged symmetrically relative to an axis X-X of the segmented structure 1, in particular an axis of symmetry, as shown in
(21) In the preferred embodiment shown in the figures, said translation system 6 further comprises an auxiliary rotation system 14, 15.
(22) This auxiliary rotation system 14, 15 is connected to an internal end 11A of each of the internal segments 11 of the articulated arms 9A and 9B, and directly engages the internal ends 11A in such a way as to cause a rotation about an axis 11 in the region of each of the two internal ends 11A. The auxiliary rotation system 14, 15 causes rotations in the region of the two internal ends 11A of the two arms 5A and 5B in a synchronised manner and in opposite directions in such a way as to open out or fold away said assembly 7 of articulated arms so that the assembly 7 is moved rectilinearly along the axis X-X.
(23) Indeed, the rotation (illustrated by an arrow E1 about the axis in
(24) In a first embodiment shown in
(25) Furthermore, in a second embodiment shown in
(26) Said first and second connections 22A and 22B are driven by the motor 20 in such a way as to transmit rotations in opposite directions at the same speed.
(27) Moreover, the rotation system 8 (capable of causing the translation system 6 to rotate about the main axis of rotation a) may also be provided in different ways. Said system is preferably connected to the rear face 2A of the main panel 2 by means of the substantially planar support element 23.
(28) In a first embodiment shown in
(29) Moreover, in a second embodiment shown in
(30) Moreover, in a particular embodiment shown in
(31) The extension devices 5 of the segmented structure 1 that are connected to different secondary panels 3 and 4 of this segmented structure 1 thus allow for the segmented structure 1 to be extended from the fully stored position (in which all the secondary panels 3 and 4 are in a storage position P1 as shown in particular in
(32) The extension device 5 also comprises means that are not shown (for example a central unit) for controlling the rotation systems 8, 14, 15.
(33) Moreover, the segmented structure 1 may comprises conventional means (not shown) for retaining different panels 2, 3 and 4 in the storage position P1. These retaining means are released before extension takes place so that each extension device 5 can carry out the extension as set out below.
(34) The operation of said extension device 5 for extending one 3 of said secondary panels 3, 4 from the storage position P1 in
(35) The same extension method is carried out for the secondary panel 4 so as to ultimately achieve the completely extended position of the segmented structure 1 from
(36) At step d), the auxiliary rotation system 14, 15 of the translation system 6 may perform: a rotation (about ) in the same direction as in step b), in a first embodiment, in which the opened out position of the translation system 6 corresponds to the maximum extension position thereof; and a rotation (about ) in the direction counter to that in step b), in second embodiment.
(37) In these two cases, the rotation results in a translational movement in the direction shown by arrow B2 in
(38) Of course, if it proved necessary, for example for the purpose of a validation operation, the device 5 may likewise bring the segmented structure from the extended position P2 into the storage position P1 by the above-mentioned operations being carried out in reverse order (d, c, b, a), each operation (rotation, translation) being carried out in the opposite direction.
(39) Moreover, the segmented structure 1 may comprise means (not shown) for enabling a final positioning between a secondary panel 3, 4 and the main panel 2 in the situation shown in