Moveable joint
10830219 ยท 2020-11-10
Assignee
Inventors
Cpc classification
F03G7/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2224/0258
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F3/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A moveable joint including a first member and a second member moveably connected to the first member, a shape-memory-alloy member coupled to the first member and engageable with the second member, and a biasing member configured to bias the second member from a first position relative to the first member towards a second position relative to the first member. Movement of the second member between the first position and the second position is limited by the shape-memory-alloy member such that the position of the second member relative to the first member is determined by the shape of the shape-memory-alloy member.
Claims
1. A moveable joint comprising: a first member; a second member moveably connected to the first member; a shape-memory-alloy member connected to the first member and engageable with the second member, the shape-memory-alloy member being configured to change shape when heated; and a biasing means configured to bias the second member from a first position relative to the first member towards a second position relative to the first member; wherein movement of the second member between the first position and the second position is limited by the shape-memory-alloy member such that the position of the second member relative to the first member is determined by the shape of the shape-memory-alloy member; wherein when the shape-memory-alloy member is in a deformed shape, the second member is in the first position relative to the first member, and when the shape-memory-alloy member is energized to return to its original shape, the second member moves to the second position relative to the first member; and wherein when the shape-memory-alloy member is in its original shape, the second member is moveable relative to the shape-memory-alloy member.
2. A moveable joint according to claim 1, wherein, intermediate of the first position and the second position, the position of the second member relative to the first member is determined by the shape of the shape-memory-alloy member.
3. A moveable joint according to claim 1, wherein the second member is rotatable about the first member.
4. A moveable joint according to claim 3, wherein the second member is hingedly connected to the first member.
5. A moveable joint according to claim 4, wherein the second member comprises a shaft receivable by the first member such that the second member is hingedly rotatable relative to the first member.
6. A moveable joint according to claim 5, wherein the first member comprises one or more v-shaped grooves configured to receive the shaft of the second member.
7. A moveable joint according to claim 6, wherein the first member comprises a v-shaped groove at opposing ends of the first member configured to receive the shaft of the second member.
8. A moveable joint according to claim 1, wherein the first member is configured to adjust the position of the second member.
9. A moveable joint according to claim 7, wherein the first member comprises a flexible material such that opposing ends of the first member are moveable relative to a centre of the first member.
10. A moveable joint according to claim 9, wherein opposing ends of the first member are moveable relative to the centre of the first member such that the v-shaped groove at opposing ends of the first member is configured to adjust the position of the second member relative to the centre of the first member.
11. A moveable joint according to claim 1, further comprising a heating means configured to heat the shape-memory-alloy member such to change its shape.
12. A moveable joint according to claim 11, wherein the heating means extends substantially along the length of the shape-memory-alloy member.
13. A moveable joint according to claim 12, wherein the heating means comprises a wire.
14. A moveable joint according to claim 13, wherein the heating means comprises a constantan wire.
15. A moveable joint according to claim 1, wherein the biasing means comprises a spring.
16. A moveable joint according to claim 1, wherein the shape-memory-alloy member comprises a one-way shape-memory-alloy.
17. A moveable joint according to claim 1, wherein the shape-memory-alloy member comprises nitinol.
18. A satellite comprising a moveable joint according to claim 1.
19. A satellite according to claim 18, wherein the second member of the moveable joint comprises a mirror.
20. A satellite comprising a movable joint comprising: a first member; a second member moveably connected to the first member; a shape-memory-alloy member connected to the first member and engageable with the second member, the shape-memory-alloy member being configured to change shape when heated; and a biasing means configured to bias the second member from a first position relative to the first member towards a second position relative to the first member; wherein movement of the second member between the first position and the second position is limited by the shape-memory-alloy member such that the position of the second member relative to the first member is determined by the shape of the shape-memory-alloy member.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Embodiments of the invention are further described hereinafter with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION
(9) A moveable joint 10 in accordance with an embodiment of the present invention is shown in
(10) A shape-memory-alloy (SMA) is an alloy that returns to an original shape (e.g. a shape set annealed condition) from a deformed shape upon being heated above a transition temperature. As such, an SMA may be deformed from its original shape, and will remain in a deformed shape until heat is applied above a transition temperature to change the shape of the SMA from the deformed shape back to the original shape.
(11) The second member 120 includes a shaft 125 configured to be received by the first member 110, and a receiving portion 122 having a bore 122a configured to receive at least a portion of the SMA member 140 such that the SMA member 140 may pass through the bore 122a unrestricted. As such, the receiving portion 122 and thus the second member 120 may move relative to the SMA member 140 in a direction substantially parallel to the bore 122a.
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(13) In use, heating the SMA member 140 to change its shape may permit the biasing force provided by the torsion spring 130 to rotate the second member 120 about the shaft 125 relative to the first member 110.
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(15) During movement of the second member 120 between the retracted position shown in
(16) In certain embodiments, the moveable joint 10 may include one or more SMA members to determine the position of the second member 120 relative to the first member 110. However, it may be advantageous for there to be only one SMA member so that there is no requirement for the SMA member to synchronise its movement with any other SMA members when heat is applied to change the shape of the SMA member.
(17) In alternative embodiments, the SMA member 140 may be engageable with the second member 120 by any suitable means such that movement of the second member 120 between a first position relative to the first member 110 and a second position relative to the first member 110 is limited by the SMA member 140, whereby the position of the second member 120 relative to the first member 110 is determined by the shape of the SMA member 140. For example, the SMA member 140 may abut against a portion of the second member 120.
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(21) As the shaft 125 is received by the v-shaped groove 150 of the first end portion 114 and second end portion 116, movement of either or both of the first end portion 114 and second end portion 116 may adjust the position of the shaft 125 (and thus the second member 120) relative to the central portion 115. The v-shaped groove 150 defines two specific points of contact between the shaft 125 and the first member 110 which may advantageously improve the accuracy of adjustments to the position of the shaft 125 relative to the central portion 115 of the first member 110. Consequently, the position of the second member 120 relative to the central portion 115 of the first member 110 may advantageously be adjusted when the moveable joint 10 is in the deployed configuration as shown in
(22) The moveable joint 10 may advantageously operate without any lubrication, which makes the moveable joint 10 particularly suitable for application in micro-gravity or vacuum environments such as space.
(23) In alternative embodiments, the first member 110 may comprise any means suitable for adjusting the position of the shaft 125 relative to a portion of the first member 110. For example, the first member may comprise two or more modules whereby one module may move relative to a fixed module to adjust the position of the shaft 125 relative to the fixed module.
(24) In the embodiment shown in
(25) In certain embodiments, the SMA member 140 may comprise a one-way shape-memory-alloy. In certain embodiments, the SMA member 140 comprises a nitinol rod.
(26) In certain embodiments, the first member 110 may include a shaft configured to be received by the second member 120 such that the second member 120 is rotatable about the shaft of the first member 110.
(27) In alternative embodiments, the second member may be extendably connected to the first member whereby, in a retracted configuration, a biasing force is configured to extend the second member away from the first member. As the SMA member determines the position of the second member relative to the first member, the SMA member may change shape such to permit extension of the second member away from the first member and may provide damping to the biasing force during movement of the second member relative to the first member.
(28) In certain embodiments, the at least one torsion spring described above may be replaced with any suitable spring or springs. For example one or more compression springs may be used to provide a biasing force in certain embodiments. In alternative embodiments, the moveable 10 joint may comprise any biasing means suitable for biasing the second member 120 relative to the first member 110.
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(30) Moveable joints 10 according to embodiments of the present invention may be particularly suited to CubeSat satellites.
(31) In certain embodiments, the satellite may comprise multiple moveable joints configured to permit the deployment of multiple second members (e.g. mirrors or solar panels).
(32) In other embodiments, the moveable joint 10 may be used for any suitable application where one member is moved relative to another, and particularly where damped movement of the member is desired.
(33) Throughout the description and claims of this specification, the words comprise and contain and variations of them mean including but not limited to, and they are not intended to (and do not) exclude other moieties, additives, components, integers or steps. Throughout the description and claims of this specification, the singular encompasses the plural unless the context otherwise requires. In particular, where the indefinite article is used, the specification is to be understood as contemplating plurality as well as singularity, unless the context requires otherwise.
(34) Features, integers, characteristics, compounds, chemical moieties or groups described in conjunction with a particular aspect, embodiment or example of the invention are to be understood to be applicable to any other aspect, embodiment or example described herein unless incompatible therewith. All of the features disclosed in this specification (including any accompanying claims, abstract and drawings), and/or all of the steps of any method or process so disclosed, may be combined in any combination, except combinations where at least some of such features and/or steps are mutually exclusive. The invention is not restricted to the details of any foregoing embodiments. The invention extends to any novel one, or any novel combination, of the features disclosed in this specification (including any accompanying claims, abstract and drawings), or to any novel one, or any novel combination, of the steps of any method or process so disclosed.
(35) The reader's attention is directed to all papers and documents which are filed concurrently with or previous to this specification in connection with this application and which are open to public inspection with this specification, and the contents of all such papers and documents are incorporated herein by reference.