Enhanced damping using cryogenic cooling
View Patent ↗A damping apparatus is disclosed having at least one magnet, a conducting member movable relative to the magnet, a cryogenic fluid, and a channel that confines the cryogenic fluid in contact with the conducting member. The cryogenic fluid may maintain the conducting member at cryogenic temperatures, thereby increasing a damping force provided by the conducting member to a payload.
1. A damping apparatus comprising:
at least two magnets, each having opposing end surfaces;
a conducting member movable relative to the magnets;
a cryogenic fluid; and
a channel that confines the cryogenic fluid in contact with the conducting member, the channel defined at least in part by multiple hollow portions internal to the conducting member, wherein the multiple hollow portions comprise at least one longitudinally extending widened hollow portion and narrower hollow portions branching from the widened hollow portion;
wherein each of the narrower hollow portions is between the end surfaces of each magnet, in which the end surfaces are transverse to a longitudinal direction of the conducting member.
2. The damping apparatus of claim 1 , wherein the channel confines the cryogenic fluid such that the cryogenic fluid contacts an interior surface and an exterior surface of the conducting member.
3. The damping apparatus of claim 1 , wherein the channel confines the cryogenic fluid such that the cryogenic fluid contacts the conducting member at an area of the conducting member adjacent the at least two magnets.
4. A damping apparatus comprising:
at least one magnet having opposing end surfaces;
a conducting member movable relative to the magnet; and
a channel adapted to confine a cryogenic fluid in contact with the conducting member, the channel defined at least in part by multiple hollow portions internal to the conducting member; wherein the multiple hollow portions comprise at least one longitudinally extending widened hollow portion and narrower hollow portions branching from the widened hollow portion;
wherein each of the narrower hollow portions is between the end surfaces of the magnet, in which the end surfaces are transverse to a longitudinal direction of the conducting member.
5. The damping apparatus of claim 4 , wherein the channel confines the cryogenic fluid such that the cryogenic fluid contacts an interior surface and an exterior surface of the conducting member.
6. The damping apparatus of claim 4 , wherein the channel confines the cryogenic fluid such that the cryogenic fluid contacts the conducting member at an area of the conducting member adjacent the at least one magnet.