Magneto-caloric thermal diode assembly

US10551095B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10551095-B2
Application numberUS-201815955758-A
CountryUS
Kind codeB2
Filing dateApr 18, 2018
Priority dateApr 18, 2018
Publication dateFeb 4, 2020
Grant dateFeb 4, 2020

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A magneto-caloric thermal diode assembly includes a plurality of elongated magneto-caloric members. Each of a plurality of thermal stages includes a plurality of magnets and a plurality of non-magnetic blocks distributed in a sequence of magnet then non-magnetic block along a transverse direction. The plurality of thermal stages and the plurality of elongated magneto-caloric members are configured for relative motion along the transverse direction. The plurality of magnets and the plurality of non-magnetic blocks are spaced along the transverse direction within each of the plurality of thermal stages. Each of the plurality of magnets in the plurality of thermal stages is spaced from a respective non-magnetic block in an adjacent thermal stage towards a cold side thermal stage along the lateral direction and is in conductive thermal contact with a respective non-magnetic block in an adjacent thermal stage towards a hot side thermal stage along the lateral direction.

First claim

Opening claim text (preview).

What is claimed is: 1. A magneto-caloric thermal diode assembly, comprising: a plurality of elongated magneto-caloric members; and a plurality of thermal stages stacked along a lateral direction between a cold side and a hot side, a cold side thermal stage of the plurality of thermal stages positioned at the cold side, a hot side thermal stage of the plurality of thermal stages positioned at the hot side, each of the plurality of thermal stages comprising a plurality of magnets and a plurality of non-magnetic blocks distributed in a sequence of magnet then non-magnetic block along a transverse direction that is perpendicular to the lateral direction, wherein the plurality of thermal stages and the plurality of elongated magneto-caloric members are configured for relative motion between the plurality of thermal stages and the plurality of elongated magneto-caloric members along the transverse direction, the plurality of magnets and the plurality of non-magnetic blocks are spaced along the transverse direction within each of the plurality of thermal stages, each of the plurality of magnets in the plurality of thermal stages between the cold side thermal stage and the hot side thermal stage is spaced from a respective non-magnetic block in an adjacent thermal stage towards the cold side thermal stage along the lateral direction, and each of the plurality of magnets in the plurality of thermal stages between the cold side thermal stage and the hot side thermal stage is in conductive thermal contact with a respective non-magnetic block in an adjacent thermal stage towards the hot side thermal stage along the lateral direction. 2. The magneto-caloric thermal diode assembly of claim 1 , wherein the plurality of magnets and the plurality of non-magnetic blocks are spaced along the transverse direction by insulation within each of the plurality of thermal stages. 3. The magneto-caloric thermal diode assembly of claim 1 , wherein each of the plurality of magnets in the plurality of thermal stages between the cold side thermal stage and the hot side thermal stage is spaced from the respective non-magnetic block in an adjacent thermal stage towards the cold side thermal stage along the lateral direction by insulation. 4. The magneto-caloric thermal diode assembly of claim 1 , further comprising a heat exchanger positioned at the cold side. 5. The magneto-caloric thermal diode assembly of claim 1 , wherein each of the plurality of non-magnetic blocks in the plurality of thermal stages is an aluminum block. 6. The magneto-caloric thermal diode assembly of claim 1 , wherein each of the plurality of magnets in the plurality of thermal stages comprises a magnet pair, each of the plurality of elongated magneto-caloric members positioned between the magnet pairs along the lateral direction in a respective thermal stage of the plurality of thermal stages. 7. The magneto-caloric thermal diode assembly of claim 1 , wherein the plurality of magnets and the plurality of non-magnetic blocks of each of the plurality of thermal stages collectively define a slot, each elongated magneto-caloric member of the plurality of elongated magneto-caloric members received within a respective slot of the plurality of thermal stages. 8. The magneto-caloric thermal diode assembly of claim 7 , wherein each slot has a width along the lateral direction, each elongated magneto-caloric member of the plurality of elongated magneto-caloric members having a thickness along the lateral direction, the thickness of each elongated magneto-caloric member being about one hundredth of an inch greater than the width of the respective slot. 9. The magneto-caloric thermal diode assembly of claim 1 , wherein plurality of thermal stages comprises no less than eight thermal stages. 10. The magneto-caloric thermal diode assembly of claim 1 , wherein each of the plurality of elongated magneto-caloric members has a different Curie temperature. 11. A magneto-caloric thermal diode assembly, comprising: a plurality of elongated magneto-caloric members; and a plurality of thermal stages stacked along a lateral direction between a cold side and a hot side, a cold side thermal stage of the plurality of thermal stages positioned at the cold side, a hot side thermal stage of the plurality of thermal stages positioned at the hot side, each of the plurality of thermal stages comprising a plurality of magnets and a plurality of non-magnetic blocks distributed in a sequence of magnet then non-magnetic block along a transverse direction that is perpendicular to the lateral direction, wherein each elongated magneto-caloric member of the plurality of elongated magneto-caloric members is received within a respective one of the plurality of thermal stages such that the plurality of thermal stages and the plurality of elongated magneto-caloric members are configured for relative motion between the plurality of thermal stages and the plurality of elongated magneto-caloric members along the transverse direction, the plurality of magnets and the plurality of non-magnetic blocks are spaced along the transverse direction within each of the plurality of thermal stages, each of the plurality of magnets in the plurality of thermal stages between the cold side thermal stage and the hot side thermal stage is spaced from a respective non-magnetic block in an adjacent thermal stage towards the cold side thermal stage along the lateral direction, and each of the plurality of magnets in the plurality of thermal stages between the cold side thermal stage and the hot side thermal stage is in conductive thermal contact with a respective non-magnetic block in an adjacent thermal stage towards the hot side thermal stage along the lateral direction. 12. The magneto-caloric thermal diode assembly of claim 11 , wherein the plurality of magnets and the plurality of non-magnetic blocks are spaced along the transverse direction by insulation within each of the plurality of thermal stages. 13. The magneto-caloric thermal diode assembly of claim 11 , wherein each of the plurality of magnets in the plurality of thermal stages between the cold side thermal stage and the hot side thermal stage is spaced from the respective non-magnetic block in an adjacent thermal stage towards the cold side thermal stage along the lateral direction by insulation. 14. The magneto-caloric thermal diode assembly of claim 11 , further comprising a heat exchanger positioned at the cold side. 15. The magneto-caloric thermal diode assembly of claim 11 , wherein each of the plurality of non-magnetic blocks in the plurality of thermal stages is an aluminum block. 16. The magneto-caloric thermal diode assembly of claim 11 , wherein each of the plurality of magnets in the plurality of thermal stages comprises a magnet pair, each of the plurality of elongated magneto-caloric members positioned between the magnet pairs along the lateral direction in a respective thermal stage of the plurality of thermal stages. 17. The magneto-caloric thermal diode assembly of claim 11 , wherein the plurality of magnets and the plurality of non-magnetic blocks of each of the plurality of thermal stages collectively define a slot, each elongated magneto-caloric member of the plurality of elongated magneto-caloric members received within a respective slot of the plurality of thermal stages. 18. The magneto-caloric thermal diode assembly of claim 17 , wherein each slot has a width along the lateral direction, each elongated magneto-caloric member of the plurality of elongated magneto-caloric members having a thic

Assignees

Inventors

Classifications

  • with a static fixed magnet · CPC title

  • with cooling compartments at different temperatures · CPC title

  • with a rotating or otherwise moving magnet · CPC title

  • adapted for magnetic entropy change by magnetocaloric effect, e.g. used as magnetic refrigerating material (refrigeration systems using magnetic effects F25B21/00) · CPC title

  • F25B21/00Primary

    Machines, plants or systems, using electric or magnetic effects · CPC title

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What does patent US10551095B2 cover?
A magneto-caloric thermal diode assembly includes a plurality of elongated magneto-caloric members. Each of a plurality of thermal stages includes a plurality of magnets and a plurality of non-magnetic blocks distributed in a sequence of magnet then non-magnetic block along a transverse direction. The plurality of thermal stages and the plurality of elongated magneto-caloric members are configu…
Who is the assignee on this patent?
Haier Us Appliance Solutions Inc
What technology area does this patent fall under?
Primary CPC classification F25B21/00. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Feb 04 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).