Composite manufacturing method and apparatus
US-2024308147-A1 · Sep 19, 2024 · US
US9534815B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9534815-B2 |
| Application number | US-201213455432-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 25, 2012 |
| Priority date | Apr 28, 2011 |
| Publication date | Jan 3, 2017 |
| Grant date | Jan 3, 2017 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
In a magnetic heat pump system, in which heat transport medium is heated or cooled by magnetocaloric effect material accommodated in a magnetic heat pump device. A material having a coefficient of thermal conductivity, which is higher than that of the heat transport medium, or a material having a specific heat or a volume specific heat, which is higher than that of the heat transport medium, is mixed in the heat transport medium. A coefficient of thermal conductivity of the heat transport medium is thereby increased so as to increase heating and/or cooling performance of the magnetic heat pump system.
Opening claim text (preview).
What is claimed is: 1. A magnetic heat pump system comprising: a magnetic heat pump device; a heat radiating device radiating heat of a heat transport medium, which is discharged from one end of the magnetic heat pump device, to an outside of the heat radiating device; and a heat absorbing device absorbing heat from an outside of the heat absorbing device into the heat transport medium discharged from the other end of the magnetic heat pump device, wherein the magnetic heat pump device comprises; a rotational shaft; a rotor fixed to the rotational shaft and having a permanent magnet at an outer periphery of the rotor; a cylindrical yoke coaxially arranged with the rotational shaft; a container, which is arranged at an inner periphery of the cylindrical yoke and in which a magnetocaloric effect material is accommodated and through which the heat transport medium passes; a magnetic field changing unit including the rotor and the permanent magnet and changing a degree of magnetic field to be generated by the permanent magnet and to be applied to the magnetocaloric effect material; a working fluid moving unit moving the heat transport medium in a reciprocating manner in the container in an axial direction of the rotational shaft, so that the heat transport medium is sucked into the container through one end of the container and the heat transport medium is discharged from the container through the other end of the container and vice versa; wherein a material having a specific heat or a volume specific heat, which is higher than that of the heat transport medium is mixed in the heat transport medium; wherein a minute magnetic material is further mixed in the heat transport medium; and wherein an agitating structure is driven by a magnetic field change induced by the magnetic field changing unit, the agitating structure is formed in the container, the agitating structure has a stirring bar rotated by the magnetic field change on a plane perpendicular to the axial direction of the rotational shaft, and the agitating structure agitating the heat transport medium by a rotation of the stirring bar. 2. The magnetic heat pump system according to claim 1 , wherein the material having the specific heat or the volume specific heat, which is higher than that of the heat transport medium, is composed of a latent-heat storage material. 3. The magnetic heat pump system according to claim 2 , wherein the latent-heat storage material is selected from one of the following materials; paraffin, erythritol, threitol, naphthaline, polyethylene, and stearic acid. 4. A magnetic heat pump system comprising: a magnetic heat pump device; a heat radiating device radiating heat of a heat transport medium, which is discharged from one end of the magnetic heat pump device, to an outside of the heat radiating device; and a heat absorbing device absorbing heat from an outside of the heat absorbing device into the heat transport medium discharged from the other end of the magnetic heat pump device, wherein the magnetic heat pump device comprises; a rotational shaft; a rotor fixed to the rotational shaft and having a permanent magnet at an outer periphery of the rotor; a cylindrical yoke coaxially arranged with the rotational shaft; a container, which is arranged at an inner periphery of the cylindrical yoke and in which a magnetocaloric effect material is accommodated and through which the heat transport medium passes; a magnetic field changing unit including the rotor and the permanent magnet and changing a degree of magnetic field to be generated by the permanent magnet and to be applied to the magnetocaloric effect material; a working fluid moving unit moving the heat transport medium in a reciprocating manner in the container in an axial direction of the rotational axis, so that the heat transport medium is sucked into the container through one end of the container and the heat transport medium is discharged from the container through the other end of the container and vice versa; wherein one of the following first and second materials is mixed in the heat transport medium; a first material having a coefficient of thermal conductivity, which is higher than that of the heat transport medium, and a second material having a specific heat or a volume specific heat, which is higher than that of the heat transport medium, wherein an agitating structure, which is driven by a magnetic field change induced by the magnetic field changing unit, the agitating structure is formed in the container, the agitating structure has a stirring bar rotated by the magnetic field change on a plane perpendicular to the axial direction of the rotational shaft, and the agitating structure agitating the heat transport medium by a rotation of the stirring bar. 5. The magnetic heat pump system according to claim 4 , wherein a minute magnetic material is further mixed in the heat transport medium. 6. The magnetic heat pump system according to claim 1 , wherein the rotor rotates in a clockwise direction and the stirring bar rotates in a counter clockwise direction. 7. The magnetic heat pump system according to claim 1 , wherein when the rotor rotates in a clockwise direction one complete revolution, the stirring bar rotates in a counter clockwise direction 360 degrees. 8. The magnetic heat pump system according to claim 4 , wherein the rotor rotates in a clockwise direction and the stirring bar rotates in a counter clockwise direction. 9. The magnetic heat pump system according to claim 4 , wherein when the rotor rotates in a clockwise direction one complete revolution, the stirring bar rotates in a counter clockwise direction 360 degrees.
Machines, plants or systems, using electric or magnetic effects · CPC title
Cooling devices {(B60H1/00478, B60H1/005 take precedence)} · CPC title
comprising two or more secondary circuits, e.g. at evaporator and condenser side · CPC title
with a rotating or otherwise moving magnet · CPC title
using primary and secondary systems · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.