IP Library Granted Patent US 12,104,857
Granted Patent B2
US 12,104,857 · App. 17/603,425 · Granted Oct 1, 2024

Heat storage unit

Inventors: Katsuya Okumura (Tokyo, JP); Shuhei Hatano (Shizuoka, JP); Ritsu Kawase (Shizuoka, JP); Hideki Moriuchi (Shizuoka, JP)
Assignee: Tomoegawa Co., Ltd.
F28D20/02F28F21/003
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Quick Facts
Patent No.
US 12,104,857
App. No.
17/603,425
Granted
Oct 1, 2024
Kind
B2
Abstract

Provided is a heat storage unit having a simple configuration, capable of being attached to various objects, and capable of efficiently performing heat exchange. The heat storage unit has at least one inorganic fiber member configured by binding or entangling flexible inorganic fibers and having a desired shape; and a heat storage material in contact with the inorganic fibers.

Claims (22)

1. A heat storage unit used in a heat exchange device, wherein

the heat exchange device further includes:

a temperature adjustment unit that adjusts a temperature of an object to be installed thereinside;

a heating medium supply unit that is directly connected to the heat storage unit and to which the heating medium led out from the heat storage unit is supplied, wherein the heating medium supply unit is configured to adjust a temperature of the heating medium supplied thereto to a predetermined temperature;

a first supply flow path that connects the heating medium supply unit to the temperature adjustment unit, and supplies the heating medium led out from the heating medium supply unit to the temperature adjustment unit;

a return flow path that connects the temperature adjustment unit to the heating medium supply unit through the heat storage unit, and returns the heating medium led out from the temperature adjustment unit to the heating medium supply unit such that an operation circulation is completed through which the heating medium circulates passing through the heating medium supply unit, the temperature adjustment unit and the heat storage unit;

a second supply flow path that connects the heating medium supply unit to the heat storage unit such that a reproduction circulation is completed through which the heating medium led out from the heating medium supply unit is directly supplied to the heat storage unit without passing through the temperature adjustment unit, then returning to the heating medium supply unit; and

a flow path forming unit that is placed in the first supply flow path, and is configured to switch a flow of the heating medium either to the first supply flow path or to the second supply flow path, and

the heat storage unit includes:

at least one inorganic fiber body configured by binding metal fibers and having a desired shape;

a heat storage material formed in contact with the metal fibers, and

the metal fibers are made of either a single metal or an alloy, the single metal being selected from a group consisting of copper, silver, gold, platinum, aluminum, nickel, chromium, and tungsten, and the alloy being selected from a group consisting of stainless steel, a copper alloy, a tungsten alloy, and a chromium alloy, wherein

when the heating medium flows in the first supply flow path by the flow path forming unit, the temperature of the heating medium is brought close to the predetermined temperature by heat exchange between the heat storage material and the heating medium, and

when the heating medium flows in the second supply flow path by the flow path forming unit, the heat storage material is regenerated by heat exchange between the heat storage material and the heating medium.

2. The heat storage unit according to claim 1 , wherein

in a case where the heating medium is a warming medium,

when the warming medium flows in the first supply flow path and the return flow path, heat is transferred from the heat storage material to the warming medium so that the temperature of the warming medium is increased and brought close to the predetermined temperature, and

when the warming medium flows in the second supply flow path, heat is transferred from the warming medium to the heat storage material so that a temperature of the heat storage material is increased, the heat storage material is regenerated, and the temperature of the warming medium decreases.

3. The heat storage unit according to claim 1 , wherein

in a case where the heating medium is a cooling medium,

when the cooling medium flows in the first supply flow path and the return flow path, heat is transferred from the cooling medium to the heat storage material so that the temperature of the cooling medium is decreased and brought close to the predetermined temperature, and

when the cooling medium flows in the second supply flow path, heat is transferred from the heat storage material to the cooling medium so that a temperature of the heat storage material is decreased, the heat storage material is regenerated, and the temperature of the cooling medium increases.

Assignments (2)
CHANGE OF NAME Recorded Oct 20, 2025
From: TOMOEGAWA CO., LTD.
To: TOMOEGAWA CORPORATION
Reel/Frame 073114/0840 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 13, 2021
From: OKUMURA, KATSUYA; HATANO, SHUHEI; KAWASE, RITSU; MORIUCHI, HIDEKI
To: TOMOEGAWA CO., LTD.
Reel/Frame 057780/0357 →
Priority Claims (1)
JP 2019-081464 · Apr 23, 2019 · national
Continuity (1)
Related Publication 20220187026A1 · Jun 16, 2022