Manifold with built-in thermoelectric module

    公开(公告)号:AU755698B2

    公开(公告)日:2002-12-19

    申请号:AU3193600

    申请日:2000-03-17

    Abstract: A thermoelectric module (7) having exothermic and endothermic surfaces, which are heated and cooled, respectively, when an electric current is supplied thereto is built in a manifold body (17), and a cavity (10c, 10d, 20d) is defined therein for entry of a fluid medium in cooperation with at least one of the exothermic and endothermic surfaces, together with a hollow (10a, 10b, 20a, 20b) that extends from an outside to the cavity. A stirring member (5) having a stirring portion (15) integrated together with a rotor (16) within the manifold body (17) for stirring the fluid medium within the cavity is disposed within the manifold body, so that a motor can be formed by the rotor (16) and a stator (8). In this structure, the stirring member (5) is rotated by supplying an electric power to the stator (8), to allow the fluid medium to reach the vacity (10c, 10d) through the interior of the rotor (16).

    Manifold incorporating a thermoelectric module and a cooling device usin g the thermoelectric module

    公开(公告)号:AU2701599A

    公开(公告)日:1999-04-27

    申请号:AU2701599

    申请日:1998-10-05

    Abstract: A manifold incorporating a thermoelectric module having a wide contact of a heat medium with a heat transfer surface of the thermoelectric module and an excellent heat exchange efficiency, and a circular thermoelectric module easily manufactured and constructed into a multi-stacked structure. The manifold (1) comprises a cooling-side manifold piece (2), a heating-side manifold piece (3), a cooling-side agitating member (5), a heating-side agitating member (6), a thermoelectric module (7) and a motor member (8). Heat transfer surfaces (50, 51) of the thermoelectric module (7) are disposed vertically, so that if air enters the cavities (52, 55), air rises along the heat transfer surfaces (50, 51) and exhausted from the exhaust ports (22, 43) at the top of the manifold (1). The cooling-side agitating member (5) and the heating-side agitating member (6) are provided with permanent magnets (33), so that the cooling-side agitating member (5) receives a driving force from the heating-side agitating member (6) and is rotated. A square thermoelectric module (11) is held between aluminium disks (12,13) to form a circular thermoelectric module (10).

    3.
    发明专利
    未知

    公开(公告)号:DE60025908T2

    公开(公告)日:2006-10-19

    申请号:DE60025908

    申请日:2000-03-17

    Abstract: A thermoelectric module (7) having exothermic and endothermic surfaces, which are heated and cooled, respectively, when an electric current is supplied thereto is built in a manifold body (17), and a cavity (10c, 10d, 20d) is defined therein for entry of a fluid medium in cooperation with at least one of the exothermic and endothermic surfaces, together with a hollow (10a, 10b, 20a, 20b) that extends from an outside to the cavity. A stirring member (5) having a stirring portion (15) integrated together with a rotor (16) within the manifold body (17) for stirring the fluid medium within the cavity is disposed within the manifold body, so that a motor can be formed by the rotor (16) and a stator (8). In this structure, the stirring member (5) is rotated by supplying an electric power to the stator (8), to allow the fluid medium to reach the vacity (10c, 10d) through the interior of the rotor (16).

    Thermoelectric device and thermoelectric manifold

    公开(公告)号:AU3193500A

    公开(公告)日:2000-10-09

    申请号:AU3193500

    申请日:2000-03-17

    Abstract: In a thermoelectric device such as a thermoelectric manifold having a plurality of stages of thermoelectric modules, not only are distributions of heat. at endothermic and exothermic surfaces equalized to increase the heat exchange efficiency and also to suppress thermal strains in the thermoelectric modules, but also heat transmission between the thermoelectric modules is facilitated even though bowing occurs. For this purpose, in the thermoelectric device utilizing the plural thermoelectric modules, a fluid serving as a heat transfer medium is intervened between the thermoelectric modules and is utilized to achieve a transmission of heat from the exothermic surface of the thermoelectric module on a cooling side to the endothermic surface of the thermoelectric module on a heating side.

    Thermoelectric device and thermoelectric manifold

    公开(公告)号:AU763253B2

    公开(公告)日:2003-07-17

    申请号:AU3193500

    申请日:2000-03-17

    Abstract: In a thermoelectric device such as a thermoelectric manifold having a plurality of stages of thermoelectric modules, not only are distributions of heat. at endothermic and exothermic surfaces equalized to increase the heat exchange efficiency and also to suppress thermal strains in the thermoelectric modules, but also heat transmission between the thermoelectric modules is facilitated even though bowing occurs. For this purpose, in the thermoelectric device utilizing the plural thermoelectric modules, a fluid serving as a heat transfer medium is intervened between the thermoelectric modules and is utilized to achieve a transmission of heat from the exothermic surface of the thermoelectric module on a cooling side to the endothermic surface of the thermoelectric module on a heating side.

    Manifold with built-in thermoelectric module

    公开(公告)号:AU3193600A

    公开(公告)日:2000-10-09

    申请号:AU3193600

    申请日:2000-03-17

    Abstract: A thermoelectric module (7) having exothermic and endothermic surfaces, which are heated and cooled, respectively, when an electric current is supplied thereto is built in a manifold body (17), and a cavity (10c, 10d, 20d) is defined therein for entry of a fluid medium in cooperation with at least one of the exothermic and endothermic surfaces, together with a hollow (10a, 10b, 20a, 20b) that extends from an outside to the cavity. A stirring member (5) having a stirring portion (15) integrated together with a rotor (16) within the manifold body (17) for stirring the fluid medium within the cavity is disposed within the manifold body, so that a motor can be formed by the rotor (16) and a stator (8). In this structure, the stirring member (5) is rotated by supplying an electric power to the stator (8), to allow the fluid medium to reach the vacity (10c, 10d) through the interior of the rotor (16).

    Manifold incorporating a thermoelectric module and a cooling device using the thermoelectric module

    公开(公告)号:AU749183B2

    公开(公告)日:2002-06-20

    申请号:AU2701599

    申请日:1998-10-05

    Abstract: A manifold incorporating a thermoelectric module having a wide contact of a heat medium with a heat transfer surface of the thermoelectric module and an excellent heat exchange efficiency, and a circular thermoelectric module easily manufactured and constructed into a multi-stacked structure. The manifold (1) comprises a cooling-side manifold piece (2), a heating-side manifold piece (3), a cooling-side agitating member (5), a heating-side agitating member (6), a thermoelectric module (7) and a motor member (8). Heat transfer surfaces (50, 51) of the thermoelectric module (7) are disposed vertically, so that if air enters the cavities (52, 55), air rises along the heat transfer surfaces (50, 51) and exhausted from the exhaust ports (22, 43) at the top of the manifold (1). The cooling-side agitating member (5) and the heating-side agitating member (6) are provided with permanent magnets (33), so that the cooling-side agitating member (5) receives a driving force from the heating-side agitating member (6) and is rotated. A square thermoelectric module (11) is held between aluminium disks (12,13) to form a circular thermoelectric module (10).

    10.
    发明专利
    未知

    公开(公告)号:DE60025908D1

    公开(公告)日:2006-04-20

    申请号:DE60025908

    申请日:2000-03-17

    Abstract: A thermoelectric module (7) having exothermic and endothermic surfaces, which are heated and cooled, respectively, when an electric current is supplied thereto is built in a manifold body (17), and a cavity (10c, 10d, 20d) is defined therein for entry of a fluid medium in cooperation with at least one of the exothermic and endothermic surfaces, together with a hollow (10a, 10b, 20a, 20b) that extends from an outside to the cavity. A stirring member (5) having a stirring portion (15) integrated together with a rotor (16) within the manifold body (17) for stirring the fluid medium within the cavity is disposed within the manifold body, so that a motor can be formed by the rotor (16) and a stator (8). In this structure, the stirring member (5) is rotated by supplying an electric power to the stator (8), to allow the fluid medium to reach the vacity (10c, 10d) through the interior of the rotor (16).

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