Heat exchanger having header structure for dispersing thermal stress

    公开(公告)号:US12235053B2

    公开(公告)日:2025-02-25

    申请号:US17800647

    申请日:2021-02-19

    Applicant: Hanon Systems

    Abstract: The present invention relates to a heat exchanger having a header structure for dispersing thermal stress. The purpose of the present invention is to provide a heat exchanger having a header structure for dispersing thermal stress, wherein the heat exchanger improves the structure of a tube insertion hole on a header so as to disperse as much thermal stress as possible, by focusing on the fact that thermal stress concentration mainly occurs in a tube nose.

    Integrated heat exchanger
    3.
    发明授权

    公开(公告)号:US10921068B2

    公开(公告)日:2021-02-16

    申请号:US16217692

    申请日:2018-12-12

    Applicant: Hanon Systems

    Abstract: Provided is an integrated heat exchanger including a header tank in which a gasket is interposed between the header and the tank to seal a portion that the header and the tank are coupled to each other, wherein an inner space of the header tank is partitioned such that a first space portion formed between regions in which the heat exchange medium flows is formed to be in communication with an external region of the header tank through a heat exchange medium discharging means formed at a portion that the header and the tank are coupled to each other, thereby preventing the heat exchange mediums from being leaked between two heat exchange portions and to detect a leakage of the heat exchange medium even when the leakage of the heat exchange medium occurs.

    Heat exchanger
    4.
    发明授权

    公开(公告)号:US12235048B2

    公开(公告)日:2025-02-25

    申请号:US17922115

    申请日:2021-06-22

    Applicant: Hanon Systems

    Abstract: The present invention relates to a heat exchanger comprising: a header tank having a plurality of flow paths in which a heat exchange medium flows; multiple rows of tubes connected to the header tank; and heat radiation fins interposed between the tubes, wherein the tubes include a heat exchange part coupled to the heat radiation fins and a coupling part that is formed on a longitudinal end of the heat exchange part and coupled to the header tank, the width of the coupling part is formed to be less than the width of the heat exchange part so that the overall package size of the heat exchanger may be reduced, thus enabling a compact configuration, and the space between neighboring rows of the tubes may be reduced, thus making it possible to reduce the material of the heat radiation fins.

    Integrated heat exchanger
    5.
    发明授权

    公开(公告)号:US12092407B2

    公开(公告)日:2024-09-17

    申请号:US16646649

    申请日:2018-09-13

    Applicant: Hanon Systems

    CPC classification number: F28F9/0226 F28D1/05366

    Abstract: An integrated heat exchanger in which a flow path, in which a first heat exchange medium flows, and a flow path, in which a second heat exchange medium flues, are separated by a baffle, and includes a support surface having a slope of which the height lowers toward the outside, and formed at a header portion coming in contact with a gasket baffle sealing part, and the gasket baffle sealing part formed in a shape corresponding to the support surface of a header such that the deformation of a gasket is prevented during coupling; and problems in which the gasket of a coupling part, at which the baffle is positioned, is non-uniformly compressed or the gasket is broken or separated from a designated position by means of force of the other direction is prevented.

    Cooling module for vehicle
    6.
    发明授权

    公开(公告)号:US11097610B2

    公开(公告)日:2021-08-24

    申请号:US15994364

    申请日:2018-05-31

    Applicant: Hanon Systems

    Abstract: The present invention relates to a cooling module for a vehicle, and more particularly, to a cooling module for a vehicle including a condenser, a first radiator through which coolant for an engine flow, a second radiator through which coolant for electrical components flows, and an intercooler, and capable of evenly distributing air resistance of the front surface of the first radiator to secure an overall balance of an air volume distribution by disposing the condenser, the second radiator, and the first radiator in a flow direction of air or disposing the second radiator, the condenser, and the first radiator in this order, and disposing the intercooler on lower sides of the condenser and the second radiator, and capable of minimizing a gap of each heat exchange period by disposing the condenser C and the first radiator R to be in closely contact with the second radiator L.

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