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    • 1. 发明申请
    • STRUCTURE OF HEADER-TANK FOR A HEAT EXCHANGER
    • 热交换器的主体结构
    • US20090095458A1
    • 2009-04-16
    • US12251506
    • 2008-10-15
    • Hong-Young LimKwang Hun OhYoung-Ha JeonSeung Hwan Kim
    • Hong-Young LimKwang Hun OhYoung-Ha JeonSeung Hwan Kim
    • F28F9/00F28F9/02F28F1/10
    • F28F9/0224F28F2275/12F28F2275/122
    • The structure of header-tank for a heat exchanger comprises a plurality of tubes which are arranged in a row along an air-blowing direction to be spaced apart from each other at a certain intervals; fins which are interposed between the tubes so as to increase a heat exchange surface area with respect to air flowing between the tubes; and a pair of header-tanks which comprises a header having a tube insertion hole and a tank coupled with the header and in which heat exchange medium is flowed, wherein the header is bent at a surface, in which the tube insertion hole is formed, so as to form a bending portion in a height direction, and the bending portion is formed with a plurality of taps 5, and the tank is formed with a coupling portion coupled to the bending portion of the header, and a coupling groove which is recessed inside tank at the same position as the tap along a longitudinal direction and in which the tap is bent and inserted.
    • 用于热交换器的集管的结构包括多个管,其沿着空气吹送方向排列成一排,以一定间隔彼此间隔开; 插入在管之间的翅片,以增加相对于在管之间流动的空气的热交换表面积; 以及一对集管,其包括具有管插入孔的集管和与集管连接并且热交换介质流动的罐,其中集管在形成有管插入孔的表面处弯曲, 以在高度方向上形成弯曲部分,并且弯曲部分形成有多个抽头5,并且该罐形成有联接到集管的弯曲部分的联接部分和凹陷的联接凹槽 在与水龙头相同的位置沿着纵向方向并且其中水龙头被弯曲和插入。
    • 3. 发明授权
    • Heat exchanger
    • 热交换器
    • US08701750B2
    • 2014-04-22
    • US12741936
    • 2008-11-07
    • Kwang Hun OhHong-Young LimYoung-Ha Jeon
    • Kwang Hun OhHong-Young LimYoung-Ha Jeon
    • F28F9/02F25B39/02
    • F28D1/05391F28D2021/0085F28F9/0204F28F2250/04
    • One or more embodiments of the present invention relates to a heat exchanger. The heat exchanger comprises a pair of header-tanks having at least one partition wall and at least one baffle; a plurality of tubes; and a plurality of fins. A communication hole is formed on the partition wall that is positioned at a region disposed between the baffle and one end of the header-tank adjacent to the baffle. Given that a distance from the baffle to the one end of the header-tank is 100%, 1˜4 communication holes are formed at positions on the partition wall which corresponds to an extent of 0˜50%, 65˜100%, or an extent of 0˜50% and an extent of 65˜100%.
    • 本发明的一个或多个实施例涉及一种热交换器。 该热交换器包括一对具有至少一个分隔壁和至少一个挡板的集管箱; 多个管; 和多个翅片。 在分隔壁上形成有连通孔,该连通孔位于隔板与隔板相邻的集水箱的一端之间的区域。 假设从挡板到集水箱的一端的距离为100%,在分隔壁上的位置形成1〜4个连通孔,其对应于0〜50%,65〜100%的范围,或 范围为0〜50%,程度为65〜100%。
    • 7. 发明申请
    • EVAPORATOR
    • 蒸发器
    • US20100243223A1
    • 2010-09-30
    • US12676146
    • 2008-08-27
    • Hong-Young LimKwang Hun OhYoung-Ha Jeon
    • Hong-Young LimKwang Hun OhYoung-Ha Jeon
    • F28F9/02
    • F28D1/05391F25B39/022F25B2500/01F28F9/0204F28F9/028
    • The present invention relates to an evaporator, and more particularly, to an evaporator which can restrict a surface area of a communication hole with respect to a cross sectional area of a compartment and a surface area of a tube with respect to a surface area of a fin, thereby providing a dimensional extent for maximizing the heat exchange efficiency. Therefore, by optimizing a relation between the surface area of the communication portion and the surface area of the compartment of the first header tank and dimensions for each surface area and the heights of the tube and fin, the present invention provides a dimensional extent for maximizing the heat radiation amount, reducing the maximum temperature deviation of the core portion and allowing the refrigerant and air to be smoothly flowed, thereby maximizing the heat exchange efficiency.
    • 蒸发器技术领域本发明涉及一种蒸发器,更具体地说,涉及一种蒸发器,该蒸发器可以将连通孔的表面积相对于隔室的横截面积和管的表面积相对于 从而提供了使热交换效率最大化的尺寸范围。 因此,通过优化连通部的表面积和第一集水箱的隔室的表面积与管和翅片的每个表面积和高度的尺寸之间的关系,本发明提供了使最大化的尺寸范围 散热量,降低芯部的最大温度偏差,并使制冷剂和空气顺利地流动,从而使热交换效率最大化。
    • 8. 发明授权
    • Evaporator
    • 蒸发器
    • US09127892B2
    • 2015-09-08
    • US12676146
    • 2008-08-27
    • Hong-Young LimKwang Hun OhYoung-Ha Jeon
    • Hong-Young LimKwang Hun OhYoung-Ha Jeon
    • F28D1/053F28F9/22F25B39/02F28F9/02
    • F28D1/05391F25B39/022F25B2500/01F28F9/0204F28F9/028
    • The present invention relates to an evaporator, and more particularly, to an evaporator which can restrict a surface area of a communication hole with respect to a cross sectional area of a compartment and a surface area of a tube with respect to a surface area of a fin, thereby providing a dimensional extent for maximizing the heat exchange efficiency. Therefore, by optimizing a relation between the surface area of the communication portion and the surface area of the compartment of the first header tank and dimensions for each surface area and the heights of the tube and fin, the present invention provides a dimensional extent for maximizing the heat radiation amount, reducing the maximum temperature deviation of the core portion and allowing the refrigerant and air to be smoothly flowed, thereby maximizing the heat exchange efficiency.
    • 蒸发器技术领域本发明涉及一种蒸发器,更具体地说,涉及一种蒸发器,该蒸发器可以将连通孔的表面积相对于隔室的横截面积和管的表面积相对于 从而提供了使热交换效率最大化的尺寸范围。 因此,通过优化连通部的表面积和第一集水箱的隔室的表面积与管和翅片的每个表面积和高度的尺寸之间的关系,本发明提供了使最大化的尺寸范围 散热量,降低芯部的最大温度偏差,并使制冷剂和空气顺利地流动,从而使热交换效率最大化。