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    • 9. 发明授权
    • Heat exchanger
    • 热交换器
    • US06907922B2
    • 2005-06-21
    • US10874112
    • 2004-06-22
    • Yoshiki KatohMasaaki KawakuboKen MutoEtsuo Hasegawa
    • Yoshiki KatohMasaaki KawakuboKen MutoEtsuo Hasegawa
    • F28F1/02F25B39/02F28D1/053F28D7/00F28F1/04F28F1/00
    • F28D1/05366F25B2309/061F28D7/0008F28D2021/0073F28D2021/0085F28F1/045
    • A heat exchanger is used in a vapor-compression type refrigerator where a pressure of a refrigerant at a high-pressure portion reaches and exceeds a critical pressure. A low-pressure refrigerant flows through the heat exchanger. The heat exchanger comprises a flat tube; refrigerant channels included in the tube; and inner pillars disposed between the refrigerant channels. A tensile strength of material of the tube is defined as S [N/mm2]; of one of the refrigerant channels, a dimension approximately parallel with a major-axis direction of the tube, as Wp [mm]; and, of one of the pillars, a thickness approximately parallel with the major-axis direction of the tube, as Ti [mm]. Here, [447×Wp/{10^(1.54×log10S)}−533/{10^(1.98×log10S)}]≦Ti≦[447×Wp/{10^(1.54×log10S)}−533/{10^(1.98×log10S)}]×2.3.
    • 在高压部分的制冷剂的压力达到并超过临界压力的蒸气压缩式冰箱中使用热交换器。 低压制冷剂流过热交换器。 热交换器包括扁平管; 包括在管中的制冷剂通道; 以及设置在制冷剂通道之间的内柱。 管的材料的拉伸强度定义为S [N / mm 2]; 一个制冷剂通道,大致与管的长轴方向平行的尺寸为Wp [mm]; 并且其中一个支柱的厚度与管的长轴方向大致平行,为Ti [mm]。 这里,[447xWp / {10 ^(1.54xlog×10S)} - 533 / {10 ^(1.98xlog×10 S)}] = Ti [= 447xWp /{10^(1.54xlog10S)}-533/{10^(1.98xlog10S)}]x2.3。