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    • 124. 发明申请
    • HEAT EXCHANGER AND METHOD OF MANUFACTURING THE HEAT EXCHANGER
    • 热交换器及其制热方法
    • WO02025189A1
    • 2002-03-28
    • PCT/JP2001/008241
    • 2001-09-21
    • F28F1/00B23K1/00B23K101/14F25B9/00F25B40/00F28D7/00F28F1/02F28F1/30F28F9/02F28F13/18F25B1/00
    • F28D7/0025F25B9/008F25B40/00F25B2309/061F28F1/022F28F9/0214
    • A heat exchanger (7) and a method of manufacturing the heat exchanger; the heat exchanger used in a refrigerant circulating compression refrigeration cycle (1) and exchanging heat between the high and low pressure sides of the refrigerant, comprising a tube body (710) allowing the refrigerant to circulate therethrough on the high and low pressure sides for performing a heat exchange by utilizing a heat conducting through the tube body, the tube body further comprising a first flow passage layer (711) formed by disposing a high-pressure side refrigerant flow passage (711) and a second flow passage layer formed by disposing a low-pressure side refrigerant flow passage (712a), wherein the inlet part (720) and outlet part (730) of the first flow passage layer and the inlet part (740) and outlet part (750) of the second flow passage layer are provided at the end part of the tube body.
    • 一种热交换器(7)和制造该热交换器的方法; 用于制冷剂循环压缩制冷循环(1)中的热交换器,并且在制冷剂的高压侧和低压侧之间进行热交换,包括允许制冷剂在高低压侧通过的管体(710),用于执行 通过利用通过所述管体导热的热交换,所述管体还包括通过设置高压侧制冷剂流动通道(711)而形成的第一流动通道层(711)和通过将第 低压侧制冷剂流路(712a),其中,第一流路层的入口部(720)和出口部(730)以及第二流路层的入口部(740)和出口部(750) 设置在管体的端部。
    • 128. 发明申请
    • HEAT EXCHANGER MADE OF ALUMINUM ALLOY
    • 铝合金热交换器
    • WO00075397A1
    • 2000-12-14
    • PCT/JP2000/003529
    • 2000-06-01
    • B05D7/00C23C22/00C23C22/34C23C22/40C23C22/44C23C22/73C23C22/83F28F1/32F28F13/18F28F19/00F28F19/02F28F19/04F28F19/06C23C22/66
    • C23C22/83B05D7/51B05D2202/25C23C22/34C23C22/44C23C22/73F28F19/06F28F21/084F28F2245/02Y10T428/27Y10T428/273Y10T428/31678
    • An aluminum alloy heat exchanger having a film which is free from the emission of an offensive odor, etc., can impart excellent corrosion resistance and hydrophilicity, and contains no harmful chromium. The heat exchanger comprises: a base comprising a tubing and fins and formed by molding an aluminum alloy; a first protective layer which is a chemical conversion coating formed on the base using a treating fluid containing (a) a water-soluble vanadium compound and (b) a fluorozirconium complex compound; and a second protective layer comprising a hydrophilic film formed by coating the first protective layer with a treating fluid which contains (c) a water-compatible polyvinyl alcohol type polymer having 40 mol% or more vinyl alcohol units and 0 to 60 mol%, excluding 60 mol%, at least one kind of additional addition-polymerized units different from the vinyl alcohol units, (d) a polyoxyethylene glycol having a weight-average molecular weight of 6,000 to 1,000,000, (e) a vanadium compound, and (f) a zirconium compound and in which the proportion of the zirconium contained in the compound (f) to the vanadium contained in the compound (e) is 40 to 350% by weight and then drying the treating fluid.
    • 具有不发出异味等的膜的铝合金换热器能够赋予优异的耐腐蚀性和亲水性,不含有害的铬。 所述热交换器包括:基底,其包括管和翅片并通过模制铝合金形成; 第一保护层,其是使用含有(a)水溶性钒化合物和(b)氟锆配位化合物的处理流体在基底上形成的化学转化膜; 以及第二保护层,其包含通过用含有(c)40摩尔%以上的乙烯醇单元和0〜60摩尔%的水溶性聚乙烯醇系聚合物的处理流体涂布所述第一保护层而形成的亲水性膜, 60摩尔%,至少一种不同于乙烯醇单元的另外的加成聚合单元,(d)重均分子量为6,000〜1,000,000的聚氧乙烯二醇,(e)钒化合物,(f) 锆化合物,化合物(f)中所含的锆与化合物(e)中所含的钒的比例为40〜350重量%,然后干燥处理液。
    • 129. 发明申请
    • HEAT TRANSFER TUBE WITH CRACK-LIKE CAVITIES TO ENHANCE PERFORMANCE THEREOF
    • 带有类似裂纹的加热管,以提高其性能
    • WO00034730A1
    • 2000-06-15
    • PCT/US1999/028461
    • 1999-12-02
    • F28F1/40F28F13/18F28F1/14F28F1/20
    • F28F1/40
    • A heat transfer tube (20) having an inner surface (24) provided with a dense pattern of polyhedrons (100) having crack-like cavities (80) on at least two surfaces of a single polyhedron (100), forming three-dimensional crack-like cavities (80) that enhance flow evaporator heat transfer. The tube (20) is made by (a) forming in an inner surface for the tube a plurality of generally parallel first grooves (70), (b) forming in the inner surface (24) and over the first grooves (70) a plurality of generally parallel second fins (64) extending at a first angle of between 0 and about 25 degrees relative to a longitudinal axis (26) for the tube (20) to thereby devolve the second fins (64) into the pattern of cavities, and (c) forming in the second fins (64) a pattern of generally parallel crosshatches extending cross-wise thereto.
    • 一种具有内表面(24)的传热管(20),所述内表面(24)在单面多面体(100)的至少两个表面上设置有具有裂纹状空腔(80)的多面体(100)致密图形,形成三维裂纹 (80),其增强蒸发器的热传递。 管(20)通过(a)在管的内表面中形成多个大致平行的第一槽(70),(b)在内表面(24)中形成并在第一槽(70)上方形成 多个大致平行的第二翅片(64)相对于管(20)的纵向轴线(26)以0至约25度之间的第一角度延伸,从而将第二翅片(64)下放到空腔图案中, 和(c)在所述第二翅片(64)中形成大致平行的交叉阴影线的图案,所述十字形阴影线与所述第二散热片横向延伸。