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    • 2. 发明授权
    • Finned assembly for heat exchangers
    • 热交换器翅片组装
    • US5277358A
    • 1994-01-11
    • US38926
    • 1993-03-29
    • Andrew J. CottoneZalman P. Saperstein
    • Andrew J. CottoneZalman P. Saperstein
    • B23K1/00B23K35/00F28D1/053F28F1/12F28F13/12F28F19/06B23K1/19B23K103/10
    • B23K1/0012B23K35/002F28D1/0535F28F1/128F28F13/12F28F19/06
    • Potential difficulties with corrosion in heat exchangers utilizing aluminum fins are avoided by using fin and tube constructions made by a method which includes the steps of providing a flattened tube (50) of ferrous material (80) and having an exterior coating (82) predominantly of aluminum; providing at least one serpentine fin (56) of aluminum (86) and clad with a predominantly aluminum braze cladding (88); assembling (102) the fin (56) to the flattened tube (50); applying (94), (100), (104), a brazing flux to at least one of the fin (56) and the tube (50); raising (106) the temperature of the assembly to a level sufficient to at least partially melt the braze cladding (88); and maintaining the temperature for a sufficient period of time to achieve a brazed joint (60) between the fin (56) and the tube (50) but a time insufficient to convert the coating (82) and the cladding (88) to ferrous-aluminum intermetallic compound or intermediate phase.
    • 通过使用通过一种方法制造的翅片和管构造来避免使用铝翅片的热交换器中的腐蚀的潜在困难,该方法包括以下步骤:提供铁质材料(80)的扁平管(50),并且具有主要为 铝; 提供至少一个铝(86)的蛇形翅片(56)并且以主要为铝的铜焊包层(88)包覆; 将翅片(56)组装(102)到扁平管(50); 向所述翅片(56)和所述管(50)中的至少一个施加(94),(100),(104),钎焊助焊剂。 将组件的温度升高(106)至足以至少部分地熔化钎焊包层(88)的水平; 并且保持温度足够长的时间以实现翅片(56)和管(50)之间的钎焊接头(60),但不足以将涂层(82)和包层(88)转化为含铁 - 铝金属间化合物或中间相。
    • 5. 发明授权
    • Finned assembly for heat exchangers
    • 热交换器翅片组装
    • US5305945A
    • 1994-04-26
    • US855248
    • 1992-03-23
    • Andrew J. CottoneZalman P. Saperstein
    • Andrew J. CottoneZalman P. Saperstein
    • B23K1/00B23K35/00F28D1/053F28F1/12F28F13/12F28F19/06B23K31/02
    • B23K1/0012B23K35/002F28D1/0535F28F1/128F28F13/12F28F19/06
    • Potential difficulties with corrosion in hear exchangers utilizing aluminum fins are avoided by using fin and tube constructions made by a method which includes the steps of providing a flattened tube (50) of ferrous material (80) and having an exterior coating (82) predominantly of aluminum providing at least one serpentine fin (56) of aluminum (86) and clad with a predominantly aluminum braze cladding (88); assembling (102) the fin (56) to the flattened tube (50); applying (94), (100), (104), a brazing flux to at least one of the fin (56) and the tube (50); raising (106) the temperature of the assembly to a level sufficient to at least partially melt the braze cladding (88); and maintaining the temperature for a sufficient period of time to achieve a brazed joint (60) between the fin (56) and the tube (50) but a time insufficient to convert the coating (82) and the cladding (88) to ferrous-aluminum intermetallic compound or intermediate phase.
    • 通过使用通过包括以下步骤制造的翅片和管构造的方法避免了使用铝翅片的听力交换器中的腐蚀的潜在困难,所述方法包括提供铁质材料(80)的扁平管(50)和具有主要为 铝提供至少一个铝(86)的蛇形翅片(56)并且以主要为铝的铜焊包层(88)包覆; 将翅片(56)组装(102)到扁平管(50); 向所述翅片(56)和所述管(50)中的至少一个施加(94),(100),(104),钎焊助焊剂。 将组件的温度升高(106)至足以至少部分地熔化钎焊包层(88)的水平; 并且保持温度足够长的时间以实现翅片(56)和管(50)之间的钎焊接头(60),但不足以将涂层(82)和包层(88)转化为含铁 - 铝金属间化合物或中间相。
    • 6. 发明授权
    • Finned assembly for heat exchangers
    • 热交换器翅片组装
    • US5102032A
    • 1992-04-07
    • US697204
    • 1991-05-08
    • Andrew J. CottoneZalman P. Saperstein
    • Andrew J. CottoneZalman P. Saperstein
    • B23K1/00B23K35/00F28D1/053F28F1/12F28F13/12F28F19/06
    • B23K1/0012B23K35/002F28D1/0535F28F1/128F28F13/12F28F19/06
    • Potential difficulties with corrosion in heat exchangers utilizing aluminum fins are avoided by using fin and tube constructions made by a method which includes the steps of providing a flattened tube (50) of ferrous material (80) and having an exterior coating (82) predominantly of aluminum; providing at least one serpentine fin (56) of aluminum (86) and clad with a predominantly aluminum braze cladding (88); assembling (102) the fin (56) to the flattened tube (50); applying (94), (100), (104), a brazing flux to at least one of the fin (56) and the tube (50); raising (106) the temperature of the assembly to a level sufficient to at least partially melt the braze cladding (88); and maintaining the temperature for a sufficient period of time to achieve a brazed joint (60) between the fin (56) and the tube (50) but a time insufficient to convert the coating (82) and the cladding (88) to ferrous-aluminum intermetallic compound or intermediate phase.
    • 通过使用通过一种方法制造的翅片和管构造来避免使用铝翅片的热交换器中的腐蚀的潜在困难,该方法包括以下步骤:提供铁质材料(80)的扁平管(50),并且具有主要为 铝; 提供至少一个铝(86)的蛇形翅片(56)并且以主要为铝的铜焊包层(88)包覆; 将翅片(56)组装(102)到扁平管(50); 向所述翅片(56)和所述管(50)中的至少一个施加(94),(100),(104),钎焊助焊剂。 将组件的温度升高(106)至足以至少部分地熔化钎焊包层(88)的水平; 并且保持温度足够长的时间以实现翅片(56)和管(50)之间的钎焊接头(60),但不足以将涂层(82)和包层(88)转化为含铁 - 铝金属间化合物或中间相。
    • 7. 发明授权
    • Finned assembly for heat exchangers
    • 热交换器翅片组装
    • US5042574A
    • 1991-08-27
    • US558613
    • 1990-07-26
    • Andrew J. CottoneZalman P. Saperstein
    • Andrew J. CottoneZalman P. Saperstein
    • B23K1/00B23K35/00F28D1/053F28F1/12F28F13/12F28F19/06
    • F28F1/128B23K1/0012B23K35/002F28D1/0535F28F13/12F28F19/06Y10T428/12757
    • Potential difficulties with corrosion in heat exchangers utilizing aluminum fins are avoided by using fin and tube constructions made by a method which includes the steps of providing a flattened tube (50) of ferrous material (80) and having an exterior coating (82) predominantly of aluminum; providing at least one serpentine fin (56) of aluminum (86) and clad with a predominantly aluminum braze cladding (88); assembling (102) the fin (56) to the flattened tube (50); applying (94), (100), (104), brazing flux to at least one of the fin (56) and the tube (50); raising (106) the temperature of the assembly to a level sufficient to at least partially melt the braze cladding (88); and maintaining the temperature for a sufficient period of time to achieve a brazed joint (60) between the fin (56) and the tube (50) but a time insufficient to convert the coating (82) and the cladding (88) to ferrous-aluminum intermetallic compound or intermediate phase.
    • 通过使用通过一种方法制造的翅片和管构造来避免使用铝翅片的热交换器中的腐蚀的潜在困难,该方法包括以下步骤:提供铁质材料(80)的扁平管(50),并且具有主要为 铝; 提供至少一个铝(86)的蛇形翅片(56)并且以主要为铝的铜焊包层(88)包覆; 将翅片(56)组装(102)到扁平管(50); 施加(94),(100),(104),将焊剂钎焊到所述翅片(56)和所述管(50)中的至少一个上; 将组件的温度升高(106)至足以至少部分地熔化钎焊包层(88)的水平; 并且保持温度足够长的时间以实现翅片(56)和管(50)之间的钎焊接头(60),但不足以将涂层(82)和包层(88)转化为含铁 - 铝金属间化合物或中间相。