High strength aluminum alloy fin material and method of production of same
    1.
    发明授权
    High strength aluminum alloy fin material and method of production of same 有权
    高强度铝合金翅片材料及其生产方法

    公开(公告)号:US08226781B2

    公开(公告)日:2012-07-24

    申请号:US13207950

    申请日:2011-08-11

    IPC分类号: C22C21/00

    CPC分类号: F28F21/084

    摘要: A heat exchanger use high strength aluminum alloy fin material having a high strength and excellent in thermal conductivity, elusion resistance, sag resistance, sacrificial anodization effect, and self corrosion resistance, characterized by containing Si: 0.8 to 1.4 wt %, Fe: 0.15 to 0.7 wt %, Mn: 1.5 to 3.0 wt %, and Zn: 0.5 to 2.5 wt %, limiting the Mg as an impurity to 0.05 wt % or less, and having a balance of ordinary impurities and Al in chemical composition, having a metal structure before brazing of a fibrous crystal grain structure, a tensile strength before brazing of not more than 240 MPa, a tensile strength after brazing of not less than 150 MPa, and a recrystallized grain size after brazing of 500 μm or more.

    摘要翻译: 热交换器使用具有高强度和优异的导热性,耐熔性,抗流挂性,牺牲阳极氧化效果和自腐蚀性的高强度铝合金翅片材料,其特征在于,含有Si:0.8〜1.4重量%,Fe:0.15〜 0.7重量%,Mn:1.5〜3.0重量%,Zn:0.5〜2.5重量%,将Mg作为杂质限制在0.05重量%以下,其余为普通杂质和化学组成的Al,具有金属 纤维状晶粒结构钎焊之前的结构,钎焊前的拉伸强度不大于240MPa,钎焊后的拉伸强度不低于150MPa,钎焊后的再结晶粒径为500μm以上。

    High Strength Aluminum Alloy Fin Material And Method Of Production Of Same
    2.
    发明申请
    High Strength Aluminum Alloy Fin Material And Method Of Production Of Same 有权
    高强度铝合金翅片材料及其生产方法

    公开(公告)号:US20110293468A1

    公开(公告)日:2011-12-01

    申请号:US13207950

    申请日:2011-08-11

    IPC分类号: C22C21/00

    CPC分类号: F28F21/084

    摘要: A heat exchanger use high strength aluminum alloy fin material having a high strength and excellent in thermal conductivity, elusion resistance, sag resistance, sacrificial anodivation effect, and self corrosion resistance, characterized by containing Si: 0.8 to 1.4 wt %, Fe: 0.15 to 0.7 wt %, Mn: 1.5 to 3.0 wt %, and Zn: 0.5 to 2.5 wt %, limiting the Mg as an impurity to 0.05 wt % or less, and having a balance of ordinary impurities and Al in chemical composition, having a metal structure before brazing of a fibrous crystal grain structure, a tensile strength before brazing of not more than 240 MPa, a tensile strength after brazing of not less than 150 MPa, and a recrystallized grain size after brazing of 500 μm or more.

    摘要翻译: 热交换器采用具有高强度和优异的导热性,耐熔性,抗流挂性,牺牲阳极活化效果和自腐蚀性的高强度铝合金翅片材料,其特征在于,含有Si:0.8〜1.4重量%,Fe:0.15〜 0.7重量%,Mn:1.5〜3.0重量%,Zn:0.5〜2.5重量%,将Mg作为杂质限制在0.05重量%以下,其余为普通杂质和化学组成的Al,具有金属 纤维状晶粒结构钎焊之前的结构,钎焊前的拉伸强度不大于240MPa,钎焊后的拉伸强度不低于150MPa,钎焊后的再结晶粒径为500μm以上。

    High strength aluminum alloy fin material and method of production of same
    3.
    发明授权
    High strength aluminum alloy fin material and method of production of same 有权
    高强度铝合金翅片材料及其生产方法

    公开(公告)号:US07998288B2

    公开(公告)日:2011-08-16

    申请号:US11996836

    申请日:2006-07-18

    IPC分类号: C22F1/04

    CPC分类号: F28F21/084

    摘要: A heat exchanger use high strength aluminum alloy fin material having a high strength and excellent in thermal conductivity, erosion resistance, sag resistance, sacrificial anodization effect, and self corrosion resistance, characterized by containing Si: 0.8 to 1.4 wt %, Fe: 0.15 to 0.7 wt %, Mn: 1.5 to 3.0 wt %, and Zn: 0.5 to 2.5 wt %, limiting the Mg as an impurity to 0.05 wt % or less, and having a balance of ordinary impurities and Al in chemical composition, having a metal structure before brazing of a fibrous crystal grain structure, a tensile strength before brazing of not more than 240 MPa, a tensile strength after brazing of not less than 150 MPa, and a recrystallized grain size after brazing of 500 μm or more.

    摘要翻译: 热交换器使用具有高强度和优异的导热性,耐腐蚀性,抗流挂性,牺牲阳极氧化效果和自腐蚀性的高强度铝合金翅片材料,其特征在于,含有Si:0.8〜1.4重量%,Fe:0.15〜 0.7重量%,Mn:1.5〜3.0重量%,Zn:0.5〜2.5重量%,将Mg作为杂质限制在0.05重量%以下,其余为普通杂质和化学组成的Al,具有金属 纤维状晶粒结构钎焊之前的结构,钎焊前的拉伸强度不大于240MPa,钎焊后的拉伸强度不低于150MPa,钎焊后的再结晶粒径为500μm以上。

    High strength aluminum alloy fin material and method of production of same
    4.
    发明授权
    High strength aluminum alloy fin material and method of production of same 有权
    高强度铝合金翅片材料及其生产方法

    公开(公告)号:US08784582B2

    公开(公告)日:2014-07-22

    申请号:US13532525

    申请日:2012-06-25

    IPC分类号: C22F1/04

    CPC分类号: F28F21/084

    摘要: A heat exchanger use high strength aluminum alloy fin material having a high strength and excellent in thermal conductivity, erosion resistance, sag resistance, sacrificial anodization effect, and self corrosion resistance, characterized by containing Si: 0.8 to 1.4 wt %, Fe: 0.15 to 0.7 wt %, Mn: 1.5 to 3.0 wt %, and Zn: 0.5 to 2.5 wt %, limiting the Mg as an impurity to 0.05 wt % or less, and having a balance of ordinary impurities and Al in chemical composition, having a metal structure before brazing of a fibrous crystal grain structure, a tensile strength before brazing of not more than 240 MPa, a tensile strength after brazing of not less than 150 MPa, and a recrystallized grain size after brazing of 500 μm or more.

    摘要翻译: 热交换器使用具有高强度和优异的导热性,耐腐蚀性,抗流挂性,牺牲阳极氧化效果和自腐蚀性的高强度铝合金翅片材料,其特征在于,含有Si:0.8〜1.4重量%,Fe:0.15〜 0.7重量%,Mn:1.5〜3.0重量%,Zn:0.5〜2.5重量%,将Mg作为杂质限制在0.05重量%以下,其余为普通杂质和化学组成的Al,具有金属 纤维状晶粒结构钎焊之前的结构,钎焊前的拉伸强度不大于240MPa,钎焊后的拉伸强度不低于150MPa,钎焊后的再结晶粒径为500μm以上。

    High Strength Aluminum Alloy Fin Material And Method Of Production Of Same
    5.
    发明申请
    High Strength Aluminum Alloy Fin Material And Method Of Production Of Same 有权
    高强度铝合金翅片材料及其生产方法

    公开(公告)号:US20120261037A1

    公开(公告)日:2012-10-18

    申请号:US13532525

    申请日:2012-06-25

    IPC分类号: C22F1/047 C22F1/053

    CPC分类号: F28F21/084

    摘要: A heat exchanger use high strength aluminum alloy fin material having a high strength and excellent in thermal conductivity, erosion resistance, sag resistance, sacrificial anodization effect, and self corrosion resistance, characterized by containing Si: 0.8 to 1.4 wt %, Fe: 0.15 to 0.7 wt %, Mn: 1.5 to 3.0 wt %, and Zn: 0.5 to 2.5 wt %, limiting the Mg as an impurity to 0.05 wt % or less, and having a balance of ordinary impurities and Al in chemical composition, having a metal structure before brazing of a fibrous crystal grain structure, a tensile strength before brazing of not more than 240 MPa, a tensile strength after brazing of not less than 150 MPa, and a recrystallized grain size after brazing of 500 μm or more.

    摘要翻译: 热交换器使用具有高强度和优异的导热性,耐腐蚀性,抗流挂性,牺牲阳极氧化效果和自腐蚀性的高强度铝合金翅片材料,其特征在于,含有Si:0.8〜1.4重量%,Fe:0.15〜 0.7重量%,Mn:1.5〜3.0重量%,Zn:0.5〜2.5重量%,将Mg作为杂质限制在0.05重量%以下,其余为普通杂质和化学组成的Al,具有金属 纤维状晶粒结构钎焊之前的结构,钎焊前的拉伸强度不大于240MPa,钎焊后的拉伸强度不低于150MPa,钎焊后的再结晶粒径为500μm以上。

    HIGH STRENGTH ALUMINUM ALLOY FIN MATERIAL AND METHOD OF PRODUCTION OF SAME
    6.
    发明申请
    HIGH STRENGTH ALUMINUM ALLOY FIN MATERIAL AND METHOD OF PRODUCTION OF SAME 有权
    高强度铝合金材料及其生产方法

    公开(公告)号:US20100139899A1

    公开(公告)日:2010-06-10

    申请号:US11996836

    申请日:2006-07-18

    CPC分类号: F28F21/084

    摘要: A heat exchanger use high strength aluminum alloy fin material having a high strength and excellent in thermal conductivity, erosion resistance, sag resistance, sacrificial anodization effect, and self corrosion resistance, characterized by containing Si: 0.8 to 1.4 wt %, Fe: 0.15 to 0.7 wt %, Mn: 1.5 to 3.0 wt %, and Zn: 0.5 to 2.5 wt %, limiting the Mg as an impurity to 0.05 wt % or less, and having a balance of ordinary impurities and Al in chemical composition, having a metal structure before brazing of a fibrous crystal grain structure, a tensile strength before brazing of not more than 240 MPa, a tensile strength after brazing of not less than 150 MPa, and a recrystallized grain size after brazing of 500 μm or more.

    摘要翻译: 热交换器使用具有高强度和优异的导热性,耐腐蚀性,抗流挂性,牺牲阳极氧化效果和自腐蚀性的高强度铝合金翅片材料,其特征在于,含有Si:0.8〜1.4重量%,Fe:0.15〜 0.7重量%,Mn:1.5〜3.0重量%,Zn:0.5〜2.5重量%,将Mg作为杂质限制在0.05重量%以下,其余为普通杂质和化学组成的Al,具有金属 纤维状晶粒结构钎焊之前的结构,钎焊前的拉伸强度不大于240MPa,钎焊后的拉伸强度不低于150MPa,钎焊后的再结晶粒径为500μm以上。

    Aluminum alloy fin material for heat exchanger and method of production of same and method of production of heat exchanger by brazing fin material
    7.
    发明授权
    Aluminum alloy fin material for heat exchanger and method of production of same and method of production of heat exchanger by brazing fin material 有权
    用于热交换器的铝合金翅片材料及其制造方法以及通过钎焊翅片材料生产热交换器的方法

    公开(公告)号:US08999083B2

    公开(公告)日:2015-04-07

    申请号:US12375798

    申请日:2007-06-08

    摘要: An aluminum alloy fin material for a heat exchanger having suitable strength before brazing enabling easy fin formation, having high strength after brazing, having a high thermal conductivity (electrical conductivity) after brazing, and having superior sag resistance, erosion resistance, self corrosion prevention, and sacrificial anode effect, a method of production of the same, and a method of production of a heat exchanger using the fin material are provided, that is, an aluminum alloy fin material having a chemical composition of Si: 0.7 to 1.4 wt %, Fe: 0.5 to 1.4 wt %, Mn: 0.7 to 1.4 wt %, and Zn: 0.5 to 2.5 wt %, Mg as an impurity limited to 0.05 wt % or less, and the balance of unavoidable impurities and Al, and having a tensile strength after brazing of 130 MPa or more, a yield strength after brazing of 45 MPa or more, a recrystallized grain size after brazing of 500 μm or more, and an electrical conductivity after brazing of 47% IACS or more, a method of producing an aluminum alloy fin material comprising cold rolling/annealing/cold rolling/annealing/cold rolling a thin slab continuously cast by a twin-belt system from a melt of the above composition under predetermined conditions, and a method of production of a heat exchanger comprising cooling the fin material at a predetermined rate after brazing heating.

    摘要翻译: 一种用于热交换器的铝合金翅片材料,其在钎焊之前具有合适的强度,能够容易的翅片形成,钎焊后的强度高,钎焊后的导热性(导电性)高,并且具有优异的抗流挂性,耐腐蚀性,自腐蚀性, 和牺牲阳极效应,其制造方法以及使用翅片材料的热交换器的制造方法,即具有Si:0.7〜1.4重量%的化学组成的铝合金翅片材料, Fe:0.5〜1.4重量%,Mn:0.7〜1.4重量%,Zn:0.5〜2.5重量%,作为杂质的Mg限制在0.05重量%以下,余量为不可避免的杂质和Al, 钎焊后的强度为130MPa以上,钎焊后的屈服强度为45MPa以上,钎焊后的再结晶粒径为500μm以上,钎焊后的导电率为47%IACS以上,制造 铝 合金翅片材料包括冷轧/退火/冷轧/退火/冷轧在预定条件下由上述组合物的熔体以双带系统连续铸造的薄板坯,以及制造热交换器的方法,包括冷却 钎焊加热后的预定速率的翅片材料。

    ALUMINUM ALLOY FIN MATERIAL FOR HEAT EXCHANGER AND METHOD OF PRODUCTION OF SAME AND METHOD OF PRODUCTION OF HEAT EXCHANGER BY BRAZING FIN MATERIAL
    8.
    发明申请
    ALUMINUM ALLOY FIN MATERIAL FOR HEAT EXCHANGER AND METHOD OF PRODUCTION OF SAME AND METHOD OF PRODUCTION OF HEAT EXCHANGER BY BRAZING FIN MATERIAL 有权
    用于热交换器的铝合金材料及其制造方法和通过烧结材料生产热交换器的方法

    公开(公告)号:US20090308500A1

    公开(公告)日:2009-12-17

    申请号:US12375798

    申请日:2007-06-08

    摘要: An aluminum alloy fin material for a heat exchanger having suitable strength before brazing enabling easy fin formation, having high strength after brazing, having a high thermal conductivity (electrical conductivity) after brazing, and having superior sag resistance, erosion resistance, self corrosion prevention, and sacrificial anode effect, a method of production of the same, and a method of production of a heat exchanger using the fin material are provided, that is, an aluminum alloy fin material having a chemical composition of Si: 0.7 to 1.4 wt %, Fe: 0.5 to 1.4 wt %, Mn: 0.7 to 1.4 wt %, and Zn: 0.5 to 2.5 wt %, Mg as an impurity limited to 0.05 wt % or less, and the balance of unavoidable impurities and Al, and having a tensile strength after brazing of 130 MPa or more, a yield strength after brazing of 45 MPa or more, a recrystallized grain size after brazing of 500 μm or more, and an electrical conductivity after brazing of 47% IACS or more, a method of producing an aluminum alloy fin material comprising cold rolling/annealing/cold rolling/annealing/cold rolling a thin slab continuously cast by a twin-belt system from a melt of the above composition under predetermined conditions, and a method of production of a heat exchanger comprising cooling the fin material at a predetermined rate after brazing heating.

    摘要翻译: 一种用于热交换器的铝合金翅片材料,其在钎焊之前具有合适的强度,能够容易的翅片形成,钎焊后的强度高,钎焊后的导热性(导电性)高,并且具有优异的抗流挂性,耐腐蚀性,自腐蚀性, 和牺牲阳极效应,其制造方法以及使用翅片材料的热交换器的制造方法,即具有Si:0.7〜1.4重量%的化学组成的铝合金翅片材料, Fe:0.5〜1.4重量%,Mn:0.7〜1.4重量%,Zn:0.5〜2.5重量%,作为杂质的Mg限制在0.05重量%以下,余量为不可避免的杂质和Al, 钎焊后的强度为130MPa以上,钎焊后的屈服强度为45MPa以上,钎焊后的再结晶粒径为500μm以上,钎焊后的导电率为47%IACS以上,制造 铝 合金翅片材料包括冷轧/退火/冷轧/退火/冷轧在预定条件下由上述组合物的熔体以双带系统连续铸造的薄板坯,以及制造热交换器的方法,包括冷却 钎焊加热后的预定速率的翅片材料。