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    • 53. 发明公开
    • ALUMINUM ALLOY FIN MATERIAL FOR HEAT EXCHANGER, PROCESS FOR MANUFACTURING THE SAME, AND PROCESS FOR MANUFACTURING HEAT EXCHANGER THROUGH BRAZING OF THE FIN MATERIAL
    • 铝合金材料肋骨热交换器和制造方法的一个交换机钎焊被肋骨材料的方法,
    • EP2048252A1
    • 2009-04-15
    • EP07745324.9
    • 2007-06-08
    • Nippon Light Metal, Co., Ltd.
    • SUZUKI, HidekiSASAKI, TomohiroNAGASAWA, MasaeTAKAHASHI, Nobuki
    • C22C21/00C22F1/053C22F1/00
    • C22F1/053B23K1/0012B23K35/362B23P15/26C22C21/00C22C21/02C22C21/10C22F1/00F28F21/084
    • 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 A1, 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.
    • 一种铝合金翅片材料,其在钎焊能够容易形成翅片,在钎焊后强度高,钎焊后具有高导热性(导电性),并且具有优异的耐熔垂性,耐腐蚀性,耐自腐蚀性之前适当强度的热交换器, 并提供牺牲阳极效果,生产相同的方法,和生产用散热片材料的热交换器的方法,具有Si的化学组成所做的是,在铝合金翅片材料:0.7至1.4%(重量) 铁:0.5至1.4重量%以下,Mn:0.7〜1.4%(重量),和Zn:0.5〜2.5重量%,Mg作为杂质限于12时05重量%或更少,和不可避免的杂质和Al的平衡,并具有拉伸 130MPa以上,45MPa以上,500微米或更大,并且钎焊47%IACS以上,在制造的方法后的导电性的钎焊之后的再结晶粒度的钎焊后的屈服强度的钎焊后强度 铝异体 ÿ翅片材料,其包括冷轧/退火/冷轧/退火/冷轧的薄板坯连续通过双带系统在预定条件下铸造由上述组合物的熔体,和生产换热器的包括冷却的方法 在钎焊加热后的预定速率翅片材料。
    • 54. 发明公开
    • Casting aluminium alloy and internal combustion engine cylinder head
    • Gussaluminiumlegierung und Zylinderkopf eines Verbrennungsmotors
    • EP2014780A1
    • 2009-01-14
    • EP08012132.0
    • 2008-07-04
    • NISSAN MOTOR CO., LTD.Nippon Light Metal, Co. Ltd.
    • Souda, HiroshiAkiyama, KouichiHorikawa, HiroshiShioda, Masahiko
    • C22C21/04C22F1/043F02F1/24
    • C22F1/043C22C21/02C22C21/04F02F1/24
    • Disclosed are: a casting aluminum alloy that is excellent in elongation as alternative properties of a high cycle fatigue strength and a thermal fatigue strength and is suitably usable for a casting for which both of the excellent high cycle fatigue strength and the excellent thermal fatigue strength are required, for example, an internal combustion engine cylinder head; a casting made of the aluminum alloy; a manufacturing method of the casting; and further, an internal combustion engine cylinder head composed of the aluminum alloy casting and manufactured by the manufacturing method of the casting. The casting aluminum alloy contains, in terms of mass ratios, 4.0 to 7.0% of Si, 0.5 to 2.0% of Cu, 0.25 to 0.5% of Mg, no more than 0.5% of Fe, no more than 0.5% of Mn, and at least one component selected from the group consisting of Na, Ca and Sr, each mass ratio of which is 0.002 to 0.02%.
    • 公开了一种铸造铝合金,其具有优异的伸长率,作为高循环疲劳强度和热疲劳强度的替代性能,并且适用于具有优异的高循环疲劳强度和优异的热疲劳强度的铸造 例如需要内燃机气缸盖; 由铝合金铸造的铸件; 铸造的制造方法; 另外,由铸造铝合金构成的内燃机气缸盖,通过铸造的制造方法制造。 铸造铝合金以质量比计含有4.0〜7.0%的Si,Cu:0.5〜2.0%,Mg:0.25〜0.5%,Fe:0.5%以下,Mn:0.5%以下,以及 选自Na,Ca和Sr中的至少一种成分,其质量比为0.002〜0.02%。
    • 58. 发明公开
    • Aluminium alloy support for lithographic printing plate and process for producing substrate for support
    • 用于平版印刷版的方法和铝合金的光束用于载体制备的衬底
    • EP0978573A3
    • 2003-01-08
    • EP99114299.3
    • 1999-07-30
    • Nippon Light Metal, Co. Ltd.FUJI PHOTO FILM CO., LTD.
    • Suzuki, HidekiOkamoto, IchiroMizushima, KazumitsuAsahi, TadashiSawada, HirokazuSakaki, Hirokazu
    • C22C21/00B41C1/10
    • C22C21/00B41N1/083B41N3/034
    • The present invention provides a support for a lithographic printing plate prepared by cold rolling a sheet while intermediate annealing is omitted to save energy and the number of the cold rolling steps are decreased to simplify the sheet production steps and to give a desired strength of the sheet, and by inhibiting precipitation of Si particles in the substrate to give extremely excellent resistance to ink staining in the nonimage areas during printing, and a process for producing a substrate therefor. The production process comprises homogenization heat-treating an aluminum alloy slab comprising 0.10 to 0.40 wt% of Fe, 0.03 to 0.15 wt% of Si, 0.004 to 0.03 wt% of Cu, and the balance of Al and unavoidable impurities, hot rolling the heat-treated slab, and cold-rolling the hot-rolled strip without intermediate annealing, the cold rolling including a final pass after which the sheet temperature becomes at least the recovery temperature of the sheet and the following rapid cooling, whereby an aluminum alloy substrate for a lithographic printing plate having a content of precipitated Si of up to 30 ppm and a tensile strength of from 145 to 180 MPa is produced. When the aluminum alloy is electrolytically grained and anodically oxidized, the resultant anodic oxide film can contain up to 200/mm 2 of precipitated Si particles having an average particle size of at least 0.5 µm.
    • 本发明提供了一种通过冷轧片材,而省略中间退火,以节省能量和冷轧步骤的数目而制备的平版印刷版的支持体被减少,以简化片生产步骤和,得到的片材的所期望的强度 和通过抑制在衬底的Si颗粒的沉淀在印刷期间得到在非图像区的油墨着色极为优异的电阻,并且用于制造基材用于其的处理。 生产过程包括:均质化热处理的铝合金厚板含有Fe的12:10至00:40重量%,Si的0点03分至0点15重量%,0.004至铜的0点03重量%,剩余部分的Al和不可避免的杂质,热轧该热 - 处理的板,然后冷轧该热轧带材没有中间退火,冷轧包括afterwhich板材温度变为至少在片材的恢复温度和下面的快速冷却最终道次,由此在为铝合金基材 具有至多30 ppm的沉淀Si的含量和从145至180兆帕的抗张强度的平版印刷版被产生。 当铝合金电解磨版和阳极氧化,所得到的阳极氧化膜,可以包含多达200个/ mm <2>沉淀的Si颗粒,其具有至少0.5微米的平均粒度。
    • 60. 发明公开
    • Aluminium alloy support for lithographic printing plate and process for producing substrate for support
    • Verfahren zur Herstellung eines Aluminiumsubstratsfüreine lithographische Druckplatte
    • EP0978573A2
    • 2000-02-09
    • EP99114299.3
    • 1999-07-30
    • Nippon Light Metal, Co. Ltd.FUJI PHOTO FILM CO., LTD.
    • Suzuki, HidekiOkamoto, IchiroMizushima, KazumitsuAsahi, TadashiSawada, HirokazuSakaki, Hirokazu
    • C22C21/00B41C1/10
    • C22C21/00B41N1/083B41N3/034
    • The present invention provides a support for a lithographic printing plate prepared by cold rolling a sheet while intermediate annealing is omitted to save energy and the number of the cold rolling steps are decreased to simplify the sheet production steps and to give a desired strength of the sheet, and by inhibiting precipitation of Si particles in the substrate to give extremely excellent resistance to ink staining in the nonimage areas during printing, and a process for producing a substrate therefor.
      The production process comprises homogenization heat-treating an aluminum alloy slab comprising 0.10 to 0.40 wt% of Fe, 0.03 to 0.15 wt% of Si, 0.004 to 0.03 wt% of Cu, and the balance of Al and unavoidable impurities, hot rolling the heat-treated slab, and cold-rolling the hot-rolled strip without intermediate annealing, the cold rolling including a final pass after which the sheet temperature becomes at least the recovery temperature of the sheet and the following rapid cooling, whereby an aluminum alloy substrate for a lithographic printing plate having a content of precipitated Si of up to 30 ppm and a tensile strength of from 145 to 180 MPa is produced. When the aluminum alloy is electrolytically grained and anodically oxidized, the resultant anodic oxide film can contain up to 200/mm 2 of precipitated Si particles having an average particle size of at least 0.5 µm.
    • 本发明提供了对通过冷轧片材制备的平版印刷版的支持,同时省略中间退火以节省能量并且减少冷轧步骤的数量以简化片材生产步骤并且提供片材的期望强度 ,并且通过抑制基板中的Si颗粒的沉淀,以在印刷期间对非图像区域中的油墨染色产生非常优异的耐性,以及用于制备基板的方法。 该制造方法包括对铝合金板进行均质化热处理,该铝合金板含有Fe:0.10〜0.40重量%,Si:0.03〜0.15重量%,Cu:0.004〜0.03重量%,余量由Al和不可避免的杂质构成, 并且在不进行中间退火的情况下冷轧热轧带材,冷轧包括最终通过,其中片材温度至少为片材的回收温度和随后的快速冷却,由此形成用于 产生沉淀Si含量高达30ppm,拉伸强度为145〜180MPa的平版印刷版。 当铝合金电解晶粒化并阳极氧化时,所得到的阳极氧化膜可以含有至多200 / mm 2的平均粒度为至少0.5μm的沉淀Si颗粒。