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    • 1. 发明授权
    • Method of producing aluminum alloy heat-exchanger
    • 生产铝合金热交换器的方法
    • US5375760A
    • 1994-12-27
    • US197202
    • 1994-02-16
    • Takeyoshi Doko
    • Takeyoshi Doko
    • C22F1/04C22F1/043F28F9/02B23K31/02B23K101/14
    • F28F9/0226C22F1/04C22F1/043
    • A method of producing an aluminum alloy heat-exchanger is disclosed, wherein, upon producing an aluminum alloy heat-exchanger by soldering technique, it is retained for 10 minutes to 30 hours at 400.degree. to 500.degree. C. after finishing a heating for soldering. It is better to retain the heat-exchanger during cooling. Alternatively, the heat-exchanger may be cooled to 150.degree. C. or lower and reheated to 400.degree. to 500.degree. C. for at least 10 minutes to up to 30 hours. Furthermore it is preferable to cool at a cooling velocity of not slower than 30.degree. C./min across a temperature range from about 200.degree. C. to about 400.degree. C. after the retainment. Excellent thermal efficiency, high strength and excellent corrosion resistance can be achieved this way.
    • 公开了一种铝合金热交换器的制造方法,其中,在通过焊接技术制造铝合金热交换器时,在完成加热焊接后,在400〜500℃保持10分钟〜30小时 。 最好在冷却过程中保留热交换器。 或者,热交换器可以冷却至150℃或更低,并且再加热至400至500℃至少10分钟至多达30小时。 此外,优选在保持后在约200℃至约400℃的温度范围内以不低于30℃/分钟的冷却速度冷却。 这样可以实现出色的热效率,高强度和优异的耐腐蚀性。
    • 3. 发明授权
    • Tubular material drawing apparatus for manufacturing precision tube
    • 用于制造精密管的管状材料拉伸装置
    • US4860568A
    • 1989-08-29
    • US184368
    • 1988-04-21
    • Yukio YamanoiMitsuo KandachiMasahiro IwataKazumi Kato
    • Yukio YamanoiMitsuo KandachiMasahiro IwataKazumi Kato
    • B21C1/24B21C1/34
    • B21C1/24B21C1/34
    • A tubular material drawing apparatus for manufacturing precision tubes comprises a plug set device, provided to a back bench, for holding a plug rod in a horizontal state, a travel base to be movable backward with respect to the back bench in a horizontal direction, a holding mechanism, provided to the travel base and capable of holding a rear end portion of a tube element, for holding the rear end portion of the tube element and moving the tube element in a horizontal direction to fit the tube element on the plug rod upon movement of the travel base, a clamp, movably provided to the travel base in a horizontal direction, holding the rear end portion of the tube element and then bringing the rear end portion to the holding mechanism, a carriage guide horizontally extending, a carriage which is guided by the carriage guide and is movable forward, die provided between the back bench and the carriage, and a chuck portion, provided to the carriage and capable of holding a front end portion of the tube element. The chuck portion, die, and holding mechanism are arranged to be coaxially positioned, for holding the front end portion of the tube element while the holding mechanism holds the front end portion of the tube element in which the plug rod is inserted, and while the carriage is moved forward, thereby allowing the die to draw the tube element.
    • 一种用于制造精密管的管状材料拉制装置,包括设置在后台的用于将水平状态的插头杆保持的水平设置装置,在水平方向上相对于后台向后移动的行进底座, 保持机构,设置在行进基座上并且能够保持管元件的后端部,用于保持管元件的后端部并且沿水平方向移动管元件,以将管元件装配在插塞杆上 行进基座的移动,夹具,沿水平方向可移动地设置在行进基座上,保持管元件的后端部分,然后将后端部分保持在保持机构上,水平延伸的滑架引导件,滑架 由滑架引导件引导并且可向前移动,设置在后台与托架之间的模具以及设置在托架上并能够保持前端部分的卡盘部分 的管元件。 卡盘部分,模具和保持机构被布置成同轴定位,用于保持管元件的前端部分,同时保持机构保持插入插头杆的管元件的前端部分,而 滑架向前移动,从而允许模具拉出管件。
    • 6. 发明授权
    • High strength aluminum alloy for forming fin and method of manufacturing
the same
    • 用于成型翅片的高强度铝合金及其制造方法
    • US5554234A
    • 1996-09-10
    • US362746
    • 1994-12-22
    • Hiroaki TakeuchiHiroshi Kano
    • Hiroaki TakeuchiHiroshi Kano
    • C22F1/04
    • C22F1/04
    • The present invention provides a high strength aluminum alloy suitable for use in the manufacture of a fin, said aluminum alloy containing at most 0.1% by weight of Si, 0.10 to 1.0% by weight of Fe, 0.1 to 0.50% by weight of Mn, 0.01 to 0.15% by weight of Ti, and the balance of Al and unavoidable impurities, intermetallic compounds having a diameter not larger than 0.1 .mu.m being distributed within the metal texture of the alloy in a number density of at least 10/.mu.m.sup.3. The present invention also provides a method of manufacturing a high strength aluminum alloy suitable for use in the manufacture of a fin, comprising the steps of heating to 430.degree. to 580.degree. C. an aluminum alloy ingot of the composition noted above, applying a hot rolling treatment to said aluminum alloy ingot to obtain a plate material before the temperature of the aluminum alloy ingot is lowered by at most 50.degree. C. from the temperature immediately after the heating step, applying a cold rolling treatment to the resultant plate material such that the final rate of reduction in the thickness of the plate material is at least 80%, and applying a homogenizing annealing treatment to the cold rolled thin plate material at 250.degree. to 320.degree. C. to cause intermetallic compounds having a diameter not larger than 0.1 .mu.m to be distributed within the metal texture of the alloy in a number density of at least 10/.mu.m.sup.3.
    • 本发明提供一种适用于制造翅片的高强度铝合金,所述铝合金含有至多0.1重量%的Si,0.10-1.0重量%的Fe,0.1-0.50重量%的Mn, 0.01〜0.15重量%的Ti,剩余的Al和不可避免的杂质,直径不大于0.1μm的金属间化合物以数量密度分布在合金的金属组织中至少为10个/立方米。 本发明还提供一种制造适用于制造翅片的高强度铝合金的方法,其包括以下步骤:将上述组合物的铝合金锭加热至430-580℃, 对所述铝合金锭进行轧制处理,以在铝合金锭的温度从加热步骤之后的温度下降至多50℃之前获得板材,对所得板材进行冷轧处理,使得 板材厚度的最终降低率至少为80%,并在250〜320℃下对冷轧薄板材进行均质退火处理,使直径不大于0.1的金属间化合物 以数量密度分布在合金的金属纹理内,至少10 / m 3。