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    • 2. 发明授权
    • High ductility, high strength aluminum conductor
    • 高延展性,高强度铝导体
    • US4148671A
    • 1979-04-10
    • US858315
    • 1977-12-07
    • James G. MorrisFranklin D. Lemkey
    • James G. MorrisFranklin D. Lemkey
    • C22C21/00C22C47/00C22C49/06H01B1/02C22F1/04
    • C22C49/06C22C21/00C22C47/00H01B1/023Y10T428/12486
    • A high ductility, high strength, moderate conductivity aluminum conductor article and process for making the article are described. The article is a conductor of elongated geometry containing a low volume fraction of intermetallic fibers which are aligned parallel with the major axis of the conductor. The surrounding matrix is aluminum of at least commercial purity to which from 0.5 to 1.5% copper has been added. The fabrication process involves the coupled solidification of eutectic and slightly proeutectic compositions to produce a fibrous microstructure, followed by mechanical working. The ductility of the finished article will exceed about 5%. The final properties may be varied by heat treatments. The broad composition is 1.0-2.0% Co, 0.5-1.5% Cu, balance aluminum.
    • 描述了高延展性,高强度,适中的导电性铝导体制品及其制造方法。 该物品是细长几何形状的导体,其包含与导体的长轴平行排列的金属间纤维的低体积分数。 周围的基质是至少商业纯度的铝,其中加入0.5至1.5%的铜。 制造工艺涉及共晶和轻质共晶组合的偶联固化,以产生纤维微结构,随后机械加工。 成品的延展性将超过约5%。 最终的性能可以通过热处理来改变。 广泛的组成为1.0-2.0%Co,0.5-1.5%Cu,余量为铝。
    • 3. 发明授权
    • Process for the manufacture of continuous strip cast aluminum alloy
suitable for can making
    • 适用于可制造的连续带状铸造铝合金的制造方法
    • US4526625A
    • 1985-07-02
    • US483453
    • 1983-04-08
    • Harish D. MerchantJames G. MorrisGunther Scharf
    • Harish D. MerchantJames G. MorrisGunther Scharf
    • C22F1/04
    • C22F1/04
    • Non-galling, low earing can stock suitable for deep drawing and wall-ironing into can bodies is prepared from continuously cast aluminum alloy strip of an inch or less in thickness. The strip material is heated to a temperature of from 950.degree. to 1150.degree. F. for a time sufficient to homogenize the alloy. The homogenized strip material is cold rolled to effect a first reduction in sheet thickness of at least 25%. The cold rolled sheet is heated to a recovery temperature of up to about 550.degree. F., and subjected to a second cold rolling to effect a reduction in thickness of up to 50%. The cold rolled sheet product is heated to the recrystallization temperature and then subjected to effect a final reduction in thickness of at least 50% of the original thickness of the sheet to impart an H19 temper to the sheet.
    • 由不锈钢厚度不超过1英寸的连续铸造铝合金钢带制备适用于深冲压和壁式熨烫的罐体的非磨损,低开口。 将带状材料加热至950至1150°F的温度足以使合金均匀化的时间。 均质的带状材料被冷轧以使板厚度的第一次减小至少为25%。 将冷轧板加热至高达约550°F的回收温度,并进行第二次冷轧以使厚度减少达50%。 将冷轧板产品加热至再结晶温度,然后使板的最初厚度的至少50%的厚度最终减小,以使板材具有H19回火。