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    • 1. 发明申请
    • SURFACE TREATMENT METHOD FOR METAL MEMBER AND METAL MEMBER OBTAINED BY THE SAME
    • 用于金属构件和金属构件的表面处理方法
    • US20130319868A1
    • 2013-12-05
    • US14000123
    • 2012-02-16
    • Arata YoshidaJin ShinmuraIzuru Sugiura
    • Arata YoshidaJin ShinmuraIzuru Sugiura
    • C25D11/02
    • C25D11/02C25D11/22C25D11/24C25D11/246C25D11/26C25D11/30
    • A surface treatment method improves the surface properties of a metal member while maintaining the metal surface texture, and a metal member is obtained by the surface treatment method. The surface-treated metal member is obtained by bringing a solution of a fluorine-based polymer into contact with a surface of an anodic oxidation coating that is formed on a surface of a metal and has not been subjected to a sealing treatment, and subjecting the anodic oxidation coating to a steam sealing treatment, the surface-treated metal member comprising a fluorine-based polymer layer having a thickness of 100 nm or less, and a composite sealed layer that is formed continuously under the fluorine-based polymer layer, the composite sealed layer having a configuration in which the fluorine-based polymer is present inside pores formed in the anodic oxidation coating.
    • 表面处理方法在保持金属表面织构的同时改善金属构件的表面性能,并且通过表面处理方法获得金属构件。 表面处理的金属构件是通过使氟基聚合物的溶液与形成在金属表面上的阳极氧化涂层的表面接触而不进行密封处理而获得的, 阳极氧化涂层进行蒸汽密封处理,所述表面处理金属构件包括厚度为100nm以下的氟基聚合物层和在氟基聚合物层下方连续形成的复合密封层,所述复合材料 具有氟基聚合物存在于阳极氧化涂层中形成的孔内的构造的密封层。
    • 4. 发明申请
    • 7000-SERIES ALUMINUM ALLOY EXTRUDED PRODUCT AND METHOD OF PRODUCING THE SAME
    • 7000系列铝合金挤压产品及其生产方法
    • US20110017366A1
    • 2011-01-27
    • US12896124
    • 2010-10-01
    • Tomoo YOSHIDAArata YoshidaShinji Makino
    • Tomoo YOSHIDAArata YoshidaShinji Makino
    • C22F1/053
    • B21C23/002C22C21/10C22F1/02C22F1/053
    • A method of producing an aluminum alloy extruded product comprising: casting a billet using a 7000-series aluminum alloy having Mg of 0.95 to 1.95 mass %, Zn of 5.10 to 7.90 mass %, an excess mg or Zn content relative to a stoichiometric composition shown by MgZn2 of less than 0.5 mass %; an A=Zn−5.36×Mg (mass %) of −2.64 to 0.50; and at least one of Mn, Cr and Zr with a total content thereof being less than 0.25 mass %; homogenizing the billet at 450 to 550° C.; preheating the homogenized product at 480 to 540° C.; extruding the preheated product with a die heated at 440 to 500° C.; and subjecting the extruded product to press quenching at an air cooling rate of 29° C./min or more, wherein a proof stress increase due to natural aging is 15 Mpa or less and a hardness HV increase due to natural aging is seven or less.
    • 一种铝合金挤压制品的制造方法,其特征在于,使用Mg为0.95〜1.95质量%,Zn为5.10〜7.90质量%,相对于所示化学计量组成的过量的mg或Zn含量的7000系铝合金铸造坯料 通过MgZn2小于0.5质量%; A = Zn-5.36×Mg(质量%)为-2.64〜0.50; 和Mn,Cr和Zr中的至少一种,其总含量小于0.25质量%; 在450〜550℃下均质化钢坯。 在480至540℃下预热均质产物。 用加热到440-500℃的模具挤压预热产品; 以29℃/分钟以上的空气冷却速度对挤压制品进行加压淬火,其中由于自然时效而产生的抗张力增加为15Mpa以下,由于自然时效而增加的硬度HV为7以下 。