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    • 7. 发明授权
    • Method of manufacturing a consumable filler metal for use in a welding operation
    • 制造用于焊接操作的消耗性填充金属的方法
    • US07383713B2
    • 2008-06-10
    • US11377618
    • 2006-03-17
    • Huibrecht Adriaan Wouters
    • Huibrecht Adriaan Wouters
    • B21C23/22
    • B21C23/007B21C23/22Y10S72/70Y10S72/711
    • Method of manufacturing consumable filler metal wire, rod, or stick, and the like, of predetermined length and cross-section for use in welding, including: providing an ingot of a first metal and one or more different further metals; forming composite product by providing the ingot of the first metal with one or more hollow cores in substantially parallel relation to each other and locating in the hollow cores the different further metal or metals; applying pressure to the composite product to reduce its cross-section to a predetermined cross-section to form feedstock. Optionally further deforming the feedstock by mechanical pressure to form wire, rod or stick, of final cross-section so ultimate alloying of the first metal with the different further metal or metals occurs when the wire, rod or stick is used as filler material or consumable electrode during welding. Using this filler metal for welding an assembly of aluminium members.
    • 包括:提供第一金属和一种或多种不同的其它金属的锭的制造用于焊接的预定长度和横截面的消耗性填充金属丝,棒或棒等的方法, 通过将第一金属的锭与一个或多个基本上彼此平行的中空芯提供,并且在中空芯中定位不同的另外的金属或金属来形成复合产品; 向复合产品施加压力以将其横截面减小到预定的横截面以形成原料。 任选地通过机械压力进一步使原料变形以形成最终横截面的线,棒或棒,因此当线,棒或棒用作填充材料或消耗品时,第一金属与不同的另外的金属或金属的最终合金化发生 焊接时电极。 使用这种填充金属焊接铝构件的组件。
    • 9. 发明授权
    • Method for constructing a welded construction utilizing an Al-Mg-Mn weld filler alloy
    • 利用Al-Mg-Mn焊接填料合金构造焊接结构的方法
    • US07494043B2
    • 2009-02-24
    • US11247592
    • 2005-10-12
    • Klaus Alfons MechsnerHuibrecht Adriaan Wouters
    • Klaus Alfons MechsnerHuibrecht Adriaan Wouters
    • B23K35/28C22C21/06B32B15/20
    • B23K35/286Y10T428/12764
    • A method for constructing a welded construction, including the steps of: (a) providing separate component parts of the construction and (b) welding the separate parts together with an Al—Mg—Mn weld filler alloy having a good corrosion resistance and improved strength levels. The separate component parts having the following composition (in weight percent): Mg 4.9 to 6.0; Mn 0.6 to 1.2; Zn 0.25 to 1.5; Zr 0.05 to 0.25; Cr 0.3 max.; Ti 0.2 max.; Fe 0.5 max.; Si 0.5 max.; Cu 0.25 max.; Sc 0.3 max., balance inevitable impurities and aluminium. The Al—Mg—Mn weld filler alloy having the following composition (in weight percent): Mg 7.0-9.5; Mn 0.9-2.0; Zn 0.2-0.9 Zr≦0.3; Cr≦0.5; Sc≦2.8; Cu≦0.5; Fe≦0.5; Si≦0.5; Ti≦0.3, the balance aluminium and incidental elements and impurities.
    • 一种用于构造焊接结构的方法,包括以下步骤:(a)提供构造的分开的部件,以及(b)将分离的部件与具有良好的耐腐蚀性和改善的强度的Al-Mg-Mn焊料填充合金焊接在一起 水平。 具有以下组成的单独组分(重量百分比):Mg 4.9至6.0; Mn 0.6〜1.2; Zn 0.25〜1.5; Zr 0.05〜0.25; 最大0.3。 Ti 0.2最大; 最大0.5 Si 0.5最大; 最大铜0.25。 Sc 0.3最大,平衡不可避免的杂质和铝。 具有以下组成(重量%)的Al-Mg-Mn焊料填充剂合金:Mg 7.0-9.5; Mn 0.9-2.0; Zn 0.2-0.9 Zr <= 0.3; Cr <= 0.5; Sc <= 2.8; Cu <= 0.5; Fe <= 0.5; Si <= 0.5; Ti <= 0.3,余量为铝和附带元素和杂质。