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    • 3. 发明授权
    • Nickel-plated brazing product having improved corrosion performance
    • 具有改善腐蚀性能的镀镍钎焊制品
    • US06796484B2
    • 2004-09-28
    • US10060117
    • 2002-01-31
    • Adrianus Jacobus WittebroodJacques Hubert Olga JosephJoop Nicolaas Mooij
    • Adrianus Jacobus WittebroodJacques Hubert Olga JosephJoop Nicolaas Mooij
    • B23K3538
    • C25D5/12B23K35/0238B23K35/286Y10T428/12736Y10T428/12764
    • A brazing product, e.g. a brazing sheet product, having an aluminium layer made of an aluminium alloy comprising silicon in an amount in the range of 2 to 18 weight %, and a layer comprising nickel on the outer surface of the aluminium layer such that taken together the aluminium layer and all layers exterior thereto form the filler metal for a brazing operation. The filler metal has a composition containing at least one element: (i) with a smaller exchange current density for the Hydrogen Evolution Reaction (“HER”) than nickel and/or (ii) such that the electro-chemical potential difference between particles of Ni-aluminide(s) of the filler and the aluminium alloy matrix of the filler is reduced. The filler metal's mol-ratio of Ni to such element(s) is in the range of 10:(0.3-30). The invention also relates to a method of manufacturing a brazed assembly using the brazing product, and to a brazed assembly comprising at least one component made of the brazing product.
    • 钎焊产品,例如 钎焊片材产品,其具有由铝合金制成的铝层,该铝层包含2至18重量%范围内的硅,以及在铝层的外表面上包含镍的层,使得铝层和 其外部的所有层形成用于钎焊操作的填充金属。 填充金属具有含有至少一种元素的组合物:(i)氢析晶反应(“HER”)的交换电流密度小于镍和/或(ii),使得其间的电化学势差 填料的镍铝化物和填料的铝合金基体减少。 Ni与这种元素的填充金属摩尔比在10:(0.3-30)的范围内。 本发明还涉及使用钎焊产品制造钎焊组件的方法,以及包括由钎焊产品制成的至少一个部件的钎焊组件。
    • 4. 发明授权
    • Composite sheet material for brazing
    • 复合材料用于钎焊
    • US06753094B1
    • 2004-06-22
    • US09959195
    • 2002-01-24
    • Adrianus Jacobus Wittebrood
    • Adrianus Jacobus Wittebrood
    • B32B1508
    • B23K35/3613B23K35/0238B23K35/0244B23K35/286Y10T428/12569Y10T428/12736Y10T428/26Y10T428/31678Y10T428/31692
    • The invention relates to a composite sheet material for brazing, the composite sheet material having a structure comprising an aluminium or aluminium alloy substrate on at least one side coupled to a layer comprising a polyolefin/acrylic acid copolymer as a carrier filled with brazing flux material, and optionally also with a metal powder, in an amount sufficient to achieve brazing. The invention further relates to a method of manufacturing composite sheet material for brazing, which method comprises the steps (a) mixing the polyolefin/acrylic acid copolymer with the brazing flux material and/or metal powder, and (b) applying to at least one surface of the metal substrate a mixture of said copolymer filled with the brazing flux material and/or metal powder, in an amount sufficient to achieve subsequent brazing.
    • 本发明涉及一种用于钎焊的复合片材材料,该复合片材材料具有包含铝或铝合金基底的结构,该结构至少在与包含聚烯烃/丙烯酸共聚物的层作为载体填充钎焊料材料的层相耦合, 以及任选地还含有足以实现钎焊的量的金属粉末。 本发明还涉及一种制造用于钎焊的复合片材的方法,该方法包括以下步骤:(a)将聚烯烃/丙烯酸共聚物与钎焊剂材料和/或金属粉末混合,和(b)应用于至少一种 金属基底的表面是填充有钎焊剂材料和/或金属粉末的所述共聚物的混合物,其量足以实现随后的钎焊。
    • 10. 发明授权
    • Method of de-coating metallic coated scrap pieces
    • 金属涂层废料的去涂方法
    • US07566369B2
    • 2009-07-28
    • US10489098
    • 2002-09-13
    • Adrianus Jacobus Wittebrood
    • Adrianus Jacobus Wittebrood
    • B08B7/02
    • B24B31/00
    • Method of de-coating metallic coated scrap pieces, the metallic coated scrap pieces comprising a metallic core layer and a metallic coating layer of which the liquidus temperature of the metallic coating layer is lower than the solidus temperature of the metallic core layer, such as brazing sheet scrap pieces, or from metallic coated scrap pieces of which the upper part of the melting range of the metallic core layer has an overlap with the lower part of the melting range of the metallic core layer. The metallic coating layer is at least partially removed from the metallic core layer of said scrap pieces by agitating the scrap pieces at an elevated temperature T above the solidus temperature of the metallic coating layer and below the liquidus temperature of the metallic core layer, together with abrading particles. The abrading particles are brought into fluidisation during the agitating of the metallic coated scrap pieces, thereby forming a fluidised bed.
    • 金属涂层废料的去除方法,金属涂层废料包括金属芯层和金属涂层,金属涂层的液相线温度低于金属芯层的固相线温度,例如钎焊 或者由金属芯层的熔融范围的上部与金属芯层的熔融范围的下部重叠的金属涂层废料构成。 通过在高于金属涂层的固相线温度以上且高于金属芯层的液相线温度的高温T下搅拌废片,将金属涂层至少部分地从金属芯层中除去,连同 研磨颗粒。 研磨颗粒在金属涂覆的废料的搅拌过程中进入流化,从而形成流化床。