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method for training of unusually strong links between metals and keramikmaterialien by brazing at a temperature not exceeding the considered

机译:通过在不超过所考虑的温度下进行钎焊来训练金属与角蛋白材料之间异常强固的连接的方法

摘要

This invention is a process for joining metals to ceramics to form very strong bonds using low brazing temperature, i.e., less than 750. degree. C., and particularly for joining nodular cast iron to partially stabilized zirconia. The process provides that the ceramic be coated with an active metal, such as titanium, that can form an intermetallic with a low melting point brazing alloy such as 60Ag-30Cu-10Sn. The nodular cast iron is coated with a noncarbon containing metal, such as copper, to prevent carbon in the nodular cast iron from dissolving in the brazing alloy. These coated surfaces can be brazed together with the brazing alloy between at less than 750° C. to form a very strong joint. An even stronger bond can be formed if a transition piece is used between the metal and ceramic. It is preferred for the transition piece to have a coefficient of thermal compatible with the coefficient of thermal expansion of the ceramic, such as titanium.
机译:本发明是一种使用低钎焊温度,即低于750度,将金属结合到陶瓷上以形成非常牢固的结合的方法。 C.,特别是将球墨铸铁连接到部分稳定的氧化锆上。该方法提供了用活性金属例如钛涂覆的陶瓷,其可以与低熔点钎焊合金例如60Ag-30Cu-10Sn形成金属间化合物。球墨铸铁涂有不含碳的金属,例如铜,以防止球墨铸铁中的碳溶解在钎焊合金中。这些涂覆的表面可以与钎焊合金一起在低于750℃之间钎焊以形成非常牢固的接头。如果在金属和陶瓷之间使用过渡件,则可以形成更牢固的结合。过渡件优选具有与陶瓷(例如钛)的热膨胀系数兼容的热系数。

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