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Gas-tight metal/ceramic or metal/metal seals for applications in high temperature electrochemical devices and method of making

机译:用于高温电化学装置的气密金属/陶瓷或金属/金属密封件及其制造方法

摘要

A method of joining metal and metal, or metal and ceramic parts, wherein a first metal part is selected and then processed to form a bond coat that will effectively bond to a sealing material which in turn bonds to a second metal or ceramic part without degrading under the operating conditions of electrochemical devices. Preferred first metal parts include alumina forming alloys from the group consisting of ferritic stainless steels (such as Fecralloys), austinetic stainless steels, and superalloys, and chromia forming alloys formed of ferritic stainless steels. In the case of chromia forming ferritic stainless steels, this bond coat consists of a thin layer of alumina formed on the surface, with a diffusion layer between the first metal part and this thin layer. The bond coat provides a good bonding surface for a sealing layer of glass, braze or combinations thereof, while at the same time the diffusion layer provides a durable bond between the thin alumina layer and the first metal part. In the case of alumina forming alloys, the bond coat consists of cauliflower-like growths of an aluminum oxide nodules embedded in the surface of the alumina forming alloys.
机译:一种连接金属和金属或金属和陶瓷零件的方法,其中选择第一金属零件,然后进行处理以形成粘结层,该粘结层将有效地粘结到密封材料,而密封材料又粘结到第二金属或陶瓷零件而不会降解在电化学装置的工作条件下。优选的第一金属部件包括选自铁素体不锈钢(例如Fecralloys),奥氏体不锈钢和超合金的氧化铝形成合金,以及由铁素体不锈钢形成的氧化铬形成合金。在形成氧化铬的铁素体不锈钢的情况下,该结合层由在表面上形成的氧化铝薄层组成,在第一金属部分和该薄层之间具有扩散层。粘结涂层为玻璃,钎焊或其组合的密封层提供了良好的粘结表面,同时扩散层在薄氧化铝层和第一金属部件之间提供了持久的粘结。在形成氧化铝的合金的情况下,粘结涂层由花椰菜状生长的氧化铝结核组成,该氧化铝小球嵌入在形成氧化铝的合金的表面中。

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