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首页> 外文期刊>Journal of Materials Science >DIFFUSION BONDING OF FERRITIC OXIDE DISPERSION STRENGTHENED ALLOYS TO AUSTENITIC SUPERALLOYS
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DIFFUSION BONDING OF FERRITIC OXIDE DISPERSION STRENGTHENED ALLOYS TO AUSTENITIC SUPERALLOYS

机译:铁氧体弥散强化合金到奥氏体超级合金的扩散键合

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摘要

The superior high temperature mechanical strength and oxidation resistance of ferritic oxide dispersion strengthened (ODS) tubular alloys are compromised by the difficulties encountered in joining. Conventional fusion welding techniques generate a weld fusion zone which is devoid of the mechanical strength exhibited by the base material. Therefore, more sophisticated solid state joining techniques, such as diffusion bonding, must be employed when joining ODS materials. This paper describes a series of solid state diffusion bonding experiments carried out between two tubular ferritic ODS alloys and two high temperature austenitic alloys. Careful control of bonding conditions produced pressure retaining joints between one of the tubular ODS alloys and both austenitic alloys. The successful joint design was incorporated into the manufacture of a tubular creep component, which enabled a series of internally pressurized creep tests to be carried out. The microstructure developed at the bond interface of each of the four separate material couples is described and the high temperature performance of the pressure retaining joints is discussed. [References: 7]
机译:铁氧体弥散增强(ODS)管状合金的优越的高温机械强度和抗氧化性因在连接中遇到的困难而受到损害。常规的熔焊技术产生的熔焊区没有基材所表现出的机械强度。因此,在连接ODS材料时,必须采用更复杂的固态连接技术,例如扩散连接。本文介绍了在两种管状铁素体ODS合金和两种高温奥氏体合金之间进行的一系列固态扩散键合实验。仔细控制粘结条件可在一种管状ODS合金与两种奥氏体合金之间产生保压接头。成功的接头设计被合并到管状蠕变部件的制造中,从而可以进行一系列内部加压蠕变测试。描述了在四个单独的材料对的每一个的结合界面处形成的微观结构,并讨论了保压接头的高温性能。 [参考:7]

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