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Solid State Bonding of Beryllium-Copper for an ITER First Wall Application

机译:铍铜的固态键合用于磨练的磨料第一墙应用

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Several different joint assemblies were evalauted in support of a manufacturing technology for diffusion bonding a beryllium armor tile to a copper alloy heat sink for fusion reactor applications. Because beryllium reacts with all but a few elements to form intermetallic compounds, this study considered several differnet surface treatments as a means of both inhibitng these reactions and promiting a good diffusion bond between the two substrates. All diffusion bonded assemblies used aluminum of an aluminum-beryllium composite (AlBeMet-150) as the interfacial material in contact with beryllium. In most cases, explosive bonding was utilized as a technique for joining the copper alloy heat sink to an aluminum or AlBeMet-150 substrate, which was subsequently diffusion bonded to an aluminum coated beryllium tile. In this approach, a 250 mum thick titanium foil was used as a diffusion barrier between the copper and aluminum to prevent the formation of Cu-Al intermetallic phases. In all cases, a hot isostatic pressing (HIP) furnace was used in conjunction with canned assemblies in order to minimize oxidation and apply sufficient pressure on the assembly for excellent metal-to-metal contact and subsequent bonding. Several different processing schedules were evalauted duirng the course of this study; bonded assemblies were produced that failed outside the bond area indicating at 100
机译:用于支持用于熔融反应器应用的铜合金散热器的扩散粘合铍碎片的制造技术,以支持几种不同的关节组件。因为铍与少数元素反应以形成金属间化合物,因为该研究被认为是几种不同的表面处理,作为抑制这些反应的手段,并追踪两个基板之间的良好的扩散键。所有扩散粘合组件使用铝 - 铍复合材料(Albemet-150)的铝作为与铍接触的界面材料。在大多数情况下,利用爆炸键合作为将铜合金散热器连接到铝或阿族族-150基材的技术,随后随后扩散到铝涂覆的铍瓷砖上。在这种方法中,将250毫米厚的钛箔用作铜和铝之间的扩散阻挡层,以防止形成Cu-Al金属间相。在所有情况下,热等静压(臀部)炉与罐头组件一起使用,以最小化氧化并在组件上施加足够的压力,以获得优异的金属 - 金属接触和随后的粘合。几个不同的处理时间表是评估这项研究的课程的Duirng;产生粘结的组件,在债券区域外失败,指示为100

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