首页> 外文会议>Fusion Engineering, 1999. 18th Symposium on >Development of direct HIP-bonding processes for tungsten-brush armor joining
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Development of direct HIP-bonding processes for tungsten-brush armor joining

机译:研发直接的HIP粘接工艺以连接钨刷盔甲

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This paper reviews the design, fabrication, and high-heat-flux testing of tungsten-armored mockups for advanced divertor applications that require active cooling. These mockups represent a single cooling channel, limited length section of a typical element of the divertor plate. They employ the tungsten-brush armor form that has demonstrated acceptable performance at 25 MW/m/sup 2/ absorbed heat flux, surviving over 500 cycles at this level in previous testing at Sandia National Laboratories. The mockups discussed here represent the first attempt to adapt the direct-bonding approach to a HIP (Hot-Isostatic-Press) process, which enables brush-armor bonding over large areas with compound-curvature surfaces. The direct-bonding approach eliminates the application of a plasma-sprayed copper matrix over the bundled brush elements and the associated clean-up machining prior to bonding. Simple, modular fabrication was a key design driver for these mockups since advanced divertor modules must be affordable yet satisfy demanding performance and remote maintenance requirements. The mockups demonstrated successful armor joining using the direct-HIP process, but final high-heat flux testing was limited due to difficulties with melting of the honeycomb layer used to fixture the tungsten rods during fabrication. The paper discusses lessons-learned on these parts and concepts for eliminating the honeycomb on future mockups.
机译:本文回顾了用于需要主动冷却的高级偏滤器应用的钨铠装样机的设计,制造和高热通量测试。这些模型代表了单个冷却通道,分流板典型元件的有限长度部分。他们采用的钨刷铠装形式在25 MW / m / sup 2 /吸收的热通量下表现出可接受的性能,在先前在桑迪亚国家实验室进行的测试中,在这个水平上可以存活500个以上的循环。此处讨论的模型是将直接键合方法应用于HIP(热等静压)工艺的首次尝试,该工艺可在具有复合曲率表面的大面积区域上进行刷-铠装键合。直接结合方法消除了在结合的刷元件上施加等离子喷涂的铜基体以及结合之前的相关清理机械加工。对于这些模型,简单的模块化制造是关键的设计驱动力,因为先进的偏滤器模块必须价格适中,但要满足苛刻的性能和远程维护要求。样机演示了使用直接HIP工艺成功进行铠装连接的方法,但是由于在制造过程中用于固定钨棒的蜂窝层熔化困难,最终的高热通量测试受到限制。本文讨论了在这些零件和概念上的经验教训,以消除将来的样机中的蜂窝。

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