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Manufacturing of small scale W monoblock mockups by hot radial pressing

机译:通过径向热压制造小型W整体模型

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In the frame of the European Technology R&D programme for International thermonuclear experimental reactor (ITER) and in the area of high heat flux plasma facing components (HHFC), representative small-scale mock-ups were manufactured and tested to compare different concepts and joining technologies (i.e. active brazing, hot isostatic pressing (HIPping), diffusion bonding, etc.). On the basis of the results obtained by thermal fatigue tests, the monoblock concept resulted to be the most robust one, particularly when the HIPping manufacturing technology is used. Within this programme, ENEA developed an alternative technique for manufacturing plasma-facing components with a monoblock geometry of the ITER machine. The basic idea of this technique, named hot radial pressing (HRP), is to perform a radial diffusion bonding between the cooling tube and the armour tile by pressurising the internal tube only and by keeping the process parameters within the range in which the thermo-mechanical properties of the copper alloys are not yet degraded. The HRP is performed by a standard furnace, in which only a section of the canister is heated. The manufacturing procedure and the results of the screening and fatigue thermal tests performed on the ENEA mock-ups are reported in this paper.
机译:在国际热核实验堆(ITER)的欧洲技术研发计划的框架内以及在高热通量等离子体组件(HHFC)领域,制造并测试了代表性的小型模型,以比较不同的概念和连接技术(即,主动钎焊,热等静压(HIPping),扩散粘结等)。根据热疲劳测试获得的结果,单块概念成为最坚固的一种,特别是在使用HIPping制造技术时。在该计划中,ENEA开发了一种替代技术,用于制造具有ITER机器整体结构的等离子体组件。这项技术的基本思想(称为热径向压制(HRP))是通过仅对内管加压并将过程参数保持在热管压力范围内,从而在冷却管和装甲板之间进行径向扩散粘结。铜合金的机械性能尚未降低。 HRP由标准熔炉执行,在熔炉中仅加热罐的一部分。本文报告了在ENEA模型上进行的制造程序以及筛选和疲劳热测试的结果。

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